Spool hanger for garment processing
The sprocket chain system and the movable spool support plate are driven by a worm gear reduction motor to realize the automatic taking and placing of the spool hanger, solving the problem of low efficiency of manual operation and reducing labor intensity and cost.
Patent Information
- Application Number
- CN202423068145.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Existing spool hangers require manual placement and removal of spools, which is inefficient, labor-intensive and costly. In addition, the fixed position of the spool requires frequent movement and posture adjustment.
A worm gear reduction motor is used to drive the rotating shaft, which drives the sprocket and chain to make the spool support plate and positioning rod movable, so as to realize automatic removal and rapid placement of the spool. Combined with the movable spool loading plate and universal wheel, the movement and positioning of the spool are convenient.
Automatic spool picking and placing reduces manual operation time, lowers labor costs, reduces labor intensity, improves efficiency, and saves spool picking and placing time.
Smart Images

Figure CN223468013U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to clothing production technical field especially relates to a clothes processing spool hanger. BACKGROUND
[0002] In the clothing production process, in order to facilitate the extraction of the thread on the spool, usually equipped with spool hanger, the regular mounting of multiple spools is installed on the hanger, and then the stable conveying of multiple threads to the processing equipment is realized. At present, the spool on the spool hanger is usually placed and taken down manually by artificial manual, and the artificial manual spool placing and taking down not only takes a long time and is low in efficiency, but also the placing position of the spool on the spool hanger is fixed, and the artificial placing and taking down of the spool process needs frequent movement and posture adjustment, and then leads to the labor intensity of the spool taking and placing process, the heavy work task, and usually needs multiple people to cooperate, so the labor cost is higher. SUMMARY
[0003] The utility model aims at providing a kind of spool hanger for clothing processing, with the effect of automatic spool taking down and helping worker to place spool quickly.
[0004] The above technical purpose of the utility model is realized by the following technical scheme: a kind of spool hanger for clothing processing, including L-shaped plate, a pair of mutually parallel and respectively fixed connection L-shaped plate both sides side plate, a pair of upper and lower parallel and both ends respectively rotating connection both side plates rotating shaft, drive one rotating shaft rotation worm gear motor, two pairs of respectively fixed on two rotating shafts sprocket, two respectively set in two pairs of sprocket chain, multiple fixed connection two chains and parallel interval spool support plate, multiple vertical fixed connection spool support plate and parallel interval spool positioning rod, fixed in the horizontal side wall of the L-shaped plate and between both side plates empty spool collection box, the chain is inclined, and upper end is close to the vertical side wall of L-shaped plate, lower end is far from the vertical side wall of L-shaped plate, the spool positioning rod and chain are perpendicular to each other, the worm gear motor is fixed on one side plate opposite the other side plate one side, and one rotating shaft one end rotates through the side plate and connects worm gear motor output end.
[0005] The utility model further provides: the side plate is pentagon, and two sides are horizontal, two sides are vertical, and the remaining one side is inclined, the chain is parallel to the inclined edge of side plate far from the side of L-shaped plate, and the spool support plate on this side of chain is flush with the inclined edge of side plate, the spool positioning rod is perpendicular to the side of spool support plate flush with the inclined edge of side plate.
[0006] The further setting of the utility model is that: the n-shaped plate is fixedly connected between the two side plates, the top of the n-shaped plate is inclined, and a thread spool feeding plate is arranged, the lower end of the thread spool feeding plate is perpendicular to and contacts the inclined edge of the side plate, a plurality of parallel and spaced arc-shaped sliding grooves are formed in the surface of the thread spool feeding plate, and the lowest parts of all the arc-shaped sliding grooves are respectively provided with openings for the passage of all the thread spool supporting rods of a thread spool supporting plate.
[0007] The further setting of the utility model is that: a pair of positioning holes are formed in the top of the n-shaped plate, and a pair of positioning columns are fixedly arranged at the bottom of the thread spool feeding plate and respectively pass through the two positioning holes.
[0008] The further setting of the utility model is that: square grooves are formed at the two ends of the thread spool feeding plate to facilitate the lifting of the thread spool feeding plate by the staff.
[0009] The further setting of the utility model is that: annular grooves for uniformly surrounding the chain are respectively formed in the opposite sides of the two side plates, and slide columns are fixedly arranged at the two ends of the thread spool supporting plate and slide in the two annular grooves.
[0010] The further setting of the utility model is that: a U-shaped handle is fixedly arranged on the side of the empty thread spool collecting box away from the vertical side wall of the L-shaped plate.
[0011] The further setting of the utility model is that: four universal wheels are arranged at the bottom of the L-shaped plate and are respectively close to the four corners of the horizontal side wall of the L-shaped plate.
[0012] The further setting of the utility model is that: long holes are formed in the two side plates to facilitate the moving of the L-shaped plate by the staff.
[0013] The further setting of the utility model is that: the head of the thread spool positioning rod is hemispherical.
[0014] The utility model discloses the beneficial effect is: through adopting the above thread spool hanging frame, when needing to take down the empty thread spool, first, the worm gear reduction motor drive rotating shaft is rotated, then the rotating shaft drives a pair of sprocket rotation, two chains are active, after that, the thread spool supporting plate that hangs the empty thread spool will climb up under the activity of the chain, then, when this thread spool supporting plate follows the chain activity, bypasses the uppermost sprocket two, the thread spool positioning rod on this thread spool supporting plate will be therefore and overturn one hundred and eighty degrees, and changes from the inclined up angle position into the inclined down angle position, finally, the thread spool on the thread spool positioning rod will slide down from the thread spool positioning rod due to its gravity, and falls into the empty thread spool collecting box below,
[0015] When the wire shaft needs to be placed, first, the worm gear reduction motor driving rotating shaft is rotated, then the rotating shaft drives a pair of sprocket to rotate, and two chains are moved; after that, the wire shaft support plate with the empty wire shaft is removed, and under the movement of the chain, it is lowered up and down; then, when the wire shaft support plate moves with the chain and passes the lowermost sprocket 2, the wire shaft positioning rod on the wire shaft support plate restores to the angle position of the hanging wire shaft, and the wire shaft support plate changes from downward to upward; finally, the wire shaft positioning rod on the wire shaft support plate rises through the opening on the wire shaft feeding plate, and when it reaches a certain height, a new wire shaft can be quickly placed on the wire shaft positioning rod by sliding the wire shaft on the upper end of the arc-shaped sliding groove. The movable wire shaft support plate and the wire shaft positioning rod not only perfectly replace the manual wire shaft taking work, but also, in cooperation with the wire shaft feeding plate, they can assist the manual quick placement of a new wire shaft at the same position, thereby effectively saving the wire shaft taking and placing time and labor cost, and fully reducing the labor intensity of manual wire shaft placement. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0017] Fig. 1 is a schematic diagram of the three-dimensional structure of the present embodiment;
[0018] Fig. 2 is a schematic diagram of the connection relationship of the chain, sprocket and wire shaft support plate of the present embodiment;
[0019] Fig. 3 is a schematic diagram of the connection relationship of the n-shaped plate and the wire shaft feeding plate of the present embodiment;
[0020] In the figure, 1, L-shaped plate; 2, side plate; 21, annular groove; 22, long hole; 3, rotating shaft; 4, worm gear reduction motor; 5, sprocket; 6, chain; 7, wire shaft support plate; 71, slide column; 8, wire shaft positioning rod; 9, empty wire shaft collecting box; 91, handle; 10, n-shaped plate; 101, positioning hole; 11, wire shaft feeding plate; 111, arc-shaped sliding groove; 112, opening; 113, positioning column; 114, square groove; 12, universal wheel. DETAILED DESCRIPTION
[0021] The following will clearly and completely describe the technical solutions of the present invention in conjunction with specific embodiments. Obviously, the embodiments described are only some of the embodiments of the present invention, and not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are also within the scope of protection of the present invention.
[0022] Embodiment: A spool hanger for garment processing, such as Figs. 1-3 As shown, it includes an L-shaped plate 1, a pair of side plates 2 that are parallel to each other and fixedly connected to both sides of the L-shaped plate 1, a pair of rotating shafts 3 that are parallel to each other and rotatably connected to the two side plates 2 at both ends, a worm gear reduction motor 4 that drives a rotating shaft 3 to rotate, two pairs of sprockets 5 that are respectively fixed on the two rotating shafts 3, two chains 6 that are respectively sleeved on the two pairs of sprockets 5, a plurality of spool support plates 7 that are fixedly connected to the two chains 6 and spaced parallel to each other, a plurality of spool positioning rods 8 that are vertically fixedly connected to the spool support plates 7 and spaced parallel to each other, an empty spool collecting box 9 that is fixed on the horizontal side wall of the L-shaped plate 1 and located between the two side plates 2, the chain 6 is inclined, and the upper end is close to the vertical side wall of the L-shaped plate 1 and the lower end is away from the vertical side wall of the L-shaped plate 1, the spool positioning rod 8 and the chain 6 are perpendicular to each other, the worm gear reduction motor 4 is fixed to the side of one side plate 2 facing away from the other side plate 2, and one end of a rotating shaft 3 rotates through the side plate 2 to connect to the output end of the worm gear reduction motor 4.
[0023] Furthermore, the side panel 2 is pentagonal, with two sides horizontal, two sides vertical, and the remaining side inclined. The side of the chain 6 away from the L-shaped panel 1 is parallel to the hypotenuse of the side panel 2, and the side of the spool support plate 7 on this side of the chain 6 is flush with the hypotenuse of the side panel 2. The spool positioning rod 8 is perpendicular to the spool support plate 7 and is flush with the hypotenuse of the side panel 2. By adopting the above-mentioned shape of the side panel 2, not only can the use space of the hanging rack be saved, but also, by combining the positional relationship between the side panel 2, the spool support plate 7 and the spool positioning rod 8, the influence of the side panel 2 on the spool line drawing can be greatly reduced.
[0024] Furthermore, an N-shaped plate 10 is fixedly connected between the two side plates 2. The top of the N-shaped plate 10 is inclined, and a bobbin loading plate 11 is provided. The lower end of the bobbin loading plate 11 is vertical and contacts the oblique edge of the side plate 2. The surface of the bobbin loading plate 11 is provided with a plurality of parallel and spaced arc-shaped chutes 111, and the lowest points of all the arc-shaped chutes 111 are provided with openings 112 for all the bobbin support rods on a bobbin support plate 7 to pass through. By adopting the above-mentioned N-shaped plate 10 and bobbin loading plate 11, not only can the movable bobbin support plate 7 and bobbin positioning rod 8 be coordinated to help workers quickly place and hang new bobbins, but also the spacing between the bobbin positioning rod 8 and the bobbin loading plate 11 can be adjusted to quickly adapt to the task of placing bobbins with small differences in outer diameter.
[0025] Further, the n-shaped plate 10 is provided with a pair of positioning holes 101 at the top, and a pair of positioning columns 113 are fixedly arranged at the bottom of the bobbin loading plate 11 and respectively pass through the two positioning holes 101. Not only can the bobbin loading plate 11 with different radii of the arc-shaped sliding groove 111 be replaced to adapt to the placement of the bobbin with a larger outer diameter, but also the bobbin loading plate 11 can be conveniently removed and cleaned by the staff.
[0026] Further, the bobbin loading plate 11 is provided with square grooves 114 at both ends, which can be conveniently lifted by the staff.
[0027] Further, the two side plates 2 are respectively provided with annular grooves 21 that uniformly surround the chain 6, and the two ends of the bobbin supporting plate 7 are respectively fixedly provided with sliding columns 71 that slide in the two annular grooves 21, which can further guarantee the activity stability of the bobbin supporting plate 7 and the bobbin positioning rod 8.
[0028] Further, the empty bobbin collecting box 9 is fixedly provided with a U-shaped handle 91 away from the vertical side wall of the L-shaped plate 1, which can be conveniently pulled out or pushed into the empty bobbin collecting box 9 by the staff in the middle of the L-shaped plate 1 and the two side plates.
[0029] Further, the L-shaped plate 1 is provided with four universal wheels 12 at the bottom, and the four universal wheels 12 are respectively close to the four corners of the horizontal side wall of the L-shaped plate 1, which can conveniently move and transfer the bobbin hanger to quickly provide the wire rope for different equipment.
[0030] Further, the two side plates 2 are provided with long strip holes 22 that can be conveniently held and moved by the staff, which can cooperate with the universal wheels 12 to easily push or pull the bobbin hanger to move to the designated position.
[0031] Further, the head of the bobbin positioning rod 8 is hemispherical, which not only can guarantee the smooth placement of the bobbin on the bobbin positioning rod 8, but also can effectively reduce the wear of the bobbin positioning rod 8 head on the bobbin hole wall.
[0032] The working principle of the embodiment is as follows:
[0033] When the empty bobbin needs to be taken off, first, the worm gear reduction motor 4 drives the rotating shaft 3 to rotate, then the rotating shaft 3 drives the pair of sprockets 5 to rotate and the two chains 6 to move; after that, the bobbin support plate 7 with the empty bobbin will climb up under the movement of the chains 6; then, when the bobbin support plate 7 moves with the chains 6 and passes the uppermost sprocket 5, the bobbin positioning rod 8 on the bobbin support plate 7 will be flipped by 180 degrees and change from the upwardly inclined position to the downwardly inclined position; finally, the bobbin on the bobbin positioning rod 8 will slide down from the bobbin positioning rod 8 due to its own gravity and fall into the empty bobbin collection box 9 below;
[0034] When the empty bobbin needs to be taken off, first, the worm gear reduction motor 4 drives the rotating shaft 3 to rotate, then the rotating shaft 3 drives the pair of sprockets 5 to rotate and the two chains 6 to move; after that, the bobbin support plate 7 with the empty bobbin will climb up under the movement of the chains 6; then, when the bobbin support plate 7 moves with the chains 6 and passes the uppermost sprocket 5, the bobbin positioning rod 8 on the bobbin support plate 7 will be flipped by 180 degrees and change from the upwardly inclined position to the downwardly inclined position; finally, the bobbin on the bobbin positioning rod 8 will slide down from the bobbin positioning rod 8 due to its own gravity and fall into the empty bobbin collection box 9 below;
Claims
1. A spool hanger for garment processing, characterized by, The utility model provides a kind of automatic yarn winding machine, including L-shaped plate (1), a pair of mutually parallel and respectively fixedly connected L-shaped plate (1) both sides side plate (2), a pair of up and down parallel and both ends respectively rotatingly connected both sides plate (2) rotating shaft (3), drive rotating shaft (3) rotation worm gear and worm reduction motor (4), two pairs of respectively fixed on two rotating shafts (3) chain wheel (5), two respectively set in two pairs of chain wheel (5) chain (6), multiple fixedly connected two chain (6) and parallel interval thread reel support plate (7), multiple vertical fixedly connected thread reel support plate (7) and parallel interval thread reel positioning rod (8), fixed in the horizontal side wall of placing L-shaped plate (1) and between both sides plate (2) empty thread reel collection box (9), the chain (6) is inclined, and upper end is close to the vertical side wall of L-shaped plate (1), lower end is far from the vertical side wall of L-shaped plate (1), the thread reel positioning rod (8) and chain (6) are perpendicular to each other, the worm gear and worm reduction motor (4) is fixed to one side plate (2) back to one side of another side plate (2), and one rotating shaft (3) one end rotates through the side plate (2) and connects worm gear and worm reduction motor (4) output end.
2. A spool rack for garment processing according to claim 1, characterized in that: The side plate (2) is pentagonal, and two sides are horizontal, two sides are vertical, and the remaining one side is inclined, the chain (6) is parallel to the inclined side of the side plate (2) away from the side of the L-shaped plate (1), and the thread reel support plate (7) on the side of the chain (6) is flush with the inclined side of the side plate (2), and the thread reel positioning rod (8) is perpendicular to the side of the thread reel support plate (7) flush with the inclined side of the side plate (2).
3. A spool rack for garment processing according to claim 2, wherein: The n-shaped plate (10) is fixedly connected between the two side plates (2), the top of the n-shaped plate (10) is inclined, and the thread reel feeding plate (11) is arranged, the lower end of the thread reel feeding plate (11) is perpendicular to and contacts the inclined side of the side plate (2), and the surface of the thread reel feeding plate (11) is provided with a plurality of parallel and spaced arc-shaped sliding grooves (111), and the lowest part of all the arc-shaped sliding grooves (111) is provided with an opening (112) for passing all the thread reel support rods of a thread reel support plate (7).
4. The spool rack of claim 3, wherein: The n-shaped plate (10) is provided with a pair of positioning holes (101) at the top, and the thread reel feeding plate (11) is fixedly provided with a pair of positioning columns (113) passing through the two positioning holes (101) respectively.
5. A spool rack for garment processing according to claim 4, wherein: The thread reel feeding plate (11) is provided with a square recess (114) at both ends to facilitate the lifting of the thread reel feeding plate (11) by the staff.
6. The spool rack of claim 1, wherein: The two side plates (2) are respectively provided with a ring-shaped groove (21) uniformly surrounding the chain (6) on the opposite side, and the thread reel support plate (7) is respectively provided with a sliding column (71) sliding in the two ring-shaped grooves (21) at both ends.
7. The spool rack of claim 1, wherein: The empty thread reel collection box (9) is fixedly provided with a U-shaped handle (91) away from the vertical side wall of the L-shaped plate (1) on one side.
8. The spool rack of claim 1, wherein: Four universal wheels (12) are mounted at the bottom of the L-shaped plate (1), and the four universal wheels (12) are respectively close to the four corners of the horizontal side wall of the L-shaped plate (1).
9. A spool rack for garment processing according to claim 8, wherein: The two side plates (2) are provided with a long hole (22) to facilitate the staff to move the L-shaped plate (1) by hand.
10. The spool rack of claim 1, wherein: The head of the spool positioning rod (8) is hemispherical.