A glue sticking device based on vacuum insulation board

By designing an automated glue sticker device for vacuum insulation boards, the problems of inefficient manual operations and easy product damage during vacuum insulation board glue sticking are solved, automated production is achieved, and efficiency and product quality are improved.

CN112010090BActive Publication Date: 2025-05-13NANJING VOCATIONAL UNIV OF IND TECH
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Patent Information

Application Number
CN202010884212.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2020-05-20
Filing Date
2020-08-28
Publication Date
2025-05-13
Estimated Expiration
2040-08-28

AI Technical Summary

Technical Problem

The prior art lacks glue stickers for vacuum insulation boards, resulting in low yield and high cost, and the vacuum insulation boards are prone to damage and leaks during manual handling.

Method used

A glue sticking device based on vacuum insulation plate is designed, including the frame body, an outer end linkage mechanism, a glue sticking unit, a display unit and a slide rail. The device realizes automatic conveying and pasting of tape through an automated tape conveying and pasting system, and automatically cuts the tape through a guide device.

Benefits of technology

Automatic edge sealing of vacuum insulation board is realized, reducing manual operation, improving production efficiency and product quality, reducing costs, and effectively protecting the outer vacuum coating of vacuum insulation board.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a gluing device based on a vacuum insulation panel, including a frame body, an outer end linkage mechanism, a gluing unit, a display unit, and a slide rail; the frame body is a two-layer platform composed of multiple groups of pillars, the top layer of the platform is set as an aluminum alloy frame groove channel structure, and the middle platform is set as a platform, on which the vacuum insulation panel to be glued is placed; one end of the outer end linkage mechanism is fixed on a horizontal plane, and the other end is movably installed in the groove of the aluminum alloy frame channel structure; the display unit is fixedly installed on one side of the frame body, and is provided with a liquid crystal display screen; the slide rail is set below the middle platform surrounding the outer side of the frame body, and is connected to the bottom of the outer end linkage mechanism. The whole device realizes the automatic conveying of the tape, solves the edge sealing problem of the vacuum insulation panel, can reduce labor, increase speed, and reduce costs; the bottom plate of the gluing device is set as a latex protective layer structure, which effectively reduces the damage to the outer vacuum coating of the vacuum insulation panel and reduces costs.
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Description

Technical Field

[0001] The invention belongs to the field of production equipment for vacuum insulation panels, and in particular relates to a gluing device based on vacuum insulation panels. Background Art

[0002] Vacuum insulation panels are of different sizes, quantities and are easy to damage. Currently, there is no gluing device for vacuum insulation panels on the market, and the edges are still sealed manually, so not only the output is low and the cost is high, but it is also easy to cause damage to the insulation panels. Summary of the invention

[0003] Based on the existing problems, at the same time, since the outer layer of the vacuum insulation panel is a vacuum film material, it is easy to be damaged and leaked during multiple manual handling, causing unnecessary losses. In order to solve the above problems, the present invention provides a gluing device based on the vacuum insulation panel, including a frame body, an outer end linkage mechanism, a gluing unit, a display unit, and a slide rail; the frame body is a two-layer platform composed of multiple groups of pillars, the top layer of the platform is set as an aluminum alloy frame groove channel structure, and the middle platform is set as a platform, on which the vacuum insulation panel to be glued is placed; the outer end linkage mechanism is provided with multiple groups, one end of each group is fixed on the horizontal plane, and the other end is movably installed in the groove of the aluminum alloy frame channel structure; the display unit is fixedly installed on one side of the frame body, and is provided with a liquid crystal display screen; the slide rail is arranged below the middle platform surrounding the outer side of the frame body, and is connected to the bottom of the outer end linkage mechanism.

[0004] As an improvement, the outer end linkage mechanism is provided with two groups, each group includes a support rod, a roller, a slider, a wheel disc, a cross bar, and a telescopic rod; the support rod is arranged in the middle, and the bottom is connected to the roller, the roller is movably mounted on the slide rail, and the roller is installed in transmission with the drive shaft of the first motor; a T-shaped fixing plate perpendicular to the direction of the support rod is arranged on the top; the slider is arranged at the bottom of the front end of the T-shaped fixing plate, and is clamped in the groove of the aluminum alloy frame channel structure; the wheel disc is arranged at the top of the front end of the T-shaped fixing plate, and the upper end is fixedly connected to one end of the cross bar by a pin; the other end of the cross bar is fixed with a vertical telescopic rod by tightening the nut.

[0005] As an improvement, a scale is provided on the crossbar, and one end of the telescopic rod is connected to the glue sticking unit for moving the glue sticking unit in a vertical direction.

[0006] As an improvement, the glue sticking unit is arranged as an open structure with three plates arranged perpendicular to each other along one end point, and the three plates are respectively a bottom plate, a first baffle plate, and a second baffle plate; the bottom plate is a solid inclined plate with an upper portion of 25-40°, the surface of the solid inclined plate is a non-stick adhesive layer inclined plate, the lower portion is a flat plate, and the bottom of the bottom plate is a latex protective layer structure; an annular groove and a roller are fixedly installed on the inner side of the first baffle plate, a roll of tape to be pasted is placed in the notch of the annular groove, and the roller is fixedly installed obliquely below the annular groove; an opening is arranged on the top of the second baffle plate, and the opening is fixedly connected to the outer end linkage mechanism.

[0007] As an improvement, a first pressure cylinder is provided in the middle position of the solid inclined plate and placed on the surface. One end is connected via a first cylinder transmission. The first cylinder is used to adjust the gap distance between the first pressure cylinder and the surface of the solid inclined plate, wherein the first cylinder is fixedly mounted on the inner side of the first baffle.

[0008] As an improvement, a straight rail is fixedly installed at one end above the inner side surface of the second baffle, and the straight rail is arranged in a direction parallel to the first baffle.

[0009] As an improvement, a cutting knife and a second pressing cylinder are arranged in sequence along the inner side of the second baffle from the inside to the outside, one end of the cutting knife is transmission connected to the second cylinder, and the other end of the second cylinder is movably mounted on the straight rail through a fastening connection; one end of the second pressing cylinder is transmission connected to the third cylinder, and the other end of the third cylinder is movably mounted on the straight rail through a fastening connection.

[0010] As an improvement, the length of the cutting knife or the second pressing cylinder or the first pressing cylinder is the same as the width of the solid inclined plate in the same direction.

[0011] As an improvement, the solid inclined plate is provided with an open groove in a direction perpendicular to the plane of the first baffle plate, and the groove and the cutting knife are in the same vertical plane; and also includes a slot.

[0012] As an improvement, it also includes a guide device, which is configured as a stopper, a fixed channel, a partition, a slide channel, and a DC motor;

[0013] The stopper is a combination of two plywood panels placed one above the other, one side of which is aligned with a gap and the other side is open or closed at an angle. The upper open plywood is higher than the inclined surface of the solid inclined plate, and the lower plywood is coated with a non-stick adhesive layer structure on the surface and is lower than the inclined surface. The gap is used for passing the tape.

[0014] One end of the combined plate is not fixed, and a spring is arranged between the other end and fixedly connected to one side of the partition end surface; the other side of the partition end surface is transmission-connected to a DC motor through a crank transmission pair, and the DC motor is fixedly mounted on the outer side of the first baffle;

[0015] The fixed groove is arranged on the solid inclined plate, along the normal direction of the inclined surface, at a distance higher than the bottom surface of the solid inclined plate and lower than the top of the solid inclined plate, for accommodating the stopper;

[0016] The slide channel is arranged on the bottom of the first baffle, and includes a stopping channel and a lower end slide channel. The stopping channel is located at the top of the slide channel and is connected with the fixed channel for placing the partition. The lower end slide channel is arranged as an open structure, and its height is the same as the height of the partition along the sliding direction and the thickness when the two splints are closed. The height of the stopping channel is higher than the height of the partition along the sliding direction.

[0017] Beneficial effects: The present invention provides a gluing device based on a vacuum insulation panel, which enables the tape to be automatically conveyed by setting a first baffle and inner side structural components; the tape can be adhered to the position of the vacuum insulation panel to be pasted by the cooperation of the bottom plate, the guide device and the upper structural components; the tape can be automatically cut after pasting by the second baffle and the inner cutting knife and other structural components. The whole device realizes the automatic conveying of the tape, solves the edge sealing problem of the vacuum insulation panel, can reduce labor, increase speed and reduce costs; the bottom plate of the gluing device is set as a latex protective layer structure, which effectively reduces the damage to the vacuum coating of the outer layer of the vacuum insulation panel and reduces costs.

[0018] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention and implement it according to the contents of the specification, the following is a detailed description of the preferred embodiments of the present invention in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the general assembly of the device of the present invention.

[0020] Figure 2 It is a schematic diagram of the device stand of the present invention.

[0021] Figure 3 It is a schematic diagram of the outer end linkage mechanism of the device of the present invention.

[0022] Figure 4 It is a schematic diagram of the oblique two sides of the gluing device of the present invention.

[0023] Figure 5 It is a schematic diagram of the front view of the gluing device of the present invention.

[0024] Figure 6 It is a schematic diagram of an enlarged cross section of the stopper of the device of the present invention.

[0025] Figure 7 It is a schematic diagram of the rear end of the gluing device of the present invention.

[0026] Figure 8It is a schematic diagram of a device display device of the present invention.

[0027] Fig. 9 It is an enlarged schematic diagram of the side of the stopper of the device of the present invention.

[0028] Fig.10 It is an enlarged schematic diagram of the connection structure at the end of the stopper portion of the device of the present invention.

[0029] In the accompanying drawings: frame body 1, outer end linkage mechanism 2, glue sticking unit 3, display device 4, slide rail 5, sensor 1001, wheel 2001, tightening nut 2002, slider 2003, cross bar 2004, telescopic rod 2005, support rod 2006, roller 2007, first motor 2008, annular groove 3001, roller 3002, straight rail 3003, second cylinder 3004, first pressing cylinder 3005, third cylinder 3006, second pressing cylinder 3007, fastening connector 3008, first baffle 3009, cutting knife 3010, first cylinder 3011, solid inclined plate 3012, stopper 3013, partition 3014, DC motor 3015, display device 4, LCD screen 4001. DETAILED DESCRIPTION

[0030] The specific implementation of the present invention is further described in detail below in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0031] A gluing device based on a vacuum insulation panel comprises a frame body 1, an outer end linkage mechanism 2, a gluing unit 3, and a display device 4. The frame body 1 is a two-layer frame composed of multiple groups of pillars, including an upper and lower part, the top layer of the frame is set as an aluminum alloy frame groove channel structure, and a sensor 1001 is provided at one end of the aluminum alloy, and the number of vacuum insulation panels can be counted by the sensor 1001; the middle frame is set as a platform, and the platform can be a square plate, and the vacuum insulation panel to be glued is placed on the square plate.

[0032] The outer end linkage mechanism 2 is provided with multiple groups, one end of each group is fixed on the horizontal plane, and the other end is movably installed in the groove of the aluminum alloy frame channel structure; the display unit 4 is fixedly installed on one side of the rack body 1, and is provided with a liquid crystal display screen 4001; the arrangement is below the middle platform surrounding the outer side surface of the rack body 1, and is connected to the bottom of the outer end linkage mechanism 2.

[0033] The outer end linkage mechanism 2 is provided with two groups, each group includes a support rod 2006, a roller 2007, a slider 2003, a wheel disc 2001, a cross bar 2004, and a telescopic rod 2005; wherein the support rod 2006 is arranged in the middle, and the bottom is connected to the roller 2007, the roller 2007 is movably mounted on the slide rail 5, and the roller 2007 is installed in transmission with the transmission shaft of the first motor 2008; a T-shaped fixing plate perpendicular to the direction of the support rod 2006 is arranged on the top; the slider 2003 is arranged at the bottom of the front end of the T-shaped fixing plate, and is clamped in the groove of the aluminum alloy frame channel structure; the wheel disc 2001 is arranged at the top of the front end of the T-shaped fixing plate, and the upper end is fixedly connected to one end of the cross bar 2004 by a pin; the other end of the cross bar 2004 is fixed with a telescopic rod 2005 in a vertical direction by tightening the nut 2002. The cross bar 2004 is provided with a scale, and one end of the telescopic rod 2005 is connected to the glue sticking unit 3 for moving the glue sticking unit 3 in a vertical direction.

[0034] A slider 2003 is provided at the lower section of the wheel disc 2001 , and the side surface of the slider 2003 and the ground fit the groove. A telescopic rod 2005 is provided on the cross bar 2004 , and the telescopic rod 2005 is fixed on the cross bar 2004 by tightening the nut 2002 .

[0035] There are two groups of outer end linkage mechanisms 2, which are placed at relative positions of the upper aluminum alloy frame of the platform and move in opposite directions to each other. The roller 2007 is attached to the track of the lower part of the platform. The motor runs according to the program to drive the roller 2007 to move on the track. According to the size of the vacuum insulation panel, the position of the telescopic rod 2005 on the cross bar 2004 is achieved by adjusting the scale on the cross bar 2004. A glue device 3 is provided at the lower end of the telescopic rod 2005.

[0036] The gluing unit 3 is configured as an open structure with three plates arranged perpendicularly to each other along one end point, and the three plates are respectively a bottom plate, a first baffle plate, and a second baffle plate; the bottom plate is a solid inclined plate 3012 with an upper portion of 25-40°, the surface of the solid inclined plate is a solid inclined plate with a non-adhesive layer, the upper end is inclined at 35 degrees, the inclined surface of the solid inclined plate is coated with a non-adhesive layer, the inclined surface is placed to bond with the tape, and the bottom surface of the solid inclined plate is coated with a latex protective layer structure to reduce the degree of wear on the vacuum insulation panel when the gluing device contacts the vacuum insulation panel; an annular groove 3001 and a roller 3002 are fixedly installed on the inner side of the first baffle, and a roll of tape to be pasted is placed in the notch of the annular groove 3001. Preferably, the width between the annular grooves is consistent with the width of the tape for placing the tape.

[0037] The roller 3002 is fixedly installed at the oblique lower part of the annular groove 3001. There are two rollers 3002, which are arranged on the first baffle 3009 on the same side of the annular groove 3001 and on the upper end of the solid inclined plate 3012. The two rollers 3002 are vertically spaced a certain distance apart. The adhesive tape on the non-adhesive side is pulled onto the roller 3002, and the adhesive tape is tightened by the roller 3002. The roller 3002 is transmission-connected to the second cylinder 3011.

[0038] An opening is provided on the top of the second baffle, and the opening is fixedly connected to the outer end linkage mechanism 2 .

[0039] A first pressing cylinder 3005 is provided in the middle position of the solid inclined plate 3012 and is placed on the surface. One end of the first pressing cylinder 3005 is connected to the surface through a first cylinder 3011. The first cylinder 3011 is used to adjust the gap distance between the first pressing cylinder 3005 and the surface of the solid inclined plate 3012. The first cylinder 3011 is fixedly installed on the inner side of the first baffle.

[0040] A straight rail 3003 is fixedly mounted on one end of the inner side surface of the second baffle, and the straight rail 3003 is arranged in a direction parallel to the first baffle.

[0041] A cutting knife 3010 and a second pressing cylinder 3007 are arranged in sequence along the inner side of the second baffle from the inside to the outside. One end of the cutting knife 3010 is transmission connected to the second cylinder 3004, and the other end of the second cylinder 3004 is movably mounted on the straight rail 3003 through a fastening connector; one end of the second pressing cylinder 3007 is transmission connected to the third cylinder 3006, and the other end of the third cylinder 3006 is movably mounted on the straight rail 3003 through a fastening connector 3008.

[0042] The length of the cutting knife 3010 or the second pressing cylinder 3007 or the first pressing cylinder 3005 is the same as the width of the solid inclined plate in the same direction.

[0043] The solid inclined plate is provided with an open groove in the direction perpendicular to the plane of the first baffle plate, and the groove and the cutting knife 3010 are on the same vertical plane; it also includes a slot. The width of the slot is slightly larger than the thickness of the cutting knife 3010, and the cylinder drives the cutting knife to enter the half distance of the slot.

[0044] It also includes a guide device, which is configured as a stopper 3013, a fixed channel, a partition 3014, a slide channel, and a DC motor 3015;

[0045] The stopper 3013 is a combination of two plywood plates placed one above the other, one side of which is aligned with a gap and the other side is open or closed at an angle. The upper open plywood is higher than the inclined surface of the solid inclined plate 3012, and the lower plywood is coated with a non-stick adhesive layer structure on the surface and is lower than the plane of the inclined surface 3012. The gap is used for passing the tape.

[0046] One end of the combined plate is not fixed, and a spring is provided between the other end, which is fixedly connected to one side of the end face of the partition plate 3014; the other side of the end face of the partition plate 3014 is transmission-connected to the DC motor 3015 through a crank transmission pair, and the DC motor 3015 is fixedly mounted on the outer side of the first baffle;

[0047] The fixed groove is arranged on the solid inclined plate 3012, along the normal direction of the inclined surface, and is arranged at a distance higher than the bottom surface of the solid inclined plate 3012 and lower than the top of the solid inclined plate 3012, for accommodating the stopper 3013;

[0048] The slideway is arranged on the bottom of the first baffle, and includes a stopper channel and a lower slideway, wherein the stopper channel is located at the top of the slideway and is connected to the fixed channel, and is used to place the partition 3014; the lower slideway is arranged as an open structure, and its height is the same as the height of the partition 3014 along the sliding direction and the thickness of the two clamping plates when they are closed; the stopper channel height is higher than the height of the partition 3014 along the sliding direction;

[0049] The display device 4 is provided with a liquid crystal display screen 4001, which displays the working status of the device of the present invention and calculates the number of the vacuum insulation panels that have been glued, so that the user can calculate the output. Example

[0050] The user first places the vacuum insulation panel on the stand, adjusts the position of the gluing device 3 by the scale on the cross bar 2004, and places the required tape on the annular groove 3001 on the gluing device 3, straightens the tape so that the non-glue surface is tightly attached to the roller 3002 and the pressing cylinder 3005, and then the cylinder 3011 descends, driving the pressing cylinder 3005 to press the tape tightly against the solid inclined plate 3012. The inclined surface of the solid inclined plate 3012 is coated with a non-stick adhesive layer to prevent the tape from sticking to the solid inclined plate 3012.

[0051] At this time, the partition 3014 is in the stopping groove, so that the upper and lower clamping plates of the stopping portion 3013 are opened at an angle to form a V shape, and the tape in the middle gap passes through the clamping plates.

[0052] When the device is started, the motor 2008 drives the roller 2007 to move on the stand 1, and moves between the long aluminum alloy frame and the short aluminum alloy frame in an L-shaped motion trajectory, starting from one end of the long aluminum alloy frame. At the same time, the telescopic rod 2005 descends, so that the bottom end of the gluing device 3 rests on the vacuum insulation board, and the gluing device 3 starts to operate.

[0053] When the DC motor 3015 is working, it drives the crank transmission pair to push the partition 3014, and then the two splints are closed. At this time, the height of the partition 3014 along the sliding direction and the thickness of the two splints when closed are the same. The partition 3014 drives the two splints to slide out of the inclined surface along the lower end slide and reach the bottom, so that the partition 3014 and the stopper 3013 both leave the inclined surface and can be placed on the bottom horizontal plane of the entire glue unit 3.

[0054] At this time, the head end of the tape is outside the inclined surface, and the motor 3003 drives the cylinder 3006 to move to the position of the head end of the tape. The cylinder 3006 descends and presses the part exceeding the tape onto the vacuum insulation board. Then the outer end linkage mechanism 2 drives the gluing device 2 to move backward. Since the tape is adhesive to the vacuum insulation board but not to the gluing device 3, after the outer end linkage mechanism 2 moves, the tape will be attached to the vacuum insulation board along the solid inclined plate 3012 and continue to stick until it reaches the position set by the program.

[0055] When reaching the end position, the DC motor 2015 works, driving the partition 3014 to drive the stopper 3013 back into the stopper groove, forming a V shape, and the tape continues to stick to the vacuum insulation panel. Since the adhesion between the tape and the vacuum panel is much greater than the static friction between the stopper 3013 and the tape, and the lower clamping plate is coated with a non-stick adhesive layer, the tape will not be damaged when the stopper 3013 returns to the initial position, and the tape continues to stick until it reaches the position set by the program.

[0056] At this time, the outer end linkage mechanism 2 stops running, and the cylinder 3005 starts running, driving the cutting knife 3010 to descend to the middle of the empty slot, not lower than the bottom surface of the solid inclined plate 3012, cutting the tape and ending the gluing.

[0057] The outer end linkage mechanism 2 continues to run, moves from the long aluminum alloy frame to the short aluminum alloy frame, repeats the above action, and then runs to the position of the normal aluminum alloy frame again to perform a circular motion. In this device, in order to improve the gluing speed and production efficiency, an outer end linkage mechanism 3 and a gluing device 2 are respectively arranged at the long aluminum alloy frame, and the two devices move in opposite directions at the same speed.

[0058] The above-mentioned embodiments only express several implementation methods of the present invention, and the descriptions thereof are relatively specific and detailed, but they cannot be understood as limiting the scope of the invention patent. It should be pointed out that, for ordinary technicians in this field, several variations and improvements can be made without departing from the concept of the present invention, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be subject to the attached claims.

Claims

1. A gluing device based on a vacuum insulation panel, characterized in that: The invention comprises a frame body (1), an outer end linkage mechanism (2), a gluing unit (3), a display unit (4), and a slide rail (5); the frame body (1) is a two-layer platform composed of a plurality of groups of pillars, the top layer of the platform is arranged as an aluminum alloy frame groove channel structure, the middle platform is arranged as a platform, and a vacuum insulation panel to be glued is placed on the platform; the outer end linkage mechanism (2) is arranged with two groups, one end of each group is fixed on a horizontal plane, and the other end is movably installed in the groove of the aluminum alloy frame channel structure; the display unit (4) is fixedly installed on one side of the frame body (1), and is provided with a liquid crystal display screen (4001); the slide rail (5) is arranged below the middle platform surrounding the outer side surface of the frame body (1), and is connected to the bottom of the outer end linkage mechanism (2); The adhesive laminating unit (3) is configured as an open structure with three plates arranged perpendicularly to each other along one end point, the three plates being respectively a bottom plate, a first baffle (3009), and a second baffle; the bottom plate is a solid inclined plate (3012) with an upper portion of 25-40 degrees, the surface of the solid inclined plate is an inclined plate with a non-adhesive layer, the lower portion is a flat plate, and the bottom of the bottom plate is a latex protective layer structure; an annular groove (3001) and a roller (3002) are fixedly installed on the inner side of the first baffle (3009), a roll of adhesive tape to be laminating is placed in the notch of the annular groove (3001), and the roller is fixedly installed obliquely below the annular groove (3001); an opening is provided on the top of the second baffle, and the opening is fixedly connected to the outer end linkage mechanism (2); It also includes a guide device, which includes a stopper (3013), wherein the stopper (3013) is a combination of two plywood panels placed one above the other, one side of which is aligned with a gap and the other side is open or closed at an angle, the upper open plywood is higher than the inclined surface of the solid inclined plate (3012), and the lower plywood has a non-stick adhesive layer structure on its surface and is lower than the inclined surface of the solid inclined plate (3012), and the gap is used for passing the adhesive tape; The gluing device of the vacuum insulation panel is used for edge sealing.

2. The gluing device based on the vacuum insulation panel according to claim 1 is characterized in that: Each group of the outer end linkage mechanism (2) comprises a support rod (2006), a roller (2007), a slider (2003), a wheel disc (2001), a cross bar (2004), and a telescopic rod (2005); wherein the support rod (2006) is arranged in the middle, and the bottom is connected to the roller (2007); the roller (2007) is movably mounted on the slide rail (5), and the roller (2007) is transmission-mounted with the transmission shaft of the first motor (2008); a T-shaped fixing plate perpendicular to the direction of the support rod (2006) is arranged on the top; wherein the slider (2003) is arranged at the bottom of the front end of the T-shaped fixing plate and is clamped in the groove of the aluminum alloy frame channel structure; the wheel disc (2001) is arranged at the top of the front end of the T-shaped fixing plate, and the upper end is fixedly connected to one end of the cross bar (2004) by a pin; and the other end of the cross bar (2004) is fixed with a telescopic rod (2005) in a vertical direction by tightening a nut (2002).

3. The gluing device based on the vacuum insulation panel according to claim 2 is characterized in that: The crossbar (2004) is provided with a scale, and one end of the telescopic rod (2005) is connected to the glue sticking unit (3) for moving the glue sticking unit (3) in a vertical direction.

4. The gluing device based on the vacuum insulation panel according to claim 1 is characterized in that: A first pressing cylinder (3005) is arranged in the middle of the solid inclined plate (3012) and is placed on the surface. One end of the first pressing cylinder is connected to the surface through a first cylinder (3011). The first cylinder (3011) is used to adjust the gap distance between the first pressing cylinder (3005) and the surface of the solid inclined plate (3012), wherein the first cylinder (3011) is fixedly mounted on the inner side of the first baffle.

5. The gluing device based on the vacuum insulation panel according to claim 1 is characterized in that: A straight rail (3003) is fixedly mounted at one end above the inner side surface of the second baffle, and the straight rail (3003) is arranged in a direction parallel to the first baffle.

6. The gluing device based on the vacuum insulation panel according to claim 5 is characterized in that: A cutting knife (3010) and a second pressing cylinder (3007) are arranged in sequence along the inner side of the second baffle from the inside to the outside. One end of the cutting knife (3010) is transmission-connected to the second cylinder (3004), and the other end of the second cylinder (3004) is movably mounted on the straight rail (3003) via a fastening connection piece. One end of the second pressing cylinder (3007) is transmission-connected to the third cylinder (3006), and the other end of the third cylinder (3006) is movably mounted on the straight rail (3003) via a fastening connection piece (3008).

7. The gluing device based on the vacuum insulation panel according to claim 6 is characterized in that: The length of the cutting knife (3010) or the second pressing cylinder (3007) or the first pressing cylinder (3005) is the same as the width of the solid inclined plate in the same direction.

8. The gluing device based on the vacuum insulation panel according to claim 1 is characterized in that: An open groove is provided on the upper edge of the solid inclined plate in a direction perpendicular to the plane of the first baffle plate (3009), and the groove and the cutting knife (3010) are on the same vertical plane; the solid inclined plate also includes an open slot.

9. The gluing device based on the vacuum insulation panel according to claim 1 is characterized in that: The guide device also includes a fixed groove, a partition (3014), a sliding groove, and a DC motor (3015); One end of the combined plate is not fixed, and a spring is provided between the other end and fixedly connected to one side of the end face of the partition plate (3014); the other side of the end face of the partition plate (3014) is transmission-connected to a DC motor (3015) via a crank transmission pair, and the DC motor (3015) is fixedly mounted on the outer side face of the first baffle plate (3009); The fixed groove is arranged on the solid inclined plate (3012), along the normal direction of the inclined surface, at a distance higher than the bottom surface of the solid inclined plate (3012) and lower than the top of the solid inclined plate (3012), and is used to place the stopper (3013); The slide channel is arranged on the bottom of the first baffle, and comprises a stop channel and a lower end slide channel, wherein the stop channel is located at the top of the slide channel and is connected to the fixed channel, and is used to place the partition (3014); the lower end slide channel is arranged as an open structure, and its height is the same as the height of the partition (3014) along the sliding direction and the thickness of the two clamping plates when they are closed; the height of the stop channel is higher than the height of the partition (3014) along the sliding direction.

Citation Information

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