Dip dyeing device for electric power ribbon processing
By designing a convenient installation and disassembly mechanism for electric ribbon tubes and a shaking and pressing mechanism for the dyeing tank, the problems of inconvenient installation and poor dyeing effect in the dyeing device for electric ribbon processing are solved, achieving a high-efficiency and uniform dyeing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-03-20
AI Technical Summary
In existing electrical ribbon dyeing equipment, the installation and disassembly of the electrical ribbon tube are inconvenient and the dyeing effect is poor, resulting in uneven color and low product quality.
A dyeing device was designed, comprising a frame, an adaptive wiping mechanism, a reciprocating pressing mechanism, a material cylinder self-locking mechanism, and a dyeing tank swinging mechanism. The self-locking mechanism facilitates the installation and disassembly of the electric ribbon cylinder, and the combination of the shaking of the dyeing tank and the reciprocating motion of the pressing mechanism achieves a more efficient dyeing effect.
This technology enables convenient installation and disassembly of electric ribbon cartridges, improving dyeing efficiency and effectiveness, and ensuring color uniformity and product quality.
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Figure CN224010255U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to point force ribbon processing is with the dyeing technical field, concretely is a kind of dyeing device for power ribbon processing. BACKGROUND
[0002] In present daily life, electricity is a very important thing, and the operation of all electrical appliances cannot be separated from it. As a large power consumer, China has a very large power line scale. In order to facilitate the management and maintenance of power lines, power ribbons are usually used for differentiation and identification.
[0003] Power ribbons are usually made of polyester material, and then cut into power ribbons. The dyeing of power ribbons is usually completed using a power ribbon dyeing device.
[0004] In the existing power ribbon dyeing device, the power ribbon cylinder is usually connected and fixed to the power ribbon dyeing device by bolts and nuts, which is inconvenient to disassemble. At the same time, the dyeing effect is not good enough, which can easily cause uneven color and low product quality. Therefore, we propose a power ribbon dyeing device. UTILITY MODEL CONTENT
[0005] The utility model solves the technical problem of overcoming the existing defects and provides a power ribbon dyeing device. The installation and disassembly of the power ribbon cylinder are convenient. The special structure makes the dyeing efficiency higher and the effect better, which can effectively solve the problems in the background technology.
[0006] To achieve the above purpose, the utility model provides the following technical scheme: a power ribbon dyeing device, comprising a rack, a self-adaptive wiping mechanism, a reciprocating pressing mechanism, a material cylinder self-locking mechanism and a dyeing tank oscillating mechanism;
[0007] Rack: the inside front surface right side is fixedly connected with fixed cylinder, the inside front surface left side of rack is rotatably connected with rotating cylinder, and the bottom wall right side of rack is provided with movable dyeing tank;
[0008] Self-adaptive wiping mechanism: it is fixedly connected to the inside upper and lower surfaces of the rack;
[0009] Reciprocating pressing mechanism: it is fixedly connected to the inside rear surface of the rack;
[0010] Material cylinder self-locking mechanism: it is fixedly connected to the inside rear surface of the rack;
[0011] Dyeing tank oscillating mechanism: it is fixedly connected to the inside right end of the rack, and the dyeing tank oscillating mechanism is installed in cooperation with the dyeing tank;
[0012] The inside left side of the rack is provided with a drying chamber, the inside upper surface of the drying chamber is fixedly connected with a heating wire, the inside front end of the drying chamber is fixedly connected with an air inlet fan, the inside rear end of the drying chamber is fixedly connected with an exhaust fan, the left and right outer surfaces of the drying chamber are symmetrically provided with guide grooves, the front and rear surfaces of the rack are provided with air inlets corresponding to the air inlet fan and the exhaust fan, the input ends of the heating wire, the air inlet fan and the exhaust fan are electrically connected with the output end of the external single-chip microcomputer, and the electric power ribbon is guided and dried.
[0013] Further, the self-adaptive wiping mechanism comprises a connecting block one, a connecting rod one, a first sliding cylinder, a spring one, a sponge wiping cylinder, a supporting rod and a connecting block two, the connecting block one is fixedly connected to the inner upper and lower surfaces of the rack, one end of the connecting block one close to the center of the box body is connected with the connecting rod one through a pin shaft transmission, one end of the connecting rod one close to the center of the rack is slidably connected with the first sliding cylinder, the spring one is arranged between the end of the connecting rod one and the inner wall of the first sliding cylinder, one end of the first sliding cylinder close to the center of the rack is rotatably connected with the supporting rod through a pin shaft, the sponge wiping cylinder is fixedly connected to one end of the supporting rod close to the center of the box body, the connecting block two is fixedly connected to the inner upper and lower surfaces of the rack, and one end of the supporting rod away from the center of the box body is rotatably connected with the adjacent connecting block two through a pin shaft, so that the excess dyeing liquid on the surface of the electric power ribbon is wiped.
[0014] Further, the reciprocating pressing mechanism comprises a rotating block, a pressing rod, a spring two and a sliding groove one, the sliding groove one is symmetrically arranged on the inner rear wall surface of the rack, the pressing rod is slidably connected to the inside of the sliding groove one, the pressing rod is in Z-shaped structure, the spring two is arranged between the upper end of the rod body of the pressing rod and the bottom wall of the sliding groove one, and the inner rear wall surface of the rack is rotatably connected with a transmission rod, and the front end of the transmission rod is fixedly connected with the rotating block, so that the electric power ribbon is swung up and down in the dyeing liquid and is fully dyed.
[0015] Further, the material cylinder self-locking mechanism comprises a second sliding cylinder, a spring three, a sliding groove two and a fixed rod, the fixed rod is fixedly connected to the right side of the inner rear surface of the rack, the front end inner wall of the fixed rod is provided with the sliding groove two, the second sliding cylinder is slidably connected to the inside of the sliding groove two, and the spring three is arranged between the second sliding cylinder and the fixed rod, so that the electric power ribbon cylinder and the electric power ribbon collecting cylinder are conveniently installed and dismounted.
[0016] Further, the inner lower surface right side of the rack is fixedly connected with symmetrically distributed sliding rails one, the upper surfaces of the sliding rails one are slidably connected with sliding blocks one, the upper surfaces of the sliding blocks one are fixedly connected with the bottom surface of the dyeing tank, and the upper surface of the dyeing tank is fixedly connected with uniformly distributed guide columns, so as to guide the movement of the dyeing tank and the electric power ribbon.
[0017] Further, the dip tank swing mechanism comprises a slide rail two, a sliding block two, a connecting rod two and a rotating rod, the slide rail two is fixedly connected to the rear surface of the inside of the frame, the front surface of the slide rail two is slidably connected with the sliding block two, the front surface of the sliding block two is fixedly connected with the dip tank, the right surface of the sliding block two is rotatably connected with the connecting rod two through a pin shaft, the right end of the connecting rod two is drivingly connected with the rotating rod through a pin shaft, the dip tank is shaken, the dip liquid is more uniform, and the dipping is more efficient.
[0018] Further, the dip tank swing mechanism comprises a slide rail two, a sliding block two, a connecting rod two and a rotating rod, the slide rail two is fixedly connected to the rear surface of the inside of the frame, the front surface of the slide rail two is slidably connected with the sliding block two, the front surface of the sliding block two is fixedly connected with the dip tank, the right surface of the sliding block two is rotatably connected with the connecting rod two through a pin shaft, the right end of the connecting rod two is drivingly connected with the rotating rod through a pin shaft, the dip tank is shaken, the dip liquid is more uniform, and the dipping is more efficient.
[0019] Further, the dip tank swing mechanism comprises a slide rail two, a sliding block two, a connecting rod two and a rotating rod, the slide rail two is fixedly connected to the rear surface of the inside of the frame, the front surface of the slide rail two is slidably connected with the sliding block two, the front surface of the sliding block two is fixedly connected with the dip tank, the right surface of the sliding block two is rotatably connected with the connecting rod two through a pin shaft, the right end of the connecting rod two is drivingly connected with the rotating rod through a pin shaft, the dip tank is shaken, the dip liquid is more uniform, and the dipping is more efficient.
[0020] Further, the dip tank swing mechanism comprises a slide rail two, a sliding block two, a connecting rod two and a rotating rod, the slide rail two is fixedly connected to the rear surface of the inside of the frame, the front surface of the slide rail two is slidably connected with the sliding block two, the front surface of the sliding block two is fixedly connected with the dip tank, the right surface of the sliding block two is rotatably connected with the connecting rod two through a pin shaft, the right end of the connecting rod two is drivingly connected with the rotating rod through a pin shaft, the dip tank is shaken, the dip liquid is more uniform, and the dipping is more efficient.
[0021] Further, the dip tank swing mechanism comprises a slide rail two, a sliding block two, a connecting rod two and a rotating rod, the slide rail two is fixedly connected to the rear surface of the inside of the frame, the front surface of the slide rail two is slidably connected with the sliding block two, the front surface of the sliding block two is fixedly connected with the dip tank, the right surface of the sliding block two is rotatably connected with the connecting rod two through a pin shaft, the right end of the connecting rod two is drivingly connected with the rotating rod through a pin shaft, the dip tank is shaken, the dip liquid is more uniform, and the dipping is more efficient.
[0022] Compared with the prior art, the dip tank processing device for power ribbon has the following advantages:
[0023] 1, the right side second slide cylinder is pressed to the rear surface of the frame, at this time, the second slide cylinder is forced to move to the rear surface of the frame, the spring three is contracted under stress, one end of the external power ribbon cylinder is sleeved on the outer surface of the fixed cylinder, the other end of the power ribbon cylinder is aligned with the rear end of the second slide cylinder, at this time, the second slide cylinder is loosened, the spring three is relaxed, and the second slide cylinder is pushed to move to the middle of the inside of the frame, the self-locking of the power ribbon cylinder is completed, the left second slide cylinder is pressed to the rear surface of the frame at this time, the second slide cylinder is forced to move to the rear surface of the frame, the spring three is contracted under stress, one end of the external power ribbon collecting cylinder is sleeved on the outer surface of the fixed cylinder, the other end of the power ribbon collecting cylinder is aligned with the rear end of the second slide cylinder, at this time, the second slide cylinder is loosened, the spring three is relaxed, and the second slide cylinder is pushed to move to the middle of the inside of the frame, the self-locking of the power ribbon collecting cylinder is completed, the installation and dismounting of the power ribbon cylinder are more convenient, and the power ribbon processing efficiency is greatly improved.
[0024] 2, by external single-chip microcomputer control motor three operation, the output shaft of motor three rotation drives the rotation of the rotating rod, the one end of the connecting rod two and the rotating rod is connected to make circular motion, because the other end of the connecting rod two and the slider two are rotatably connected, when the one end of the connecting rod two and the rotating rod is moved to the left half circle, the connecting rod two pushes the slider two to move left, when the one end of the connecting rod two and the rotating rod is moved to the right half circle, the connecting rod two pulls the slider two to move right, so that the dip tank shakes left and right, motor two operation, the output shaft of motor two rotates, drives the rotation of the rotating block, when the protruding part of the rotating block and the protruding part of the upper end of the pressing rod are in contact, the pressing rod is pressed downward along the sliding groove one, spring two shrinks, the lower end of the long rod of the pressing rod presses the power ribbon to dip into the deep part of the dip tank, when the rotating block continues to rotate and separates from the upper end of the pressing rod, spring two relaxes, pushes the pressing rod to move up, the power ribbon is floated by buoyancy, the shaking design of the dip tank makes the dip liquid more uniform, the flowability is stronger, at the same time, the power ribbon moves up and down in the dip liquid, makes the dip more fully and uniformly. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is structure schematic diagram of the utility model;
[0026] Figure 2 It is front view sectional structure schematic diagram of the utility model;
[0027] Figure 3 It is dip tank swing mechanism sectional structure schematic diagram of the utility model;
[0028] Figure 4 It is right view sectional structure schematic diagram of the utility model;
[0029] Figure 5 It is left view structure schematic diagram of the utility model;
[0030] Figure 6 It is rear view structure schematic diagram of the utility model;
[0031] Figure 7 It is structure schematic diagram of the utility model A place enlargement;
[0032] Figure 8 It is structure schematic diagram of the utility model B place enlargement.
[0033] In the figure: 1 frame, 2 air inlet fan, 3 motor one, 4 motor two, 5 fixed cylinder, 6 motor three, 7 exhaust fan, 8 self-adaptive wiping mechanism, 81 connecting block one, 82 connecting rod one, 83 first sliding cylinder, 84 spring one, 85 sponge wiping cylinder, 86 support rod, 87 connecting block two, 9 drying chamber, 10 guide column, 11 reciprocating pressing mechanism, 111 rotating block, 112 pressing rod, 113 spring two, 114 sliding groove one, 12 drive wheel, 13 dip tank, 14 sliding rail one, 15 sliding block one, 16 heating wire, 17 rotating cylinder, 18 material cylinder self-locking mechanism, 181 second sliding cylinder, 182 spring three, 183 sliding groove two, 184 fixed rod, 19 driven wheel, 20 dip tank swing mechanism, 201 sliding rail two, 202 sliding block two, 203 connecting rod two, 204 rotating rod, 21 guide groove. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0035] Please refer to Figures 1-8 The embodiment provides a technical scheme: a dip device for power ribbon processing, which comprises a frame 1, a self-adaptive wiping mechanism 8, a reciprocating pressing mechanism 11, a material cylinder self-locking mechanism 18 and a dip tank swing mechanism 20.
[0036] The frame 1: the inner front surface right side is fixedly connected with the fixed cylinder 5, the inner front surface left side of the frame 1 is rotatably connected with the rotating cylinder 17, the bottom wall right side of the frame 1 is provided with a movable dip tank 13, and the frame 1 further comprises a motor one 3, the motor one 3 is fixedly connected to the front surface left side of the frame 1, the output shaft of the motor one 3 is fixedly connected with the rotating cylinder 17, and the input end of the motor one 3 is electrically connected with the output end of an external single-chip microcomputer.
[0037] Adaptive wiping mechanism 8: it is fixedly connected to the upper and lower surfaces of the inside of the rack 1, and comprises a connecting block one 81, a connecting rod one 82, a first sliding cylinder 83, a spring one 84, a sponge wiping cylinder 85, a supporting rod 86 and a connecting block two 87. The connecting block one 81 is fixedly connected to the upper and lower surfaces of the inside of the rack 1, and the end close to the center of the box is connected with the connecting rod one 82 through a pin shaft transmission. The end close to the center of the rack 1 is slidably connected with the first sliding cylinder 83. The spring one 84 is arranged between the end of the connecting rod one 82 and the inner wall of the first sliding cylinder 83. The end close to the center of the box of the supporting rod 86 is rotatably connected with the first sliding cylinder 83 through a pin shaft. The end close to the center of the box is fixedly connected with the sponge wiping cylinder 85. The connecting block two 87 is fixedly connected to the upper and lower surfaces of the inside of the rack 1. The end away from the center of the box of the supporting rod 86 is rotatably connected with the adjacent connecting block two 87 through a pin shaft. After the power ribbon leaves the dyeing tank 13, it contacts with the sponge wiping cylinder 5. The supporting rod below the sponge wiping cylinder 5 is subjected to the elastic force of the spring one 84 connected with the first sliding cylinder 83, so that the sponge wiping cylinder 5 can adaptively fit the power ribbon to wipe the excess dyeing liquid on the power ribbon.
[0038] Reciprocating pressing mechanism 11: it is fixedly connected to the rear surface of the inside of the rack 1, and comprises a rotating block 111, a pressing rod 112, a spring two 113 and a sliding groove one 114. The sliding groove one 114 is symmetrically formed in the rear wall of the inside of the rack 1. The pressing rod 112 is slidably connected in the sliding groove one 114. The pressing rod 112 is in Z-shaped structure. The spring two 113 is arranged between the upper end of the rod body of the pressing rod 112 and the bottom wall of the sliding groove one 114. The rear wall of the inside of the rack 1 is rotatably connected with a transmission rod. The front end of the transmission rod is fixedly connected with the rotating block 111. It also comprises a motor two 4, which is fixedly connected to the upper end of the rear surface of the rack 1. The output shaft of the motor two 4 is fixedly connected with the rear end of the transmission rod on the driving wheel 12. The input end of the motor two 4 is electrically connected with the output end of the external single-chip microcomputer. When the motor two 4 operates, the output shaft of the motor two 4 rotates to drive the rotating block 111 to rotate. When the protruding part of the rotating block 111 contacts with the protruding part on the upper end of the pressing rod 112, the pressing rod 112 moves downward along the sliding groove one 114 under the pressure, and the spring two 113 contracts, so that the lower end of the pressing rod 112 presses the power ribbon to immerse in the deep part of the dyeing tank 13. When the rotating block 111 continues to rotate and separates from the upper end of the pressing rod 112, the spring two 113 relaxes to push the pressing rod 112 to move upward, and the power ribbon is floated by the buoyancy;
[0039] The material cylinder self-locking mechanism 18 is fixedly connected to the inner rear surface of the rack 1, and comprises a second sliding cylinder 181, a spring three 182, a sliding groove two 183 and a fixed rod 184. The fixed rod 184 is fixedly connected to the inner rear surface of the rack 1, and the front end inner wall of the fixed rod 184 is provided with the sliding groove two 183. The second sliding cylinder 181 is slidingly connected to the inner part of the sliding groove two 183, and the spring three 182 is arranged between the second sliding cylinder 181 and the fixed rod 184. When power ribbon processing immersion is needed, the right first sliding cylinder 181 is pressed towards the rear surface of the rack 1. At this time, the second sliding cylinder 181 is forced to move towards the rear surface of the rack 1, and the spring three 182 is contracted under stress. One end of the external power ribbon cylinder is sleeved on the outer surface of the fixed cylinder 5, and the other end of the power ribbon cylinder is aligned with the rear end of the second sliding cylinder 181. At this time, the second sliding cylinder 181 is loosened, the spring three 182 relaxes, and the second sliding cylinder 181 is pushed to move towards the middle of the rack interior, completing the self-locking of the power ribbon cylinder. At this time, the left second sliding cylinder 181 is pressed towards the rear surface of the rack 1. At this time, the second sliding cylinder 181 is forced to move towards the rear surface of the rack 1, and the spring three 182 is contracted under stress. One end of the external power ribbon collecting cylinder is sleeved on the outer surface of the fixed cylinder 5, and the other end of the power ribbon collecting cylinder is aligned with the rear end of the second sliding cylinder 181. At this time, the second sliding cylinder 181 is loosened, the spring three 182 relaxes, and the second sliding cylinder 181 is pushed to move towards the middle of the rack interior, completing the self-locking of the power ribbon collecting cylinder.
[0040] The immersion tank swinging mechanism 20 is fixedly connected to the inner right end of the rack 1, and is matched with the immersion tank 13. The immersion tank swinging mechanism 20 comprises a sliding rail two 201, a sliding block two 202, a connecting rod two 203 and a rotating rod 204. The sliding rail two 201 is fixedly connected to the inner rear surface of the rack 1, and the front surface of the sliding rail two 201 is slidingly connected with the sliding block two 202. The front surface of the sliding block two 202 is fixedly connected with the immersion tank 13, and the right surface of the sliding block two 202 is rotatably connected with the connecting rod two 203 through a pin shaft. The right end of the connecting rod two 203 is drivingly connected with the rotating rod 204 through a pin shaft. The motor three 6 is fixedly connected to the lower end of the rear surface of the rack 1, and the output shaft of the motor three 6 is fixedly connected with the rotating rod 204. The input end of the motor three 6 is electrically connected with the output end of the external single-chip microcomputer. When the motor three 6 operates, the output shaft of the motor three 6 rotates to drive the rotating rod 204 to rotate, so that one end of the connecting rod two 203 connected with the rotating rod 204 makes circular motion. Since the other end of the connecting rod two 203 is rotatably connected with the sliding block two 202, when one end of the connecting rod two 203 connected with the rotating rod 204 moves to the left half circle, the connecting rod two 203 pushes the sliding block two 202 to move leftward. When one end of the connecting rod two 203 connected with the rotating rod 204 moves to the right half circle, the connecting rod two 203 pulls the sliding block two 202 to move rightward, so that the immersion tank 13 swings leftward and rightward.
[0041] The inside lower surface right side of the frame 1 is fixedly connected with symmetrically distributed slide rails 14, the upper surfaces of the slide rails 14 are all slidably connected with slide blocks 15, the driving wheel 12 is rotatably connected to the rear surface of the frame 1, the driving wheel 12 is drivingly connected with the driven wheel 19 through a belt, the motor 3 is fixedly connected to the left side of the front surface of the frame 1, the output shaft of the motor 3 is fixedly connected with a rotary cylinder 17, the input end of the motor 3 is electrically connected with the output end of the external single-chip microcomputer, the upper surfaces of the slide blocks 15 are fixedly connected with dip dyeing tanks 13, the upper surfaces of the dip dyeing tanks 13 are fixedly connected with uniformly distributed guide columns 10, the inside left side of the frame 1 is fixedly connected with a drying chamber 9, the inside upper surface of the drying chamber 9 is fixedly connected with heating wires 16, the inside front end of the drying chamber 9 is fixedly connected with an air inlet fan 2, the inside rear end of the drying chamber 9 is fixedly connected with an exhaust fan 7, the left and right outer surfaces of the drying chamber 9 are provided with symmetrically distributed guide grooves 21, the front and rear surfaces of the frame 1 are all provided with air inlets corresponding to the air inlet fan 2 and the exhaust fan 7, and the input ends of the heating wires 16, the air inlet fan 2 and the exhaust fan 7 are electrically connected with the output end of the external single-chip microcomputer.
[0042] The utility model provides a kind of working principle of power ribbon processing with dip dyeing device as follows: when needing to carry out power ribbon processing dip dyeing, right side second slide cylinder 181 is pressed to the rear surface direction of rack 1, second slide cylinder 181 is forced to move to the rear surface direction of rack 1 at this time, spring three 182 is forced to contract, the one end of external power ribbon cylinder is connected to the outer surface of fixed cylinder 5, the other end of power ribbon cylinder is aligned with the rear end of second slide cylinder 181, second slide cylinder 181 is loosened at this time, spring three 182 relaxes, and second slide cylinder 181 is moved to the middle direction of rack interior, and self-locking to power ribbon cylinder is completed, left side second slide cylinder 181 is pressed to the rear surface direction of rack 1 at this time, second slide cylinder 181 is forced to move to the rear surface direction of rack 1 at this time, spring three 182 is forced to contract, the one end of external power ribbon collecting cylinder is connected to the outer surface of fixed cylinder 5, the other end of power ribbon collecting cylinder is aligned with the rear end of second slide cylinder 181, second slide cylinder 181 is loosened at this time, spring three 182 relaxes, and second slide cylinder 181 is moved to the middle direction of rack interior, and self-locking to power ribbon collecting cylinder is completed, the ribbon one end of power ribbon cylinder is pulled out at this time, and it is passed along the direction of guide column 10, dip dyeing groove 13, guide column 10, sponge wiping cylinder 85, guide groove 21, drying chamber 9 and guide groove 21, and finally fixedly connected on power ribbon collecting cylinder, external single-chip microcontroller is operated at this time, so that motor one 3, motor two 4, motor three 6, heating wire 16, air inlet fan 2 and exhaust fan 7 operate, motor one 3 operates, the output shaft of motor three 3 rotates, drives rotary cylinder 17 to rotate, makes power ribbon collecting cylinder rotate, power ribbon moves along the above-mentioned guide direction, motor three 6 operates, the output shaft of motor three 6 rotates and drives rotating rod 204 to rotate, makes the one end of connecting rod two 203 connected with rotating rod 204 to do circular motion, since the other end of connecting rod two 203 is rotatably connected with sliding block two 202, when the one end of connecting rod two 203 connected with rotating rod 204 moves to left half circle, connecting rod two 203 pushes sliding block two 202 to move left, when the one end of connecting rod two 203 connected with rotating rod 204 moves to right half circle, connecting rod two 203 pulls sliding block two 202 to move right, so that dip dyeing groove 13 shakes left and right, motor two 4 operates, the output shaft of motor two 4 rotates, drives rotary block 111 to rotate, makes the protruding part of rotary block 111 contact with the upper end protruding part of pressing rod 112, pressing rod 112 is moved downward along sliding groove one 114 under pressure, spring two 113 contracts, and the lower end long rod of pressing rod 112 is pressed to dip power ribbon into deep dip dyeing groove 13, when rotary block 111 continues to rotate and separates from the upper end of pressing rod 112, spring two 113 relaxes, and pushes pressing rod 112 to move up, power ribbon is floated under buoyancy, power ribbon contacts with sponge wiping cylinder 5 after leaving dip dyeing groove 13, the support rod below sponge wiping cylinder 5 is supported by the elastic force of spring one 84 connected with first slide cylinder 83, so that sponge wiping cylinder 5 can adaptively adhere to power ribbon, and wipe the excess dyeing liquid on power ribbon,After that, the power ribbon enters the drying chamber for drying, and finally is wound on the power ribbon collecting cylinder for collection.
[0043] It is worth noting that the motor one 3, the motor two 4 and the motor three 6 disclosed in the above embodiment can be selected as 60BYG450A-EX stepping motor, and the existing technology commonly used method is adopted for the external single-chip microcomputer control air inlet fan 2, exhaust fan 7, heating wire 16, motor one 3, motor two 4 and motor three 6 work.
[0044] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process transformation using the content of the present application specification and drawings, or directly or indirectly used in other related technical fields, are also included in the patent protection range of the present application.
Claims
1. A dyeing apparatus for processing electrical ribbons, characterized in that: It includes a frame (1), an adaptive wiping mechanism (8), a reciprocating pressing mechanism (11), a material cylinder self-locking mechanism (18), and an immersion tank swing mechanism (20). The frame (1) has a fixed cylinder (5) fixedly connected to the right side of its inner front surface, and a rotating cylinder (17) rotatably connected to the left side of the inner front surface of the frame (1). The bottom wall of the frame (1) is provided with a movable dyeing tank (13). Adaptive wiping mechanism (8): It is fixedly connected to the inside left side of the frame (1); Reciprocating pressing mechanism (11): It is fixedly connected to the center of the frame (1); Material cylinder self-locking mechanism (18): It is fixedly connected to the right side of the inner rear surface of the frame (1); The oscillating mechanism (20) of the dyeing tank is fixedly connected to the inside right end of the frame (1), and the oscillating mechanism (20) of the dyeing tank is installed in conjunction with the dyeing tank (13); Among them: a drying chamber (9) is provided on the left side of the frame (1), a heating wire (16) is fixedly connected to the upper surface of the drying chamber (9), an air intake fan (2) is fixedly connected to the front end of the drying chamber (9), an exhaust fan (7) is fixedly connected to the rear end of the drying chamber (9), guide grooves (21) are symmetrically opened on the left and right outer surfaces of the drying chamber (9), and air vents are opened on the front and rear surfaces of the frame (1) at the corresponding positions of the air intake fan (2) and the exhaust fan (7). The input ends of the heating wire (16), the air intake fan (2) and the exhaust fan (7) are electrically connected to the output end of an external microcontroller.
2. The dyeing apparatus for processing electrical ribbons according to claim 1, characterized in that: The adaptive wiping mechanism (8) includes a connecting block one (81), a connecting rod one (82), a first slide cylinder (83), a spring one (84), a sponge wiping cylinder (85), a support rod (86), and a connecting block two (87). The connecting block one (81) is fixedly connected to the upper and lower surfaces inside the frame (1). The end of the connecting block one (81) near the center of the housing is connected to the connecting rod one (82) via a pin shaft. The end of the connecting rod one (82) near the center of the frame (1) is slidably connected to the first slide cylinder (83). A spring (84) is provided between the end of the connecting rod (82) and the inner wall of the first slide cylinder (83). The end of the first slide cylinder (83) near the center of the frame (1) is rotatably connected to a support rod (86) via a pin. The end of the support rod (86) near the center of the box is fixedly connected to a sponge wiping tube (85). The connecting block (87) is fixedly connected to the upper and lower surfaces of the frame (1) respectively. The end of the support rod (86) away from the center of the box is rotatably connected to the adjacent connecting block (87) via a pin.
3. The dyeing apparatus for processing electrical ribbons according to claim 1, characterized in that: The reciprocating pressing mechanism (11) includes a rotating block (111), a pressing rod (112), a second spring (113), and a first slide groove (114). The first slide groove (114) is symmetrically opened on the inner rear wall of the frame (1). The inside of the first slide groove (114) is slidably connected to the pressing rod (112). The pressing rod (112) is Z-shaped. The upper end of the pressing rod (112) and the bottom wall of the first slide groove (114) are provided with the second spring (113). The inner rear wall of the frame (1) is rotatably connected to the transmission rod. The front end of the transmission rod is fixedly connected to the rotating block (111).
4. The dyeing apparatus for processing electrical ribbons according to claim 1, characterized in that: The self-locking mechanism (18) of the material cylinder includes a second slide cylinder (181), a third spring (182), a second slide groove (183), and a fixed rod (184). The fixed rod (184) is fixedly connected to the right side of the inner rear surface of the frame (1). The inner wall of the front end of the fixed rod (184) is provided with a second slide groove (183). The second slide cylinder (181) is slidably connected inside the second slide groove (183). A third spring (182) is provided between the second slide cylinder (181) and the fixed rod (184).
5. The dyeing apparatus for processing electrical ribbons according to claim 1, characterized in that: The frame (1) has a symmetrically distributed slide rail (14) fixedly connected to the right side of the inner lower surface. The upper surface of the slide rail (14) is slidably connected to a slider (15). The upper surface of the slider (15) is fixedly connected to the bottom surface of the dyeing tank (13). The upper surface of the dyeing tank (13) is fixedly connected to a uniformly distributed guide column (10).
6. The dyeing apparatus for processing electrical ribbons according to claim 5, characterized in that: The oscillating tank mechanism (20) includes a slide rail (201), a slider (202), a connecting rod (203), and a rotating rod (204). The slide rail (201) is fixedly connected to the inner rear surface of the frame (1). The slider (202) is slidably connected to the front surface of the slide rail (201). The front surface of the slider (202) is fixedly connected to the immersion tank (13). The right surface of the slider (202) is rotatably connected to the connecting rod (203) via a pin. The right end of the connecting rod (203) is connected to the rotating rod (204) via a pin.
7. The dyeing apparatus for processing electrical ribbons according to claim 6, characterized in that: It also includes a third motor (6), which is fixedly connected to the lower end of the rear surface of the frame (1). The output shaft of the third motor (6) is fixedly connected to the rotating rod (204), and the input end of the third motor (6) is electrically connected to the output end of an external microcontroller.
8. The dyeing apparatus for processing electrical ribbons according to claim 1, characterized in that: It also includes a drive wheel (12), which is fixedly sleeved on the rear end of the right transmission rod, and a driven wheel (19) is sleeved on the rear end of the left transmission rod. The drive wheel (12) is connected to the driven wheel (19) by a belt.
9. The dyeing apparatus for processing electrical ribbons according to claim 8, characterized in that: It also includes a second motor (4), which is fixedly connected to the upper end of the rear surface of the frame (1). The output shaft of the second motor (4) is fixedly connected to the rear end of the transmission rod on the drive wheel (12). The input end of the second motor (4) is electrically connected to the output end of an external microcontroller.
10. The dyeing apparatus for processing electrical ribbons according to claim 1, characterized in that: It also includes a motor (3), which is fixedly connected to the left side of the front surface of the frame (1). The output shaft of the motor (3) is fixedly connected to the front end of the rotating cylinder (17), and the input end of the motor (3) is electrically connected to the output end of an external microcontroller.