A storage device for sewing special fabric parts
Patent Information
- Application Number
- CN202610916920.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-24
- Publication Date
- 2026-08-18
AI Technical Summary
这些方式普遍存在以下问题:取料便捷性与可靠性差
一种特殊面料部件缝制用贮存装置,通过压板、输带和调辊组件的配辊稳定面料片堆垛,通过存放机构和箱体机构的铰接,使得码放面料片和取用面料片的角度垂直,码放面料片时存放箱的通口开阔,提高码放面料片的便利性。
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Figure CN122585531A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of composite fabric storage technology, specifically a storage device for sewing special fabric components. Background Technology
[0002] In the sewing process of the garment manufacturing industry, the efficiency of storing and retrieving fabric components such as collars, cuffs, and pockets directly affects the production rhythm and product quality, making the adaptability of storage devices even more critical.
[0003] Patent CN116729786A discloses a fabric storage device, including a storage box and a placement rack. The storage box has an entrance / exit on its front, with a door hinged to the entrance / exit. The placement rack includes a base plate, with multiple support beams fixedly mounted on its upper surface. Several support arms are mounted on the support beams, allowing the ends of fabric rolls to be placed on the support arms. Multiple rollers are rotatably mounted on the lower surface of the base plate, enabling the placement rack to be moved into the storage box through the entrance / exit. By providing the placement rack, fabric rolls can be easily placed on both sides of the rack. A rolling groove is provided on the lower side of the storage box, allowing the rollers to roll along it, facilitating the removal of the placement rack from and from the outside of the storage box. During fabric roll transfer, all rolls can be moved as a whole, eliminating the need to handle them individually, thus achieving convenient fabric roll transfer.
[0004] The above technical solution can only be used for storing rolled fabrics. However, fabric components such as collars, cuffs, and pockets are mostly flat and independent. During the stacking process, they are prone to sticking together due to the static electricity and humidity of the fabric itself, which makes it very inconvenient for workers to take them out. Workers have to take them out one by one, but the stuck parts are often taken out by multiple pieces. This not only requires extra time to separate them, but may also cause scratches or damage to the fabric or prints during the separation process.
[0005] Currently, the industry primarily uses traditional methods for storing such special fabric components, such as ordinary cardboard boxes, open plastic boxes, or simple drawer cabinets. These methods generally suffer from the following problems: poor ease and reliability of material retrieval. Traditional devices lack anti-sticking designs, resulting in significant sticking issues after components are stacked, leading to low retrieval efficiency; in some drawer cabinets, as components are retrieved, the remaining components decrease in height, requiring workers to bend over or reach into the cabinet to retrieve them, which is inconvenient and also makes it easy to pull out multiple pieces during retrieval.
[0006] Therefore, developing a convenient material storage device that addresses the characteristics of special fabric components and the actual needs of workshop production is key to solving current industry pain points and is of great significance for improving production efficiency and product quality in the garment sewing process. Summary of the Invention
[0007] The purpose of this invention is to provide a storage device for sewing special fabric components to solve the problems mentioned in the background art.
[0008] To achieve the above objectives, the present invention provides the following technical solution: a storage device for sewing special fabric components, comprising a box mechanism, wherein the box mechanism comprises a box, a rotating shaft assembly is provided at the head end of the box, and a sliding assembly is provided at the tail end of the box; The box mechanism is provided with a storage mechanism at its head end; The storage mechanism is movably hinged to the box mechanism via a rotating shaft assembly; The storage mechanism includes a storage box adapted to the plug-in box, and a bushing is fixedly embedded on the lower side of the head surface of the storage box; A discharge assembly is provided on the lower inner wall of the storage box. The discharge assembly includes a discharge belt, and both ends of the discharge belt are fitted with rotating rollers that penetrate the storage box. A conveyor belt installed inside a storage box is provided above the head side of the discharge assembly; A flush conveyor belt adjusting roller assembly is provided above the tail side of the discharge assembly; The top of the storage box is equipped with a pressure plate assembly; The top wall of the storage box has a door panel with a corresponding roller adjustment assembly inserted at the rear. The sliding assembly is slidably connected to a retrieval assembly that docks with the storage mechanism.
[0009] As a preferred embodiment of the present invention, the rotating shaft assembly includes a notch formed in the lower wall of the housing, and a main shaft is fixedly connected to the middle of the notch; The bushing is fitted into the notch and movably sleeved onto the main shaft; The sliding assembly includes a tail block that is fixedly connected to the housing, and a sliding groove is provided through the tail block; The left and right side walls of the box are each provided with a first slot.
[0010] As a preferred embodiment of the present invention, the left and right surfaces of the storage box are fixedly connected with panels, the surface of the panels is provided with a second slot, and the lower side of the rear surface of the panels is provided with an insertion port. The rotating roller is connected to the movable insertion panel. A third toothed ring is fixedly sleeved on a section of the rotating roller corresponding to the insertion port at the tail end. A second inner support for supporting the discharge belt is sleeved on the middle part of the discharge belt. The second inner support is fixedly connected to the storage box. The surface of the storage box is provided with a semi-circular arc groove, and the left and right surfaces of the storage box are provided with scale grooves. The roller adjustment assembly includes a central shaft with a movable insertion storage box. The central shaft and the arc groove are coaxial. Both ends of the central shaft extend out of the storage box and are fixedly connected to adjustment discs corresponding to the second slot. The scale groove is located at the edge of the adjustment disc. The side of the central shaft is provided with a matching roller that is movable to the adjustment disc. The matching roller is adapted to pass through the arc groove. The pressure plate assembly includes a plate column that penetrates the top wall of the storage box. A pressure plate is fixedly connected to the lower end of the plate column, and a handle is fixedly connected to the upper end of the plate column. A tension spring that wraps around the plate column is fixedly connected between the pressure plate and the top wall of the storage box. The lower end of the door panel is correspondingly engaged with the central shaft.
[0011] As a preferred embodiment of the present invention, the retrieval component includes a housing mechanism, the housing mechanism includes a housing with a sliding insertion groove, a retrieval opening is provided through the lower side of the tail wall of the housing, and a handle is fixedly connected to the upper side of the tail surface of the housing.
[0012] As a preferred technical solution of the present invention, the head of the housing mechanism is provided with a flat pressing mechanism adapted to the storage mechanism. The flat pressing mechanism includes two first side walls. A first vertical groove is opened through the middle of the surface of the first side wall. A cylinder is fixedly embedded in the upper inner wall of the first vertical groove. A cover cloth is fixedly covered on the outward end of the first vertical groove. A first slot is opened on the tail surface of the first side wall. A second vertical groove is opened through the inward wall surface of the first slot. The upper inner wall of the shell is fixed to the first sidewall on both the left and right sides respectively; A base plate is fixedly connected to the lower side between the two first sidewalls, and the head end of the base plate is adapted to connect to the discharge assembly; A flattening assembly is provided above the base plate. The flattening assembly includes a pressure belt, with rollers sleeved at both ends of the pressure belt. A coaxial roller shaft is fixedly connected through the rollers. A first inner support for supporting the pressure belt is provided between the two pressure belts. End plates flush with the ends of the pressure belt are fixedly connected to the left and right end faces of the first inner support. The roller shaft is movably inserted into the end plates. A first plate adapted to insert into the first vertical groove is fixedly connected to the center of the outward-facing surface of the end plates. The output end of the cylinder is fixedly connected to the first plate. The roller at the tail end is inserted into the first slot through the second vertical groove and is fixedly connected to the first pulley.
[0013] As a preferred embodiment of the present invention, symmetrical wheel receiving mechanisms are respectively provided on the left and right sides of the flat pressing mechanism, and each wheel receiving mechanism includes a wheel frame corresponding to the panel, and a bracket is fixedly connected between the wheel frame and the first side wall. The wheel frame has first toothed rings that are movably fitted onto both sides of the head end, and these rings are adapted to the insertion sockets. The rear end of the wheel frame is movably connected to a ring shaft, and the two ends of the ring shaft are respectively fixedly sleeved with second gear rings that mesh with the first gear ring.
[0014] As a preferred technical solution of the present invention, the tail of the housing mechanism is provided with a lint-adhesive mechanism, the lint-adhesive mechanism includes two second sidewalls that are correspondingly fixed to the first sidewall, the second sidewalls are provided with a second groove that communicates with the first groove, and the wall surface of the second groove facing inward is provided with a third vertical groove. The upper inner wall of the shell is fixed to the left and right sides respectively with the second sidewalls; A lower adhesive roller assembly aligned with the bottom plate is provided on the lower side between the two second sidewalls, and an upper adhesive roller assembly is provided above the lower adhesive roller assembly; The lower adhesive roller assembly includes a first adhesive roller, a coaxial first adhesive shaft is fixedly inserted inside the first adhesive roller, the end of the first adhesive shaft passes through the second side wall and is connected to a motor, and the motor is installed on the surface of the second side wall facing the direction of the second side wall. A belt is fitted between the first adhesive shaft and the ring shaft; The first adhesive shaft is fixedly sleeved with a second pulley at a section within the second groove, and a torsion belt is sleeved between the second pulley and the first pulley; A first limiting block is fixedly connected to the second sidewall and attached to the lower tail side of the first adhesive roller; The upper adhesive roller assembly includes a second adhesive roller corresponding to the first adhesive roller. A coaxial second adhesive shaft is fixedly inserted inside the second adhesive roller. A second plate is movably inserted into the end of the second adhesive shaft. The second plate is slidably inserted into the third vertical groove. A second limiting block is attached to the upper tail side of the second adhesive roller and is fixedly connected to the second plate.
[0015] Compared with the prior art, the beneficial effects of the present invention are: A special fabric component sewing storage device stabilizes the stacking of fabric sheets through the matching rollers of the pressure plate, conveyor belt and adjusting roller assembly. The hinge of the storage mechanism and the box mechanism makes the angle of stacking and taking out the fabric sheets perpendicular. The opening of the storage box is wide when stacking the fabric sheets, which improves the convenience of stacking the fabric sheets.
[0016] A special fabric component sewing storage device allows fabric pieces to be stacked and placed into a storage box when the storage mechanism is placed horizontally. Then, the door is pushed to close, and the handle is held to rotate the storage mechanism clockwise around the main shaft to return it to its original position. The handle is pushed into the storage box, thereby increasing the squeezing force on the stacked fabric pieces when the storage mechanism rotates, and improving the stability of the fabric pieces during movement.
[0017] A special fabric component sewing storage device uses a rotating adjustment disc at the first and second slots to drive the distribution roller to rotate counterclockwise along the arc groove, releasing the support of the distribution roller on the tail side of the fabric stack. At this time, the fabric stack is tilted, and its tail side is attached to the discharge belt. The bottom of the fabric stack is tilted, so that the tail side of the fabric stack gradually shrinks inward from bottom to top. With the rolling of the discharge component, the single layer of fabric at the bottom of the fabric stack can be pushed out first, and the single layer of fabric can be picked up independently, improving the quality of material picking.
[0018] A special fabric component sewing storage device is provided. The outward turning size of the roller is adjusted according to the scale groove to adapt to single-layer fabrics. It can adapt to various fabric thicknesses for compatibility adjustment and improve the flexibility of retrieval.
[0019] A special fabric component sewing storage device allows the second-to-last layer of fabric to come into contact with the discharge belt only after most of the fabric at the bottom of the fabric stack has been conveyed out. This avoids the problem of material retrieval congestion caused by the second-to-last layer of fabric contacting the discharge belt too early, prevents fabric from accumulating at the tail of the storage box, and improves the smoothness of material retrieval.
[0020] A special fabric component sewing storage device allows the handle, which was originally in a high position, to gradually move down under the action of a tension spring after the fabric pieces are gradually taken out. This allows the number of fabric pieces inside the storage box to be estimated by directly observing the height of the handle from the outside, thus improving the visibility of the fabric volume.
[0021] A special fabric component sewing storage device, in which fabric pulled manually from the opening is flattened and lint-removing treated to improve the quality of the extracted fabric pieces.
[0022] A special fabric component sewing storage device that synchronizes material retrieval through power linkage, improving the uniformity of material retrieval.
[0023] A special fabric component sewing storage device allows workers to push the retrieval component towards their head when they need to retrieve the fabric. This locks the storage mechanism in place while the fabric piece is being retrieved. Similarly, when the fabric pieces need to be reloaded, the retrieval component is slid towards the tail side to unlock the device, thus improving safety. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the closed structure of the present invention; Figure 2 This is a schematic diagram of the opening structure of the present invention; Figure 3 This is a schematic diagram of the internal structure of the closed structure of the present invention; Figure 4 This is a schematic diagram of the internal structure of the present invention. Figure 5 This is a schematic diagram of the housing mechanism of the present invention; Figure 6 This is a schematic diagram of the housing mechanism of the present invention; Figure 7 This is a schematic diagram of the components used in this invention; Figure 8 This is a schematic diagram of the pressure-reducing mechanism of the present invention; Figure 9 This is a schematic diagram of the flattening component of the present invention; Figure 10 This is a schematic diagram of the wheel receiving mechanism of the present invention; Figure 11 This is a schematic diagram of the lint-adhesive mechanism of the present invention; Figure 12 This is a schematic diagram of the lower adhesive roller assembly of the present invention; Figure 13 This is a schematic diagram of the upper adhesive roller assembly of the present invention; Figure 14 This is a schematic diagram of the torsion belt connection of the present invention; Figure 15 This is a schematic diagram of the storage mechanism of the present invention; Figure 16 This is a schematic diagram of the interior of the storage box of the present invention; Figure 17 This is a schematic diagram of the docking of the storage mechanism of the present invention.
[0025] In the diagram: 1. Box mechanism; 101. Box; 102. Tail block; 103. Sliding groove; 104. Notch; 105. Main shaft; 106. First slot; 2. Housing mechanism; 201. Housing; 202. Access port; 203. Handle; 3. Flat pressing mechanism; 301. First side wall; 302. First vertical groove; 303. Cylinder; 304. Cover cloth; 305. First slot; 306. 307. Second vertical groove; 308. Base plate; 309. Pressure belt; 310. Belt roller; 311. Roller shaft; 312. First inner support; 313. End plate; 314. First plate; 315. First pulley; 4. Wheel receiving mechanism; 401. Wheel frame; 402. Frame leg; 403. First gear ring; 404. Ring shaft; 405. Second gear ring; 5. Lint-collecting mechanism; 501. Second side wall; 502. 503. Second groove; 504. Third vertical groove; 505. First adhesive roller; 506. First adhesive shaft; 507. Motor; 508. Belt; 509. Second pulley; 510. Torsional belt; 511. First limiting block; 512. Second adhesive roller; 513. Second plate; 514. Second limiting block; 6. Storage mechanism; 601. Storage box; 602. Bushing; 603. Discharge belt; 604. Rotating roller; 605. Third gear ring; 606. Second inner support; 607. Conveyor belt; 608. Central shaft; 609. Adjusting disc; 610. Matching roller; 611. Plate column; 612. Pressure plate; 613. Handle; 614. Tension spring; 615. Door panel; 616. Arc groove; 617. Scale groove; 618. Panel; 619. Second slot; 620. Insertion port. Detailed Implementation
[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0027] Example: Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 15 , Figure 16 , Figure 17 A special fabric component sewing storage device includes a box mechanism 1, the box mechanism 1 includes a box 101, the head end of the box 101 is provided with a rotating shaft assembly, and the tail end of the box 101 is provided with a sliding assembly. The front end of the housing mechanism 1 is provided with a storage mechanism 6; Storage mechanism 6 is movably hinged to box mechanism 1 via a rotating shaft assembly; The storage mechanism 6 includes a storage box 601 that is adapted to plug into the box 101, and a bushing 602 is fixedly embedded on the lower side of the head surface of the storage box 601. A discharge assembly is provided on the lower inner wall of the storage box 601. The discharge assembly includes a discharge belt 603, and both ends of the discharge belt 603 are fitted with rotating rollers 604 that penetrate the storage box 601. A conveyor belt 607 installed inside a storage box 601 is provided above the head side of the discharge component; A flush conveyor belt 607 adjustment roller assembly is installed above the tail side of the discharge assembly; A pressure plate assembly is provided on the top of the storage box 601; The top wall of the storage box 601 has a door panel 615 corresponding to the roller adjustment assembly inserted at the rear side; The sliding component has a retrieval component that docks with the storage mechanism 6.
[0028] Please see Figure 4 , Figure 5 The rotating shaft assembly includes a notch 104 formed in the lower wall of the housing 101, and a main shaft 105 is fixedly connected to the middle of the notch 104; The bushing 602 is fitted into the notch 104 and is movably sleeved onto the spindle 105; The sliding assembly includes a tail block 102 fixedly connected to the housing 101, and a sliding groove 103 is provided through the tail block 102; The left and right side walls of the box 101 are provided with first slots 106.
[0029] Please see Figure 1 , Figure 3 , Figure 15 , Figure 16 The left and right surfaces of the storage box 601 are fixedly connected with a panel 618. A second slot 619 is opened through the surface of the panel 618, and an insertion port 620 is opened on the lower side of the rear surface of the panel 618. When the storage mechanism 6 is engaged in the box mechanism 1, the second slot 619 and the first slot 106 are connected. The rotating roller 604 is movably connected to the panel 618. A third toothed ring 605 is fixedly sleeved on a section of the rotating roller 604 corresponding to the insertion port 620. A second inner support 606 for supporting the discharge belt 603 is sleeved on the middle part of the discharge belt 603. The second inner support 606 is fixedly connected to the storage box 601. The surface of the storage box 601 is provided with a semi-circular arc groove 616, and the left and right surfaces of the storage box 601 are provided with scale grooves 617. The roller adjustment assembly includes a central shaft 608 that is movably connected to a storage box 601. The central shaft 608 and the arc groove 616 are coaxial. Both ends of the central shaft 608 extend out of the storage box 601 and are fixedly connected to an adjustment disc 609 corresponding to the second slot 619. The scale groove 617 is located at the edge of the adjustment disc 609. A matching roller 610 that is movably connected to the adjustment disc 609 is provided on the side of the central shaft 608. The matching roller 610 is adapted to pass through the arc groove 616. The pressure plate assembly includes a plate post 611 that penetrates the top wall of the storage box 601, a pressure plate 612 that is fixedly connected to the lower end of the plate post 611, a handle 613 that is fixedly connected to the upper end of the plate post 611, and a tension spring 614 that wraps around the plate post 611 that is fixedly connected between the pressure plate 612 and the top wall of the storage box 601. The lower end of the door panel 615 is connected to the central shaft 608.
[0030] Please see Figure 6 , Figure 7 The retrieval component includes a housing mechanism 2, which includes a housing 201 with a sliding groove 103. A retrieval port 202 is provided through the lower side of the tail wall of the housing 201, and a handle 203 is fixedly connected to the upper side of the tail surface of the housing 201.
[0031] Please see Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 17 The head of the housing mechanism 2 is provided with a flat pressing mechanism 3 adapted to the storage mechanism 6. The flat pressing mechanism 3 includes two first side walls 301. A first vertical groove 302 is opened through the middle of the surface of the first side wall 301. A cylinder 303 is fixedly embedded in the upper inner wall of the first vertical groove 302. A cover cloth 304 is fixedly covered at the outward end of the first vertical groove 302. A first slot 305 is opened on the tail surface of the first side wall 301. A second vertical groove 306 is opened through the inward wall surface of the first slot 305. The first sidewall 301 is fixed to the left and right sides of the upper inner wall of the shell 201 respectively; A base plate 307 is fixedly connected to the lower side between the two first side walls 301, and the head end of the base plate 307 is adapted to connect to the discharge assembly. A flattening assembly is provided above the base plate 307. The flattening assembly includes a pressure belt 308. Both ends of the pressure belt 308 are respectively sleeved with rollers 309. A coaxial roller shaft 310 is fixedly connected through the rollers 309. A first inner support 311 for supporting the pressure belt 308 is provided between the two pressure belts 308. The left and right end faces of the first inner support 311 are respectively fixedly connected with end plates 312 that are flush with the ends of the pressure belts 308. The roller shaft 310 is movably inserted into the end plate 312. A first plate 313 adapted to be inserted into the first vertical groove 302 is fixedly connected to the middle of the outward surface of the end plate 312. The output end of the cylinder 303 is fixedly connected to the first plate 313. The tail roller 310 is inserted into the first slot 305 through the second vertical groove 306 and is fixedly connected to the first pulley 314.
[0032] Please see Figure 10 , Figure 17 Symmetrical wheel receiving mechanisms 4 are provided on the left and right sides of the flat pressing mechanism 3. Each wheel receiving mechanism 4 includes a wheel frame 401 corresponding to the panel 618. A bracket 402 is fixedly connected between the wheel frame 401 and the first side wall 301. The wheel frame 401 has first toothed rings 403 that are movably sleeved on both sides of the head end, and are adapted to the plug-in sockets 620. When the retrieval component slides along the sliding component toward the head side, the head end of the wheel frame 401 is inserted into the socket 620, and the first gear ring 403 and the third gear ring 605 mesh. The tail end of the wheel frame 401 is movably connected to a ring shaft 404, and the two ends of the ring shaft 404 are respectively fixedly sleeved with a second gear ring 405 that meshes with the first gear ring 403.
[0033] Please see Figure 11 , Figure 12 , Figure 13 , Figure 14 The tail of the housing mechanism 2 is provided with a lint-adhesive mechanism 5. The lint-adhesive mechanism 5 includes two second side walls 501 that are correspondingly fixed to the first side wall 301. The second side wall 501 is provided with a second groove 502 that communicates with the first groove 305. The wall surface of the second groove 502 facing inward is provided with a third vertical groove 503. The second sidewall 501 is fixedly connected to the left and right sides of the upper inner wall of the shell 201 respectively; A lower adhesive roller assembly aligned with the bottom plate 307 is provided on the lower side between the two second side walls 501, and an upper adhesive roller assembly is provided above the lower adhesive roller assembly. The lower adhesive roller assembly includes a first adhesive roller 504, a coaxial first adhesive shaft 505 is fixedly inserted inside the first adhesive roller 504, the end of the first adhesive shaft 505 passes through the second side wall 501 and is connected to a motor 506, and the motor 506 is mounted on the surface of the second side wall 501 facing the side. A belt 507 is sleeved between the first adhesive shaft 505 and the ring shaft 404; A section of the first adhesive shaft 505 located within the second groove 502 is fixedly sleeved with a second pulley 508. A torsion belt 509 is sleeved between the second pulley 508 and the first pulley 314. The torsion belt 509 is made of an elastic material. A first limiting block 510, which is fixedly connected to the second sidewall 501, is attached to the lower tail side of the first adhesive roller 504. The upper adhesive roller assembly includes a second adhesive roller 511 corresponding to the first adhesive roller 504. A coaxial second adhesive shaft 512 is fixedly inserted inside the second adhesive roller 511. A second plate 513 is movably inserted into the end of the second adhesive shaft 512. The second plate 513 is slidably inserted into the third vertical groove 503. A second limiting block 514, which is fixedly connected to the second plate 513, is attached to the upper tail side of the second sticking roller 511.
[0034] The head-side direction mentioned in the text refers to the direction in which the fabric enters, while the tail-side direction refers to the direction in which the fabric exits.
[0035] The working principle of this invention is as follows: Holding the handle 613, rotate the storage mechanism 6 counterclockwise around the main shaft 105. After the storage mechanism 6 rotates 90 degrees counterclockwise, the storage box 601 and the lower wall of the box 101 on the head side of the main shaft 105 are in contact. At this time, the door panel 615 faces upward. Pull open the door panel 615 and pull the handle 613 in the same direction. Then, stack the fabric pieces into the storage box 601. The stack of fabric pieces is stabilized by the pressure plate 612, the conveyor belt 607 and the matching roller 610 of the adjusting roller assembly. Through the hinge between the storage mechanism 6 and the box mechanism 1, the angle of stacking and taking out the fabric pieces is perpendicular. When stacking the fabric pieces, the opening of the storage box 601 is wide, which improves the convenience of stacking the fabric pieces.
[0036] When the storage mechanism 6 is placed horizontally, the fabric pieces are stacked into the storage box 601. Then, the door panel 615 is pushed to close, and the handle 613 is held to drive the storage mechanism 6 to rotate clockwise around the main shaft 105 to return to its original position. When the handle 613 is pushed into the storage box 601, the pressure on the stack of fabric pieces is increased when the storage mechanism 6 rotates, thereby improving the stability of the fabric pieces when moving.
[0037] After the storage mechanism 6 is returned to its position, the top of the fabric stack contacts the pressure plate 612, and the bottom two sides are respectively blocked by the conveyor belt 607 and the matching roller 610 of the adjusting roller assembly. Initially, the fabric stack and the discharge assembly do not contact each other, and the fabric stack is kept in an aligned stacked state. Then, the adjusting disc 609 is rotated through the first slot 106 and the second slot 619 to drive the matching roller 610 to rotate counterclockwise along the arc groove 616, releasing the support of the matching roller 610 on the tail side of the fabric stack. At this time, the fabric stack is tilted, and its tail side is attached to the discharge belt 603. The bottom of the fabric stack is tilted, so that the tail side of the fabric stack gradually shrinks inward from bottom to top. With the rolling of the discharge assembly, the single layer of fabric at the bottom of the fabric stack can be pushed out first, and the single layer of fabric can be picked up independently, improving the quality of picking up materials.
[0038] The rotating adjustment disc 609 adjusts the positioning height of the distribution roller 610 through the scale groove 617 on the surface of the storage box 601, so that the distance between the distribution roller 610 and the discharge belt 603 after adjustment is just suitable for the single-layer fabric sheet, which can further ensure the output of the single-layer fabric sheet. The outward turning size of the distribution roller 610 can be adjusted according to the scale groove 617 to adapt to the single-layer fabric, which can adapt to various fabric thicknesses for adaptability adjustment and improve the flexibility of use.
[0039] By blocking the fabric sheet head side of the inner conveyor belt 607 of the storage box 601, the second-to-last layer of fabric will only come into contact with the discharge belt 603 after most of the fabric at the bottom of the fabric stack has been conveyed out. This avoids the problem of material retrieval congestion caused by the second-to-last layer of fabric contacting the discharge belt 603 too early, and prevents the fabric from accumulating at the tail of the storage box 601, thus improving the smoothness of material retrieval.
[0040] A tension spring 614 is fixedly connected between the pressure plate 612 of the pressure plate assembly and the top wall of the storage box 601 and the connecting plate column 611. As the fabric pieces are gradually taken out, the handle 613, which was originally in a high position, will gradually move down under the action of the tension spring 614. This allows the number of fabric pieces inside the storage box 601 to be estimated by directly observing the height of the handle 613 from the outside, thus improving the visibility of the fabric volume.
[0041] After the storage mechanism 6 is vertically fastened to the head of the box mechanism 1, the retrieval component slides along the sliding assembly toward the head side, so that the retrieval component and the storage mechanism 6 are connected. After the discharge component outputs a single piece of fabric, the height of the first plate 313 is first adjusted by the cylinder 303 to match the fabric. The fabric is held by the first inner support 311 in the pressure belt 308 and further conveyed by the rotation of the pressure belt 308. Then the fabric enters between the upper and lower adhesive roller assembly for lint removal and cleaning before being output. The fabric pulled out manually from the pick-up port 202 is flattened and lint removed to improve the quality of the fabric pieces.
[0042] The first adhesive roller 504 of the lower adhesive roller assembly is actively driven by the motor 506, while the second adhesive roller 511 of the upper adhesive roller assembly is passively rotated to perform lint removal on the fabric. The fabric is conveyed by the pressure belt 308 through the twisting belt 509, which drives the pressure belt 308 to reverse. Similarly, by using the fixed connection between the roller receiving mechanism 4 and the flat pressing mechanism 3, the head end of the roller receiving mechanism 4 is inserted into the insertion port 620, and the fabric is further transferred by the discharge belt 603 of the discharge assembly through the meshing of the third toothed ring 605, the first toothed ring 403 and the ring shaft 404. The material picking is synchronized through power linkage, improving the uniformity of material picking.
[0043] The storage mechanism 6 and the retrieval component are adapted to each other. After the storage mechanism 6 is engaged with the box mechanism 1 and is in a vertical position, the retrieval component is pushed inward along the sliding component toward the head side, and then the receiving wheel mechanism 4 is inserted into the insertion port 620. At the same time as the first gear ring 403 and the third gear ring 605 are engaged and driven, the action of the receiving wheel mechanism 4 inserting into the insertion port 620 completes the locking of the storage mechanism 6. Therefore, when the worker needs to retrieve the fabric, the retrieval component is pushed toward the head side, and the position of the storage mechanism 6 can be locked when retrieving the fabric piece. Similarly, when it is necessary to reload the fabric piece stack, the retrieval component is slid toward the tail side to unlock, improving the safety of use.
[0044] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A storage device for sewing special fabric parts, comprising a box mechanism (1), wherein the box mechanism (1) comprises a box (101), wherein a rotating shaft assembly is provided at the head end of the box (101), and a sliding assembly is provided at the tail end of the box (101); The box mechanism (1) is provided with a storage mechanism (6) at its head end. Its features are: The storage mechanism (6) is movably hinged to the box mechanism (1) via a rotating shaft assembly; The storage mechanism (6) includes a storage box (601) adapted to the plug-in box (101), and a bushing (602) is fixedly embedded on the lower side of the head surface of the storage box (601). A discharge assembly is provided on the lower inner wall of the storage box (601). The discharge assembly includes a discharge belt (603), and both ends of the discharge belt (603) are fitted with rotating rollers (604) that penetrate the storage box (601). A conveyor belt (607) installed inside a storage box (601) is provided above the head side of the discharge assembly. A roller adjustment assembly for flush conveyor belt (607) is provided above the tail side of the discharge assembly; The top of the storage box (601) is provided with a pressure plate assembly; The storage box (601) has a door panel (615) with a corresponding roller adjustment assembly inserted at the rear of its top wall. The sliding assembly is slidably connected to a retrieval assembly that docks with the storage mechanism (6).
2. The storage device for sewing special fabric components according to claim 1, characterized in that: The rotating shaft assembly includes a notch (104) formed in the lower wall of the housing (101), and a main shaft (105) is fixedly connected to the middle of the notch (104). The bushing (602) is adapted to be embedded in the notch (104) and is movably sleeved on the spindle (105). The sliding assembly includes a tail block (102) with a fixed connection box (101), and a sliding groove (103) is provided through the tail block (102). The left and right side walls of the box (101) are provided with first slots (106).
3. The storage device for sewing special fabric components according to claim 2, characterized in that: The storage box (601) is fixedly connected to a panel (618) on both the left and right surfaces. A second slot (619) is opened through the surface of the panel (618), and an insertion port (620) is opened on the lower side of the rear surface of the panel (618). The rotating roller (604) is movably inserted into the panel (618), and a third toothed ring (605) is fixedly sleeved on a section of the rotating roller (604) corresponding to the insertion port (620) at the tail end. A second inner support (606) for supporting the discharge belt (603) is sleeved on the middle part of the discharge belt (603), and the second inner support (606) is fixedly connected to the storage box (601). The surface of the storage box (601) is provided with a semi-circular arc groove (616), and the left and right surfaces of the storage box (601) are provided with scale grooves (617). The roller adjustment assembly includes a central shaft (608) with a movable plug-in storage box (601). The central shaft (608) and the arc groove (616) are coaxial. Both ends of the central shaft (608) extend out of the storage box (601) and are fixedly connected to an adjustment plate (609) corresponding to the second slot (619). The scale groove (617) is located at the edge of the adjustment plate (609). The side of the central shaft (608) is provided with a matching roller (610) of the movable plug-in adjustment plate (609). The matching roller (610) is adapted to pass through the arc groove (616). The pressure plate assembly includes a plate post (611) that penetrates the top wall of the storage box (601), a pressure plate (612) is fixedly connected to the lower end of the plate post (611), a handle (613) is fixedly connected to the upper end of the plate post (611), and a tension spring (614) that wraps around the plate post (611) is fixedly connected between the pressure plate (612) and the top wall of the storage box (601). The lower end of the door panel (615) is correspondingly engaged with the central shaft (608).
4. A storage device for sewing special fabric components according to claim 3, characterized in that: The retrieval component includes a housing mechanism (2), which includes a housing (201) with a sliding groove (103). The lower side of the tail wall of the housing (201) is provided with a retrieval port (202), and a handle (203) is fixedly connected to the upper side of the tail surface of the housing (201).
5. A storage device for sewing special fabric components according to claim 4, characterized in that: The head of the housing mechanism (2) is provided with a flat pressing mechanism (3) adapted to the storage mechanism (6). The flat pressing mechanism (3) includes two first side walls (301). A first vertical groove (302) is opened through the middle of the surface of the first side wall (301). A cylinder (303) is fixedly embedded in the upper inner wall of the first vertical groove (302). A cover cloth (304) is fixedly covered on the outward end of the first vertical groove (302). A first slot (305) is opened on the tail surface of the first side wall (301). A second vertical groove (306) is opened through the inward wall surface of the first slot (305). The upper inner wall of the housing (201) is fixed to the left and right sides of the first sidewall (301). A base plate (307) is fixedly connected to the lower side between the two first sidewalls (301), and the head end of the base plate (307) is adapted to connect to the discharge assembly; A flattening assembly is provided above the base plate (307). The flattening assembly includes a pressure belt (308). A belt roller (309) is sleeved at both ends of the pressure belt (308). A coaxial roller shaft (310) is fixedly connected through the belt roller (309). A first inner support (311) for supporting the pressure belt (308) is provided between the two pressure belts (308). An end plate (312) flush with the end of the pressure belt (308) is fixedly connected to the left and right end faces of the first inner support (311). The roller shaft (310) is movably inserted into the end plate (312). A first plate (313) adapted to insert into the first vertical groove (302) is fixedly connected to the center of the outward surface of the end plate (312). The output end of the cylinder (303) is fixedly connected to the first plate (313). The roller (310) at the tail end is inserted into the first slot (305) through the second vertical groove (306) and is fixedly connected to the first pulley (314).
6. A storage device for sewing special fabric components according to claim 5, characterized in that: The flat pressing mechanism (3) is provided with symmetrical wheel receiving mechanisms (4) on the left and right sides respectively. Each wheel receiving mechanism (4) includes a wheel frame (401) corresponding to the panel (618). The wheel frame (401) and the first side wall (301) are fixedly connected with a bracket (402). The wheel frame (401) has a first toothed ring (403) that is adapted to the plug-in socket (620) on both sides of its head end. The tail end of the wheel frame (401) is movably connected to a ring shaft (404), and the two ends of the ring shaft (404) are respectively fixedly sleeved with a second gear ring (405) that meshes with the first gear ring (403).
7. A storage device for sewing special fabric components according to claim 6, characterized in that: The tail of the housing mechanism (2) is provided with a lint-adhesive mechanism (5). The lint-adhesive mechanism (5) includes two second sidewalls (501) that are correspondingly fixed to the first sidewall (301). The second sidewall (501) is provided with a second groove (502) that communicates with the first groove (305). The wall surface of the second groove (502) facing inward is provided with a third vertical groove (503). The upper inner wall of the housing (201) is fixed to the left and right sides of the second side wall (501). A lower adhesive roller assembly aligned with the bottom plate (307) is provided on the lower side between the two second sidewalls (501), and an upper adhesive roller assembly is provided above the lower adhesive roller assembly; The lower adhesive roller assembly includes a first adhesive roller (504), a coaxial first adhesive shaft (505) is fixedly inserted inside the first adhesive roller (504), the end of the first adhesive shaft (505) passes through the second side wall (501) and is connected to a motor (506), and the motor (506) is mounted on the surface of the second side wall (501). A belt (507) is sleeved between the first adhesive shaft (505) and the ring shaft (404). The first adhesive shaft (505) is fixedly sleeved with a second pulley (508) in the second groove (502), and a torsion belt (509) is sleeved between the second pulley (508) and the first pulley (314). A first limiting block (510) is attached to the lower tail side of the first adhesive roller (504) and fixedly connected to the second side wall (501). The upper adhesive roller assembly includes a second adhesive roller (511) corresponding to the first adhesive roller (504), a coaxial second adhesive shaft (512) is fixedly inserted inside the second adhesive roller (511), and a second plate (513) is movably inserted into the end of the second adhesive shaft (512), and the second plate (513) is correspondingly slidably inserted into the third vertical groove (503). A second limiting block (514) that is fixedly connected to the second plate (513) is attached to the upper tail side of the second sticking roller (511).
Citation Information
Patent Citations
Fabric storage device
CN116729786A