Glass loading frame

By designing an adjustable main frame and sub-frame mechanism, the problem of fixed length in traditional glass loading racks is solved, enabling adaptability adjustment for glass of different lengths and stability during movement, thereby reducing costs and operational difficulty.

WO2026081166A1PCT designated stage Publication Date: 2026-04-23CHEN JIAZHI
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
CHEN JIAZHI
Filing Date
2024-10-18
Publication Date
2026-04-23

AI Technical Summary

Technical Problem

Traditional glass loading racks have a fixed length, making it difficult to adapt to glass of different lengths. Furthermore, the glass is prone to shifting back and forth during movement, leading to instability at the center and increasing costs and operational difficulty.

Method used

A glass loading rack comprising a main frame and a sub-frame mechanism was designed. The length of the rack can be flexibly adjusted through adjustable sub-rods and insert rods, and stability and limiting are ensured through threaded and sliding connections, thereby increasing the stability of the inclined and side frames of the sub-frame mechanism.

Benefits of technology

It enables adaptability to glass of different lengths, reduces the cost of purchasing loading racks of various sizes, and maintains the stability and center position of the glass during movement, thus improving the convenience and safety of operation.

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Abstract

A glass loading frame, relating to the technical field of glass loading frames, comprising a main frame mechanism (1) and auxiliary frame mechanisms (2), provided at both ends of the main frame mechanism (1). The main frame mechanism (1) comprises a main tube (11). Through grooves (12) are provided at both ends on the top and bottom of the main tube (11). The auxiliary frame mechanisms (2) each comprise an auxiliary rod (21). Inclined frame mechanisms (3) are provided at both the bottom of the main tube (11) and the bottom of the auxiliary rod (21). The number of inclined frame mechanisms (3) located on the main tube (11) is three, and the number of inclined frame mechanisms (3) located on each auxiliary rod (21) is one. The end of each auxiliary rod (21) close to the main frame mechanism (1) is fixed with an insert rod (22), and the insert rod (22) at the end of the auxiliary rod (21) is slidable inside of the main tube (11). Distances between the inclined frame mechanisms (32) located at the auxiliary frame mechanisms (2) and the inclined frame mechanisms (32) located at two side of the main frame mechanism (1) can be adjusted such that the length of the entire frame body can be adjusted and extended, thus allowing the present apparatus, after being adaptively adjusted, to be used to load longer glass panels, broadening the use of the apparatus, and avoiding the problem of increased costs caused by purchasing loading frames of different sizes.
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Description

A glass loading rack Technical Field

[0001] This utility model relates to the field of glass loading rack technology, and in particular to a glass loading rack. Background Technology

[0002] The purpose of glass loading racks is to provide stable support and protection for the storage, transportation, and processing of glass. They can support the glass and prevent it from breaking due to external forces. During storage, glass loading racks can ensure that glass panes maintain an appropriate distance to avoid collisions and friction, thereby reducing the risk of breakage. During transportation, loading racks can fix the glass and reduce damage caused by bumps or vibrations. In addition, for glass with special shapes, such as aspherical glass, loading racks can also provide more fitting support through customized designs, ensuring their stability and safety during processing.

[0003] In conclusion, glass loading racks are an indispensable tool in the glass industry. With their unique support and protection functions, they provide strong guarantees for the storage, transportation, and processing of glass.

[0004] In the process of implementing this solution, the inventors discovered the following problems in the existing technology that have not been well resolved: The length of the traditional glass loading rack is fixed, but the length of the glass will change according to the order requirements. When the length is long, it is more difficult to control the center stability point of the glass on the rack, and it is easy to have one end heavy and the other end light. The only way to meet the loading requirements is to replace it with a longer loading rack, but this method leads to the need to equip more loading racks of more sizes and in greater quantities, which seriously increases the cost.

[0005] After the glass is placed on a traditional glass loading rack, it is tied longitudinally to the rack with ropes to ensure a stable connection. However, there are no limiting measures at both ends of the rack during movement. Because the ropes have a certain degree of extensibility, they are not suitable for lateral restraint of the glass. Therefore, the glass is prone to shifting forward or backward during movement, which changes the center of the glass on the loading rack and causes more trouble for the movement.

[0006] Utility Model Content

[0007] The main objective of this invention is to provide a glass loading rack that can effectively solve the problems in the background art.

[0008] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0009] A glass loading rack includes a main frame mechanism with auxiliary frame mechanisms at both ends. The main frame mechanism includes a main pipe with through slots at both its top and bottom ends. Each auxiliary frame mechanism includes a secondary rod, and inclined frame mechanisms are fixed to the bottom of both the main pipe and the secondary rod. There are three inclined frame mechanisms at the main pipe position and one inclined frame mechanism at the secondary rod position. An insert rod is fixed to the end of the secondary rod closest to the main frame mechanism, and screw rods are fixed to the top and bottom of the end of the insert rod furthest from the secondary rod. Nuts are threaded onto the outer walls of the screw rods. Each inclined frame mechanism includes tilted side frames, the tops of which are fixed to the outer walls of the corresponding main pipe and secondary rod, and the bottoms of which are tilted base frames. Small square tubes are fixed to both ends of the inclined base frame at the position of the auxiliary rod, which is closer to the inclined base frame at the position of the main frame mechanism. Square grooves are chiseled at both ends of the inclined base frame at the position of the main frame mechanism. Large square tubes are fixed between the square grooves of the adjacent inclined frame mechanism at the position of the main frame mechanism. Locking wheels are provided at both ends of the bottom of the inclined base frame of the inclined frame mechanism. Insertion holes are chiseled at the end of the auxiliary rod away from the insertion rod. Through grooves are chiseled at the top and bottom of the insertion holes. Side frame mechanism is provided at the end of the auxiliary rod away from the main frame mechanism. The side frame mechanism includes an extension rod. Screws are fixed to the top and bottom of the extension rod near the auxiliary rod. Nuts are threaded to the outer wall of the screws. Inclined rods are fixed to the end of the extension rod away from the auxiliary rod. A crossbar is fixed to the bottom of the inclined rod.

[0010] Preferably, the auxiliary rods are inserted into the main tube and slidably connected thereto, the screws are respectively connected to the through slots that match the positions, and the nuts are respectively located outside the main tube.

[0011] Preferably, the small square tubes are inserted into the square groove and the large square tube respectively and are slidably connected to them.

[0012] Preferably, the extension rod is inserted into the socket and slidably connected thereto, the second screw is connected to the second through slot that matches the position, and the second nut is located outside the auxiliary rod.

[0013] Preferably, protective rubber pads are adhered to the inclined side walls on both sides of the inclined side frame, and protective rubber sleeves are fitted and adhered to the outer walls at both ends of the horizontal stop.

[0014] Preferably, the tilting rods of both side frame mechanisms are tilted at an inward angle.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. The sliding of the insertion rod at one end of the auxiliary rod inside the main rod can adjust the distance between the inclined frame mechanism located at the position of the auxiliary frame mechanism and the inclined frame mechanisms on both sides of the main frame mechanism, so that the length of the entire frame can be adjusted and extended. This allows the device to be adapted and adjusted for loading and use of some longer glass, increasing the versatility of the device and avoiding the problem of seriously increasing costs due to purchasing loading frames of different sizes.

[0017] When the insert rod moves inside the main pipe, the screw rod moves inside the through groove. After the movement adjustment is completed, the nut is located outside the main pipe and is threaded to the outer wall of the screw rod that passes through the through groove, thereby limiting the adjusted length and stabilizing the adjusted length to avoid problems of retraction or extension during the movement.

[0018] When the distance between the inclined frame mechanism at the sub-frame position and the inclined frame mechanisms on both sides of the main frame position changes, the small square tubes fixed to the inclined base sidewall of the inclined frame mechanism at the sub-frame position will slide and intersect within the square grooves and large square tubes of the inclined frame mechanism at the main frame position. This not only stabilizes the horizontality of the main frame mechanism and the sub-frame mechanism during adjustment, but also increases the overall stability of the main frame mechanism and the sub-frame mechanism after connection, making the device more compact.

[0019] 2. The movement of the extension rod of the side frame mechanism within the insertion hole can change the distance between the horizontal stops of the two side frame mechanisms, so that the horizontal stops can always maintain a slight contact with the lateral ends of the glass through the movement of the extension rod within the insertion hole. The movement of the extension rod within the insertion hole will drive the second screw to move within the second through groove. After the movement is completed, the second nut is located outside the auxiliary rod and is threaded to the outer wall of the second screw that passes through the second through groove, which can limit the horizontal stops with the adjusted distance. The side frame mechanism has stability in limiting the lateral ends of the glass. Attached Figure Description

[0020] Figure 1 is a structural schematic diagram of a glass loading rack according to the present invention;

[0021] Figure 2 is a cross-sectional structural diagram of the main tube, square groove, and large square tube of a glass loading rack according to this utility model.

[0022] Figure 3 is a schematic diagram of the main frame mechanism and the auxiliary frame mechanism of the glass loading rack of this utility model, as well as the adjusted and extended structure between the auxiliary frame mechanism and the side frame mechanism.

[0023] Figure 4 is a schematic diagram of the sub-frame mechanism, the inclined frame mechanism, and the small square tube of a glass loading rack according to this utility model.

[0024] Figure 5 is a schematic diagram of the side frame mechanism of a glass loading rack according to this utility model.

[0025] In the diagram: 1. Main frame mechanism; 11. Main pipe; 12. Through slot one; 2. Sub-frame mechanism; 21. Sub-rod; 22. Insert rod; 23. Screw one; 24. Nut one; 25. Insertion hole; 26. Through slot two; 3. Inclined frame mechanism; 31. Inclined side frame; 32. Inclined base frame; 33. Protective rubber pad; 34. Square slot; 4. Small square tube; 5. Large square tube; 6. Side frame mechanism; 61. Extension rod; 62. Inclined rod; 63. Horizontal stop bar; 64. Anti-slip rubber sleeve; 65. Screw two; 66. Nut two; 7. Locking wheel. Detailed Implementation

[0026] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0027] As shown in Figures 1-5, a glass loading rack includes a main frame mechanism 1, with auxiliary frame mechanisms 2 at both ends of the main frame mechanism 1. The main frame mechanism 1 includes a main pipe 11, with through slots 12 cut into both the top and bottom ends of the main pipe 11. The auxiliary frame mechanism 2 includes a secondary rod 21, with inclined frame mechanisms 3 fixed to the bottom of both the main pipe 11 and the secondary rod 21. There are three inclined frame mechanisms 3 at the position of the main pipe 11 and one inclined frame mechanism 3 at the position of the secondary rod 21. An insert rod 22 is fixed to the end of the secondary rod 21 near the main frame mechanism 1, and screws 23 are fixed to the top and bottom of the end of the insert rod 22 away from the secondary rod 21. The outer wall of the screws 23 is... The threaded connection is secured with a nut 24. The inclined frame mechanism 3 includes an inclined side frame 31. The top of the inclined side frame 31 is fixed to the outer walls of the main pipe 11 and the auxiliary rod 21 at matching positions. An inclined base frame 32 is fixed to the bottom of each inclined side frame 31. Small square tubes 4 are fixed to both ends of the inclined base frame 32 at the auxiliary rod 21 position on the side closest to the main frame mechanism 1. Square grooves 34 are chiseled at both ends of the inclined base frame 32 at the main frame mechanism 1 position. Large square tubes 5 are fixed between the square grooves 34 adjacent to the inclined frame mechanism 3 at the main frame mechanism 1 position. Locking wheels 7 are provided at both ends of the bottom of the inclined base frame 32 of the inclined frame mechanism 3. The auxiliary rod 21 is away from the insertion rod 22. One end of each rod is drilled with a hole 25. The top and bottom of the hole 25 are drilled with through grooves 26. The end of the auxiliary rod 21 away from the main frame mechanism 1 is provided with a side frame mechanism 6. The side frame mechanism 6 includes an extension rod 61. The top and bottom of the extension rod 61 near the auxiliary rod 21 are fixed with screws 65. The outer wall of the screws 65 is threaded with nuts 66. The end of the extension rod 61 away from the auxiliary rod 21 is inclined and fixed with an inclined rod 62. The bottom of the inclined rod 62 is fixed with a crossbar 63.

[0028] Specifically, the auxiliary rods 21 are inserted into the main tube 11 and slidably connected to it, the screws 23 are connected to the through slots 12 that match the position, and the nuts 24 are located outside the main tube 11, so that the adjustable main frame mechanism 1 and auxiliary frame mechanism 2 can be limited.

[0029] Specifically, the small square tube 4 is inserted into the square groove 34 and the large square tube 5 and slidably connected to them, which increases the stability of the connection between the main frame mechanism 1, the sub-frame mechanism 2 and the inclined frame mechanism 3 and the horizontality during movement and adjustment.

[0030] Specifically, the extension rod 61 is inserted into the insertion hole 25 and slidably connected thereto. The screw 65 is connected to the through groove 26 that matches the position. The nut 66 is located outside the auxiliary rod 21 and can limit the adjustment of the extension rod 61.

[0031] Specifically, protective rubber pads 33 are glued to the inclined side walls on both sides of the inclined side frame 31, and protective rubber sleeves 64 are glued to the outer walls at both ends of the horizontal stop bar 63. These can fit tightly against the glass, provide protection during contact, and avoid damage to the glass during movement caused by hard contact.

[0032] Specifically, the tilting rods 62 of both side frame mechanisms 6 are tilted inward at an inward angle. When the protective rubber sleeve 64 contacts the side end of the glass, the end of the horizontal bar 63 near the extension rod 61 is outward. The operator can push the device by holding the end of the tilting rod 62 near the extension rod 61, which facilitates the movement of the device.

[0033] Working principle:

[0034] The sliding of the insertion rod 22 at one end of the auxiliary rod 21 inside the main rod 11 can adjust the distance between the inclined frame mechanism 3 located at the position of the auxiliary frame mechanism 2 and the inclined frame mechanism 3 located on both sides of the main frame mechanism 1, so that the length of the entire frame can be adjusted and extended. This allows the device to be used for loading and adjusting some longer glass, increasing the versatility of the device and avoiding the problem of seriously increasing costs due to purchasing loading racks of different sizes.

[0035] When the insert rod 22 moves inside the main pipe 11, the screw 23 moves inside the through groove 12. After the movement adjustment is completed, the nut 24 is located outside the main pipe 11 and is threaded to the outer wall of the screw 23 that passes through the through groove 12, thereby limiting the adjusted length and stabilizing the adjusted length to avoid the problem of retraction or extension during the movement.

[0036] When the distance between the inclined frame mechanism 3 at the position of the sub-frame mechanism 2 and the inclined frame mechanisms 3 at both sides of the main frame mechanism 1 changes, the small square tube 4 fixed to the side wall of the inclined base frame 32 of the inclined frame mechanism 3 at the position of the sub-frame mechanism 2 will slide through the square groove 34 and the large square tube 5 of the inclined frame mechanism 3 at the position of the main frame mechanism 1. This not only stabilizes the horizontality of the main frame mechanism 1 and the sub-frame mechanism 2 during adjustment, but also increases the overall stability of the main frame mechanism 1 and the sub-frame mechanism 2 after they are connected, making the device more compact.

[0037] The movement of the extension rod 61 of the side frame mechanism 6 within the insertion hole 25 can change the distance between the horizontal stops 63 of the two side frame mechanisms 6, so that the horizontal stops 63 can always maintain a slight contact with the lateral ends of the glass through the movement of the extension rod 61 within the insertion hole 25, while the protective sleeve 64 on its outer wall will be in close contact with the glass. The movement of the extension rod 61 within the insertion hole 25 will drive the screw 65 to move within the through groove 26. After the movement is completed, the nut 66 located outside the auxiliary rod 21 is threadedly connected to the outer wall of the screw 65 passing through the through groove 26, which can limit the horizontal stops 63 with the adjusted distance. The side frame mechanism 6 has stability in limiting the lateral ends of the glass.

[0038] The circuits, electronic components, and control modules involved are all existing technologies, which can be fully implemented by those skilled in the art, and need not be elaborated upon. The content protected by this utility model does not involve any improvement to the software and methods.

[0039] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A glass loading rack comprising a main rack mechanism (1), characterized in that: The main frame mechanism (1) is provided with auxiliary frame mechanisms (2) at both ends. The main frame mechanism (1) includes a main pipe (11), and through slots (12) are drilled at both the top and bottom ends of the main pipe (11). The auxiliary frame mechanism (2) includes a secondary rod (21). Inclined frame mechanisms (3) are fixed at the bottom of the main pipe (11) and the bottom of the secondary rod (21). There are three inclined frame mechanisms (3) at the position of the main pipe (11) and one inclined frame mechanism (3) at the position of the secondary rod (21). The secondary rod (21) is close to the main frame mechanism. (1) One end is fixed with a plug rod (22), and the top and bottom of the plug rod (22) away from the auxiliary rod (21) are both fixed with screw rods (23). The outer wall of the screw rods (23) is threaded with nuts (24). The inclined frame mechanism (3) includes an inclined side frame (31). The top of the inclined side frame (31) is fixed to the outer walls of the main tube (11) and the auxiliary rod (21) at the matching positions. The bottom of the inclined side frame (31) is fixed with an inclined base frame (32). The inclined base frame (32) at the position of the auxiliary rod (21) is... Small square tubes (4) are fixed at both ends of the inclined base frame (32) near the main frame mechanism (1). Square grooves (34) are chiseled at both ends of the inclined base frame (32) near the main frame mechanism (1). Large square tubes (5) are fixed between the square grooves (34) of the adjacent inclined frame mechanism (3) near the main frame mechanism (1). Locking wheels (7) are provided at both ends of the bottom of the inclined base frame (32) of the inclined frame mechanism (3). Insertion holes (25) are chiseled at the end of the auxiliary rod (21) away from the insertion rod (22). The top and bottom of the insertion hole (25) are connected. Each end of the auxiliary rod (21) is provided with a through groove (26). The side frame mechanism (6) is provided at the end of the auxiliary rod (21) away from the main frame mechanism (1). The side frame mechanism (6) includes an extension rod (61). The top and bottom of the extension rod (61) near the auxiliary rod (21) are fixed with screws (65). The outer wall of the screws (65) is threaded with nuts (66). The end of the extension rod (61) away from the auxiliary rod (21) is fixed with an inclined rod (62). The bottom of the inclined rod (62) is fixed with a horizontal stop bar (63).

2. The glass loading rack of claim 1, wherein: The auxiliary rods (21) are respectively inserted into the main tube (11) and slidably connected thereto. The screws (23) are respectively connected to the through slots (12) that match the position. The nuts (24) are respectively located outside the main tube (11).

3. The glass loading rack of claim 1, wherein: The small square tube (4) is inserted into the square groove (34) and the large square tube (5) respectively and is slidably connected to them.

4. The glass loading rack of claim 1, wherein: The extension rod (61) is inserted into the socket (25) and slidably connected thereto. The screw rod (65) is connected to the through slot (26) that matches the position. The nut (66) is located outside the auxiliary rod (21).

5. The glass loading rack of claim 1, wherein: The inclined side walls on both sides of the inclined side frame (31) are bonded with protective rubber pads (33), and the outer walls of both ends of the cross barrier rod (63) are sleeved with protective rubber sleeves (64).

6. The glass loading rack of claim 1, wherein: The inclined rods (62) of the two side frame mechanisms (6) are both inclined at an inner buckle angle.

Citation Information

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