专利摘要:
The invention discloses an automatic pushing device for clothing tailoring, comprising a box, wherein, a pushing groove is formed inside the box, and two access holes are formed at both side walls of the box. The invention has the following beneficial effects: The second drum is driven to rotate when the output end of the stepper motor rotates, the first drum is driven to rotate in the opposite direction of the second drum as the outer wall at the bottom end of the first drum fits against the outer wall at the top end of the second drum when the second drum rotates, the clothing materials between the first drum and the second drum are clamped and pushed by rotation in two opposite directions, the sliding connection between the T-shaped slider and the convex chute makes the T-shaped slider slide in the opposite direction of the box, so that the extruding block is separated from the connecting block through the movable connection of clamping blocks and clamping grooves, inserting grooves and L-shaped inserting blocks are connected in a movable way, so that the stepper motor is separated from the second drum by removal of a coupling. The device effectively solves the problems that it is complicated to disassemble common automatic pushing devices and it is inconvenient to maintain or replace some internal parts.
公开号:NL2025631A
申请号:NL2025631
申请日:2020-05-20
公开日:2021-10-20
发明作者:Xia Youquan;Wang Jian
申请人:Qiuge Shanghai Cloths Co Ltd;
IPC主号:
专利说明:

Automatic Pushing Device for Clothing Tailoring Technical Field The invention relates to a pushing device, in particular to an automatic pushing device for clothing tailoring, which belongs to the technical field of pushing device. Background Clothing is a generic term of clothes, shoes, bags, ornaments and the like, and mostly refers to clothes. Clothing is defined in the national standard as a product that plays a role in protection and decoration of a human body, also known as clothes. It is also one of the indispensable items in our life. In the existing life, clothes are not only worn to play a certain role in protection, but also the embodiment of one's attitude towards life and the expression of personal charm.
Tailoring is one of the indispensable steps in the process of clothes production. At present, automatic pushing devices are often used for tailoring of clothes in order to improve the efficiency. However, most of the common automatic pushing devices are of an integrated structure that is complicated to disassemble, so it is inconvenient to maintain or replace some parts inside the automatic pushing devices. Summary of the Invention The invention provides an automatic pushing device for clothing tailoring, which can effectively solve the problems that it is complicated to disassemble common automatic pushing devices and it 1s inconvenient to maintain or replace some internal parts.
To solve the above-mentioned technical problems, the invention provides the following technical solution: An automatic pushing device for clothing tailoring, comprising a box, wherein, a pushing groove is formed inside the box, two access holes are formed symmetrically at both side walls of the box, both of the access holes are communicated with the pushing groove, a first drum is arranged inside the pushing groove, both ends of the first drum penetrate the corresponding walls of the pushing groove and extend out of the box, a second drum is arranged in the the position of the pushing groove under the first drum, the second drum and the first drum are arranged symmetrically relative to the central point of the access holes. the outer wall at the bottom end of the first drum fits against the outer wall at the top end of the second drum, both ends of the second drum penetrate the corresponding walls of the pushing groove and extend out of the box, two inserting grooves are formed in the side wall of the box on one side, the two inserting grooves are arranged symmetrically relative to the central point of the second drum; an L-shaped inserting blocks is connected in a movable way inside each of the two inserting grooves, the end of the two L-shaped inserting blocks close to the openings of the inserting grooves penetrate the openings of the inserting grooves and extend out of the box, a connecting block is fixed at the end of the two L-shaped inserting blocks outside the box, a groove is formed at the side wall of the connecting block at the end close to the box, a stepper motor is fixed inside the groove, the output end of the stepper motor penetrates the opening of the groove and extends out of the connecting block, the output end of the stepper motor outside the connecting block is fixed at one end of the second drum outside the box through a coupling, two clamping grooves are formed symmetrically at the side wall of the connecting block on the side away from the L-shaped inserting blocks, a clamping block is connected in a movable way in each of the two clamping grooves, the end of the two clamping blocks close to the openings of the clamping grooves penetrate the openings of the clamping grooves and extend out of the connecting block, an extruding block is fixed at the end of the two clamping blocks at the connecting block, a convex chute is formed at the bottom end of the side wall of the box on the side close to the inserting groove. a spring is fixed at the bottom of the convex chute, a T-shaped slider is fixed at the end of the spring away from the bottom of the convex chute, the T-shaped slider is connected in a slidable way with the convex chute. the end of the T-shaped slider close to the opening of the convex chute penetrates the opening of the convex chute and extends out of the box, and the lower surface of the extruding block is fixed at the end of the T-shaped slider outside the box.
As a preferred technical solution of the invention, a handle is fixed at the side wall of the extruding block on the side away from the connecting block, and skidproof stripes are formed at the outer part of the handle.
As a preferred technical solution of the invention, a T-shaped base is fixed at the lower surface of the box.
As a preferred technical solution of the invention, two fixing holes are formed symmetrically at both ends of the T-shaped base.
As a preferred technical solution of the invention, the walls of the inserting grooves fit against the outer walls of the L-shaped inserting blocks, and the end of the L-shaped inserting blocks close to the bottom of the inserting grooves butts against the bottom of the inserting grooves.
As a preferred technical solution of the invention, the walls of the clamping grooves fit against the outer walls of the clamping blocks, and the end of the clamping blocks close to the bottom of the clamping grooves fits against the bottom of the clamping grooves.
The invention has the following beneficial effects: The stepper motor is started, the second drum is driven to rotate when the output end of the stepper motor rotates, the first drum is driven to rotate in the opposite direction of the second drum as the outer wall at the bottom end of the first drum fits against the outer wall at the top end of the second drum when the second drum rotates, the clothing materials between the first drum and the second drum are clamped and pushed by rotation in two opposite directions, the sliding connection between the T-shaped slider and the convex chute makes the T-shaped slider slide in the opposite direction of the box, so that the extruding block is separated from the connecting block through the movable connection of clamping blocks and clamping grooves; inserting grooves and L-shaped inserting blocks are connected in a movable way, so that the stepper motor is separated from the second drum by removal of a coupling. The device effectively solves the problems that it is complicated to disassemble common automatic pushing devices and it is inconvenient to maintain or replace some internal parts. Brief Description of the Drawings The drawings, used forproviding a further understanding of the invention and constituting a part of specification, illustrate the invention together with the embodiment(s) of the invention, not constituting a limitation on the invention. In the drawings: FIG. 1 is the overall view of the invention; FIG. 2 is the sectional view in the A-A direction in FIG. 1 of the invention; FIG. 3 is the side view of the mvention.
Notation in the figures: I. box; 2. pushing groove; 3. access hole: 4. first drum: 5. second drum; 6. inserting groove: 7. L-shaped inserting block; 8. connecting block; 9. groove; 10. stepper motor; 11. clamping groove;
12. clamping block; 13. extruding block: 14. convex chute; 15. spring; 16. T-shaped slider; 17. handle;
18. T-shaped base; 19. fixing hole.
Detailed Description of the Preferred Embodiments The technical solution in the embodiments of the invention is described clearly and completely below in combination with the drawings in the embodiments of the invention.
Obviously, the embodiments described are only a part but not the whole of the embodiments of the invention. Based on the embodiments of the invention, all other embodiments obtained by those skilled in the art without any creative work are within the protection scope of the invention. Embodiment As shown in FIG. 1-3, the invention provides an automatic pushing device for clothing tailoring, comprising a box 1. wherein, a pushing groove 2 is formed inside the box 1, two access holes 3 are formed symmetrically at both side walls of the box 1, both of the access holes 3 are communicated with the pushing groove 2, a first drum 4 is arranged inside the pushing groove 2, both ends of the first drum 4 penetrate the corresponding walls of the pushing groove 2 and extend out of the box 1, a second drum 5 is arranged in the the position of the pushing groove 2 under the first drum 4, the second drum 5 and the first drum 4 are arranged symmetrically relative to the central point of the access holes 3. the outer wall at the bottom end of the first drum 4 fits against the outer wall at the top end of the second drum 5, both ends of the second drum 5 penetrate the corresponding walls of the pushing groove 2 and extend out of the box 1, two inserting grooves 6 are formed in the side wall of the box 1 on ong side, the two inserting grooves 6 are arranged symmetrically relative to the central point of the second drum 5; an L-shaped inserting blocks 7 is connected in a movable way inside each of the two inserting grooves 6, the end of the two L-shaped inserting blocks 7 close to the openings of the inserting grooves 6 penetrate the openings of the inserting grooves 6 and extend out of the box 1, a connecting block 8 is fixed at the end of the two L-shaped inserting blocks 7 outside the box 1, a groove 9 is formed at the side wall of the connecting block 8 at the end close to the box 1, a stepper motor is fixed inside the groove 9, the output end of the stepper motor penetrates the opening of the groove 9 and extends out of the connecting block 8, the output end of the stepper motor outside the connecting block 8 is fixed at one end of the second drum 5 outside the box 1 through a coupling, two clamping grooves are formed symmetrically at the side wall of the connecting block 8 on the side away from the L-shaped I5 inserting blocks 7, a clamping block is connected in a movable way in each of the two clamping grooves. the end of the two clamping blocks close to the openings of the clamping grooves penetrate the openings of the clamping grooves and extend out of the connecting block 8, an extruding block is fixed at the end of the two clamping blocks at the connecting block 8, a convex chute is formed at the bottom end of the side wall of the box 1 on the side close to the inserting groove 6, a spring is fixed at the bottom of the convex chute, a T-shaped slider is fixed at the end of the spring away from the bottom of the convex chute, the T-shaped slider is connected in a slidable way with the convex chute, the end of the T-shaped slider close to the opening of the convex chute penetrates the opening of the convex chute and extends out of the box 1, and the lower surface of the extruding block is fixed at the end of the T-shaped slider outside the box 1.
A handle 17 is fixed at the side wall of the extruding block 13 on the side away from the connecting block 8, and skidproof stripes are formed at the outer part of the handle17, which facilitates pulling of the extruding block 13, making the T-shaped slider 16 slide and separating the clamping blocks 12 from the clamping grooves 11.
A T-shaped base 18 is fixed to the lower surface of the box 1, which facilitates placement of the box 1.
Two fixing holes 19 are formed symmetrically at both ends of the T-shaped base 18, which facilitates fixing of the T-shaped base 18.
The groove walls of the inserting grooves 6 fit against the outer walls of the L-shaped inserting blocks 7. and the bottom of the inserting grooves 6 butts against the end of the L-shaped inserting blocks 7 close to the bottom of the inserting grooves 6, which increases the tightness and improves the stability in installation.
The groove walls of the clamping grooves 11 fit against the outer walls of the clamping blocks 12, and the bottom of the clamping grooves 11 butts against the end of the clamping blocks 5 12 close to the bottom of the clamping grooves 11, which increases the tightness and improves the stability in installation.
Specifically, when in use, the stepper motor 10 is started at first. The second drum 5 fixed at the output end of the stepper motor 10 through the coupling is driven to rotate as the output end of the stepper motor 10 rotates, the first drum 4 is driven to rotate in the opposite direction of the second drum 5 as the outer wall at the bottom end of the first drum 4 fits against the outer wall at the top end of the second drum 5 when the second drum 5 rotates, and the clothing materials between the first drum 4 and the second drum 5 can be clamped and pushed forward by the rotation in the opposite directions of the first drum 4 and the second drum 5. Then the clothing materials are fed into the pushing groove 2 from the access hole 3 opposite to the pushing direction of the two drums, and the clothing materials clamped and pushed by the two drums are pushed out of the box 1 through the other access hole 3. During removal, firstly, the stepper motor 10 is separated from the second drum 5 by removing the coupling; secondly, the T-shaped slider 16 is slided through the sliding connection between the T-shaped slider 16 and the convex chute 14, the sliding of the T- shaped slider 16 in the opposite direction of the box 1 can enable the extruding block 13 to be separated from the connecting block 8 through the movable connection between the clamping blocks 12 and the clamping grooves 11, the separation of the extruding block 13 from the connecting block 8 can enable the connecting block 8 to be separated from the box 1 through the movable connection between the inserting grooves 6 and the L-shaped inserting blocks 7, and the separation of the connecting block 8 from the box 1 can enable the stepper motor 10 to be separated from the second drum 5, so the stepper motor 10 can be maintained and replaced. During installation, the T-shaped slider 16 is slided in the opposite direction of the box 1 through the sliding connection between the T-shaped slider 16 and the convex chute 14. When the T-shaped slider 16 is slided in the opposite direction of the box 1, the spring 15 will be stretched, and the stretched spring 15 gets an acting force of rebounding to the original position. Then, the connecting block 8 equipped with the stepper motor 10 is installed to the box 1 by movable connection between the inserting grooves 6 and the L-shaped inserting blocks 7, the output end of the stepper motor 10 is fixed to the second drum 5 through the coupling, the extruding block 13 is slowly moved toward the direction of the connecting block 8 by sliding of the T-shaped slider 16 under the acting force of the spring 15 rebounding to the original position, the extruding block 13 is installed to the connecting block 8 through the movable connection between the clamping blocks 12 and the clamping grooves 11, and the connecting block 8 is clamped and fixed by the extruding block 13 under the acting force of the spring 15 rebounding to the original position.
The device effectively solves the problems that it is complicated to disassemble common automatic pushing devices and it is inconvenient to maintain or replace some internal parts.
Though the embodiments of the invention are given and described. those skilled in the art may understand that various changes, modifications, substitutions and variations of these embodiments could be made thereto without departing from the principles and spirits of the invention, and the scope of the invention is defined by the claims attached and their equivalents.
权利要求:
Claims (5)
[1]
An automatic clothing adjustment pusher, characterized in that it comprises a box (1). wherein, a push groove (2) is formed in the box (1), two access holes (3) are formed symmetrically on both side walls of the box (1), both access holes (3) communicate with the push groove (2), a first roller (4) is arranged in the push groove (2), both ends of the first roller penetrate the corresponding walls of the push groove (2) and extend from the box (1), a second roller (5) is mounted on the position of the push groove (2) under the first roller (4), the second roller (5) and the first roller (4) are arranged symmetrically with respect to the central point of the access holes (3), the outer wall at the bottom of the first roll (4) fits against the outer wall at the top of the second roll (5), both ends of the second roll (5) penetrate the corresponding walls of the push groove (2) and extend out of the box (1 ), two insertion grooves (6) are formed in the side wall of the box (1) on one side, the two insertion grooves (6) are arranged symmetrically relative to the central point of the second roller (5); L-shaped insert blocks (7) are connected in a movable manner within each of the two insert grooves (6). the end of the two L-shaped mortise blocks (7) close to the openings of the mortise grooves (6) penetrate into the openings of the mortise grooves (6) and extend from the box (1), a connecting block (8) is attached to the end of the two L-shaped insert blocks (7) outside the box (1), a groove (9) is formed on the side wall of the connecting block (8) at the end close to the box (1), a stepper motor (10) is arranged in the groove (9), the output end of the stepper motor (10) penetrates into the opening of the groove (9) and extends from the connection block (8), the output end of the stepper motor (10) outside the connection block (8) is attached to one end of the second roller (5) outside the box (1) by means of a coupling, two clamping grooves (11) are formed symmetrically on the side wall of the connecting block (8) on the side away from the L-shaped insert blocks (7), a clamp block (12) is connected in a movable manner in each of the two clamp gr holes (11), the end of the two clamping blocks (12) close to the openings of the clamping grooves (11) penetrates into the openings of the clamping grooves (11) and extending from the connecting block (8), an expulsion block (13) is provided at the end of the two clamping blocks (12) to the connecting block (8). a convex chute (14) is formed at the lower end of the side wall of the box (1) on the side close to the insertion groove (6), a spring (15} is provided at the bottom of the convex chute (14), a T -shaped slide (16) is mounted at the end of the spring (15) away from the bottom of the convex chute (14), the T-shaped slide (16) is slidably connected to the convex chute (14) , the end of the T-shaped slide (16) close to the opening of the convex chute (14) penetrates into the opening of the convex chute (14) and extends out of the box (1), and the lower surface of the expulsion block ( 13) is attached to the end of the T-shaped slide (16) outside the box (1).
[2]
The automatic clothing adjustment pusher device according to claim 1, characterized in that a handle (17) is attached to the side wall of the expulsion block (13) on the side away from the connection block (8). and non-slip stripes are formed on the outside of the handle (17).
[3]
The automatic clothing adjustment pusher according to claim 1, characterized in that a T-shaped base (18) is attached to the lower surface of the box (1).
[4]
The automatic clothing adjustment pusher device according to claim 3, characterized in that two fixing holes (19) are formed symmetrically at both ends of the T-shaped base (18).
[5]
The automatic clothing adjustment pusher device according to claim 1, characterized in that the walls of the insert grooves (6) fit against the outer walls of the L-shaped insert blocks (7), and the end of the L-shaped insert blocks (7) is close to the bottom of the insert grooves (6) butts against the bottom of the insert grooves (6); the walls of the clamping grooves (11) mate against the outer walls of the clamping blocks (12), and the end of the clamping blocks (12) near the bottom of the clamping grooves (11) mate against the bottom of the clamping grooves (11).
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同族专利:
公开号 | 公开日
IES87181Y1|2020-11-11|
IE20200100U1|2020-11-11|
ZA202002650B|2020-06-24|
CN113445297A|2021-09-28|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题

法律状态:
优先权:
申请号 | 申请日 | 专利标题
CN202010226055.XA|CN113445297A|2020-03-26|2020-03-26|Dress is tailor and is used automatic pusher|
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