Device for testing sealant in oversized and overweight hollow glass

By designing a test device for the sealant inside ultra-large and ultra-heavy insulating glass, and using a frame structure and components to measure the strength and load-bearing capacity of the sealant, the problem of difficulty in evaluating the performance of sealant in the manufacture of insulating glass is solved, ensuring the stability of the glass and adapting to different size requirements.

CN223910761UActive Publication Date: 2026-02-13ZHENGZHOU ZHONGYUAN SILANDE HIGH TECH CO LTD +2
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Patent Information

Application Number
CN202520440494.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-02-13
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

In the manufacturing process of extra-large and extra-heavy insulated glass, there are currently no relevant standards or testing methods to characterize the performance of the sealant, which leads to problems such as delamination, slippage, and misalignment.

Method used

A test device for sealant inside ultra-large and ultra-heavy insulating glass was designed. Through components such as frame structure, clamping plate, fixing block, steel wire rope and weights, the strength and load-bearing capacity of the sealant are measured under actual use conditions.

Benefits of technology

It enables effective evaluation of sealant performance, ensuring the stability and reliability of insulated glass and adapting to the needs of glass of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly relates to a sealant test device in oversized and overweight hollow glass, which comprises a frame with a box-shaped structure, the frame comprises an upper support and a lower support, a stand column is connected between the upper support and the lower support, and an upper support rod I, an upper support rod II, an upper support rod III and an upper support rod IV are connected end to end. A first lower supporting rod, a second lower supporting rod, a third lower supporting rod and a fourth lower supporting rod are connected end to end, a connecting column is arranged between the first upper supporting rod and the two stand columns connected with the first upper supporting rod, a placing base with an L-shaped longitudinal section is detachably installed on the side portion of the connecting column, first glass is placed in the placing base, and the upper portion of the first glass is fixed through a clamping plate. Glass II is fixed on the side part of the glass I through a sealant; and the strength of the sealant is measured through the weight.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hollow glass sealant test device field, concretely relates to a kind of sealant test device in super large super heavy hollow glass. BACKGROUND

[0002] In recent two years, home decoration glass market rapidly rises, and the terminal market feedback in home decoration appears problems such as flaking, slippage, misplacement in the manufacturing process of super large super heavy hollow glass, and the hollow glass is bonded together by sealant, but there is no relevant standard or test method to characterize the performance of sealant in China. SUMMARY

[0003] The utility model provides a kind of sealant test device in super large super heavy hollow glass.

[0004] The technical scheme of the utility model is realized as follows: a kind of sealant test device in super large super heavy hollow glass, including the frame of box type structure, the frame includes upper support and lower support, and the upper support and lower support are connected with column one between upper support and lower support, and the upper support includes upper support rod one, upper support rod two, upper support rod three and upper support rod four, which are connected head to tail, and the lower support includes lower support rod one, lower support rod two, lower support rod three and lower support rod four, which are connected head to tail, and the upper support rod one and two column one connected with it are provided with the connecting column of horizontal arrangement between them, and the side of connecting column is detachably installed with the placing seat of longitudinal section L type, and the side of upper support rod one is detachably installed with clamping plate, and glass one is placed between clamping plate and placing seat, and the side of glass one is connected with glass two, and the side of glass two is fixed with fixed block for fixing steel wire rope, and the fixed block is connected with steel wire rope, and the other end of steel wire rope is connected with weight, and the upper support and lower support are provided with bearing device for bearing steel wire rope.

[0005] Glass one and glass two are fixed by sealant, and fixed block and glass two are fixed by epoxy glue, and the bonding strength of epoxy glue is greater than that of sealant.

[0006] The bottom of upper support rod one is provided with a plurality of threaded holes on two column ones along its height direction, and the both ends of connecting column are provided with threaded holes.

[0007] The bearing device includes column two, and column two is fixedly connected between upper support rod three and lower support rod three, and column two is fixedly connected between upper support rod four and lower support rod four, and bearing frame is installed between two column two, and pulley frame is installed on the top of bearing frame, and pulley is installed on pulley frame, and the tail of steel wire rope passes through pulley.

[0008] The utility model discloses a technical scheme has following positive effect: the utility model discloses the side portion of connecting column can detachable connection has the seat, the seat is used to place glass one, and the upper portion of glass one is fixed through the clamping plate, and the side portion of glass one is fixed with glass two through the sealing glue, and the side of glass two is fixed with the fixed block through the epoxy glue, and the bonding strength of epoxy glue is far greater than the bonding strength of sealing glue, and the fixed block is connected with the steel wire rope, and the other end of steel wire rope is connected with the weight, and steel wire rope sets up through the pulley, and the strength of sealing glue is measured through the weight, and the bottom of upper support is provided with a plurality of threaded holes on two uprights one along its height direction, and connecting column can be installed at different height of two uprights one through bolt, to adapt to different size hollow glass. BRIEF DESCRIPTION OF DRAWINGS

[0009] Fig. 1 It is the structure schematic drawing of the utility model.

[0010] Fig. 2 It is the structure schematic drawing of the utility model. CONCRETE EMBODIMENT

[0011] As Figs. 1-2 Shown in a kind of sealing glue testing device in super large overweight hollow glass, including the frame of box type structure, frame includes upper support 1 and lower support 2, and four corners between upper support 1 and lower support 2 are connected with upright one 12, and upper support 1 includes first and last upper support one 4, upper support two 5, upper support three 6 and upper support four 7, and lower support 2 includes first and last lower support one 8, lower support two 9, lower support three 10 and lower support four 11, and upper support one 4 and two upright one 12 connected with it are provided with horizontally arranged connecting column 13 between, and the side portion of connecting column 13 can detachably install the seat 14 of longitudinal section for L type, and the side portion of upper support one 4 can detachably install clamping plate 15 by bolt, and glass one 16 is placed between clamping plate 15 and seat 14, and the side of glass one 16 is connected with glass two 17, and the side of glass two 17 is fixed with fixed block 18 for fixing steel wire rope, and fixed block 18 is connected with steel wire rope 19, and the other end of steel wire rope 19 is connected with weight 20, and upper support 1 and lower support 2 are provided with the load bearing device of bearing steel wire rope;Glass one 16 and glass two 17 are fixed by sealing glue, and fixed block 18 and glass two 17 are fixed by epoxy glue, and the bonding strength of epoxy glue is greater than the bonding strength of sealing glue.

[0012] Specifically, the glass one 16 is placed in the placing seat 14, the upper part of the glass one 16 is located at the side of the upper support rod one 4, the clamping plate 15 is installed on the upper support rod one 4 through the bolt, the glass two 17 is installed at the side of the glass one 16 through the sealing glue, the fixing block 18 is fixed at the side of the glass two 17 through the epoxy glue, the bonding strength of the epoxy glue is greater than that of the sealing glue, the steel wire rope 19 is connected to the fixing block 18, the other end of the steel wire rope 19 is connected to the weight, the weight is increased or decreased according to the size and weight of the glass, so that the maximum force that the sealing glue can bear is measured.

[0013] A plurality of threaded holes 21 are formed in the two upright columns one 12 at the bottom of the upper support rod one 4 along the height direction, and the two ends of the connecting column 13 are also provided with threaded holes; specifically, the two ends of the connecting column 13 are connected to the upright column one 12 through the screw rod, and the installation position of the connecting column 13 is adjusted to adapt to the glass one 16 of different sizes.

[0014] The bearing device comprises upright columns two 23, the upper support rod three 6 and the lower support rod three 10 are fixedly connected with the upright columns two 23, the upper support rod four 7 and the lower support rod four 11 are fixedly connected with the upright columns two 23, the bearing frame 24 is installed between the two upright columns two 23, the pulley frame is installed at the top of the bearing frame 24, the pulley 26 is installed on the pulley frame, and the steel wire rope 19 passes through the pulley 26; specifically, one end of the steel wire rope 19 is fixed to the fixing block 18, the other end passes through the pulley 26, and the tail is hung with the weight 20, so that the bearing capacity of the sealing glue is measured.

Claims

1. A device for testing sealants in oversized superheavy hollow glass, characterized in that: The frame comprises a box structure, and the frame comprises upper supports and lower supports, four first columns are connected between four corners of the upper supports and the lower supports, the upper supports comprise first-to-last upper support rods one, two, three and four, the lower supports comprise first-to-last lower support rods one, two, three and four, a connecting column is arranged between the upper support rod one and two first columns connected to the upper support rod one, a placement seat with an L-shaped longitudinal section is detachably mounted on the side of the connecting column, a clamping plate is detachably mounted on the side of the upper support rod one, a glass one is arranged between the clamping plate and the placement seat, a glass two is connected to the side of the glass one, a fixing block for fixing a steel wire rope is fixed to the side of the glass two, the steel wire rope is connected to the fixing block, a weight is connected to the other end of the steel wire rope, and load bearing devices are arranged on the upper supports and the lower supports to bear the steel wire rope.

2. The device for testing sealant in oversize and super-size hollow glass according to claim 1, wherein: The glass one and the glass two are fixed by sealing glue, the fixing block and the glass two are fixed by epoxy glue, and the bonding strength of the epoxy glue is greater than that of the sealing glue.

3. The device for testing sealant in oversize oversized hollow glass according to claim 1, wherein: Screw holes are formed in the two first columns on the bottom of the upper support rod one along the height direction of the two first columns, and screw holes are formed in the two ends of the connecting column.

4. The device for testing sealant in oversize and super-size hollow glass according to claim 1, wherein: The load bearing device comprises second columns, the upper support rod three and the lower support rod three are fixedly connected with the second columns, the upper support rod four and the lower support rod four are fixedly connected with the second columns, a bearing frame is arranged between the two second columns, a pulley frame is arranged on the top of the bearing frame, a pulley is arranged on the pulley frame, and the tail of the steel wire rope passes through the pulley.