Rubber coating equipment
The automated positioning and tape winding mechanism of the rubber coating equipment solves the low efficiency problem of traditional manual wire bundling, achieving efficient and uniform wire bundling effects.
Patent Information
- Application Number
- CN202510768538.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-09-19
AI Technical Summary
Traditional wire bundling methods rely on manual operation, which makes it difficult to ensure the tightness and consistency of bundling, cannot meet the needs of large-scale industrial production, and reduces bundling efficiency.
The rubber coating equipment, including the base, positioning seat, slide rail, transverse seat, strap winding mechanism and driving mechanism, is used. The positioning of the wire and the conveying and winding of the strap are realized through the automatic components such as motor and cylinder, thereby improving the bundling efficiency.
It realizes efficient and automatic bundling of wires, improves bundling tightness and consistency, and meets the needs of industrial production.
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Figure CN120664171A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rubber coating equipment, in particular to a rubber coating equipment. Background Art
[0002] In modern industrial production and packaging, there's a widespread demand for bundling various types of wires (such as cables and wires). This is particularly true in the electrical, electronics, and machinery manufacturing industries, where neatly bundled wires not only ensure the product's appearance but also play a crucial role in ensuring stability and safety during transportation, storage, and subsequent use.
[0003] Traditional wire bundling methods include cables, oval wires, etc., and wire bundling methods mostly rely on manual operation. When manual work is done for a long time, workers will become fatigued, resulting in difficulty in ensuring the tightness and consistency of wire bundling, which cannot meet the needs of large-scale industrial production, thereby reducing wire bundling efficiency. Summary of the Invention
[0004] In order to improve the problem of low wire bundling efficiency, the present application provides a rubber coating device.
[0005] The present application provides a rubber encapsulation device that adopts the following technical solution: A rubber coating device includes a base, and positioning seats for placing elliptical wires are provided on both sides of the top surface of the base. A positioning mechanism for placing and positioning the elliptical wires is provided on the positioning seats. Two slide rails arranged parallel to each other are provided on the top surface of the base, and a transverse seat is provided on the two slide rails. A strap winding mechanism is provided on the top of the transverse seat, a driving mechanism for driving the transverse seat to move along the length direction of the slide rail is provided on the base, and a strap conveying mechanism for conveying straps is provided on the base.
[0006] By adopting the above technical solution, the driving mechanism is started to drive the transverse seat to move along the length direction of the slide rail, so that the transverse seat drives the strap winding mechanism to move, and the position of the strap winding mechanism is adjusted to facilitate the placement of the wire, so that the strap winding mechanism can be used to wind and bundle the wire. When the position of the strap winding mechanism is adjusted, the elliptical wire to be wound is placed on the positioning seat, the wire is positioned by the positioning mechanism, and the strap conveying mechanism conveys the strap to the strap winding mechanism, so that the strap winding mechanism drives the strap to move, and the strap is wound around the wire, thereby improving the bundling efficiency of the wire.
[0007] Preferably, the driving mechanism includes a motor 1 arranged on the top surface of the base, two mounting blocks are fixed on the top surface of the base, a screw is rotatably installed between the two mounting blocks, the screw passes through the transverse seat, the screw is threadedly connected to the transverse seat, and one end of the output shaft of the motor 1 is fixedly connected to one end of the screw.
[0008] By adopting the above technical solution, motor one is started, and the output shaft of motor one drives the screw to rotate, so that the screw drives the transverse shift seat to move along the length direction of the slide rail.
[0009] The top of the plywood is fixed on the upper surface of the base, and the plywood is fixed on the top of the plywood, and the top of the plywood is fixed on the lower surface of the base, and the plywood is fixed on the bottom surface of the base.
[0010] By adopting the above technical solution, when the wire is placed on the mounting seat, the wire is located between clamping plate one and clamping plate two, and the pneumatic cylinder is started so that the piston rod of the cylinder drives the sliding block to move, and the sliding block drives the clamping plate two to move toward the direction close to the clamping plate one, so that the clamping plate one and the clamping plate two clamp the wire, completing the positioning of the wire.
[0011] Preferably, a vertical plate is provided on the side of the transverse seat, and the belt conveying mechanism includes a mounting shaft fixed to the side of the vertical plate away from one end of the transverse seat for sleeve-mounted straps, a plurality of transmission rollers are rotatably installed on the side of the vertical plate, and the strap passes around the plurality of transmission rollers in turn, and a mounting platform is fixed on the side of the transverse seat away from the vertical plate, a guide rail is provided on the top surface of the mounting platform, and a sliding seat is slidably provided on the guide rail, a cylinder 1 is fixed to one end surface of the sliding seat, a fixed plate is fixed to the top end of the piston rod of the cylinder 1, the front end of the strap passes through the strap winding mechanism and is fixed between the fixed plate and the sliding seat, and a driving component for driving the sliding seat to move is provided on the mounting platform.
[0012] By adopting the above technical solution, the strap is placed on the mounting shaft, so that the conveying end of the strap is passed around multiple transmission shafts in sequence, and the conveying end of the strap passes through the strap winding mechanism, and the conveying end of the strap is placed between the fixed plate and the sliding seat, and then cylinder one is started, and the piston rod of cylinder one drives the fixed plate to move downward, so that the fixed plate clamps the strap on the sliding seat, and then the drive assembly is started, so that the drive assembly drives the sliding seat to move, so that the sliding seat tightens the strap, thereby reducing the possibility of the strap loosening when the strap winding mechanism wraps the strap around the wire.
[0013] Preferably, the driving assembly includes a synchronous pulley 1 and two synchronous pulleys 2 rotatably arranged on the side of the mounting platform, a synchronous belt is wound around the synchronous pulley 1 and the two synchronous pulleys 2, a moving block is fixed to the side of the sliding seat, the synchronous belt passes through the bottom end of the moving block, the synchronous belt is fixedly connected to the moving block, a motor 2 is provided on the side of the mounting platform, and the output shaft of the motor 2 is fixedly connected to one end of the synchronous pulley 1.
[0014] By adopting the above technical solution, motor 2 is started, the output shaft of motor 2 drives synchronous pulley 1 to rotate, synchronous pulley 1 drives synchronous belt to rotate, synchronous belt drives moving block to move, and thus moving block drives sliding seat to move.
[0015] Preferably, the strap winding mechanism includes a mounting box with an opening fixed to the top of the transverse displacement seat, and the outer peripheral surface of the mounting box is provided with two through-holes for the strap to pass through. Two winding gears are provided in the mounting box, and the winding gears can rotate in the mounting box. The winding gears are provided with slots in the radial direction, and a connecting rod is fixed between the two winding gears. A driving member for driving the winding gears to rotate is provided in the mounting box.
[0016] By adopting the above technical solution, the driving member is started, and the driving member drives the two winding gears to rotate, and the winding gear connecting rod rotates, so that the connecting rod drives the strap to rotate around the wire during the rotation process, so that the strap is wound around the wire.
[0017] Preferably, the driving member includes a dual-axis motor fixed to the inner bottom surface of the installation box, and power gears are provided at both ends of the dual-axis motor, and the power gears are meshed with the winding gears.
[0018] By adopting the above technical solution, the dual-shaft motor is started, and the output shaft of the dual-shaft motor drives the power gear to rotate, thereby causing the power gear to drive the winding gear to rotate.
[0019] Preferably, sliding plate 1 and sliding plate 2 are slidably provided on both side surfaces of the installation box, clamping plate 1 is fixed on the top surface of sliding plate 1, and clamping plate 2 is fixed on the top surface of sliding plate 2, and a power part is provided on the transverse displacement seat for driving clamping plate 1 and clamping plate 2 to move away from or towards each other.
[0020] By adopting the above technical solution, when the wire is placed on the mounting seat, the power member is started, so that the power member drives the clamping plate 1 and the clamping plate 2 to move toward each other, so that the clamping plate 1 and the clamping plate 2 clamp the wire, reducing the possibility of the wire moving during bundling.
[0021] Preferably, a mounting opening 1 is provided on the side of the sliding plate 1, a mounting opening 2 is provided on the side of the sliding plate 2, the power component includes a motor 3 installed on the transverse displacement seat, a driving gear is provided on the output shaft of the motor 3, a rack 1 is provided on the inner top surface of the mounting opening 1, and a rack 2 is provided on the inner bottom surface of the mounting opening 2, and the driving gear is respectively engaged with the rack 1 and the rack 2.
[0022] By adopting the above technical solution, motor three is started, and the output shaft of motor three drives the driving gear to rotate, and the driving gear drives rack one and rack two to move in the direction of moving away from or approaching each other, so that rack one and rack two respectively drive sliding plate one and sliding plate two to move, thereby making sliding plate one and sliding plate two drive clamping plate one and clamping plate two to move and clamp the wire.
[0023] In summary, this application includes at least one of the following beneficial technical effects: 1. Start the driving mechanism to drive the transverse seat to move along the length direction of the slide rail, so that the transverse seat drives the strap winding mechanism to move, adjust the position of the strap winding mechanism, and when the wire is placed, the strap winding mechanism is used to wind and bundle the wire. When the position of the strap winding mechanism is adjusted, the elliptical wire to be wound is placed on the positioning seat, and the positioning mechanism is used to position the wire. The strap conveying mechanism conveys the strap to the strap winding mechanism, and the strap winding mechanism drives the strap to move, so that the strap is wound around the wire, thereby improving the bundling efficiency of the wire. 2. When the wire is placed on the mounting base, it is located between clamping plate 1 and clamping plate 2. The pneumatic cylinder is activated, and the piston rod of the cylinder drives the sliding block to move. The sliding block drives clamping plate 2 to move closer to clamping plate 1, so that clamping plates 1 and 2 clamp the wire, completing the wire positioning work; 3. Put the belt on the mounting shaft, make the conveying end of the belt pass through multiple transmission shafts in sequence, make the conveying end of the belt pass through the belt winding mechanism, and place the conveying end of the belt between the fixed plate and the sliding seat, then start cylinder one, the piston rod of cylinder one drives the fixed plate to move downward, so that the fixed plate clamps the belt on the sliding seat, and then start the drive assembly, so that the drive assembly drives the sliding seat to move, so that the sliding seat tightens the belt, thereby reducing the possibility of the belt loosening when the belt winding mechanism wraps the belt around the wire. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the overall structure of the encapsulation equipment in the embodiment of the present application.
[0025] Figure 2 It is a structural schematic diagram of the transverse shift seat in the embodiment of the present application.
[0026] Figure 3It is a cross-sectional view of the installation box in the embodiment of the present application.
[0027] Figure 4 yes Figure 2 Enlarged schematic diagram of point A in the middle.
[0028] Figure 5 It is a structural diagram of the synchronous belt in an embodiment of the present application.
[0029] Figure numerals: 1, base; 11, slide rail; 12, transverse seat; 13, mounting block; 14, screw; 15, motor 1; 2, positioning seat; 21, support frame; 22, mounting plate; 23, placement plate; 24, support rod; 3, mounting seat; 31, clamping plate 1; 32, slide groove; 33, sliding block; 34, clamping plate 2; 35, through-port 1; 4, mounting box; 41, winding gear; 42, notch; 43, connecting rod; 44, dual-axis motor; 45, power gear; 5, sliding plate 1; 51, Sliding plate 2; 52. Clamping plate 1; 53. Clamping plate 2; 54. Mounting port 1; 55. Mounting port 2; 56. Rack 1; 57. Rack 2; 58. Motor 3; 59. Drive gear; 6. Vertical plate; 61. Mounting shaft; 62. Binding belt; 63. Transmission roller; 64. Mounting table; 65. Guide rail; 66. Sliding seat; 67. Cylinder 1; 68. Fixed plate; 69. Through port 2; 7. Synchronous pulley 1; 71. Synchronous pulley 2; 72. Synchronous belt; 73. Moving block; 74. Motor 2. DETAILED DESCRIPTION
[0030] The following is combined with Figure 1-5 This application is described in further detail.
[0031] The embodiment of the present application discloses a rubber encapsulation device.
[0032] Reference Figure 1 A rubber coating device includes a base 1, and positioning seats 2 for placing wires are provided on both sides of the top surface of the base 1. The positioning seat 2 includes a support frame 21 fixed to the top surface of the base 1, a mounting plate 22 is fixed to the top surface of the support frame 21, a placement plate 23 is provided above the mounting plate 22, a plurality of support rods 24 are fixed to the bottom surface of the placement plate 23, and the bottom ends of the support rods 24 are fixed to the bottom surface of the mounting plate 22. A mounting seat 3 is fixed to the top surface of the mounting plate 22, and a clamping plate 1 31 is fixed to one end of the top surface of the mounting seat 3. A slide groove 32 is provided on the top surface of the mounting seat 3, and a sliding block 33 is slidably provided in the slide groove 32, and a clamping plate 2 34 is fixed to the top surface of the sliding block 33. A through-hole 1 35 is provided on the top surface of the placement plate 23, and the top ends of the clamping plates 1 31 and 2 34 pass through the through-hole 1 35. A cylinder for driving the sliding block 33 to move along the length direction of the mounting seat 3 is provided in the slide groove 32. The cylinder is not shown in the prior art figure.
[0033] Reference Figure 1 and Figure 2 Two parallel slide rails 11 are fixed to the top surface of the base 1. A traverse seat 12 is slidably mounted on the two slide rails 11. Two mounting blocks 13 are fixed to the top surface of the base 1. The two mounting blocks 13 are located between the two slide rails 11. A screw 14 is rotatably mounted between the two mounting blocks 13. The screw 14 passes through the traverse seat 12 and is threadedly connected to the traverse seat 12. A motor 15 is fixed to the top surface of the base 1. One end of the output shaft of the motor 15 is fixedly connected to one end of the screw 14.
[0034] Reference Figure 1 、 Figure 2 and Figure 3 A mounting box 4 with an opening is fixed to the top of the transverse displacement seat 12. The opening of the mounting box 4 is set upward. The mounting box 4 has a structure of an upper circle and a lower part. The mounting box 4 is located between two placement plates 23. Two winding gears 41 are arranged in the mounting box 4. The outer circumference of the winding gear 41 is in contact with the inner circumference of the mounting box 4. The winding gear 41 can rotate in the mounting box 4. The winding gear 41 has a radial slot 42 for inserting wire. A connecting rod 43 is fixed between the two winding gears 41. A dual-axis motor 44 is fixed to the inner bottom surface of the mounting box 4. Power gears 45 are fixed on both ends of the dual-axis motor 44. The power gear 45 meshes with the winding gear 41.
[0035] Reference Figure 2 and Figure 4 Sliding plates 1 and 2, 51, are slidably mounted on both sides of the mounting box 4. Sliding plate 2, 51, is located on the side of the sliding plate 5 away from the mounting box 4. Clamping plate 1, 52, is fixed to the top surface of the sliding plate 1, and clamping plate 2, 53, is fixed to the top surface of the sliding plate 2, 51. A mounting opening 1, 54, is defined on the side of the sliding plate 1, and a mounting opening 2, 55, is defined on the side of the sliding plate 2, 51. A rack 1, 56, is fixed to the inner top surface of the mounting opening 1, 54, and a rack 2, 57, is fixed to the inner bottom surface of the mounting opening 2, 55. A motor 3, 58, is fixed to the side of the transverse shifting seat 12. A drive gear 59 is mounted and fixed on the output shaft of the motor 3, 58, and the drive gear 59 meshes with the rack 1, 56, and the rack 2, 57, respectively.
[0036] Reference Figure 2 and Figure 5A vertical plate 6 is fixed to the side of the transverse seat 12. The vertical plate 6 is located between the two support frames 21. A mounting shaft 61 is fixed to the end of the side of the vertical plate 6 away from the transverse seat 12. A strap 62 is sleeved on the mounting shaft 61. A plurality of transmission rollers 63 are rotatably mounted on the side of the vertical plate 6. The strap 62 passes around the plurality of transmission rollers 63 in sequence. A mounting platform 64 is fixed to the side of the transverse seat 12 away from the vertical plate 6. A guide rail 65 is fixed to the top surface of the mounting platform 64. A sliding seat 66 is slidingly provided on the guide rail 65. A cylinder 1 67 is fixed to the end surface of the sliding seat 66 away from the mounting box 4. A fixed plate 68 is fixed to the top of the piston rod of the cylinder 1 67. Two through-holes 2 69 are provided on the outer peripheral surface of the mounting box 4. The conveying end of the strap 62 passes through the two through-holes 2 69 and is pressed tightly between the fixed plate 68 and the sliding seat 66.
[0037] Reference Figure 2 and Figure 5 A synchronous pulley 1 (7) and two synchronous pulleys 2 (71) are rotatably mounted on the side of the mounting platform 64. The two synchronous pulleys 2 (71) are located on the same horizontal plane, with synchronous pulley 1 (7) positioned below the two synchronous pulleys 2 (71). A synchronous belt 72 is wound around synchronous pulley 1 (7) and the two synchronous pulleys 2 (71). A moving block 73 is fixed to the side of the sliding base 66. The synchronous belt 72 passes through the moving block 73 and is fixedly connected to the moving block 73. A motor 2 (74) is fixed to the side of the mounting platform 64. The output shaft of motor 2 (74) is fixedly connected to one end of synchronous pulley 1 (7).
[0038] The implementation principle of a rubber coating device in an embodiment of the present application is as follows: when it is necessary to coat an elliptical wire with rubber, the belt 62 is sleeved on the mounting shaft 61, and the conveying end of the belt 62 is passed around multiple transmission rollers 63 in sequence and through two through-ports 2 69, and the conveying end of the belt 62 is placed on the sliding seat 66, and the cylinder 1 67 is started, so that the piston rod of the cylinder 1 67 drives the fixed block to move downward, so that the fixed block presses the belt 62 on the sliding seat 66, and then the motor 2 74 is started, so that the output shaft of the motor 2 74 drives the synchronous belt 72 wheel 1 7 to rotate, so that the synchronous belt 72 wheel 1 7 drives the synchronous belt 72 to rotate, and the synchronous belt 72 drives the moving block 73 to move, so that the moving block 73 drives the sliding seat 66 to move, and the sliding seat 66 pulls the belt 62 to tighten the belt 62.
[0039] Then start motor 15, so that the output shaft of motor 15 drives the screw 14 to rotate, so that the screw 14 drives the transverse seat 12 to move along the length direction of the slide rail 11, so that the transverse seat 12 drives the installation box 4 to move, and adjusts the position of the installation box 4 for placing the wire. After the position of the installation box 4 is adjusted, the elliptical wire is placed on the two placement plates 23, so that the wire passes through the slot 42 of the winding gear 41, and then start the cylinder to drive the sliding block 33 to move, and the sliding block 33 drives the clamping plate 2 34 to move toward the direction close to the clamping plate 1 31, so that the clamping plate 1 31 and the clamping plate 2 34 clamp the two ends of the elliptical wire.
[0040] Then, the motor three 58 is started so that the output shaft of the motor three 58 drives the driving gear 59 to rotate, and the driving gear 59 drives the rack one 56 and the rack two 57 to move toward each other, so that the rack one 56 and the rack two 57 respectively drive the sliding plate one 5 and the sliding plate two 51 to move, and the sliding plate one 5 and the sliding plate two 51 respectively drive the clamping plate one 52 and the clamping plate two 53 to move toward each other, so that the clamping plate one 52 and the clamping plate two 53 clamp the elliptical wire, thereby reducing the possibility of the wire moving when the wire is coated with rubber.
[0041] Finally, the dual-axis motor 44 is started so that the output shaft of the dual-axis motor 44 drives the two power gears 45 to rotate, and the two power gears 45 drive the two winding gears 41. The winding gears 41 drive the connecting rod 43 to rotate around the wire, so that the connecting rod 43 drives the binding belt 62 to rotate around the wire during the rotation process, so that the binding belt 62 is wound around the wire, thereby improving the bundling efficiency of the wire.
[0042] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A rubber encapsulation device, characterized in that: The invention comprises a base (1), wherein both sides of the top surface of the base (1) are provided with positioning seats (2) for placing elliptical wires, and the positioning seats (2) are provided with a positioning mechanism for placing and positioning the elliptical wires, the top surface of the base (1) is provided with two slide rails (11) arranged parallel to each other, and the two slide rails (11) are provided with transverse seats (12), and the top of the transverse seats (12) is provided with a strap winding mechanism, and the base (1) is provided with a driving mechanism for driving the transverse seat (12) to move along the length direction of the slide rail (11), and the base (1) is provided with a strap conveying mechanism for conveying a strap (62).
2. The rubber coating equipment according to claim 1, characterized in that: The driving mechanism includes a motor (15) arranged on the top surface of the base (1), two mounting blocks (13) are fixed on the top surface of the base (1), a screw (14) is rotatably installed between the two mounting blocks (13), the screw (14) passes through the transverse seat (12), the screw (14) is threadedly connected to the transverse seat (12), and one end of the output shaft of the motor (15) is fixedly connected to one end of the screw (14).
3. The rubber coating equipment according to claim 2, characterized in that: The positioning seat (2) includes a support frame (21) fixed to the top surface of the base (1), a mounting plate (22) is fixed to the top surface of the support frame (21), a placement plate (23) is provided above the mounting plate (22), a plurality of support rods (24) are fixed to the bottom surface of the placement plate (23), the bottom ends of the support rods (24) are fixed to the bottom surface of the mounting plate (22), and the positioning mechanism includes a mounting seat (3) provided on the top surface of the mounting plate (22), one end of the top surface of the mounting seat (3) is fixed There is a clamping plate (31), the top surface of the mounting seat (3) is provided with a sliding groove (32), a sliding block (33) is slidably provided in the sliding groove (32), a clamping plate (34) is fixed on the top surface of the sliding block (33), a through-hole (35) is provided on the top surface of the placement plate (23), the top ends of the clamping plate (31) and the clamping plate (34) pass through the through-hole (35), and a cylinder for driving the sliding block (33) to move along the length direction of the mounting seat (3) is provided in the sliding groove (32).
4. The rubber coating equipment according to claim 3, characterized in that: A vertical plate (6) is provided on the side of the transverse seat (12), and the strap conveying mechanism includes a mounting shaft (61) fixed to the side of the vertical plate (6) away from one end of the transverse seat (12) for sleeve-mounting a strap (62), a plurality of transmission rollers (63) are rotatably mounted on the side of the vertical plate (6), and the strap (62) passes around the plurality of transmission rollers (63) in sequence, and a mounting platform (64) is fixed on the side of the transverse seat (12) away from the vertical plate (6), and the mounting platform (64) is A guide rail (65) is provided on the top surface, a sliding seat (66) is slidably provided on the guide rail (65), a cylinder (67) is fixed to one end surface of the sliding seat (66), a fixed plate (68) is fixed to the top end of the piston rod of the cylinder (67), the front end of the strap (62) passes through the strap winding mechanism and is fixed between the fixed plate (68) and the sliding seat (66), and a driving component for driving the sliding seat (66) to move is provided on the mounting platform (64).
5. The rubber coating equipment according to claim 4, characterized in that: The driving assembly includes a synchronous pulley 1 (7) and two synchronous pulley 2s (71) rotatably arranged on the side of the mounting platform (64), a synchronous belt (72) is wound around the synchronous pulley 1 (7) and the two synchronous pulley 2s (71), a moving block (73) is fixed on the side of the sliding seat (66), the synchronous belt (72) passes through the bottom end of the moving block (73), the synchronous belt (72) is fixedly connected to the moving block (73), a motor 2 (74) is arranged on the side of the mounting platform (64), and the output shaft of the motor 2 (74) is fixedly connected to one end of the synchronous pulley 1 (7).
6. The rubber coating equipment according to claim 5, characterized in that: The strap winding mechanism includes a mounting box (4) fixed to the top of the transverse displacement seat (12) and having an opening. The outer peripheral surface of the mounting box (4) is provided with two through-holes (69) for the strap (62) to pass through. Two winding gears (41) are provided in the mounting box (4). The winding gears (41) can rotate in the mounting box (4). A notch (42) is provided in the radial direction of the winding gears (41). A connecting rod (43) is fixed between the two winding gears (41). A driving member for driving the winding gears (41) to rotate is provided in the mounting box (4).
7. The rubber coating equipment according to claim 6, characterized in that: The driving member comprises a double-shaft motor (44) fixed to the inner bottom surface of the installation box (4), and power gears (45) are provided at both ends of the double-shaft motor (44), and the power gears (45) are meshed with the winding gear (41).
8. The rubber coating equipment according to claim 7, characterized in that: Both sides of the installation box (4) are slidably provided with a sliding plate 1 (5) and a sliding plate 2 (51), the top surface of the sliding plate 1 (5) is fixed with a clamping plate 1 (52), the top surface of the sliding plate 2 (51) is fixed with a clamping plate 2 (53), and the transverse displacement seat (12) is provided with a power member for driving the clamping plate 1 (52) and the clamping plate 2 (53) to move in a direction away from or close to each other.
9. The rubber coating equipment according to claim 8, characterized in that: The side of the sliding plate 1 (5) is provided with a mounting opening 1 (54), and the side of the sliding plate 2 (51) is provided with a mounting opening 2 (55). The power component includes a motor 3 (58) installed on the transverse displacement seat (12), and a driving gear (59) is provided on the output shaft of the motor 3 (58). The inner top surface of the mounting opening 1 (54) is provided with a rack 1 (56), and the inner bottom surface of the mounting opening 2 (55) is provided with a rack 2 (57). The driving gear (59) is respectively engaged with the rack 1 (56) and the rack 2 (57).
Citation Information
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