Yarn dyeing frame adaptive to different yarn loading amounts

By designing a sleeve structure and locking parts with adjustable height on the dyed yarn, the problems of difficulty in adjusting and dye sprinkling of existing dyed yarns are solved, and the efficiency of dyed yarn processing is improved.

CN222935685UActive Publication Date: 2025-06-03ANHUI HUAMAO TEXTILE
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Patent Information

Application Number
CN202422026336.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-06-03
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

The sleeves of existing dyed yarn racks are usually integrated structures, which are difficult to adjust according to different yarn loading amounts, resulting in dyes being easily spilled out from the top of the sleeve, affecting processing efficiency.

Method used

A dyeing yarn rack suitable for different yarn loadings is designed. Through the cooperation of the fixing rod, positioning member and locking member, the height of the sleeve can be flexibly adjusted, and dyes are prevented from flowing out of the top of the sleeve through the locking member.

Benefits of technology

The height of the dyeing rack is adjusted according to the actual amount of yarn is realized to avoid the spilling of dye, and improve processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a yarn dyeing frame adaptive to different yarn loading quantities, which comprises a supporting seat, a yarn dyeing frame, a yarn dyeing frame and a yarn dyeing frame, the fixing rod is vertically inserted into the supporting seat and is connected with the outlet of the supporting seat; the positioning component comprises a plurality of positioning assemblies vertically distributed on the fixing rod, each positioning assembly comprises a connecting sleeve screwed on the fixing rod, the connecting sleeve is sleeved with a sleeve, and a plurality of connecting plates are further distributed between the sleeve and the connecting sleeve; the locking parts are arranged at the top ends of the fixing rods, and the ends, away from the top ends of the fixing rods, of the locking parts are connected with the top ends of the corresponding sleeves; according to the utility model, the fixed rod, the positioning part and the locking part are matched with each other, the corresponding number of positioning assemblies are screwed on the fixed rod according to the number of actually processed yarns, and the sleeves are sequentially connected, so that the height of the whole sleeve can be flexibly adjusted, and the height of the whole sleeve corresponds to the height of the whole yarn bobbin; the locking part restrains the yarn bobbin and prevents dye from flowing out of the top end of the sleeve, and the processing efficiency is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of printing and dyeing, in particular to a yarn dyeing rack adapted to different yarn loading amounts. Background Art

[0002] In the textile process, a yarn dyeing rack is an indispensable device in the processing procedures such as dyeing, bleaching, and printing of yarns, and plays an important role in ensuring the dyeing quality and efficiency of yarns.

[0003] In actual work, since the quantity and dyeing requirements of each type of yarn are different, the yarn loading amounts of each yarn on the yarn dyeing rack are also different. However, the sleeves for fixing the yarns on the yarn dyeing rack are usually of an integral structure, and it is difficult to adjust the size of the sleeves according to the yarn loading amount of the yarns to be dyed. When the height of the sleeve is higher than the height of the yarn on the sleeve, the dye is likely to spill out from the top end of the sleeve, affecting the processing efficiency. Therefore, this application specifically proposes a yarn dyeing rack that can individually adjust the length according to the yarn loading amount. Summary of the Utility Model

[0004] The main purpose of the utility model is to provide a yarn dyeing rack that can individually adjust the length according to the yarn loading amount.

[0005] To achieve the above purpose, the utility model provides a yarn dyeing rack adapted to different yarn loading amounts, including:

[0006] A support base, which is connected to a conveying component for conveying the dye, and an outlet for the dye to flow out is also provided on the support base;

[0007] A fixing rod, which is vertically inserted into the support base and connected to the outlet of the support base;

[0008] A positioning component, including a plurality of positioning assemblies vertically distributed on the fixing rod. The positioning assembly includes a connecting sleeve screwed onto the fixing rod. A sleeve is sleeved on the connecting sleeve. A plurality of through holes for the dye to pass through are distributed on the sleeve, and a space for the dye to flow is left between the sleeve and the connecting sleeve. The sleeve is used to support the yarn bobbin. A plurality of connecting plates are also distributed between the sleeve and the connecting sleeve. When the sleeve is rotated, the sleeve drives the connecting sleeve to move up and down reciprocally on the fixing rod through each connecting plate;

[0009] A locking component, which is arranged at the top end of the fixing rod. One end of the locking component away from the top end of the fixing rod is connected to the top end of the corresponding sleeve. The locking component is used to limit the up and down movement of the yarn bobbin and prevent the dye from flowing out from the top end of the sleeve.

[0010] Further, a thread is provided at the outlet of the support base;

[0011] A connecting ring is provided at the bottom end of each sleeve. The diameter of the connecting ring is smaller than that of the sleeve and is coaxially arranged with the sleeve. Threads are also provided on the connecting ring. A connecting groove is opened at the top end of each sleeve, and another set of threads corresponding to the threads on the connecting ring is opened in the connecting groove. Adjacent two sleeves are connected together through the connecting ring, and the threads opened at the outlet of the support base correspond to the threads on the connecting ring.

[0012] Further, the locking component includes a multi-stage telescopic assembly arranged at the top of the fixed rod. The multi-stage telescopic assembly includes a positioning sleeve screwed on the top of the fixed rod and a plurality of sliding sleeves sequentially sleeved in the direction close to the support base from the positioning sleeve. Each sliding sleeve is sleeved on the fixed rod. The sliding sleeve close to the top of the fixed rod is vertically slidably connected to the positioning sleeve. A locking cylinder is rotatably provided at the bottom end of the sliding sleeve close to the support base. The locking cylinder is vertically slidably sleeved on the fixed rod and a first locking ring is provided at the bottom. The locking cylinder is in dynamic sealing fit with the fixed rod. Another set of threads corresponding to the threads on the connecting groove is opened on the first locking ring. When the first locking ring is screwed into the corresponding connecting groove, the locking cylinder abuts against the top of the corresponding sleeve. A locking member is also screwed on the locking cylinder, and the locking member is used to position the yarn bobbin.

[0013] Further, external threads are opened on the surface of the locking cylinder;

[0014] The locking member includes a second locking ring sleeved on the surface of the locking cylinder. Internal threads are opened on the inner wall of the second locking ring and are threadedly connected to the surface of the locking cylinder. A positioning ring is rotatably provided at the bottom end of the second locking ring. The second locking ring rotates around the axis of the fixed rod. When the second locking ring moves downward, the positioning ring contacts the corresponding yarn bobbin and provides a downward pressure.

[0015] Further, pin holes are opened on the positioning sleeve and each sliding sleeve. When each sliding sleeve shrinks into the positioning sleeve, the pin holes are coaxial. At this time, a limiting pin is inserted to restrict the up and down movement of each sliding sleeve.

[0016] The beneficial effects of the present utility model are embodied in:

[0017] In the present utility model, through the mutual cooperation of the fixed rod, the positioning component and the locking component, corresponding numbers of positioning assemblies are sequentially screwed from bottom to top on the fixed rod according to the actual number of yarns processed, and each sleeve is connected in sequence, so that the height of the overall sleeve can be flexibly adjusted, and the height of the overall sleeve corresponds to the height of the overall yarn bobbin. Then, the locking component restricts the movement of the yarn bobbin on the sleeve and prevents the dye from flowing out from the top end of the sleeve, ensuring the processing efficiency. Description of the Drawings

[0018] Figure 1 is the first three-dimensional view of the yarn dyeing rack adapted to different yarn loading amounts according to the present utility model;

[0019] Figure 2 is the sectional view of the yarn dyeing rack adapted to different yarn loading amounts according to the present utility model;

[0020] Figure 3 is Figure 2 the enlarged view at A in

[0021] Figure 4 is Figure 2 the enlarged view at B in

[0022] Figure 5 is Figure 2 the enlarged view at C in

[0023] Figure 6 is the structural view of the positioning component.

[0024] Explanation of reference numerals:

[0025] 1, support base; 11, outlet; 2, fixed rod; 3, positioning component; 31, positioning assembly; 311, connecting sleeve; 312, sleeve; 3121, through hole; 3122, connecting ring; 3123, connecting groove; 313, connecting plate; 4, locking component; 41, multi-stage telescopic assembly; 411, positioning sleeve; 412, sliding sleeve; 42, locking cylinder; 421, first locking ring; 43, locking member; 431, second locking ring; 432, positioning ring; 5, pin hole; 6, limit pin; 7, yarn bobbin. Specific implementation

[0026] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Without conflict, the embodiments in this application and the features in the embodiments can be combined with each other.

[0027] See Figures 1-6 .

[0028] The present utility model discloses a yarn dyeing rack adapted to different yarn loading amounts, including:

[0029] A support base 1, which is connected to a conveying component for conveying dyes, and an outlet 11 for the dyes to flow out is further provided on the support base 1;

[0030] A fixed rod 2, which is vertically inserted into the support base 1 and connected to the outlet 11 of the support base 1;

[0031] The positioning component 3 includes a plurality of positioning assemblies 31 vertically distributed on the fixed rod 2. The positioning assembly 31 includes a connecting sleeve 311 screwed onto the fixed rod 2. A sleeve 312 is sleeved on the connecting sleeve 311. A plurality of through holes 3121 for the dye to pass through are distributed on the sleeve 312. And a space for the dye to flow is left between the sleeve 312 and the connecting sleeve 311. The sleeve 312 is used to support the yarn bobbin 7. A plurality of connecting plates 313 are also distributed between the sleeve 312 and the connecting sleeve 311. When the sleeve 312 is rotated, the sleeve 312 drives the connecting sleeve 311 to reciprocate up and down on the fixed rod 2 through the respective connecting plates 313;

[0032] The locking component 4 is arranged at the top end of the fixed rod 2. One end of the locking component 4 away from the top end of the fixed rod 2 is connected to the top end of the corresponding sleeve 312. The locking component 4 is used to limit the up and down movement of the yarn bobbin 7 and prevent the dye from flowing out of the top end of the sleeve 312.

[0033] In a specific implementation, before dyeing the yarn, the staff sets the corresponding number of positioning assemblies 31 on the fixed rod 2 according to the actual yarn loading amount of the yarn to be dyed. By screwing the respective connecting sleeves 311 onto the fixed rod 2 from bottom to top in sequence until the respective sleeves 312 are connected in sequence, and the sleeve 312 arranged at the bottom is connected to the outlet 11 of the support base 1. Then, the respective yarn bobbins 7 to be dyed are sleeved on the corresponding sleeves 312 from bottom to top in sequence. The conveying component conveys the dye from the outlet 11 of the support base 1 into the space between the respective sleeves 312 and the corresponding connecting sleeves 311 and flows out from the respective through holes 3121 to dye the yarn. The locking component 4 is used to prevent the dye from spilling out from the top of the sleeve 312 arranged at the top.

[0034] In the present utility model, through the mutual cooperation of the fixed rod 2, the positioning component 3 and the locking component 4, the corresponding number of positioning assemblies 31 are screwed onto the fixed rod 2 from bottom to top in sequence according to the actual number of yarns to be processed, and the respective sleeves 312 are connected in sequence, so that the overall height of the positioning component 3 can be flexibly adjusted to correspond to the overall height of the yarn bobbins 7. Then, the locking component 4 restricts the movement of the yarn bobbin 7 on the sleeve 312 and prevents the dye from flowing out of the top end of the sleeve 312, ensuring the processing efficiency.

[0035] It should be noted that the structure of the conveying component is common knowledge to those skilled in the art, so its structure will not be described in detail here.

[0036] In one embodiment, a thread is provided at the outlet 11 of the support base 1;

[0037] A connecting ring 3122 is provided at the bottom end of each sleeve 312. The diameter of the connecting ring 3122 is smaller than that of the sleeve 312 and is coaxially arranged with the sleeve 312. Threads are also provided on the connecting ring 3122. A connecting groove 3123 is formed at the top end of each sleeve 312, and another set of threads corresponding to the threads on the connecting ring 3122 is formed in the connecting groove 3123. Adjacent two sleeves 312 are connected together through the connecting ring 3122, and the threads formed at the outlet 11 of the support base 1 correspond to the threads on the connecting ring 3122.

[0038] In specific implementation, when the positioning component 3 needs to be installed, the connecting sleeve 311 in one of the positioning components 3 is screwed with the fixing rod 2, and then the corresponding sleeve 312 is rotated to drive the connecting sleeve 311 to move downward on the fixing rod 2 until the connecting ring 3122 on the corresponding sleeve 312 is screwed with the threads at the outlet 11 of the support base 1. At this time, the sleeve 312 is positioned on the support base 1. Then, the staff screws the next positioning component 3 onto the fixing rod 2 and moves it downward, and makes the connecting ring 3122 on the corresponding sleeve 312 be screwed with the connecting groove 3123 on the adjacent lower sleeve 312 until the two sleeves 312 are connected to each other, and the above operation is repeated to connect the sleeves 312 to each other in sequence.

[0039] With such a design, the sleeves 312 are connected in sequence through the cooperation between the connecting rings 3122 and the corresponding connecting grooves 3123 until the height of the connected sleeves 312 corresponds to the height of the yarn, which is convenient for the staff to install and adjust. Moreover, the threaded connection between the sleeves 312 can effectively prevent the dye from accidentally leaking out from the connection between the sleeves 312, further ensuring the dyeing quality. When the positioning component 3 needs to be removed, each sleeve 312 is reversed in sequence to drive the corresponding connecting sleeve 311 to move upward until it is separated from the fixing rod 2.

[0040] In an embodiment, the locking component 4 includes a multi-stage telescopic assembly 41 arranged at the top of the fixing rod 2. The multi-stage telescopic assembly 41 includes a positioning sleeve 411 screwed on the top of the fixing rod 2 and a plurality of sliding sleeves 412 slidably sleeved in sequence from the positioning sleeve 411 towards the direction close to the support base 1. Each sliding sleeve 412 is sleeved on the fixing rod 2. The sliding sleeve 412 close to the top of the fixing rod 2 is vertically slidably connected with the positioning sleeve 411. A locking cylinder 42 is rotatably provided at the bottom end of the sliding sleeve 412 close to the support base 1. The locking cylinder 42 is vertically slidably sleeved on the fixing rod 2 and a first locking ring 421 is provided at the bottom. The locking cylinder 42 is in dynamic sealing cooperation with the fixing rod 2. Another set of threads corresponding to the threads on the connecting groove 3123 is formed on the first locking ring 421. When the first locking ring 421 is screwed into the corresponding connecting groove 3123, the locking cylinder 42 abuts against the top of the corresponding sleeve 312. A locking member 43 is also screwed on the locking cylinder 42, and the locking member 43 is used for positioning the yarn bobbin 7.

[0041] With such a design, after all the yarn bobbins 7 are placed, the positioning sleeve 411 is screwed onto the top of the fixed rod 2, and the locking cylinder 42 is pulled downward. The locking cylinder 42 drives each sliding sleeve 412 to move downward until the first locking ring 421 contacts the connecting groove 3123 on the corresponding sleeve 312. At this time, the locking cylinder 42 is rotated. The locking cylinder 42 drives the first locking ring 421 to rotate and engage with the corresponding connecting groove 3123. The locking cylinder 42 continues to descend until the locking cylinder 42 contacts the top of the corresponding sleeve 312 and applies a downward pressure to the sleeve 312. At this time, the locking cylinder 42 closes the opening at the top of the corresponding sleeve 312 to prevent the dye from leaking out from the top of the sleeve 312. Then, the locking member 43 is rotated to position the yarn bobbin 7 and prevent the yarn bobbin 7 from moving on the sleeve 312. When it is necessary to remove the yarn bobbin 7, the locking cylinder 42 is reversed until the first locking ring 421 is separated from the corresponding sleeve 312, and then the locking cylinder 42 is pulled upward to drive each sliding sleeve 412 to move upward and contract. Then, the positioning sleeve 411 is reversed to separate the positioning sleeve 411 from the fixed rod 2. The disassembly is fast and simple, improving work efficiency.

[0042] In one embodiment, an external thread is provided on the surface of the locking cylinder 42;

[0043] The locking member 43 includes a second locking ring 431 sleeved on the surface of the locking cylinder 42. An internal thread is provided on the inner wall of the second locking ring 431 and is threadedly connected to the surface of the locking cylinder 42. A positioning ring 432 is rotatably provided at the bottom end of the second locking ring 431. The second locking ring 431 rotates around the axis of the fixed rod 2. When the second locking ring 431 moves downward, the positioning ring 432 contacts the corresponding yarn bobbin 7 and provides a downward pressure.

[0044] With such a design, after the locking cylinder 42 abuts against the top end of the corresponding sleeve 312, the second locking ring 431 is rotated to drive the positioning ring 432 to move downward until the positioning ring 432 contacts the top end of the corresponding yarn bobbin 7 and applies a downward pressure, thereby restricting the up-and-down movement of the yarn bobbin 7 on the sleeve 312.

[0045] In one embodiment, pin holes 5 are provided on both the positioning sleeve 411 and each sliding sleeve 412. When each sliding sleeve 412 contracts into the positioning sleeve 411, the pin holes 5 are coaxial. At this time, a limit pin 6 is inserted to restrict the up-and-down movement of each sliding sleeve 412.

[0046] With such a design, after the multi-stage telescopic component 41 is used up, each sliding sleeve 412 is retracted into the positioning sleeve 411. At this time, each pin hole 5 is coaxial, and then the limit pin 6 is inserted through each pin hole 5, thereby restricting the up and down movement of each sliding sleeve 412, thus avoiding accidental extension of each sliding sleeve 412, which is convenient for the staff to manage and store. When the multi-stage telescopic component 41 works, the limit pin 6 can also be inserted into the pin hole 5 of the positioning sleeve 411 for convenient temporary storage and not easy to be lost.

[0047] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention. In addition, "a plurality of", "multiple groups", and "several" mean more than two.

Claims

1. The yarn dyeing frame is suitable for different yarn loading amounts, characterized in that: include: A support seat (1), the support seat (1) being connected to a conveying component for conveying dye, and the support seat (1) being provided with an outlet (11) for the dye to flow out; A fixing rod (2) is vertically inserted into the support seat (1) and connected to the outlet (11) of the support seat (1); A positioning component (3), comprising a plurality of positioning components (31) vertically distributed on the fixed rod (2), the positioning component (31) comprising a connecting sleeve (311) screwed on the fixed rod (2), a sleeve (312) being sleeved on the connecting sleeve (311), a plurality of through holes (3121) for dye to pass through being distributed on the sleeve (312), and a space for dye to flow is reserved between the sleeve (312) and the connecting sleeve (311), the sleeve (312) being used to support the yarn bobbin (7), a plurality of connecting plates (313) being distributed between the sleeve (312) and the connecting sleeve (311), and when the sleeve (312) is rotated, the sleeve (312) drives the connecting sleeve (311) to reciprocate up and down on the fixed rod (2) through the connecting plates (313); A locking component (4) is arranged at the top end of the fixing rod (2), and one end of the locking component (4) away from the top end of the fixing rod (2) is connected to the top end of the corresponding sleeve (312). The locking component (4) is used to limit the upward and downward movement of the yarn tube (7) and prevent the dye from flowing out from the top end of the sleeve (312).

2. The yarn dyeing frame adapted to different yarn loading amounts according to claim 1, characterized in that: The outlet (11) of the support seat (1) is provided with a thread; A connecting ring (3122) is provided at the bottom end of each sleeve (312). The connecting ring (3122) has a diameter smaller than that of the sleeve (312) and is coaxially arranged with the sleeve (312). The connecting ring (3122) is also provided with a thread. A connecting groove (3123) is provided at the top end of each sleeve (312). Another group of threads corresponding to the threads on the connecting ring (3122) is provided in the connecting groove (3123). Two adjacent sleeves (312) are connected together via the connecting ring (3122), and the threads provided at the outlet (11) of the support seat (1) correspond to the threads on the connecting ring (3122).

3. The yarn dyeing frame adapted to different yarn loading amounts according to claim 2 is characterized in that: The locking component (4) comprises a multi-stage telescopic assembly (41) arranged at the top of the fixing rod (2), the multi-stage telescopic assembly (41) comprising a positioning sleeve (411) screwed on the top of the fixing rod (2) and a plurality of sliding sleeves (412) sequentially slidably sleeved by the positioning sleeve (411) in a direction close to the support seat (1), each of the sliding sleeves (412) being sleeved on the fixing rod (2), the sliding sleeve (412) close to the top of the fixing rod (2) being vertically slidably connected to the positioning sleeve (411), and a locking cylinder (42) being rotatably provided at the bottom end of the sliding sleeve (412) close to the support seat (1). The locking cylinder (42) is vertically slidably sleeved on the fixed rod (2) and a first locking ring (421) is provided at the bottom. The locking cylinder (42) is dynamically sealed with the fixed rod (2). The first locking ring (421) is provided with another set of threads corresponding to the threads on the connecting groove (3123). When the first locking ring (421) is screwed into the corresponding connecting groove (3123), the locking cylinder (42) abuts against the top of the corresponding sleeve (312). A locking component (43) is also screwed on the locking cylinder (42). The locking component (43) is used to position the yarn tube (7).

4. The yarn dyeing frame adapted to different yarn loading amounts according to claim 3, characterized in that: The locking cylinder (42) is provided with an external thread on its surface; The locking member (43) comprises a second locking ring (431) sleeved on the surface of the locking cylinder (42); an internal thread is provided on the inner wall of the second locking ring (431) and the second locking ring (431) is threadedly connected to the surface of the locking cylinder (42); a positioning ring (432) is rotatably provided at the bottom end of the second locking ring (431); the second locking ring (431) rotates around the axis of the fixing rod (2); when the second locking ring (431) moves downward, the positioning ring (432) contacts the corresponding yarn tube (7) and provides downward pressure.

5. The yarn dyeing frame adapted to different yarn loading amounts according to claim 3, characterized in that: The positioning sleeve (411) and each of the sliding sleeves (412) are provided with a pin hole (5). When each of the sliding sleeves (412) is retracted into the positioning sleeve (411), each of the pin holes (5) is coaxial. At this time, a limit pin (6) is inserted to constrain each of the sliding sleeves (412) to move up and down.