Collar production equipment

By designing the cutting, loading, folding and sewing devices of the collar production equipment, the automation of collar production is realized, which solves the problem of time-consuming and labor-intensive manual operation in traditional production and improves production efficiency.

CN223329520UActive Publication Date: 2025-09-12GUANGDONG ESQUEL TEXTILES CO LTD
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Patent Information

Application Number
CN202422702887.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-09-12
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

The traditional collar production process requires a lot of manual operation, which is time-consuming and labor-intensive, and cannot achieve automated production.

Method used

A collar production equipment is designed, including a piece loading device, a piece folding device and a piece sewing device. The loading, folding and sewing of the pieces are realized through an automated assembly line, and the automatic folding and sewing of the pieces are realized by using components such as a pressing mechanism, a folding positioning mechanism and a picking and folding mechanism.

Benefits of technology

The automation of collar production is realized, which saves manpower and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to collar production equipment. The collar production equipment comprises a cutting piece feeding device, a cutting piece folding device and a cutting piece sewing device. The cutting piece feeding device is used for feeding to-be-folded cutting pieces to the cutting piece folding device; the cutting piece folding device comprises a folding platform, a pressing mechanism, a folding positioning mechanism and a picking and folding mechanism; the folding platform is used for placing a to-be-folded cutting piece; the pressing mechanism is arranged on the folding platform and is used for pressing the first end of the to-be-folded cutting piece; the folding positioning mechanism is arranged on the folding platform and comprises a telescopic rod, and the telescopic rod is used for stretching out of the upper portion of the to-be-folded cutting piece to position the folding position; the picking and folding mechanism is arranged on the folding platform, and the picking and folding mechanism is used for picking the second end of the to-be-folded cutting piece and transferring the second end to the first end, and is matched with the telescopic rod to tension the cutting piece, so that the folded cutting piece is obtained; and the cutting piece sewing device is used for sewing the folded cutting piece to obtain an annular cutting piece. The collar production equipment can save manpower.
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Description

Technical Field

[0001] The present application relates to the technical field of textile machinery and equipment, and in particular to a collar production equipment. Background Art

[0002] The production of ribbed crew necks requires loading, folding, and sewing long strips of fabric. Traditionally, these steps require extensive manual labor, which is both time-consuming and labor-intensive. Utility Model Content

[0003] Based on this, it is necessary to provide a collar production device that can realize automated production of collar production equipment.

[0004] A collar production device, comprising a piece feeding device, a piece folding device and a piece sewing device;

[0005] The piece feeding device is used to feed the pieces to be folded to the piece folding device;

[0006] The piece folding device includes a folding platform, a pressing mechanism, a folding positioning mechanism, and a picking and folding mechanism; the folding platform is used to place the piece to be folded; the pressing mechanism is arranged on the folding platform, and is used to press the first end of the piece to be folded; the folding positioning mechanism is arranged on the folding platform, and the folding positioning mechanism includes a telescopic rod, and the telescopic rod is used to extend above the piece to be folded to locate the folding position; the picking and folding mechanism is arranged on the folding platform, and is used to pick up the second end of the piece to be folded and transfer it to the first end, and cooperate with the telescopic rod to tension the piece to obtain the folded piece;

[0007] The piece sewing device is used for sewing the folded piece to obtain an annular piece.

[0008] In one embodiment, the cutting piece folding device also includes a side positioning mechanism and a blowing positioning mechanism, and the side positioning mechanism and the blowing positioning mechanism are arranged on the folding platform, and the side positioning mechanism and the blowing positioning mechanism are arranged opposite to each other and at intervals, and the blowing positioning mechanism is used to press the side of the cutting piece to be folded against the side positioning mechanism by blowing air.

[0009] In one embodiment, the pressing mechanism includes a pressing plate and a pressing lifting component and a pressing transverse moving component respectively connected to the pressing plate; the folding platform is provided with a accommodating hole, the pressing plate is arranged in the accommodating hole, the pressing lifting component is used to drive the pressing plate to rise to extend out of the accommodating hole, the pressing transverse moving component is used to drive the pressing plate to move transversely to above the first end, and the pressing lifting component is also used to drive the pressing plate to descend to press the first end.

[0010] In one embodiment, the cut piece folding device also includes a first positioning sensor, which is arranged on the folding platform and close to the accommodating hole. The pressing plate moves laterally when the pressing plate presses the first end and moves back to the position of the first positioning sensor and stops.

[0011] In one embodiment, the cut piece folding device further includes a second positioning sensor, which is disposed on the picking-up and folding mechanism. When the picking-up and folding mechanism moves to the point where the second positioning sensor detects the second end, the picking-up and folding mechanism picks up the second end at that position.

[0012] In one embodiment, the folding positioning mechanism further includes a positioning transverse movement component, which is connected to and used to drive the telescopic rod to move to a center position between the first positioning sensor and the second positioning sensor.

[0013] In one embodiment, the cut piece feeding device includes:

[0014] A material storage trough for storing stacked pieces, the material storage trough having a liftable trough bottom, the liftable trough bottom being able to rise to allow the stacked pieces to rise to the trough opening;

[0015] A material lifting mechanism, arranged above the material storage trough, for lifting the to-be-folded pieces on the upper surface of the stacked pieces;

[0016] A sheet-splitting mechanism is provided above the material storage trough, the sheet-splitting mechanism comprising a sheet-splitting driving component, a sheet-splitting sheet, and a material clamping component, the sheet-splitting driving component being connected to the sheet-splitting sheet to drive the sheet-splitting sheet to extend below the lifted sheet to be folded, the sheet-splitting driving component being connected to the material clamping component to drive the material clamping component to press against the sheet to be folded on the sheet-splitting sheet, so that the lifting mechanism and the sheet-splitting mechanism respectively clamp the two ends of the sheet to be folded; and

[0017] The transfer mechanism is connected to and used to drive the lifting mechanism and the sheet separation mechanism so that the sheets to be folded are transferred for loading.

[0018] In one embodiment, the material dividing drive component includes a rotary cylinder and a pressing cylinder. The rotary cylinder is connected and used to drive the material dividing sheet to rotate, and the pressing cylinder is connected and used to drive the clamping part to press on the cut piece to be folded on the material dividing sheet.

[0019] In one embodiment, the material lifting mechanism includes a material lifting and lifting driving component and a clamping claw. The material lifting and lifting driving component is connected and used to drive the clamping claw to rise or fall, and the clamping claw is used to clamp the piece to be folded.

[0020] In one embodiment, the collar production equipment further includes an annular cut piece receiving device;

[0021] The annular piece receiving device comprises:

[0022] The material receiving platform is used to place the ring-shaped pieces;

[0023] An adsorption mechanism is provided close to the material receiving platform, and is used to open the annular cut piece by suction;

[0024] A rocker mechanism, comprising a rocker transverse movement driving component, a swing driving component, and a swing rod, wherein the swing driving component is connected to the swing rod, the rocker transverse movement driving component is connected to the swing driving component, the rocker transverse movement driving component is used to drive the swing driving component and the swing rod to move so that the insertion end of the swing rod passes through the opened annular piece, and the swing driving component is used to drive the swing rod to swing so as to transfer the annular piece;

[0025] a material storage mechanism, close to the position of the penetration end after the swing rod swings; and

[0026] The blowing mechanism is arranged on the swing rod mechanism, and is used for blowing the annular cut piece from the swing rod into the storage mechanism by blowing air.

[0027] Compared with traditional technology, the collar production equipment has the following beneficial effects:

[0028] When using the above-described collar production equipment, the pieces to be folded are loaded onto the piece folding device via the piece loading device. A pressing mechanism in the piece folding device presses the first end of the piece to be folded, and a telescopic rod extends above the piece to locate the folding position. The pick-up and folding mechanism then picks up the second end of the piece to be folded and transfers it to the first end, where it cooperates with the telescopic rod to tension the piece. The piece sewing device then sews the folded piece together to form an annular piece. This collar production equipment enables automated collar production, saving manpower. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 A schematic structural diagram of a collar production device according to an embodiment;

[0030] Figure 2 for Figure 1 A schematic structural diagram of a cutting piece loading device in a collar production device is shown;

[0031] Figure 3 for Figure 2 A partial enlarged view of

[0032] Figure 4 for Figure 1 A schematic structural diagram of a cutting piece loading device and a cutting piece folding device in a collar production device shown;

[0033] Figure 5 for Figure 4 A partial enlarged view of

[0034] Figure 6 for Figure 1 The schematic diagram of the structure of the cutting piece sewing device and the ring-shaped cutting piece receiving device in the collar production equipment shown;

[0035] Figure 7 for Figure 6 A partial enlarged view of . DETAILED DESCRIPTION

[0036] To make the above-mentioned objects, features, and advantages of the present application more clearly understood, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings. The following description sets forth many specific details to facilitate a full understanding of the present application. However, the present application can be implemented in many other ways than those described herein, and those skilled in the art can make similar improvements without violating the scope of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.

[0037] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this application pertains. The terms used herein in the specification of this application are for the purpose of describing specific embodiments only and are not intended to limit this application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0038] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.

[0039] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of such features. In the description of this application, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.

[0040] In this application, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in this application based on specific circumstances.

[0041] The present application provides a collar production device that can be used to produce ribbed round collars, but is not limited to this.

[0042] like Figure 1 As shown, a collar production device 10 according to an embodiment of the present application includes a piece loading device 100 , a piece folding device 200 and a piece sewing device 300 .

[0043] The sheet loading device 100 is used to load sheets to be folded onto the sheet folding device 200 .

[0044] like Figure 2 and Figure 3 As shown, in one example, the cut piece loading device 100 includes a material storage trough 110 , a material lifting mechanism 120 , a piece separating mechanism 130 and a transfer mechanism 140 .

[0045] The storage trough 110 is used to store stacked pieces formed by stacking multiple pieces to be folded. The storage trough 110 has a liftable bottom 111 that can be lifted to allow the stacked pieces to rise to the slot opening.

[0046] The lifting mechanism 120 is disposed above the material storage trough 110. The lifting mechanism 120 is used to lift the to-be-folded pieces on the upper surface of the stacked pieces.

[0047] The sheet-splitting mechanism 130 is disposed above the material storage trough 110. The sheet-splitting mechanism 130 includes a sheet-splitting drive component 131, a sheet-splitting piece 132, and a material clamping member 133. The sheet-splitting drive component 131 is connected to the sheet-splitting piece 132 to drive the sheet-splitting piece 132 to extend below the lifted piece to be folded. The sheet-splitting drive component 131 is connected to the material clamping member 133 to drive the material clamping member 133 to press against the piece to be folded on the sheet-splitting piece 132. The material clamping member 133 and the sheet-splitting piece 132 cooperate to clamp the piece to be folded. Thus, the material lifting mechanism 120 and the sheet-splitting mechanism 130 respectively clamp the ends of the piece to be folded.

[0048] The transfer mechanism 140 is connected to and used to drive the lifting mechanism 120 and the sheet separation mechanism 130 so as to transfer the sheets to be folded for loading.

[0049] like Figure 2 As shown, in one example, the liftable trough bottom 111 is connected to a lift motor 112 and is driven to rise or fall by the lift motor 112. The lift motor 112 can control the liftable trough bottom 111 to rise each time, so that the lifting mechanism 120 can lift one piece to be folded at a time.

[0050] like Figure 2 As shown, in one example, the storage trough 110 is a rectangular trough to accommodate the storage of rectangular ribbed round neck pieces. The lifting mechanism 120 is close to one end of the storage trough 110 to lift one end of the piece to be folded.

[0051] like Figure 2 As shown, in one example, the material lifting mechanism 120 includes a material lifting and lifting driving component 121 and a clamping claw 122. The material lifting and lifting driving component 121 is connected and used to drive the clamping claw 122 to rise or fall, and the clamping claw 122 is used to clamp the piece to be folded.

[0052] In one example, the material lifting and lifting driving component 121 is a telescopic cylinder. In another example, the material lifting and lifting driving component 121 is a motor screw assembly.

[0053] like Figure 3As shown, in one example, the slice mechanism 130 also includes a slice transverse moving component 134. The material dividing drive component 131, the material dividing piece 132 and the material clamping component 133 are all connected to the slice transverse moving component 134. The slice transverse moving component 134 is used to drive the material dividing drive component 131, the material dividing piece 132 and the material clamping component 133 to move as a whole along the length direction of the storage trough 110. After the material lifting mechanism 120 lifts one end of the cut piece to be folded, the material dividing piece 132 extends to the bottom of the lifted cut piece to be folded near the end. After the material clamping component 133 and the material dividing piece 132 cooperate to clamp the cut piece to be folded, the slice transverse moving component 134 drives the material dividing drive component 131, the material dividing piece 132 and the material clamping component 133 to move as a whole to the other end. Thus, the material lifting mechanism 120 and the slice mechanism 130 respectively clamp the two ends of the cut piece to be folded.

[0054] like Figure 3 As shown, in one example, the material dividing drive component 131 includes a rotary cylinder 1312 and a pressing cylinder 1314. The rotary cylinder 1312 is connected and used to drive the material dividing sheet 132 to rotate, and the pressing cylinder 1314 is connected and used to drive the clamping member 133 to press on the cut piece to be folded on the material dividing sheet 132.

[0055] like Figure 3 As shown, in one example, the sheet dividing transverse movement component 134 includes a movable guide rail 1342 and a movable member 1344, the movable guide rail 1342 extends along the length direction of the material storage trough 110, the movable member 1344 is arranged on the movable guide rail 1342 and can move along the movable guide rail 1342, and the material dividing drive component 131, the material dividing sheet 132 and the material clamping member 133 are all connected to the movable member 1344.

[0056] When using the above-mentioned piece feeding device 100, the stacked pieces are placed in the storage trough 110, and the bottom 111 of the lifting trough is raised to allow the stacked pieces to rise to the slot mouth. Then, the lifting mechanism 120 lifts the pieces to be folded on the upper surface of the stacked pieces, and the dividing piece 132 extends below the lifted pieces to be folded. The clamping piece 133 presses on the pieces to be folded on the dividing piece 132, and the clamping piece 133 and the dividing piece 132 cooperate to clamp the pieces to be folded. Thus, the lifting mechanism 120 and the dividing mechanism 130 respectively clamp the two ends of the pieces to be folded. The transfer mechanism 140 drives the lifting mechanism 120 and the dividing mechanism 130 to transfer the pieces to be folded for loading. The above-mentioned piece feeding device 100 can realize the automatic loading of ribbed round neck pieces, saving manpower.

[0057] like Figure 4 and Figure 5 As shown, in one example, the panel folding device 200 includes a folding platform 210 , a pressing mechanism 220 , a folding and positioning mechanism 230 , and a picking and folding mechanism 240 .

[0058] The folding platform 210 is used to place the pieces to be folded (the pieces to be folded are the pieces to be folded that are loaded through the piece loading device 100). The pieces to be folded have a first end and a second end that are opposite. The pressing mechanism 220 is arranged on the folding platform 210. The pressing mechanism 220 is used to press the first end of the piece to be folded. The folding positioning mechanism 230 is arranged on the folding platform 210. The folding positioning mechanism 230 includes a telescopic rod 231, which is used to extend above the piece to be folded to locate the folding position. The picking and folding mechanism 240 is arranged on the folding platform 210. The picking and folding mechanism 240 is used to pick up the second end of the piece to be folded and transfer it to the first end, and cooperate with the telescopic rod 231 to tension the piece to obtain the folded piece.

[0059] When using the above-described piece folding device 200, the piece to be folded is placed on the folding platform 210. The pressing mechanism 220 presses the first end of the piece to be folded. The telescopic rod 231 extends above the piece to locate the folding position. The pick-up and folding mechanism 240 then picks up the second end of the piece to be folded and transfers it to the first end, where it cooperates with the telescopic rod 231 to tension the piece. The above-described piece folding device 200 can automatically fold the piece, saving manpower.

[0060] like Figure 4 As shown in one example, the panel folding device 200 further includes a side positioning mechanism 250 and a blow positioning mechanism 260. The side positioning mechanism 250 and the blow positioning mechanism 260 are disposed on the folding platform 210. The side positioning mechanism 250 and the blow positioning mechanism 260 are disposed opposite each other and spaced apart. The area between the side positioning mechanism 250 and the blow positioning mechanism 260 is used to place the panel to be folded. The blow positioning mechanism 260 is used to blow air onto the panel to be folded, thereby positioning the side edges of the panel to be folded against the side positioning mechanism 250, thereby positioning the panel to be folded.

[0061] In one embodiment, the side positioning mechanism 250 includes a side positioning lifting component 251 and a positioning rack 252. The positioning rack 252 is movably disposed on the folding platform 210. The side positioning lifting component 251 is connected to the positioning rack 252 to drive the positioning rack 252 upward to protrude above the surface of the folding platform 210, or to drive the positioning rack 252 downward to be accommodated below the surface of the folding platform 210.

[0062] The side positioning lifting component 251 can be, but is not limited to, a motor.

[0063] In one example, the air-blowing positioning mechanism 260 includes a first air-blowing port 261 and a second air-blowing port 262 formed on the surface of the folding platform 210. The first air-blowing port 261 is used to blow air toward the first end of the folded piece to position it. The second air-blowing port 262 is used to blow air toward the second end of the folded piece to position it. There can be one or more first air-blowing ports 261 and one or more second air-blowing ports 262.

[0064] like Figure 4 As shown, in one example, the pressing mechanism 220 includes a pressing plate 221, and a pressing lifting component 222 and a pressing transverse displacement component 223 respectively connected to the pressing plate 221. The folding platform 210 is provided with a receiving hole, and the pressing plate 221 is disposed in the receiving hole. The pressing lifting component 222 is used to drive the pressing plate 221 to rise so as to extend out of the receiving hole, and the pressing transverse displacement component 223 is used to drive the pressing plate 221 to transversely move above the first end. The pressing lifting component 222 is also used to drive the pressing plate 221 to descend to press the first end.

[0065] The press lifting component 222 and the press transverse moving component 223 can be, but are not limited to, motors.

[0066] like Figure 4 As shown, in one example, the panel folding device 200 further includes a first positioning sensor 270. The first positioning sensor 270 is disposed on the folding platform 210 and is close to the receiving hole. The pressing and transverse moving component 223 drives the pressing plate 221 to press the first end and transversely move back to the position of the first positioning sensor 270 and stops.

[0067] like Figure 5 As shown, in one example, the cutting piece folding device 200 further includes a second positioning sensor 280, which is disposed on the picking and folding mechanism 240. When the picking and folding mechanism 240 moves to the position where the second positioning sensor 280 detects the second end, the picking and folding mechanism 240 picks up the second end at that position.

[0068] like Figure 4 As shown, in one example, the folding positioning mechanism 230 further includes a positioning transverse displacement component 232. The positioning transverse displacement component 232 is connected to and used to drive the telescopic rod 231 to move to a position centered between the first positioning sensor 270 and the second positioning sensor 280. Since the lengths of the pieces to be folded vary, aligning the pieces in automated production is a key issue. In the above example, the first end and the second end of the piece to be folded are determined by the first positioning sensor 270 and the second positioning sensor 280, respectively, and the positioning transverse displacement component 232 is used to drive the telescopic rod 231 to move to a position centered between the first positioning sensor 270 and the second positioning sensor 280, thereby achieving automatic centering and folding of the piece.

[0069] like Figure 4 As shown, in one example, the folding and positioning mechanism 230 further includes a pulling component, which is connected to the positioning and transverse moving component 232 so that the telescopic rod 231 can tension the folded piece.

[0070] In one example, the pulling component includes a counterweight 233, a guide member 234 and a pulling rope 235. The two ends of the pulling rope 235 are respectively connected to the positioning and transverse movement component 232 and the counterweight 233. The guide member 234 guides the pulling rope 235 so that the vertical pulling force of the counterweight 233 is converted into the horizontal pulling force of the pulling rope 235 on the positioning and transverse movement component 232.

[0071] like Figure 5 As shown, in one example, the pick-up and folding mechanism 240 includes a pick-up and folding drive component 241, and a scraper plate 242 and a pressure plate 243 respectively connected to the pick-up and folding drive component 241. The pressure plate 243 is located above the scraper plate 242. The pick-up and folding drive component 241 can drive the scraper plate 242 and the pressure plate 243 to allow the second end to enter between the pressure plate 243 and the scraper plate 242. The pick-up and folding drive component 241 can also drive the pressure plate 243 downward to press on the scraper plate 242, thereby clamping the second end and transferring the second end to the first end.

[0072] In one example, the picking and folding mechanism 240 includes a blowing component (not shown) located between the shovel plate 242 and the pressure plate 243. After the second end is moved onto the first end, the blowing component blows the second end out.

[0073] like Figure 6 As shown, in one example, the panel folding device 200 further includes a transfer mechanism 290. When the pressing mechanism 220 releases the folded panel and the telescopic rod 231 retracts, the transfer mechanism 290 is used to press the two ends of the folded panel and send the folded panel away from the folding platform 210.

[0074] Taking the specific example shown in the figure as an example, the working steps of the panel folding device 200 are as follows:

[0075] 1. Place the pieces to be folded on the folding platform 210.

[0076] 2. The side positioning lifting component 251 drives the positioning rack 252 to rise and protrude from the table surface of the folding platform 210.

[0077] 3. The first blowing port 261 blows air to make the first end of the to-be-folded piece lean against the positioning rack 252 .

[0078] 4. The press lifting component 222 drives the press plate 221 to rise and extend out of the accommodating hole, move horizontally to above the first end, and press the first end of the folded piece, and stop when it moves horizontally back to the position of the first positioning sensor 270.

[0079] 5. The second blowing port 262 blows air to the second end of the folded piece so that the second end rests against the positioning rack 252.

[0080] 6. The telescopic rod 231 extends above the pieces to be folded.

[0081] 7. The picking and folding driving component 241 drives the shovel plate 242 and the pressing plate 243 so that the second end enters between the pressing plate 243 and the shovel plate 242.

[0082] 8. The picking and folding mechanism 240 moves to the second positioning sensor 280 to detect the second end, and the positioning transverse moving component 232 drives the telescopic rod 231 to move to the center position of the first positioning sensor 270 and the second positioning sensor 280.

[0083] 9. The picking and folding driving component 241 drives the pressing plate 243 to press down on the shovel plate 242, thereby clamping the second end and moving the second end to the first end, and the blowing component blows the second end out.

[0084] 10. When the positioning transverse moving member 232 is released, the pulling member exerts a horizontal pulling force on the positioning transverse moving member 232 to cause the telescopic rod 231 to tighten the folded piece.

[0085] 11. The press lifting component 222 drives the press plate 221 to return to the receiving hole. The telescopic rod 231 returns to its original position and retracts.

[0086] 12. The transfer mechanism 290 presses the two ends of the folded piece and sends the folded piece away from the folding platform 210.

[0087] The piece sewing device 300 is used to sew the folded pieces to obtain annular pieces.

[0088] like Figure 6 and Figure 7 As shown, the collar production device 10 of one embodiment of the present application includes an annular piece receiving device 400. The annular piece receiving device 400 is used to automatically receive the annular pieces.

[0089] In one example, the annular sheet receiving device 400 includes a receiving platform 410 , a suction mechanism (not shown), a rocker mechanism 430 , a material storage mechanism 440 , and a material blowing mechanism 450 .

[0090] The material receiving platform 410 is used to place the circular pieces. A suction mechanism is located near the material receiving platform 410. The suction mechanism is used to open the circular pieces by suction. The rocker mechanism 430 includes a rocker transverse drive component 431, a swing drive component 432, and a swing rod 433. The swing drive component 432 is connected to the swing rod 433, and the rocker transverse drive component 431 is connected to the swing drive component 432. The rocker transverse drive component 431 drives the swing drive component 432 and the swing rod 433 to move, allowing the insertion end of the swing rod 433 to pass through the opened circular piece. The swing drive component 432 drives the swing rod 433 to swing, thereby transferring the circular piece. The material storage mechanism 440 is located near the insertion end of the swing rod 433 after it swings. A blowing mechanism 450 is located on the rocker mechanism 430 and is used to blow air from the swing rod 433 into the material storage mechanism 440.

[0091] like Figure 6 As shown, in one example, the storage mechanism 440 includes a vertically arranged storage rod 441. The upper end of the storage rod 441 is close to the position of the end of the swing rod 433 after the swing.

[0092] like Figure 7 As shown, in one example, the rocker arm transverse movement driving component 431 includes a guide member 4312 and a sliding member 4314 movably set on the guide member 4312.

[0093] In one example, the swing drive component 432 is a rotary motor.

[0094] like Figure 7 As shown, in one example, the blowing mechanism 450 includes a blowing pipe 451 , which is disposed above the swing rod 433 and is consistent with the extending direction of the swing rod 433 .

[0095] In one example, the suction mechanism is a non-contact vacuum generator.

[0096] When using the circular piece receiving device 400, the circular piece is placed on the receiving platform 410. The suction mechanism opens the circular piece by suction. The swing arm transverse drive component 431 drives the swing drive component 432 and the swing arm 433 to move, so that the insertion end of the swing arm 433 passes through the opened circular piece. The swing drive component 432 drives the swing arm 433 to swing, thereby transferring the circular piece. The blowing mechanism 450 then blows air, blowing the circular piece off the swing arm 433 and into the storage mechanism 440. The circular piece receiving device 400 can automatically collect circular pieces, saving manpower.

[0097] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0098] The above-described embodiments merely represent several implementation methods of the present application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the spirit of the present application, all of which fall within the scope of protection of the present application. Therefore, the scope of protection of the present patent application shall be determined by the appended claims, and the specification may be used to interpret the content of the claims.

Claims

1. A collar production device, characterized in that: It includes a cutting piece loading device, a cutting piece folding device and a cutting piece sewing device; The piece feeding device is used to feed the pieces to be folded to the piece folding device; The piece folding device includes a folding platform, a pressing mechanism, a folding positioning mechanism, and a picking and folding mechanism; the folding platform is used to place the piece to be folded; the pressing mechanism is arranged on the folding platform, and the pressing mechanism is used to press the first end of the piece to be folded; The folding and positioning mechanism is disposed on the folding platform, and includes a telescopic rod, which is used to extend above the to-be-folded piece to locate the folding position; the picking and folding mechanism is disposed on the folding platform, and is used to pick up the second end of the to-be-folded piece and transfer it to the first end, and cooperate with the telescopic rod to tension the piece to obtain a folded piece; as well as The piece sewing device is used for sewing the folded piece to obtain an annular piece.

2. The collar production equipment according to claim 1, characterized in that: The cut piece folding device also includes a side positioning mechanism and a blowing positioning mechanism. The side positioning mechanism and the blowing positioning mechanism are arranged on the folding platform. The side positioning mechanism and the blowing positioning mechanism are arranged opposite to each other and at intervals. The blowing positioning mechanism is used to press the side of the cut piece to be folded against the side positioning mechanism by blowing air.

3. The collar production equipment according to claim 1, characterized in that: The pressing mechanism includes a pressing plate and a pressing lifting component and a pressing transverse moving component respectively connected to the pressing plate; the folding platform is provided with a accommodating hole, the pressing plate is arranged in the accommodating hole, the pressing lifting component is used to drive the pressing plate to rise to extend out of the accommodating hole, the pressing transverse moving component is used to drive the pressing plate to move transversely to above the first end, and the pressing lifting component is also used to drive the pressing plate to descend to press the first end.

4. The collar production equipment according to claim 3, characterized in that: The cut piece folding device also includes a first positioning sensor, which is arranged on the folding platform and close to the accommodating hole. The pressing and transverse moving component drives the pressing plate to press the first end and move back transversely to the position of the first positioning sensor and stops.

5. The collar production equipment according to claim 4, characterized in that: The cut piece folding device further includes a second positioning sensor, which is disposed on the picking-up and folding mechanism. When the picking-up and folding mechanism moves to the position where the second positioning sensor detects the second end, the picking-up and folding mechanism picks up the second end at that position.

6. The collar production equipment according to claim 5, characterized in that: The folding and positioning mechanism further includes a positioning transverse movement component, which is connected to and used to drive the telescopic rod to move to a center position between the first positioning sensor and the second positioning sensor.

7. The collar production equipment according to any one of claims 1 to 6, characterized in that: The cutting piece feeding device comprises: A material storage trough for storing stacked pieces, the material storage trough having a liftable trough bottom, the liftable trough bottom being able to rise to allow the stacked pieces to rise to the trough opening; A material lifting mechanism, arranged above the material storage trough, for lifting the to-be-folded pieces on the upper surface of the stacked pieces; A sheet-splitting mechanism is provided above the material storage trough, the sheet-splitting mechanism comprising a sheet-splitting driving component, a sheet-splitting sheet, and a material clamping component, the sheet-splitting driving component being connected to the sheet-splitting sheet to drive the sheet-splitting sheet to extend below the lifted sheet to be folded, the sheet-splitting driving component being connected to the material clamping component to drive the material clamping component to press against the sheet to be folded on the sheet-splitting sheet, so that the lifting mechanism and the sheet-splitting mechanism respectively clamp the two ends of the sheet to be folded; and The transfer mechanism is connected to and used to drive the lifting mechanism and the sheet separation mechanism so that the sheets to be folded are transferred for loading.

8. The collar production equipment according to claim 7, characterized in that: The material dividing drive component includes a rotary cylinder and a sheet pressing cylinder. The rotary cylinder is connected to and used to drive the material dividing sheet to rotate, and the sheet pressing cylinder is connected to and used to drive the clamping piece to press on the to-be-folded piece on the material dividing sheet.

9. The collar production equipment according to claim 7, characterized in that: The material lifting mechanism includes a material lifting and lifting driving component and a clamping claw. The material lifting and lifting driving component is connected and used to drive the clamping claw to rise or fall, and the clamping claw is used to clamp the piece to be folded.

10. The collar production equipment according to any one of claims 1 to 6, 8 and 9, characterized in that: The collar production equipment also includes an annular cut piece receiving device; The annular piece receiving device comprises: The material receiving platform is used to place the ring-shaped pieces; An adsorption mechanism is provided close to the material receiving platform, and is used to open the annular cut piece by suction; A rocker mechanism, comprising a rocker transverse movement driving component, a swing driving component, and a swing rod, wherein the swing driving component is connected to the swing rod, the rocker transverse movement driving component is connected to the swing driving component, the rocker transverse movement driving component is used to drive the swing driving component and the swing rod to move so that the insertion end of the swing rod passes through the opened annular piece, and the swing driving component is used to drive the swing rod to swing so as to transfer the annular piece; a material storage mechanism, close to the position of the penetration end after the swing rod swings; and The blowing mechanism is arranged on the swing rod mechanism, and is used for blowing the annular cut piece from the swing rod into the storage mechanism by blowing air.