Heat-resistant glass for hollow glass and preparation method of heat-resistant glass
By combining the transmission, positioning, and frame mechanisms, the problems of uneven adhesive application and desiccant replenishment in heat-resistant glass for insulated glass were solved, achieving stable glass adhesion and synchronous desiccant delivery, thus improving production efficiency.
Patent Information
- Application Number
- CN202511480904.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2025-11-28
AI Technical Summary
The existing process for preparing heat-resistant glass for insulating glass has problems such as uneven adhesive application leading to spacer displacement and the need for additional steps in filling the desiccant.
By employing a transmission mechanism, a positioning mechanism, and a frame mechanism, and through components such as limiting curved plates, limiting folding strips, and flexible blocking plates, stable glass conveying, positioning, and synchronous delivery of desiccant are achieved, avoiding subsequent supplementary processes.
This achieves stable glass adhesion and synchronous delivery of desiccant, avoiding adhesive displacement and additional processes, and improving production efficiency.
Smart Images

Figure CN121024451A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of hollow glass preparation, in particular to a heat-resistant glass for hollow glass and a preparation method thereof. BACKGROUND
[0002] Hollow glass is a new type of building material with good heat insulation, sound insulation, aesthetics, and can reduce the weight of buildings. It is made of two (or three) glass pieces, using high-strength and high-airtightness composite adhesive to bond the glass pieces with aluminum alloy frames containing desiccant to form high-efficiency sound and heat insulation glass.
[0003] There are several problems in the preparation of existing heat-resistant glass for hollow glass: 1. The amount of glue is not uniform, which causes displacement of the spacer when it is bonded to the glass; 2. The existing equipment fills the desiccant after the hollow glass is assembled, which requires an additional process, increasing labor time. SUMMARY
[0004] The present application provides a heat-resistant glass for hollow glass and a preparation method thereof to solve the problems raised in the background.
[0005] To achieve the above purpose, the present application provides the following technical scheme: a preparation method of a heat-resistant glass for hollow glass, comprising the following steps: Step 1: Transport the inner glass to the predetermined position by using the transmission mechanism; Step 2: Position and limit the inner glass by using the positioning mechanism to make preliminary preparation for the installation of the frame; Step 3: Bond the positioned inner glass and frame by using the frame mechanism, then transport the outer glass to the other side of the frame by using the transmission mechanism and bond it, and finally coat the assembled hollow glass; The frame mechanism for installing the frame; The frame mechanism includes a frame and a hollow tube, a single-port frame is fixedly installed at the bottom of the inner side of the frame, and a flexible plug is fixedly connected to the outer side of the single-port frame; A push rod is slidably fitted in the hollow tube, the push rod is fixedly connected to an extension plate at the end away from the hollow tube, and a second magnetic block is fixedly connected to the outer side of the extension plate; A material receiving hopper is fixedly installed at the top of the hollow tube, the material receiving hopper is filled with desiccant, arc-shaped seats are fixedly connected to the upper and lower sides of the hollow tube cavity, and a flexible plug plate is rotatably connected to the arc-shaped seats by a fixed shaft, wherein the flexible plug plate is used for limiting the desiccant.
[0006] A transmission mechanism for conveying and processing the heat-resistant glass; A positioning mechanism for preliminary positioning and limiting the heat-resistant glass, which is arranged above the transmission mechanism; The frame mechanism is arranged beside the transmission mechanism. The transmission mechanism comprises a protective cover, a fixed panel is fixedly installed on the top of the protective cover, and a supporting roller frame is fixedly connected to the bottom end of the protective cover.
[0007] Preferably, a second motor is fixedly installed on the outer side of the supporting roller frame, an inner connecting roller is connected to the output end of the second motor through a shaft coupling, a first conveying roller is fixedly installed on the outer side of the inner connecting roller, and a first belt is drivingly connected to the outer side of the inner connecting roller. Both ends of the supporting roller frame are symmetrically connected with side plates, a sleeve rod is fixedly installed in the inner side of the side plate, and a first magnetic block is fixedly connected to the end of the sleeve rod away from the side plate.
[0008] Preferably, a first motor is fixedly connected to the outer side of the second motor housing through a plate, a second belt is drivingly connected to the output end of the first motor, and a second roller is drivingly connected to the inner side of the second belt away from the output end of the first motor.
[0009] Preferably, a third belt is drivingly connected to the outer side of the second roller, an outer connecting roller is drivingly connected to the inner side of the third belt away from the second roller, the outer connecting roller is rotatably connected with the inner connecting roller, and a second conveying roller is fixedly installed on the outer side of the outer connecting roller.
[0010] Preferably, an elastic telescopic rod is fixedly installed on the outer side of the second conveying roller, and a limiting curved plate is fixedly connected to the end of the elastic telescopic rod away from the second conveying roller, wherein the upper half of the limiting curved plate is curved.
[0011] Preferably, the positioning mechanism comprises a driven wheel, the driven wheel is fixedly installed on the outer side of the fixed panel, and the driven wheel is slidingly adapted to the inner surrounding glass away from the fixed panel, wherein the inner surrounding glass is conveyed by the second conveying roller. The outer side of the inner surrounding glass is extrusion-adapted to a limiting bent strip, and the limiting bent strip is slidingly adapted to the outer side of the fixed panel.
[0012] Preferably, a return spring is fixedly connected to the outer side of the limiting bent strip, the end of the return spring away from the limiting bent strip is fixedly connected with the fixed panel, an interval strip is extrusion-adapted to the end of the limiting bent strip away from the inner surrounding glass, and the interval strip is fixedly connected to the outer side of the fixed panel.
[0013] Preferably, the outer side of the fixed panel is provided with a notch, and a slope strip is slidably matched in the notch, wherein the slope strip is used for extrusion reset of the limiting bent strip, and an electric push rod is fixedly connected to the outer side of the slope strip, and the end of the electric push rod away from the slope strip is fixedly installed on the outer side of the fixed panel.
[0014] Preferably, the frame mechanism further comprises a hydraulic rod, a fixed end of the hydraulic rod is fixedly connected with the supporting roller frame, and a U-shaped plate is fixedly connected to the end of the hydraulic rod away from the supporting roller frame, and an electric clamping jaw is fixedly installed on the outer side of the U-shaped plate. The outer side of the electric clamping jaw is sleeved with the hollow tube. The inner side of the electric clamping jaw is extruded and matched with the frame, and the outer side of the frame is fixedly connected with a triangular block, wherein the triangular block is extruded and matched with the limiting bent strip.
[0015] A heat-resistant glass for hollow glass, comprising: an inner surrounding glass, the outer side of the inner surrounding glass is adhesively connected with a frame, and the side of the frame away from the inner surrounding glass is adhesively connected with an outer surrounding glass; The outer side of the frame is fixedly installed with an air valve, wherein the air valve is installed after the glass assembly is completed. The side of the frame away from the air valve is slidably matched with a slide handle, the upper and lower sides of the slide handle are fixedly connected with elastic sealing strips, the end of the elastic sealing strip away from the slide handle is fixedly connected with the frame, the inner end surface of the slide handle is fixedly connected with a cleaning brush, and the outer side of the cleaning brush is extruded and matched with the outer surrounding glass and the inner surrounding glass.
[0016] Compared with the prior art, the present application has the following advantages: 1. Before the inner surrounding glass is conveyed, the inner surrounding glass needs to be placed at the center of the second transmission roller, and the two sides thereof extrude the limiting bent plate and compress the elastic expansion rod, wherein the limiting bent plate can stably convey the inner surrounding glass with different thicknesses.
[0017] 2. The limiting bent strip initially positions and limits the inner surrounding glass, but after the frame is connected with the inner surrounding glass, the limiting bent strip is away from the inner surrounding glass and no longer limits the inner surrounding glass, which allows the hollow glass to continue to move forward along the roller after the hollow glass assembly is completed.
[0018] 3. By the resilience blocking plate being pressed by the desiccant and being deflected, the desiccant finally passes through the resilience blocking plate into the single-port frame, so that the desiccant is simultaneously transported into the frame and the inner glass during the process of adhering the frame and the inner glass, so that the process of supplementing the desiccant after the hollow glass is assembled is avoided, and an additional process is required.
[0019] 4. By starting the electric push rod, the inclined surface strip connected with the output end of the electric push rod is moved to the left and presses the limiting folded strip passing through the other side of the fixed panel, so that the limiting folded strip is reset to the left and extends from the one side of the fixed panel again, so that the subsequent glass is continuously positioned and limited. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is an external structure diagram of the heat-resistant glass for the hollow glass.
[0021] Figure 2 It is a cross-sectional structure diagram of the hollow glass.
[0022] Figure 3 It is an enlarged structure diagram of the position A in the application. Figure 2
[0023] Figure 4 It is a longitudinal sectional structure diagram of the hollow glass.
[0024] Figure 5 It is a preparation structure diagram of the heat-resistant glass for the hollow glass.
[0025] Figure 6 It is a structure diagram of the transmission mechanism.
[0026] Figure 7 It is a structure diagram of the transmission mechanism.
[0027] Figure 8 It is an internal structure diagram of the transmission mechanism.
[0028] Figure 9 It is a sectional structure diagram of the internal component of the transmission mechanism.
[0029] Figure 10 It is an enlarged structure diagram of the position B in the application. Figure 9
[0030] Figure 11 It is a structure diagram of the positioning mechanism.
[0031] Figure 12 It is a sectional structure diagram of the positioning mechanism.
[0032] Figure 13 It is the structure schematic view of the frame mechanism of the present application.
[0033] Figure 14 It is the full section structure schematic view of the frame mechanism of the present application.
[0034] Figure 15 It is the structure schematic view of the present application Figure 14 at C.
[0035] Figure 16 It is the structure schematic view of the present application Figure 14 at D.
[0036] In the figure: 1, transmission mechanism; 2, positioning mechanism; 3, peripheral glass; 4, frame mechanism; 5, frame; 6, air valve; 7, sliding handle; 8, elastic sealing strip; 9, cleaning brush; 51, inner peripheral glass; 11, protective cover; 12, fixed panel; 13, supporting roller frame; 14, side plate; 15, sleeve rod; 16, No. 1 magnetic block; 17, inner connecting roller; 18, No. 1 belt; 19, No. 1 transmission roller; 10, No. 1 motor; 101, No. 2 belt; 102, No. 3 belt; 103, No. 2 transmission roller; 104, elastic telescopic rod; 105, limiting curved plate; 106, No. 2 motor; 107, outer connecting roller; 108, No. 2 roller; 21, driven wheel; 23, limiting bent strip; 24, return spring; 25, partition strip; 26, notch; 27, inclined strip; 28, electric push rod; 41, hydraulic rod; 42, U-shaped plate; 43, electric clamping claw; 45, single-port frame; 46, hollow tube; 47, push rod; 48, extension plate; 49, No. 2 magnetic block; 40, ductile stopper; 401, material receiving hopper; 402, arc-shaped seat; 403, ductile stopper plate; 404, triangular block. DETAILED DESCRIPTION
[0037] Hereinafter, the present application will be further described in conjunction with the drawings and specific embodiments. It should be noted that the following described embodiments or technical features can be combined in any manner to form new embodiments without conflict. It is known that the described embodiments are only a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0038] Please refer to Figures 1 to 16 , the present application provides a technical solution: as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 ,Figure 9 and Figure 10 As shown in the drawings, it comprises an inner glass 51, the outer side of the inner glass 51 is adhered with a frame 5, the side of the frame 5 away from the inner glass 51 is adhered with an outer glass 3; The outer side of the frame 5 is fixedly installed with an air valve 6, wherein the air valve 6 is installed after the completion of the glass assembly; The side of the frame 5 away from the air valve 6 is slidingly fitted with a sliding handle 7, the upper and lower sides of the sliding handle 7 are fixedly connected with elastic sealing strips 8, the end of the elastic sealing strips 8 away from the sliding handle 7 is fixedly connected with the frame 5, the inner end surface of the sliding handle 7 is fixedly connected with a cleaning brush 9, and the outer side of the cleaning brush 9 is respectively and extrudingly fitted with the outer glass 3 and the inner glass 51; A transmission mechanism 1 for conveying and processing heat-resistant glass; A positioning mechanism 2 for preliminary positioning and limiting heat-resistant glass, which is arranged above the transmission mechanism 1; A frame mechanism 4 for installing the frame 5, which is arranged beside the transmission mechanism 1; The transmission mechanism 1 comprises a protective cover 11, the top of the protective cover 11 is fixedly installed with a fixed panel 12, and the bottom end of the protective cover 11 is fixedly connected with a supporting roller frame 13; The outer side of the supporting roller frame 13 is fixedly installed with a No. 2 motor 106, the output end of the No. 2 motor 106 is connected with an inner connecting roller 17 through a shaft coupling, the outer side of the inner connecting roller 17 is fixedly installed with a No. 1 conveying roller 19, wherein the No. 1 conveying roller 19 is used for conveying and processing the outer glass 3, and the outer side of the inner connecting roller 17 is drivingly connected with a No. 1 belt 18; starting the No. 2 motor 106, so that the inner connecting roller 17 connected with the output end thereof through the shaft coupling will positively rotate with the No. 1 conveying roller 19, at this time, the outer glass 3 will move to the other side of the frame 5 along the No. 1 conveying roller 19, then the outer glass 3 is adhered with the other side of the frame 5, and finally the outer periphery of the frame 5 is sealed by using a sealing agent made of ethylene propylene diene rubber. The size of the frame 5 is slightly smaller than that of the glass, so that the sealing agent can exactly compensate for the insufficient size of the frame 5.
[0039] Both ends of the supporting roller frame 13 are symmetrically connected with side plates 14, the inner side of the side plate 14 is fixedly installed with a sleeve rod 15, and the end of the sleeve rod 15 away from the side plate 14 is fixedly connected with a No. 1 magnetic block 16; The outer side of the No. 2 motor 106 is fixedly connected with a No. 1 motor 10 through a plate, the output end of the No. 1 motor 10 is drivingly connected with a No. 2 belt 101, and the inner side of the No. 2 belt 101 away from the output end of the No. 1 motor 10 is drivingly connected with a No. 2 roller 108; The outer side of the second roller 108 is drivingly connected with a third belt 102, the inner side of the third belt 102 far away from the second roller 108 is drivingly connected with an external roller 107, the inner side of the external roller 107 is rotatably connected with the internal roller 17, and the outer side of the external roller 107 is fixedly installed with a second conveying roller 103; the first motor 10 is started, so that the second belt 101 connected with the output end of the first motor 10 rotates forward, the other side of the inner cavity of the second belt 101 is drivingly connected with the second roller 108, the second roller 108 is drivingly connected with the external roller 107 through the third belt 102, so that the second conveying roller 103 fixedly installed on the outer side of the external roller 107 rotates forward, the number of the second conveying roller 103 is several, and the second conveying roller 103 is used for conveying the inner surrounding glass 51. Before the inner surrounding glass 51 is conveyed, the inner surrounding glass 51 needs to be placed at the center of the second conveying roller 103, and the two sides of the inner surrounding glass 51 will extrude the limiting curved plate 105 and compress the elastic expansion rod 104, the limiting curved plate 105 can stably convey the inner surrounding glass 51 with different thicknesses.
[0040] The outer side of the second conveying roller 103 is fixedly installed with the elastic expansion rod 104, one end of the elastic expansion rod 104 far away from the second conveying roller 103 is fixedly connected with the limiting curved plate 105, and the upper half of the limiting curved plate 105 is curved.
[0041] As shown in Figure 11 , Figure 12 , Figure 13 , Figure 14 , Figure 15 and Figure 16 , the positioning mechanism 2 includes a driven wheel 21 fixedly installed on the outer side of the fixed panel 12, and the inner surrounding glass 51 drivingly connected with the driven wheel 21 far away from the fixed panel 12, wherein the inner surrounding glass 51 is conveyed by the second conveying roller 103. The outer side of the inner surrounding glass 51 extrudes the limiting folded strip 23, and the limiting folded strip 23 is slidingly fitted on the outer side of the fixed panel 12; in addition, when the inner surrounding glass 51 is positioned and limited by the limiting folded strip 23, the first motor 10 stops working, and the driven wheel 21 fixedly installed on the outer side of the fixed panel 12 plays a supporting and limiting role for the inner surrounding glass 51. The limiting folded strip 23 initially plays a positioning and limiting role for the inner surrounding glass 51, but after the frame 5 is connected with the inner surrounding glass 51, the limiting folded strip 23 moves away from the inner surrounding glass 51 and no longer limits the inner surrounding glass 51, which plays a role in allowing the hollow glass to continue to move forward along the roller after the assembly of the hollow glass is completed.
[0042] In addition, the limiting folded strip 23 can also scrape off the excess glue liquid when the frame 5 is coated with glue, thereby avoiding displacement of the frame 5 and the glass when they are bonded.
[0043] The outer side of the limiting folded strip 23 is fixedly connected with a reset spring 24, one end of the reset spring 24 away from the limiting folded strip 23 is fixedly connected with the fixed panel 12, and the end of the limiting folded strip 23 away from the inner surrounding glass 51 is extruded to be matched with a partition strip 25, and the partition strip 25 is fixedly connected to the outer side of the fixed panel 12. The outer side of the frame 5 is fixedly connected with a triangular block 404, so that the triangular block 404 will extrude the limiting folded strip 23 as the frame 5 moves towards the inner surrounding glass 51. The inclined surface of the triangular block 404 is extruded by the limiting folded strip 23, the limiting folded strip 23 is gradually moved outward and is out of the limiting of the partition strip 25, and then under the compression force of the reset spring 24, the limiting folded strip 23 will pass through the outer side of the fixed panel 12 and move to the other side, so that the limiting folded strip 23 will no longer limit the inner surrounding glass 51.
[0044] The outer side of the fixed panel 12 is provided with a slot 26, and the slot 26 is slidably matched with an inclined strip 27. The inclined strip 27 is used for extruding and resetting the limiting folded strip 23. The outer side of the inclined strip 27 is fixedly connected with an electric push rod 28, and one end of the electric push rod 28 away from the inclined strip 27 is fixedly installed on the outer side of the fixed panel 12. By starting the electric push rod 28, the inclined strip 27 connected with the output end of the electric push rod 28 will move to the left and extrude the limiting folded strip 23 passing through the other side of the fixed panel 12. At this time, the limiting folded strip 23 will reset to the left and extend from one side of the fixed panel 12 again, thereby continuing to position and limit the subsequent glass.
[0045] The frame mechanism 4 comprises a hydraulic rod 41, the fixed end of the hydraulic rod 41 is fixedly connected with the supporting roller frame 13, one end of the hydraulic rod 41 away from the supporting roller frame 13 is fixedly connected with a U-shaped plate 42, and the outer side of the U-shaped plate 42 is fixedly installed with an electric clamping jaw 43. The inner surrounding glass 51 will be limited and positioned by the limiting folded strip 23 during the conveying process. At this time, the hydraulic rod 41 is started, and the U-shaped plate 42 connected with the output end of the hydraulic rod 41 will move towards the inner surrounding glass 51. The outer side of the U-shaped plate 42 is fixedly installed with the electric clamping jaw 43, and the electric clamping jaw 43 is used for clamping the frame 5. Therefore, the frame 5 will move towards the inner surrounding glass 51. At the beginning, the frame 5 will be limited and positioned by the limiting folded strip 23, thereby making the frame 5 move along the predetermined route towards the inner surrounding glass 51.
[0046] The inner side of the electric clamping jaw 43 is extruded to be matched with the frame 5, and the outer side of the frame 5 is fixedly connected with a triangular block 404. The triangular block 404 is extruded to be matched with the limiting folded strip 23. The bottom inside the frame 5 is fixedly provided with a single-port frame 45, and the outer side of the single-port frame 45 is fixedly connected with a flexible plug 40; The outer side of the electric clamping jaw 43 is inserted with a hollow tube 46, the inside of the hollow tube 46 is slidably fitted with a push rod 47, the end of the push rod 47 away from the hollow tube 46 is fixedly connected with an extension plate 48, the outer side of the extension plate 48 is fixedly connected with a No. 2 magnetic block 49, wherein the No. 2 magnetic block 49 and the No. 1 magnetic block 16 have an attractive force therebetween. The top of the hollow tube 46 is fixedly provided with a material receiving hopper 401, the inside of the material receiving hopper 401 is filled with a drying agent, the upper and lower sides of the inner cavity of the hollow tube 46 are fixedly connected with arc-shaped seats 402, the inside of the arc-shaped seat 402 is rotatably connected with a flexible plug plate 403 through a fixed shaft, wherein the flexible plug plate 403 is flexible and plays a role in preventing the drying agent that has entered the single-port frame 45 from returning to the inside of the hollow tube 46. The flexible plug plate 403 is used for limiting the drying agent. As the electric clamping jaw 43 gradually approaches the inner surrounding glass 51, the distance between the No. 2 magnetic block 49 and the No. 1 magnetic block 16 will be shortened, so that an attractive force will be generated therebetween. When the frame 5 is completely adhered to the inner surrounding glass 51, the extension plate 48 will extend into the inside of the hollow tube 46 under the action of the attractive force with the push rod 47. The top of the hollow tube 46 is fixedly provided with the material receiving hopper 401, and the inside of the material receiving hopper 401 is filled with the drying agent. When the push rod 47 does not extend into the inside of the hollow tube 46, the drying agent inside the material receiving hopper 401 will fill into the hollow tube 46. However, as the push rod 47 extends into the inside of the hollow tube 46, the push rod 47 will block the discharge port of the material receiving hopper 401 and also push the drying agent forward. The upper and lower sides of the inside of the hollow tube 46 are fixedly connected with the arc-shaped seats 402, and the inside of the arc-shaped seat 402 is rotatably connected with the flexible plug plate 403 through a fixed shaft. The flexible plug plate 403 plays a role in blocking the drying agent. However, as the push rod 47 is pushed forward, the flexible plug plate 403 will be extruded by the drying agent and be deflected, so that the drying agent will pass through the flexible plug 40 and enter the single-port frame 45, thereby playing a role in synchronously conveying the drying agent into the frame 5 and the inner surrounding glass 51 during the process of adhering the frame 5 to the inner surrounding glass 51, so as to avoid the need for adding an additional process of supplementing the drying agent after the hollow glass is assembled.
[0047] The application in use: first, start the motor 10, so that the output end connected with the No. 101 will occur positive rotation, and the other side of the No. 101 inner cavity is connected with the No. 108 roller transmission, in addition, the No. 108 roller is connected with the external roller 107 through the No. 102 belt, so the No. 103 transmission roller fixedly installed on the outer side of the external roller 107 will rotate positively, wherein the number of the No. 103 transmission roller is several, and is used for conveying the inner glass 51. Before conveying the inner glass 51, the inner glass 51 needs to be placed in the center of the No. 103 transmission roller, and the two sides will extrude the limiting curved plate 105 and compress the elastic expansion rod 104. In addition, the inner glass 51 will be limited and positioned by the limiting folded strip 23 during conveying. At this time, the hydraulic rod 41 is started, so that the U-shaped plate 42 connected with the output end will move towards the inner glass 51, wherein the outer side of the U-shaped plate 42 is fixedly installed with the electric clamping jaw 43, and the electric clamping jaw 43 is used for clamping the frame 5, so that the frame 5 will move towards the inner glass 51. At the beginning, the frame 5 will be limited and positioned by the limiting folded strip 23, and then the frame 5 will move along the predetermined route towards the inner glass 51.
[0048] The outer side of the frame 5 is fixedly connected with a triangular block 404, so that as the frame 5 moves towards the inner glass 51, the triangular block 404 will extrude the limiting folded strip 23, and the inclined surface of the triangular block 404 will extrude the limiting folded strip 23, and the extruded limiting folded strip 23 will gradually move outward and be released from the limiting of the partition strip 25, and then under the compression force of the reset spring 24, the limiting folded strip 23 will pass through the outer side of the fixed panel 12 and move to the other side, so that the limiting folded strip 23 no longer limits the inner glass 51. As the electric clamping jaw 43 gradually approaches the inner glass 51, the distance between the second magnetic block 49 and the first magnetic block 16 will be shortened, so that an attractive force will be generated therebetween. When the frame 5 is completely adhered to the inner glass 51, the extension plate 48 will extend into the hollow tube 46 under the action of the attractive force, and the push rod 47 will extend into the hollow tube 46, wherein the top of the hollow tube 46 is fixedly installed with a receiving hopper 401, and the inside of the receiving hopper 401 is filled with a drying agent. When the push rod 47 does not extend into the hollow tube 46, the drying agent in the receiving hopper 401 will fill into the hollow tube 46, but as the push rod 47 extends into the hollow tube 46, the push rod 47 will block the discharge port of the receiving hopper 401 and push the drying agent forward. The upper and lower sides of the hollow tube 46 are fixedly connected with arc-shaped seats 402, and the arc-shaped seats 402 are rotatably connected with flexible blocking plates 403 through fixed shafts, wherein the flexible blocking plates 403 block the drying agent, but as the push rod 47 pushes forward, the flexible blocking plates 403 will be extruded by the drying agent and be deflected, so that the drying agent will pass through the flexible blocking plate 40 and enter the single-port frame 45.
[0049] The second motor 106 is started, so that the inner roller 17 connected with the output end through the shaft coupling will rotate in the positive direction with the first transmission roller 19, and at this time the outer glass 3 will move to the other side of the frame 5 along the first transmission roller 19, and then the outer glass 3 will be adhered to the other side of the frame 5, and finally the sealant of the material belonging to the ethylene-propylene-diene rubber will be used to seal the periphery of the frame 5.
[0050] Before inflating the assembled hollow glass, the operator manually moves the slide handle 7 downward, so that the cleaning brush 9 connected with the inner end will preliminarily clean the outer glass 3 and the inner glass 51, respectively, wherein the upper and lower sides of the slide handle 7 are fixedly connected with elastic sealing strips 8, which not only give the reset function to the slide handle 7, but also prevent the gas from overflowing outward. In addition, the reset point of the slide handle 7 will close the gas valve 6, thereby blocking the gas valve after inflating the inert gas.
[0051] The above embodiments are only the preferred embodiments of the present application, and cannot be used to limit the protection scope of the present application, and any changes made by those skilled in the art based on the above concept without creative labor, all fall within the protection scope of the present application.
Claims
1. A method for preparing heat-resistant glass for insulating glass, characterized in that, Includes the following steps: Step 1: The inner glass is transported to the predetermined position using a conveying mechanism; Step 2: Position and limit the inner glass using a positioning mechanism to prepare for the subsequent installation of the frame; Step 3: Use the frame mechanism to bond the positioned inner glass to the frame, then use the transfer mechanism to transport the outer glass to the other side of the frame and bond it there. Finally, apply adhesive to the assembled insulated glass. A frame mechanism used for mounting the frame; The frame mechanism includes a frame and a hollow tube. A single-hole frame is fixedly installed on the bottom of the inner side of the frame, and a flexible plug is fixedly connected to the outer side of the single-hole frame. The hollow tube is fitted with a sliding push rod inside. An extension plate is fixedly connected to one end of the push rod away from the hollow tube. A second magnetic block is fixedly connected to the outside of the extension plate. A material receiving hopper is fixedly installed on the top of the hollow tube, and the inside of the material receiving hopper is filled with desiccant. Arc-shaped seats are fixedly connected to the upper and lower sides of the inner cavity of the hollow tube. A tough blocking plate is rotatably connected to the inside of the arc-shaped seat through a fixed shaft. The tough blocking plate is used to limit the movement of the desiccant.
2. The method for preparing heat-resistant glass for insulating glass according to claim 1, characterized in that: A conveying mechanism used for transporting and processing heat-resistant glass; A positioning mechanism for preliminary positioning and limiting of heat-resistant glass is provided, the positioning mechanism being positioned above the transmission mechanism; The frame mechanism is located beside the transmission mechanism; The transmission mechanism includes a protective cover, with a fixed panel fixedly installed on the top of the protective cover and a support roller frame fixedly connected to the bottom of the protective cover.
3. The method for preparing heat-resistant glass for insulating glass according to claim 2, characterized in that: A second motor is fixedly installed on the outer side of the support roller frame. The output end of the second motor is connected to an inner roller through a coupling. A first transmission roller is fixedly installed on the outer side of the inner roller. The first transmission roller is used for conveying the outer glass. A first belt is driven to the outer side of the inner roller. Both ends of the support roller frame are symmetrically connected to side plates. A sleeve rod is fixedly installed inside the side plate, and a No. 1 magnetic block is fixedly connected to the end of the sleeve rod away from the side plate.
4. The method for preparing heat-resistant glass for insulating glass according to claim 3, characterized in that: The outer side of the housing of the No. 2 motor is fixedly connected to the No. 1 motor via a plate. The output end of the No. 1 motor is driven by the No. 2 belt. The inner side of the No. 2 belt away from the output end of the No. 1 motor is driven by the No. 2 roller.
5. The method for preparing heat-resistant glass for insulating glass according to claim 4, characterized in that: The outer side of the second roller is connected to the third belt, and the inner side of the third belt away from the second roller is connected to the outer roller. The inner side of the outer roller is rotatably connected to the inner roller, and the outer side of the outer roller is fixedly installed with the second transmission roller.
6. The method for preparing heat-resistant glass for insulating glass according to claim 5, characterized in that: An elastic telescopic rod is fixedly installed on the outer side of the second transmission roller. A limiting curved plate is fixedly connected to the end of the elastic telescopic rod away from the second transmission roller, wherein the upper half of the limiting curved plate is curved.
7. The method for preparing heat-resistant glass for insulating glass according to claim 6, characterized in that: The positioning mechanism includes a driven wheel, which is fixedly installed on the outside of the fixed panel. The side of the driven wheel away from the fixed panel is slidably adapted to the inner glass, wherein the inner glass is conveyed by the second transmission roller. The outer side of the inner glass is fitted with a limiting fold strip, which is slidably fitted to the outer side of the fixed panel.
8. The method for preparing heat-resistant glass for insulating glass according to claim 7, characterized in that: A return spring is fixedly connected to the outer side of the limiting fold strip. The end of the return spring away from the limiting fold strip is fixedly connected to the fixed panel. A partition strip is pressed and adapted to the end of the limiting fold strip away from the inner glass. The partition strip is fixedly connected to the outer side of the fixed panel.
9. The method for preparing heat-resistant glass for insulating glass according to claim 8, characterized in that: The outer side of the fixed panel has a slot, and the inside of the slot is fitted with a sloping nipple. The sloping nipple is used to press and reset the limiting fold strip. An electric push rod is fixedly connected to the outer side of the sloping nipple, and the end of the electric push rod away from the sloping nipple is fixedly installed on the outer side of the fixed panel.
10. A method for preparing heat-resistant glass for insulating glass according to claim 9, characterized in that: The frame mechanism also includes a hydraulic rod, the fixed end of which is fixedly connected to the support roller frame, and a U-shaped plate is fixedly connected to the end of the hydraulic rod away from the support roller frame. An electric clamping claw is fixedly installed on the outer side of the U-shaped plate. The outer side of the electric gripper is sleeved with the hollow tube; The inner side of the electric gripper is pressed and adapted to the frame, and a triangular block is fixedly connected to the outer side of the frame, wherein the triangular block is pressed and adapted to the limiting fold strip.
11. A heat-resistant glass for insulated glass, characterized in that, The method for preparing heat-resistant glass for insulating glass according to claim 10 is characterized by comprising: The inner glass is attached to the outer side of the frame, and the outer glass is attached to the side of the frame away from the inner glass. An air valve is fixedly installed on the outer side of the frame, and the air valve is installed after the glass is assembled. A sliding handle is slidably fitted on the side of the frame away from the air valve. Elastic sealing strips are fixedly connected to both the upper and lower sides of the sliding handle. The end of the elastic sealing strip away from the sliding handle is fixedly connected to the frame. A cleaning brush is fixedly connected to the inner end face of the sliding handle. The outer side of the cleaning brush is pressed and fitted against the outer glass and the inner glass respectively.