New energy silicone sealing gasket automatic dispensing and hot pressing equipment

Through the automatic dispensing, positioning and cooling system, the adaptability and efficiency problems of existing silicone sealing gasket hot pressing equipment are solved, and the production efficiency and product quality are improved.

CN117019530BActive Publication Date: 2025-09-30SUZHOU DINGJIA PRECISION TECH CO LTD
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Patent Information

Application Number
CN202310905230.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-24
Publication Date
2025-09-30
Estimated Expiration
2043-07-24

AI Technical Summary

Technical Problem

Existing silicone sealing gasket hot pressing equipment cannot automatically dispense glue, has poor adaptability, cannot adapt to different specifications, and is inconvenient for positioning and cooling, resulting in low production efficiency and poor product quality.

Method used

The combination of a fixer, airbag and dispenser enables automatic dispensing and hot pressing; the combination of a limiter and air hole enables automatic alignment and cooling; the guide plate and collection frame collect impurities, improving equipment adaptability and production efficiency.

Benefits of technology

It realizes automatic dispensing and hot pressing of silicone sealing gaskets of different specifications, avoids the inefficiency and unevenness of manual dispensing, improves product yield and equipment reliability, and reduces maintenance difficulty.

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Abstract

The present invention relates to the field of silicone gasket processing, and in particular to automatic dispensing and hot pressing equipment for new energy silicone gaskets. The technical problem is that the existing hot pressing equipment for silicone gaskets cannot automatically dispense glue at the joints of silicone gaskets, and cannot adapt to silicone gaskets of different sizes. At the same time, the existing equipment cannot automatically align and cool the silicone gaskets, resulting in low adaptability of the equipment, low production efficiency, and poor product quality and use effect. The technical implementation plan of the present invention is: automatic dispensing and hot pressing equipment for new energy silicone gaskets, including a mounting frame and a support platform, etc.; the support platform is installed on the mounting frame. The present invention realizes automatic dispensing and hot pressing of silicone gaskets of different sizes through the cooperation of a fixer, an airbag and a dispenser, significantly improving the adaptability of the equipment, avoiding low efficiency and uneven dispensing during manual dispensing, and avoiding the problem of deformation of silicone gaskets caused by large-scale hot pressing through a heat conduction block.
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Description

Technical Field

[0001] The present invention relates to the field of silicone sealing gasket processing, and in particular to automatic dispensing and hot pressing equipment for new energy silicone sealing gaskets. Background Art

[0002] Silicone sealing gaskets are widely used in the automotive industry. In order to meet the needs of different parts, it is necessary to produce special-shaped silicone sealing gaskets of different shapes. In the existing production process of special-shaped silicone sealing gaskets, a single component of the special-shaped silicone sealing gasket is usually produced first, and then a hot press is used to connect the different components. However, the existing silicone sealing gasket hot pressing equipment cannot automatically dispense glue at the joints of the silicone sealing gaskets. Manual dispensing has the problems of low efficiency and uneven dispensing. In addition, the existing silicone sealing gasket hot pressing equipment cannot uniformly process silicone sealing gaskets of different sizes, resulting in low equipment adaptability and increased production costs of silicone sealing gaskets.

[0003] At the same time, the existing silicone sealing gasket hot pressing equipment is unable to automatically align the silicone sealing gasket, and still relies on manual alignment of the silicone sealing gasket joints, which results in a slow alignment process and easily causes the silicone sealing gasket to shift in position. At the same time, the existing equipment is unable to cool the silicone sealing gasket joints after the hot pressing is completed, causing the silicone sealing gasket joints to crack again during the manual removal of the silicone sealing gasket, thereby affecting the joint effect and stability, and reducing the product quality and use effect of the silicone sealing gasket. Summary of the Invention

[0004] In order to overcome the shortcomings of existing silicone sealing gasket hot pressing equipment that is unable to automatically dispense glue at the joints of silicone sealing gaskets and cannot adapt to silicone sealing gaskets of different sizes and specifications, and at the same time, the existing equipment is unable to automatically align and cool the silicone sealing gaskets, resulting in low equipment adaptability, low production efficiency, poor product quality and use effect, the present invention provides a new energy silicone sealing gasket automatic dispensing and hot pressing equipment.

[0005] The technical implementation scheme of the present invention is: new energy silicone sealing gasket automatic dispensing and hot pressing equipment, including a mounting frame, a supporting platform and a hot pressing block; a supporting platform is installed on the mounting frame; two left-right symmetrical silicone sealing gaskets are placed on the supporting platform; a lifting and pressing block for pressing the silicone sealing gasket is provided in the middle of the front side of the mounting frame; it also includes a fixer, an airbag, a dispenser and an alignment cooling system; two left-right symmetrical fixtures are installed on the upper surface of the supporting platform, and the interior of the two fixtures are both arranged as hollow structures; the front sides of the two fixtures are provided with a magnetic suction structure for rotation control of opening and closing; each of the two fixtures is provided with an airbag for fixing silicone sealing gaskets of different specifications; a dispenser is provided between the two fixtures, which moves back and forth and is used to dispense glue at the joint of the silicone sealing gasket; two left-right symmetrical glue outlets are provided on the front side of the dispenser; an alignment cooling system for automatically aligning and cooling the silicone sealing gasket is provided between the two fixtures.

[0006] More preferably, the glue outlet is arranged to be inclined toward the front side of the glue dispenser.

[0007] More preferably, it also includes an elastic part, a heat-conducting block, an air pump, a first air duct, a glue storage tank, a flow guide tube, a fixed plate and a support plate; a number of elastic parts for buffering the downward pressure of the hot pressing block are fixed to the upper surface of the hot pressing block; a heat-conducting block for locally heating the joint of the silicone sealing gasket is fixed to the front side of the lower surface of the hot pressing block; an air pump for inflating the airbag is fixed to the mounting frame; two left-right symmetrical first air ducts are connected to the air pump; the two first air ducts are respectively connected to adjacent airbags; a glue storage tank for storing silicone adhesive is installed in the middle of the rear side of the mounting frame; the lower side of the glue storage tank is connected to the flow guide tube, and the flow guide tube is connected to the glue dispenser; a fixed plate is fixed between the two fixers; a support plate for supporting the joint of the silicone sealing gasket is set up on the lower side of the fixing plate.

[0008] More preferably, both left and right sides of the supporting plate are configured as curved surfaces.

[0009] More preferably, the positioning cooling system includes a limiter and a second air duct; two left-right symmetrical slide grooves are provided on the front side of the fixed plate; each of the two slide grooves is slidably connected to a limiter for retracting the joint of the silicone sealing gasket to the middle, and the interior of the two limiters is set to a hollow structure; a number of blowing holes are respectively provided on the opposite sides of the two limiters; the rear sides of the two limiters are each connected to a second air duct; the two second air ducts are respectively connected to adjacent air bags.

[0010] More preferably, the two slide grooves are both arranged in an inclined shape, and the upper sides of the two slide grooves are close to the middle of the front side of the fixed plate.

[0011] More preferably, a protrusion is provided on the lower surface of each limiter, and the protrusion is configured to be wavy.

[0012] More preferably, each blowing hole is arranged to be inclined toward the joint of the two silicone sealing pads.

[0013] More preferably, it also includes a guide plate and a collection frame; two left-right symmetrical guide plates for guiding impurities are fixed to the upper surface of the support plate; a collection frame for cooling and collecting impurities is movably connected to the rear side of the fixed plate, and cold water is stored in the collection frame.

[0014] More preferably, the two guide plates are configured as arc-shaped plates bent toward opposite sides.

[0015] Compared with the existing technology, the present invention has the following advantages: the present invention realizes automatic dispensing and hot pressing of silicone sealing gaskets of different specifications and sizes through the cooperation of the fixer, the airbag and the dispenser, significantly improving the adaptability of the equipment and avoiding the low efficiency and uneven dispensing caused by manual dispensing;

[0016] Localized hot pressing is achieved through heat conduction blocks, replacing the existing large-scale hot pressing. This effectively avoids the problem of silicone sealing gasket deformation caused by large-scale hot pressing and improves product yield.

[0017] The stopper and the protrusion cooperate to realize the automatic alignment of the silicone sealing gasket joint, thus avoiding the slow speed and position deviation caused by manual alignment.

[0018] The coordination of the stopper, the air hole, and the second air guide tube accelerates the cooling speed of the adhesive at the joint of the two silicone sealing pads, preventing the joint from cracking again due to substandard curing during manual handling, thereby improving equipment production efficiency and further increasing product yield.

[0019] The guide plate and the collection frame are used to collect adhesive debris and impurities, which effectively reduces the difficulty of equipment maintenance, prevents adhesive debris and impurities from adhering to the inside of the equipment and causing equipment failure, and improves equipment reliability. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the first three-dimensional structure of the present invention;

[0021] Figure 2 This is a schematic diagram of the second three-dimensional structure of the present invention;

[0022] Figure 3 This is a schematic diagram of a first partial three-dimensional structure of the present invention;

[0023] Figure 4 This is a schematic diagram of a second partial three-dimensional structure of the present invention;

[0024] Figure 5 This is a schematic diagram of a third partial three-dimensional structure of the present invention;

[0025] Figure 6 It is a partial structural cross-sectional view of the present invention;

[0026] Figure 7 This is a schematic diagram of a fourth partial three-dimensional structure of the present invention;

[0027] Figure 8 This is a schematic diagram of a fifth partial three-dimensional structure of the present invention;

[0028] Figure 9 It is a schematic diagram of the three-dimensional structure of the glue dispenser of the present invention;

[0029] Figure 10 This is a schematic diagram of the first three-dimensional structure of the dispensing cooling system of the present invention;

[0030] Figure 11 This is a schematic diagram of a second three-dimensional structure of the dispensing cooling system of the present invention;

[0031] Figure 12 This is a schematic diagram of a third three-dimensional structure of the dispensing cooling system of the present invention;

[0032] Figure 13 Schematic diagram of the three-dimensional structure of the limiter of the present invention;

[0033] Figure 14 It is a schematic diagram of the combined three-dimensional structure of the guide plate and the collecting frame of the present invention.

[0034] The markings of the components in the accompanying drawings are as follows: 1-mounting frame, 2-supporting platform, 3-hot pressing block, 4-silicone sealing pad, 5-fixer, 6-air bag, 7-dispenser, 7001-glue outlet, 101-first driving member, 102-elastic member, 103-heat conducting block, 201-air pump, 202-first air guide pipe, 301-glue storage tank, 302-guide pipe, 303-fixing plate, 30301-slide groove, 304-second driving member, 305-supporting plate, 306-electric slide rail, 307-slider, 401-limiter, 40101-blowing hole, 40102-protrusion, 402-second air guide pipe, 501-guide plate, 502-collection frame. DETAILED DESCRIPTION

[0035] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0036] Example 1

[0037] like Figure 3-9As shown, the new energy silicone sealing gasket automatic dispensing and hot pressing equipment includes a mounting frame 1, a supporting platform 2 and a hot pressing block 3; the mounting frame 1 is mounted with the supporting platform 2; two silicone sealing gaskets 4 are placed on the supporting platform 2 in a left-right symmetrical manner; the hot pressing block 3 is provided in the middle of the front side of the mounting frame 1;

[0038] It also includes a fixture 5, an air bag 6, a glue dispenser 7 and a positioning cooling system; two left-right symmetrical fixtures 5 are installed on the upper surface of the support platform 2, and the interior of the two fixtures 5 is set to a hollow structure; the front side of the two fixtures 5 is provided with a magnetic suction structure for rotation control opening and closing; an air bag 6 is provided in each of the two fixtures 5; a glue dispenser 7 is provided between the two fixtures 5; two left-right symmetrical glue outlets 7001 are provided on the front side of the glue dispenser 7; a positioning cooling system is provided between the two fixtures 5; the two air bags 6 are respectively cooperated with the adjacent fixtures 5 to fix the silicone sealing pads 4 of different specifications, and then the glue dispenser 7 is used to automatically dispense glue at the joint of the two silicone sealing pads 4, effectively improving the adaptability of the equipment and avoiding the problem of low efficiency and uneven manual glue dispensing.

[0039] The glue outlet 7001 is set to be inclined toward the front side of the glue dispenser 7, so that the silicone adhesive in the glue dispenser 7 flows out evenly along the left and right sides of the glue dispenser 7 through the glue outlet 7001. When the glue dispenser 7 moves backward, the silicone adhesive is further evenly applied to the joint of the two silicone sealing pads 4.

[0040] It also includes an elastic member 102, a heat conducting block 103, an air pump 201, a first air guide tube 202, a glue storage tank 301, a flow guide tube 302, a fixing plate 303 and a supporting plate 305; at least four elastic members 102 are fixed to the upper surface of the hot pressing block 3, and the elastic member 102 is a spring; the front side of the lower surface of the hot pressing block 3 is fixed to the heat conducting block 103; the mounting frame 1 is bolted with an air pump 201; the air pump 201 is connected to two left-right symmetrical first air guide tubes 202; the two first air guide tubes 202 are respectively connected to the adjacent airbags 6; a glue storage tank 3 is installed in the middle of the rear side of the mounting frame 1 01; The lower side of the glue storage tank 301 is connected to a guide tube 302, and the guide tube 302 is connected to the glue dispenser 7; a fixing plate 303 is fixed between the two fixers 5; a supporting plate 305 is provided on the lower side of the fixing plate 303 for lifting; the supporting plate 305 drives the joint of the silicone sealing gasket 4 to move upward to be flush with the glue dispenser 7, and then the glue dispenser 7 is used to evenly dispense glue on the joint of the silicone sealing gasket 4, and then the hot pressing block 3 and the heat conducting block 103 are used to perform local hot pressing on the joint of the silicone sealing gasket 4 to prevent deformation of the silicone sealing gasket 4 caused by large-scale hot pressing, thereby improving product quality.

[0041] The left and right sides of the supporting plate 305 are both set as arc surfaces, so that when the supporting plate 305 moves upward, the pressure of the left and right sides of the supporting plate 305 on the lower surface of the silicone sealing pad 4 is reduced, avoiding indentations on the lower surface of the silicone sealing pad 4 and improving product quality.

[0042] It also includes a power component, which includes a first driving member 101, a second driving member 304, an electric slide rail 306 and a slider 307; the first driving member 101 is installed on the upper side of the mounting frame 1, and the first driving member 101 is an electric push rod; the output end of the first driving member 101 is fixedly connected to the elastic member 102; the electric slide rail 306 is fixedly connected to the lower side of the fixed plate 303; the slider 307 is slidably connected to the electric slide rail 306; the slider 307 is fixedly connected to the dispenser 7; through the cooperation of the first driving member 101 and the elastic member 102, the hot pressing block 3 is driven to move up and down, and through the cooperation of the electric slide rail 306 and the slider 307, the dispenser 7 is driven to move forward and backward.

[0043] The process of automatically dispensing and hot pressing the silicone sealing gasket 4 in the present invention is as follows:

[0044] First, the operator opens the front sides of the two fixers 5 outward, and then puts the two silicone sealing pads 4 into the two fixers 5 respectively, and then resets the front sides of the fixers 5, and then keeps the front sides of the fixers 5 in a closed state through magnetic attraction. At the same time, the air pump 201 pumps external air into the airbag 6 through the first air guide tube 202, causing the airbag 6 to deform and expand toward the front side of the fixer 5, thereby causing the airbag 6 to press the silicone sealing pad 4, so that the front sides of the two silicone sealing pads 4 are tightly attached to the inner front part of the fixer 5. At this time, the front sides of the two silicone sealing pads 4 are on the same horizontal line, so that the joints of the two silicone sealing pads 4 are parallel to each other, so that the equipment can be used for different The silicone sealing pads 4 of different sizes are fixed uniformly, and the preliminary alignment of the two silicone sealing pads 4 joints is achieved at the same time. Then, the two second driving members 304 drive the supporting plate 305 to move upward, thereby driving the two silicone sealing pads 4 joints to move upward. When the lower surfaces of the two silicone sealing pads 4 move to be flush with the lower surface of the glue dispenser 7, the second driving member 304 stops working, and then the operator moves the two silicone sealing pads 4 toward the glue dispenser 7, respectively, so that the joints of the two silicone sealing pads 4 are respectively close to the left and right sides of the glue dispenser 7. At this time, the silicone adhesive is transported to the guide tube 302 through the glue storage tank 301, and then through the guide tube 3 02 The silicone adhesive is transported to the glue dispenser 7. At this time, the slider 307 is driven to move backward by the electric slide rail 306, and then the glue dispenser 7 is driven to move backward. Then, the silicone adhesive is evenly applied to the docking point of the silicone sealing pad 4 through the glue outlet 7001. In the process of the glue dispenser 7 moving backward, the operator pushes the two silicone sealing pads 4 toward the middle, so that the docking process and the glue dispensing process are carried out simultaneously to avoid the silicone adhesive overflowing during the docking process. When the glue dispenser 7 moves to the rear of the silicone sealing pad 4, the hot pressing block 3 is driven to descend by the first driving member 101, and then the heat conducting block 103 is driven to move downward, and the heat conducting block 103 and the silicone sealing pad 4 After the joints are in contact, the output end of the first driving member 101 continues to extend downward, causing the heat conductive block 103 to perform hot pressing and curing on the joint of the silicone sealing gasket 4. The elastic member 102 buffers the downward pressure generated by the first driving member 101 on the hot pressing block 3 to prevent the silicone sealing gasket 4 from being disconnected due to excessive downward pressure, so that the equipment can automatically dispense and hot press silicone sealing gaskets 4 of different specifications and sizes, significantly improving the adaptability of the equipment, avoiding low efficiency and uneven dispensing during manual dispensing, and further replacing the existing large-scale hot pressing method with local hot pressing, effectively avoiding the problem of deformation of the silicone sealing gasket 4 caused by large-scale hot pressing, thereby improving the product yield.

[0045] Example 2

[0046] On the basis of Example 1, Figure 10-12As shown, the positioning cooling system includes a limiter 401 and a second air duct 402; two left-right symmetrical sliding grooves 30301 are provided on the front side of the fixed plate 303; a limiter 401 is slidably connected to each of the two sliding grooves 30301, and the interior of the two limiters 401 is set as a hollow structure; a number of blowing holes 40101 are respectively provided on the opposite sides of the two limiters 401; a second air duct 402 is connected to the rear side of each of the two limiters 401; the two second air ducts 402 are respectively connected to the adjacent air bags 6; the silicone sealing gasket 4 is limited by the two limiters 401 to avoid positional displacement of the silicone sealing gasket 4 caused by manual positioning, and then the air in the air bag 6 is guided to the joint of the silicone sealing gasket 4 through the cooperation of the second air duct 402 and the blowing hole 40101, thereby accelerating the cooling speed of the joint of the silicone sealing gasket 4, making the joint of the silicone sealing gasket 4 quickly stabilized, and preventing the joint from cracking when the silicone sealing gasket 4 is taken out, thereby significantly improving the product yield.

[0047] Both slide grooves 30301 are set to be inclined, and the upper sides of the two slide grooves 30301 are close to the middle of the front side of the fixed plate 303, so that when the two limiters 401 are subjected to an upward lifting force, they move along the slide grooves 30301 toward the middle of the front side of the fixed plate 303, and then bring the two silicone sealing pads 4 to the middle, avoiding the problem of slow speed during manual alignment, which is easy to cause position deviation.

[0048] Each limiter 401 is provided with a protrusion 40102 on the lower surface, and the protrusion 40102 is set in a wave shape, which increases the friction between the lower surface of the limiter 401 and the upper surface of the silicone sealing pad 4, thereby enabling the limiter 401 to drive the silicone sealing pad 4 to move more firmly, further improving the effect of automatic alignment of the silicone sealing pad 4, and at the same time, when the limiter 401 moves obliquely upward, the force position of the silicone sealing pad 4 is always located on the lower side of the limiter 401, preventing the connection of the silicone sealing pad 4 from being pulled, avoiding cracking of the connection of the silicone sealing pad 4, and further improving the product yield.

[0049] Each blowing hole 40101 is set to be inclined toward the joint of the two silicone sealing pads 4, so that the air flowing out of the blowing hole 40101 blows towards the joint of the two silicone sealing pads 4, thereby accelerating the cooling speed of the adhesive at the joint of the two silicone sealing pads 4, avoiding the joint from cracking again due to the unsatisfactory curing degree of the joint when manually picked up, and improving the production efficiency of the equipment.

[0050] The process of automatically aligning and cooling the silicone sealing gasket 4 according to the present invention is as follows:

[0051] When the supporting plate 305 drives the two silicone sealing pads 4 to move upward, the upper surfaces of the two silicone sealing pads 4 are respectively in contact with the lower sides of the adjacent limiters 401, thereby causing the two limiters 401 to be subjected to an upward lifting force. Since the two slide grooves 30301 are arranged to be inclined, and the upper sides of the two slide grooves 30301 are close to the middle part of the front side of the fixed plate 303, when the two limiters 401 are subjected to an upward lifting force, they are moved closer to the middle part of the front side of the fixed plate 303 along the slide grooves 30301, thereby bringing the two silicone sealing pads 4 to gather towards the middle, realizing automatic alignment of the joints of the silicone sealing pads 4, avoiding the slow speed of manual alignment, It is easy to cause the problem of position displacement. After the hot pressing is completed, the air in the airbag 6 is guided to the limiter 401 through the second air guide tube 402 by the solenoid valve, and then the surface of the silicone sealing pad 4 is blown through the blowing hole 40101. Since each blowing hole 40101 is set to be inclined toward the joint of the two silicone sealing pads 4, the air flowing out of the blowing hole 40101 is blown against the joint of the two silicone sealing pads 4, thereby accelerating the cooling speed of the adhesive at the joint of the two silicone sealing pads 4, avoiding the joint from cracking again due to the unsatisfactory degree of solidification of the joint when manually picked up, and improving the production efficiency of the equipment.

[0052] Example 3

[0053] On the basis of Examples 1 and 2, Figure 1 、 Figure 2 and Figure 14 As shown, it also includes a guide plate 501 and a collection frame 502; two left-right symmetrical guide plates 501 are fixedly connected to the upper surface of the supporting plate 305; the collection frame 502 is movably connected to the rear side of the fixed plate 303, and cold water is stored in the collection frame 502; the adhesive debris and impurities blown off the silicone sealing gasket 4 are guided by the guide plate 501, and then the adhesive debris and impurities are collected by the collection frame 502, so as to prevent the adhesive debris and impurities from adhering to the inside of the equipment, causing equipment failure, and reducing the maintenance cost and difficulty of the equipment.

[0054] The two guide plates 501 are configured as arc-shaped plates that bend toward opposite sides, so that the adhesive debris and impurities blown off the silicone sealing pad 4 move backward along the arc surfaces of the opposite sides of the guide plates 501, preventing the adhesive debris and impurities from escaping into the equipment, and then the adhesive debris and impurities are collected in the collection frame 502.

[0055] The process of collecting adhesive debris and impurities in the present invention is as follows:

[0056] When the air hole 40101 blows air to cool the joint of the silicone sealing gasket 4, the air flowing backward will drive the adhesive debris and impurities on the surface of the silicone sealing gasket 4 to move toward the rear side of the fixed plate 303. Since the two guide plates 501 are configured as arc-shaped plates bent toward opposite sides, the adhesive debris and impurities move backward along the arc surfaces of the opposite sides of the guide plates 501, thereby guiding the adhesive debris and impurities into the collection frame 502. Since cold water is stored in the collection frame 502, the adhesive debris and impurities will be intercepted by the cold water and then concentrated in the collection frame 502. The operator can remove the collection frame 502 from the equipment, process the adhesive debris and impurities in the collection frame 502, and replace the cold water in the collection frame 502 at the same time, thereby effectively reducing the difficulty of equipment maintenance, avoiding adhesive debris and impurities from adhering to the inside of the equipment, causing equipment failure, and improving the reliability of the equipment.

[0057] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes may be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. New energy silicone sealing gasket automatic dispensing hot pressing equipment, comprising a mounting frame (1), a supporting platform (2) and a hot pressing block (3); the mounting frame (1) is mounted with the supporting platform (2); two left-right symmetrical silicone sealing gaskets (4) are placed on the supporting platform (2); a hot pressing block (3) for pressing the silicone sealing gasket (4) is provided at the middle of the front side of the mounting frame (1); the hot pressing block (3) is characterized by: The invention also includes a fixer (5), an air bag (6), a glue dispenser (7) and a positioning cooling system; two left-right symmetrical fixers (5) are installed on the upper surface of the support platform (2), and the interior of the two fixers (5) is set as a hollow structure; the front side of the two fixers (5) is provided with a magnetic attraction structure for rotation control opening and closing; an air bag (6) is provided in each of the two fixers (5) for fixing silicone sealing pads (4) of different specifications; a glue dispenser (7) is provided between the two fixers (5) and is used for dispensing glue on the joint of the silicone sealing pad (4); two left-right symmetrical glue outlets (7001) are provided on the front side of the glue dispenser (7); and a positioning cooling system for automatically aligning and cooling the silicone sealing pad (4) is provided between the two fixers (5).

2. The automatic dispensing and hot pressing equipment for new energy silicone sealing gaskets according to claim 1 is characterized in that: The glue outlet (7001) is arranged to be inclined toward the front side of the glue dispenser (7).

3. The automatic dispensing and hot pressing equipment for new energy silicone sealing gaskets according to claim 2 is characterized in that: The heat press block (3) is fixedly connected to the upper surface of the heat press block (3) with a plurality of elastic members (102) for buffering the downward pressure of the heat press block (3); the heat press block (3) is fixedly connected to the front side of the lower surface of the heat press block (3) with a heat conduction block (103) for locally heating the joint of the silicone seal pad (4); the mounting frame (1) is fixedly connected to the air pump (201) for inflating the air bag (6). The air pump (201) is connected to two left-right symmetrical first air guide tubes (202); the two first air guide tubes (202) are respectively connected to the adjacent air bags (6); a glue storage tank (301) for storing silicone adhesive is installed in the middle of the rear side of the mounting frame (1); the lower side of the glue storage tank (301) is connected to a guide tube (302), and the guide tube (302) is connected to the glue dispenser (7); a fixing plate (303) is fixed between the two fixers (5); a supporting plate (305) for supporting the docking point of the silicone sealing pad (4) is provided on the lower side of the fixing plate (303).

4. The automatic dispensing and hot pressing equipment for new energy silicone sealing gaskets according to claim 3 is characterized by: The left and right sides of the supporting plate (305) are both configured as arc surfaces.

5. The new energy silicone sealing gasket automatic dispensing and hot pressing equipment according to claim 3 is characterized by: The counter-position cooling system comprises a limiter (401) and a second air guide tube (402); two left-right symmetrical slide grooves (30301) are provided on the front side of the fixing plate (303); a limiter (401) for retracting the joint of the silicone sealing pad (4) toward the middle is slidably connected to each of the two slide grooves (30301), and the interiors of the two limiters (401) are both arranged as hollow structures; a plurality of blowing holes (40101) are respectively provided on the opposite sides of the two limiters (401); a second air guide tube (402) is respectively connected to the rear side of the two limiters (401); and the two second air guide tubes (402) are respectively connected to the adjacent air bags (6).

6. The automatic dispensing and hot pressing equipment for new energy silicone sealing gaskets according to claim 5 is characterized by: The two slide grooves (30301) are both arranged in an inclined shape, and the upper sides of the two slide grooves (30301) are close to the middle of the front side of the fixed plate (303).

7. The new energy silicone sealing gasket automatic dispensing and hot pressing equipment according to claim 5 is characterized by: A protrusion (40102) is provided on the lower surface of each stopper (401), and the protrusion (40102) is configured in a wave shape.

8. The automatic dispensing and hot pressing equipment for new energy silicone sealing gaskets according to claim 5 is characterized by: Each blowing hole (40101) is arranged to be inclined toward the joint of the two silicone sealing pads (4).

9. The new energy silicone sealing gasket automatic dispensing and hot pressing equipment according to claim 6 is characterized by: It also includes a guide plate (501) and a collection frame (502); two guide plates (501) for guiding impurities are fixedly connected to the upper surface of the supporting plate (305) and are symmetrical on both sides; the collection frame (502) for cooling and collecting impurities is movably connected to the rear side of the fixed plate (303), and cold water is stored in the collection frame (502).

10. The new energy silicone sealing gasket automatic dispensing and hot pressing equipment according to claim 9 is characterized by: The two guide plates (501) are configured as arc-shaped plates that bend toward opposite sides.

Citation Information

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