Battery holder rubber sheet extrusion device
Through the design of stable traction and cold plastic device, the directional deviation and deformation problems of rubber sheets during processing are solved, stable traction and uniform cooling of battery holder rubber sheets are achieved, and processing efficiency and product quality are improved.
Patent Information
- Application Number
- CN202510903740.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2025-09-26
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the processing of the existing battery seat rubber sheet extrusion device, the smelted rubber colloid is prone to direction deviation, resulting in unstable processing.
A stable traction device and an anti-skew device are used, and the track wheels and traction tracks are driven by a servo motor. In combination with components such as notch blocks, translation plates, elastic telescopic rods and anti-stick scrapers, the stable traction of the rubber colloid is ensured. At the same time, a cold plastic device is used to initially cool the rubber through friction wheels and a double-split spray gun.
It effectively avoids the directional deviation and extreme deformation of the rubber colloid during the processing, ensures the stable extrusion and uniform cooling of the rubber sheet, and improves the stability and quality of the processing.
Smart Images

Figure CN120697294A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of rubber production, in particular to a battery seat rubber sheet extrusion device. Background Art
[0002] Extrusion is one of the most commonly used manufacturing methods in rubber processing, and is particularly suitable for producing rubber products with long strips, thin sheets, or complex cross-sectional shapes. The extrusion process deforms the rubber material through heat and pressure, and then forms it into the desired shape through a mold. For battery holder rubber sheets, precise dimensional control, uniform material distribution, and good surface smoothness are key requirements in the extrusion process. The rubber raw materials are mixed with additives (such as plasticizers, fillers, vulcanizers, etc.) and plasticized to make the rubber soft and easy to process. The mixed rubber material is passed through an extruder, heated and pressurized, and then extruded through a mold into the desired shape, usually in the form of sheets or strips. The extruded rubber sheet is rapidly cooled by cooling equipment and solidified through a vulcanization process to give it its final physical and chemical properties.
[0003] A Chinese patent with patent announcement number CN219446068U discloses a battery seat rubber sheet extrusion device, including a frame; the frame: an extrusion tube is provided at its upper end, a support seat is provided at the left end of the extrusion tube, the middle part of the support seat is rotatably connected to a drive shaft through a bearing, a screw is provided at the left end of the drive shaft, the screw is located inside the extrusion tube, a heating tube is provided at the right end of the drive shaft, the heating tube is located inside the screw cavity, and a heating ring is provided at the middle fixed sleeve of the outer arc surface of the extrusion tube; wherein: it also includes a PLC controller, the PLC controller is arranged at the front end of the frame, the input end of the heating ring is electrically connected to the output end of the PLC controller, the input end of the heating tube is connected to the output end of the PLC controller through a collector ring, and the input end of the PLC controller is electrically connected to an external power supply. During the process of extruding rubber, the patent can heat the rubber from both the inside and the outside at the same time, and the good heating uniformity ensures the extrusion quality of the rubber.
[0004] However, the current construction tools have the following problems: the rubber colloid after melting is unstable, which makes it very easy to deviate in direction during the processing and traction process. Therefore, we propose a battery seat rubber sheet extrusion device. Summary of the Invention
[0005] In view of the shortcomings of the prior art, the present invention provides a battery holder rubber sheet extrusion device, which solves the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a battery seat rubber sheet extrusion device, including a main body table, the top of the main body table is fixedly connected to a smelting chamber, the side of the smelting chamber is fixedly connected to a stirring roller body, the end of the stirring roller body away from the smelting chamber is fixedly connected to a conveying pipe body, the end of the conveying pipe body away from the stirring roller body is fixedly connected to a discharge lining, a stabilizing traction device is provided on the side of the main body table, and the stabilizing traction device includes a support frame, the side of the support frame is fixedly connected to the side of the main body table, four crawler wheels are rotatably connected to the inner wall of the support frame, and two of them are grouped together, and each group of two crawler wheels is transmission-connected with a traction crawler, and the two servo motors The side surfaces are fixedly connected to the side surfaces of the support frame, and one of the track wheels in each group is driven by a servo motor, and the side surfaces of the servo motor are fixedly connected to the side surfaces of the support frame, and the side surfaces of the two traction crawlers are fixedly connected with a notch soft belt, and the outer walls of the two traction crawlers are slidably connected with traction splints, and the outer walls of the two traction splints close to the traction crawlers are fixedly connected with anti-sticking scrapers, and the side surfaces of the traction splints are fixedly connected with elastic telescopic rods, and the telescopic ends of the elastic telescopic rods are fixedly connected with translation plates, and the side of the translation plate close to the notch soft belt is fixed with a notch block, and the side of the translation plate away from the elastic telescopic rod is fixedly connected with a side pressure rod, and the top of the support frame and the top of the inner wall are both provided with limiting components. The staff starts two servo motors through an external controller. The output shafts of the two servo motors respectively drive one of the two sets of track wheels to rotate towards each other. The rotation of the two sets of track wheels drives the two traction tracks to rotate towards each other. The two traction tracks rotate towards each other and drive the slot soft belt to rotate. The rotation of the slot soft belt drives the slot block to rotate. The rotation of the slot block drives the translation plate to rotate. The rotation of the translation plate drives the elastic telescopic rod to rotate. The rotation of the elastic telescopic rod drives the traction splint to rotate, so that the traction splint rotates with the traction track and clamps the extruded molten rubber.
[0007] The limiting assembly includes two vertical frames, the two vertical frames are respectively fixedly connected to the top of the support frame and the top of the inner wall, and the inner walls of the two vertical frames are fixedly connected to a vertical elastic telescopic rod, the telescopic end of the vertical elastic telescopic rod is fixedly connected to a limiting magnetic column, and the side of the limiting magnetic column away from the vertical elastic telescopic rod is fixedly connected to the limiting rod. When the translation plate drives the side pressure rod to move and contacts the limiting rod, the limiting rod applies a lateral force to the inclined surface of the side pressure rod, so that the side pressure rod moves in the direction away from the notch soft belt under the limiting force of the elastic telescopic rod after being compressed. The movement of the elastic telescopic rod in the direction away from the notch soft belt causes the translation plate to drive the notch block to move in the direction away from the notch soft belt, so that the notch soft belt no longer has a chain structure with the traction splint.
[0008] The top of the side pressure rod is arranged as an inclined surface, and the notch of the notch soft belt is located on the movement track of the notch clamping block.
[0009] The arc surface of the limiting rod is located on the movement track of the inclined surface of the side pressure rod, and the outer wall of the limiting magnetic column is located on the movement track of the traction splint.
[0010] The cam is fixedly mounted on the support frame, and the cam is installed on the support frame to prevent the cam from sliding back and forth, thereby the cam is installed in a forward direction and a reverse direction. The cam is pressed against the piston rod and the piston rod is pressed against the piston rod, and the piston rod moves in a direction away from the piston rod, and the piston rod moves in a direction away from the piston rod, and the piston rod moves in a direction away from the piston rod, and the piston rod moves in a direction away from the piston rod, and the piston rod moves in a direction away from the piston rod, and the piston rod moves in a direction away from the piston rod, and the piston rod moves in a direction away from the piston rod.
[0011] The inner diameter of the semicircular groove of the ring push buckle plate is equal to the inner diameter of the discharge lining port, and the pressure block is located on the movement trajectory of the extrusion protrusion. The rotation of the track wheel drives the linkage track to rotate, the rotation of the linkage track drives the rotation of the rotating column, the rotation of the rotating column drives the rotation of the three-pronged connecting rod, and the rotation of the three-pronged connecting rod drives the extrusion protrusion to rotate, so that the extrusion protrusion applies an extrusion force to the pressure block during the rotation process. When the pressure block is compressed, it moves in a direction away from the three-pronged connecting rod. The movement of the pressure block in the direction away from the three-pronged connecting rod drives the cross-sliding column in the direction away from the three-pronged connecting rod. The movement of the cross-sliding column in the direction away from the three-pronged connecting rod drives the ring push buckle plate in the direction away from the three-pronged connecting rod, and drives the convex material receiving ring in the direction away from the three-pronged connecting rod. When the extrusion protrusion passes the pressure block, the pressure block is no longer subjected to the force of the extrusion protrusion. At this time, the cross-sliding column is elastically acted upon by the return spring and returns to its original position, and this cycle repeats.
[0012] A cold plastic device is provided on the side of the support frame, and the cold plastic device includes a water tank, the side of the water tank is fixedly connected to the side of the support frame, the side of the water tank away from the support frame is fixedly connected to a booster water pump, the top of the water tank is fixedly connected to a water pipe, the top of the support frame is fixedly connected to a support rod, the inner wall of the support rod is rotatably connected to a water pipe column, one end of the water pipe away from the water tank is rotatably connected to the side of the water pipe column close to the water tank, the side of the water pipe column away from the water pipe is fixedly connected to a double-split spray gun, and the notch is soft. The rotation of the belt causes the friction wheel to rotate, and the rotation of the friction wheel drives the water pipe column to rotate, and the rotation of the water pipe column drives the double-branch spray gun to rotate. At this time, the staff turns on the booster water pump, so that the cooling water in the water tank enters the water pipe from the water pipe, and is then sprayed out through the double-branch spray gun. A friction wheel is fixedly connected to the outer wall of the water pipe column, so that the double-branch spray gun sprays the surface of the two traction tracks when rotating, and preliminarily cools the molten rubber colloid to avoid extreme deformation of the rubber due to extrusion and traction during the traction process. Intermittent spraying can ensure uniform cooling of the rubber.
[0013] The outer wall of the friction wheel and the outer wall of the slot soft belt are both rough surfaces. The outer wall of the friction wheel contacts the outer wall of the slot soft belt. The rotation of the slot soft belt causes the friction wheel to rotate. The rotation of the friction wheel drives the water pipe column to rotate. The rotation of the water pipe column drives the double-branch spray gun to rotate. At this time, the staff turns on the booster water pump, so that the cooling water in the water tank enters the water pipe column through the water pipe, and then is sprayed out through the double-branch spray gun, so that the double-branch spray gun sprays the surfaces of the two traction tracks when it rotates.
[0014] The present invention provides a battery holder rubber sheet extrusion device, which has the following beneficial effects: (1) The present invention uses the setting of the traction device to make the support frame, crawler wheel, traction crawler and servo motor cooperate with each other. The staff starts the two servo motors through the external controller. The output shafts of the two servo motors respectively drive one of the two sets of crawler wheels to rotate in opposite directions. The rotation of the two sets of crawler wheels drives the two traction crawlers to rotate in opposite directions. The two traction crawlers rotate in opposite directions and drive the slot soft belt to rotate. The rotation of the slot soft belt drives the slot block to rotate. The rotation of the slot block drives the translation plate to rotate. The rotation of the translation plate drives the elastic telescopic rod to rotate. The rotation of the elastic telescopic rod drives the traction splint to rotate, so that the traction splint follows the rotation of the traction crawler and clamps the extruded molten rubber, so that it can stably pull the smelted rubber colloid and avoid the colloid from shifting in direction during the processing and traction process. At the same time, through the slot soft belt and traction The cooperation of the splint, anti-sticking scraper, elastic telescopic rod, translation plate, slot block, side pressure rod, vertical frame, vertical elastic telescopic rod, limiting magnetic column and limiting rod, and then when the translation plate drives the side pressure rod to move and contacts the limiting rod, the limiting rod applies a lateral force to the inclined surface of the side pressure rod, so that the side pressure rod moves in the direction away from the slot soft belt under the limiting force of the elastic telescopic rod after being compressed. The elastic telescopic rod moves in the direction away from the slot soft belt, so that the translation plate drives the slot block to move in the direction away from the slot soft belt, so that the slot soft belt no longer has a chain structure with the traction splint, so that when the position of the traction splint is restricted, it does not affect the basic operation of the traction crawler. At this time, the position of the traction splint is fixed, so that the position of the anti-sticking scraper is limited, so that the anti-sticking scraper can block and scrape off the rubber attachments on the surface of the traction crawler.
[0015] (2) The present invention uses the anti-skewing device to make the fixed plate, the rotating column, the linkage track, the three-pronged connecting rod, the extrusion protrusion, the cross-sliding column, the pressure block, the ring push buckle plate, and the reset spring cooperate with each other, so that the rotation of the track wheel drives the linkage track to rotate, the rotation of the linkage track drives the rotating column to rotate, the rotation of the rotating column drives the three-pronged connecting rod to rotate, and the rotation of the three-pronged connecting rod drives the extrusion protrusion to rotate, so that the extrusion protrusion applies an extrusion force to the pressure block during the rotation process. When the pressure block is compressed, it moves in the direction away from the three-pronged connecting rod, and the pressure block moves in the direction away from the three-pronged connecting rod. The cam is pressed against the spring which in turn pushes the spring back into position so that the cam is in a position to push the rubber out of the way and the cam is in a position to push the cam back into position so that the cam is in a position to push the cam out of the way and the cam is in a position to push the cam into the centre so that the cam is in a position to push the cam
[0016] (3) The present invention uses the cold plastic device to coordinate with the water tank, the booster pump, the water pipe, the support rod, the water pipe column, and the double-spray gun, so that the slotted soft belt rotates to rotate the friction wheel, and the friction wheel rotates to drive the water pipe column to rotate, and the water pipe column rotates to drive the double-spray gun to rotate. At this time, the staff turns on the booster pump, so that the cooling water in the water tank enters the water pipe column through the water pipe, and then is sprayed out through the double-spray gun, so that the double-spray gun sprays the surface of the two traction tracks when rotating. At the same time, the friction wheel and the double-spray gun coordinate with each other, so that the double-spray gun sprays the surface of the two traction tracks when rotating, and preliminarily cools the molten rubber colloid to avoid extreme deformation of the rubber due to extrusion and traction during the traction process. Intermittent spraying can ensure uniform cooling of the rubber. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 A schematic diagram of the present invention as a whole; Figure 2 This is a schematic structural diagram of the traction splint of the present invention; Figure 3 For the present invention Figure 2 A schematic diagram of the structure at center A; Figure 4 It is a structural schematic diagram of the support frame of the present invention; Figure 5 This is a structural diagram of the ring push buckle plate of the present invention; Figure 6 For the present invention Figure 5 Schematic diagram of the enlarged structure at B in the middle; Figure 7 It is a schematic diagram of the structure of the water storage tank of the present invention; Figure 8 For the present invention Figure 7 Schematic diagram of the enlarged structure at point C in the middle.
[0018] In the figure: 1, main platform; 2, smelting chamber; 3, stirring roller; 4, conveying pipe; 5, discharge lining; 6, traction device; 61, support frame; 62, crawler wheel; 63, traction crawler; 64, servo motor; 65, notch soft belt; 66, traction splint; 67, anti-sticking scraper; 68, elastic telescopic rod; 69, translation plate; 610, notch block; 611, side pressure rod; 612, vertical frame; 613, vertical elastic telescopic rod; 614, Limiting magnetic column; 615, limiting rod; 7, anti-skew device; 71, fixed plate; 72, rotating column; 73, linked crawler; 74, three-pronged connecting rod; 75, extrusion cam; 76, horizontal sliding column; 77, pressure block; 78, ring push plate; 79, return spring; 710, convex material receiving ring; 8, cold plastic device; 81, water tank; 82, booster pump; 83, water pipe; 84, support rod; 85, water pipe column; 86, double-split spray gun; 87, friction wheel. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0020] See also Figures 1-8 , one embodiment of the present invention is: a battery seat rubber sheet extrusion device, including a main table 1, the top of the main table 1 is fixedly connected to the smelting chamber 2, the side of the smelting chamber 2 is fixedly connected to the stirring roller body 3, the end of the stirring roller body 3 away from the smelting chamber 2 is fixedly connected to the conveying pipe body 4, the end of the conveying pipe body 4 away from the stirring roller body 3 is fixedly connected to the discharge lining 5, and a stable traction device 6 is provided on the side of the main table 1. The stable traction device 6 includes a support frame 61, the side of the support frame 61 is fixedly connected to the side of the main table 1, and four crawler wheels 62 are rotatably connected to the inner wall of the support frame 61, and two are grouped together. A traction crawler 63 is transmission-connected between the two crawler wheels 62 in each group, and the sides of the two servo motors 64 are fixedly connected to the side of the support frame 61, and one of the crawler wheels 62 in each group is driven by the servo motor The machine 64 is driven, and the side of the servo motor 64 is fixedly connected to the side of the support frame 61. The sides of the two traction crawlers 63 are fixedly connected with the notched soft belts 65. The outer walls of the two traction crawlers 63 are slidably connected with traction splints 66. The outer walls of the two traction splints 66 close to the traction crawler 63 are fixedly connected with anti-sticking scrapers 67. The sides of the traction splints 66 are fixedly connected with elastic telescopic rods 68. The telescopic ends of the elastic telescopic rods 68 are fixedly connected with translation plates 69. The side of the translation plate 69 close to the notched soft belt 65 is fixed with a notched block 610. The side of the translation plate 69 away from the elastic telescopic rod 68 is fixedly connected with a side pressure rod 611. The top and the top of the inner wall of the support frame 61 are both provided with limiting components. The elastic telescopic rod 68 consists of a fixed rod, a telescopic rod, and an elastic member installed between the fixed rod and the telescopic rod. The limiting assembly includes two vertical frames 612, which are respectively fixedly connected to the top and the top of the inner wall of the support frame 61. The inner walls of the two vertical frames 612 are fixedly connected to vertical elastic telescopic rods 613. The telescopic ends of the vertical elastic telescopic rods 613 are fixedly connected to limiting magnetic columns 614. The side of the limiting magnetic column 614 away from the vertical elastic telescopic rod 613 is fixedly connected to a limiting rod 615. The top of the side pressure rod 611 is set as an inclined surface. The notch of the notch soft belt 65 is located on the movement track of the notch block 610. The setting of the inclined surface can ensure its better real-time operation. The arc surface of the limiting rod 615 is located on the motion track of the inclined surface of the side pressure rod 611, and the outer wall of the limiting magnetic column 614 is located on the motion track of the traction splint 66, ensuring the basic operation between the components; An anti-tilt device 7 is provided on the outer wall of the support frame 61. The anti-tilt device 7 includes a fixing plate 71. The side of the fixing plate 71 is fixedly connected to the outer wall of the support frame 61. A rotating column 72 is passed through the side of the fixing plate 71 and rotatably installed. A linkage track 73 is transmission-connected between the rotating column 72 and the track wheel 62. A three-pronged connecting rod 74 is fixedly connected to the side of the rotating column 72 away from the linkage track 73. An extrusion protrusion is fixedly connected to the side of the three-pronged connecting rod 74 close to the rotating column 72. 75, a horizontal sliding column 76 is slidably installed on the side of the fixed plate 71, and a pressure block 77 is fixedly connected to the side of the horizontal sliding column 76 close to the three-pronged connecting rod 74. A ring push plate 78 is fixedly connected to the side of the horizontal sliding column 76 away from the pressure block 77. A return spring 79 is provided between the ring push plate 78 and the fixed plate 71. A convex material receiving ring 710 is fixedly connected to the side of the ring push plate 78 away from the discharge lining 5. The inner diameter of the convex material receiving ring 710 is equal to that of the ring push plate 78; The inner diameter of the semicircular groove of the ring push buckle plate 78 is equal to the inner diameter of the discharge lining 5, and the pressure block 77 is located on the movement trajectory of the extrusion protrusion 75 to ensure that the extruded rubber will not be excessively squeezed; During use, the staff puts the solid rubber into the melting chamber 2 and starts the melting chamber 2, and then the staff starts the stirring roller 3 through the external controller. After the stirring roller 3 is fully stirred, the solid rubber is melted more fully, and then the internal stroke mechanism of the device transmits the smelted rubber through the conveying pipe 4 to the discharge lining 5, and finally the smelted rubber is squeezed out by the discharge lining 5. When the work starts, the staff starts the two servo motors 64 through the external controller, and the output shafts of the two servo motors 64 respectively drive one of the two sets of track wheels 62 to rotate in opposite directions, and the rotation of the two sets of track wheels 62 drives the two traction crawlers 63 to rotate in opposite directions, and the two traction crawlers 63 rotate in opposite directions and drive the notch soft belt 65 to rotate, the notch soft belt 65 rotates and drives the notch block 610 to rotate, the notch block 610 rotates and drives the translation plate 69 to rotate, the translation plate 69 rotates and drives the elastic telescopic rod 68 to rotate, and the elastic telescopic rod 68 rotates and drives the traction splint 66 to rotate. The traction splint 66 rotates with the traction track 63 and clamps the extruded molten rubber, so that it can stably traction the smelted rubber colloid and prevent the colloid from directional deviation during the processing and traction process; then, when the translation plate 69 drives the side pressure rod 611 to move and contact the limiting rod 615, the limiting rod 615 exerts a lateral force on the inclined surface of the side pressure rod 611, so that the side pressure rod 611 is compressed and moves in the direction away from the slot soft belt 65 under the limiting force of the elastic telescopic rod 68. The elastic telescopic rod 68 moves in the direction away from the slot soft belt 65, so that the translation plate 69 drives the slot clamping block 610 to move in the direction away from the slot soft belt 65, so that the slot soft belt 65 no longer has a chain structure with the traction splint 66, so that when the position of the traction splint 66 is restricted, the basic operation of the traction track 63 is not affected. At this time, the position of the traction splint 66 is fixed, so that the position of the anti-sticking scraper 67 is limited, so that the anti-sticking scraper 67 can block and scrape off the rubber attachments on the surface of the traction track 63.
[0021] The rotation of the track wheel 62 drives the linkage track 73 to rotate, the rotation of the linkage track 73 drives the rotating column 72 to rotate, the rotation of the rotating column 72 drives the three-pronged connecting rod 74 to rotate, the rotation of the three-pronged connecting rod 74 drives the extrusion protrusion 75 to rotate, so that the extrusion protrusion 75 applies an extrusion force to the pressure block 77 during the rotation process. When the pressure block 77 is compressed, it moves in the direction away from the three-pronged connecting rod 74. The pressure block 77 moves in the direction away from the three-pronged connecting rod 74, driving the cross-sliding column 76 to move in the direction away from the three-pronged connecting rod 74. The cross-sliding column 76 moves in the direction away from the three-pronged connecting rod 74, driving the ring push buckle plate 78 to move in the direction away from the three-pronged connecting rod 74, driving the protrusion The closing ring 710 moves in the direction away from the three-pronged connecting rod 74. When the extrusion protrusion 75 moves past the pressure block 77, the pressure block 77 is no longer subjected to the force of the extrusion protrusion 75. At this time, the cross slide column 76 is elastically acted upon by the return spring 79 and returns to its original position. In this way, the extruded colloid is pushed to the center, so that the ring push buckle plate 78 repeatedly centers the molten rubber colloid extruded from the discharge lining 5, thereby preventing the molten rubber colloid from being scraped by the wall of the discharge lining 5 due to directional deviation during the extrusion process. At the same time, the convex material closing ring 710 can stably and smoothly extrude the molten rubber colloid into the traction device 6; See also Figures 1-8 On the basis of the above embodiment, in another embodiment of the present invention, a cold plastic device 8 is provided on the side of the support frame 61, and the cold plastic device 8 includes a water tank 81, the side of the water tank 81 is fixedly connected to the side of the support frame 61, the side of the water tank 81 away from the support frame 61 is fixedly connected to a booster water pump 82, the top of the water tank 81 is fixedly connected to a water pipe 83, the top of the support frame 61 is fixedly connected to a support rod 84, the inner wall of the support rod 84 is rotatably connected to a water pipe column 85, one end of the water pipe 83 away from the water tank 81 is rotatably connected to the side of the water pipe column 85 close to the water tank 81, the side of the water pipe column 85 away from the water pipe 83 is fixedly connected to a dual-spray gun 86, the outer wall of the water pipe column 85 is fixedly connected to a friction wheel 87, and a gap is provided between the nozzle of the dual-spray gun 86 and the two traction crawlers 63; The outer wall of the friction wheel 87 and the outer wall of the notch soft belt 65 are both rough surfaces. The rough surface can increase the friction between the components. The outer wall of the friction wheel 87 contacts the outer wall of the notch soft belt 65. The necessary contact ensures the stable operation of the device. During use, the rotation of the slotted soft belt 65 causes the friction wheel 87 to rotate, and the rotation of the friction wheel 87 drives the water pipe column 85 to rotate, and the rotation of the water pipe column 85 drives the double-branch spray gun 86 to rotate. At this time, the staff turns on the booster water pump 82, so that the cooling water in the water tank 81 enters the water pipe 85 through the water pipe 83, and is then sprayed out through the double-branch spray gun 86, so that the double-branch spray gun 86 sprays the surface of the two traction crawlers 63 when rotating, and preliminarily cools the molten rubber colloid to avoid extreme deformation of the rubber due to extrusion and traction during the traction process. Intermittent spraying can ensure uniform cooling of the rubber.
[0022] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A battery seat rubber sheet extrusion device, comprising a main body (1), the top of the main body (1) is fixedly connected to a smelting chamber (2), the side of the smelting chamber (2) is fixedly connected to a stirring roller (3), the end of the stirring roller (3) away from the smelting chamber (2) is fixedly connected to a conveying pipe (4), and the end of the conveying pipe (4) away from the stirring roller (3) is fixedly connected to a discharge lining (5), characterized in that: The side of the main platform (1) is provided with a stabilizing traction device (6), and the stabilizing traction device (6) includes a support frame (61), the side of the support frame (61) is fixedly connected to the side of the main platform (1), and four crawler wheels (62) are rotatably connected to the inner wall of the support frame (61) and are arranged in groups of two. A traction crawler (63) is transmission-connected between the two crawler wheels (62) in each group, and the sides of the two servo motors (64) are fixedly connected to the side of the support frame (61). One of the crawler wheels (62) in each group is driven by the servo motor (64), and the side of the servo motor (64) is fixedly connected to the side of the support frame (61). The sides of the two traction crawlers (63) are Both are fixedly connected with a notch soft belt (65), and the outer walls of the two traction crawlers (63) are slidably connected with a traction splint (66), and the outer walls of the two traction splints (66) close to the traction crawler (63) are fixedly connected with an anti-sticking scraper (67), and the side of the traction splint (66) is fixedly connected with an elastic telescopic rod (68), and the telescopic end of the elastic telescopic rod (68) is fixedly connected with a translation plate (69), and a notch block (610) is fixed on the side of the translation plate (69) close to the notch soft belt (65), and a side pressure rod (611) is fixedly connected on the side of the translation plate (69) away from the elastic telescopic rod (68), and a limiting component is provided on the top of the support frame (61) and the top of the inner wall.
2. The battery holder rubber sheet extrusion device according to claim 1, characterized in that: The limiting component comprises two vertical frames (612), the two vertical frames (612) being fixedly connected to the top and the top of the inner wall of the support frame (61), respectively; a vertical elastic telescopic rod (613) being fixedly connected to the inner walls of the two vertical frames (612); a telescopic end of the vertical elastic telescopic rod (613) being fixedly connected to a limiting magnetic column (614); and a side of the limiting magnetic column (614) away from the vertical elastic telescopic rod (613) being fixedly connected to a limiting rod (615).
3. The battery holder rubber sheet extrusion device according to claim 1, characterized in that: The top of the side pressure rod (611) is arranged as an inclined surface, and the notch of the notch soft belt (65) is located on the movement track of the notch clamping block (610).
4. The battery holder rubber sheet extrusion device according to claim 2, characterized in that: The arc surface of the limiting rod (615) is located on the motion track of the inclined surface of the side pressure rod (611), and the outer wall of the limiting magnetic column (614) is located on the motion track of the traction splint (66).
5. The battery holder rubber sheet extrusion device according to claim 1, characterized in that: An anti-slant device (7) is provided on the outer wall of the support frame (61), and the anti-slant device (7) includes a fixed plate (71), the side of the fixed plate (71) is fixedly connected to the outer wall of the support frame (61), and a rotating column (72) is passed through and rotatably installed on the side of the fixed plate (71), and a linkage crawler (73) is transmission-connected between the rotating column (72) and the track wheel (62), and a three-pronged connecting rod (74) is fixedly connected to the side of the rotating column (72) away from the linkage crawler (73), and the three-pronged connecting rod (74) is close to the rotating column (7 2) is fixedly connected to one side of the extrusion protrusion (75), a side of the fixed plate (71) is penetrated and slidably installed with a horizontal sliding column (76), a side of the horizontal sliding column (76) close to the three-pronged connecting rod (74) is fixedly connected to a pressure block (77), a side of the horizontal sliding column (76) away from the pressure block (77) is fixedly connected to a ring push buckle plate (78), a return spring (79) is provided between the ring push buckle plate (78) and the fixed plate (71), and a side of the ring push buckle plate (78) away from the discharge lining (5) is fixedly connected to a convex material receiving ring (710).
6. The battery holder rubber sheet extrusion device according to claim 5, characterized in that: The inner diameter of the semicircular groove of the ring push buckle plate (78) is equal to the inner diameter of the discharge lining opening (5), and the pressure block (77) is located on the movement trajectory of the extrusion convex block (75).
7. The battery holder rubber sheet extrusion device according to claim 1, characterized in that: A cold plastic device (8) is provided on the side of the support frame (61), and the cold plastic device (8) includes a water tank (81), the side of the water tank (81) is fixedly connected to the side of the support frame (61), the side of the water tank (81) away from the support frame (61) is fixedly connected to a booster water pump (82), the top of the water tank (81) is fixedly connected to a water pipe (83), the top of the support frame (61) is fixedly connected to a support rod (84), the inner wall of the support rod (84) is rotatably connected to a water pipe column (85), one end of the water pipe (83) away from the water tank (81) is rotatably connected to the side of the water pipe column (85) close to the water tank (81), the side of the water pipe column (85) away from the water pipe (83) is fixedly connected to a double-split spray gun (86), and the outer wall of the water pipe column (85) is fixedly connected to a friction wheel (87).
8. The battery holder rubber sheet extrusion device according to claim 7, characterized in that: The outer wall of the friction wheel (87) and the outer wall of the notch soft belt (65) are both provided with rough surfaces, and the outer wall of the friction wheel (87) is in contact with the outer wall of the notch soft belt (65).
Citation Information
Patent Citations
Novel rubber extrusion device
CN219446068U