Directional radiation heating glue sealing device for storage battery
By designing the battery directional radiation heating glue sealing device, the drive motor, reciprocating screw and slider are used to achieve uniform distribution of glue and floating of bubbles. Combined with heating components and landline auxiliary mechanism to accelerate glue curing, the problems of uneven distribution of glue, bubbles affecting glue injection quality and battery surface wear in the prior art are solved, and the glue injection quality and glue curing efficiency are improved.
Patent Information
- Application Number
- CN202510297864.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the glue injection process of lead-acid batteries, the prior art has problems such as uneven glue distribution, bubbles affecting the quality of glue injection, and wear of the surface of the large cover after the battery is inverted.
A battery directional radiation heating glue sealing device is designed, which drives the reciprocating screw and slider to rotate by driving the motor, drives the glue injection head to move the glue in horizontally, and then evenly distributes the internal glue by tapping the components to promote the floating of the bubbles. At the same time, the heating components and landline auxiliary mechanism are used to accelerate glue curing and airflow purification.
The uniform distribution of glue is achieved, the quality of glue injection is improved, the uneven glue accumulation and the influence of bubbles is avoided, and the complete curing of glue and the purification of air flow is promoted.
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Figure CN120054822A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of battery glue injection, and specifically relates to a battery directional radiation heating glue sealing device. Background Art
[0002] A storage battery is a device that directly converts chemical energy into electrical energy. It is a rechargeable battery designed to be recharged through reversible chemical reactions. Usually, it refers to a lead-acid battery, which is a type of battery and belongs to secondary batteries. Its working principle: during charging, external electrical energy is used to regenerate the internal active substances, and the electrical energy is stored as chemical energy. When discharging is required, the chemical energy is converted back into electrical energy for output again, such as the mobile phone batteries commonly used in daily life.
[0003] Storage batteries are divided into PP material heat sealing and ABS material glue sealing according to the sealing method. However, during the process of turning the lead-acid battery cover and the tank body after drip glue sealing and moving them into the drying kiln, on the one hand, it is inconvenient to handle the battery when it is inverted, and the surface of the cover is worn and scratched during the movement of the inverted battery, resulting in poor appearance. On the other hand, since only the acid injection port on the upper part of the cover is open after the battery is sealed, when the battery is inverted, the cover faces downwards, causing the acid injection port to be blocked and no air flow, which will cause the colloid inside the battery to not fully cure.
[0004] When the existing storage batteries are injected with glue, the glue is directly injected into a fixed position inside the storage battery through a fixed glue injection head. The glue needs to be spread evenly by its own fluidity, which not only wastes the glue injection time but also easily generates bubbles, affecting the glue injection quality. For this reason, this application proposes a battery directional radiation heating glue sealing device. Summary of the Invention
[0005] The purpose of this part is to outline some aspects of the embodiments of the present invention and briefly introduce some preferred embodiments. Simplifications or omissions may be made in this part, as well as in the abstract and title of the present application, to avoid obscuring the purpose of this part, the abstract, and the title. However, such simplifications or omissions cannot be used to limit the scope of the present invention.
[0006] In view of the above and / or problems existing in the existing battery directional radiation heating glue sealing device, the present invention is proposed.
[0007] Therefore, the purpose of the present invention is to provide a battery directional radiation heating glue sealing device. The driving motor drives the reciprocating screw rod to rotate, the reciprocating screw rod drives the slider to reciprocate horizontally, the slider drives the glue injection head to reciprocate, and horizontal glue injection is carried out, so that the glue is evenly distributed, avoiding uneven glue accumulation. At the same time, the driving motor synchronously drives the first half gear to rotate, and the first half gear drives the knocking component to knock the storage battery, making the internal glue evenly distributed and facilitating the floating of bubbles, thereby improving the glue injection quality.
[0008] To solve the above technical problems, according to one aspect of the present invention, the present invention provides the following technical solutions:
[0009] A battery directional radiation heating and glue-sealing device, which includes:
[0010] A glue injection table, including a support table and a clamping seat arranged on the top of the support table;
[0011] A heating bracket, arranged on the support table, the heating bracket includes a frame plate, a chute, a support plate and a heating component, a chute is opened on the frame plate, support plates are arranged on both sides of the bottom of the frame plate, and heating components are arranged on both the front and rear sides of the bottom of the frame plate;
[0012] A glue injection mechanism, arranged on the frame plate, the glue injection mechanism includes a glue bucket, a glue discharge pipeline and a glue injection head, the glue bucket is erected on the frame plate, and the bottom side wall of the glue bucket is connected to the glue injection head through the glue discharge pipeline;
[0013] A glue guiding mechanism, arranged on the frame plate, the glue guiding mechanism includes a driving motor, a driving shaft, a reciprocating lead screw, a slider, a first half gear, a knocking gear and a knocking component, the output end of the driving motor is provided with the driving shaft, the middle of the driving shaft is provided with the reciprocating lead screw, the reciprocating lead screw is provided with a slider connected to the chute, the left end of the driving shaft is provided with the first half gear, the knocking gear is rotatably connected to the support plate, the knocking gear meshes with the first half gear, and uniformly distributed knocking components are arranged at the right end of the knocking gear.
[0014] As a preferred scheme of a battery directional radiation heating and glue-sealing device according to the present invention, wherein: a fixing auxiliary mechanism is arranged at the bottom of the frame plate, the fixing auxiliary mechanism includes an air duct, an air shaft, a driving impeller and a speed increasing gear set, the air duct is fixed at the bottom of the frame plate, the right end of the air duct is rotatably connected to the air shaft, a driving impeller is arranged at one end of the air shaft located inside the air duct, a speed increasing gear set is arranged at one end of the air shaft located outside the air duct, a second half gear is arranged at the right end of the driving shaft, and the second half gear meshes with the speed increasing gear set.
[0015] As a preferred scheme of a battery directional radiation heating and glue-sealing device according to the present invention, wherein: a purification box is arranged on the air duct, a cover plate is arranged on the purification box, and a filter plate is arranged inside the purification box.
[0016] As a preferred embodiment of the battery directional radiation heating and glue-sealing device of the present invention, the following is provided: A spiral rod is arranged inside the glue barrel, the bottom of the spiral rod is connected to a scraping shaft extending into the air duct, a scraping driven bevel gear is arranged at the bottom of the scraping shaft, a scraping transmission shaft is rotatably connected inside the air duct, a rotating bracket is arranged inside the air duct, the scraping transmission shaft is rotatably connected to the rotating bracket, a driven impeller is arranged at the right end of the scraping transmission shaft, and a scraping driving bevel gear meshing with the scraping driven bevel gear is arranged at the left end of the scraping transmission shaft.
[0017] As a preferred embodiment of the battery directional radiation heating and glue-sealing device of the present invention, the following is provided: The clamping seat includes a fixing plate, a screw rod for screwing in, and a clamping plate. The fixing plate is fixed on both sides of the top of the support table. The screw rod for screwing in is arranged on the right fixing plate, and the left end of the screw rod for screwing in is rotatably connected to the clamping plate.
[0018] As a preferred embodiment of the battery directional radiation heating and glue-sealing device of the present invention, the following is provided: The knocking component includes a bent rod, a telescopic rod, and a knocking ball. One end of the bent rod is fixed on the knocking gear, a telescopic rod is arranged at the other end of the bent rod, and a knocking ball is arranged at the end of the telescopic rod.
[0019] As a preferred embodiment of the battery directional radiation heating and glue-sealing device of the present invention, the following is provided: The right end of the air duct is in an inclined shape, and a fixed toothed plate is arranged inside the inclined opening at the right end of the air duct.
[0020] As a preferred embodiment of the battery directional radiation heating and glue-sealing device of the present invention, the following is provided: The speed increasing gear set includes a speed increasing shaft, a speed increasing pinion gear, a speed increasing large gear, and a wind shaft gear. The speed increasing shaft is rotatably connected to the right support plate. A speed increasing pinion gear meshing with the second half gear is arranged at the right end of the speed increasing shaft. A speed increasing large gear is arranged at the left end of the speed increasing shaft. A wind shaft gear is arranged at the right end of the wind shaft, and the wind shaft gear meshes with the speed increasing large gear.
[0021] As a preferred embodiment of the battery directional radiation heating and glue-sealing device of the present invention, the following is provided: The tooth positions of the first half gear and the second half gear are opposite.
[0022] As a preferred embodiment of the battery directional radiation heating and glue-sealing device of the present invention, the following is provided: The glue discharge pipe is a flexible pipe, and the glue injection head is inserted into the slider.
[0023] Compared with the prior art: During the glue injection process of the present invention, the driving motor drives the reciprocating lead screw to rotate, the reciprocating lead screw drives the slider to reciprocate horizontally, the slider drives the glue injection head to reciprocate, and horizontal glue injection is carried out, so that the glue is evenly distributed, avoiding uneven accumulation of glue. At the same time, the driving motor synchronously drives the first half gear to rotate, and the first half gear drives the knocking component to knock the storage battery, making the internal glue evenly distributed, facilitating the floating of air bubbles, and improving the glue injection quality. After glue injection, the first half gear and the knocking component are staggered, and the second half gear drives the solidification auxiliary mechanism to work, making the air flow, promoting the drying of the glue, and purifying the air flow through the solidification auxiliary mechanism to adsorb the peculiar smell in the glue. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the present invention will be described in detail below with reference to the drawings and specific embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. Among them:
[0025] Figure 1 is an isometric structural schematic diagram of the present invention;
[0026] Figure 2 is a structural schematic diagram of the glue injection table of the present invention;
[0027] Figure 3 is a structural schematic diagram of the heating bracket of the present invention;
[0028] Figure 4 is a structural schematic diagram of the glue injection mechanism of the present invention;
[0029] Figure 5 is a structural schematic diagram of part A of the present invention;
[0030] Figure 6 is a structural schematic diagram of the glue guiding mechanism of the present invention;
[0031] Figure 7 is a structural schematic diagram of part B of the present invention;
[0032] Figure 8 is a structural schematic diagram of the solidification auxiliary mechanism of the present invention.
[0033] In the figure: 100 glue injection table, 110 support table, 120 clamping seat, 121 fixed plate, 122 screw for screwing in, 123 clamping plate, 200 heating bracket, 210 frame plate, 220 sliding groove, 230 support plate, 240 heating component, 300 glue injection mechanism, 310 glue bucket, 320 glue discharge pipeline, 330 glue injection head, 340 screw rod, 350 scraping shaft, 360 driven bevel gear for scraping, 370 transmission shaft for scraping, 371 rotating bracket, 380 driven impeller, 390 driving bevel gear for scraping, 400 glue guiding mechanism, 410 driving motor, 420 driving shaft, 430 reciprocating screw rod, 440 slider, 450 first half gear, 460 knocking gear, 470 knocking component, 471 bent rod, 472 telescopic rod, 473 knocking ball, 480 second half gear, 500 fixing auxiliary mechanism, 510 air duct, 511 fixed toothed plate, 520 air shaft, 530 driving impeller, 540 speed increasing gear set, 541 speed increasing shaft, 542 small speed increasing gear, 543 large speed increasing gear, 544 air shaft gear, 550 purification box, 560 cover plate, 570 filter plate. Detailed implementation mode
[0034] To make the above objects, features and advantages of the present invention more obvious and understandable, the following detailed description of the specific implementation mode of the present invention is made in conjunction with the accompanying drawings.
[0035] In the following description, many specific details are set forth in order to fully understand the present invention, but the present invention can also be implemented in other ways different from those described herein. Those skilled in the art can make similar promotions without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific implementation modes disclosed below.
[0036] Secondly, the present invention is described in detail in conjunction with the schematic diagram. When detailing the implementation mode of the present invention, for the convenience of description, the cross-sectional view showing the device structure will be enlarged locally not in accordance with the general ratio, and the schematic diagram is only an example, which should not limit the scope of protection of the present invention herein. In addition, in actual production, the three-dimensional spatial dimensions of length, width and depth should be included.
[0037] To make the purpose, technical solution and advantages of the present invention clearer, the following will further describe the implementation mode of the present invention in detail in conjunction with the accompanying drawings.
[0038] The present invention provides a battery directional radiation heating and glue sealing device. The driving motor drives the reciprocating screw rod to rotate, the reciprocating screw rod drives the slider to reciprocate horizontally, the slider drives the glue injection head to reciprocate, and horizontal glue injection is carried out, so that the glue is evenly distributed, avoiding uneven glue accumulation. At the same time, the driving motor synchronously drives the first half gear to rotate, and the knocking component is driven by the first half gear to knock the battery, making the internal glue evenly distributed and facilitating the floating of air bubbles, improving the glue injection quality. Please refer to Figures 1-8, including: a glue injection table 100, a heating bracket 200, a glue injection mechanism 300, and a glue guiding mechanism 400.
[0039] The glue injection table 100 includes a support table 110 and a clamping seat 120 arranged on the top of the support table 110;
[0040] Among them, the support table 110 is a rectangular platform, and the storage battery is placed on the support table 110, and the storage battery is clamped and fixed by the clamping seat 120.
[0041] The heating bracket 200 is arranged on the support table 110. The heating bracket 200 includes a frame plate 210, a chute 220, a support plate 230, and a heating component 240. A chute 220 is opened on the frame plate 210, support plates 230 are arranged on both sides of the bottom of the frame plate 210, and heating components 240 are arranged on both the front and rear sides of the bottom of the frame plate 210;
[0042] Among them, the frame plate 210 is composed of a top flat plate and four bottom legs. A horizontal chute 220 is opened on the flat plate at the top of the frame plate 210. The support plate 230 is fixed on the frame plate 210 to provide rotational support. The heating component 240 is an electric heating rod, and the electric heating rod is fixed on the frame plate 210 through a connecting rod. The glue is cured by the energized heating of the heating component 240.
[0043] The glue injection mechanism 300 is arranged on the frame plate 210. The glue injection mechanism 300 includes a glue bucket 310, a glue discharge pipeline 320, and a glue injection head 330. The glue bucket 310 is erected on the frame plate 210, and the bottom side wall of the glue bucket 310 is connected to the glue injection head 330 through the glue discharge pipeline 320;
[0044] Among them, the glue bucket 310 is a round barrel, and three legs are arranged at the bottom for support. The glue bucket 310 is erected on the frame plate 210. Glue liquid is stored inside the glue bucket 310. The glue liquid flows to the glue injection head 330 through the glue discharge pipeline 320. The glue injection head 330 injects glue into the storage battery. A control valve and a pump are provided on the glue discharge pipeline 320 for transporting the glue.
[0045] The glue guiding mechanism 400 is arranged on the frame plate 210. The glue guiding mechanism 400 includes a driving motor 410, a driving shaft 420, a reciprocating lead screw 430, a slider 440, a first half gear 450, a knocking gear 460, and a knocking component 470. The output end of the driving motor 410 is provided with the driving shaft 420. The middle of the driving shaft 420 is provided with the reciprocating lead screw 430. A slider 440 connected to the chute 220 is arranged on the reciprocating lead screw 430. The left end of the driving shaft 420 is provided with the first half gear 450. The knocking gear 460 is rotatably connected to the support plate 230. The knocking gear 460 meshes with the first half gear 450. Uniformly distributed knocking components 470 are arranged at the right end of the knocking gear 460;
[0046] Among them, the degumming pipeline 320 uses a flexible hose. The glue injection head 330 is inserted into the slider 440. After the drive shaft 420 passes through the sliding groove 220, it is rotationally connected to the frame plate 210. The left end of the drive motor 410 is fixedly installed at the left end of the frame plate 210. The drive shaft 420 is driven to rotate by the drive motor 410. The drive shaft 420 synchronously drives the reciprocating lead screw 430 to rotate. When the reciprocating lead screw 430 rotates, it drives the slider 440 to reciprocate inside the sliding groove 220. While the drive shaft 420 rotates, it synchronously drives the first half gear 450 to rotate. When the teeth of the first half gear 450 rotate to the upper side, the first half gear 450 idles itself. When the teeth of the first half gear 450 rotate to the lower side, the teeth of the first half gear 450 engage to drive the knocking gear 460 to rotate. The knocking gear 460 synchronously drives the knocking component 470 to rotate. The rotating knocking component 470 continuously knocks on the storage battery, causing the glue inside the storage battery to vibrate, making the glue evenly distributed while making the bubbles inside the glue float up, removing the internal bubbles, and improving the glue injection quality.
[0047] Since only the heating component 240 is used for radiant heating during glue injection heating to dry the glue, and the radiant heating efficiency is low, for this reason, a fixing auxiliary mechanism 500 is provided at the bottom of the frame plate 210. The fixing auxiliary mechanism 500 includes an air duct 510, an air shaft 520, a drive impeller 530, and a speed increasing gear set 540. The air duct 510 is fixed to the bottom of the frame plate 210. The right end of the air duct 510 is rotationally connected to the air shaft 520. A drive impeller 530 is provided at one end of the air shaft 520 located inside the air duct 510. A speed increasing gear set 540 is provided at one end of the air shaft 520 located outside the air duct 510. A second half gear 480 is provided at the right end of the drive shaft 420. The second half gear 480 meshes with the speed increasing gear set 540.
[0048] Among them, the air duct 510 uses a C-shaped pipe, and the openings at the left and right ends are respectively oriented towards the storage battery, and the openings on both sides are staggered. When the drive shaft 420 rotates, it synchronously drives the second half gear 480 to rotate. When the teeth of the second half gear 480 rotate to the upper side, the second half gear 480 idles. When the teeth of the second half gear 480 rotate to the lower side, the second half gear 480 meshes to drive the speed increasing gear set 540 to rotate. The speed increasing gear set 540 drives the air shaft 520 to rotate. The air shaft 520 drives the drive impeller 530 to rotate. The drive impeller 530 drives the air flow to circulate, enabling the air flow to pass through the glue inside the storage battery, promoting the curing of the glue.
[0049] Since the glue itself has a strong peculiar smell, which affects the working environment, for this reason, a purification box 550 is provided on the air duct 510. A cover plate 560 is provided on the purification box 550. A filter plate 570 is provided inside the purification box 550.
[0050] Among them, when the air flow circulates inside the air duct 510, the air flow is adsorbed and purified by the filter plate 570 to remove the peculiar smell in the air flow. After use, the filter plate 570 can be pulled out to complete the replacement.
[0051] As the glue inside the glue bucket 310 is continuously used, the liquid level of the glue will decrease, and the inner wall of the glue bucket 310 will adhere to the glue. Therefore, a screw rod 340 is arranged inside the glue bucket 310. The bottom of the screw rod 340 is connected with a scraping shaft 350 extending into the air duct 510. The bottom of the scraping shaft 350 is provided with a scraping driven bevel gear 360. A scraping transmission shaft 370 is rotatably connected inside the air duct 510. A rotating bracket 371 is arranged inside the air duct 510. The scraping transmission shaft 370 is rotatably connected to the rotating bracket 371. The right end of the scraping transmission shaft 370 is provided with a driven impeller 380. The left end of the scraping transmission shaft 370 is provided with a scraping driving bevel gear 390 meshing with the scraping driven bevel gear 360.
[0052] Among them, when the air flow inside the air duct 510 circulates, it drives the driven impeller 380 to rotate. The driven impeller 380 drives the scraping driving bevel gear 390 to rotate through the scraping transmission shaft 370. The scraping driving bevel gear 390 meshes to drive the scraping driven bevel gear 360 to rotate. The scraping driven bevel gear 360 drives the screw rod 340 to rotate through the scraping shaft 350, and the screw rod 340 is used to scrape off the glue adhering to the inner wall of the glue bucket 310.
[0053] Since it is necessary to clamp and fix the storage battery, the clamping seat 120 includes a fixing plate 121, a screw rod 122 and a clamping plate 123. The fixing plate 121 is fixed on both sides of the top of the support platform 110. The screw rod 122 is arranged on the right fixing plate 121. The left end of the screw rod 122 is rotatably connected to the clamping plate 123.
[0054] Place the storage battery on the support platform 110, rotate the screw rod 122, and the screw rod 122 drives the clamping plate 123 to approach the storage battery under the action of screw feed to clamp and fix the storage battery.
[0055] Since it is necessary to adapt to storage batteries of different heights, the knocking component 470 includes a bent rod 471, a telescopic rod 472 and a knocking ball 473. One end of the bent rod 471 is fixed on the knocking gear 460. The other end of the bent rod 471 is provided with the telescopic rod 472. The end of the telescopic rod 472 is provided with the knocking ball 473.
[0056] Among them, the end of the bent rod 471 is hollow. The telescopic rod 472 is inserted into the end of the bent rod 471, and a spring is arranged at the end of the bent rod 471. The telescopic rod 472 is connected by the spring. When the knocking component 470 rotates, under the action of centrifugal force, the telescopic rod 472 is thrown outwards, and the telescopic rod 472 drives the knocking ball 473 to knock on the storage battery.
[0057] To prevent glue from spraying into the interior of the air duct 510, the right end of the air duct 510 is beveled. Inside the bevel at the right end of the air duct 510, there is a fixed toothed plate 511. The bevel serves as a shielding effect to prevent glue from spraying into the air duct 510. When the driving impeller 530 rotates, in cooperation with the fixed toothed plate 511, the glue that enters the interior is quickly crushed to prevent the glue from clogging inside the air duct 510.
[0058] Since it is necessary to drive the impeller 530 to rotate quickly when needed, for this purpose, the speed increasing gear set 540 includes a speed increasing shaft 541, a speed increasing pinion 542, a speed increasing gear 543, and a wind shaft gear 544. The speed increasing shaft 541 is rotatably connected to the right support plate 230. At the right end of the speed increasing shaft 541, there is a speed increasing pinion 542 that meshes with the second half gear 480. At the left end of the speed increasing shaft 541, there is a speed increasing gear 543. At the right end of the wind shaft 520, there is a wind shaft gear 544, and the wind shaft gear 544 meshes with the speed increasing gear 543.
[0059] Among them, the second half gear 480 drives the speed increasing pinion 542 to rotate at an increased speed, the speed increasing pinion 542 synchronously drives the speed increasing gear 543 to rotate at the same speed, and the speed increasing gear 543 drives the wind shaft gear 544 to rotate at an increased speed, increasing the rotational speed and enhancing the air flow circulation.
[0060] Since glue injection and heating need to be carried out separately, for this purpose, the tooth distributions of the first half gear 450 and the second half gear 480 are opposite, so that when the first half gear 450 is driving, the second half gear 480 idles, and vice versa, when the second half gear 480 is driving, the first half gear 450 idles.
[0061] During specific use, the storage battery is placed on the support platform 110. Rotate the screw 122. Under the action of screw feed, the screw 122 drives the clamping plate 123 to approach the storage battery to clamp and fix the storage battery.
[0062] When injecting glue, open the glue discharge pipeline 320. The glue liquid flows through the glue discharge pipeline 320 to the glue injection head 330, and the storage battery is injected with glue through the glue injection head 330. Drive the drive shaft 420 to rotate through the drive motor 410. The drive shaft 420 synchronously drives the reciprocating screw 430 to rotate. When the reciprocating screw 430 rotates, it drives the slider 440 to reciprocate inside the chute 220, driving the glue injection head 330 to move horizontally for spreading glue injection. While the drive shaft 420 is rotating, it synchronously drives the first half gear 450 to rotate. When the teeth of the first half gear 450 rotate to the lower side, the second half gear 480 idles. The teeth of the first half gear 450 engage to drive the knocking gear 460 to rotate, and the knocking gear 460 synchronously drives the knocking component 470 to rotate. The rotating knocking component 470 continuously knocks on the storage battery, causing the glue inside the storage battery to vibrate, making the glue evenly distributed while making the air bubbles inside the glue float up to remove the internal air bubbles and improve the glue injection quality.
[0063] After the injection of glue is completed, close the glue discharge pipeline 320, turn on the heating component 240, and the drive shaft 420 continues to rotate, driving the second half gear 480 to rotate. When the teeth of the second half gear 480 rotate to the lower side, the first half gear 450 idles, and the second half gear 480 meshes to drive the speed increasing gear set 540 to rotate. The speed increasing gear set 540 drives the air shaft 520 to rotate, the air shaft 520 drives the drive impeller 530 to rotate, and the drive impeller 530 drives the air flow to circulate, so that the air flow passes through the glue in the storage battery to promote the curing of the glue. When the air flow circulates inside the air duct 510, the filter plate 570 adsorbs and purifies the air flow to remove the odor in the air flow. After use, pull out the filter plate 570 to complete the replacement;
[0064] When the air flow circulates inside the air duct 510, it drives the driven impeller 380 to rotate. The driven impeller 380 drives the scraping drive bevel gear 390 to rotate through the scraping transmission shaft 370. The scraping drive bevel gear 390 meshes to drive the scraping driven bevel gear 360 to rotate. The scraping driven bevel gear 360 drives the screw rod 340 to rotate through the scraping shaft 350, and the glue adhering to the inner wall of the glue bucket 310 is scraped off by the screw rod 340 to prevent the glue from curing on the inner wall of the glue bucket 310.
[0065] Although the present invention has been described above with reference to the embodiments, various improvements can be made to it and its components can be replaced with equivalents without departing from the scope of the present invention. In particular, as long as there is no structural conflict, the various features in the embodiments disclosed in the present invention can be combined with each other in any way. The exhaustive description of these combinations is not given in this specification only for the sake of saving space and resources. Therefore, the present invention is not limited to the specific embodiments disclosed in the text, but includes all technical solutions falling within the scope of the claims.
Claims
1. A battery directional radiation heating glue sealing device, characterized in that: include: A glue injection platform (100) comprises a support platform (110) and a clamping seat (120) arranged on the top of the support platform (110); A heating support (200) is arranged on the support platform (110), the heating support (200) comprising a frame plate (210), a slide groove (220), a support plate (230) and a heating component (240), the frame plate (210) being provided with a slide groove (220), support plates (230) being arranged on both sides of the bottom of the frame plate (210), and heating components (240) being arranged on both sides of the bottom of the frame plate (210); A glue injection mechanism (300) is arranged on the frame plate (210), the glue injection mechanism (300) comprises a glue barrel (310), a glue discharge pipe (320) and a glue injection head (330), the glue barrel (310) is mounted on the frame plate (210), and the bottom of the side wall of the glue barrel (310) is connected to the glue injection head (330) via the glue discharge pipe (320); The rubber guiding mechanism (400) is arranged on the frame plate (210), and the rubber guiding mechanism (400) comprises a driving motor (410), a driving shaft (420), a reciprocating screw rod (430), a slider (440), a first half gear (450), a knocking gear (460) and a knocking component (470). The driving shaft (420) is arranged at the output end of the driving motor (410), the reciprocating screw rod (430) is arranged in the middle of the driving shaft (420), the slider (440) connected to the slide groove (220) is arranged on the reciprocating screw rod (430), the first half gear (450) is arranged at the left end of the driving shaft (420), the knocking gear (460) is rotatably connected to the support plate (230), the knocking gear (460) is meshed with the first half gear (450), and the knocking components (470) distributed evenly are arranged at the right end of the knocking gear (460).
2. A battery directional radiation heating glue sealing device according to claim 1, characterized in that: A fixed telephone auxiliary mechanism (500) is arranged at the bottom of the frame plate (210), and the fixed telephone auxiliary mechanism (500) comprises an air duct (510), an air shaft (520), a driving impeller (530) and a speed-increasing gear set (540). The air duct (510) is fixed at the bottom of the frame plate (210), and the right end of the air duct (510) is rotatably connected to the air shaft (520). The driving impeller (530) is arranged at one end of the air shaft (520) located inside the air duct (510), and the speed-increasing gear set (540) is arranged at one end of the air shaft (520) located outside the air duct (510). A second half gear (480) is arranged at the right end of the driving shaft (420), and the second half gear (480) is meshed with the speed-increasing gear set (540).
3. A battery directional radiation heating glue sealing device according to claim 2, characterized in that: The air duct (510) is provided with a purification box (550), the purification box (550) is provided with a cover plate (560), and a filter plate (570) is provided inside the purification box (550).
4. A battery directional radiation heating glue sealing device according to claim 2, characterized in that: The rubber barrel (310) is provided with a spiral rod (340) inside, the bottom of the spiral rod (340) is connected to a scraper shaft (350) extending into the air duct (510), the bottom of the scraper shaft (350) is provided with a scraper driven bevel gear (360), the air duct (510) is rotatably connected with a scraper transmission shaft (370), the air duct (510) is provided with a rotating bracket (371), the scraper transmission shaft (370) is rotatably connected to the rotating bracket (371), the right end of the scraper transmission shaft (370) is provided with a driven impeller (380), and the left end of the scraper transmission shaft (370) is provided with a scraper driving bevel gear (390) meshing with the scraper driven bevel gear (360).
5. The battery directional radiation heating glue sealing device according to claim 1, characterized in that: The clamping seat (120) comprises a fixing plate (121), a screw-in screw rod (122) and a clamping plate (123); the fixing plate (121) is fixed on both sides of the top of the support platform (110); a screw-in screw rod (122) is arranged on the right side of the fixing plate (121); the left end of the screw-in screw rod (122) is rotatably connected to the clamping plate (123).
6. The battery directional radiation heating glue sealing device according to claim 1, characterized in that: The knocking component (470) comprises a bent rod (471), a telescopic rod (472) and a knocking ball (473); one end of the bent rod (471) is fixed on the knocking gear (460); the other end of the bent rod (471) is provided with a telescopic rod (472); and the knocking ball (473) is provided at the end of the telescopic rod (472).
7. A battery directional radiation heating glue sealing device according to claim 2, characterized in that: The right end of the air duct (510) has an oblique opening, and a fixed tooth plate (511) is arranged inside the oblique opening at the right end of the air duct (510).
8. The battery directional radiation heating glue sealing device according to claim 2, characterized in that: The speed-increasing gear set (540) comprises a speed-increasing shaft (541), a speed-increasing pinion (542), a speed-increasing large gear (543) and a wind shaft gear (544); the speed-increasing shaft (541) is rotatably connected to the right support plate (230); a speed-increasing pinion (542) meshing with the second half gear (480) is arranged at the right end of the speed-increasing shaft (541); a speed-increasing large gear (543) is arranged at the left end of the speed-increasing shaft (541); a wind shaft gear (544) is arranged at the right end of the wind shaft (520); and the wind shaft gear (544) meshes with the speed-increasing large gear (543).
9. The battery directional radiation heating glue sealing device according to claim 2, characterized in that: The tooth distribution positions of the first half gear (450) and the second half gear (480) are opposite.
10. The battery directional radiation heating glue sealing device according to claim 1, characterized in that: The glue discharge pipeline (320) is a hose, and the glue injection head (330) is plugged into the slider (440).