FIELD OF THE INVENTION
[0001] The present invention relates generally to pallets, and more particularly to a pallet
having deck boards connected to stringers with wooden dowels having stepped diameter
peripheral surfaces which act as internal clamps.
BACKGROUND OF THE INVENTION
[0002] Pallets of various types are known in the art. Typical pallets are constructed of
wood and include parallel stringers to which transverse deck boards are then nailed
or otherwise secured with metal fastener devices to form the pallet. Pallets need
to have sufficient strength to withstand the weight of objects loaded thereon and
other impact forces to which the pallets are subjected when objects are loaded onto
them and when the pallets are moved, as by a fork-lifts truck or the like.
[0003] In many pallets, pallets are damaged at their lead boards. As a fork lift or other
mechanism is brought to engage a pallet, it will often impact the lead board of the
pallet with significant force. This shearing force may disengage the lead board or
otherwise damage it, yielding a worn or damaged pallet that may not work as well and
may be dangerous to users and merchandise.
[0004] Also, as pallets are used, they can become worn and weakened, causing some of the
stringers or deck boards to break or become at least partially detached, rendering
the pallet inoperable or in a dangerous condition. The use of nails or other metal
fastener devices can also render pallets dangerous. Many times, the damage to a pallet
occurs where the metal nail goes into the wood The use of metal fasteners can cause
checking in the stringers or deck boards. Further faults include product damage or
personal injury caused by exposed fasteners and inadequate joint stiffeners.
[0005] In an effort to save money and resources, the undamaged portions of worn or damaged
pallets are often salvaged and reused in making recycled pallets, used as fuel or
sawdust, or put to other uses. Those in the art have employed many methods in their
attempts to salvage worn-out pallets by stripping or otherwise disassembling the stringers
and deck boards from each other. However, many of these methods require costly machinery
or a great deal of time and effort and put workers at significant safety risk. Nails
and other metallic fasteners are often a great hindrance in efforts to disassemble
pallets. The presence of, for example, nails prevents the use of standard saws or
similar devices, which do not effectively cut through nails. Devices that are able
to disassemble worn-out pallets that include nails face other disadvantages. First,
they are often large, unwieldy and expensive. Second, often times the nails remain
in the stringers or deck boards after disassembly. In order to reuse the boards in
optimal condition, the nails need be removed, requiring additional time with attendant
increased cost and expense,
[0006] More recently, companies who utilize pallets have turned to Radio Frequency Identification
("RFID') technology to monitor and track pallet location and other information. To
use such technology, encoded RFID tags or devices are placed on a pallet. As the pallet
moves through distribution channels, RFID readers scan the devices. By, for example,
placing a RFID reader at a dock door of a warehouse, a supplier and customer know
when a pallet arrives. Wal-Mart has imposed RFID deadlines on its major suppliers.
However, there have been problems implementing RFID systems. One problem that faces
RFID technology is the ability to read metal products because metal can prevent RFID
readers from operating properly. A pallet without metallic fasteners would thus be
desired. Further, liquid inside of objects can absorb RF signals, making reading more
difficult. It is thus desirable to have a wooden pallet that can be constructed with
drier wood. However, nails and other metallic fasteners often cannot be used to construct
a pallet with dry wood because they will cause checking and damage to the wood during
construction.
[0007] In response to these problems, construction of pallets without utilizing metallic
fasteners has been attempted. In
US 5967056, Plante describes a pallet comprising integral upper deck and lower base members,
preferably made from molded plastic, and secured together laterally by securing pins.
In French Patent
FR 2301441, Terre describes a simple wooden pallet construction using wooden pegs held in place
by glue, or glue mixed with wood powder. Another method uses only adhesives to connect
stringers to deck boards. However, there are numerous disadvantages to such a pallet.
One is that the connection is often times not strong enough to resist typical shearing
or other forces. A second disadvantage to such a pallet is the required use of external
clamps or similar devices to hold the pieces together while the glue sets. A third
disadvantage of this technique is the waste of time between initial alignment and
ultimate formation of the pallet. This waste of time stems from the requirement of
waiting for the glue to set before use of the pallet. There thus exists a need for
a pallet that can be readily and economically assembled, can withstand substantial
impact and load forces, can be easily disassembled, including with dry wood, and will
not interfere with RF signals or prevent RFID readers from operating properly.
SUMMARY OF THE INVENTION
[0009] The invention comprises a novel pallet and method of assembling such a pallet as
defined in the appended claims.
[0010] In carrying out one embodiment of the invention, a pallet made predominately of wood
comprises a plurality of wooden stringers. Each wooden stringer comprises four elongated
longitudinal surfaces and two end surfaces. A selected longitudinal surface is designated
as a mounting surface and has a plurality of bores formed therein so that the longitudinal
axes of the bores are generally normal to the mounting surface. The size and shape
of the bores can range from a depth completely through the stringer to a smaller depth
sufficient to receive a portion of a dowel.
[0011] The deck boards are connected to the stringers by a plurality of wooden dowels. Each
of the dowels has a first and second portion. The dowel comprises at least two contiguous
dowel sections having different cross-sectional size. The dowels are preferably constructed
so that one portion fits into one of the bores in the stringer while the other portion
fits into one of the openings in the deck board, thereby connecting the stringer to
the deck board. Adhesive is used to augment that connection. The second end of the
deck board is similarly connected to a second stringer so that the deck board is transverse
the wooden stringers. A pallet is formed by so connecting a plurality of deck boards
to the stringers.
[0012] One benefit of the present invention is to provide a pallet that can be easily assembled
through the use of wooden dowels that facilitate attachment of transverse deck boards
to parallel stringers in a quick and efficient manner.
[0013] Another benefit of the present invention is to provide a pallet of the aforedescribed
type that employs an adhesive in conjunction with the dowels, the dowels being configured
to eliminate the need for external clamps to hold the parts together while the adhesive
sets or cures. Thus, there is no time wasted after initial alignment and connection
because the dowels provide sufficient connectivity to allow for immediate handling
and use of the formed pallets.
[0014] Another benefit of the present invention is to provide a pallet that works properly.
The dowels provide for a connection that is sufficiently strong to resist standard
shear and other forces.
[0015] Another benefit of the present invention is to provide a pallet that can be more
easily disassembled. Since the dowels are made of wood, the pallet can be more readily
stripped or broken down using standard wood-cutting saws. This allows for an increased
number of customers for used or worn pallets, because those customers have no need
for specialty equipment to grind up nails.
[0016] Another benefit of the present invention is to provide a pallet which can be a carrier
of RFID technology. Because the preferred embodiment does not have metal, the pallet
will not prevent RFID readers from working properly. The pallet claimed herein can
have a RFID device placed on it, and it will be able to be read by RFID readers without
fear of a nail or other metal fastener presenting the RFID reader from working properly.
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The features of the present invention which are believed to be novel are set forth
with particularity in the appended claims. The drawings may not be to scale. The invention
may best be understood by reference to the following description taken in conjunction
with the accompanying drawings, in the several figures of which like reference numerals
identify like elements, and in which:
Fig. 1 is a perspective view of one embodiment of a deck board and stringer that may
be used in the pallet of the subject invention;
Fig. 2 is an elevated side view of one embodiment of a dowel used in the pallet of
Fig. 1;
Fig. 3 is an end view of the embodiment of the dowel depicted in Fig. 2;
Fig. 4 is a side view of one embodiment of a dowel utilized in the subject invention
to connect a stringer to a deck board.
Fig. 5 is a side view of another embodiment of a dowel utilized in the subject invention
to connect a stringer to a deck board.
Fig. 6 is a perspective view of one embodiment of the subject invention showing a
pallet comprising stringers, deck boards and dowels.
Fig. 7 sets forth the steps in one embodiment of a method for assembling a pallet
according to the subject invention.
Fig. 8 is a side view of another embodiment of the subject invention showing a pallet
with a notched stringer.
DETAILED DESCRIPTION
[0018] While the present invention is susceptible of embodiments of various forms, there
is shown in the drawings, and will hereinafter be described some exemplary and non-limiting
embodiments, with the understanding that the present disclosure is to be considered
an exemplification of the invention. It is not intended to limit the invention to
the specific embodiments listed.
[0019] In general terms, one embodiment of the pallet comprises the combination of wooden
dowels and adhesive to connect stringers and deck boards to form a pallet.
[0020] Referring to Fig. 1, a deck board 10 and a stringer 30 can be seen. The deck board
10 has a first end 11 and a second end 12. The deck board 10 comprises a first pair
of opposing elongated longitudinal surfaces 9, 14 with a first width 15, a second
pair of opposing elongated longitudinal surfaces 16, 17 with a second width 18 and
a pair of end surfaces 19, 20. The first width 15 is greater than the second width
18. Both the first end 11 and the second end 12 have at least one opening 13. Preferably,
the openings are in the same elongated surface 16, 17, 19, 20. More preferably, the
openings 13 are in one of the first pair of elongated surfaces 16, 17. In one embodiment,
both the first end 11 and the second end 12 have a plurality of openings 13. The openings
13 have an inner surface 84. The deck board 10 is constructed of wood or like material.
Along with first and second ends 11, 12 the deck board 10 can also have a middle section
21, wherein the middle section 21 has at least one opening 13 preferably in the same
elongated surface 16, 17, 19, 20 as the openings 13 in the first and second ends 11,
12.
[0021] The stringer 30 comprises a first pair of opposing longitudinal mounting surfaces
31, 32 which have a first width 33. The stringer 30 further comprises a second pair
of opposing longitudinal mounting surfaces 34, 35 which have a second width 36. The
second width 36 is greater than the first width 33. The stringer 30 further comprises
a pair of opposing end surfaces 37, 38. At least one of the longitudinal mounting
surfaces 31, 32, 34, 35 has a plurality of bores 39 defined therein. The terms bore
and opening are herein used synonymously. The different terms are used to more easily
reference stringer (having bores) or deck board (having openings). The bores 39 have
an inner surface 88. In one embodiment, the plurality of bores 39 are spaced substantially
equally along a longitudinal mounting surface 31, 32, 34, 35. In another embodiment,
opposing longitudinal surfaces, either 31, 32 or 34, 35, both have a plurality of
bores 39. Preferably, the stringer 30 is made of wood or like material.
[0022] Referring to Fig. 2, one embodiment of a wooden dowel 50 can be seen. The dowel 50
comprises a first portion 52 and a second portion 54. The dowel may have a plurality
of dowel sections, a first section 56, middle sections 58, 60, and last section 62.
While in a preferred embodiment, the dowel 50 has two middle sections 58, 60 other
embodiments may have no middle section, one middle section, or three or more middle
sections. The first and last sections 56, 62 may have side walls 64, 66 and end walls
68, 70, respectively. Each of the middle sections 58, 60 may have side walls 72, 74
and step walls 76, 78, respectively. Each of the sections 56, 58, 60, 62 are contiguous
to another section 56, 58, 60, 62. The sidewalls 64, 66, 72, 74 define a cross-sectional
size for their respective sections 56, 58, 60, 62. The cross-sectional size of the
sidewalls 64, 66, 72, 74 decreases as one progresses from the first section 56 to
the last section 62 in a number of steps. The cross-sectional size of the sidewalls
64, 66, 72, 74 may be any suitable size. The length of each individual dowel section
56, 58, 60, 62 may vary considerably. In one embodiment, the dowel section 656, 58,
60, 62 with the smallest cross-sectional size is as long or longer than the length
of any of the other dowel sections. The dowel 50 may have some sections, e.g., 58,
60 or all sections 56, 58, 60, 62 that have grooves 80. The dowel 50 may have other
configurations, such as, the dowel shown and described in
U.S. Patent No. 6,267,527.
[0023] As shown in Fig. 3, an embodiment is depicted having dowel sections 56, 58,60,62
having a circular configuration. Other embodiments of the dowel 50 may be constructed
so that each dowel section has a substantially square, triangular, or other cross-section.
Further embodiments may mix and match square sections with triangular sections, or
try other combinations. It is preferred that the dowel 50 be constructed from a single
integral piece of wood. The dowel 50 may be constructed of different pieces of wood
that are functionally attached to form the dowel 50. The dowel 50 is preferably made
substantially of birch, but may also be made of red oak, cherry, ash, beech, or other
suitable preferably hardwoods.
[0024] As shown in Fig. 4, the dowel 50 connects the stringer 30 and the deck board 10.
The opening 13 of the deck board 10 is configured to receive either the first or second
portion 52, 54 of the dowel 50. The opening 13 is sized so that it is slightly smaller
than the dowel portion 52, 54 that it is configured to receive. The dowel 50 fits
snugly into the opening 13. The dowel 50 and the opening 13 form a friction fit. In
a preferred embodiment, the dowel 50 can be partially inserted into the opening 13
by hand. Because of the stepped nature of the dowel 50, the dowel 50 can be partially
inserted into the opening 13 with minimal force. The partially inserted dowel 50 in
the opening 13 of the deck board 10 is aligned with a selected bore 39 of the stringer
30. The selected bore 39 can configured to receive the portion of the dowel 50, either
first or second 52, 54, that the opening 13 of the deck board 10 has not received.
Again, because of the stepped nature of the dowel 50, the dowel can be partially inserted
into the bore 39 with minimal effort. Through the ability to be partially inserted
with minimal force, the dowel 50 provides proper alignment of the opening 13 with
the bore 39. The dowel 50 can be substantially or fully inserted into the opening
13 and bore 39 through the use of a suitable pounding device (not shown), such as
a hammer or mallet, or through manual strength. The dowel 50 fits snugly into the
selected opening 13 and bore 39. The dowel 50 and the opening 13 and bore 39 form
a friction fit. Adhesive (not shown) is disposed between the abutting parts of the
dowel 50, stringer 30 and deck board 10.
[0025] As can be seen in Fig. 4, once the dowel 50 is inserted into the opening 13 and the
bore 39, the deck board 10 and stringer 30 are connected. The deck board 10 and stringer
30 will be aligned transverse each other. The deck board 10 forms a right angle with
the stringer 30.
[0026] Referring now to Fig. 5, a second embodiment of the connection between a selected
stringer 30 and a selected deck board 10 can be seen. In this embodiment, the opening
13 is such that it defines a hole 82 through the deck board 10. In other embodiments,
the bore 39 defines a hole 82 through the stringer 30, or both the bore 39 and the
opening 13 define holes 82 in the stringer 30 and deck board 10, respectively. An
advantage of this embodiment is that it allows the dowel 50 to be more easily inserted
into both the deck board 10 and stringer 30 almost simultaneously. This embodiment
also allows for one-step desired alignment of the opening 13 with the bore 39. In
this embodiment, the opening 13 and bore 39 can be created at the same time using
a properly shaped drill (not shown) or other suitable device. The drill bit (not shown)
used with a drill may have many configurations, such as the drill bit shown and described
in
U.S. Patent No. 6,267,527. The deck board 10 can be placed in a predetermined alignment with the stringer 30.
An operator can then drill a hole 82 through the deck board 10, creating the opening
13, and then continue to drill into the stringer 30 to create the corresponding bore
39.
[0027] Referring now to Fig. 6, an embodiment of the pallet is depicted as having three
stringers 30 orientated in substantially the same plane in a parallel relationship.
Many other pallet configurations may be used including, e.g., the stringer design,
the block design, skids, stevedore type double wing, plywood panel deck stringer,
nine block four-way entry pallet, single wing pallet with optional chamber on bottom
boards, or the reversible stringer pallet. This list is given as an example of some
types of pallets, and is not intended to be exhaustive. One of skill in the art would
recognize that a wide variety of pallet formations can be contemplated and would fall
within the scope of the invention.
[0028] As shown in Fig. 6, one embodiment may have first, second, and third stringers 30
arranged parallel to each other. The second stringer 30 is spaced a substantially
equal space from the first and third stringers 30, respectively. The distance between
the first and third stringer 30 is substantially equal to the length of a pre-selected
deck board 10. Each of the first pair of opposing longitudinal mounting surfaces 31,
32 has a plurality of bores 39 (some not shown) defined therein. The embodiment has
a plurality of deck boards 10 arranged parallel to each other and transverse to the
stringers 30. Preferably, one of the first pair of opposing elongated longitudinal
surfaces 9, 14 of each deck board 10 has a plurality of openings 13 (some not shown)
defined therein. The deck boards 10 are arranged such that the openings 13 defined
in the first end 11, second end 12 and middle section 21 are aligned with the bores
39 defined in the stringers 30. A plurality of dowels 50 are fit into the openings
13 and aligned bores 39 to connect the stringers 30 to the deck boards 10. One set
of deck boards 10 are connected opposing longitudinal mounting surface 31 while a
second set of deck boards 10 are connected to opposing longitudinal mounting surface
32.
[0029] Fig. 7 sets forth the steps of a preferred method for forming a pallet. It should
be noted that Fig. 7 gives numbers to Parts of the method for ease of reference only.
The invention can be performed in an order different than that provided. The reference
numerals, e.g. dowel 50, provided below refer to Figs. 1-6.
[0030] Part 1 of Fig. 7 recites the step of providing a plurality of wooden dowels 50. Each
of the dowels 50 comprises first and second portions 52, 54 and has at least two contiguous
dowel sections 56, 62 having sidewalls 64, 66 of different cross-sectional size. The
dowels 50 may be of the type shown in Figs. 2-6 and described above.
[0031] Part 2 recites providing of at least two elongated stringers 30. Each stringer 30
has a longitudinal mounting surface 31 having a plurality of bores 39 formed therein
in spaced relation along the mounting surface 31. The bores 39 are configured to receive
a selected portion 52, 54 of one of the dowels 50.
[0032] Part 3 describes the step of the providing of a plurality of deck boards 10. Each
of the deck boards 10 has first and second ends 11, 12 with each end having an opening
13 adapted for aligned relation with a selected bore 39 in one of the stringers 30.
The openings 13 are configured to receive a remaining portion 52 or 54 of the dowel
50. The bores 39 and openings 13 can be configured with the use of a drill (not shown)
with attendant drill bit (not shown). The drill bit may have many configurations,
such as, e.g., the drill bit shown and described in
U.S. Patent No. 6,267,527. Preferably, the stringers 30 and deck boards 10 provided are comprised of a dry
wood. The method can further comprise providing an RFID device (shown as 110 in Figs.
6 and 8) to be attached to the pallet.
[0033] Part 4 recites the application of adhesive material (not shown) to the stringers
30 and deck boards 10 such that some of the adhesive material is disposed in the bores
39 and openings 13. The adhesive material may be applied to the surfaces 31, 32, 34,
35, 13, 14, 16, 17, of the stringers 30, deck boards 10 or side walls 64, 66, 72,
74 of the dowels 50 to strengthen or augment the connection. The adhesive material
is preferably PVA, but can be any material that would adequately connect the parts
of the pallet together, such as, e.g., elastomers, hot melts, urethane, epoxy, PRF,
or urethane/isocyanate. Preferably, during the construction of a pallet, the adhesive
is applied to the stringers 30 and deck boards 10 such that some of the adhesive is
disposed in the bores 39 and openings 13 prior to the insertion of the dowels 50.
The adhesive material may also be applied to the side walls 64, 66, 72, 74 of the
dowel 50. In a preferred embodiment, the adhesive applied to the dowel 50 is thinned
to allow for more ready insertion and connection. As the dowel is inserted into the
bore or opening 13, the adhesive material may be at partly scraped from the side walls
64, 66, 72, 74 to accumulate on the end wall 70 and step walls 76, 78.
[0034] Part 5 recites the positioning of the stringers 30 in parallel relation with the
mounting surfaces 31, 32 of different stringers 30 in substantially coplanar relation,
and positioning the deck boards 10 in parallel relation transverse to the mounting
surfaces 31, 32.
[0035] Part 6 recites the insertion of the dowels 50 into the openings 13 of the deck boards
10 and into the aligned bores 39 of the stringers 30 in a snug relationship to thereby
connect the deck boards 10 to the stringers 30. The stepped configuration of the dowel
50 provides easier alignment of the dowel 50 with the opening 13 and bore 39 during
the insertion process. Further, significant pressure need be only applied to the dowel
50 during, for example, approximately the last 20 percent of the insertion distance.
A pounding device (not shown) may be used to insert the dowels. This device may be
a hammer, mallet, or other suitable instrument. The dowels 50 fit snugly into the
openings 13 and bores 39. The dowels 50 form a friction fit with the inner surface
84, 88 of the opening 13 or bore 39. The snug or friction fit connects the deck boards
10 to the stringer 30. Using a dowel 50 with grooves 80 yields a connection that is
stronger. One benefit of the dowel 50 is that it acts as an internal clamping mechanism
that holds the pallet together while the adhesive sets or cures. This benefit provides
needing flexibility to the manufacturing process, allowing more ready manufacture
of pallets. For example, the use of the dowels 50 can eliminate the need for external
clamps or other devices (not shown) to maintain connection of the deck boards 10 to
the stringers 30 while the adhesive cures. The manufacturer can thus avoid the costs
of these external clamps as well as the time, effort, and floor space needed to utilize
them. A second benefit of the use of the dowel 50 is that it can allow for the use
of a wide variety of adhesive materials. A pallet manufacturing operations using adhesives
may have the capability of manufacturing a number of pallets per unit time. However,
the need for space to allow for the adhesive in the pallets to set or cure is great.
Typically, these operations will thus prefer adhesives with very short set or cure
times, even though these adhesives are not optimal on a cost or performance basis.
The use of the dowel 50 to connect the runners 10 to the stringers 30 allow for the
practical use of adhesives with longer cure times because the pallet can be handled
and used while the adhesive is setting or curing. It also allows for the use of adhesives
that are approved for use in the transport of food.
[0036] Referring now to Fig. 8, a side view of a preferred embodiment of a pallet is shown.
Fig. 8 shows a stringer 30, deck boards 10 and lead deck boards 90. The lead deck
board 90 has a height
90a and a width
90b and opposing surfaces 99, 100. The stringer 30 comprises notches 92. The notches
92 can have a first surface 94 and a second surface 96. The notches have a depth
92a and a width
92b. Preferably, the width
90b of the lead deck board 90 is substantially similar to the width
92b of the notches 92 so that the lead deck board 90 can be disposed in the notch 92.
Preferably, the height
90a of the lead deck board 90 can be substantially similar to the sum of the width 18
of the deck board 10 and the depth
92a of the notch so that, when disposed in the notch 92, surface 100 can be substantially
planar to surface 14 of the deck boards 10. In this embodiment, the lead deck board
90 is able to withstand a greater shearing force because the connection between the
lead deck board 90 and stringer 30 receives lateral support from the second surface
96 of the stringer 30. The lead deck board 90 is connected to the stringer 30 with
wooden dowels 50 and adhesive.
[0037] In another embodiment, the notches 92 can have an angled second surface 96 (angle
not shown). Preferably, a corresponding surface 98 of the lead deck board 90 is angled
complimentary to the angled second surface 96 to form, e.g., a dovetail configuration
(not shown). The deck boards and lead deck boards are connected to the stringer 30
using a wooden dowel 50 and adhesive, as described hereinabove.
[0038] The pallet described herein consists essentially of wood and adhesive. In the most
preferred embodiment, the pallet consists of wood and adhesive. The use of a wooden
dowel 50 and wooden stringers 30 and deck boards 10, along with adhesive, can, through
construction, create a pallet that exceeds industry requirements for static strength,
stiffness, and resistance to rough handling.
[0039] Further, the pallet described herein can be substantially lighter than standard pallets
that employ nails or other metal fasteners. First, the use of wooden dowels inserted
into bores or openings instead of nails creates less weight. The weight of the dowel
50 being inserted is offset by the amount of wood drilled out of the deck boards 10
and stringers 30. With the use of nails, there is no offset. With the use of a large
number of nails in typical pallets (sometimes over one hundred for a used pallet),
this weight difference can become substantial. Second, the pallet described herein
can be made with kiln dried wood, which is lighter than wet or green wood. Typical
pallets are made of wet or green wood because hammering in nails in dry wood can cause
damage to the wood, such as checking, and result in a damaged or weakened pallet.
Through the use of the dowel 50, the pallet described herein can be constructed of
wood that is kiln dried. Preferably, the wood is less than 15% moisture and more preferably
between 9 and 12% moisture. The pallet described herein can be substantially lighter
than typical pallets, making them less likely to cause injury to workers during transport,
and also yielding substantial savings in fuel economy during transport.
[0040] It is believed that the pallet described herein can be constructed so that it meets
industry requirements for a rated load of 2800-pounds that is less than sixty pounds.
Preferably, such a pallet will be between fifty three and fifty eight pounds. More
preferably, such a pallet will be less than fifty three pounds. In contrast, the typical
wooden pallet can weigh from seventy to eighty pounds.
[0041] The construction of a pallet of essentially all kiln dried wood and adhesive creates
further advantages. A significant advantage is that the pallet is less likely to interfere
with RFID. As seen in Figs. 6 and 8, an RFID device 110 can be attached to the pallet.
Preferably, the RFID device 110 is attached to an inside surface 34 or 35 of the middle
stringer 30 or one of the outside stringers 30. A warehouse (not shown) can have an
RFID reader (not shown) near a dock door. When the pallet described herein, with the
attached RFID device 110, enters the warehouse, the RFID reader will can read the
RFID device 110. RFID readers can have difficulty reading RFID devices which are near
liquid, which absorbs RF signals. The pallet described herein can be constructed of
dried wood, lessening the amount of RF signal absorption and potentially allowing
for higher read rate accuracy. Further, the pallet described herein is preferably
constructed without metal. Metal can prevent RF readers from working properly. The
pallet described therein is therefore likely to yield higher read rate accuracy.
[0042] The preferred lack of metal also allows for the pallet to be subjected to microwave
sterilization. This potentially results in a pallet that does not, for example, transport
alien organisms or animals from one region to another.
[0043] The present invention is not limited to their particular details of the method depicted,
and other modifications and applications are contemplated. Certain other changes may
be made in the above-described method without departing from the scope of the invention
herein involved For example, the present method may be utilized with other styles
of pallets, which have different formations of stringers, panel boards, or like members.
It is intended, therefore, that the subject matter in the above depiction shall be
interpreted as illustrative and not in a limiting sense.
1. A method for assembling a substantially wooden pallet comprising:
providing a plurality of wooden dowels (50),
providing a plurality of elongated wooden pallet stringers (30), each stringer having
a longitudinal mounting surface (31, 32) having a plurality of bores (39) formed therein
in spaced relation along the mounting surface, the bores each being configured to
receive a selected portion of one of the dowels;
providing a plurality of wooden deck boards (10),
positioning the deck boards in spaced parallel arrangement,
positioning the stringers perpendicular to said deck boards, spaced from one another;
the method being characterized by:
using stepped dowels (50), each dowel comprising first (62) and second (56) portions,
each dowel having at least two contiguous stepped dowel sections (56, 58, 60, 62)
having sidewalls defining a different and decreasing cross-sectional size for each
section from a first said section to a last section respectively;
providing openings (13, 39), that extend through each deck board and into each stringer,
to receive said dowels, wherein the openings have at least an upper opening section
(13) and a lower opening section (39), each opening section having a slightly smaller
cross-sectional size than the corresponding dowel section each opening section is
arranged to receive;
applying adhesive material to abutting parts of the stringers and the deck boards;
applying adhesive material to the openings or dowels such that adhesive material is
ultimately disposed in the openings;
inserting the dowels through the deck boards into the openings of the stringers so
that each opening receives and forms a friction fit with each respective dowel so
the inserted dowel fits snugly in the opening.
2. The method of claim 1, wherein the adhesive has a very short set or cure time.
3. The method of claim 1 wherein the adhesive material is applied so that it is disposed
on substantially all of the mounting surfaces of the pallet stringers.
4. The method of claim 1, further comprising attaching an RFID device to the pallet.
5. The method of claim 1, further comprising creating the openings with a drill.
6. The method of claim 1 wherein the stringers are comprised of dry wood having less
than about 15% moisture by weight.
7. The method of claim 1 wherein the pallet is constructed so that it can hold a load
of 2800-pounds and weighs less than 60 pounds.
8. The method of claim 1 wherein the pallet is constructed so that it weighs less than
53 pounds.
9. The method of claim 1 wherein the dowels have at least three stepped dowel sections
(56, 58, 60, 62) of successively decreasing cross-sectional sizes and the openings
have at least three corresponding opening sections of successively decreasing cross-sectional
sizes.
10. The method of claim 1 wherein the pallet is assembled without the use of external
clamps.
11. A substantially wooden pallet comprising:
a plurality of wooden pallet stringers (30), having a pair of opposing longitudinal
mounting surfaces (31, 32);
a plurality of wooden deck boards (10), having upper and lower opposing elongated
longitudinal surfaces (9, 14);
the deck boards being spaced and parallel to one another, and the stringers being
spaced and parallel to one another, and transverse to and adjacent the deck boards,
with the lower elongated longitudinal surface (9) of each deck board in contact with
a one of the longitudinal mounting surfaces (31, 32) of each of the stringers;
a plurality of wooden dowels (50);
wherein the pallet is characterized in that:
the dowels (50) are stepped, each dowel having first (62) and second (56) portions,
each dowel having at least two contiguous stepped dowel sections (56, 58, 60, 62)
having sidewalls defining a different and decreasing cross-sectional size for each
dowel section from a first said section to a last section respectively;
the deck boards and stringers have a plurality of openings (13, 39) which receive
the dowels (50) to fix the deck boards to the stringers, each opening comprising at
least one upper opening section (13) extending through the elongated longitudinal
surfaces (9, 14) of the deck boards and aligned with at least one corresponding lower
opening section (39) in the adjacent mounting surface (31, 32) of the stringers, the
openings each having at least two contiguous opening sections, each opening section
sequentially decreasing in cross-sectional size;
said opening sections are sized to be slightly smaller in diameter than the corresponding
dowel sections they are configured to receive; and
adhesive is disposed on the abutting parts of the deck boards and the stringers and
in the openings;
the dowels (50) are pressed into the openings to connect the deck boards and the stringers
by a snug, friction fit of the dowels (50) in the openings (13, 39).
12. A pallet as defined in claim 11, wherein the pallet weighs less than 60 pounds and
can carry a load of 2600 pounds.
13. A pallet as defined in claim 11, wherein the dowel sidewalls are at least partially
grooved (80).
14. A pallet as defined in claim 11, wherein the dowels have at least three contiguous
stepped dowel sections (56, 58, 60, 62) of successively decreasing cross-sectional
size and the openings have at least three contiguous opening sections of successively
decreasing cross-sectional size slightly smaller than the corresponding dowel sections.
15. A pallet as defined in claim 14, wherein the at least three contiguous dowel sections
(56, 58, 60, 62) are cylindrical.
16. A pallet as defined in claim 11, wherein the dowel sidewalls are at least partially
ribbed.
17. A pallet as defined in claim 11, further comprising an RFID device (110) attached
to the pallet.
18. A pallet as defined in claim 11, wherein the stringers and deck boards are comprised
of dry wood having less than about 15% moisture by weight during construction.
1. Verfahren zum Montieren einer im Wesentlichen hölzernen Palette, das Folgendes umfasst:
Bereitstellen mehrerer hölzerner Dübel (50),
Bereitstellen mehrerer langgestreckter hölzerner Palettengurte (30), wobei jeder Gurt
eine in Längsrichtung verlaufende Montagefläche (31, 32) mit mehreren in beabstandeter
Beziehung entlang der Montagefläche darin gebildeten Bohrungen (39) aufweist, wobei
die Bohrungen jeweils dazu ausgebildet sind, einen ausgewählten Abschnitt von einem
der Dübel aufzunehmen;
Bereitstellen mehrerer hölzerner Deckbretter (10),
Positionieren der Deckbretter in beabstandeter paralleler Anordnung,
Positionieren der Gurte senkrecht zu den genannten Deckbrettern und voneinander beabstandet,
wobei das Verfahren gekennzeichnet ist durch:
Verwenden von gestuften Dübeln (50), wobei die Dübel jeweils einen ersten (62) und
einen zweiten (56) Abschnitt umfassen, wobei die Dübel jeweils mindestens zwei zusammenhängende
gestufte Dübelabschnitte (56, 58, 60, 62) aufweisen, mit Seitenwänden, die für jeden
Abschnitt von einem ersten genannten Abschnitt zu einem letzten Abschnitt jeweils
eine verschiedene und abnehmende Querschnittsgröße definieren; Bereitstellen von Öffnungen
(13, 39), die sich durch jedes Deckbrett und in jeden Gurt erstrecken, um die genannten Dübel aufzunehmen,
wobei die Öffnungen mindestens einen oberen Öffnungsabschnitt (13) und einen unteren
Öffnungsabschnitt (39) aufweisen, wobei die Öffnungsabschnitte jeweils eine etwas
kleinere Querschnittsgröße aufweisen als der entsprechende Dübelabschnitt, für dessen
Aufnahme der jeweilige Öffnungsabschnitt angeordnet ist;
Auftragen von Klebematerial auf aneinander stoßende Teile der Gurte und der Deckbretter;
Auftragen von Klebematerial auf die Öffnungen oder Dübel, so dass das Klebematerial
schließlich in den Öffnungen angeordnet ist;
Einstecken der Dübel durch die Deckbretter in die Öffnungen der Gurte, so dass jede Öffnung jeden jeweiligen
Dübel aufnimmt und damit eine Reibpassung bildet, so dass der eingesteckte Dübel fest
in die Öffnung passt.
2. Verfahren nach Anspruch 1, wobei der Kleber eine sehr kurze Erstarrungs- oder Aushärtezeit
aufweist.
3. Verfahren nach Anspruch 1, wobei das Klebematerial so aufgetragen wird, dass es im
Wesentlichen auf allen der Montageflächen der Palettengurte angeordnet ist.
4. Verfahren nach Anspruch 1, weiter umfassend das Anbringen einer RFID-Vorrichtung an
der Palette.
5. Verfahren nach Anspruch 1, weiter umfassend das Erzeugen der Öffnungen mit einem Bohrer.
6. Verfahren nach Anspruch 1, wobei die Gurte aus trockenem Holz mit weniger als etwa
15 Gewichtsprozent Feuchtigkeit bestehen.
7. Verfahren nach Anspruch 1, wobei die Palette derart aufgebaut ist, dass sie eine Last
von 2800 Pfund tragen kann und weniger als 60 Pfund wiegt.
8. Verfahren nach Anspruch 1, wobei die Palette derart aufgebaut ist, dass sie weniger
als 53 Pfund wiegt.
9. Verfahren nach Anspruch 1, wobei die Dübel mindestens drei gestufte Dübelabschnitte
(56, 58, 60, 62) mit sukzessiv abnehmenden Querschnittsgrößen aufweisen und die Öffnungen
mindestens drei entsprechende Öffnungsabschnitte mit sukzessiv abnehmenden Querschnittsgrößen
aufweisen.
10. Verfahren nach Anspruch 1, wobei die Palette ohne Verwendung von externen Klemmen
montiert wird.
11. Im Wesentlichen hölzerne Palette, die Folgendes umfasst:
mehrere hölzerne Palettengurte (30) mit einem Paar einander gegenüberliegender, in
Längsrichtung verlaufender Montageflächen (31, 32);
mehrere hölzerne Deckbretter (10) mit einer oberen und einer unteren, in Längsrichtung
verlaufender langgestreckten Oberfläche (9, 14), die einander gegenüberliegen;
wobei die Deckbretter voneinander beabstandet und parallel zueinander sind und die
Gurte voneinander beabstandet und parallel zueinander und quer zu und angrenzend and
die Deckbretter sind, wobei die untere langgestreckte, in Längsrichtung verlaufende
Oberfläche (9) jedes Deckbretts mit einer der in Längsrichtung verlaufenden Montageflächen
(31, 32) von jedem der Gurte in Kontakt ist;
mehrere hölzerne Dübel (50);
wobei die Palette dadurch gekennzeichnet ist, dass:
die Dübel (50) gestuft sind, wobei die Dübel jeweils einen ersten (62) und einen zweiten
(56) Abschnitt aufweisen, wobei die Dübel jeweils mindestens zwei zusammenhängende
gestufte Dübelabschnitte (56, 58, 60, 62) aufweisen, mit Seitenwänden, die für jeden
Abschnitt von einem ersten genannten Abschnitt zu einem letzten Abschnitt jeweils
eine verschiedene und abnehmende Querschnittsgröße definieren; die Deckbretter und
Gurte mehrere Öffnungen (13, 39) aufweisen, die die Dübel (50) aufnehmen, um die Deckbretter
an den Gurten zu fixieren, wobei die Öffnungen jeweils mindestens einen oberen Öffnungsabschnitt
(13) aufweisen, der sich durch die langgestreckten, in Längsrichtung verlaufenden
Oberflächen (9, 14) der Deckbretter erstreckt und mit mindestens einem entsprechenden
unteren Öffnungsabschnitt (39) in der daran angrenzenden Montagefläche (31, 32) der
Gurte fluchtet, wobei die Öffnungen jeweils mindestens zwei zusammenhängende Öffnungsabschnitte
aufweisen, wobei die Querschnittsgröße die Öffnungsabschnitte jeweils sequentiell
abnimmt;
die genannten Öffnungsabschnitte mit einem etwas kleineren Durchmesser bemessen sind
als die entsprechenden Dübelabschnitte für deren Aufnahme sie ausgebildet sind; und
Kleber auf den aneinander stoßenden Teilen der Deckbretter und der Gurte und in den
Öffnungen angeordnet ist;
die Dübel (50) in die Öffnungen gepresst werden, um die Deckbretter und die Gurte
durch eine feste Reibpassung der Dübel (50) in den Öffnungen (13, 39) zu verbinden.
12. Palette nach Anspruch 11, wobei die Palette weniger als 60 Pfund wiegt und eine Last
von 2600 Pfund tragen kann.
13. Palette nach Anspruch 11, wobei die Dübelseitenwände mindestens teilweise gerillt
(80) sind.
14. Palette nach Anspruch 11, wobei die Dübel mindestens drei zusammenhängende gestufte
Dübelabschnitte (56, 58, 60, 62) mit sukzessiv abnehmender Querschnittsgröße aufweisen
und die Öffnungen mindestens drei zusammenhängende Öffnungsabschnitte mit sukzessiv
abnehmender Querschnittsgröße aufweisen, die etwas kleiner ist als die entsprechenden
Dübelabschnitte.
15. Palette nach Anspruch 14, wobei die mindestens drei zusammenhängenden Dübelabschnitte
(56, 58, 60, 62) zylindrisch sind.
16. Palette nach Anspruch 11, wobei die Dübelseitenwände mindestens teilweise gerippt
sind.
17. Palette nach Anspruch 11, weiter umfassend eine an der Palette angebrachte RFID-Vorrichtung
(110).
18. Palette nach Anspruch 11, wobei die Gurte und Deckbretter aus trockenem Holz mit während
des Aufbaus weniger als etwa 15 Gewichtsprozent Feuchtigkeit bestehen.
1. Procédé permettant d'assembler une palette sensiblement en bois comprenant les étapes
consistant à :
fournir une pluralité de goujons en bois (50),
fournir une pluralité de chevrons de palette en bois allongés (30), chaque chevron
comportant une surface de montage longitudinale (31, 32) ayant une pluralité d'alésages
(39) formés à l'intérieur en relation espacée le long de la surface de montage, les
alésages étant chacun configuré pour recevoir une portion sélectionnée de l'un des
goujons ;
fournir une pluralité de planchers en bois (10),
positionner les planchers en agencement parallèle espacé,
positionner les chevrons perpendiculaires audits planchers, espacés les uns des autres
; le procédé étant caractérisé par les étapes consistant à :
utiliser des goujons étagés (50), chaque goujon comprenant des première (62) et seconde
(56) portions, chaque goujon comportant au moins deux sections de goujon étagé contiguës
(56, 58, 60, 62) ayant des parois latérales définissant une dimension en coupe différente
et décroissante pour chaque section à partir d'une première dite section vers une
dernière section respectivement ;
fournir des ouvertures (13, 39), qui s'étendent à travers chaque plancher et dans
chaque chevron, pour recevoir lesdits goujons, dans lequel les ouvertures ont au moins
une section d'ouverture supérieure (13) et une section d'ouverture inférieure (39),
chaque section d'ouverture ayant une dimension en coupe légèrement plus petite que
la section de goujon correspondante que chaque section d'ouverture est agencée pour
recevoir,
appliquer un matériau adhésif sur des parties en butée des chevrons et des planchers
;
appliquer un matériau adhésif sur les ouvertures ou les goujons de sorte que le matériau
adhésif est au final disposé dans les ouvertures ;
insérer les goujons à travers les planchers dans les ouvertures des chevrons de sorte
que chaque ouverture reçoit et forme une pose à pression avec chaque goujon respectif
de sorte que le goujon inséré s'adapte parfaitement dans l'ouverture.
2. Procédé selon la revendication 1, dans lequel l'adhésif a un temps de prise ou de
durcissement très court.
3. Procédé selon la revendication 1, dans lequel le matériau adhésif est appliqué de
sorte qu'il est disposé sur sensiblement toutes les surfaces de montage des chevrons
de palette.
4. Procédé selon la revendication 1, comprenant en outre l'application d'un dispositif
RFID sur la palette.
5. Procédé selon la revendication 1, comprenant en outre la création des ouvertures avec
une perceuse.
6. Procédé selon la revendication 1, dans lequel les chevrons sont composés de bois sec
ayant moins d'environ 15 % d'humidité en poids.
7. Procédé selon la revendication 1, dans lequel la palette est construite de sorte qu'elle
puisse supporter une charge de 2 800 livres et pèse moins de 60 livres.
8. Procédé selon la revendication 1, dans lequel la palette est construite de sorte qu'elle
pèse moins de 53 livres.
9. Procédé selon la revendication 1, dans lequel les goujons ont au moins trois sections
de goujon étagé (56, 58, 60, 62) de dimensions en coupe successivement décroissantes
et les ouvertures ont au moins trois sections d'ouverture correspondantes de dimensions
en coupe successivement décroissantes.
10. Procédé selon la revendication 1, dans lequel la palette est assemblée sans utiliser
de dispositif de serrage externe.
11. Palette sensiblement en bois comprenant :
une pluralité de chevrons de palette en bois (30), ayant une paire de surfaces de
montage longitudinales opposées (31, 32) ;
une pluralité de planchers en bois (10), ayant des surfaces longitudinales allongées
opposées supérieures et inférieures (9, 14) ;
les planchers étant espacés et parallèles les uns par rapport aux autres, et les chevrons
étant espacés et parallèles les uns par rapport aux autres, et transversaux et adjacents
aux planchers, la surface longitudinale allongée inférieure (9) de chaque plancher
étant en contact avec l'une des surfaces de montage longitudinales (31, 32) de chacun
des chevrons ;
une pluralité de goujons en bois (50) ;
dans laquelle la palette est caractérisé en ce que :
les goujons (50) sont étagés, chaque goujon comportant des première (62) et seconde
(56) portions, chaque goujon ayant au moins deux sections de goujon étagé contiguës
(56, 58, 60, 62) comportant des parois latérales définissant une dimension en coupe
différente et décroissante pour chaque section de goujon à partir d'une première dite
section vers une dernière section respectivement ;
les planchers et les chevrons ont une pluralité d'ouvertures (13, 39), qui reçoivent
les goujons (50) pour fixer les planchers sur les chevrons, chaque ouverture comprenant
au moins une section d'ouverture supérieure (13) s'étendant à travers les surfaces
longitudinales allongées (9, 14) des planchers et alignée avec au moins une section
d'ouverture inférieure (39) correspondante dans la surface de montage (31, 32) adjacente
des chevrons, les ouvertures ayant chacune au moins deux sections d'ouverture contiguës,
chaque section d'ouverture ayant une dimension en coupe séquentiellement décroissante
;
lesdites sections d'ouverture sont dimensionnées de sorte que leur diamètre soit légèrement
inférieur à celui des sections de goujon correspondantes qu'elles sont configurées
pour recevoir ; et
un adhésif est disposé sur les parties en butée des planchers et des chevrons et dans
les ouvertures ;
les goujons (50) sont pressés dans les ouvertures pour raccorder les planchers et
les chevrons par pose à pression parfaite des goujons (50) dans les ouvertures (13,
39).
12. Palette selon la revendication 11, dans laquelle la palette pèse moins de 60 livres
et peut porter une charge de 2 600 livres.
13. Palette selon la revendication 11, dans laquelle les parois latérales de goujon sont
au moins en partie rainurées (80).
14. Palette selon la revendication 11, dans laquelle les goujons ont au moins trois sections
de goujon étagé contiguës (56, 58, 60, 62) de dimension en coupe successivement décroissante
et les ouvertures ont au moins trois sections d'ouverture contiguës de dimension en
coupe successivement décroissante légèrement plus petites que les sections de goujon
correspondantes.
15. Palette selon la revendication 14, dans laquelle les au moins trois sections de goujon
contiguës (56, 58, 60, 62) sont cylindriques.
16. Palette selon la revendication 11, dans laquelle les parois latérales de goujon sont
au moins en partie nervurées.
17. Palette selon la revendication 11, comprenant en outre un dispositif RFID (110) fixé
à la palette.
18. Palette selon la revendication 11, dans laquelle les chevrons et les planchers sont
composés de bois sec ayant moins d'environ 15 % d'humidité en poids pendant la construction.