Energy-saving glass transfer storage rack

By designing an energy-saving glass transfer and storage rack with a separate upper and lower structure, and utilizing casters and locking bolts, the energy-saving glass can be conveniently transferred, solving the problem of low utilization rate of pulley components in existing technologies and improving the versatility of transfer and the convenience of fixing.

CN223990333UActive Publication Date: 2026-03-13TIANJIN NORTH GLASS IND TECHN
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing energy-saving glass requires unloading after transport before it can be transported again, resulting in low utilization of the pulley assembly and failing to meet the needs for diversity and convenience.

Method used

Design an energy-saving glass transfer and storage rack that includes a support device, a base device, and a frame device. It adopts an upper and lower separated structure, uses casters and locking bolts to achieve convenient glass transfer, and combines inclined beams and triangular blocks with rubber pads to enhance stability.

Benefits of technology

It improves the utilization rate of casters, increases the diversity of transfer and storage racks and the convenience of bundling and fixing, and meets the needs of multiple transfers of energy-saving glass.

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Abstract

The utility model belongs to the field of energy-saving glass transfer, and discloses an energy-saving glass transfer storage rack which comprises a bearing device used for obliquely bearing energy-saving glass transfer and further comprises a base device used for supporting and moving, a rack device used for supporting, bundling and fixing is installed on the base device, and the rack device and the base device are connected through bolts. The bearing device and the rack device are riveted together; the base device comprises a bottom frame assembly, four universal wheels are evenly installed at the four corners of the bottom face of the bottom frame assembly, and brake plates are arranged on the universal wheels. The rack device comprises a frame assembly, two stand columns are symmetrically arranged on the frame assembly, a top frame is arranged between the top ends of the stand columns, and a plurality of limiting rings are evenly distributed on the top frame. According to the energy-saving glass transferring and storing frame, due to the up-down separated arrangement, other energy-saving glass can be transferred again after the energy-saving glass is transferred in place, and the utilization rate of the universal wheels is increased; and through the arrangement of a double-layer structure, the convenience of bundling and fixing is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of energy-saving glass transfer, and in particular relates to an energy-saving glass transfer and storage rack. Background Technology

[0002] Traditionally, glass is primarily used in buildings for lighting. However, as building window and door sizes have increased, so have the requirements for thermal insulation. Energy-saving glass is designed to meet these needs. Energy-saving glass typically refers to glass with good heat insulation and sun-shading properties. Using this type of glass can significantly reduce electricity consumption in residential and office buildings, saving on air conditioning and heating costs. In winter, it greatly reduces heat loss from indoors, and in summer, it reduces sunlight entering the room.

[0003] Comparing with Chinese Patent No. CN209352213U, a transfer rack for glass production is disclosed. It includes a base bracket, a support frame mounted on the base bracket, and a pulley assembly installed at the bottom of the base bracket. The base bracket includes a frame and a partition strip that divides the internal space of the frame into left and right parts. A first slide rail is provided on the two inner side walls of the frame opposite to the partition strip, and a second slide rail is provided on the two side walls of the partition strip. The first slide rail and the second slide rail opposite to them are connected by multiple movable stops that move along the length of the partition strip, which can accommodate the storage of glass substrates of various sizes.

[0004] However, once the aforementioned patented energy-saving glass is transported to its destination, it can only be unloaded before it can be transported again, which greatly reduces the utilization rate of the pulley assembly. Therefore, a new device needs to be designed. Utility Model Content

[0005] The purpose of this invention is to provide an energy-saving glass transfer and storage rack to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] An energy-saving glass transfer and storage rack includes a support device for tilting and supporting the transfer of energy-saving glass, and a base device for supporting movement. A frame device for supporting and securing the glass is mounted on the base device. The frame device and the base device are bolted together, and the support device and the frame device are riveted together. The base device includes a base frame assembly, with four casters evenly mounted at the four corners of its bottom surface. Each caster has a brake plate. The frame device includes a frame assembly, with two uprights symmetrically arranged on it. A top frame is positioned between the tops of the uprights, and several limiting rings are evenly distributed on the top frame.

[0008] Furthermore: the supporting device includes a plurality of evenly distributed inclined beams and triangular blocks, the surface of the inclined beams is attached with a first adhesive pad, and the surface of the triangular blocks is attached with a second adhesive pad.

[0009] Furthermore, the supporting device adopts a front-to-back symmetrical structure, with the inclined beams and the triangular blocks corresponding one-to-one and arranged as a set.

[0010] Furthermore: the base frame assembly includes a first frame, a plurality of first reinforcing ribs are evenly distributed within the first frame, a plurality of connecting seats are evenly distributed on the first frame, and locking bolts are installed on the four connecting seats at the four corners of the first frame.

[0011] Furthermore, the connecting seat and the first reinforcing rib are respectively welded to the first frame.

[0012] Furthermore: the frame component includes a second frame, in which a plurality of second reinforcing ribs are evenly distributed, and at the bottom of the second frame a plurality of connecting columns are evenly distributed.

[0013] Furthermore: four limiting rings are provided and welded together with the top frame, and the columns are symmetrically arranged at the middle positions of both ends of the second frame.

[0014] Compared with existing technologies, the beneficial effects are:

[0015] 1. The upper and lower separation design facilitates the transfer of other energy-saving glass after the energy-saving glass has been transferred to its position, thus improving the utilization rate of the casters.

[0016] 2. The separate design increases the versatility of the energy-saving glass transfer and storage rack.

[0017] 3. The double-layer structure increases the convenience of bundling and fixing. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of an energy-saving glass transfer and storage rack according to the present invention;

[0019] Figure 2 This is a right view of the energy-saving glass transfer and storage rack described in this utility model;

[0020] Figure 3 This is a schematic diagram of the base device of an energy-saving glass transfer and storage rack according to the present invention;

[0021] Figure 4 This is a schematic diagram of the frame device of the energy-saving glass transfer and storage rack described in this utility model;

[0022] Figure 5This is a schematic diagram of the support device for an energy-saving glass transfer and storage rack as described in this utility model.

[0023] In the attached drawings, the following are the reference numerals: 101, first frame; 102, first reinforcing rib; 103, connecting seat; 104, locking bolt; 105, caster wheel; 106, brake plate; 201, second frame; 202, second reinforcing rib; 203, connecting column; 204, upright column; 205, top frame; 206, limiting ring; 301, inclined beam; 302, first rubber pad; 303, triangular block; 304, second rubber pad. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see Figures 1-5 An energy-saving glass transfer and storage rack includes a support device for tilting and supporting the transfer of energy-saving glass, and a base device for supporting movement. A frame device for supporting and binding is installed on the base device. The frame device and the base device are bolted together, and the support device and the frame device are riveted together.

[0026] In this embodiment: the base device includes a base frame assembly, with four casters 105 evenly installed at the four corners of the bottom surface of the base frame assembly, and a brake plate 106 provided on the casters 105; the base frame assembly includes a first frame 101, with a plurality of first reinforcing ribs 102 evenly distributed inside the first frame 101, and a plurality of connecting seats 103 evenly distributed on the first frame 101, with locking bolts 104 installed on the four connecting seats 103 at the four corners of the first frame 101; the connecting seats 103 and the first reinforcing ribs 102 are respectively welded to the first frame 101; the whole assembly is moved to the required position by the support of the casters 105, then the brake plate 106 is stepped on to fix it, the locking bolts 104 are screwed on, and then the connecting column 203 is lifted out of the connecting seat 103, separating the second frame 201 from the first frame 101, so that the base device can be used again to transport other rack devices carrying energy-saving glass.

[0027] In this embodiment: the frame device includes a frame assembly, on which two uprights 204 are symmetrically arranged, and a top frame 205 is arranged between the top ends of the uprights 204. A plurality of limiting rings 206 are evenly distributed on the top frame 205. The frame assembly includes a second frame 201, in which a plurality of second reinforcing ribs 202 are evenly distributed, and a plurality of connecting posts 203 are evenly distributed at the bottom of the second frame 201. Four limiting rings 206 are provided and welded together with the top frame 205. The uprights 204 are symmetrically arranged at the middle positions of both ends of the second frame 201. Cable ties are passed through the limiting rings 206 on the top frame 205 supported by the uprights 204, wrapped around the energy-saving glass, and then tied and fixed to the second frame 201. The second frame 201 is inserted into the connecting seat 103 through the connecting posts 203 and screwed in the locking bolts 104 to fix it together with the first frame 101.

[0028] In this embodiment: the supporting device includes several evenly distributed inclined beams 301 and triangular blocks 303. The surface of the inclined beams 301 is attached with a first adhesive pad 302, and the surface of the triangular blocks 303 is attached with a second adhesive pad 304. The supporting device adopts a front-to-back symmetrical structure, with the inclined beams 301 and the triangular blocks 303 corresponding one-to-one and set as a group. The energy-saving glass is erected, with its bottom surface placed on the triangular blocks 303 through the second adhesive pad 304, and its surface resting against the inclined beams 301 through the first adhesive pad 302 (the top of the inclined beams 301 is inclined and fixed to the top frame 205, and the bottom is inclined and fixed to the second frame 201).

[0029] Working principle: First, the energy-saving glass is erected, with its bottom surface placed on the triangular block 303 via the second rubber pad 304, and its surface resting against the inclined beam 301 via the first rubber pad 302 (the top of the inclined beam 301 is tilted and fixed to the top frame 205, and the bottom is tilted and fixed to the second frame 201). Then, a cable tie is passed through the limiting ring 206 on the top frame 205 supported by the column 204, wrapped around the energy-saving glass, and tied and fixed to the second frame 201. The second frame 201 is inserted into the connecting seat 103 via the connecting column 203, and the locking bolt 104 is screwed in to fix it together with the first frame 101. The whole is moved to the required position by the support of the casters 105. Then, the brake plate 106 is stepped on to fix it, the locking bolt 104 is screwed in, and then the connecting column 203 is lifted out of the connecting seat 103 to separate the second frame 201 from the first frame 101, so that it can be transferred to other rack devices carrying energy-saving glass by using the base device again.

[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An energy saving glass transfer storage rack comprising a support device for tilting to support the transfer of energy saving glass, characterised in that: Also include a base device for supporting movement, the base device is mounted on the device for supporting the frame device fixed, the frame device and the base device bolted, the support device and the frame device riveted together; The base device comprises a chassis assembly, four universal wheels (105) are uniformly arranged at the four corners of the bottom surface of the chassis assembly, and a brake plate (106) is arranged on the universal wheel (105); The frame device comprises a frame assembly, two vertical columns (204) are symmetrically arranged on the frame assembly, a top frame (205) is arranged between the top ends of the vertical columns (204), and a plurality of limiting rings (206) are uniformly distributed on the top frame (205).

2. The energy-saving glass transfer storage rack according to claim 1, characterized in that: The support device comprises a plurality of inclined beams (301) and triangular blocks (303) uniformly distributed, a first rubber pad (302) is attached to the surface of the inclined beam (301), and a second rubber pad (304) is attached to the surface of the triangular block (303).

3. The energy-saving glass transfer storage rack according to claim 2, wherein: The support device adopts a front-rear symmetric structure, the inclined beam (301) and the triangular block (303) are one-to-one corresponding, and are arranged as a group.

4. The energy-saving glass transfer storage rack according to claim 1, wherein: The chassis assembly comprises a first frame (101), a plurality of first reinforcing ribs (102) are uniformly distributed in the first frame (101), a plurality of connecting seats (103) are uniformly distributed on the first frame (101), and lock bolts (104) are arranged on the four connecting seats (103) at the four corners of the first frame (101).

5. The energy-saving glass transfer storage rack according to claim 4, wherein: The connecting seat (103) and the first reinforcing rib (102) are respectively welded with the first frame (101).

6. The energy-saving glass transfer storage rack according to claim 1, wherein: The frame assembly comprises a second frame (201), a plurality of second reinforcing ribs (202) are uniformly distributed in the second frame (201), and a plurality of connecting columns (203) are uniformly distributed at the bottom of the second frame (201).

7. The energy-saving glass transfer storage rack according to claim 6, wherein: The limiting ring (206) is provided with four, and is welded with the top frame (205), and the vertical column (204) is symmetrically arranged at the middle position of the two ends of the second frame (201).

Citation Information

Patent Citations

  • Transfer frame for glass production

    CN209352213U