Storage container, bearing member and packaging

The tilted stacking and support member configuration in the storage container allow for a substantial increase in the number of glass plates stored without requiring a larger container, addressing the capacity limitations of existing designs.

JP2025131260APending Publication Date: 2025-09-09AGC INC
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Patent Information

Application Number
JP2024028888
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-02-28
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

Existing storage containers for large glass substrates are limited in the number of glass sheets they can store due to the fixed size of the bottom plate, necessitating the use of larger containers to increase capacity.

Method used

A storage container design that allows for tilted stacking of glass plates with a support member attached to the bottom plate, supporting the front pressing frame to reduce its footprint, enabling more glass plates to be stored without enlarging the container.

Benefits of technology

The tilted stacking and use of a support member enable a significant increase in the number of glass plates that can be stored, enhancing transport efficiency and reducing the need for larger containers.

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Abstract

To provide a plate-like body storage container capable of storing more plate-like bodies in a stacked state.SOLUTION: The present invention relates to a storage container 100 that stores a plurality of glass plates G in an inclined stacked state, and the storage container comprises: a pedestal 110; a bottom plate 120 which is provided on the pedestal 110 to bear a lower edge of a glass plate G; a back plate 130 which is provided on the pedestal 110 to receive a principal surface of the glass plate G; a front press frame 151 which presses a front side of the stacked glass plate G; and a support member 160 which is mounted on the bottom plate 120 to support a lower end of the front press frame 151.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a storage container for plate-shaped objects, a support member, and a package. [Background technology]

[0002] In recent years, there has been a growing need for larger glass substrates for FPDs (Flat Panel Displays), such as glass substrates for liquid crystal displays and plasma displays. Containers used to store and transport such large glass plates are required to transport the glass plates stacked on the base of the container stably without movement, to prevent the glass plates from shifting during transport and causing defects such as chips or cracks.

[0003] A known storage container for storing such stacked glass plates is one that includes a bottom plate that receives the lower edges of the stacked glass plates and a back plate that receives the main surfaces of the glass plates, and holds the stacked and stored glass plates by pressing them down from the front side with a front frame via a cushioning material (see, for example, Patent Document 1). [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2011-63274 Summary of the Invention [Problem to be solved by the invention]

[0005] In order to improve transport efficiency, it is necessary to store more glass sheets in a storage container. However, the size of the bottom plate that receives the lower ends of the stacked glass sheets is almost fixed, and the number of glass sheets that can be stored is limited. Therefore, in order to store more glass sheets, it was necessary to replace the existing storage container with a storage container that has a larger bottom plate.

[0006] SUMMARY OF THE INVENTION It is therefore an object of the present invention to provide a storage container and a package that can store a greater number of stacked plate-like bodies. [Means for solving the problem]

[0007] The present invention comprises the following configurations. A plate-shaped body storage container that stores a plurality of plate-shaped bodies in a tilted stacked state, With a base, a bottom plate provided on the base and supporting a lower edge of the plate-shaped body; a back plate provided on the base and supporting a main surface of the plate-shaped body; a front pressing frame that presses the front side of the stacked plate-like bodies; a support member attached to the bottom plate and supporting a lower end of the front pressing frame; Equipped with Storage container.

[0008] A support member used in a plate-like body storage container that stores a plurality of plate-like bodies in a tilted stacked state, The storage container includes: With a base, a bottom plate provided on the base and supporting a lower edge of the plate-shaped body; a back plate provided on the base and supporting a main surface of the plate-shaped body; a front pressing frame that presses the front side of the stacked plate-like bodies, The support member is The bottom plate is attached to support the lower end of the front pressing frame. Support member.

[0009] The storage container; The plurality of plate-shaped bodies are provided. Packaging. [Effects of the Invention]

[0010] According to the present invention, a larger number of plate-shaped bodies can be stacked and stored. [Brief explanation of the drawings]

[0011] [Figure 1] FIG. 1 is a front perspective view of a storage container according to an embodiment of the present invention. [Figure 2] FIG. 2 is a side view of a storage container according to an embodiment of the present invention. [Figure 3] FIG. 3 is a front view of a storage container according to an embodiment of the present invention. [Figure 4] FIG. 4 is a side view of a plate stack in which glass plates are stacked and stored in a storage container. [Figure 5] FIG. 5 is a perspective view of a part of the bottom plate to which the support member is attached and the surrounding area. [Figure 6] FIG. 6 is a schematic side view of the front edge portion of the bottom plate of the container to which the support member is attached. [Figure 7] FIG. 7 is a perspective view of the support member as viewed from the opposite side to the side where it is attached to the bottom plate. [Figure 8] FIG. 8 is a perspective view of the support member as seen from the side where it is attached to the bottom plate. [Figure 9] FIG. 9 is a schematic side view of the front edge portion of the bottom plate of a storage container to which a support member according to the first modification is attached. [Figure 10] FIG. 10 is a perspective view of the support member according to the first modification, viewed from the side opposite to the side where it is attached to the bottom plate. [Figure 11] FIG. 11 is a perspective view of a part of the bottom plate to which the support member according to the second modification is attached and the surrounding area. [Figure 12] FIG. 12 is a schematic side view of the front edge portion of the bottom plate of a storage container to which a support member according to the second modification is attached. DETAILED DESCRIPTION OF THE INVENTION

[0012] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. Fig. 1 is a front perspective view of a storage container 100 according to an embodiment of the present invention. Fig. 2 is a side view of the storage container 100 according to an embodiment of the present invention. Fig. 3 is a front view of the storage container 100 according to an embodiment of the present invention.

[0013] The plate stack 1 is a laminate formed by stacking a plurality of plate-shaped plates. FIGS. 1 to 3 show a storage container 100 in which the plate stack 1 is stored. That is, FIGS. 1 to 3 show a package including the storage container 100 and the plate stack 1. In this example, the plate-shaped plates are glass plates G formed in a rectangular shape in a plan view, and the storage container 100 stores a plurality of glass plates G in a stacked state. The storage container 100 stores large-sized glass plates G, such as a fifth-generation size (long side 1,300 mm, short side 1,000 mm), a fifth-generation size (long side 1,500 mm, short side 1,300 mm), or a sixth-generation size (long side 1,850 mm, short side 1,500 mm). The thickness of the glass plates G is, for example, 0.3 mm or more and 0.7 mm or less. The storage container 100, which stores a plurality of stacked large glass sheets G, is transported by being placed on the loading platform of a transport vehicle (for example, a trailer or truck).

[0014] The glass plate G is made of an alkali-free glass material used for flat panel displays (FPDs) such as LCDs (Liquid Crystal Displays) and OLEDs (Organic Light-Emitting Diodes).

[0015] FIG. 4 is a side view of a plate stack 1 in which glass plates G are stacked and stored in a storage container 100. As shown in FIG. As shown in Fig. 4, glass plates G are stacked one on top of the other with interleaving paper 2 between them. The interleaving paper 2 is formed into a rectangular shape with an area larger than that of the glass plates G. As a result, the interleaving paper 2 is interposed between the glass plates G so that its edges extend beyond the edges of the glass plates G.

[0016] As shown in Figs. 1 to 3, the storage container 100 is mainly composed of a base 110, a bottom plate 120, and a back plate 130. The bottom plate 120 and the back plate 130 are provided on the upper part of the base 110. The bottom plate 120 supports the lower edge of the plate stack 1, and the back plate 130 receives the main surface of the plate stack 1.

[0017] The top surface of the base 110 is a flat mounting surface 111. Openings 112 are formed on the front, rear and both side surfaces of the base 110, through which the claws of a forklift (not shown) are inserted and removed.

[0018] As shown in FIGS. 1 to 3, the bottom plate 120 is supported by beams 121 on the upper part of the support surface 111 of the base 110. The bottom plate 120 is disposed at an angle with respect to the support surface 111 of the base 110. The lower edge of the plate stack 1 is placed on the upper surface of the bottom plate 120. A buffer sheet 123 and a protective sheet 124 are attached in this order to the upper surface of the bottom plate 120. The buffer sheet 123 is, for example, a sheet made of ethylene vinyl acetate (EVA), and the protective sheet 124 is, for example, a sheet made of expanded polypropylene (PP).

[0019] The back plate 130 is supported above the support surface 111 of the base 110 by a frame member 131. The back plate 130 is erected at an angle relative to the support surface 111 of the base 110. The main surface of the glass plate G of the plate stack 1 is superimposed on the front side of the back plate 130. A buffer sheet 133 and a protective sheet 134 are attached in this order to the front surface of the back plate 130. The buffer sheet 133 is, for example, a sheet made of ethylene vinyl acetate (EVA), and the protective sheet 134 is, for example, a sheet made of foamed polypropylene (PP).

[0020] In the storage container 100, the angle formed between the bottom plate 120 on which the lower edge of the plate-like body stack 1 rests and the back plate 130 that receives the main surfaces of the glass plates G of the plate-like body stack 1 is 90° or approximately 90°. The plate-like body stack 1 is stored in the storage container 100 in a leaning state at an angle, with the lower edge supported by the bottom plate 120 and the main surfaces of the glass plates G received by the back plate 130. In this way, in the storage container 100, a storage section S is formed by the bottom plate 120 and the back plate 130, and the plate-like body stack 1 is stored in this storage section S.

[0021] In the storage container 100, the plate stack 1 is stored leaning at an angle in a storage section S formed by a bottom plate 120 and a back plate 130. In this stored state, a protective plate 150 made of, for example, resin is superimposed on the front side of the stored plate stack 1 in the storage container 100. Furthermore, a front pressing frame 151 is disposed on the front side of this protective plate 150. The front pressing frame 151 is formed by joining a plurality of rectangular timbers 152 aligned in the vertical and horizontal directions in a lattice pattern. The rectangular timbers 152 are made of aluminum.

[0022] The front holding frame 151 has a plurality of handles 153 (eight in this example) attached to its front side. The handles 153 are provided on vertical square bars 152 that make up the front holding frame 151. Three handles 153 are attached to each of the two vertical square bars 152 that make up the sides of the front holding frame 151, at equal intervals along the length. One handle 153 is attached to each of the two vertical square bars 152 near the center of the front holding frame 151, at the center in the vertical direction. These handles 153 are metal rods shaped like the letter C in side view, and are fixed to the square bars 152, for example, by screws. The front holding frame 151 with the multiple handles 153 attached can be easily carried and attached to and detached from the storage container 100 by gripping the handles 153.

[0023] A plurality of belts 155 (three in this example) are hung around the storage container 100 in which the protective plate 150 and the front holding frame 151 are superimposed on the front side of the plate stack 1. Lashing belts can be used as these belts 155. One end of each of these belts 155 is fixed to a fastener 156 such as an eyebolt or a carabiner provided on one side of the frame member 131. Furthermore, these belts 155 are passed through the gap between the handle 153 of the front holding frame 151 and the square bar 152, and the other end is taken up and fixed by a ratchet (not shown) provided on the other side of the frame member 131. In this way, the belts 155 are hung in front of the front holding frame 151 while being prevented from falling off by the handle 153.

[0024] Then, by pulling and fixing the belt 155 with the ratchet, the plate stack 1, the protective plate 150, and the front pressing frame 151 are fastened together by the belt 155. Therefore, the plate stack 1 is pressed against the back plate 130 by the front pressing frame 151 via the protective plate 150, and is stored in the storage container 100 with its movement restricted. This prevents the stored plate stack 1 from shifting position even during transportation.

[0025] The storage container 100 having the above-described configuration includes support members 160. A plurality of support members 160 are attached to the bottom plate 120 of the storage container 100. In this example, two support members 160 are attached to the bottom plate 120.

[0026] Fig. 5 is a perspective view of a part of the bottom plate 120 and its surrounding area to which the support member 160 is attached. Fig. 6 is a schematic side view of the front edge portion of the bottom plate 120 of the storage container 100 to which the support member 160 is attached.

[0027] 5 and 6, the support member 160 is attached to the front edge of the bottom plate 120. The support member 160 supports the lower end of the front pressing frame 151. The support member 160 is detachable from the bottom plate 120, and is attached to the front edge of the bottom plate 120 as needed.

[0028] Fig. 7 is a perspective view of the support member 160 as seen from the side opposite to the side attached to the bottom plate 120. Fig. 8 is a perspective view of the support member 160 as seen from the side attached to the bottom plate 120.

[0029] 7 and 8, the support member 160 has a support block 161 and a magnet sheet 162. The support block 161 is molded from a resin such as polyacetal resin (POM: polyoxymethylene) or polyvinyl chloride (PVC: polyvinyl chloride). The support block 161 has a rectangular parallelepiped main body 163 and a support portion 164 that protrudes obliquely from the upper end of the main body 163 toward the attachment side to the bottom plate 120.

[0030] Magnet sheet 162 is a sheet-like magnet, and is attached by, for example, double-sided adhesive tape or an adhesive to the surface of main body 163 facing bottom plate 120. As magnet sheet 162, for example, an anisotropic magnet sheet such as a neodymium-based rubber magnet is used.

[0031] By placing main body 163 of support member 160 against the front edge of bottom plate 120 with support portion 164 facing upward, support member 160 is attracted to bottom plate 120, which is made of steel, by the magnetic force of magnet sheet 162. In this way, support member 160 is attached to the front edge of bottom plate 120. In this state attached to bottom plate 120, support portion 164 of support member 160 is arranged along the front edges of buffer sheet 123 and protective sheet 124 of bottom plate 120, and the upper surface of support member 160 is arranged approximately flush with protective sheet 124 (see FIG. 6).

[0032] By attaching the support member 160 to the bottom plate 120, the front pressing frame 151, which presses the front sides of the glass plates G stacked and stored in the storage section S, can be supported by the support member 160 on the front side of the bottom plate 120. This eliminates the space occupied by the front pressing frame 151 on the top surface of the bottom plate 120, allowing more glass plates G to be stacked and stored in the storage section S. If the storage container 100 has a storage section S that can store, for example, 400 glass plates G each having a thickness of 0.5 mm, attaching the support member 160 allows the storage of, for example, 40 more glass plates G (440 glass plates). Note that a portion of the front pressing frame 151 may be disposed on the top surface of the bottom plate 120. In this case, the front pressing frame 151 protruding forward from the bottom plate 120 is supported by the support member 160.

[0033] As described above, according to the storage container 100 of this embodiment, by attaching the support member 160 to the bottom plate 120, the front pressing frame 151 is supported by the support member 160 on the front side of the bottom plate 120. Therefore, it is possible to eliminate or reduce the space occupied by the front pressing frame 151 on the upper surface of the bottom plate 120. This makes it possible to store more glass plates G by stacking them in an existing storage container 100 without preparing a storage container with a larger bottom plate.

[0034] Furthermore, since the support member 160 is detachable from the bottom plate 120, the number of glass plates G that can be stored can be easily increased by attaching the support member 160 to the bottom plate 120 as needed.

[0035] Moreover, the support member 160 is attracted to the bottom plate 120 by the magnetic force of the magnet sheet 162 attached to the surface of the support block 161 facing the bottom plate 120, so the support member 160 can be easily attached to the bottom plate 120 and the number of glass plates G that can be stored can be easily increased.

[0036] Furthermore, the support member 160 has a resin support block 161, and the front pressing frame 151 comes into contact with this support block 161, so that the front pressing frame 151 is prevented from wearing down due to contact with the support member 160, thereby preventing the generation of metal powder.

[0037] In the storage container 100, the buffer sheet 133 may be omitted by using a sheet with better shock absorption properties as the protective sheet 134 attached to the back panel 130. In this case, the storage section S can be enlarged, and the number of glass plates G that can be stored can be further increased.

[0038] In addition, in the above embodiment, an example was given of two support members 160 being attached to the front edge of the bottom plate 120, but as long as sufficient strength is ensured to support the front pressing frame 151, the number of support members 160 attached may be one, or may be three or more.

[0039] Furthermore, a support member 160 having a width dimension spanning the entire length of the bottom plate 120 may be attached to the front edge of the bottom plate 120. In this case, the support member 160 can stably support the front press frame 151 across the width direction.

[0040] Furthermore, the support member 160 may extend downward so as to reach the mounting surface 111 of the base 110. In this case, the load of the front pressing frame 151 can be received by the base 110 via the support member 160, so that the front pressing frame 151 can be supported even more stably.

[0041] Next, modified examples of the support member will be described. The same structural parts as those in the above embodiment are denoted by the same reference numerals and the description thereof will be omitted.

[0042] (Variation 1) Fig. 9 is a schematic side view of the front edge portion of the bottom plate 120 of the storage container 100 to which the support member 160A according to Modification 1 is attached. Fig. 10 is a perspective view of the support member 160A according to Modification 1 as seen from the side opposite to the side where it is attached to the bottom plate 120.

[0043] As shown in FIGS. 9 and 10 , the support member 160A according to the first modification includes magnets 166 instead of the magnet sheet 162. A plurality of magnets 166 (two in this example) are embedded in the main body 163. These magnets 166 are, for example, neodymium magnets. A plurality of holes 163a are formed at intervals in the vertical direction on the back side of the main body 163, which is the side opposite to the side attached to the bottom plate 120, and the magnets 166 are fitted into these holes 163a. ​​The thickness between the bottom surfaces of the holes 163a in the main body 163 and the surface on the side attached to the bottom plate 120 is, for example, about 3 mm. The adsorptive force of the support member 160A can be easily adjusted by appropriately adjusting the number and type of magnets 166 embedded in the main body 163.

[0044] In the support member 160A according to the first modification, by placing the main body 163 against the front edge of the bottom plate 120 with the support portions 164 facing upward, the support member 160A is attracted to the bottom plate 120 by the magnetic force of the magnets 166. As a result, the support member 160A is attached to the front edge of the bottom plate 120, and the front pressing frame 151 that presses the front sides of the glass plates G stored in a stack in the storage section S is supported by the support portions 164 of the support member 160A on the front side of the bottom plate 120. Therefore, the front pressing frame 151 does not occupy space on the top surface of the bottom plate 120, and more glass plates G can be stored in a stack in the storage section S.

[0045] (Variation 2) Fig. 11 is a perspective view of a part of the bottom plate 120 and its surrounding area to which a support member 160B according to Modification 2 is attached. Fig. 12 is a schematic side view of the front edge portion of the bottom plate 120 of the storage container 100 to which a support member 160B according to Modification 2 is attached.

[0046] As shown in FIGS. 11 and 12 , the support member 160B according to the second modification is fixed to the bottom plate 120 by fastening members 176 made of screws. The support member 160B includes a plate 171 and a buffer sheet 172. The plate 171 is formed by bending a metal plate such as stainless steel, and includes an attachment plate 173 and a support plate 174 that is integrally formed on the upper part of the attachment plate 173. The attachment plate 173 is a rectangular flat plate. The support plate 174 extends obliquely from the attachment plate 173 toward the attachment side of the bottom plate 120 and is further bent in an L-shape, extending away from the bottom plate 120. The buffer sheet 172 is a sheet made of resin such as foamed polypropylene (PP), and is attached to the surface of the plate 171 that faces the front pressing frame 151 with double-sided adhesive tape or an adhesive. The support member 160B has a through hole 175 into which a fastening member 176 is inserted.

[0047] In the support member 160B according to the second modification, the support plate portion 174 is placed facing upward against the front edge of the bottom plate 120. In this state, the fastening member 176 is inserted into the through hole 175 and screwed into the screw hole 120a formed in the bottom plate 120 to fasten the support member 160B. As a result, the support member 160B is attached to the front edge of the bottom plate 120, and the front pressing frame 151 that presses the front sides of the glass plates G stored in a stack in the storage section S is supported by the support plate portion 174 of the support member 160B on the front side of the bottom plate 120. Therefore, the front pressing frame 151 does not occupy space on the top surface of the bottom plate 120, and more glass plates G can be stored in a stack in the storage section S.

[0048] The support member 160B according to this second modification is fastened and fixed to the bottom plate 120 with fastening members 176, and can therefore support the front pressing frame 151 without falling off the bottom plate 120. Furthermore, in this support member 160B, a buffer sheet 172 is attached to the surface of a metal plate 171 that faces the front pressing frame 151. This configuration makes it possible to easily increase the number of glass plates G that can be stored while suppressing wear caused by contact between the support member 160B and the front pressing frame 151. Furthermore, the buffer sheet 172 can suppress the generation of metal powder caused by direct contact and rubbing between the front pressing frame 151 and the support plate portion 174 of the support member 160B.

[0049] The support member 160B may be fixed to the bottom plate 120 by magnetic force using a magnetic sheet or a magnet, without using the fastening member 176. The support member 160B may also be fixed to the bottom plate 120 by the fastening member 176 in addition to magnetic force.

[0050] The present invention can be applied to a storage container for storing plate-like objects such as electronic devices other than LCDs, OLEDs, and FPDs, for example, glass substrates for optical elements, glass disks, solar cells, etc. The plate-like objects to be stored are not limited to glass plates, and may be those formed from, for example, metals, ceramics, or resins.

[0051] As such, the present invention is not limited to the above-described embodiments, and the present invention contemplates the mutual combination of the configurations of the embodiments, as well as modifications and applications by those skilled in the art based on the disclosure of the specification and well-known technologies, and these modifications and applications are within the scope of the protection sought. For example, as a support member for supporting the lower end of the front retaining frame attached to the bottom plate, a support member 160 may be provided with a through-hole, through which a fastening member such as a screw is inserted, and the support member 160 may be fastened to the bottom plate 120. The material of the support member and / or the fastening method are appropriately selected depending on the size and number of plate-like objects to be accommodated in the bottom plate 120, etc.

[0052] As described above, the present specification discloses the following: (1) A plate-shaped body storage container that stores a plurality of plate-shaped bodies in a tilted stacked state, With a base, a bottom plate provided on the base and supporting a lower edge of the plate-shaped body; a back plate provided on the base and supporting a main surface of the plate-shaped body; a front pressing frame that presses the front side of the stacked plate-like bodies; a support member attached to the bottom plate and supporting a lower end of the front pressing frame; A storage container comprising: With this storage container, the front pressing frame that presses down on the front side of the stacked plate-like objects is supported by a support member on the front side of the bottom plate, eliminating or reducing the space occupied by the front pressing frame on the top surface of the bottom plate. This makes it possible to stack and store more plate-like objects in an existing storage container without having to prepare a storage container with a larger bottom plate.

[0053] (2) The storage container according to (1), wherein the support member is detachable from the bottom plate. According to this storage container, the number of plate-shaped objects that can be stored can be easily increased by attaching a support member to the bottom plate as needed.

[0054] (3) The storage container according to (1) or (2), wherein the support member is fixed to the bottom plate by magnetic force or a fastening member. According to this storage container, the number of plate-shaped objects that can be stored can be easily increased by attaching and fixing the support members to the bottom plate by magnetic force or by fixing them with fastening members.

[0055] (4) The support member is A support block; a magnetic sheet attached to a surface of the support block facing the bottom plate; The storage container according to any one of (1) to (3), According to this storage container, the support block can be easily attached to the bottom plate by the magnetic force of the magnetic sheet attached to the surface of the support block facing the bottom plate.

[0056] (5) The support block is made of resin. (4) A storage container according to the present invention. According to this storage container, the support block that supports the front pressing frame is made of resin, so that wear of the front pressing frame due to contact with the support member can be suppressed.

[0057] (6) The support member is Planks and a buffer sheet attached to a surface of the plate facing the front pressing frame; The storage container according to any one of (1) to (3), With this storage container, a cushioning sheet is attached to the surface of the plate facing the front clamping frame, so that the number of plate-shaped objects that can be stored can be easily increased while reducing wear caused by contact between the support member and the front clamping frame.

[0058] (7) The plate material is made of a metal plate. (6) A storage container according to the present invention. With this storage container, a cushioning sheet is attached to the surface of the metal plate facing the front clamping frame, so that the number of plate-shaped objects that can be stored can be easily increased while reducing wear caused by contact between the support member and the front clamping frame.

[0059] (8) A support member used in a plate-like body storage container that stores a plurality of plate-like bodies in a tilted stacked state, The storage container includes: With a base, a bottom plate provided on the base and supporting a lower edge of the plate-shaped body; a back plate provided on the base and supporting a main surface of the plate-shaped body; a front pressing frame that presses the front side of the stacked plate-like bodies, The support member is The bottom plate is attached to support the lower end of the front pressing frame. Support member. This support member supports the front pressing frame, which presses down on the front side of the stacked plate-like objects, at the front side of the bottom plate, eliminating or reducing the space occupied by the front pressing frame on the top surface of the bottom plate. This allows more plate-like objects to be stacked and stored in an existing storage container without having to prepare a storage container with a larger bottom plate.

[0060] (9) The support member is fixed to the bottom plate by magnetic force or a fastening member. The support member according to (8). This support member is fixed to the bottom plate by magnetic attraction or by a fastening member, so that the number of plate-like objects that can be stored in the storage container can be easily increased.

[0061] (10) A storage container according to any one of (1) to (7), The plurality of plate-shaped bodies are provided. Packaging. With this package, the front pressing frame that presses down on the front side of the stacked plate-like objects is supported by a support member on the front side of the bottom plate, eliminating or reducing the space occupied by the front pressing frame on the top surface of the bottom plate. This allows more plate-like objects to be stacked and stored in an existing storage container without having to prepare a storage container with a larger bottom plate. [Explanation of symbols]

[0062] 1 Plate laminate 100 Storage Container 110 Pedestal 120 Bottom plate 130 Back plate 151 Front retaining frame 160, 160A, 160B Support member 161 Support Block 162 Magnetic Sheet 166 Magnet 171 Board material 172 Cushioning sheet 176 Fastening members G Glass plate (plate-shaped)

Claims

1. A plate-shaped body storage container that stores a plurality of plate-shaped bodies in a tilted stacked state, With a base, a bottom plate provided on the base and supporting a lower edge of the plate-shaped body; a back plate provided on the base and supporting a main surface of the plate-shaped body; a front pressing frame that presses the front side of the stacked plate-like bodies; a support member attached to the bottom plate and supporting a lower end of the front pressing frame; Equipped with Storage container.

2. The support member is detachable from the bottom plate. The storage container of claim 1 .

3. The support member is fixed to the bottom plate by magnetic force or a fastening member. The storage container according to claim 1 or 2.

4. The support member is A support block; a magnetic sheet attached to a surface of the support block facing the bottom plate; having The storage container according to claim 3 .

5. The support block is made of resin. The storage container according to claim 4.

6. The support member is Planks and a buffer sheet attached to a surface of the plate facing the front pressing frame; having The storage container according to claim 1 or 2.

7. The plate material is made of a metal plate. The storage container according to claim 6.

8. A support member used in a plate-like body storage container that stores a plurality of plate-like bodies in a tilted stacked state, The storage container includes: With a base, a bottom plate provided on the base and supporting a lower edge of the plate-shaped body; a back plate provided on the base and supporting a main surface of the plate-shaped body; a front pressing frame that presses the front side of the stacked plate-like bodies, The support member is The bottom plate is attached to support the lower end of the front pressing frame. Support member.

9. The support member is fixed to the bottom plate by magnetic force or a fastening member. The support member of claim 8 .

10. The storage container according to claim 1 or 2; The plurality of plate-shaped bodies are provided. Packaging.

Citation Information

Patent Citations

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