Double-glass multi-cavity fireproof hollow glass transfer equipment

By designing a double-glazed, multi-cavity fireproof insulating glass transfer device, the problem of inconvenient glass transportation in a limited space was solved by utilizing the clamping structure and the mobility of the base, achieving stable transportation and increasing the applicable glass specifications.

CN223673138UActive Publication Date: 2025-12-16FUZHOU XINFENG GLASS CO LTD
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Patent Information

Application Number
CN202520103114.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-12-16
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Existing fireproof insulated glass lacks shock-absorbing structures when transported in confined spaces, making transportation inconvenient.

Method used

A double-glazed multi-cavity fireproof insulating glass transfer device was designed, including a base, a clamping structure, an adjusting component, and a stabilizing component. The glass is fixed by the adjusting component and the abutment plate of the clamping structure, and the glass is transported by utilizing the mobility of the base. The fixing effect is enhanced by the suction plate and the reinforcement component.

Benefits of technology

It enables stable transportation of glass within a limited space, increases the range of glass specifications applicable to the device, and improves the fixing effect.

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Abstract

The utility model relates to the technical field of hollow glass, in particular to double-glass multi-cavity fireproof hollow glass transfer equipment which comprises a base, the base can move along a working face, a clamping structure is arranged on the upper surface of the base, and the clamping structure comprises an abutting plate and an adjusting assembly. The abutting plate is arranged in the length direction of the base and is perpendicular to the upper surface of the base. The adjusting assembly is arranged on the opposite face of the abutting plate, glass is placed between the adjusting assembly and the abutting plate, the adjusting assembly and the abutting plate jointly act to clamp the glass, and the effect that the glass can be conveniently transported in the limited space is achieved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of hollow glass, in particular to double-glass multi-cavity fireproof hollow glass transfer equipment. BACKGROUND

[0002] At present, the fireproof hollow glass is generally composed of two or more glass original pieces.

[0003] The glass original pieces are separated by a spacing frame, which is generally made of aluminum alloy and the like and serves to fix and maintain the glass spacing. The glass periphery is bonded and sealed with high-strength and high-air-tightness composite adhesive, sealing strips and glass strips, and dry gas (such as air) or inert gas (such as argon) is filled in the intermediate space surrounded by the glass original pieces, thereby forming a hollow structure.

[0004] The prior art in the above has the following defects: the existing glass generally does not have a damping structure, and it is inconvenient to transport in a limited space. CONTENT OF THE UTILITY MODEL

[0005] The application provides double-glass multi-cavity fireproof hollow glass transfer equipment to conveniently transport the glass in a limited space.

[0006] The above technical purpose of the application is achieved through the following technical scheme:

[0007] The double-glass multi-cavity fireproof hollow glass transfer equipment comprises a base, the base is movable along a working surface, the upper surface of the base is provided with a clamping structure, the clamping structure comprises an abutting plate and an adjusting assembly, the abutting plate is arranged along the length direction of the base and is perpendicular to the upper surface of the base; the adjusting assembly is arranged opposite to the abutting plate, the glass is placed between the adjusting assembly and the abutting plate, and the adjusting assembly and the abutting plate jointly clamp the glass.

[0008] Through the above scheme, when the glass needs to be transported, the glass is placed on the upper surface of the base, so that the glass is located between the adjusting assembly and the abutting plate, then the adjusting assembly is adjusted, so that the adjusting assembly and the abutting plate abut the two sides of the glass respectively to achieve the effect of fixing the glass, and since the base is movable along the working surface, the base can be pushed to drive the glass to move, thereby achieving the effect of conveniently transporting the glass in a limited space.

[0009] Further, the adjusting assembly comprises a supporting frame, a traveling piece and a jacking plate, the supporting frame is fixedly connected with the side wall of the base, the traveling piece is threadedly connected with the supporting frame, the jacking plate is rotationally connected with the traveling piece, the jacking plate and the abutting plate are arranged in parallel with each other, and the relative position relationship between the traveling piece and the supporting frame can drive the jacking plate to move towards or away from the abutting plate.

[0010] By adopting the above scheme, the relative position relationship between the rotating traveling member and the support frame can drive the jacking plate to move towards or away from the abutting plate, so that the distance between the abutting plate and the jacking plate can be adjusted according to the thickness of the glass, and the range of glass specifications that the device can use can be increased.

[0011] Further, the side of the abutting plate close to the jacking plate is provided with a plurality of suction plates, which are uniformly arranged in a rectangular array on the side wall of the abutting plate. The suction plates are arranged to increase the friction between the abutting plate and the glass.

[0012] By adopting the above scheme, the suction plates are arranged to increase the friction between the abutting plate and the glass, so that the fixing of the glass is more stable.

[0013] Further, the upper surface of the base close to the four corners is provided with a reinforcing assembly, each reinforcing assembly comprising a lifting rod, a reinforcing plate and a jackscrew, each lifting rod being arranged perpendicular to the upper surface of the base and fixedly connected to the base, the jackscrew being threadedly connected to the end of the lifting rod away from the base, and the jackscrew and the lifting rod being arranged perpendicular to each other, and the reinforcing plate being rotatably connected to the end of the jackscrew.

[0014] Further, each lifting rod comprises a sleeve rod and an inner rod, the bottom wall of the sleeve rod being fixedly connected to the surface of the base, and the inner rod being inserted into the sleeve rod and slidable along the sleeve rod, the surface of the sleeve rod being provided with a through hole, and a threaded rod being arranged in the through hole, and when the relative position of the inner rod and the sleeve rod is determined, the threaded rod is rotated to abut against the inner rod.

[0015] By adopting the above scheme, by adjusting the relative position relationship between the inner rod and the sleeve rod, the reinforcing plate can be driven by the inner rod to adjust the relative position relationship with the glass, so that the position of the reinforcing plate can be adjusted according to the height of the glass, and the position of the reinforcing plate for reinforcing the glass is the best position. The jackscrew is arranged to control the distance between the two reinforcing plates, so that the glass of different thicknesses can be clamped and fixed.

[0016] Further, the two inner rods on the same side arranged along the length direction of the base are provided with a linkage rod, both ends of the linkage rod being fixedly connected to the two inner rods.

[0017] By adopting the above scheme, the linkage rod is arranged to adjust the two inner rods synchronously by pushing the linkage rod.

[0018] Further, the two linkage rods are provided with a plurality of stabilizing assemblies on opposite sides, the stabilizing assemblies are linearly arranged, each stabilizing assembly comprises a containing shell, an elastic member and a stabilizing needle, the containing shell is fixedly connected with the side wall of the linkage rod, the elastic member is arranged in the containing shell, one end of the elastic member is fixedly connected with the bottom wall of the containing shell, the other end of the elastic member is fixedly connected with the stabilizing needle, and the elastic member pushes the stabilizing needle to move to the opposite side; the side, away from the elastic member, of each stabilizing needle is fixedly connected with a buffer block, and the buffer block is used for abutting against the glass.

[0019] By adopting the above scheme, when the glass is placed on the upper surface of the base, the elastic members on both sides of the glass push the two stabilizing needles to drive the buffer blocks to move close to both sides of the glass, so that the buffer blocks on both sides of the glass abut against the glass, and the effect of increasing the limitation on the position of the glass is achieved.

[0020] Further, the two sides of each buffer block are provided with guide grooves, and the guide grooves are arranged to facilitate the insertion of the side wall of the glass right base into the surface of the base.

[0021] By adopting the above scheme, the arrangement of the guide grooves facilitates the insertion of the glass into the surface of the base.

[0022] In summary, the present application has the following technical effects:

[0023] By arranging the glass conveying device, when the glass needs to be conveyed, the glass is placed on the upper surface of the base, so that the glass is located between the adjusting assembly and the abutting plate, then the adjusting assembly is adjusted, so that the adjusting assembly and the abutting plate abut against both sides of the glass respectively to achieve the effect of fixing the glass, and because the base can move along the working surface, the base can drive the glass to move, thereby achieving the effect of facilitating the transportation of the glass in a limited space.

[0024] By arranging the adjusting assembly, the relative position relationship between the rotating traveler and the support frame can drive the jacking plate to move towards or away from the abutting plate, so that the distance between the abutting plate and the jacking plate can be adjusted according to the thickness of the glass, and the range of glass specifications that can be used by the device can be increased.

[0025] By arranging the stabilizing assembly, when the glass is placed on the upper surface of the base, the elastic members on both sides of the glass push the two stabilizing needles to drive the buffer blocks to move close to both sides of the glass, so that the buffer blocks on both sides of the glass abut against the glass, and the effect of increasing the limitation on the position of the glass is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is a structural schematic view of a double-glass multi-cavity fireproof hollow glass transfer equipment of the present application;

[0027] Figure 2is a structural schematic view of the application in a non-use state;

[0028] Figure 3 is a sectional view of the stable assembly of the application.

[0029] In the figure, 1, base; 11, roller; 2, clamping structure; 21, abutting plate; 211, suction plate; 22, adjusting assembly; 221, support frame; 222, traveling piece; 223, jacking plate; 3, reinforcing assembly; 31, lifting rod; 311, sleeve rod; 312, inner rod; 313, threaded rod; 32, reinforcing plate; 33, jacking screw; 4, linkage rod; 5, stable assembly; 51, containing shell; 52, elastic piece; 53, stable needle; 531, buffer block; 5311, guide groove; 6, glass. DETAILED DESCRIPTION

[0030] The application will be further described in detail below with reference to the accompanying drawings.

[0031] With reference to Figure 1 , the double-glass multi-cavity fireproof hollow glass transfer equipment provided by the embodiment includes a base 1, rollers 11, and a clamping structure 2. In the embodiment, the four rollers 11 are fixedly connected with four corners of the bottom wall of the base 1, so that the base 1 can move along the working surface. The clamping structure 2 is arranged on the upper surface of the base 1 and is used for clamping the glass 6. In the embodiment, the upper surface of the base 1 is covered with a layer of buffer rubber, which is used for protecting the glass 6.

[0032] With reference to Figures 1-2 , the clamping structure 2 includes an abutting plate 21 and an adjusting assembly 22. The abutting plate 21 is arranged along the length direction of the base 1 and is perpendicular to the upper surface of the base 1. The abutting plate 21 is fixedly connected with the upper surface of the base 1. The adjusting assembly 22 is arranged opposite to the abutting plate 21. The glass 6 is placed between the adjusting assembly 22 and the abutting plate 21. The adjusting assembly 22 and the abutting plate 21 jointly clamp the glass 6.

[0033] With reference to Figures 1-2 , the adjusting assembly 22 includes a support frame 221, a traveling piece 222, and a jacking plate 223. The support frame 221 is in a U shape as a whole. Both ends of the support frame 221 are fixedly connected with the side wall of the base 1. The traveling piece 222 is arranged on the crossbeam of the support frame 221. The traveling piece 222 is arranged perpendicularly to the support frame 221. The traveling piece 222 is threadedly connected with the support frame 221. The jacking plate 223 is rotationally connected with the traveling piece 222. The jacking plate 223 is arranged parallel to the abutting plate 21. The relative position relationship between the traveling piece 222 and the support frame 221 can drive the jacking plate 223 to move towards or away from the abutting plate 21. The jacking plate 223 and the abutting plate 21 jointly clamp the glass 6. In the embodiment, the traveling piece 222 is a bolt.

[0034] Referring to Figures 1-2 , the side of the abutting plate 21 close to the jacking plate 223 is provided with a plurality of suction plates 211, which are arranged in a rectangular array on the side wall of the abutting plate 21, and each suction plate 211 is fixedly connected with the abutting plate 21; in this embodiment, the suction plate 211 is made of soft rubber, and the side wall of the suction plate 211 away from the abutting plate 21 is in the shape of a bell mouth, and the suction plate 211 is arranged to increase the friction between the abutting plate 21 and the glass 6.

[0035] Referring to Figures 1-2 , the upper surface of the base 1 is provided with a reinforcing assembly 3 near each corner, and each reinforcing assembly 3 comprises a lifting rod 31, a reinforcing plate 32 and a jackscrew 33, each lifting rod 31 is arranged perpendicular to the upper surface of the base 1 and fixedly connected with the base 1, the jackscrew 33 is threadedly connected with the end of the lifting rod 31 away from the base 1, and the jackscrew 33 is arranged perpendicular to the lifting rod 31, and the reinforcing plate 32 is rotatably connected with the end of the jackscrew 33; when the glass 6 is placed on the upper surface of the base 1, the jackscrew 33 can be rotated to move the reinforcing plates 32 on both sides of the glass 6 towards the glass 6, thereby achieving the effect of reinforcing and fixing the glass 6.

[0036] Referring to Figures 1-2 , each lifting rod 31 comprises a sleeve rod 311 and an inner rod 312, the bottom wall of the sleeve rod 311 is fixedly connected with the surface of the base 1, the inner rod 312 is inserted into the sleeve rod 311, the inner rod 312 can slide along the sleeve rod 311, the surface of the sleeve rod 311 is provided with a through hole, and a threaded rod 313 is threadedly connected in the through hole; after the relative position of the inner rod 312 and the sleeve rod 311 is determined, the threaded rod 313 is rotated to abut against the inner rod 312; by adjusting the relative position of the inner rod 312 and the sleeve rod 311, the relative position of the reinforcing plate 32 and the glass 6 can be adjusted, so that the fixed position of the reinforcing plate 32 on the glass 6 is in the optimal state; after the relative position of the sleeve rod 311 and the inner rod 312 is determined, the threaded rod 313 is rotated to abut against the inner rod 312, so that the relative position of the sleeve rod 311 and the inner rod 312 can be locked.

[0037] Referring to Figures 2-3 , a linkage rod 4 is arranged between each pair of inner rods 312 of the same side arranged along the length direction of the base 1, and the two ends of each linkage rod 4 are fixedly connected with the two inner rods 312, so that moving one linkage rod 4 can drive the two inner rods 312 of the same side to move simultaneously, which improves the work efficiency when adjusting the inner rod 312.

[0038] Referring to Figures 2-3 , the opposite sides of the two linkage rods 4 are provided with a stabilizing assembly 5, and each linkage rod 4 is provided with a plurality of stabilizing assemblies 5, and the plurality of stabilizing assemblies 5 are arranged in a linear array.

[0039] With reference to Figures 2-3 Each stabilizing assembly 5 comprises a containing shell 51 fixedly connected with the side wall of the linkage rod 4, an elastic member 52 arranged in the containing shell 51, one end of the elastic member 52 being fixedly connected with the bottom wall of the containing shell 51, the other end of the elastic member 52 being fixedly connected with a stabilizing needle 53, the elastic member 52 pushing the stabilizing needle 53 to move to the opposite side, and in the embodiment, the elastic member 52 is a push spring.

[0040] With reference to Figures 2-3 The side of each stabilizing needle 53 away from the elastic member 52 is fixedly connected with a buffer block 531 for abutting against the glass 6, and in the embodiment, the elastic member 52 is preferably made of hard rubber; and the two sides of each buffer block 531 are provided with guide grooves 5311, which facilitate the insertion of the glass 6 into the surface of the base 1 through the side wall of the base 1.

[0041] The specific implementation principle of the double-glass multi-cavity fireproof hollow glass transfer equipment is as follows: first, the glass 6 is inserted into the upper surface of the base 1 through the side of the base 1 in the width direction, after the insertion, the elastic members 52 on both sides of the base 1 push the stabilizing needles 53, the stabilizing needles 53 drive the buffer blocks 531 to preliminarily position the glass 6, then the advancing member 222 is rotated, the advancing member 222 drives the jacking plate 223 to move towards the glass 6 until one side of the glass 6 abuts against the suction plate 211 and the other side abuts against the jacking plate 223, at this time, the double positioning of the glass 6 is completed; then the two linkage rods 4 are operated respectively until the linkage rods 4 drive the stabilizing blocks to change the relative position of the glass 6 through the inner rods 312, when the position is determined, the threaded rod 313 is rotated to lock the relative position relationship between each inner rod 312 and the sleeve rod 311; then each jacking screw 33 is selected and rotated in turn, so that each reinforcing plate 32 abuts against the glass 6 to achieve the triple positioning of the glass 6, and then the base 1 can be pushed to move the glass 6 in the limited space.

[0042] The specific embodiment is only an explanation of the application, and is not a limitation of the application, and those skilled in the art can make modifications to the embodiment without creative contribution after reading the specification, but as long as the modifications are within the scope of the claims of the application, they are protected by the patent law.

Claims

1. Double glass multi-cavity fireproof hollow glass transfer equipment, characterized in that: The application relates to a glass clamping device, which comprises a base (1) that can move along a working surface, the upper surface of the base (1) is provided with a clamping structure (2), the clamping structure (2) comprises an abutting plate (21) and an adjusting assembly (22), the abutting plate (21) is arranged along the length direction of the base (1) and is perpendicular to the upper surface of the base (1); the adjusting assembly (22) is arranged on the opposite side of the abutting plate (21), a glass (6) is placed between the adjusting assembly (22) and the abutting plate (21), and the adjusting assembly (22) and the abutting plate (21) jointly clamp the glass (6).

2. The double-potcore fire resistant insulated glass transfer apparatus of claim 1, wherein: The adjusting assembly (22) comprises a support frame (221), a traveling piece (222) and a jacking plate (223), the support frame (221) is fixedly connected with the side wall of the base (1), the traveling piece (222) is screw-connected with the support frame (221), the jacking plate (223) is rotationally connected with the traveling piece (222), the jacking plate (223) is arranged in parallel with the abutting plate (21), and the relative position relationship between the jacking plate (223) and the support frame (221) can drive the jacking plate (223) to move towards or away from the abutting plate (21).

3. The double-potcore fire resistant insulated glass transfer apparatus of claim 2, wherein: The side, close to the jacking plate (223), of the abutting plate (21) is provided with a plurality of suction plates (211), the plurality of suction plates (211) are evenly arranged in a rectangular array on the side wall of the abutting plate (21); the suction plates (211) are arranged for increasing the friction between the abutting plate (21) and the glass (6).

4. The double-potcore fire resistant insulated glass transfer apparatus of claim 1, wherein: The upper surface of the base (1) is provided with a reinforcing assembly (3) close to the four corners, each reinforcing assembly (3) comprises a lifting rod (31), a reinforcing plate (32) and a jacking screw (33), each lifting rod (31) is arranged perpendicularly to the upper surface of the base (1) and is fixedly connected with the base (1), the jacking screw (33) is screw-connected with the end, away from the base (1), of the lifting rod (31), and the jacking screw (33) is arranged perpendicularly to the lifting rod (31), and the reinforcing plate (32) is rotationally connected with the end of the jacking screw (33).

5. The double-potcore fire resistant insulated glass transfer apparatus of claim 4, wherein: Each lifting rod (31) comprises a sleeve rod (311) and an inner rod (312), the bottom wall of the sleeve rod (311) is fixedly connected with the surface of the base (1), the inner rod (312) is inserted into the sleeve rod (311), the inner rod (312) can slide along the sleeve rod (311), the surface of the sleeve rod (311) is provided with a through hole, a threaded rod (313) is arranged in the through hole, and the threaded rod (313) is rotated to abut against the inner rod (312) after the relative position of the inner rod (312) and the sleeve rod (311) is determined.

6. The double-potcore fire resistant insulated glass transfer apparatus of claim 4, wherein: Linkage rods (4) are arranged between the two inner rods (312) on the same side along the length direction of the base (1), and the two ends of each linkage rod (4) are fixedly connected with the two inner rods (312).

7. The double-potcore fire resistant insulated glass transfer apparatus of claim 6, wherein: Two said linkage rods (4) opposite sides are provided with stabilizing assembly (5), each linkage rod (4) rod on stabilizing assembly (5) are provided with several, and several stabilizing assembly (5) are linear arrangement, each stabilizing assembly (5) includes containing shell (51), elastic member (52) and stabilizing needle (53), containing shell (51) and linkage rod (4) side wall fixed connection, elastic member (52) is arranged in containing shell (51), one end of elastic member (52) and the bottom wall of containing shell (51) fixed connection, the other end of elastic member (52) and stabilizing needle (53) fixed connection, elastic member (52) will push stabilizing needle (53) to move to the opposite side;Every stabilizing needle (53) deviating from the side of elastic member (52) is fixedly connected with buffer block (531), and the buffer block (531) is used for abutting with the glass (6).

8. The double-potcore fire resistant insulated glass transfer apparatus of claim 7, wherein: Both sides of each said buffer block (531) are provided with guide slot (5311), the setting of guide slot (5311) facilitates the glass (6) right base (1) side wall is inserted to the surface of base (1).