[0001] The present invention relates to a rotatably supported play apparatus as well as
a method of producing the play apparatus. The play apparatus accommodates one or more
children in a compartment and rotates due to the changing weight distribution as the
one or more children move around in the compartment.
[0002] Play apparatuses, which can accommodate a child and which by movements of the child
undergo a rotation or pendulum movement around a symmetry axis are known, one example
being
US 20020091002, which shows a barrel-shaped object placed horizontally or with a minor slope angle
on rollers, and where a child may crawl in through at least one free end and by its
activity cause the barrel to rotate. Further rotating play and exercise apparatuses
are described in amongst other
US20030056735,
GB2161711 and
US3119612.
[0003] A so-called "play barrel", which is made of impact-proof plastic, and which children
can crawl into during play is known. However, no means for suspension of this barrel
are provided so that it can make mill- or pendulum movement.
[0004] The above described play apparatuses however have several drawbacks, the most important
being that the safety, of a child utilizing one of these play apparatuses, is not
guaranteed. Typically the known rotating play apparatuses do not adequately prevent
access by the child to potentially dangerous mechanical parts, thus presenting a serious
risk of bodily injury or death to the child utilizing the play apparatus.
[0005] Further, the construction of known play apparatuses is generally complicated, and
any attempt to bolster the safety of the child utilizing the play apparatus would
come at a significant increase in complexity of the construction methods. As the required
safety devices are not inherently incorporated in the previously known construction
methods their incorporation would further result in increased labor and cost. Consequently
it is an object of the present invention to increase the safety for a child utilizing
a play apparatus by preventing access by the child to mechanical parts.
[0006] It is a further object of the present invention to increase the versatility for use
by different children of a play apparatus.
[0007] It is yet a further object of the present invention to simplify the construction
of a play apparatus.
[0008] The above objects are obtained by a play apparatus according to claim 1.
[0009] In preferred embodiments of the play apparatus according to the invention the hollow
shell body is rotationally molded. The hollow shell body is preferably molded from
thermoplastics such as polypropylene.
[0010] In preferred embodiments of the play apparatus according to the invention the hollow
shell body has a diameter sufficient to accommodate one or more children within the
first compartment. The sufficient diameter also depends on the age and size of the
one or more children, however typically the hollow shell body may have a diameter
from about 0.5 m to about 2 m or even larger.
[0011] In preferred embodiments of the play apparatus according to the invention the hollow
shell body is substantially spherical, but other shapes are possible, such as a spheroid,
a cube, a prism, other polyhedrons etc.
[0012] In the context of the present invention the term child or children is to be understood
as comprising any individual playing in or with the play apparatus.
[0013] In preferred embodiments of the play apparatus according to the invention the access
opening has a diameter sufficient to allow one or more children to enter and exit
the first compartment. As an example the access opening may have a diameter of about
0.3 to about 1.5 m.
[0014] In preferred embodiments of the play apparatus according to the invention the axis
intersects the access opening.
[0015] This is advantageous as it lessens the risk that the one or more children fall out
of the hollow shell body during rotation.
[0016] In preferred embodiments of the play apparatus according to the invention the access
opening comprises a circumferential protective border.
[0017] This is advantageous as it protects and provides a good handhold for the one or more
children playing in the play apparatus. The protective border may be made of rubber
or plastics or metal.
[0018] In preferred embodiments of the play apparatus according to the invention the hub
comprises one or more bearings.
[0019] The one or more bearings may be rolling element bearings such as ball bearings or
plain bearings.
[0020] In preferred embodiments of the play apparatus according to the invention the hub
is attached to the hollow shell body by bolts and nuts.
[0021] In preferred embodiments of the play apparatus according to the invention the at
least one axis is a substantially horizontal axis.
[0022] In preferred embodiments of the play apparatus according to the invention the first
shell part is larger than the second shell part.
[0023] In preferred embodiments of the play apparatus according to the invention the present
invention the fixed axle is made of steel.
[0024] In preferred embodiments of the play apparatus according to the invention the fixed
axle is hollow.
[0025] This is advantageous as it reduces the material needed and the weight of the axle.
[0026] In preferred embodiments of the play apparatus according to the invention the first
and second shell parts are joined by bolts and nuts, or alternatively adhesive.
[0027] In preferred embodiments of the play apparatus according to the invention the play
apparatus further comprises a stiffening plate mounted to the first shell part.
[0028] This is advantageous as the stiffening plate stiffens the hollow shell body and further
prevents bolts or nuts, or other fastening means used to attach the hub to the first
shell part, or the second shell part to the first shell part, from harming the parts
of the hollow shell body that the nuts or bolt heads bear against. Washers may also
be provided in preferred embodiments of the play apparatus according to the invention
to protect the hollow shell body from the bolts and/or nuts.
[0029] In preferred embodiments of the play apparatus according to the invention the fixed
axle comprises a first end to be received by the one or more bearings, an intermediate
bent portion, and a second end rotatably supported by a substrate.
[0030] This is advantageous as it allows the play hollow shell body to rotate around two
axes.
[0031] However, in other embodiments of the play apparatus according to the invention the
axle is fixed in the substrate. The substrate may be the ground, or may be block of
concrete placed in the ground or above the ground.
[0032] In preferred embodiments of the play apparatus according to the invention the play
apparatus further comprises a rotation driven part positioned within the second compartment
and rotationally connected to the axle. In further preferred embodiments of the play
apparatus according to the invention the rotation driven part is chosen from the group
comprising a brake, an electrical generator, a sound generating device, a device limiting
the extent of rotation of said hollow shell body, a spiral torsion spring, a ratchet
allowing unidirectional rotation only, a flywheel, a rotational speed governor or
combinations thereof.
[0033] This is advantageous as it may increase the safety for a child playing in the play
apparatus, for example when the rotation driven part is a brake, rotational speed
governor or a device limiting the extent of rotation of the hollow shell body, but
may also provide additional enjoyment to the child playing in the play apparatus when
the rotation driven part is a spiral torsion spring, a ratchet allowing unidirectional
rotation only, a sound generating device, or a flywheel. Further, when the rotation
driven part is an electrical generator, the electrical energy obtained may be used
to energize lights on or within the play apparatus.
[0034] In preferred embodiments of the play apparatus according to the invention the opening
in the hollow shell body closely matches the diameter of the fixed axle.
[0035] In preferred embodiments of the play apparatus according to the invention the opening
in the hollow shell body defines a plain bearing for the axle.
[0036] This is advantageous as a plain bearing comprises a close contact between hole and
shaft, thus preventing any access to the mechanical parts in the second compartment
by the child, and in that the plain bearing may relieve the axle and the hub of some
of the bending forces imparted thereon due to the weight of the hollow shell body
and any child or children playing in the play apparatus.
[0037] In a second aspect of the play apparatus according to the present invention a method
of producing the play apparatus according to the first aspect of the present invention
is provided.
[0038] The play apparatus according to the invention increases the safety for a child utilizing
the play apparatus by preventing access by the child to mechanical parts by containing
the mechanical parts in a second compartment between the shell parts forming the hollow
shell body.
[0039] The play apparatus according to the invention may preferably have an increased versatility
for use by different children by further comprising a rotation driven part. The method
according to the invention simplifies the construction of the play apparatus according
to the invention by reusing the second shell part, which is removed for the creation
of a first shell part comprising a first compartment and an access opening to the
first compartment, to form the second compartment when joined to the first shell part.
[0040] The invention and its many advantages will now be described in more detail with reference
to the accompanying figures in which:
Fig. 1 shows a perspective view of the play apparatus according to the present invention,
Fig. 2 shows a side view of first and second embodiments of the play apparatus according
to the present invention,
Fig. 3 shows a section view of a mold and a cast body for the manufacture of the play
apparatus according to the present invention,
Fig. 4 shows a section view of the cast body being further processed into the first
and second shell parts of the hollow shell body of the play apparatus according to
the present invention,
Fig. 5 shows a section view of the attachment of the hub to the first shell part of
the hollow shell body of the play apparatus according to the present invention,
Fig. 6 shows a section view of the first shell part with attached hub of the hollow
shell body of the play apparatus according to the present invention, further showing
a protective border mounted to the access opening of the first shell part,
Fig. 7 shows a section view of the assembly of the first and second parts of the hollow
shell body of the play apparatus according to the present invention,
Fig. 8 shows a section view of a play apparatus according to the present invention
having an axle rotatably supported by a substrate, and
Fig. 9 shows an enlarged section view of the second compartment between the first
and second parts of the hollow shell body of the play apparatus according to the present
invention.
[0041] Fig. 1 shows a perspective view of the play apparatus, in its whole designated the
reference numeral 10, comprising an axle, in its whole designated the reference numeral
12, comprising a first end, designated the reference numeral 14, not shown in Fig.
1, rotatably supporting a hollow shell, in its whole designated the reference numeral
20. A first compartment, designated the reference numeral 22, is provided in the hollow
shell body 20, and is accessible through an access opening, designated the reference
numeral 26, the access opening comprising a protective border, designated the reference
numeral 28, along the circumference of the access opening 26.
[0042] Protective border 28 has the purpose of protecting a child during entry/exit of the
first compartment 22, and general play with the play apparatus 10, as well as other
children or adults playing with the play apparatus 10, from the edges of the access
opening 26 which may be rough due to the production method of the play apparatus 10
as will be described in further detail below. The protective border 28 may be made
from steel, rubber or plastics.
[0043] The hollow shell body 20 further comprises a second compartment, designated the reference
numeral 24, which is not shown in Fig. 1, which will be described in more detail in
relation to Figs. 7-9 below.
[0044] The axle 12 further comprises a second end, designated the reference numeral 16,
which is rotatably supported by a base, designated the reference numeral 6, which
base 6 in Fig. 1 is mounted in the ground, designated the reference numeral 2. An
intermediate bent portion, designated the reference numeral 18, having a bend of approximately
90 degrees, although larger or smaller bends are possible, is provided between the
ends 14, 16 of the axle 12.
[0045] Fig. 1 further shows a child, designated the reference numeral 4, playing in the
play apparatus 10 by moving around in the first compartment 22, whereby the shell
body 20 may rotate and/or make a mill or pendulum movement, as indicated by the double
arrow A, due to the changing weight distribution as the child 4 moves around within
the first compartment 22.
[0046] Further, hollow shell body 20 may be rotated by manual application of force by the
child 4, or another child, group of children or adults, standing on the ground 2 next
to the hollow shell body 20. Further, as indicated by the double arrow B, the axle
12 may be rotated around the axis of the second end 16 of the axle 12 by child 4,
another child, group of children or adults, standing on the ground 2, thus allowing
rotation of the hollow shell body 20 and the first compartment 22 around two axes.
[0047] Fig. 2A shows a section view of a preferred embodiment of the play apparatus 10,
i.e. where hollow shell body 20 is substantially spherical. However, as is shown in
Fig. 2B showing a section view of an alternative embodiment, in its whole designated
the reference numeral 10
l, a barrel shaped hollow shell body, in its whole designated the reference numeral
20
l, is also possible. Further shapes such as a spheroid, a cube, a prism, other polyhedrons
etc are also possible as will be described in more detail below.
[0048] With reference to Fig. 2A, the play apparatus 10 is constructed from first and second
shell parts, designated the reference numerals 30 and 32 respectively, joined by bolts,
not shown, and nuts, one of which is designated the reference numeral 100. Fig. 2A
also shows the base 6 which may be anchored in a hole dug in the ground 2, for example
by pouring concrete around the base 6.
[0049] Further details of the construction of the play apparatus 10 will be evident from
the discussion related to Figs. 3-9 below.
[0050] In Fig. 2B features different from those in Fig. 2A are referenced by X
l, where X is the reference numeral of the corresponding feature in Fig. 2A. The play
apparatuses 10 and 10
l are substantially alike, the only difference being a barrel shaped first shell part
30
l resulting in a barrel shaped hollow shell part 20
l, and the addition to a portion of the exterior of the hollow shell body 20
l in Fig. 2B of a friction layer, designated the reference numeral 34
l, for example comprising rubber, for providing a surface on which a child or other
user of the play apparatus 10
l may sit, crawl, walk, run or stand upon. Such a friction layer may also be provided
on the hollow shell body 20 of the play apparatus 10 shown in Fig. 2A, as well as
on the interior surfaces of the first compartments 22 and 22
l, respectively.
[0051] The production method of the play apparatus 10 will now be described in more detail
with reference to Figs. 3-9.
[0052] Fig. 3 shows a section view of a generally spherical mold, in its whole designate
d the reference numeral 40, comprising first and second mold parts, designated the
reference numerals 42 and 44 respectively, held together along first and second flanges,
designated the reference numerals 46 and 48 respectively, the first mold part 42 comprising
a flat wall part, designated the reference numeral 50, and containing a cast body,
designated the reference numeral 60, for the manufacture of the play apparatus 10
according to the present invention.
[0053] The cast body 60 has been cast through rotational molding: a plastic substrate is
positioned within the mold 40 which is subsequently heated to melt the plastic and
bi-axially rotated so that the plastic is evenly deposited on the inner surfaces of
the mold 40, whereafter the mold 40 is cooled and the mold parts 42 and 44 separated
to liberate the cast body 60 as shown in Fig. 4.
[0054] Fig. 4 shows a section view of the cast body 60 being further processed by cutting
along line X-X into the first and second shell parts 30 and 32 which are to become
the hollow shell body 20 of the play apparatus 10 according to the present invention
upon assembly as described below. The cast body 60 further comprises, opposite to
the line X-X, a wall portion, designated the reference numeral 62.
[0055] As previously stated, the mold, and consequently the cast body, may have numerous
other shapes such as spheroid, a cube, a prism, other polyhedrons, but preferable
shapes are those where a portion of the cast body may be cut off and used to form
a second compartment as will be described in more detail with reference to Figs. 7-8
further below.
[0056] To simplify the cutting of the cast body 60 the mold 40 can be modified to produce
a cast body having a circumferential groove or rib along cutting line X-X.
[0057] In Fig. 5 the cast body 60 has been separated into the first and second shell parts
30 and 32 as indicated by arrow C. A hub, in its whole designated the reference numeral
70, comprising first and second fastening plates, designated the reference numeral
82 and 86, respectively, spaced apart by hollow cylinders, one of which is designated
the reference numeral 86, a sleeve, designated the reference numeral 90, for receiving
and retaining an axle by a screw, designated the reference numeral 96, not shown in
Figs. 5-6, driven into a radial screw hole, designated the reference numeral 94, and
bearings, one of which is designated the reference numeral 92, not shown in Fig. 5,
is subsequently attached to the exterior of the wall portion 62 of the first shell
part 30 while a stiffening plate, designated the reference numeral 72, is introduced
into the first compartment 22 and attached to the interior surface of the wall portion
62 using a first plurality of bolts, one of which is designated the reference numeral
74, and a first plurality of nuts, one of which is designated the reference numeral
76, the bolts 74 passing through a first plurality of holes provided in the stiffening
plate 72, the wall portion 62 and in the stiffening plates 82-84 with corresponding
hollow cylinders 86, one hole of each plurality being designated the reference numerals
78, 64 and 88, respectively, to engage the first plurality of nuts 76.
[0058] The holes 64 in the wall portion 62 may be drilled after the molding of the cast
body 60, or may advantageously be created during the molding by providing a mold having
interior protrusions on the interior surface of the flat wall part 50 of the mold
40, thus dispensing with the need for drilling the holes.
[0059] The wall portion 62 further comprises a second plurality of holes, one of which is
designated the reference numeral 66, which will be described in more detail with reference
to Fig. 7 below.
[0060] The holes 78 in the stiffening plate 72 may be drilled, punched or created by other
suitable techniques dependent on the material of the stiffening plate 72.
[0061] The stiffening plate 72 further comprises a second plurality of holes, one of which
is designated the reference numeral 80, which will be described in more detail with
reference to Fig. 7 below.
[0062] In order to prevent any sharp edges, possible resulting from the cutting shown in
Fig. 4, and to provide a handhold during play in the play apparatus 10, the protective
border 28 is then fastened to the circumference of the access opening 26, as shown
in Fig. 6, which further shows the first shell part 30 with attached hub 70 and stiffening
plate 72.
[0063] As an alternative or in addition to including the protective border 28 as shown in
Fig. 6, the first mold part 42 may advantageously be designed to produce an alternative
cast body having an increased circumferential thickness at the cutting line X-X, thus
resulting in an access opening having a thicker edge, which may subsequently be smoothened
as needed by machining or grinding to prevent any sharp edges and provide a handhold
during play in the play apparatus 10.
[0064] Fig. 6 further shows the bearings 92 which allow the fastening plates 82 and 84 including
the hollow cylinder 86, and thereby the thereto connected first shell part 30, to
rotate relative the sleeve 90, and vice versa. The bearing 92 is typically a ball
bearing, which is known in the art, comprising an inner race fastened to the sleeve
90, and an outer race fastened to the fastening plates 82 and 84 and/or the hollow
cylinders 86, further comprising balls running between the races. However, other types
of bearings, including other types of rolling element bearings and plain bearings
are possible.
[0065] Further, although two bearings 92 are shown in Figs. 6-9, one, or more bearings may
be used.
[0066] Fig. 6 also shows the second shell part 32 being provided with a hole, designated
the reference numeral 36, which may be drilled or molded as previously described.
[0067] Fig. 7 shows a section view of the assembly of the first and second parts 30 and
32 of the hollow shell body 20 of the play apparatus 10 according to the present invention.
The first end 14 of the axle 12 is passed through the hole 36 and into the sleeve
90 of the hub 70 to be retained therein by driving the screw 96 through
the radial screw hole 94 to engage the first end 14. Upon attachment of the first end
14 of the axle 12 to the hub 70 the second shell part 32 may be advanced along the
first end 14 of the axle 12 towards the first shell part 30 to cover the hub 70 and
form the second compartment 24, whereby the hub 70 becomes enclosed in the second
compartment 24.
[0068] The second shell part 32 is further provided with a second plurality of holes, one
of which is designated the reference numeral 38, which are used in combination with
the second plurality of holes 80 and 66 in the stiffening plate 72 and wall portion
62, respectively, to allow a second plurality of bolts, one of which is designated
the reference numeral 98, to pass through the holes 80, 66 and 38 to engage the second
plurality of nuts 100, thus joining the shell parts 30 and 32 to form the hollow shell
body 20 of the play apparatus 10 according to the present invention.
[0069] Subsequently, as shown in Fig. 8, the second end 18 of the axle 12 is mounted into
the base 6 in the ground 2. The base 6 may comprise a sleeve placed in a hole in the
ground whereby uncured concrete is poured around the sleeve, the concrete the being
then allowed to cure, rotation between the sleeve and the second end 16 of the axle
12 being possible, or alternatively the second end 16 of the axle 12 may be non-rotatably
attached to the base 6 by allowing the concrete to contact the second end 16 of the
axle 12 directly.
[0070] As previously stated, the mold 40 shown in Fig. 3 could have numerous shapes to produce
cast bodies of numerous shapes, including for the alternative play apparatus 10
l shown in Fig. 2B. As is evident from Figs. 7-8 the joining of the shell parts 30
and 32 form the hollow shell body 20 comprising the second compartment 24 which is
non-accessible by the child 4 or other children or users of the play apparatus. Thus
it should be ensured that a differently shaped cast body may be cut in such a way
that the shell bodies can be joined so that the second compartment 24 is formed, and
that the child 4 or other children or users of the play apparatus 10 are prevented
access to the second compartment 24.
[0071] In Figs. 3-9 the wall portion 62 is shown as being substantially flat, and it is
also preferred that the wall portion 62 is flat to simplify assembling the shell parts
30, 32 with the hub 70 and the stiffening plate 72, however alternative embodiments
having non-flat wall portions 62, such as a spherical cap shaped wall portion, are
possible as long as the hub 70, the stiffening plate 72 and the second shell part
32 can be securely fastened to the first shell part 30.
[0072] In advantageous embodiments of the play apparatus 10 according to the present invention
the second compartment may further comprise a rotation driven part, designated the
reference numeral 102, attached to the hub 70 or the wall portion 62 as shown in Fig
9. The rotation driven part 102 is driven by a pinion, designated the reference numeral
104, engaging a gear, designated the reference numeral 106, fixed to the first end
14 of the axle 12. As the hollow shell body 20 rotates around the axle 12 the rotation
driven part 102 rotates around the gear 106 causing the pinion 104 to rotate, thus
driving the rotation driven part 102.
[0073] The rotation driven part may for example be a hydraulic brake whereby an agitator
disposed in an oil bath within the hydraulic brake agitates the oil causing a friction
force thus restricting the rotation speed of the hollow shell body 20. This may be
useful for preventing potentially unsafe rotation speeds.
[0074] Alternatively the rotation driven part 102 may comprise a electrical generator, a
sound generating device, a device limiting the extent of rotation of said hollow shell
body, a spiral torsion spring, a ratchet allowing unidirectional rotation only, a
flywheel, a rotational speed governor or combinations thereof providing increased
safety, enjoyment and/or usefulness by different users, in the play apparatus 10 according
to the present invention.
[0075] Optionally a counterweight, designated the reference numeral 108, may be provided
opposite the rotation driven part 102 to counterbalance the weight of the rotation
driven part 102.
[0076] Depending on the size and space needed by the rotation driven part 102 and the gear
106 the second shell part 32 may be modified as needed to cover the hub 70, the gear
106 and the rotation driven part 102 in order to form the second compartment 24, for
example by modifying the shape of the first part 42 of the mold 40.
[0077] The hole 36 in the second shell part 32 should preferably be fabricated to have substantially
the same inner diameter as the outer diameter of the first end 14 of the axle 12.
This has the advantage that the child 4, or any other child, group of children or
adults are prevented from gaining access to the second compartment 24, thus increasing
the safety of the play apparatus 10.
[0078] A further advantage is that the hole 36 in the second shell part 32 may act as a
plain bearing or bushing as the hollow shell body 20 rotates around the first end
14 of the axle 12. This may relieve the first end 14 and the hub 70 of some of the
bending forces imparted thereon due to the weight of the hollow shell body 20 and
the child 4 playing in the play apparatus 10.
[0079] In analogy with previously mentioned possible modifications of the mold 40 to achieve
various advantageous embodiments, the mold 40 may be modified to produce a cast body
60 resulting in an increased thickness of material around the hole 36 in the second
shell part 32 to further increase the load supporting properties of a plain bearing
realized by the hole 36 / the first end 14 of the axle 12 interface.
[0080] As is evident from Fig. 8 and Fig. 9 the play apparatuses 10 and 10
l according to the present invention provides a high level of safety for children and
other users of the play apparatus as the rotational connection between the axle 12
and the hollow shell body 20 is enclosed in the second compartment 24. To even further
enhance safety the nuts 100 and the bolt heads of bolts 74 and 98 may be covered by
plastic or rubber caps.
[0081] Further, as shown in Figs. 3-8, the method of producing the play apparatuses 10 and
10
l according to the present invention is simple and conserves material as the cutting
of the cast body 60 provides both the access opening 26 as well as the second shell
part 32 used to cover the hub 70. Additionally only one molding step is required,
further rationalizing the method.
[0082] Although Figs. 3-8 shows a method for producing the play apparatus 10, the same method
is applicable for producing the alternative play apparatus 10
l upon modification of the mold 40 to obtain a cast body resulting in the alternative
first shell part 30
l. The mold 40 may be otherwise modified to yield cast bodies having numerous other
shapes such as spheroid, a cube, a prism, or other polyhedrons.
[0083] Although the present invention has been described above with reference to specific
advantageous embodiments of the system and method according to the invention, it is
however contemplated that numerous amendments and variations may be provided without
deviating from the spirit of the invention as defined in the appended claims and the
invention is therefore deemed to be understood in the broadest sense of the claims.
List of parts with reference to the figures
| A. Double arrow indicating possible rotation |
| B. Double arrow indicating possible rotation |
| C. Arrow indicating separation |
| X-X. Cut line |
| 2. Ground |
| 4. Child |
| 6. Base |
| 10. Play apparatus |
| 10l. Play apparatus (second embodiment) |
| 12. Axle |
| 14. First end |
| 16. Second end |
| 18. Intermediate bent portion |
| 20. Hollow shell body |
| 20l. Hollow shell body (second embodiment) |
| 22. First compartment |
| 24. Second compartment |
| 26. Access opening |
| 28. Protective border |
| 30. First shell part |
| 30l. First shell part (second embodiment) |
| 32. Second shell part |
| 34l. Friction layer (second embodiment) |
| 36. Hole |
| 40. Mold |
| 42. First mold part |
| 44. Second mold part |
| 46. First flange |
| 48. Second flange |
| 50. Wall part |
| 60. Cast body |
| 62. Wall portion |
| 64. Hole |
| 66. Hole |
| 70. Hub |
| 72. Stiffening plate |
| 74. Bolt |
| 76. Nut |
| 78. Hole |
| 80. Hole |
| 82. First fastening plate |
| 84. Second fastening plate |
| 86. Hollow cylinder |
| 88. Hole |
| 90. Sleeve |
| 92. Bearing |
| 94. Radial screw hole |
| 96. Screw |
| 98. Bolt |
| 100. Nut |
| 102. Rotation driven part |
| 104. Pinion |
| 106. Gear |
| 108. Counterweight |
1. A play apparatus (10) comprising:
a hollow shell body (20) comprising a first compartment (22) for accommodating one
or more children (4),
an access opening (26) providing access by said one or more children (4) to said compartment
(22), and
a hub (70) for rotation of said hollow shell body (20) around at least one axis (12),
characterized by
said hollow shell body (20) comprising first and second shell parts (30, 32) joined
together,
said hub (70) being positioned in a second compartment (24) between said first and
second shell parts (30, 32),
said hub (70) comprising one or more bearings (92) adapted to receive a fixed axle
(12) so that said hollow shell body (20) may rotate around said fixed axle (12), and,
said axle (12) passing through an opening (36) in said hollow shell body (20), said
opening (36) further defining a plain bearing for said axle (12).
2. The play apparatus (10) according to claim 1, said hollow shell body (20) being rotationally
molded.
3. The play apparatus (10) according to any preceding claim, said axis intersecting said
access opening (26).
4. The play apparatus (10) according to any preceding claim, said access opening (26)
comprising a circumferential protective border (28).
5. The play apparatus (10) according to any preceding claim, said play apparatus (10)
further comprising a stiffening plate (72) mounted to said first shell part (30).
6. The play apparatus (10) according to any preceding claim, said fixed axle (12) comprising
a first end (14) to be received by said one or more bearings (92), an intermediate
bent portion (18), and a second end (16) rotatably supported by a substrate (18, 2).
7. The play apparatus (10) according to any preceding claim, said play apparatus (10)
further comprising a rotation driven part (102) positioned within said second compartment
(24) and rotationally connected to said axle (12).
8. The play apparatus (10) according to claim 7, said rotation driven part (102) being
chosen from the group comprising a brake, a generator, a sound generating device,
a device limiting the extent of rotation of said hollow shell body, a spiral torsion
spring, a ratchet allowing unidirectional rotation only, a flywheel, a rotational
speed governor or combinations thereof.
9. A method of producing the play apparatus (10) according to any preceding claim comprising
the steps of:
rotationally molding a plastic material into a cast body (60),
cutting said cast body (60) along a cutting line (X-X) into first and second shell
parts (30, 32), said first shell part (30) comprising a first compartment (22) comprising
an access opening (26), attaching a hub (70) to the exterior shell of said first shell
part (30),
characterized by,
passing a fixed axle (12) through said second shell part (32) and into said hub (70),
and,
joining said first and second shell parts (30, 32) so that said hub (70) becomes positioned
in a second compartment (24) between said first and second shell parts (30, 32).
10. The method according to claim 9, further comprising the step of:
providing a rotation driven part (102) within said second compartment and rotationally
connecting said rotation driven part (102) to said axle (12) prior to said joining
of said first and second shell parts (30, 32).
11. The method according to any of the claims 9-10, further comprising the step of:
attaching a protective border (28) to said access opening (26).
12. The method according to any of the claim 10-11, further comprising the step of:
attaching a stiffening plate (72) to said first shell part (30).