TECHNICAL FIELD
[0001] The present invention relates to a plate tensioning shelf, and in particular to a
removable plate tensioning shelf for accommodating articles.
BACKGROUND OF THE INVENTION
[0002] Normally, a tensioning shelf mainly comprises two lateral racks and several plates
mounted between two lateral racks. The plates are fixed by Y-shaped joints which are
welded to the plates and tighten the pillars of two lateral racks. This shelf's structure
is complicated, and its manufacture is also inconvenient. During assembly, the distance
between two lateral racks can not be adjusted at will, and it is also not allowed
to add additional support racks to the shelf to enhance the weight-carrying capability
of the plates. Thus, the integrity of the plates for a wider shelf is not enough to
carry heavy weight. Therefore, the size and weight-carrying capability of the shelf
are limited.
SUMMARY OF THE INVENTION
[0003] Having outlined the state of the prior art and its disadvantages, it is an objective
of the present invention to provide a plate tensioning shelf with simple structure,
and wherein it is allowed to adjust the width of the plate tensioning shelf at any
moment and add additional support racks to the shelf to enhance the weight-carrying
capability. Furthermore, a plurality of shelves can be joined with each other.
[0004] The above objective of the present invention is achieved by the following technical
solutions:
[0005] A plate tensioning shelf comprises two lateral racks and plates mounted between the
racks. A plurality of grooves for engaging with the surface configuration of the pillars
of the lateral racks are provided from corners of both sides of each of the plates.
The grooves hold the pillars firmly and tighten the plates firmly in the racks when
the plates are mounted in the racks.
[0006] Preferably, small crown-shaped protrusions are further provided in the grooves of
the plates, and recesses corresponding to the protrusions are provided on the pillars.
The protrusion is of a size adapted to be completely contained in the recess, and
as a result, the plates are self-locked.
[0007] Preferably, the plate may be a plastic plate. The plastic plates can further facilitate
the fastening and will not cause the surface damage of the pillars because of the
better elasticity of the plastic plate.
[0008] With the above-described technical solutions, the present invention has the following
advantages:
[0009] By providing grooves corresponding to the configuration of the pillars of the racks,
the pillars can be firmly surrounded by the grooves to tighten the plates. The grooves
may also be arranged in a serrated manner, and hence it enables distance adjustment
between two lateral racks at any moment during assembly, and it is also allowed to
add other support racks to the shelf to enhance its weight-carrying capability. Thus,
it is possible to mount a wider shelf or to join several shelves together to improve
its weight-carrying capability. Therefore, the structure of the present invention
is simple, and it is allowed to adjust the width at any moment. It is also possible
to add additional support racks to the shelf. Moreover, a plurality of shelves can
be joined together. The carrying capability is enhanced accordingly. Furthermore,
the shelf may be triangular sector-shaped; thus it can be assembled to be cylindrical
or S-shaped by joining several triangular sector-shaped shelves together, which is
more convenient and good-looking.
BRIEF DESCRIPTION OF THE DRAWINGS
[0010]
Fig. 1 is a schematic view showing a plate tensioning shelf;
Fig. 2 is a schematic view the plate tensioning shelf as shown in Fig.1 before assembly;
Fig. 3 is a schematic view showing a plate tensioning shelf without additional grooves
for engaging with the pillars;
Fig. 4 is a schematic view showing a plate tensioning shelf with a plurality of grooves
for engaging with the pillars;
Fig. 5 is a perspective assembly view of a plate tensioning shelf with plates having
a plurality of grooves;
Fig. 6 is a perspective view of a plate tensioning shelf with additional support racks
between the lateral racks;
Fig. 7 is a schematic view showing a plate engaging with a pillar when the pillar
is a cylindrical post;
Fig. 8 is a schematic view showing a plate engaging with a pillar when the pillar
is a rectangular post;
Fig. 9 is a schematic view showing a plate engaging with a pillar when the pillar
is a double-cylindrical post;
Fig. 10 is a schematic view showing a plate engaging with a pillar when the pillar
is a connected double-rectangular post;
Fig. 11 is a schematic view showing a plate engaging with a pillar when the pillar
is a hollow and double-rectangular post;
Fig. 12 is a schematic sectional view showing a plate engaging with a pillar when
the pillar is a cylindrical post and a small crown-shaped protrusion is formed in
the groove of the plate;
Fig. 13 is a schematic sectional view showing a plate engaging with a pillar when
the pillar is a rectangular post and small crown-shaped protrusions are formed in
the groove of the plate;
Fig. 14 is a schematic sectional view showing a plate engaging with a pillar when
the pillar is a double-cylindrical post and small crown-shaped protrusions are formed
in the grooves of the plate;
Fig. 15 is a perspective assembly view showing a plate tensioning shelf which is of
triangular sector-shaped plates;
Fig. 16 is an exploded view showing a plate tensioning shelf which is of triangular
sector-shaped plates;
DETAILED DESCRIPTION OF THE INVENTION
[0011] The present invention will be further described in the following embodiments with
reference to the accompanying drawings.
[0012] Referring to Figs. 1 to 16, a plate tensioning shelf comprises: two lateral racks
1 and several plates 2 mounted between the racks 1. A plurality of grooves 4 for engaging
with the surface configuration of the pillars 3 of the racks 1 are provided on both
sides of each of the plates 2 from corners thereof. The grooves 4 hold pillars 3 firmly
and tighten the plates 2 firmly in the racks 1 when the plates 2 are mounted in the
racks 1.
[0013] The pillar 3 of the rack 1 may be a cylindrical, rectangular, hexagonal, double-cylindrical,
double-rectangular, double-rectangular and hollow, or double-hexagonal post. All of
these configurations are within the scope of the invention. According to the integrity
required, single or double pillars may be provided. The grooves 4 of the plates 2
are semi-circular, semi-square or semi-hexagonal. The number of the grooves 4 is arranged
according to the manner of use, with at least one groove being arranged on each of
the four corners, and at most grooves being arranged on the entire front and back
sides. Thus, it is allowed to set the distance between two lateral racks 1 flexibly,
or add additional support racks between the two lateral racks, and it is also allowed
to connect two or more shelves together by using the plates 2.
[0014] The configuration of the pillars and the arrangement of the grooves are not limited
to the forms as described.
[0015] Referring to Figs. 12 to 14, small crown-shaped protrusions 5 are provided in the
grooves 4 of the plates 2, and recesses 6 corresponding to the protrusions 5 are provided
on the pillars 3. The protrusion 5 is of a size adapted to be completely contained
in the recess 6, and as a result, the plates 2 are self-locked and will not become
loose easily.
[0016] Referring to Figs. 15 and 16, the shelf of the present invention may be triangular
sector-shaped. It can be assembled into cylindrical or S-shaped shelf by joining several
triangular sector-shaped shelves together, which is more convenient and good-looking.
[0017] Preferably, the plates are made of plastic. The plates with grooves are manufactured
by one-step forming process. For the good elasticity, the plates can further facilitate
the fastening and will not cause pillars surface damage. Meanwhile, the cost is also
reduced.
[0018] Therefore, the structure of the present invention is simple. It is allowed to adjust
the width at any moment and add support racks to racks to enhance the carry capability.
1. A plate tensioning shelf, comprising:
two lateral racks (1) having pillars (3); and
plates (2) mounted between the lateral racks (1);
characterized in that a plurality of grooves (4) for engaging with the surface configuration of the pillars
(3) of the lateral racks (1) are provided on both sides of each of the plates (2)
from corners thereof, the grooves (4) hold the pillars (3) tightly and tighten the
plates (2) in the lateral racks (1) when the plates (2) are mounted on the lateral
racks (1).
2. The plate tensioning shelf of claim 1, characterized in that small crown-shaped protrusions (5) are provided in the grooves (4) of the plates
(2), and recesses (6) corresponding to the protrusions (5) are provided on the pillars
(3), and each of the protrusions (5) is of a size adapted to be completely contained
in the recess (6) to enable the plates (2) to be self-locked.
3. The plate tensioning shelf of claim 1, characterized in that the plates (2) are plastic plates.