Cable painting equipment for cable processing
By designing a cable painting equipment that combines uniform coating components, position adjustment components and flow adjustment components, the problem of uneven distribution of paint liquid for cables of different specifications is solved, and the uniform supply of paint liquid and the improvement of the quality of cable finished products is achieved.
Patent Information
- Application Number
- CN202510390561.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-06-10
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing cable painting equipment is difficult to achieve uniform distribution and appropriate supply of paint liquid on cables of different specifications, which can easily lead to insufficient or excessive paint liquid, affecting the quality of the finished cable products.
A cable painting equipment for cable processing is designed, using a combination of uniform coating components, position adjustment components and flow adjustment components. Through the rotational movement of uniform coating components and the adjustment of position adjustment components, the brushing parts are in close contact with the outer wall of the cable; at the same time, through the adjustment of the flow adjustment components, the output of the paint liquid is synchronously adjusted to adapt to cables of different specifications.
A uniform painting of cables of different specifications is achieved to ensure that the paint liquid is fully distributed without wasting, and the quality and production efficiency of the finished cable products are improved.
Smart Images

Figure CN120115344A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable processing, and in particular to a cable painting device for cable processing. Background Art
[0002] A cable is usually a rope-like cable formed by stranding several or several groups of wires (at least two wires in each group). The wires in each group are insulated from each other and are often twisted around a central wire. The whole is covered with a highly insulating covering layer, having the characteristics of conducting electricity inside and being insulated outside; during the production process of some cables, it is necessary to paint the cable to form a uniformly thick insulating protective layer on its surface to prevent the insulation of the equipment from being damaged mechanically and from being eroded by the atmosphere and chemical drugs. By painting the protective covering layer on the surface of the cable, the safety of the cable can be effectively improved.
[0003] For example, Chinese Patent Publication No. CN114789106A discloses an insulating coating painting device for cable production, including a cable and a machine base. The cable is tensioned under the cooperation of a pay-off roller and a take-up roller and moves towards the take-up roller. A spraying cylinder and a dust-proof cylinder are fixedly installed on the top of the machine base through a support seat. A spraying mechanism for painting the cable all around is installed inside the spraying cylinder, and a spreading mechanism for spreading the coating evenly is rotatably installed between the spraying cylinder and the dust-proof cylinder. A cleaning mechanism is installed on one side of the spraying cylinder away from the dust-proof cylinder, and a drying mechanism is installed on one side of the dust-proof cylinder away from the spraying cylinder. The structure of the present invention is concise and reasonably designed. While achieving comprehensive and uniform spraying of the cable, it can effectively avoid the blockage of the spray head and improve the quality of the cable finished product.
[0004] After spraying the surface of the cable through multiple spray heads set in the above application, the paint liquid on the surface of the cable is spread evenly by a spreading brush rotating around the cable. Although the spreading brush can adjust its position to ensure contact with the outer wall of the cable, facilitating the even spreading of the coating on the outer walls of cables of different specifications, the required amount of paint on the surfaces of cables of different thickness specifications is different. It is difficult to synchronously adjust the paint application amount for different cables while adjusting the spreading brush, which easily causes missed painting due to insufficient paint liquid or excessive dripping and waste of paint liquid due to too much paint liquid.
[0005] Therefore, it is necessary to provide a cable painting device for cable processing to solve the above technical problems. Summary of the Invention
[0006] The purpose of the present invention is to provide a cable painting device for cable processing to solve the problems raised in the above background art.
[0007] To achieve the above object, the solution of the present invention to solve the above technical problems is as follows: A cable painting device for cable processing, including a housing, an outer sleeve is fixed on the inner bottom wall of the housing, and a uniform painting component for uniformly painting the surface of the cable is rotatably connected inside the outer sleeve. A position adjustment component for adjusting the uniform painting component to be suitable for painting cables of different thicknesses is provided on the uniform painting component, and a flow adjustment component for synchronously adjusting the paint output in cooperation with the position adjustment component to adapt to cables of different thicknesses is provided on the uniform painting component.
[0008] As a further solution of the present invention, the uniform painting component includes an inner connecting ring block rotatably connected inside the outer sleeve through a bearing. A painting brush head that can rotate synchronously with the inner connecting ring block is connected to the inner connecting ring block. Brush hairs are provided on the side of the painting brush head close to the center of the outer sleeve. A cavity is opened inside the painting brush head, and a plurality of paint outlets that are misaligned with the brush hairs and communicate with the cavity are opened on the side of the painting brush head.
[0009] As a further solution of the present invention, a through groove is opened inside the inner connecting ring block, a through inlet that matches the through groove is opened at the top of the outer sleeve, a paint storage bucket is fixed on the top of the housing, and a paint inlet pipe is connected between the output end of the paint storage bucket and the through inlet. A first connecting pipe is fixed inside the through groove, a second connecting pipe that communicates with the through groove is connected inside the first connecting pipe, and the painting brush head is fixed at the end of the second connecting pipe and the second connecting pipe is communicated with the cavity.
[0010] As a further solution of the present invention, a rubber pad is provided between the inner connecting ring block and the inner side wall of the outer sleeve. The rubber pad is fixedly attached to the inner side wall of the outer sleeve, and a through opening that communicates with the through inlet is opened on the rubber pad.
[0011] As a further solution of the present invention, a toothed ring is fixed on one end of the inner connecting ring block, a second motor is fixed on the outer side wall of the outer sleeve, and a first gear that meshes with the toothed ring is fixed on the output end of the second motor.
[0012] As a further solution of the present invention, the position adjustment component includes a head seat fixed on the outer side wall of the first connecting pipe away from the inner connecting ring block. The second connecting pipe is slidably inserted inside the first connecting pipe and an external thread is provided on the outer side wall of the second connecting pipe. A nut sleeve is rotatably connected inside the head seat, the nut sleeve is in threaded cooperation with the outer side wall of the second connecting pipe, and a plurality of annularly distributed convex ribs are provided on the outer side wall of the nut sleeve.
[0013] As a further solution of the present invention, a rubber sleeve is fixedly attached to the outer side wall of the second connecting pipe away from the painting brush head, and the rubber sleeve is attached to the inner side wall of the first connecting pipe.
[0014] As a further solution of the present invention, a convex column is fixed on the inner side wall of the first connecting pipe. The convex column is located at one end of the first connecting pipe far from the inner connecting ring block. A guiding groove slidably adapted to the convex column is provided on the side surface of the second connecting pipe.
[0015] As a further solution of the present invention, the flow regulating assembly includes a paint conveying channel arranged inside the second connecting pipe. A chute perpendicular to the paint conveying channel is provided on the paint conveying channel, and a regulating insertion rod is slidably inserted into the chute. A pressure regulating plate slidably matched with the end of the regulating insertion rod is fixed on the outer side wall of the first connecting pipe, and the regulating insertion rod is pressed and adjusted by the pressure regulating plate.
[0016] As a further solution of the present invention, a limiting convex plate is fixed on the side surface of the regulating insertion rod. A spring is sleeved on the side surface of the regulating insertion rod and is located between the limiting convex plate and the outer side wall of the second connecting pipe. An arc surface end is provided at the end of the regulating insertion rod that is slidably matched with the pressure regulating plate.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0018] 1. During the process of the cable passing through and moving from the center of the outer casing, by arranging the uniform coating assembly to rotate around the cable, by utilizing the rotational movement, the uniform coating assembly automatically and intermittently discharges a small amount of paint onto the surface of the cable each time. By arranging the uniform coating assembly to rotate around the cable to smooth the paint on the surface of the cable, the paint coating on the outer wall of the cable is evenly smeared, so that the paint is evenly smeared and distributed over each position on the surface of the cable, improving the uniformity and comprehensiveness of cable painting and the quality of the cable finished product;
[0019] 2. By arranging the position adjusting assembly, the painting member in the uniform coating assembly can be adjusted, so that the position of the painting member in the uniform coating assembly can be adjusted according to the sizes of different cables, ensuring that the painting member is always in contact with the outer wall of the cable, ensuring a good effect of smoothing the paint on the surface of the cable, effectively expanding the applicable range of the overall device and improving the overall applicability. By adjusting the painting member in the uniform coating assembly to have a stable contact pressure with the cable surface, the uniform coating of the paint and the consistency of the paint film thickness are ensured, further improving the quality of the cable finished product;
[0020] 3. When adjusting the position of the painting member in the uniform coating assembly for cables of different specifications and sizes, through the cooperation of the position adjusting assembly and the flow regulating assembly, the output amount of the paint in the uniform coating assembly is adjusted, that is, the amount of paint output onto the surface of the cable each time is synchronously adjusted, so as to synchronously adjust the amount of paint output onto the cable while adjusting the position of the painting member in the uniform coating assembly, ensuring that precise paint supply can be obtained for cables of different thicknesses, avoiding missed coating caused by insufficient paint and preventing waste and dripping caused by excessive paint, and being applicable to comprehensively painting the surfaces of cables of different thickness specifications. Brief Description of the Drawings
[0021] The present invention will be further described below in conjunction with the drawings and embodiments:
[0022] Figure 1 is a three-dimensional view of the overall structure of the present invention Figure 1 ;
[0023] Figure 2 is a three-dimensional view of the overall structure of the present invention Figure 2 ;
[0024] Figure 3 is a front view schematic diagram of the overall structure of the present invention;
[0025] Figure 4 is a partial structure schematic diagram of the coating leveling component of the present invention;
[0026] Figure 5 is a sectional structure schematic diagram of the coating leveling component of the present invention;
[0027] Figure 6 is Figure 5 an enlarged view of the structure at A in
[0028] Figure 7 is a partial structure schematic diagram of the flow regulating component of the present invention Figure 1 ;
[0029] Figure 8 is a partial structure schematic diagram of the position adjusting component of the present invention;
[0030] Figure 9 is a sectional structure schematic diagram of the flow regulating component of the present invention;
[0031] Figure 10 is a partial structure schematic diagram of the flow regulating component of the present invention Figure 2 ;
[0032] Figure 11 is a partial structure schematic diagram of the convex column of the present invention.
[0033] In the drawings, the list of components represented by each reference numeral is as follows:
[0034] 1. Uniform coating assembly; 101. First connecting pipe; 102. Second connecting pipe; 103. Coating brush head; 104. Cavity; 105. Bristles; 106. Paint outlet; 107. Through groove; 108. Paint inlet pipe; 109. Rubber pad; 110. Inlet and through port; 111. Tooth ring; 112. First gear; 113. Inner connecting ring block; 2. Position adjustment assembly; 201. End seat; 202. Nut sleeve; 203. Rubber sleeve; 204. Convex column; 3. Flow adjustment assembly; 301. Adjusting insertion rod; 302. Limit convex plate; 303. Spring; 304. Paint conveying channel; 305. Pressure adjustment plate; 306. Arc end; 4. Outer shell; 5. Outer bracket; 6. Conduction roller; 7. Second gear; 8. First motor; 9. Shell; 10. Paint storage bucket; 11. Second motor. Detailed implementation manners
[0035] The present invention will be further described below in conjunction with embodiments.
[0036] Please refer to Figure 1-11, the present invention provides a cable painting device for cable processing, including a housing 9. An outer sleeve 4 is fixed on the inner bottom wall of the housing 9. A uniform coating component 1 for uniformly painting the surface of the cable is rotatably connected inside the outer sleeve 4. A position adjustment component 2 for adjusting the uniform coating component 1 to be suitable for painting cables of different thicknesses is provided on the uniform coating component 1. A flow adjustment component 3 for synchronously adjusting the paint output in cooperation with the position adjustment component 2 to adapt to cables of different thicknesses is provided on the uniform coating component 1. Two outer brackets 5 symmetrically distributed on both sides of the outer sleeve 4 are fixed on the inner bottom wall of the housing 9. Two mutually cooperating conveying rollers 6 are rotatably connected inside the outer brackets 5. Second gears 7 are fixed at the ends of both conveying rollers 6 and the two second gears 7 are meshed with each other. A first motor 8 for driving one of the conveying rollers 6 to rotate is fixed at the bottom of the outer bracket 5. When in use, the cable to be painted is passed through between the two conveying rollers 6. The first motor 8 drives one of the conveying rollers 6 to rotate, so that the two conveying rollers 6 are driven to rotate in opposite directions through the cooperation of the two second gears 7, and the two conveying rollers 6 guide and convey the cable, so that the cable passes through the center of the outer sleeve 4 and is continuously conveyed and moved. During the process of the cable passing through the center of the outer sleeve 4 and moving, the provided uniform coating component 1 makes a rotational movement around the cable. By using the rotational movement, the uniform coating component 1 automatically intermittently discharges a small amount of paint liquid onto the surface of the cable once. The provided uniform coating component 1 rotates around the cable to spread the paint liquid on the surface of the cable evenly, smear the paint coating on the outer wall of the cable evenly, so that the paint liquid is evenly smeared and distributed on each position of the surface of the cable, improving the uniformity and comprehensiveness of cable painting and the quality of cable products. On the other hand, the provided uniform coating component 1 makes the paint liquid be released onto the cable in small amounts and multiple times, avoiding too large a thickness of the painted smear, effectively reducing the waste of paint liquid and saving costs; the provided position adjustment component 2 can adjust the brushing member in the uniform coating component 1, so that the position of the brushing member in the uniform coating component 1 can be adjusted according to the sizes of different cables, ensuring that the brushing member is always in contact with the outer wall of the cable, ensuring a good effect of smearing the paint on the surface of the cable, effectively improving the applicable range of the overall device and the overall practicality. By adjusting the brushing member in the uniform coating component 1 to have a stable contact pressure with the surface of the cable, the uniform coating of the paint and the consistency of the paint film thickness are ensured, further improving the quality of cable products;Cables of different thickness specifications have different surface areas. When adjusting the position of the brushing member in the uniform coating assembly 1 for cables of different specifications and sizes, the flow rate adjusting assembly 3 is driven to work through the position adjusting assembly 2. Thus, the output volume of the paint liquid in the uniform coating assembly 1 can be adjusted through the provided flow rate adjusting assembly 3, that is, the amount of paint liquid output to the cable surface per single time is synchronously adjusted, which is applicable to comprehensively painting the surfaces of cables of different thickness specifications. Therefore, while adjusting the position of the brushing member in the uniform coating assembly 1, the amount of paint liquid output to the cable is synchronously adjusted, ensuring that cables of different thicknesses can obtain precise paint liquid supply, avoiding missed painting caused by insufficient paint liquid, and preventing waste and dripping caused by excessive paint liquid.
[0037] Further, as Figure 2 、 Figure 3 、 Figure 5 、 Figure 8 and Figure 9 shown, specifically, the uniform coating assembly 1 includes an inner connecting ring block 113 rotatably connected inside an outer casing 4 through a bearing. A coating brush head 103 that can rotate synchronously with the inner connecting ring block 113 is connected to the inner connecting ring block 113. On the side of the coating brush head 103 close to the center of the outer casing 4, bristles 105 are provided. A cavity 104 is formed inside the coating brush head 103. A plurality of paint outlets 106 that are misaligned with the bristles 105 and communicate with the cavity 104 are formed on the side of the coating brush head 103. A toothed ring 111 is fixed at one end of the inner connecting ring block 113. A second motor 11 is fixed on the outer side wall of the outer casing 4. A first gear 112 meshing with the toothed ring 111 is fixed on the output end of the second motor 11. During the process of the cable passing through the center of the outer casing 4 and moving, the output end of the second motor 11 drives the first gear 112 to rotate. Thus, the inner connecting ring block 113 is driven to rotate through the cooperation of the first gear 112 and the toothed ring 111. The coating brush head 103 is driven by the rotating inner connecting ring block 113 to perform a rotational motion around the cable. At this time, the bristles 105 are in contact with the cable surface. A certain amount of paint liquid is stored inside the cavity 104. When the coating brush head 103 rotates to the top position of the outer casing 4, the paint liquid in the cavity 104 can be released and flow out through the plurality of paint outlets 106 into the bristles 105 and onto the cable surface, forming an automatic intermittent outflow of a small amount of paint liquid to the cable surface per single time. The paint liquid on the cable surface is spread evenly by the bristles 105 on the coating brush head 103 rotating around the cable, and the paint coating on the outer wall of the cable is evenly applied, enabling the paint liquid to be comprehensively applied and distributed to every position on the cable surface, improving the uniformity and comprehensiveness of cable painting and the quality of cable finished products.
[0038] Further, as Figure 5 、 Figure 7 and Figure 9As shown, it is worth specifically explaining that a through groove 107 is formed inside the inscribed ring block 113, and an inlet through port 110 matching the through groove 107 is formed at the top end of the outer sleeve 4. A paint storage bucket 10 is fixed on the top end of the outer shell 9. A paint inlet pipe 108 is connected between the output end of the paint storage bucket 10 and the inlet through port 110. A first connecting pipe 101 is fixed inside the through groove 107. A second connecting pipe 102 communicating with the through groove 107 is connected inside the first connecting pipe 101. The painting brush head 103 is fixed at the end of the second connecting pipe 102 and the second connecting pipe 102 is communicated with the cavity 104. The paint storage bucket 10 stores paint inside. At the same time, an electric heating plate is installed on the paint storage bucket 10 to heat the paint inside the paint storage bucket 10, so that the paint inside the paint storage bucket 10 always has good fluidity. When the inscribed ring block 113 rotates, when the port of the through groove 107 on the inscribed ring block 113 aligns with the inlet through port 110, due to the self-weight of the paint, a certain amount of paint inside the paint storage bucket 10 is sequentially transported to the inside of the cavity 104 of the painting brush head 103 through the paint inlet pipe 108, the inlet through port 110, the through groove 107, the first connecting pipe 101 and the second connecting pipe 102. When the painting brush head 103 moves to the top of the outer sleeve 4, a certain amount of paint inside the cavity 104 is completely released onto the surface of the cable through a plurality of paint outlet ports 106. When the painting brush head 103 rotates to the middle and bottom of the outer sleeve 4, there is no paint inside the painting brush head 103, avoiding the waste of the outflow of the paint inside the painting brush head 103, realizing the intermittent outflow of the paint onto the surface of the cable, enabling the paint to be released onto the cable in small amounts and multiple times, avoiding excessive painting thickness and reducing the waste of the paint. When the overall device fails and stops, by moving the painting brush head 103 to the bottom end of the outer sleeve 4, at this time the paint outlet port 106 faces upward, avoiding the dripping waste of the residual paint inside the painting brush head 103. At the same time, the residual paint on the bristles 105 can flow back into the inside of the painting brush head 103, and the dripping of the paint can be stopped at any time.
[0039] Further, as Figure 2 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 11As shown, it is worth specifically explaining that the position adjustment component 2 includes an end seat 201 fixed to the outer side wall of one end of the first connecting pipe 101 away from the inner connecting ring block 113. The second connecting pipe 102 is slidably inserted into the first connecting pipe 101, and an external thread is provided on the outer side wall of the second connecting pipe 102. A nut sleeve 202 is rotatably connected inside the end seat 201. The nut sleeve 202 is in threaded fit with the outer side wall of the second connecting pipe 102. A plurality of annularly distributed ribs are provided on the outer side wall of the nut sleeve 202. A convex column 204 is fixed to the inner side wall of the first connecting pipe 101. The convex column 204 is located at one end of the first connecting pipe 101 away from the inner connecting ring block 113. A guiding groove slidably adapted to the convex column 204 is formed on the side surface of the second connecting pipe 102. When painting cables of different specifications and sizes, by rotating the nut sleeve 202 and guiding and limiting the second connecting pipe 102 through the convex column 204 and the guiding groove at the same time, the rotating nut sleeve 202 can drive the second connecting pipe 102 to move and adjust, so as to adjust the distance between the painting brush head 103 and the center of the outer casing 4, and thus the position of the painting brush head 103 can be adjusted according to the sizes of different cables, ensuring that the bristles 105 are always in contact with the outer wall of the cable, ensuring a good effect of spreading the paint on the cable surface, effectively improving the applicable range of the overall device and the overall applicability. By adjusting the bristles 105 to have a stable contact pressure with the cable surface, the uniform coating of the paint and the consistency of the paint film thickness are ensured, further improving the quality of the cable finished product.
[0040] Furthermore, as Figure 7 , Figure 8 , Figure 9 and Figure 10As shown, it is worth explaining in detail that the flow regulating component 3 includes a paint delivery channel 304 arranged inside the second connecting tube 102, the paint delivery channel 304 is provided with a slide groove arranged perpendicular to the paint delivery channel 304, and an adjusting rod 301 is slidably inserted in the slide groove, and a pressure regulating plate 305 that slidably cooperates with the end of the adjusting rod 301 is fixed on the outer wall of the first connecting tube 101, and the adjusting rod 301 is pressed and adjusted by the pressure regulating plate 305; the surface areas of cables of different thicknesses are different. When adjusting the position of the painting brush head 103 for cables of different specifications and sizes, the moving second connecting tube 102 drives the adjusting rod 301 to move synchronously, so that the adjusting rod 301 and the pressure regulating plate 305 move relative to each other, and the end of the adjusting rod 301 It is always pressed against the side of the pressure adjustment plate 305, and the adjustment rod 301 is pressed through the pressure adjustment plate 305, so that the insertion length of the adjustment rod 301 in the paint supply channel 304 is adjusted by the pressure adjustment plate 305, and then the flow diameter of the paint supply channel 304 is adjusted in conjunction, so as to achieve synchronous adjustment of the amount of paint liquid input into the coating brush head 103 at a single time, that is, to adjust the amount of paint liquid output onto the cable surface at a single time, so that it is suitable for comprehensive painting of the surface of cables of different thicknesses, and to achieve synchronous adjustment of the amount of paint liquid output onto the cable while adjusting the position of the coating brush head 103, thereby ensuring that cables of different thicknesses can obtain accurate paint supply, avoiding missing paint caused by insufficient paint liquid, and preventing waste and dripping caused by excessive paint liquid.
[0041] Further as Figure 7 and Figure 9 As shown, it is worth explaining in detail that a limiting convex plate 302 is fixed on the side of the adjusting rod 301, and a spring 303 is sleeved on the side of the adjusting rod 301 and is located between the limiting convex plate 302 and the outer wall of the second connecting tube 102, and an arc surface end 306 is provided at the end of the adjusting rod 301 that slides with the pressure adjustment plate 305; during specific operation, the limiting convex plate 302 is pushed by the spring 303, thereby assisting in pushing the adjusting rod 301 to move in the opposite direction and reset, so that the end of the adjusting rod 301 is always pressed against the side of the pressure adjustment plate 305, and the contact friction between the end of the adjusting rod 301 and the pressure adjustment plate 305 is reduced by the arc surface end 306, thereby reducing the wear of parts.
[0042] The present invention has the following working process: when the cable passes through the center of the outer shell 4, the output end of the second motor 11 drives the first gear 112 to rotate, thereby driving the inner ring block 113 to rotate through the cooperation of the first gear 112 and the gear ring 111, and the rotating inner ring block 113 drives the smear brush head 103 to rotate around the cable, at which time the bristles 105 contact the surface of the cable, and when the through groove 107 port on the inner ring block 113 is aligned with the inlet port 110, a certain amount of paint liquid in the paint storage bucket 10 passes through the paint inlet pipe 108, the inlet port 110 in turn. The paint is added to the cavity 104 of the coating brush head 103 through the opening 110, the through groove 107, the first connecting tube 101 and the second connecting tube 102. When the coating brush head 103 rotates to the top position of the outer shell 4, the paint liquid in the cavity 104 is released to the inside of the brush bristles 105 and the surface of the cable through the multiple paint outlets 106. The paint liquid on the surface of the cable is evenly spread by the bristles 105 on the coating brush head 103 rotating around the cable, and the paint coating on the outer wall of the cable is evenly spread. When painting cables of different specifications and sizes, the nut sleeve 202 is rotated and the convex The column 204 and the guide groove guide and limit the second connecting tube 102, so that the rotating nut sleeve 202 can drive the second connecting tube 102 to move and adjust, thereby adjusting the distance between the coating brush head 103 and the center of the outer shell 4, so that the position of the coating brush head 103 can be adjusted according to the size of different cables, ensuring that the bristles 105 are always in contact with the outer wall of the cable, ensuring a good evenly applied effect on the paint on the cable surface, and the moving second connecting tube 102 drives the adjustment rod 301 to move synchronously, so that the adjustment rod 301 and the pressure adjustment plate 305 move relative to each other, and the adjustment rod 30 The end of 1 is always pressed against the side of the pressure adjustment plate 305, and the adjustment rod 301 is pressed by the pressure adjustment plate 305, so that the insertion length of the adjustment rod 301 in the paint delivery channel 304 is adjusted by the pressure adjustment plate 305, and then the flow diameter of the paint delivery channel 304 is adjusted in conjunction, so as to achieve synchronous adjustment of the amount of paint liquid input into the inside of the coating brush head 103 at a single time, that is, to adjust the amount of paint liquid output onto the cable surface at a single time, so that it is suitable for comprehensive painting of the cable surface of different thicknesses, and to achieve synchronous adjustment of the amount of paint liquid output onto the cable while adjusting the position of the coating brush head 103.
[0043] Further as Figure 5 and Figure 6 As shown, it is worth explaining in detail that a rubber pad 109 is arranged between the inner ring block 113 and the inner wall of the outer shell 4, the rubber pad 109 is fitted and fixed on the inner wall of the outer shell 4, and a through hole connected to the inlet 110 is opened on the rubber pad 109; during specific operation, the inner ring block 113 and the inner wall of the outer shell 4 have a certain sealing performance through the rubber pad 109.
[0044] Further as Figure 9As shown, it is worth explaining in detail that a rubber sleeve 203 is fixed on the outer wall of the end of the second connecting tube 102 away from the application brush head 103, and the rubber sleeve 203 is arranged to fit the inner wall of the first connecting tube 101; during specific operation, the gap between the inner wall of the first connecting tube 101 and the second connecting tube 102 is sealed by the set rubber sleeve 203, so that the second connecting tube 102 can be moved and adjusted in the first connecting tube 101 while the first connecting tube 101 and the second connecting tube 102 have a certain sealing property, thereby preventing the paint liquid from leaking from the gap between the first connecting tube 101 and the second connecting tube 102.
[0045] In summary: in the process of the cable passing through the center of the outer shell 4, the coating component 1 is set to rotate around the cable, and the rotational motion is used to make the coating component 1 automatically and intermittently flow a small amount of paint liquid onto the cable surface at a time, and the coating component 1 is set to rotate around the cable to evenly spread the paint liquid on the cable surface, and the paint coating on the outer wall of the cable is evenly spread, so that the paint liquid is fully spread and distributed to each position on the surface of the cable, thereby improving the uniformity and comprehensiveness of the cable painting, and improving the quality of the finished cable. On the other hand, the coating component 1 is set to release the paint liquid to the cable in small amounts and multiple times, avoiding excessive thickness of the paint, effectively reducing the waste of paint liquid, and saving costs; the adjustment component 2 can be used to adjust the brush member in the coating component 1, so that the position of the brush member in the coating component 1 can be adjusted according to the size of different cables, ensuring that the brush member is always in contact with the outer wall of the cable, ensuring good even spreading of the paint on the cable surface The effect can effectively improve the application scope of the overall device and improve the overall practicality. By adjusting the brush piece in the uniform coating component 1 to have a stable contact pressure with the cable surface, the uniform coating of the paint and the consistency of the paint film thickness are ensured, and the quality of the finished cable is further improved. The surface areas of cables of different thicknesses are different. When adjusting the position of the brush piece in the uniform coating component 1 for cables of different specifications and sizes, the flow adjustment component 3 is driven by the position adjustment component 2 to work, so that the output of the paint liquid in the uniform coating component 1 can be adjusted by the set flow adjustment component 3, that is, the amount of paint liquid output to the cable surface at a single time is adjusted synchronously, which is suitable for comprehensive painting of the surfaces of cables of different thicknesses, so that the amount of paint liquid output to the cable can be adjusted synchronously while adjusting the position of the brush piece in the uniform coating component 1, ensuring that cables of different thicknesses can obtain accurate paint supply, avoiding missing paint caused by insufficient paint liquid and preventing waste and dripping caused by excessive paint liquid.
[0046] The first motor 8 and the second motor 11 can be purchased on the market. The first motor 8 and the second motor 11 are equipped with a power supply, which is a mature technology in the field and has been fully disclosed, so it is not repeated in the specification.
Claims
1. A cable coating device for cable processing, comprising a housing (9), characterized in that: An outer shell (4) is fixed on the inner side wall of the bottom end of the outer shell (9); a coating component (1) for uniformly coating the surface of the cable is rotatably connected inside the outer shell (4); a positioning component (2) for adjusting the coating component (1) to be suitable for coating cables of different thicknesses; and a flow regulating component (3) for cooperating with the positioning component (2) to synchronously adjust the amount of paint output to adapt to cables of different thicknesses is provided on the coating component (1).
2. The cable coating equipment for cable processing according to claim 1, characterized in that: The leveling coating assembly (1) comprises: An inner ring block (113) is rotatably connected to the inside of the outer shell (4); The smear brush head (103) is connected to the inner ring block (113) and can rotate synchronously with the inner ring block (113); Bristles (105) are fixed on the side surface of the smear brush head (103) close to the center of the outer shell (4); A cavity (104) is provided inside the smear brush head (103); A plurality of paint outlets (106) are provided on the side of the paint brush head (103) and are communicated with the cavity (104).
3. The cable coating equipment for cable processing according to claim 2, characterized in that: The leveling coating assembly (1) further comprises: A through groove (107) is provided inside the inner ring block (113); An inlet (110) is provided at the top of the outer shell (4) and is matched with the through slot (107); A paint inlet pipe (108) is connected to the inlet port (110); A first connecting pipe (101) is fixed in the through groove (107); The second connecting tube (102) is inserted into the first connecting tube (101) and communicated with the through groove (107), and the smear brush head (103) is fixed to the end of the second connecting tube (102).
4. The cable coating equipment for cable processing according to claim 3, characterized in that: The leveling coating assembly (1) further comprises: The rubber pad (109) is arranged between the inner ring block (113) and the inner side wall of the outer shell (4) and is provided with a through hole communicating with the inlet (110).
5. The cable painting equipment for cable processing according to claim 3, characterized in that: The leveling coating assembly (1) further comprises: A gear ring (111) is fixed to one end of the inner ring block (113); The first gear (112) is meshed with the gear ring (111).
6. The cable painting equipment for cable processing according to claim 3, characterized in that: The positioning component (2) comprises: An end seat (201) is fixed to an end of the first connecting pipe (101) away from the inner ring block (113); The nut sleeve (202) is rotatably connected to the end seat (201) and is threadably matched with the thread of the outer wall of the second connecting pipe (102); A convex column (204) is fixed on the inner wall of the first connecting tube (101); The guide groove is formed on the outer side surface of the second connecting tube (102) and is slidably matched with the protruding column (204).
7. The cable painting equipment for cable processing according to claim 6, characterized in that: The positioning component (2) further comprises: The rubber sleeve (203) is fixed on the outer wall of one end of the second connecting tube (102) away from the smear brush head (103), and the gap between the second connecting tube (102) and the first connecting tube (101) is sealed by the rubber sleeve (203).
8. The cable painting equipment for cable processing according to claim 8, characterized in that: The flow regulating component (3) comprises: A paint delivery channel (304) is arranged inside the second connecting pipe (102); The adjusting rod (301) is inserted into the paint delivery channel (304) and arranged perpendicular to the paint delivery channel (304); The pressure-adjusting plate (305) is fixed on the outer side wall of the first connecting tube (101), and the end of the adjusting rod (301) is pressed and matched with the side surface of the pressure-adjusting plate (305).
9. The cable painting equipment for cable processing according to claim 9, characterized in that: The flow regulating component (3) further comprises: A limiting convex plate (302) is fixed on the side surface of the adjusting and inserting rod (301); The spring (303) is sleeved on the side surface of the adjusting and inserting rod (301) and is located between the limiting convex plate (302) and the outer side wall of the second connecting pipe (102).
Citation Information
Patent Citations
Insulating coating painting device for cable production
CN114789106A