A welding device for a rubber sheet processing configuration
By designing a welding equipment combining servo motors, transmission rods and heating plates, the problem of poor welding quality of rubber plates in the prior art is solved, and high-quality welding effect and stability are achieved.
Patent Information
- Application Number
- CN202411555746.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2044-11-04
AI Technical Summary
Existing rubber plate welding technology is difficult to ensure welding quality, especially when welding thicker rubber plates, the heat is difficult to penetrate deep, resulting in poor welding effect and poor connection stability.
A welding equipment for processing and configuration of rubber plates is designed. Through the cooperation of the lower welding component group and the upper welding component group, a servo motor, transmission rod, extrusion wheel and heating plate are used to achieve uniform heating and precise compression of the joint position of the rubber plate.
The equipment can evenly penetrate heat into the deep layer of the rubber plate, realize the simultaneous melting of the interior and surface, improve welding quality and stability, avoid misalignment problems caused by manual pressure, and ensure the flatness and appearance quality of the welding interface.
Smart Images

Figure CN119116379B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rubber sheet processing, and in particular to a welding device for rubber sheet processing configuration. Background Art
[0002] A rubber sheet is a flat sheet made of rubber material, having a certain thickness and elasticity, and is widely used in multiple fields such as industry, construction, machinery, chemical industry and household. During the production process, a single rubber sheet cannot meet various size and shape requirements, so multiple rubber sheets will be welded together to form the required specifications.
[0003] Currently, two welding methods for rubber sheets are commonly used. First, the connecting positions of two rubber sheets are fitted together, and then a welding device such as a hot air gun or a hot plate welding machine is used to melt the joint positions of the two rubber sheets from the outside. The melted parts will penetrate and combine with each other, thus completing the connection of the two rubber sheets. This welding method has the following problems. Due to the poor thermal conductivity of rubber, it is not easy to conduct the heat absorbed on the surface to deeper parts. Therefore, when a hot air gun or a hot plate welding machine heats a relatively thick rubber sheet, only the surface part of the rubber is quickly heated and melted, and the heat is difficult to penetrate into the inner layer of the rubber sheet. This will cause only the surface layer materials to melt and combine during welding, and the deep-layer materials cannot participate in welding. Only the surface layer at the joint can be melted and connected together, resulting in a poor welding effect and very poor connection stability of the two welded rubber sheets.
[0004] The second welding method is to use a high-temperature heating plate to preheat the cross-sections to be connected of two rubber sheets in advance. After the cross-sections are melted, pressure is applied to make the melted positions of the two rubber sheets contact each other to complete the welding of the two rubber sheets. This welding method can completely melt the interface positions of relatively thick rubber sheets. However, during splicing, since the melted rubber material is soft and easy to deform, when manual pressure is applied, even a slight deviation will cause the contact interface to be misaligned, warped or sunken. This will lead to an uneven welding interface, affecting the connection strength, and the thickness of the melted and connected positions at the joint is uneven, forming a bumpy welding interface. While affecting the overall strength of the joint, it also affects the appearance quality after welding, which is not conducive to the sales of the finished rubber sheet after splicing. Currently, two mechanical clamps are used to clamp a rubber sheet to be spliced respectively. During splicing, by controlling the two clamps to approach each other, the purpose of splicing the melted rubber sheets is achieved. However, during the splicing process of the clamps, the melted cross-section of the rubber sheet will be directly exposed to the air, and there will be a phenomenon of inconsistent heat loss, resulting in partial cooling of some parts in the joint area before splicing, making the welding interface unable to fully fuse and affecting the connection strength. Summary of the Invention
[0005] In order to overcome the above technical problems, the object of the present invention is to provide a welding device for rubber plate processing configuration, so as to solve the problem that the current welding of rubber plates cannot guarantee the welding quality proposed in the above background technology.
[0006] To achieve the above object, the present invention provides the following technical solution: A welding device for rubber plate processing configuration, including a rubber plate component group, the rubber plate component group includes rubber plate one and rubber plate two, an upper welding component group and a lower welding component group are arranged outside the rubber plate component group, the upper welding component group and the lower welding component group cooperate to weld rubber plate one and rubber plate two, the lower welding component group includes a lower servo motor, the working end of the lower servo motor is connected with a transmission rod one, one end of the transmission rod one is connected with a lower extrusion wheel component, an auxiliary wheel one is arranged outside the lower extrusion wheel component, a lower main frame and a lower guide wheel are arranged on the top of the lower servo motor, a lower positioning roller is arranged on the top of the lower main frame, a front core block and a rear core block are arranged inside the lower main frame, and a guide slide bar is arranged on the side of the lower main frame; the upper welding component group includes an upper servo motor, the working end of the upper servo motor is connected with a transmission rod two, the transmission rod two is connected with a worm one and a worm two through a through hole, a turbine one and a gear one are arranged outside the worm one, the gear one meshes with a toothed ring component, a moving wheel component is connected to the side of the toothed ring component, an auxiliary wheel two is arranged outside the moving wheel component, an upper guide wheel is arranged on the side of the side auxiliary frame, a central main frame is arranged outside the worm two, the worm two meshes with a worm gear two, a worm three is connected to the side of the worm gear two, the worm three meshes with a worm gear three, a cross shaft component is connected to the side of the worm gear three, one end of the cross shaft component is connected with an upper extrusion wheel component, an auxiliary wheel two is connected to the outside of the upper extrusion wheel component, a heating plate component is connected to the bottom of the central main frame, a triangular plate component is arranged on the side of the heating plate component, a front vertical frame, a front threaded rod, a rear vertical frame and a rear threaded rod are arranged outside the heating plate component, and an upper positioning roller is connected to the bottom of the central main frame; a support table component group is arranged outside the lower welding component group, the support table component group includes a welding table top, the bottom of the welding table top is connected with support legs, and a guide groove body is arranged inside the welding table top.
[0007] Preferably: The lower servo motor, the transmission rod one, the lower extrusion wheel component and the guide slide bar are all provided with two, and the two lower servo motors, transmission rod one, lower extrusion wheel component and guide slide bar are symmetrically distributed on both sides of the lower main frame. The lower servo motor is connected to the lower main frame at the top through a mounting frame, the transmission rod one is connected to the lower main frame through a bearing, a plurality of auxiliary wheels one are provided, and the plurality of auxiliary wheels one are rotatably connected to the lower extrusion wheel component. The auxiliary wheel one is used to contact the bottoms of rubber plate one and rubber plate two.
[0008] Preferably, the guiding slide bar is connected to the lower main frame through a bracket, the front core block and the rear core block are connected to the lower main frame, the lower positioning roller is connected to the top of the lower main frame through a bracket, the lower positioning roller is used to contact the bottoms of the first rubber plate and the second rubber plate, there are four lower guiding wheels, and the four lower guiding wheels are symmetrically distributed on both sides of the lower main frame, and the four lower guiding wheels are rotatably connected to the lower main frame.
[0009] Preferably, the upper servo motor is connected to the top of the central main frame through a mounting frame, the second transmission rod is rotatably connected to the central main frame through a bearing, the first worm meshes with the first turbine, the first turbine is connected to the first gear through a connecting shaft, and the connecting shaft is connected to the central main frame through a bearing, the toothed ring part is connected to the side of the moving wheel part, and the moving wheel part is connected to the central main frame through a rotating shaft.
[0010] Preferably, the moving wheel part is used to contact the tops of the first rubber plate and the second rubber plate, the side auxiliary frame is connected to the side of the central main frame, the upper guiding wheel is connected to the side auxiliary frame through a rotating shaft, the upper guiding wheel is used to contact the tops of the first rubber plate and the second rubber plate, the side of the moving wheel part is connected to the side auxiliary frame through a rotating shaft, the second worm is connected to the third worm, the third worm is connected to the central main frame through a bearing, the third worm meshes with the third turbine, the second auxiliary wheel is rotatably connected to the upper pressing wheel part, and the second auxiliary wheel contacts the first rubber plate and the second rubber plate.
[0011] Preferably, one end of the heating plate part is connected to the bottom of the central main frame, the triangular plate part is connected to the bottom of the central main frame, the triangular plate part is used to separate the seams of the first rubber plate and the second rubber plate, and one end of the front vertical frame is connected to the bottom of the central main frame.
[0012] Preferably, the front vertical frame is connected between the triangular plate part and the heating plate part, the rear vertical frame is connected to the bottom of the central main frame, the rear vertical frame is connected to the heating plate part, the front threaded rod is connected to the front vertical frame through a bearing, and the rear threaded rod is connected to the rear vertical frame through a bearing.
[0013] Preferably, the front core block is in sliding contact with the front vertical frame through a sliding groove, the rear core block is in sliding contact with the rear vertical frame through a sliding groove, the front threaded rod is threadedly connected to the front core block, the rear threaded rod is threadedly connected to the rear core block, the welding table surface is provided with a guiding groove body corresponding to the toothed ring part, and the toothed ring part is in sliding contact with the welding table surface through the guiding groove body.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] 1. Different from the traditional hot air gun or hot plate welding methods that can only heat the surface of the rubber plate, this device directly contacts the joint position of the rubber plate through the heat dissipation positions on both sides, enabling the heat to evenly penetrate into the deeper rubber material, achieving simultaneous melting of the interior and the surface, and thus ensuring the welding quality and stability of thick rubber plates.
[0016] 2. This device can not only heat and melt the rubber plate, but also provide precise pressing in the molten state, avoiding problems such as misalignment, warping, or depression caused by manual pressing. The structures of the moving wheel assembly, upper guiding wheel, lower guiding wheel, lower positioning roller, and upper positioning roller ensure the alignment of Rubber Plate 1 and Rubber Plate 2 during welding, guarantee the flatness of the welding interface, improve the uniformity and appearance quality of the joint.
[0017] 3. The spacing between the upper welding component group and the lower welding component group adapts to rubber plates of different thicknesses. This design enables the device to process rubber plates of various specifications, enhancing the applicability of the overall device.
[0018] 4. The upper extrusion wheel assembly and the lower extrusion wheel assembly work together to extrude the joint position of the rubber plate from multiple angles. In particular, the left and right rotation directions of the upper extrusion wheel assembly are opposite, which can generate an effective clamping force at the joint position, resulting in a better melting connection effect and higher structural stability of the welded rubber plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is the schematic diagram of the overall structure of the present invention;
[0020] Figure 2 is the schematic diagram of the structure of the bottom of the whole of the present invention;
[0021] Figure 3 is the schematic diagram of the structure of the rubber plate component group, lower welding component group, and upper welding component group parts of the present invention;
[0022] Figure 4 is the cross-sectional structure schematic diagram of the rubber plate component group, lower welding component group, and upper welding component group parts of the present invention;
[0023] Figure 5 is the side view structure schematic diagram of the rubber plate component group, lower welding component group, and upper welding component group parts of the present invention;
[0024] Figure 6 is the schematic diagram of the structure of the lower welding component group and upper welding component group parts of the present invention;
[0025] Figure 7 is the schematic diagram of the cross-sectional structure of the moving wheel assembly part of the present invention;
[0026] Figure 8Structural schematic diagram of the upper welding component group and the rubber plate component group of the present invention;
[0027] Figure 9 Structural schematic diagram of the upper welding component group of the present invention;
[0028] Figure 10 Structural schematic diagram of the lower welding component group of the present invention.
[0029] In the figure: 01, rubber plate component group; 11, rubber plate one; 12, rubber plate two; 02, lower welding component group; 21, lower servo motor; 22, transmission rod one; 23, lower extrusion wheel part; 24, auxiliary wheel one; 25, lower main frame; 26, lower guide wheel; 27, lower positioning roller; 28, guide slide bar; 29, front center block; 210, rear center block; 03, upper welding component group; 31, upper servo motor; 32, transmission rod two; 33, worm one; 34, worm two; 35, central main frame; 36, turbine one; 37, gear one; 38, gear ring part; 39, moving wheel part; 310, side auxiliary frame; 311, upper guide wheel; 312, turbine two; 313, worm three; 314, turbine three; 315, horizontal shaft part; 316, upper extrusion wheel part; 317, auxiliary wheel two; 318, heating plate part; 319, triangular plate part; 320, front vertical frame; 321, front threaded rod; 322, rear vertical frame; 323, rear threaded rod; 324, upper positioning roller; 04, support table component group; 41, welding table top; 42, support leg; 43, guide groove body. Detailed implementation manners
[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0031] Please refer to Figure 1-10, An embodiment provided by the present invention: A welding device for rubber plate processing configuration, including a rubber plate component group 01. The rubber plate component group 01 includes a first rubber plate 11 and a second rubber plate 12. An upper welding component group 03 is arranged outside the rubber plate component group 01. The lower welding component group 02 and the upper welding component group 03 cooperate to weld the first rubber plate 11 and the second rubber plate 12. The lower welding component group 02 includes a lower servo motor 21. The working end of the lower servo motor 21 is connected to a first transmission rod 22. One end of the first transmission rod 22 is connected to a lower extrusion wheel member 23. An auxiliary wheel 24 is arranged outside the lower extrusion wheel member 23. A lower main frame 25 and a lower guide wheel 26 are arranged on the top of the lower servo motor 21. A lower positioning roller 27 is arranged on the top of the lower main frame 25. A front core block 29 and a rear core block 210 are arranged inside the lower main frame 25. A guide slide bar 28 is arranged on the side of the lower main frame 25; The upper welding component group 03 includes an upper servo motor 31. The working end of the upper servo motor 31 is connected to a second transmission rod 32. The second transmission rod 32 is connected to a first worm 33 and a second worm 34 through a through hole. A first turbine 36 and a first gear 37 are arranged outside the first worm 33. The first gear 37 meshes with a toothed ring member 38. A moving wheel member 39 is connected to the side of the toothed ring member 38. An auxiliary frame 310 is arranged outside the moving wheel member 39. An upper guide wheel 311 is arranged on the side of the auxiliary frame 310. A central main frame 35 is arranged outside the second worm 34. The second worm 34 meshes with a second worm gear 312. A third worm 313 is connected to the side of the second worm gear 312. The third worm 313 meshes with a third worm gear 314. A transverse shaft member 315 is connected to the side of the third worm gear 314. One end of the transverse shaft member 315 is connected to an upper extrusion wheel member 316. An auxiliary wheel 317 is connected outside the upper extrusion wheel member 316. A heating plate member 318 is connected to the bottom of the central main frame 35. A triangular plate member 319 is arranged on the side of the heating plate member 318. A front vertical frame 320, a front threaded rod 321, a rear vertical frame 322 and a rear threaded rod 323 are arranged outside the heating plate member 318. An upper positioning roller 324 is connected to the bottom of the central main frame 35; A support table component group 04 is arranged outside the lower welding component group 02. The support table component group 04 includes a welding tabletop 41. Support legs 42 are connected to the bottom of the welding tabletop 41. A guide groove body 43 is arranged inside the welding tabletop 41.
[0032] The lower servo motor 21, the first transmission rod 22, the lower extrusion wheel member 23 and the guide slide bar 28 are all provided with two, and the two lower servo motors 21, the first transmission rod 22, the lower extrusion wheel member 23 and the guide slide bar 28 are symmetrically distributed on both sides of the lower main frame 25. The lower servo motor 21 is connected to the lower main frame 25 on the top through a mounting bracket. The first transmission rod 22 is connected to the lower main frame 25 through a bearing. A plurality of auxiliary wheels 24 are provided, and the plurality of auxiliary wheels 24 are rotatably connected to the lower extrusion wheel member 23. The auxiliary wheel 24 is used to contact the bottoms of the first rubber plate 11 and the second rubber plate 12.
[0033] The guiding slider 28 is connected to the lower main frame 25 through a bracket. The front core block 29 and the rear core block 210 are connected to the lower main frame 25. The lower positioning roller 27 is connected to the top of the lower main frame 25 through a bracket. The lower positioning roller 27 is used to contact the bottoms of the first rubber plate 11 and the second rubber plate 12. There are four lower guiding wheels 26, and the four lower guiding wheels 26 are symmetrically distributed on both sides of the lower main frame 25. The four lower guiding wheels 26 are rotatably connected to the lower main frame 25.
[0034] The upper servo motor 31 is connected to the top of the central main frame 35 through a mounting frame. The transmission rod member two 32 is rotatably connected to the central main frame 35 through a bearing. The first worm 33 meshes with the first turbine 36. The first turbine 36 is connected to the first gear 37 through a connecting shaft, and the connecting shaft is connected to the central main frame 35 through a bearing. The ring gear member 38 is connected to the side of the moving wheel member 39. The moving wheel member 39 is connected to the central main frame 35 through a rotating shaft.
[0035] The moving wheel member 39 is used to contact the tops of the first rubber plate 11 and the second rubber plate 12. The side auxiliary frame 310 is connected to the side of the central main frame 35. The upper guiding wheel 311 is connected to the side auxiliary frame 310 through a rotating shaft. The upper guiding wheel 311 is used to contact the tops of the first rubber plate 11 and the second rubber plate 12. The side of the moving wheel member 39 is connected to the side auxiliary frame 310 through a rotating shaft. The second worm gear 312 is connected to the third worm 313. The third worm 313 is connected to the central main frame 35 through a bearing. The third worm 313 meshes with the third worm gear 314. The second auxiliary wheel 317 is rotatably connected to the upper pressing wheel member 316. The second auxiliary wheel 317 contacts the first rubber plate 11 and the second rubber plate 12.
[0036] One end of the heating plate member 318 is connected to the bottom of the central main frame 35. The triangular plate member 319 is connected to the bottom of the central main frame 35. The triangular plate member 319 is used to separate the seams of the first rubber plate 11 and the second rubber plate 12. One end of the front vertical frame 320 is connected to the bottom of the central main frame 35.
[0037] The front vertical frame 320 is connected between the triangular plate member 319 and the heating plate member 318. The rear vertical frame 322 is connected to the bottom of the central main frame 35. The rear vertical frame 322 is connected to the heating plate member 318. The front threaded rod 321 is connected to the front vertical frame 320 through a bearing. The rear threaded rod 323 is connected to the rear vertical frame 322 through a bearing.
[0038] The front core block 29 is in sliding contact with the front vertical frame 320 through the slide groove, the rear core block 210 is in sliding contact with the rear vertical frame 322 through the slide groove, the front threaded rod 321 is connected to the front core block 29 through a thread, and the rear threaded rod 323 is connected to the rear core block 210 through a thread. The welding table 41 is provided with a guide groove body 43 corresponding to the gear ring part 38, and the gear ring part 38 is in sliding contact with the welding table 41 through the guide groove body 43. The heating plate 318 is internally installed with an electric heating wire, and the power supply unit connected to the outside of the electric heating wire is used. Before welding the rubber sheet 11 and the rubber sheet 2 12, it is necessary to preheat the heating plate 318 to a suitable temperature in advance according to the specific materials of the rubber sheet 11 and the rubber sheet 2 12 to ensure the subsequent melting effect of the rubber sheet 11 and the rubber sheet 2 12, and only the two sides of the heating plate 318 are positions for dissipating heat, and only the positions for dissipating heat are in contact with the rubber sheet 11 and the rubber sheet 2 12, and the non-heat dissipating positions of the heating plate 318 are wrapped with insulating ceramics to prevent excessive temperature from causing negative effects on the external structure.
[0039] Working principle: When the rubber sheet 11 and the rubber sheet 2 12 are welded, first align the welding positions of the rubber sheet 11 and the rubber sheet 2 12 and place them on the welding table 41. Use a clamp to fix the rubber sheet 11 and the rubber sheet 2 12 on the welding table 41, and then start the upper servo motor 31 in the upper welding component group 03. After the upper servo motor 31 is started, it will drive the transmission rod 2 32 to rotate through the working end. The rotation of the transmission rod 2 32 will drive the worm 1 33 and the worm 2 34 to rotate together. The rotation of the worm 1 33 will drive the turbine 1 36 / gear 1 37 / gear ring 38 and the moving wheel 39 to rotate, and then move on the rubber sheet 11 and the rubber sheet 2 12 through the rotation of the moving wheel 39, driving the overall lower welding component group 02 and the upper welding component group 03 to move, and the direction of movement is from left to right ( Figure 1 (middle position) When the triangular plate 319 connected to the bottom of the central main frame 35 contacts the joint position of the rubber sheet 11 and the rubber sheet 2 12, the triangular plate 319 will stretch the joint to allow the triangular plate 319 to be inserted between the rubber sheet 11 and the rubber sheet 2 12. As the movement continues, the heating plate 318 will contact the rubber sheet 11 and the rubber sheet 2 12 on both sides, and the heating plate 318 will heat-melt the joint position of the rubber sheet 11 and the rubber sheet 2 12 to melt it. After melting, as the lower welding component group 02 and the upper welding component group 03 continue to move forward, under the action of the lower extrusion wheel 23 in the lower welding component group 02 and the upper extrusion wheel 316 in the upper welding component group 03, the contacted rubber sheet 11 and the rubber sheet 2 12 will be contacted and squeezed, so that the joint positions of the rubber sheet 11 and the rubber sheet 2 12 are close to each other, and then the melting positions are closely contacted, and the joint positions of the rubber sheet 11 and the rubber sheet 2 12 will be melted and connected, and then the welding is completed;
[0040] The rotation directions of the two upper extrusion wheel members 316 in the upper welding component group 03 are such that the left upper extrusion wheel member 316 (as Figure 5 shown) rotates counterclockwise, and the right upper extrusion wheel member 316 rotates clockwise. The two upper extrusion wheel members 316 cooperate to extrude the joint edge positions of the first rubber plate 11 and the second rubber plate 12. Additionally, in the lower welding component group 02, the left lower extrusion wheel member 23 (as Figure 5 shown) rotates clockwise, and the right lower extrusion wheel member 23 rotates counterclockwise, achieving the purpose of extruding the joint positions of the first rubber plate 11 and the second rubber plate 12 from the bottom. The cooperation of the lower welding component group 02 and the upper welding component group 03 will extrude and clamp the melted joint, promoting an effective melting effect at the joint position;
[0041] By rotating the front threaded rod 321 and the rear threaded rod 323, the front center block 29 and the rear center block 210 can be driven by the threads to slide up and down in the front vertical frame 320 and the rear vertical frame 322 respectively, thereby adjusting the distance between the upper welding component group 03 and the lower welding component group 02 to adapt to rubber plates 11 and 12 of different thicknesses. When welding the first rubber plate 11 and the second rubber plate 12, it is necessary to ensure that the moving wheel member 39 and the upper guide wheel 311 in the upper welding component group 03 fully contact the tops of the first rubber plate 11 and the second rubber plate 12, and the lower guide wheel 26 in the lower welding component group 02 fully contacts the bottoms of the first rubber plate 11 and the second rubber plate 12. Also, the lower positioning roller 27 and the upper positioning roller 324 need to ensure contact with the first rubber plate 11 and the second rubber plate 12. These structures are used to ensure the flatness of the positions of the first rubber plate 11 and the second rubber plate 12, thereby ensuring the flatness of the welding surface during subsequent melting.
[0042] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. A welding device for processing rubber sheets, comprising a rubber sheet component group (01), wherein the rubber sheet component group (01) comprises a rubber sheet one (11) and a rubber sheet two (12), characterized in that: The rubber sheet component group (01) is provided with a lower welding component group (02) and an upper welding component group (03) on the outside. The lower welding component group (02) and the upper welding component group (03) cooperate to weld the rubber sheet one (11) and the rubber sheet two (12). The lower welding component group (02) includes a lower servo motor (21). The working end of the lower servo motor (21) is connected to a transmission rod one (22). The transmission rod one (22) is One end is connected to a lower extrusion wheel member (23), an auxiliary wheel (24) is arranged outside the lower extrusion wheel member (23), a lower main frame (25) and a lower guide wheel (26) are arranged on the top of the lower servo motor (21), a lower positioning roller (27) is arranged on the top of the lower main frame (25), a front center block (29) and a rear center block (210) are arranged inside the lower main frame (25), and a guide slide bar (28) is arranged on the side of the lower main frame (25); The upper welding component group (03) comprises an upper servo motor (31), the working end of the upper servo motor (31) is connected to a transmission rod member 2 (32), the transmission rod member 2 (32) is connected to a worm gear 1 (33) and a worm gear 2 (34) through a through hole, the worm gear 1 (33) is provided with a turbine gear 1 (36) and a gear gear 1 (37) on the outside, the gear gear 1 (37) is meshed with a gear ring member (38), the side of the gear ring member (38) is connected to a moving wheel member (39), the side of the moving wheel member (39) is provided with a side auxiliary frame (310), the side of the side auxiliary frame (310) is provided with an upper guide wheel (311), the outside of the worm gear 2 (34) is provided with a central main frame (35), the worm gear 2 (34) is meshed with a worm gear 2 (312), the The side of worm gear 2 (312) is connected to worm gear 3 (313), worm gear 3 (313) is meshed with worm gear 3 (314), the side of worm gear 3 (314) is connected to a transverse shaft (315), one end of the transverse shaft (315) is connected to an upper extrusion wheel (316), the outside of the upper extrusion wheel (316) is connected to an auxiliary wheel 2 (317), the bottom of the central main frame (35) is connected to a heating plate (318), the side of the heating plate (318) is provided with a triangular plate (319), the outside of the heating plate (318) is provided with a front vertical frame (320), a front threaded rod (321), a rear vertical frame (322) and a rear threaded rod (323), the bottom of the central main frame (35) is connected to an upper positioning roller (324); A support platform component group (04) is arranged outside the lower welding component group (02), and the support platform component group (04) comprises a welding table (41), the bottom of the welding table (41) is connected to a support leg (42), and a guide groove body (43) is arranged inside the welding table (41).
2. The welding equipment for rubber sheet processing according to claim 1, characterized in that: The lower servo motor (21), the transmission rod member 1 (22), the lower extrusion wheel member (23) and the guide slide bar (28) are all provided with two, and the two lower servo motors (21), the transmission rod member 1 (22), the lower extrusion wheel member (23) and the guide slide bar (28) are symmetrically distributed on both sides of the lower main frame (25); the lower servo motor (21) is connected to the lower main frame (25) at the top through a mounting frame; the transmission rod member 1 (22) is connected to the lower main frame (25) through a bearing; a plurality of auxiliary wheels 1 (24) are provided, and the plurality of auxiliary wheels 1 (24) are rotatably connected to the lower extrusion wheel member (23); the auxiliary wheel 1 (24) is used to contact the bottom of the rubber plate 1 (11) and the rubber plate 2 (12).
3. The welding equipment for rubber sheet processing according to claim 1, characterized in that: The guide slide bar (28) is connected to the lower main frame (25) through a bracket, the front center block (29) and the rear center block (210) are connected to the lower main frame (25), the lower positioning roller (27) is connected to the top of the lower main frame (25) through the bracket, and the lower positioning roller (27) is used to contact the bottom of the rubber plate 1 (11) and the rubber plate 2 (12), and four lower guide wheels (26) are provided, and the four lower guide wheels (26) are symmetrically distributed on both sides of the lower main frame (25), and the four lower guide wheels (26) are rotatably connected to the lower main frame (25).
4. The welding equipment for rubber sheet processing according to claim 1, characterized in that: The upper servo motor (31) is connected to the top of the central main frame (35) through a mounting frame, the transmission rod member 2 (32) is rotationally connected to the central main frame (35) through a bearing, the worm gear member 1 (33) engages with the turbine member 1 (36), the turbine member 1 (36) is connected to the gear member 1 (37) through a connecting shaft, and the connecting shaft is connected to the central main frame (35) through a bearing, the gear ring member (38) is connected to the side of the moving wheel member (39), and the moving wheel member (39) is connected to the central main frame (35) through a rotating shaft.
5. The welding equipment for rubber sheet processing according to claim 1, characterized in that: The moving wheel member (39) is used to contact the top of the first rubber plate (11) and the second rubber plate (12); the side auxiliary frame (310) is connected to the side of the central main frame (35); the upper guide wheel (311) is connected to the side auxiliary frame (310) via a rotating shaft; the upper guide wheel (311) is used to contact the top of the first rubber plate (11) and the second rubber plate (12); the side of the moving wheel member (39) is connected to the side auxiliary frame (310) via a rotating shaft; the worm wheel (312) is connected to the worm gear (313); the worm gear (313) is connected to the central main frame (35) via a bearing; the worm gear (313) meshes with the worm wheel (314); the auxiliary wheel (317) is rotatably connected to the upper extrusion wheel member (316); the auxiliary wheel (317) contacts the first rubber plate (11) and the second rubber plate (12).
6. The welding equipment for rubber sheet processing according to claim 1, characterized in that: One end of the heating plate (318) is connected to the bottom of the central main frame (35), the triangular plate (319) is connected to the bottom of the central main frame (35), the triangular plate (319) is used to separate the joints of the rubber plate 1 (11) and the rubber plate 2 (12), and one end of the front vertical frame (320) is connected to the bottom of the central main frame (35).
7. The welding equipment for rubber sheet processing according to claim 1, characterized in that: The front vertical frame (320) is connected between the triangular plate (319) and the heating plate (318), the rear vertical frame (322) is connected to the bottom of the central main frame (35), the rear vertical frame (322) is connected to the heating plate (318), the front threaded rod (321) is connected to the front vertical frame (320) via a bearing, and the rear threaded rod (323) is connected to the rear vertical frame (322) via a bearing.
8. The welding equipment for rubber sheet processing according to claim 1, characterized in that: The front core block (29) is in sliding contact with the front vertical frame (320) through a sliding groove, the rear core block (210) is in sliding contact with the rear vertical frame (322) through a sliding groove, the front threaded rod (321) is connected to the front core block (29) through a thread, the rear threaded rod (323) is connected to the rear core block (210) through a thread, and the welding table (41) is provided with a guide groove body (43) corresponding to the gear ring member (38), and the gear ring member (38) is in sliding contact with the welding table (41) through the guide groove body (43).
Citation Information
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Welding robot
CN118455847A
Split type welding set
CN207224614U