Yarn printing and dyeing mechanism with take-up function

By designing a yarn printing and dyeing mechanism with wire collection function, using a motor-driven transmission rod and pulley system, and combining the guide ring and spring components, the automatic collection of yarns is achieved, which solves the problem of inconvenient coil collection in the prior art and improves production efficiency and product quality.

CN223202073UActive Publication Date: 2025-08-08HUBEI FUCHUN DYE&WEAVE CO LTD
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Patent Information

Application Number
CN202422259593.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-08-08
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

It is difficult for existing yarn printing and dyeing mechanisms to quickly collect the printed and dyed coils during the printing and dyeing process, which have poor applicability and affect production efficiency and product quality.

Method used

A yarn printing and dyeing mechanism with wire collection function is designed. Through a motor-driven transmission rod and pulley system, the guide ring and spring assembly is combined with the reciprocating movement of the yarn and the automatic collection of the coil. The coupling of the resisting block and the spring is achieved to achieve automatic winding and drop of the coil.

Benefits of technology

It realizes rapid and automated collection of yarns, improves production efficiency and product quality, and solves the problem of inconvenient collection of coils.

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Abstract

The utility model relates to the technical field of yarn printing and dyeing, in particular to a yarn printing and dyeing mechanism with a take-up function, which comprises a support frame, two groups of first connecting rods are mounted in the middle of the support frame, and yarn direction adjusting components are mounted on the first connecting rods. The direction adjusting assembly comprises a mounting block, a first transmission rod, a first belt wheel, a first motor, a first belt, a second belt, a positioning block and a third guide ring, a mounting seat is further mounted on the supporting frame, and a transmission spring assembly is mounted on the mounting seat; the transmission spring assembly comprises a second transmission rod, a coil, a second belt wheel, a third belt, a horizontal guide strip, a fixing block and a horizontal spring, and a yarn stopping assembly is further installed on the supporting frame and comprises an installation protruding block, a connecting shaft, an inclined guide rod, an inclined guide cylinder, an inclined spring, an installation base, a stopping arm and a stopping block. The utility model discloses a yarn printing and dyeing mechanism with a take-up function. The yarn printing and dyeing mechanism aims at achieving the purpose of rapidly collecting printed and dyed coils.
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Description

Technical Field

[0001] The utility model relates to the technical field of yarn printing and dyeing, in particular to a yarn printing and dyeing mechanism with a yarn taking-up function. Background Art

[0002] As an important part of the traditional manufacturing industry, the textile printing and dyeing industry has made important contributions to the national economy and social development. With the advancement and application of science and technology, the industry is facing a critical period of transformation and upgrading. Traditional yarn printing and dyeing mechanisms may have problems such as yarn scattering and inconvenient management during the printing and dyeing process, affecting production efficiency and product quality. With the continuous expansion of production scale, the requirements for the automation and intelligence level of yarn printing and dyeing mechanisms are also getting higher and higher. In order to solve the above problems, technological innovation mainly focuses on improving the automation and intelligence level of yarn printing and dyeing mechanisms, and realizing environmentally friendly and efficient production methods.

[0003] In the prior art, a Chinese patent document with patent number CN216919692U proposes a yarn printing and dyeing mechanism with a take-up function, in which a first gear and a second gear are engaged, so that a first rotating rod and a stirring rod arranged on the surface of the first rotating rod are rotated, so that the dye is stirred, and the dye is mixed more evenly. By setting a sponge inside the printing and dyeing frame, the dye penetrates the sponge and passes through the yarn through the sponge to print and dye it, so that the dye is just printed and dyed on the yarn, and no waste of dye is caused. However, consistent with conventional technology, it is not possible to quickly collect the printed and dyed coils, and the applicability is poor. Therefore, the present application discloses a yarn printing and dyeing mechanism with a take-up function to solve the problem of quickly collecting the printed and dyed yarn. Utility Model Content

[0004] In view of this, the purpose of the present invention is to provide a yarn printing and dyeing mechanism with a yarn take-up function to solve the problem of quickly collecting the printed and dyed yarn.

[0005] The transmission mechanism that this invention relates to is a yarn printing and dyeing mechanism with a line taking-up function, comprising a support frame, a slope being installed on one side of the support frame, two sets of first connecting rods being installed in the middle of the support frame, a yarn direction adjusting assembly being installed on the first connecting rod, the direction adjusting assembly comprising a mounting block being mounted on the first connecting rod, a first transmission rod being mounted on the mounting block, and a first motor being mounted on the mounting block, a first belt being sleeved on the output end of the first motor, and a second belt being sleeved on the first pulley, a positioning block being installed on one side of the second belt, a third guide ring being installed on the positioning block, a mounting seat being further mounted on the support frame, the mounting seat being in a concave shape, a transmission spring assembly being mounted on the mounting seat, and the transmission spring assembly comprising a second motor being sleeved on one end and being sleeved on the mounting seat The transmission mechanism is that the cam is provided with a toothed connecting strip which is cooperatively connected with the toothed connecting strip and the toothed connecting strip is connected with the toothed connecting strip.

[0006] Preferably, a group of the mounting blocks are respectively installed at both ends of the first connecting rod, a circular hole is opened on the side surface of the mounting block on one side, and the first transmission rod is rotatably installed in the hole, the first pulley is fixedly installed on the first transmission rod, one end of the first transmission rod protrudes from one side of the mounting block, and a pulley is installed on the protruding end of the first transmission rod, the first belt is sleeved on the pulley, and the first transmission rod and the output end of the first motor are connected through the first belt.

[0007] Preferably, a second connecting rod is installed on one side of the first connecting rod, a second guide ring is installed in the middle of the second connecting rod, and a first guide ring is also installed on the front end rod of the support frame, a wire is sleeved on the first guide ring, and the wire is connected to the coil after passing through the first guide ring and the third guide ring, one side of the coil abuts against the horizontal spring, and the other end of the horizontal spring abuts against the fixed block, and the mounting seat and the fixed block are both provided with a through groove that fits with the horizontal guide bar, and a limit block is also installed at one end of the horizontal guide bar.

[0008] Preferably, the second pulley is also installed on the second transmission rod, the third belt is sleeved on the second pulley, a second motor is also installed on the support frame, and the other end of the third belt is installed on the output end of the second motor.

[0009] Preferably, a square groove is provided on one side of the mounting base mounted on the top of the support frame, a rotating shaft is installed in the groove, and the retaining arm is sleeved on the rotating shaft.

[0010] Preferably, a limiting arm and a protrusion are installed on the retaining block at the front end of the retaining arm, and the bottom height of the protrusion is flush with the bottom height of the retaining block.

[0011] Preferably, the mounting base and the resisting arm are both equipped with the mounting protrusion, the mounting protrusion is in a concave shape, the connecting shaft is installed in the groove, one end of the oblique spring abuts against the inner wall of the oblique guide cylinder, and the other end of the oblique spring abuts against the oblique guide rod.

[0012] The beneficial effects of the present invention are as follows: after turning on the machine and starting the first motor, the output end of the first motor drives the rotation of the first belt, thereby driving the first transmission rod to rotate. After the first transmission wheel rotates, it drives the first pulley installed on it to rotate, thereby driving the rotation of the second belt. At this time, the positioning block and the third guide ring installed on the second belt will move with the rotation of the second belt. The rotation of the first motor is a reciprocating rotation at a certain frequency, not a rotation in one direction, thereby adjusting the direction of the wire. The wire is connected to one end of the coil and is adjusted by the third guide ring. The wire will also reciprocate on the coil and be collected. At this time, the second pulley rotates driven by the second belt, and the second pulley drives the second transmission rod to rotate, and the second transmission rod drives the coil to rotate. At this time, the coil is The wire will be collected. As the coil is collected, more and more wire will be wrapped around the coil. At this time, the resist block attached to the coil will slowly lift up. When the resist block is slowly lifted up, the resist block will push the resist arm connected to it. At this time, the mounting protrusion on the resist arm will push the oblique guide rod to squeeze the oblique spring to contract. When the coil is full, the resist block will drive the limit arm and the protrusion to lift up, and its bottom surface will be flush with the highest point of the edge of the coil. At this time, the coil will be pushed by the horizontal spring until the coil completely falls off the second transmission rod, falls onto the slope and is collected. At this time, the oblique spring installed in the oblique guide cylinder will push the oblique guide rod to make the resist block and the resist arm move downward, return to the initial position, and start limiting again. Such a convenient collection method can achieve the rapid collection of the wound yarn coils. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only for the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0014] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;

[0015] Figure 2 This is a schematic diagram of the three-dimensional structure of the utility model from the top perspective;

[0016] Figure 3 For this utility model Figure 2 A in the middle is an enlarged structural diagram;

[0017] Figure 4 For this utility model Figure 2 The enlarged structural diagram at B in the middle;

[0018] Figure 5 For this utility model Figure 4 Schematic cross-section diagrams of 22 and 23;

[0019] Figure 6 For this utility model Figure 1 Enlarged structural diagram at point C in the middle.

[0020] The following are marked in the figure:

[0021] 1. Support frame; 2. First connecting rod; 3. Mounting block; 4. First transmission rod; 5. First pulley; 6. First motor; 7. First belt; 8. Second belt; 9. Positioning block; 10. Third guide ring; 11. Second motor; 12. Second connecting rod; 13. Second guide ring; 14. First guide ring; 15. Mounting seat; 16. Second transmission rod; 17. Coil; 18. Ramp; 19. Wire; 20. Mounting bump; 21. Connecting shaft; 22. Oblique guide rod; 23. Oblique guide cylinder; 24. Oblique spring; 25. Second pulley; 26. Third belt; 27. Horizontal guide strip; 28. Fixing block; 29. Horizontal spring; 30. Mounting base; 31. Stop arm; 32. Stop block; 33. Limiting arm; 34. Bump. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with specific embodiments.

[0023] It should be noted that, unless otherwise defined, the technical or scientific terms used in this utility model should have the usual meanings understood by people with ordinary skills in the field to which this utility model belongs. The "first", "second" and similar words used in this utility model do not indicate any order, quantity or importance, but are only used to distinguish different components. "Include" or "comprise" and similar words mean that the elements or objects appearing before the word include the elements or objects listed after the word and their equivalents, without excluding other elements or objects. "Connect" or "connected" and similar words are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to indicate relative position relationships. When the absolute position of the object being described changes, the relative position relationship may also change accordingly.

[0024] The utility model provides Figures 1 to 6The yarn printing and dyeing mechanism with a take-up function shown in the figure includes a support frame 1, a ramp 18 is installed on one side of the support frame 1, two groups of first connecting rods 2 are installed in the middle of the support frame 1, and a yarn adjustment component is installed on the first connecting rod 2. The adjustment component includes a mounting block 3 installed on the first connecting rod 2, a first transmission rod 4 is rotatably installed on the mounting block 3, a first pulley 5 is installed on the first transmission rod 4, and a first motor 6 is installed on the mounting block 3. The output end of the first motor 6 is sleeved with a first belt 7, and a second belt 8 is sleeved on the first pulley 5. A positioning block 9 is installed on one side of the second belt 8, and a third guide ring 10 is installed on the positioning block 9. A mounting seat 15 is also installed on the support frame 1, and the mounting seat 15 is in a concave shape. The mounting seat 15 A transmission spring assembly is installed on it, and the transmission spring assembly includes a second transmission rod 16 rotatably mounted on the mounting seat 15 at one end, and multiple sets of coils 17 are sleeved on the second transmission rod 16, and a second pulley 25 is fixedly mounted on the second transmission rod 16 in the area of the mounting seat 15, and a third belt 26 is sleeved on the second pulley 25, and a hole is opened at one end of the mounting seat 15 close to the coil 17, a horizontal guide strip 27 is installed in the hole, and a fixing block 28 is installed on the outer wall of the hole, and a horizontal spring 29 is also sleeved on the second transmission rod 16 between the coil 17 and the fixing block 28. A yarn resistance assembly is also installed on the support frame 1, and the resistance assembly includes a mounting base 30 mounted on the support frame 1, and a resistance arm 31 is installed on the mounting base 30 to resist One end of the arm 31 is provided with a mounting protrusion 20, and a connecting shaft 21 is installed on the mounting protrusion 20. An oblique guide rod 22 is sleeved on the connecting shaft 21, and the other end of the oblique guide rod 22 is sleeved in an oblique guide cylinder 23, and an oblique spring 24 is installed in the oblique guide cylinder 23. A stop block 32 is also installed at the front end of the resisting arm 31. A second connecting rod 12 is installed on one side of the first connecting rod 2, and a second guide ring 13 is installed in the middle of the second connecting rod 12. A first guide ring 14 is also installed on the front end rod of the support frame 1, and a wire 19 is sleeved on the first guide ring 14. The wire 19 passes through the first guide ring 14 and the third guide ring 10 and is connected to the coil 17. One side of the coil 17 abuts against the horizontal spring 29, and the other end of the horizontal spring 29 abuts against the fixed block 2 8, the mounting seat 15 and the fixing block 28 are both provided with a through groove that fits with the horizontal guide bar 27, and a limit block is also installed at one end of the horizontal guide bar 27. After turning on the machine and starting the first motor 6, the output end of the first motor 6 drives the rotation of the first belt 7, thereby driving the first transmission rod 4 to rotate. After the first transmission rod 4 rotates, it drives the first pulley 5 installed thereon to rotate, thereby driving the rotation of the second belt 8. At this time, the positioning block 9 and the third guide ring 10 installed on the second belt 8 will move with the rotation of the second belt 8. The rotation of the first motor 6 is a reciprocating rotation at a certain frequency, not a rotation in one direction, thereby adjusting the direction of the wire 19. The wire 19 is connected to one end of the coil 17 and is adjusted by the third guide ring 10.The wire 19 will also move back and forth on the coil 17 and be collected. At this time, the second pulley 25 rotates driven by the third belt 26, and the second pulley 25 drives the second transmission rod 16 to rotate, and the second transmission rod 16 drives the coil 17 to rotate. At this time, the coil 17 will collect the wire 19. As the coil 17 is collected, more and more wire 19 will be wound around the coil 17. At this time, the blocking block 32 attached to the coil 17 will slowly lift up. When the blocking block 32 is slowly lifted up, the blocking block 32 will push the blocking arm 31 connected thereto. At this time, the mounting protrusion 20 on the blocking arm 31 will push The moving oblique guide rod 22 squeezes the oblique spring 24 to contract. When the coil 17 is fully collected, the stop block 32 drives the limiting arm 33 and the protrusion 34 to rise, and its bottom surface is flush with the highest point of the edge of the coil 17. At this time, the coil 17 is pushed by the horizontal spring 29 until the coil 17 completely falls off the second transmission rod 16. At this time, the oblique spring 24 installed in the oblique guide cylinder 23 pushes the oblique guide rod 22, causing the stop block 32 and the supporting arm 31 to move downward and return to the initial position, restarting the limit. This convenient collection method can quickly collect the coiled coils 17.

[0025] Furthermore, in this example, Figure 3 and Figure 6 As shown, a group of mounting blocks 3 are respectively installed at both ends of the first connecting rod 2, a circular hole is opened on the side of the mounting block 3 on one side, and a first transmission rod 4 is rotatably installed in the hole, a first pulley 5 is fixedly installed on the first transmission rod 4, one end of the first transmission rod 4 protrudes from one side of the mounting block 3, a pulley is installed on the protruding end of the first transmission rod 4, a first belt 7 is sleeved on the pulley, the first transmission rod 4 and the output end of the first motor 6 are connected through the first belt 7, the first transmission rod 4 and the first motor 6 are connected through the first belt 7, a second belt 8 is also installed on the first pulley 5, and the second belt 8 is A positioning block 9 is installed on one side, and a third guide ring 10 is installed on the positioning block 9. After the machine is turned on and the first motor 6 is started, the output end of the first motor 6 drives the rotation of the first belt 7, thereby driving the first transmission rod 4 to rotate. After the first transmission rod 4 rotates, it drives the first pulley 5 installed thereon to rotate, thereby driving the rotation of the second belt 8. At this time, the positioning block 9 and the third guide ring 10 installed on the second belt 8 will move with the rotation of the second belt 8. The rotation of the first motor 6 is a reciprocating rotation at a certain frequency, not a rotation in one direction, thereby adjusting the direction of the line 19.

[0026] Furthermore, in this example, Figure 2 and Figure 4 As shown, a second pulley 25 is also installed on the second transmission rod 16, and a third belt 26 is sleeved on the second pulley 25. A second motor 11 is also installed on the support frame 1, and the other end of the third belt 26 is installed on the output end of the second motor 11.

[0027] Furthermore, in this example, Figure 4 As shown, a square groove is provided on one side of the mounting base 30 installed on the top of the support frame 1, a rotating shaft is installed in the groove, and a resisting arm 31 is installed on the rotating shaft sleeve, and a limiting arm 33 and a protrusion 34 are installed on the resisting block 32 at the front end of the resisting arm 31. The bottom height of the protrusion 34 is flush with the bottom height of the resisting block 32. A mounting protrusion 20 is installed on the mounting base 30 and the resisting arm 31. The mounting protrusion 20 is concave in shape, and a connecting shaft 21 is installed in the groove. One end of the oblique spring 24 abuts against the inner wall of the oblique guide cylinder 23, and the other end of the oblique spring 24 abuts against the oblique guide rod 22. As the coil 17 is collected, more and more wire 19 will be wound around the coil 17. At this time, the blocking block 32 attached to the coil 17 will slowly lift up. When the blocking block 32 is slowly lifted up, the blocking block 32 will push the blocking arm 31 connected thereto. At this time, the mounting protrusion 20 on the supporting arm 31 will push the oblique guide rod 22 to squeeze the oblique spring 24 to contract. When the coil 17 is fully collected, the blocking block 32 will drive the limiting arm 33 and the protrusion 34 to lift up, and the bottom surface thereof will be flush with the highest point of the edge of the coil 17. At this time, the coil 17 will pop out under the action of the transmission spring assembly, fall onto the slope 18 and be collected away.

[0028] Those skilled in the art should understand that the discussion of any of the above embodiments is merely illustrative and is not intended to imply that the scope of the present invention (including the claims) is limited to these examples. Within the scope of the present invention, the technical features in the above embodiments or different embodiments may be combined, the steps may be implemented in any order, and there are many other variations of the different aspects of the present invention as described above, which are not provided in detail for the sake of simplicity.

[0029] The present invention is intended to cover all such substitutions, modifications and variations that fall within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.

Claims

1. A yarn printing and dyeing mechanism with a yarn take-up function, comprising a support frame (1), wherein a slope (18) is installed on one side of the support frame (1), characterized in that: Two groups of first connecting rods (2) are installed in the middle of the support frame (1), and a yarn direction adjustment component is installed on the first connecting rod (2). The direction adjustment component includes a mounting block (3) mounted on the first connecting rod (2), a first transmission rod (4) is rotatably mounted on the mounting block (3), a first pulley (5) is mounted on the first transmission rod (4), and a first motor (6) is mounted on the mounting block (3), a first belt (7) is sleeved on the output end of the first motor (6), and a first belt (7) is sleeved on the first pulley (5). A second belt (8) is provided on one side of the second belt (8), a positioning block (9) is provided on the positioning block (9), a third guide ring (10) is provided on the support frame (1), a mounting seat (15) is provided on the support frame (1), the mounting seat (15) is in a concave shape, a transmission spring assembly is provided on the mounting seat (15), the transmission spring assembly includes a second transmission rod (16) with one end rotatably provided on the mounting seat (15), a plurality of coils (17) are provided on the second transmission rod (16), and the second transmission rod (16) is provided on the mounting seat. A second pulley (25) is fixedly installed in the area of ​​the second pulley (25), and a third belt (26) is installed on the second pulley (25), and a hole is opened at one end of the mounting seat (15) close to the coil (17), a horizontal guide bar (27) is installed in the hole, and a fixed block (28) is installed on the outer wall of the hole, and a horizontal spring (29) is also installed on the second transmission rod (16) between the coil (17) and the fixed block (28), and a yarn resistance component is also installed on the support frame (1), and the resistance component includes A mounting base (30) is mounted on the support frame (1), a resisting arm (31) is mounted on the mounting base (30), one end of the resisting arm (31) is provided with a mounting protrusion (20), a connecting shaft (21) is mounted on the mounting protrusion (20), an oblique guide rod (22) is sleeved and mounted on the connecting shaft (21), the other end of the oblique guide rod (22) is sleeved and mounted in an oblique guide cylinder (23), an oblique spring (24) is mounted in the oblique guide cylinder (23), and a resisting block (32) is also mounted at the front end of the resisting arm (31).

2. The yarn printing and dyeing mechanism with a take-up function according to claim 1, characterized in that: A group of mounting blocks (3) are respectively installed at both ends of the first connecting rod (2), a circular hole is opened on the side of the mounting block (3) on one side, and the first transmission rod (4) is rotatably installed in the hole, and the first pulley (5) is fixedly installed on the first transmission rod (4), one end of the first transmission rod (4) protrudes from one side of the mounting block (3), and a pulley is installed on the protruding end of the first transmission rod (4), and the pulley is sleeved with the first belt (7), and the first transmission rod (4) and the output end of the first motor (6) are connected through the first belt (7).

3. The yarn printing and dyeing mechanism with a take-up function according to claim 2, characterized in that: A second connecting rod (12) is installed on one side of the first connecting rod (2), a second guide ring (13) is installed in the middle of the second connecting rod (12), and a first guide ring (14) is also installed on the front end rod of the support frame (1), a wire (19) is sleeved on the first guide ring (14), and the wire (19) is connected to the coil (17) after passing through the first guide ring (14) and the third guide ring (10), one side of the coil (17) abuts against the horizontal spring (29), and the other end of the horizontal spring (29) abuts against the fixed block (28), and the mounting seat (15) and the fixed block (28) are both provided with a through groove that fits with the horizontal guide bar (27), and a limit block is also installed at one end of the horizontal guide bar (27).

4. The yarn printing and dyeing mechanism with a take-up function according to claim 3, characterized in that: The second transmission rod (16) is further mounted with the second pulley (25), the second pulley (25) is sleeved with the third belt (26), the support frame (1) is further mounted with a second motor (11), and the other end of the third belt (26) is mounted on the output end of the second motor (11).

5. The yarn printing and dyeing mechanism with a take-up function according to claim 4, characterized in that: A square groove is provided on one side of the mounting base (30) mounted on the top of the support frame (1), a rotating shaft is mounted in the groove, and the resisting arm (31) is sleeved on the rotating shaft.

6. The yarn printing and dyeing mechanism with a take-up function according to claim 5, characterized in that: A limiting arm (33) and a protrusion (34) are installed on the resisting block (32) at the front end of the resisting arm (31), and the bottom height of the protrusion (34) is flush with the bottom height of the resisting block (32).

7. The yarn printing and dyeing mechanism with a take-up function according to claim 6, characterized in that: The mounting protrusion (20) is mounted on both the mounting base (30) and the resisting arm (31), and the mounting protrusion (20) is in a concave shape. The connecting shaft (21) is mounted in the groove. One end of the oblique spring (24) abuts against the inner wall of the oblique guide cylinder (23), and the other end of the oblique spring (24) abuts against the oblique guide rod (22).

Citation Information

Patent Citations

  • Yarn printing and dyeing device with take-up function

    CN216919692U