Sealant test device for simulating oversized and overweight hollow glass
By designing a test device to simulate the sealant of ultra-large and ultra-heavy insulating glass, the problem of lack of testing equipment was solved, and the effective evaluation of sealant performance was achieved.
Patent Information
- Application Number
- CN202520440493.4
- 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
There is a lack of equipment for testing the performance of sealants for ultra-large and ultra-heavy insulating glass.
A test device for simulating the sealant of ultra-large and ultra-heavy insulating glass was designed, including a frame, support column, placement seat, horizontal and vertical force measuring devices, force sensor and screw jack. These components simulate the stress of the sealant under actual conditions and measure the maximum force that the sealant can withstand.
This study effectively tested the performance of sealant for ultra-large and ultra-heavy insulating glass, providing reliable experimental conclusions.
Smart Images

Figure CN223910760U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of sealant testing device, specifically relates to a kind of sealant testing device of simulation super large hollow glass. BACKGROUND
[0002] Hollow glass is double-layer glass, and the double-layer glass is connected by sealant. With the market demand, super large hollow glass emerges as the times require, but there is no relevant testing device for the performance function of sealant of super large hollow glass. SUMMARY
[0003] The utility model provides a kind of sealant testing device of simulation super large hollow glass.
[0004] The technical scheme of the utility model is realized as follows: a kind of sealant testing device of simulation super large hollow glass, including the frame of box type structure, the frame includes upper support and lower support, and four corners between upper support and lower support are connected with support column, upper support includes upper support rod one, upper support rod two, upper support rod three and upper support rod four that are connected head to tail, lower support includes lower support rod one, lower support rod two, lower support rod three and lower support rod four that are connected head to tail, and two support columns between the bottom of upper support rod one are provided with horizontal column, the side portion of horizontal column is installed with the placement seat of longitudinal section L-shaped structure, glass one is placed in placement seat, clamping plate is installed on the side portion of glass one on upper support rod one, glass two is connected to the side surface of glass one by sealant, and horizontal force measuring device and vertical force measuring device are arranged on the side surface of glass two.
[0005] Horizontal force measuring device includes horizontal clamp, one end of horizontal clamp is connected with glass two, the other end of horizontal clamp is connected with force sensor one, and the end of force sensor one is connected with lead screw elevator one; the bottom of upper support rod two is provided with avoiding slot for lead screw elevator one.
[0006] Vertical force measuring device includes vertical clamp, one end of vertical clamp is connected with glass two, the other end of vertical clamp is connected with force sensor two, and the end of force sensor two is connected with lead screw elevator two.
[0007] Horizontal clamp includes connecting seat one and connecting column one, connecting seat one is fixedly connected with glass two by epoxy glue, and the end of connecting column one is connected with force sensor one.
[0008] Vertical clamp includes connecting seat two and connecting column two, connecting seat two is fixedly connected with glass two by epoxy glue, and the end of connecting column two is connected with force sensor two.
[0009] The utility model discloses a horizontal column's side part shell dismounts and installs the placing seat, and the placing seat is placed glass no. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is the front view of the utility model.
[0011] Figure 2 It is the left view of the utility model.
[0012] Figure 3 It is the structural schematic diagram of horizontal clamp.
[0013] Figure 4 It is the structural schematic diagram of vertical clamp. DETAILED DESCRIPTION
[0014] As shown in Figures 1-4 A kind of sealant test device of simulated 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 support column 3, and upper support 1 includes first-end-to-end upper support bar one 4, upper support bar two 5, upper support bar three 6 and upper support bar four 7, and lower support 2 includes first-end-to-end lower support bar one 8, lower support bar two 9, lower support bar three 10 and lower support bar four 11, and two support columns 3 between the bottom of upper support bar one 4 are provided with horizontal column 12, and the side of horizontal column 12 is installed with the placing seat 13 of longitudinal section L-shaped structure, and glass no. 14 is placed in placing seat 13, and clamping plate 15 is installed on upper support bar one 4 and located at the side of glass no. 14, and glass no. 16 is connected with horizontal force measuring device and vertical force measuring device on the side of glass no. 14 through sealant;Specifically, the area of glass no. 14 is greater than the area of glass no. 16, first, glass no. 14 is placed in placing seat 13, then clamping plate 15 is fixed on upper support bar one 4 by bolt, glass no. 14 is fixed, then glass no. 16 is fixed on the side of glass no. 14 through sealant, then the maximum force that sealant can bear is measured through horizontal force measuring device and vertical force measuring device.
[0015] The horizontal force measuring device includes a horizontal clamp 17, one end of which is connected to a second glass pane 16, and the other end of which is connected to a force sensor 18. The end of the force sensor 18 is connected to a screw jack 19. The bottom of the upper support rod 5 has a clearance groove for the screw of the screw jack 19 to pass through. The horizontal clamp 17 includes a connecting seat 23 and a connecting post 24. The connecting seat 23 is fixedly connected to the second glass pane 16 with epoxy resin, and the end of the connecting post 24 is connected to the force sensor 18. Specifically, the strength of the epoxy resin is much greater than that of the sealant, such as... Figure 1 As shown, the lead screw of the screw jack 19 is fixedly connected to the end of the force sensor 18. Mounting posts 27 are provided below the upper support rods 3 and 4. A fixed post 28 connects the two mounting posts. The reduction motor of the screw jack 19 is fixedly mounted on the fixed post 28. When the screw jack 19 is started, the lead screw of the screw jack 19 moves horizontally. The clearance groove allows the lead screw of the screw jack 19 to pass through, that is, to move away from the force sensor 18. The force sensor 18 can display the magnitude of the force, thereby determining the maximum horizontal force that the sealant can withstand.
[0016] The vertical force measuring device includes a vertical clamp 20, one end of which is connected to a second glass pane 16, and the other end of which is connected to a second force sensor 21. The end of the second force sensor 21 is connected to a screw jack 22. The vertical clamp 20 includes a connecting seat 25 and a connecting column 26. The connecting seat 25 is fixedly connected to the second glass pane 16 with epoxy resin, and the end of the connecting column 26 is connected to the second force sensor 21. Specifically, the strength of the epoxy resin is much greater than that of the sealant, such as... Figure 1 As shown, the lead screw of the screw jack 22 is fixedly connected to the end of the force sensor 21. Mounting posts 29 are located below the upper support rods 3 and 4. A fixed post 30 connects the two mounting posts 29. The reduction motor of the screw jack 22 is fixedly mounted on the fixed post 30. When the screw jack 22 is started, the lead screw of the screw jack 22 moves vertically, i.e., moves away from the force sensor 21. The force sensor 21 can display the magnitude of the force, thereby determining the maximum horizontal force that the sealant can withstand.
Claims
1. A sealant test apparatus that simulates oversized superheavy hollow glass, characterized by: The frame comprises a box structure, which comprises upper supports and lower supports, support columns connected at four corners between the upper supports and the lower supports, the upper supports comprising upper support rods one, two, three and four connected end to end, the lower supports comprising lower support rods one, two, three and four connected end to end, a horizontal column arranged between two support columns at the bottom of the upper support rod one, a placement seat with a longitudinal section in an L-shaped structure mounted on the side of the horizontal column, a glass one placed in the placement seat, a clamping plate mounted on the upper support rod one and at the side of the glass one, a glass two connected to the side of the glass one through sealing glue, and a horizontal force measuring device and a vertical force measuring device arranged on the side of the glass two.
2. The sealant testing device for simulating super-huge super-heavy hollow glass according to claim 1, wherein: The horizontal force measuring device comprises a horizontal clamp, one end of the horizontal clamp connected to the glass two, the other end of the horizontal clamp connected to a force sensor one, the end of the force sensor one connected to a lead screw lifter one, and the bottom of the upper support rod two provided with a relief groove for the lead screw lifter one.
3. The apparatus for testing sealant of super large super heavy hollow glass according to claim 2, wherein: The vertical force measuring device comprises a vertical clamp, one end of the vertical clamp connected to the glass two, the other end of the vertical clamp connected to a force sensor two, and the end of the force sensor two connected to a lead screw lifter two.
4. The apparatus for testing sealant of super large super heavy hollow glass according to claim 2, wherein: The horizontal clamp comprises a connecting seat one and a connecting column one, the connecting seat one fixedly connected to the glass two through epoxy glue, and the end of the connecting column one connected to the force sensor one.
5. The apparatus for testing sealant of super large super heavy hollow glass according to claim 3, wherein: The vertical clamp comprises a connecting seat two and a connecting column two, the connecting seat two fixedly connected to the glass two through epoxy glue, and the end of the connecting column two connected to the force sensor two.