Dacron processing, drafting and winding equipment
By introducing a drafting and winding mechanism, a translation mechanism, and a second guiding mechanism into the polyester processing equipment, the problem of uneven yarn winding was solved, achieving uniform winding and efficient transmission of the yarn, and improving winding efficiency and neatness.
Patent Information
- Application Number
- CN202423217371.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing polyester processing drafting and winding equipment lacks a yarn guiding mechanism, which causes the yarn to concentrate on the outer wall of the winding roller, reducing winding efficiency and neatness.
A polyester processing drafting and winding device was designed, comprising a drafting and winding mechanism, a translation mechanism, and a second guiding mechanism. Through the cooperation of the guiding mechanism and the translation mechanism, uniform winding of the yarn is achieved, frictional resistance is reduced, and the winding position is adjusted.
It improves the neatness and efficiency of yarn winding, avoids yarn deflection and scratching, and enhances the protective function of winding.
Smart Images

Figure CN223704745U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to drafting winding equipment technical field, especially in polyester processing drafting winding equipment. BACKGROUND
[0002] In the processing of polyester, the drafting winding equipment is needed to draw the sliver and make the fiber in the sliver straight and parallel, so as to improve the quality and performance of the yarn.
[0003] In the prior art, the drafting winding equipment used today is wound on the winding roller, but the drafting winding equipment does not have a yarn guiding mechanism, which causes the winding of the yarn on the outer wall of the winding roller to be concentrated in one place, which not only reduces the utilization rate of the winding roller, but also affects the neatness of the yarn winding. Therefore, a polyester processing drafting winding equipment is proposed. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a polyester processing drafting winding equipment to solve the problems in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a polyester processing drafting winding equipment, comprising a bottom plate, further comprising:
[0006] A drafting winding mechanism is fixedly installed on one side of the top end of the bottom plate, the front surface of the drafting winding mechanism is provided with a first guiding mechanism, and the first guiding mechanism is used for guiding the yarn.
[0007] A translation mechanism is arranged between the drafting winding mechanism and the first guiding mechanism, and the translation mechanism is used for driving the first guiding mechanism to move horizontally along the axis of the drafting winding mechanism.
[0008] A second guiding mechanism is arranged on the side of the first guiding mechanism away from the drafting winding mechanism, and the second guiding mechanism is used for limiting the horizontal transmission of the yarn.
[0009] Preferably, the drafting winding mechanism comprises a winding roller, the two ends of the winding roller are rotatably connected with support seats, the bottom of each support seat is fixedly connected with the bottom plate, one side wall of one of the support seats is fixedly installed with a winding motor, and the winding motor is in transmission connection with one end of the winding roller.
[0010] Preferably, the first guiding mechanism and the second guiding mechanism each comprise a wheel seat, and both ends of the inner side of the wheel seat are rotatably connected with fixed pulleys.
[0011] Preferably, the translation mechanism comprises a reciprocating screw and a drive seat, both ends of the reciprocating screw are rotatably connected with a fixed plate, one end of the fixed plate is fixed with the side wall of the support seat, the side of the reciprocating screw close to the draft winding mechanism is provided with a slide rod fixed with the fixed plate, the end of the drive seat is provided with an internal screw hole matched with the reciprocating screw, and the other end of the drive seat is provided with a slide hole matched with the slide rod.
[0012] Preferably, the top end of the drive seat is fixedly connected with a second stand, the outer wall of the second stand is slidably sleeved with a second slide sleeve, and the outer wall of the second slide sleeve is threadedly connected with a second compression bolt.
[0013] Preferably, the top end of the bottom plate and the position directly below the second guide mechanism are fixedly connected with a first stand, the outer wall of the first stand is slidably sleeved with a first slide sleeve, and the bottom of the outer wall of the first slide sleeve is threadedly connected with a first compression bolt.
[0014] The technical effects and advantages of the present application are as follows:
[0015] The present application has the advantages that the translation mechanism and the first guide mechanism are assembled in front of the draft winding mechanism, and the second guide mechanism is used for limiting the horizontal position of the sliver, so that the sliver can be reciprocally translated through the first guide mechanism when being wound on the draft winding mechanism, and the sliver can be uniformly wound on the outer wall of the draft winding mechanism, thereby improving the neatness of the sliver winding. BRIEF DESCRIPTION OF DRAWINGS
[0016] Fig. 1 It is a whole structure schematic view of the present application.
[0017] Fig. 2 It is a three-dimensional structure schematic view of the drive seat of the present application.
[0018] Fig. 3 It is a three-dimensional structure schematic view of the first guide mechanism of the present application.
[0019] In the drawing: 100, bottom plate; 200, draft winding mechanism; 201, winding roller; 202, support seat; 203, winding motor; 300, first guide mechanism; 301, wheel seat; 302, fixed pulley; 400, second guide mechanism; 401, first stand; 402, first slide sleeve; 403, first compression bolt; 500, translation mechanism; 501, fixed plate; 502, reciprocating screw; 503, drive seat; 504, internal screw hole; 505, slide hole; 506, slide rod; 507, second stand; 508, second slide sleeve; 509, second compression bolt. DETAILED DESCRIPTION
[0020] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0021] The utility model provides a kind of polyester processing draft winding equipment as Figs. 1-3 As shown in a kind of polyester processing draft winding equipment, including bottom plate 100, still including draft winding mechanism 200, translation mechanism 500 and second guide mechanism 400, draft winding mechanism 200 is fixedly installed in the top end one side of bottom plate 100, the front of draft winding mechanism 200 is equipped with first guide mechanism 300, first guide mechanism 300 is used to guide sliver, translation mechanism 500 is arranged between draft winding mechanism 200 and first guide mechanism 300, translation mechanism 500 is used to drive first guide mechanism 300 to move axially horizontally along draft winding mechanism 200, second guide mechanism 400 is arranged in the side of first guide mechanism 300 deviating from draft winding mechanism 200, and second guide mechanism 400 is used for the limiting of sliver horizontal transmission, and the sliver of polyester processing is wound by draft winding mechanism 200, and the sliver is sequentially threaded through second guide mechanism 400 and first guide mechanism 300 before winding, and the sliver is positioned, and simultaneously, first guide mechanism 300 is driven to move horizontally reciprocatingly by cooperating with translation mechanism 500, so that first guide mechanism 300 can drive the sliver to be wound back and forth on draft winding mechanism 200, to make the winding of sliver more processing.
[0022] Among them, first guide mechanism 300 and second guide mechanism 400 all include wheel seat 301, both ends of the inner side of wheel seat 301 are rotatably connected with fixed pulley 302, two rotatable fixed pulleys 302 are arranged horizontally in wheel seat 301, so that the sliver is threaded through between two fixed pulleys 302, and then, with the horizontal reciprocating movement of first guide mechanism 300 driven by translation mechanism 500, the sliver can be contacted with the arc outer wall of fixed pulley 302, and the rotation of fixed pulley 302 is matched, so that the frictional resistance between the sliver and fixed pulley 302 can be reduced, and the situation that the sliver is easily deflected or scraped off due to scraping with external when winding due to back and forth reciprocating movement is avoided, so that the protection effect of sliver winding is improved.
[0023] Further, the translation mechanism 500 comprises a reciprocating screw 502 and a driving seat 503, both ends of the reciprocating screw 502 are rotatably connected with a fixed plate 501, one end of the fixed plate 501 is fixed with the side wall of the support seat 202, the side of the reciprocating screw 502 close to the drafting winding mechanism 200 is provided with a slide rod 506 fixed with the fixed plate 501, the end of the driving seat 503 is provided with an inner screw hole 504 matched with the reciprocating screw 502, the other end of the driving seat 503 is provided with a slide hole 505 matched with the slide rod 506, through the cooperation of the slide rod 506 and the slide hole 505 on the driving seat 503, the reciprocating screw 502 drives the driving seat 503 to reciprocate along the reciprocating screw 502 when the reciprocating screw 502 rotates, so as to adjust the winding position of the sliver and make the sliver winding more integrated.
[0024] In the preferred embodiment, the top end of the driving seat 503 is fixedly connected with a second stand 507, the outer wall of the second stand 507 is slidably sleeved with a second sliding sleeve 508, the outer wall of the second sliding sleeve 508 is threadedly connected with a second compression bolt 509, the extrusion of the second compression bolt 509 on the second stand 507 can lock the position between the second sliding sleeve 508 and the second stand 507, and the second sliding sleeve 508 can move on the second stand 507, so as to adjust the height of the first guide mechanism 300, so that the height of the sliver transmission is the same as the upper surface height of the winding roller 201, thereby keeping the horizontal winding of the sliver; the top end of the bottom plate 100 and the position directly below the second guide mechanism 400 are fixedly connected with a first stand 401, the outer wall of the first stand 401 is slidably sleeved with a first sliding sleeve 402, and the bottom of the outer wall of the first sliding sleeve 402 is threadedly connected with a first compression bolt 403; similarly, the cooperation of the first sliding sleeve 402, the first stand 401 and the first compression bolt 403 can adjust the height of the second guide mechanism 400 to meet the horizontal transmission of the sliver
[0025] In the preferred embodiment, the drafting winding mechanism 200 comprises a winding roller 201, both ends of the winding roller 201 are rotatably connected with a support seat 202, the bottom of the support seat 202 is fixed with the bottom plate 100, the side wall of one of the support seats 202 is fixedly installed with a winding motor 203, the winding motor 203 is drivingly connected with one end of the winding roller 201, a transmission member such as a chain and sprocket transmission member or a belt transmission member can be added between the other end of the winding roller 201 and the same end of the reciprocating screw 502, so that the winding motor 203 can drive the winding roller 201 and the reciprocating screw 502 to rotate, and the winding roller 201 can be wound with the sliver by driving the winding roller 201 to rotate by the winding motor 203.
[0026] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.
Claims
1. A polyester processing draft winding apparatus comprising a base plate (100), characterized in that, Also includes: Draft winding mechanism (200), the draft winding mechanism (200) is fixedly installed on the top end of the bottom plate (100), the front of the draft winding mechanism (200) is provided with a first guide mechanism (300), and the first guide mechanism (300) is used for guiding the sliver; Translation mechanism (500), the translation mechanism (500) is arranged between the draft winding mechanism (200) and the first guide mechanism (300), and the translation mechanism (500) is used for driving the first guide mechanism (300) to move axially along the draft winding mechanism (200); Second guide mechanism (400), the second guide mechanism (400) is arranged on the side of the first guide mechanism (300) away from the draft winding mechanism (200), and the second guide mechanism (400) is used for limiting the horizontal transmission of the sliver.
2. The polyester processing draft winding apparatus according to claim 1, wherein The draft winding mechanism (200) comprises a winding roller (201), both ends of the winding roller (201) are rotatably connected with support seats (202), the bottom of the support seat (202) is fixed with the bottom plate (100), and the sidewall of one of the support seats (202) is fixedly installed with a winding motor (203).
3. The polyester processing draft winding apparatus according to claim 2, wherein The first guide mechanism (300) and the second guide mechanism (400) both comprise a wheel seat (301), both ends of the inner side of the wheel seat (301) are rotatably connected with fixed pulleys (302).
4. The polyester processing draft winding apparatus according to claim 3, wherein The translation mechanism (500) comprises a reciprocating screw (502) and a driving seat (503), both ends of the reciprocating screw (502) are rotatably connected with fixed plates (501), one end of the fixed plate (501) is fixed with the sidewall of the support seat (202), one side of the reciprocating screw (502) close to the draft winding mechanism (200) is provided with a sliding rod (506) fixed with the fixed plate (501), and the end of the driving seat (503) is provided with an inner screw hole (504) matched with the reciprocating screw (502).
5. The polyester processing draft winding apparatus according to claim 4, wherein The top end of the driving seat (503) is fixedly connected with a second vertical column (507), the outer wall of the second vertical column (507) is slidably sleeved with a second sliding sleeve (508), and the outer wall of the second sliding sleeve (508) is threadedly connected with a second compression bolt (509).
6. The polyester processing draft winding apparatus according to claim 5, wherein The top end of the bottom plate (100) and the position directly below the second guide mechanism (400) are fixedly connected with a first vertical column (401), the outer wall of the first vertical column (401) is slidably sleeved with a first sliding sleeve (402), and the bottom of the outer wall of the first sliding sleeve (402) is threadedly connected with a first compression bolt (403).