Anti-static turnover box

By designing an anti-static and secure placement mechanism in the turnover box, the problems of easy breakage of glass edges and corners and static electricity generation are solved, achieving stable and safe turnover of glass.

CN223721523UActive Publication Date: 2025-12-26HUANG SHI HUIPIN DISPIAY TECH CO LTD
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Patent Information

Application Number
CN202520124504.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-12-26
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

When placing large pieces of glass in existing turnover boxes, the edges and corners of the glass are prone to hitting the foam slots, causing breakage. The boxes are also unstable and prone to generating static electricity, affecting the safety and stability of turnover.

Method used

A turnover box including an anti-static and secure placement mechanism is designed. Through the partition component, secure placement component, anti-static component, reinforcement and limiting mechanism and elastic clamping component, the glass is ensured to be placed at an angle and reinforced on both sides. Anti-static cloth is used for anti-static treatment, and the stability is improved by the limiting plate and elastic clamping component.

Benefits of technology

It effectively prevents glass edges and corners from cracking, improves the stability of glass turnover and anti-static effect, and ensures that the glass is not easily shifted during turnover, making it safe and reliable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-static turnover box which comprises a turnover box body, the turnover box body comprises a main box body, a reinforcing support is fixedly installed on the edge of the top end of the main box body through screws, and glass is placed at the two ends of the interior of the main box body. By designing an anti-static firm placement mechanism, the bottom ends of the glass can be in contact with a foam clamping groove plate, the rear surfaces of the glass can be in contact with the surface of a placement inclined plate to be obliquely placed, anti-static cloth is laid between the two pieces of glass, and an adsorption magnetic strip is adsorbed to the surface of an iron sheet to reinforce the anti-static cloth, so that the anti-static effect is facilitated; during turnover, reinforcing and supporting placement is facilitated through the placement inclined plates, placement is firmer, product corners are not prone to being broken, the two ends of the interior of the main box body are placed in the same mode, the two ends of the turnover box body are evenly stressed and not prone to shifting when glass is placed in the turnover box body for turnover, and the placement stability and the anti-static effect of the turnover box body during turnover of large glass are improved.
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Description

Technical Field

[0001] This utility model belongs to the field of turnover box technology, specifically relating to an anti-static turnover box. Background Technology

[0002] Glass is an amorphous inorganic non-metallic material, generally made from a variety of inorganic minerals as the main raw materials and a small amount of auxiliary raw materials. When large sheets of glass are being turned over, they need to be placed and then moved around. Usually, large sheets of glass are placed and moved around in turnover boxes. The existing turnover boxes are the boxes used for placing and moving large sheets of glass.

[0003] Existing turnover boxes for storing and handling large pieces of glass use foam slots on both sides. Large pieces of glass are directly inserted into these slots, which can cause the edges to touch the foam, leading to breakage, instability, and potential danger during handling. Furthermore, static electricity is easily generated during placement, affecting the stability and anti-static effect of the turnover box when storing large pieces of glass. Therefore, this invention proposes an anti-static turnover box. Utility Model Content

[0004] The purpose of this utility model is to provide an anti-static turnover box to solve the problems mentioned in the background art, where when large glass pieces are placed in the basket for turnover, the large glass pieces are directly inserted into the foam slots on both sides of the inside. This causes the product's edges to touch the foam slots, resulting in breakage and instability. Furthermore, the turnover box is not secure and poses a danger during turnover, and it is also prone to generating static electricity during placement.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an anti-static turnover box, comprising a turnover box body, the turnover box body including a main box body, a reinforcing bracket fixedly installed at the top edge of the main box body by screws, glass placed at both ends of the interior of the main box body, and the turnover box body also being provided with:

[0006] An anti-static secure placement mechanism is provided, and the anti-static secure placement mechanism includes a partition component located in the middle of the main housing, secure placement components are provided at both ends and the bottom of the main housing, and an anti-static component is provided at the connection point of the two glass panels;

[0007] The reinforcement and limiting mechanism includes two limiting and reinforcing components disposed on both sides inside the main housing. The side of the limiting and reinforcing component is provided with an elastic clamping component inside the main housing, and the end of the elastic clamping component is provided with a toggle adjustment component on the upper surface of the main housing.

[0008] Preferably, the separating assembly comprises a separating plate fixed in the middle of the interior of the main box by bolts, and the main box is separated into two placing cavities by the separating plate.

[0009] Preferably, the firm placing assembly comprises a foam slot plate fixed in the bottom end of the interior of the main box by adhesive, the side surfaces of the two ends of the interior of the main box are provided with inclined slot, and the two ends of the main box are provided with placing inclined plates by clamping and mounting through the inclined slot.

[0010] Preferably, the anti-static assembly comprises an anti-static cloth closed on the surface of the glass, the end of the anti-static cloth is provided with an adsorbing magnetic strip by clamping and mounting, the upper surfaces of the two sides of the main box are fixed with iron sheets by screws, and the adsorbing magnetic strip is adsorbed and fixed with the iron sheets.

[0011] Preferably, the limiting and reinforcing assembly comprises two limiting plates arranged in the interior of the main box, and the inner surfaces of the limiting plates are fixed with anti-skid rubber plates by screws.

[0012] Preferably, the elastic pressing assembly comprises a sliding groove arranged in the interior of the main box on the side surface of the limiting plate, one end of the interior of the sliding groove is provided with a sliding block, the end of the sliding block is fixed with the side surface of the limiting plate by bolts, and the end of the sliding block is provided with a pressing spring at the connection position with one end of the interior of the sliding groove.

[0013] Preferably, the dialing and adjusting assembly comprises two dialing and adjusting grooves arranged on the upper surfaces of the two sides of the main box, the interiors of the dialing and adjusting grooves are provided with threaded dial rods, the top end of the sliding block is provided with an internal thread hole, and the bottom end of the threaded dial rod is connected with the internal thread of the internal thread hole in a threaded mode.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] The anti-static firm placing mechanism is designed, the bottom end of the glass contacts the foam slot plate, the rear surface of the glass contacts the surface of the placing inclined plate and is placed in an inclined mode, the anti-static cloth is placed between the two glasses, the anti-static cloth is placed and reinforced by the adsorbing magnetic strip adsorbed on the surface of the iron sheet, the anti-static cloth is conveniently placed, the placing is conveniently reinforced and supported by the placing inclined plate during the turnover, the placing is more firm, the product corner breakage is not prone to occur, the two ends of the interior of the main box are placed in the same mode, the two ends are uniformly stressed during the turnover of the glass placed in the turnover box main body, the turnover box main body is not prone to deviation, and the stability and the anti-static effect of the turnover box main body during the turnover of the large piece of glass are improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural schematic view of the utility model;

[0017] Figure 2 It is the utility model Figure 1The middle A part enlarged structure schematic view;

[0018] Figure 3 The cross section structure schematic view of the utility model;

[0019] Figure 4 The utility model Figure 3 The middle C part enlarged structure schematic view;

[0020] Figure 5 The utility model Figure 1 The middle B part enlarged structure schematic view;

[0021] Figure 6 The thread rod, sliding block and main box body partial cross section structure schematic view of the utility model;

[0022] In the figure: 100, the turnover box main body;101, the main box body;1011, the limiting plate;1012, the thread rod;1013, the internal thread hole;1014, the sliding block;1015, the compression spring;1016, the adjustment groove;1017, the sliding groove;1018, the antiskid rubber plate;102, the glass;1021, the placing inclined plate;1022, the partition plate;1023, the inclined clamping groove;1024, the anti-static cloth;1025, the iron sheet;1026, the foam clamping groove plate;1027, the adsorption magnetic strip;103, the reinforcing support. DETAILED DESCRIPTION

[0023] The technical scheme in the embodiments of the utility model will be apparently and completely described below with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor fall within the protection scope of the utility model.

[0024] Please refer to Figures 1 to 6 The utility model provides a kind of turnover box of anti-static, including turnover box main body 100, turnover box main body 100 includes main box body 101, the top end edge of main box body 101 is fixedly installed with reinforcing support 103 by screw, the inside both ends of main box body 101 are placed with glass 102, it is convenient to turnover glass 102 by turnover box main body 100, glass 102 is placed in the inside of main box body 101 after, glass 102 is strengthened installation by reinforcing support 103 to main box body 101, not easy to fall off, stable turnover use, still be provided with on turnover box main body 100:

[0025] The anti-static firm placing mechanism is provided at the middle position in the interior of the main box body 101, firm placing assemblies are arranged at the two ends and the bottom of the interior of the main box body 101, and the anti-static assemblies are arranged at the connecting positions of the two glasses 102. When the turnover box body 100 is used, the glasses 102 are placed in the interior of the main box body 101, the anti-static firm placing mechanism is used to place the glasses 102 at an angle and to perform anti-static treatment, and the glasses are placed in a reinforced and supported manner during turnover, so that the product corners are not prone to breakage.

[0026] In order to facilitate the placement of the glasses 102 at the two ends of the main box body 101 after being separated by the separation assembly, and to uniformly bear the force, preferably, the separation assembly comprises a separation plate 1022 fixed at the middle position in the interior of the main box body 101 by bolts, and the main box body 101 is separated into two placing cavities by the separation plate 1022. After the main box body 101 is separated by the separation plate 1022 and the glasses 102 are placed at the two ends of the interior of the main box body 101, the force is uniformly borne, and the phenomenon of uneven weight is not prone to occur.

[0027] In order to facilitate the placement of the glasses 102 at an angle in the interior of the main box body 101 by the firm placing assembly, preferably, the firm placing assembly comprises a foam slot plate 1026 fixed at the bottom end of the interior of the main box body 101 by glue, the side surfaces of the two ends of the interior of the main box body 101 are each provided with an inclined slot 1023, and the two ends of the main box body 101 are each provided with a placing inclined plate 1021 installed by being clamped in the inclined slot 1023. The inner surface of the glass 102 is in contact with the surface of the placing inclined plate 1021. The placing inclined plate 1021 is clamped in the interior of the main box body 101 through the inclined slot 1023, and is installed at an angle. The glass 102 is placed at an angle by contacting the surface of the placing inclined plate 1021, and the bottom end of the glass 102 is in contact with the anti-slip support of the foam slot plate 1026.

[0028] In order to facilitate the anti-static treatment between the two glasses 102 by the anti-static assembly, preferably, the anti-static assembly comprises an anti-static cloth 1024 closed on the surface of the glass 102, and a magnetic strip 1027 is clamped and installed at the end of the anti-static cloth 1024. Iron sheets 1025 are fixed on the two sides of the upper surface of the main box body 101 by screws, and the magnetic strip 1027 is fixedly attracted to the iron sheet 1025. The anti-static cloth 1024 is laid between the two glasses 102 for anti-static treatment, and after being placed, the magnetic strip 1027 is attracted to the surface of the iron sheet 1025 to reinforce the placement of the anti-static cloth 1024.

[0029] The reinforcing and limiting mechanism is provided with two limiting and reinforcing assemblies arranged inside the main box body 101 on both sides, the side surface of the limiting and reinforcing assembly is provided with an elastic pressing assembly inside the main box body 101, and the end of the elastic pressing assembly is provided with a pushing and adjusting assembly on the upper surface of the main box body 101. After the glass 102 is placed, the gap between the side surface of the partition plate 1022 and the glass 102 is tightly pressed and placed by the reinforcing and limiting mechanism, so that the glass is more stably and safely transported.

[0030] In order to tightly press and limit the glass 102 after being placed by the limiting and reinforcing assembly, the limiting and reinforcing assembly is preferably provided with two limiting plates 1011 arranged inside the main box body 101 on both sides in the embodiment, and the inner surface of the limiting plate 1011 is fixed with an anti-skid rubber plate 1018 through a screw. After the glass 102 is placed inside the main box body 101, the limiting plate 1011 is deformed to drive the anti-skid rubber plate 1018 to tightly press and contact the surface of the glass 102, so that the glass is safely and stably transported.

[0031] In order to tightly press and limit the glass 102 after being placed by the limiting and reinforcing assembly, the limiting and reinforcing assembly is preferably provided with two limiting plates 1011 arranged inside the main box body 101 on both sides in the embodiment, and the inner surface of the limiting plate 1011 is fixed with an anti-skid rubber plate 1018 through a screw. After the glass 102 is placed inside the main box body 101, the limiting plate 1011 is deformed to drive the anti-skid rubber plate 1018 to tightly press and contact the surface of the glass 102, so that the glass is safely and stably transported.

[0032] In order to tightly press and limit the glass 102 after being placed by the limiting and reinforcing assembly, the limiting and reinforcing assembly is preferably provided with two limiting plates 1011 arranged inside the main box body 101 on both sides in the embodiment, and the inner surface of the limiting plate 1011 is fixed with an anti-skid rubber plate 1018 through a screw. After the glass 102 is placed inside the main box body 101, the limiting plate 1011 is deformed to drive the anti-skid rubber plate 1018 to tightly press and contact the surface of the glass 102, so that the glass is safely and stably transported.

[0033] The working principle and use process of the utility model are as follows: the turnover box capable of preventing static electricity is used, first, the inclined groove 1023 is used to clamp the inclined plate 1021 at the inner end of the main box body 101, the inclined plate 1021 is clamped in an inclined structure, the foam clamping groove plate 1026 is fixed at the inner bottom end of the main box body 101, the bottom end of the glass 102 contacts the foam clamping groove plate 1026, the rear surface of the glass 102 is placed in an inclined manner by contacting the surface of the inclined plate 1021, the anti-static cloth 1024 is laid between the two glasses 102 when the glass 102 is placed, the anti-static cloth 1024 is reinforced and placed by being adsorbed on the surface of the iron sheet 1025 through the adsorbing magnetic strip 1027, the anti-static cloth 1024 is laid to facilitate anti-static, and the turnover is facilitated by the reinforced support of the inclined plate 1021, the glass 102 is placed more firmly and is not prone to product corner breakage, and the two ends of the main box body 101 are placed in the same way after being separated by the partition plate 1022, so that the two ends of the turnover box main body 100 are evenly stressed when the glass 102 is turned over, and the glass 102 is not prone to deviation, and the stability and anti-static effect of the turnover box main body 100 when turning over the large piece of glass 102 are improved.

[0034] Then when the turnover box main body 100 is placed, the limiting plate 1011 is closed and fixedly placed at the inner end of the main box body 101, after the two ends of the main box body 101 are placed with the glass 102, a large space is stored between the middle top end of the main box body 101 and the glass 102, the threaded rod 1012 is loosened, the sliding block 1014 is slid in the sliding groove 1017 by the deformation of the compression spring 1015, the limiting plate 1011 is elastically connected when the sliding block 1014 slides, the limiting plate 1011 drives the anti-skid rubber plate 1018 to be elastically compressed on the surface of the glass 102 and to be limitingly and tightly placed on the glass 102, and the threaded rod 1012 is rotated again to be embedded in the inner threaded hole 1013 to reinforce and install the sliding block 1014, so that the glass 102 is limitingly and tightly placed after being placed as a whole, the transportation is more stable, the middle position gap of the main box body 101 is not prone to cause the glass 102 to shake, the stability of the turnover box main body 100 when turning over and limitingly and tightly placing the large piece of glass 102 is improved, and the glass 102 is safely transported.

[0035] Although the embodiments of the utility model have been shown and described (see the foregoing detailed description), it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. An anti-static turnover box, comprising a turnover box body (100), the turnover box body (100) including a main box body (101), a reinforcing bracket (103) fixedly installed at the top edge of the main box body (101) by screws, and glass (102) placed at both ends of the interior of the main box body (101), characterized in that: The turnover box body (100) is also provided with: The anti-static firm placing mechanism, and the anti-static firm placing mechanism includes a partition assembly arranged at the middle position of the inside of the main box body (101), the inside of the main box body (101) is provided with a firm placing assembly at both ends and the bottom, and the connecting position of the two glasses (102) is provided with an anti-static assembly. The reinforcing limiting mechanism, and the reinforcing limiting mechanism includes two limiting reinforcing assemblies arranged at both sides of the inside of the main box body (101), the side surface of the limiting reinforcing assembly is provided with an elastic pressing assembly in the inside of the main box body (101), and the end of the elastic pressing assembly is provided with a dialing adjusting assembly on the upper surface of the main box body (101).

2. The static-proof turnover box according to claim 1, wherein: The partition assembly includes a partition plate (1022) fixed at the middle position of the inside of the main box body (101) through bolts, and the main box body (101) is divided into two placing cavities through the partition plate (1022).

3. The static dissipative tote of claim 1, wherein: The firm placing assembly includes a foam slot plate (1026) fixed at the bottom end of the inside of the main box body (101) through glue adhesion, and the side surface of both ends of the inside of the main box body (101) is provided with an inclined slot (1023), both ends of the main box body (101) are provided with a placing inclined plate (1021) through the inclined slot (1023), and the inner surface of the glass (102) is in contact with the surface of the placing inclined plate (1021).

4. The static dissipative tote of claim 1, wherein: The anti-static assembly includes an anti-static cloth (1024) closed on the surface of the glass (102), the end of the anti-static cloth (1024) is provided with an adsorbing magnetic strip (1027), and the upper surface of the main box body (101) is provided with an iron sheet (1025) on both sides through screws, and the adsorbing magnetic strip (1027) and the iron sheet (1025) are adsorbed and fixed.

5. The static dissipative tote of claim 1, wherein: The limiting reinforcing assembly includes two limiting plates (1011) arranged at both sides of the inside of the main box body (101), and the inner surface of the limiting plate (1011) is provided with an anti-skid rubber plate (1018) through screws.

6. The static dissipative tote of claim 5, wherein: The elastic pressing assembly includes a sliding groove (1017) arranged in the inside of the main box body (101) on the side surface of the limiting plate (1011), one end of the inside of the sliding groove (1017) is provided with a sliding block (1014), the end of the sliding block (1014) and the side surface of the limiting plate (1011) are fixed through bolts, and the end of the sliding block (1014) and the connecting position of one end of the inside of the sliding groove (1017) are provided with a pressing spring (1015).

7. The static dissipative tote of claim 6, wherein: The dialing adjusting assembly includes two dialing adjusting grooves (1016) arranged on both sides of the upper surface of the main box body (101), the inside of the dialing adjusting groove (1016) is provided with a threaded dialing rod (1012), the top end of the sliding block (1014) is provided with an internal thread hole (1013), and the bottom end of the threaded dialing rod (1012) and the inside of the internal thread hole (1013) are threadedly connected.