Damping device for glass transportation
By designing auxiliary shock-absorbing and stabilizing components, the problems of inconvenient loading and vibration during glass transportation are solved, enabling rapid loading and unloading and stabilization, reducing the glass breakage rate, and improving transportation efficiency.
Patent Information
- Application Number
- CN202520731460.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-17
AI Technical Summary
Existing glass transport devices are inconvenient to load and fix, occupy a lot of space, and cannot effectively counteract multi-directional vibrations, especially lateral shear forces, resulting in a high rate of glass breakage at the edges and corners.
An auxiliary shock absorption assembly was designed, consisting of a base plate, a base, a telescopic rod, a limiting frame, a buffer spring, and an elastic rubber roller. Through the cooperation of the telescopic rod and the limiting frame, rapid loading and stabilization are achieved, and the elastic rubber roller is used to reduce lateral shear force.
It enables rapid loading and unloading and secure placement of glass, effectively counteracts multi-directional vibrations, reduces the breakage rate of glass edges and corners, and improves loading efficiency.
Smart Images

Figure CN223905081U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass transportation damping technical field, specifically, relate to a glass transportation damping device. BACKGROUND
[0002] In the process of glass carrying and transporting, in order to guarantee the integrity of glass, need to utilize damping device to the glass in moving shock attenuation, reduce the damage number of glass;
[0003] Through the retrieval, the publication number (CN221114027U) disclosed a damping type glass steel fixing device, wherein, "car plate assembly, equipment frame, positioning assembly, operating handle, damping assembly. The utility model discloses through positioning assembly can carry out synchronous movement, and the both sides of glass steel are clamped with proper force, make it not easy to shift or fall during transportation, and also can adjust the height of positioning assembly according to the height of the glass steel transported, wide application range, by placing glass steel in damping assembly area, can greatly increase the friction between glass steel and damping plate also has certain protection effect, when transporting, can play the role of damping, prevent the impact force too big when vibrating, cause damage to glass steel";
[0004] The above-mentioned patent still has some shortcomings in actual use, the prior art is inconvenient to load and fix the glass during operation, occupies a large space, and cannot effectively offset the multidirectional vibration (especially the lateral shear force) during transportation, resulting in a high glass corner breakage rate;
[0005] Based on this, the utility model discloses a glass transportation damping device. UTILITY MODEL CONTENTS
[0006] To solve the problem of the prior art in the background art that the loading and fixing operation of glass is inconvenient, occupies a large space, and cannot effectively offset the multidirectional vibration during transportation, resulting in a high glass corner breakage rate, the utility model provides a glass transportation damping device, which comprises a bottom plate, a base is installed on the top of the bottom plate, an auxiliary damping assembly is installed on the base, the auxiliary damping assembly comprises a first telescopic rod, the top end surface of the base is symmetrically fixed with a first telescopic rod, a first limiting frame is installed on the lifting end of the first telescopic rod, the top end surface of the first limiting frame is symmetrically fixed with a second telescopic rod, a second limiting frame is installed on the lifting end of the second telescopic rod, a placing cavity is formed in the top of the base, buffer springs are installed at equal intervals on the inner wall bottom end surface of the placing cavity, a supporting plate is connected to the top of the buffer springs, a damping pad is arranged on the top of the supporting plate, and an auxiliary stabilizing assembly is installed on the bottom plate.
[0007] As a further improvement of the technical solution, the auxiliary stabilizing assembly comprises a first aperture, the vertical surface of the frame body at both ends of the first limiting frame is symmetrically provided with a first aperture, the vertical surface of the plate body at both ends of the bottom plate is symmetrically provided with a second aperture, the inside of the first aperture and the second aperture is clamped with a clamping block, and the clamping blocks are installed with a supporting rod.
[0008] As a further improvement of the technical solution, the frame body of the first limiting frame and the second limiting frame is surrounded by a through cavity, the inside of the through cavity and the placement cavity is provided with a damping cavity on the two side inner wall surfaces, the two end vertical inner wall surfaces of each damping cavity is installed with a damping seat, each pair of damping seats is installed with a fixed shaft, the outer part of the cross section of each fixed shaft is rotatably sleeved with an elastic rubber roller, the inside of the damping seat is provided with a damping block, a damping spring and a damper, and the damping spring and the damper cooperate.
[0009] As a further improvement of the technical solution, the outer side surface of both ends of the first limiting frame is symmetrically installed with a micro electric push rod, the telescopic end of the micro electric push rod protrudes through the frame plate of the first limiting frame and is installed with a limiting rubber clamping block, and the functional surface of the limiting rubber clamping block is pasted with a non-slip rubber layer.
[0010] As a further improvement of the technical solution, the vertical surface of both ends of the bottom plate is equidistantly provided with a convex mounting groove, the bottom of the base is fixedly connected with a convex mounting block, the convex mounting block is clamped in the inside of the convex mounting groove, both ends of the bottom plate are symmetrically provided with a fixed groove, the fixed groove is provided with a space which penetrates the space of the convex mounting groove, and a fixed insertion plate is inserted into the fixed groove.
[0011] As a further improvement of the technical solution, the bottom of the bottom plate is provided with a lifting groove, the lifting groove is provided with a lifting frame, small rollers are rotatably installed at the four corner positions of the lifting frame, a screw rod is rotatably installed on one side of the frame body of the lifting frame, the top end of the screw rod protrudes outside through the plate body of the bottom plate and is installed with a rotating knob, and when the lifting frame drives the small rollers to rise to the highest position, the bottom section of the small rollers is higher than the horizontal plane of the bottom end surface of the bottom plate.
[0012] Working principle: before loading the glass, the corresponding number of bases are installed on the top of the convex mounting groove of the bottom plate by using the convex mounting block, and the fixed insertion plate is inserted into the inside of the fixed groove, so that the auxiliary damping assembly is fixed on the bottom plate.
[0013] The glass to be loaded is lifted to the top of the second limiting frame, sequentially passes through the through cavity inside the second limiting frame and the first limiting frame, then the bottom of the glass enters the placement cavity inside the base, finally falls on the shock pad on the top of the buffer spring, then the first telescopic rod is stretched to move the second telescopic rod to the working position, the second telescopic rod is stretched according to the height of the glass, the second limiting frame is moved to the appropriate position, finally the miniature electric push rod is started, the limiting rubber clamping block moves and clamps on both sides of the glass, and the quick loading of the glass of different sizes is realized.
[0014] After the glass is fixed in the auxiliary damping assembly, the upper clamping block is clamped into the first notch, the lower clamping block can be clamped into the second notch, the stable operation of the first limiting frame is ensured, then the rotating knob is rotated to apply a rotating force to the screw rod, the lifting frame drives the small rollers to move downwards, the bottom plate moves towards the ground after the small rollers contact the ground, the lifting effect of the bottom plate is realized, the glass after loading is conveniently moved under the cooperation of the small rollers, the quick switching between the moving and fixed states is realized, and the loading efficiency is further improved.
[0015] During the glass transportation, once vibration occurs, the elastic rubber rollers clamped on both sides of the glass buffer while avoiding the glass from shaking, the limiting rubber clamping block avoids the glass from deviating, and under the cooperation of the damping seat, the transverse shear force is reduced.
[0016] Compared with the prior art, the glass transportation damping device has the following beneficial effects:
[0017] 1. In the glass transportation damping device, the auxiliary damping assembly is cooperated to realize the quick loading and unloading of the glass, meet the fixing and damping effect of the glass corners of different sizes, and realize the multi-angle compensation of the vibration force.
[0018] 2. In the glass transportation damping device, the auxiliary stabilizing assembly is cooperated to realize the auxiliary stability effect of the glass, realize the quick switching between the moving and fixed states, and further improve the loading efficiency. DRAWINGS EXPLANATION
[0019] Figure 1 It is a whole structure schematic view of the utility model,
[0020] Figure 2 It is a structure schematic view of the auxiliary damping assembly of the utility model,
[0021] Figure 3 It is a structure schematic view of the utility model Figure 2 It is an enlarged structure schematic view of A in the utility model,
[0022] Figure 4 It is a sectional structure schematic view of the bottom plate of the utility model.
[0023] The meanings of the various reference signs in the drawings are as follows:
[0024] 1, bottom plate; 2, base; 3, first telescopic rod; 4, first limiting frame; 5, second telescopic rod; 6, second limiting frame; 7, placing cavity; 8, buffer spring; 9, supporting plate; 10, damping cavity; 11, damping seat; 12, fixing shaft; 13, elastic rubber roller; 14, through cavity; 15, micro electric push rod; 16, limiting rubber clamping block; 17, No. 1 bayonet; 18, No. 2 bayonet; 19, clamping block; 20, supporting rod; 21, lifting groove; 22, lifting frame; 23, small roller; 24, screw rod; 25, rotating knob; 26, convex mounting groove; 27, fixing groove; 28, fixed insertion plate. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.
[0026] Therefore, the present application provides a damping device for glass transportation, which is shown in Figure 1 - Figure 4As shown, it comprises a bottom plate 1, the top of the bottom plate 1 is provided with a base 2, the base 2 is provided with an auxiliary damping assembly, the auxiliary damping assembly comprises a first telescopic rod 3, the top end face of the base 2 is symmetrically fixed with the first telescopic rod 3, the lifting end of the first telescopic rod 3 is provided with a first limiting frame 4, the top end face of the first limiting frame 4 is symmetrically fixed with a second telescopic rod 5, the lifting end of the second telescopic rod 5 is provided with a second limiting frame 6, the top of the base 2 is provided with a placing cavity 7, the inner wall bottom end face of the placing cavity 7 is equally provided with a buffer spring 8, the top of the buffer spring 8 is connected with a supporting plate 9, the top of the supporting plate 9 is provided with a damping pad, and the bottom plate 1 is provided with an auxiliary stabilizing assembly. The first telescopic rod 3 and the second telescopic rod 5 form a double-protection damping effect, the first telescopic rod 3 can cope with conventional bumps, the second telescopic rod 5 can cope with severe impact, the first limiting frame 4 can be stretched to the longest distance when working, the second limiting frame 6 can be pushed to the appropriate height by using the second telescopic rod 5 according to the height of the glass, the first telescopic rod 3 and the second telescopic rod 5 are in a contracted state when the first limiting frame 4 and the second limiting frame 6 are not working, and the damping pad on the buffer spring 8 and the supporting plate 9 can cooperate to reduce the vertical force. When loading the glass, the glass is lifted to the top of the non-working second limiting frame 6, and then placed in the inside of the through cavity 14. The glass in the vertical state passes through the second limiting frame 6 and the first limiting frame 4 in turn, and then enters the inside of the placing cavity 7 of the base 2, and finally falls on the damping pad on the top of the buffer spring 8. Then, the first telescopic rod 3 is stretched to move the second telescopic rod 5 to the working position to cope with conventional bumps, and the second telescopic rod 5 is stretched according to the height of the glass to move the second limiting frame 6 to the appropriate position to cope with severe impact, thereby achieving rapid loading and unloading of the glass.
[0027] The frame body of the first limiting frame 4 and the second limiting frame 6 is surrounded by a through cavity 14, the placing cavity 7 and the through cavity 14 are provided with damping cavities 10 on the two side inner wall faces, each damping cavity 10 is provided with a damping seat 11 on the vertical end inner wall face, each pair of damping seats 11 is provided with a fixed shaft 12, the cross section outer portion of each fixed shaft 12 is rotatably sleeved with an elastic rubber roller 13, the inside of the damping seat 11 is provided with a damping block, a damping spring and a damper, and the damping spring and the damper cooperate to work. When the glass passes through the opening space of the through cavity 14 and the placing cavity 7, the glass will pass through the working range of the elastic rubber roller 13. The elastic rubber roller 13 rotates with the fixed shaft 12, so that the elastic rubber roller 13 can be clamped on both sides of the glass. When the glass vibrates, the elastic rubber roller 13 not only has the effect of clamping and fixing, but also can realize the reduction of the transverse shear force under the cooperation of the damping seat 11.
[0028] The micro electric push rod 15 is symmetrically installed on the outer side of the two ends of the first limiting frame 4, the telescopic end of the micro electric push rod 15 extends through the frame plate of the first limiting frame 4 and is installed with a limiting rubber clamp block 16, and the active surface of the limiting rubber clamp block 16 is pasted with an anti-skid rubber layer. After the glass is fixed between the first limiting frame 4 and the frame body of the second telescopic rod 5, the micro electric push rod 15 is started, the limiting rubber clamp block 16 moves and clamps on both sides of the glass, avoiding the phenomenon of glass deviation.
[0029] When working, through the structural design of the auxiliary damping assembly, the glass to be loaded is lifted to the top of the second limiting frame 6, and then enters the placing cavity 7 inside the base 2 through the through cavity 14 inside the second limiting frame 6 and the first limiting frame 4 in turn, and finally falls on the damping pad on the top of the buffer spring 8. Then, the first telescopic rod 3 is stretched to make the second telescopic rod 5 move up to the working position, and the second telescopic rod 5 is stretched according to the height of the glass to make the second limiting frame 6 move up to the appropriate position. Finally, the micro electric push rod 15 is started, the limiting rubber clamp block 16 moves and clamps on both sides of the glass, which is simple to operate and can realize the rapid loading of glass of different sizes. During the transportation of the glass, once the vibration occurs, the elastic rubber roller 13 clamped on both sides of the glass will avoid the shaking of the glass, the limiting rubber clamp block 16 will avoid the deviation of the glass, and under the cooperation of the damping seat 11, the transverse shear force is reduced.
[0030] Further, referring to Figure 1 - Figure 2 , Figure 4 It is shown that the auxiliary stabilizing assembly comprises a first clamping hole 17, the vertical surface of the frame body of the two ends of the first limiting frame 4 is symmetrically provided with the first clamping hole 17, the vertical surface of the plate body of the two ends of the bottom plate 1 is symmetrically provided with a second clamping hole 18, the inside of the first clamping hole 17 and the second clamping hole 18 is clamped with a clamping block 19, and the clamping block 19 is installed with a supporting rod 20. The clamping block 19 is divided into an upper body block and a lower body block, the upper clamping block 19 is clamped in the first clamping hole 17, and the lower clamping block 19 is clamped in the second clamping hole 18. When the number of glasses to be fixed changes, the upper clamping block 19 can be clamped into the first clamping hole 17, and the height of the first limiting frame 4 can be adjusted by the first telescopic rod 3, so that the lower clamping block 19 can be clamped into the second clamping hole 18, the auxiliary damping assembly is stably supported, and the shaking amplitude is reduced.
[0031] The two ends of the bottom plate 1 are vertically provided with convex mounting grooves 26, the bottom of the base 2 is fixedly connected with a convex mounting block, the convex mounting block is clamped in the convex mounting groove 26, the two ends of the bottom plate 1 are symmetrically provided with fixing grooves 27, the fixing grooves 27 are provided with a space that penetrates the space of the convex mounting groove 26, and a fixing insertion plate 28 is inserted in the fixing groove 27. Before loading the glass, a corresponding number of bases 2 are mounted on the top of the convex mounting groove 26 of the bottom plate 1 by using the convex mounting block, then the fixing insertion plate 28 is inserted into the fixing groove 27, and the fixing effect of the base 2 is achieved.
[0032] The bottom of the bottom plate 1 is provided with a lifting groove 21, the lifting groove 21 is provided with a lifting frame 22, small rollers 23 are rotatably installed at four corner positions of the lifting frame 22, a screw rod 24 is rotatably installed on one side of the lifting frame 22, the top end of the screw rod 24 penetrates through the plate body of the bottom plate 1 and extends to the outside and is provided with a rotating knob 25, when the lifting frame 22 drives the small rollers 23 to rise to the highest position, the bottom section of the small rollers 23 is higher than the horizontal plane of the bottom end surface of the bottom plate 1. When the loaded glass is moved, the rotating knob 25 is rotated to apply a rotating force to the screw rod 24, the lifting frame 22 drives the small rollers 23 to move downward, after the small rollers 23 contact the ground, the bottom plate 1 moves towards the ground, the effect of lifting the bottom plate 1 is achieved, and the loaded glass is conveniently moved under the cooperation of the small rollers 23.
[0033] When working, through the structural design of the auxiliary stabilizing assembly, before loading the glass, a corresponding number of bases 2 are mounted on the top of the convex mounting groove 26 of the bottom plate 1 by using the convex mounting block, and the fixing insertion plate 28 is inserted into the fixing groove 27, so that the auxiliary damping assembly is fixed on the bottom plate 1, after the glass is fixed in the auxiliary damping assembly, the upper clamping block 19 is clamped into the first clamping hole 17, the height of the first limiting frame 4 is adjusted by using the first telescopic rod 3, so that the lower clamping block 19 can be clamped into the second clamping hole 18, the stable operation of the first limiting frame 4 is ensured, then the rotating knob 25 is rotated to apply a rotating force to the screw rod 24, the lifting frame 22 drives the small rollers 23 to move downward, after the small rollers 23 contact the ground, the bottom plate 1 moves towards the ground, the effect of lifting the bottom plate 1 is achieved, and the loaded glass is conveniently moved under the cooperation of the small rollers 23, the quick switching between the moving and fixed states is realized, and the loading efficiency is further improved.
[0034] In summary, the problems that the loading and fixing operation of the glass is inconvenient, the space occupied is large, and the multidirectional vibration during transportation, especially the transverse shear force, cannot be effectively offset, resulting in a high glass corner breakage rate, are effectively solved.
[0035] It is to be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0036] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the spirit and scope of the application, which is defined by the appended claims and their equivalents.
Claims
1. A damping device for glass transportation, comprising a base plate (1), characterized in that: The top of the bottom plate (1) is provided with a base (2), the base (2) is provided with an auxiliary damping assembly, the auxiliary damping assembly comprises a first telescopic rod (3), the top end surface of the base (2) is symmetrically fixed with the first telescopic rod (3), the lifting end of the first telescopic rod (3) is provided with a first limiting frame (4), the top end surface of the first limiting frame (4) is symmetrically fixed with a second telescopic rod (5), the lifting end of the second telescopic rod (5) is provided with a second limiting frame (6), the top of the base (2) is provided with a placing cavity (7), the inner wall bottom end surface of the placing cavity (7) is equally provided with a buffer spring (8), the top of the buffer spring (8) is connected with a supporting plate (9), the top of the supporting plate (9) is provided with a damping pad, and the bottom plate (1) is provided with an auxiliary stabilizing assembly.
2. The shock absorbing device for transporting glass according to claim 1, wherein: The auxiliary stabilizing assembly comprises a first socket (17), the vertical surface of the both end frame body of the first limiting frame (4) is symmetrically provided with a first socket (17), the vertical surface of the both end plate body of the bottom plate (1) is symmetrically provided with a second socket (18), the inside of the first socket (17) and the second socket (18) is clamped with a clamping block (19), and the clamping block (19) is provided with a supporting rod (20).
3. The shock absorbing device for transporting glass according to claim 1, wherein: The frame body of the first limiting frame (4) and the second limiting frame (6) is surrounded by a through cavity (14), the both side inner wall surface of the placing cavity (7) and the through cavity (14) is provided with a damping cavity (10), the both end vertical inner wall surface of each damping cavity (10) is provided with a damping seat (11), each pair of damping seats (11) is provided with a fixed shaft (12), the section outer portion of each fixed shaft (12) is rotatably sleeved with an elastic rubber roller (13), the inside of the damping seat (11) is provided with a damping block, a damping spring and a damper, and the damping spring and the damper cooperate.
4. The shock absorbing device for transporting glass according to claim 3, wherein: The both end outer side surface of the first limiting frame (4) is symmetrically provided with a micro electric push rod (15), the telescopic end of the micro electric push rod (15) penetrates through the frame plate of the first limiting frame (4) and is provided with a limiting rubber clamping block (16), and the functional surface of the limiting rubber clamping block (16) is attached with an anti-skid rubber layer.
5. The shock absorbing device for transporting glass according to claim 2, wherein: The both end vertical surface of the bottom plate (1) is equally provided with a convex mounting groove (26), the bottom of the base (2) is fixed with a convex mounting block, the convex mounting block is clamped in the inside of the convex mounting groove (26), the both ends of the bottom plate (1) are symmetrically provided with a fixed groove (27), the fixed groove (27) is provided with a fixed insertion plate (28).
6. The shock absorbing device for transporting glass according to claim 5, wherein: The bottom of the bottom plate (1) is provided with a lifting groove (21), the lifting groove (21) is provided with a lifting frame (22), the four corner positions of the lifting frame (22) are rotatably provided with small rollers (23), one side of the lifting frame (22) is rotatably provided with a screw rod (24), the top end of the screw rod (24) penetrates through the plate body of the bottom plate (1) and is provided with a rotating knob (25), when the lifting frame (22) drives the small rollers (23) to rise to the highest position, the bottom section surface of the small rollers (23) is higher than the horizontal plane of the bottom end surface of the bottom plate (1).
Citation Information
Patent Citations
Damping type glass fiber reinforced plastic fixing device
CN221114027U