Collecting device suitable for cloth leftover materials
By designing a fabric edge material collection device that includes a main frame, a roller supply, winding, transfer separation, and film-coated storage, the problem of the inability of existing equipment to continuously collect and store edge materials has been solved, realizing the orderly collection and efficient production of edge materials.
Patent Information
- Application Number
- CN202520434535.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-13
AI Technical Summary
Existing fabric trimming equipment cannot continuously collect edge material, requiring frequent replacement of collection boxes. The edge material is stacked disorderly and difficult to store, affecting production efficiency.
Design a data collection device comprising a main frame, a roll bar supply section, a winding section, a transfer and separation section, a film coating and storage section, and a control section. Through integrated design, it achieves continuous data collection, orderly winding, and film coating and storage of edge materials.
This enables long-term continuous collection of scrap materials, reducing the difficulty of subsequent utilization, saving storage space, and improving production efficiency.
Smart Images

Figure CN223907230U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cloth processing field especially applicable to the collection device of cloth edge material. BACKGROUND
[0002] Cloth is made of natural fiber or synthetic fiber by weaving, knitting or knitting, and its main function is covering, keeping warm or decorating. Its characteristics depend on fiber type and weaving process, but it is usually not waterproof and will penetrate or absorb water when it encounters water. With the development of the times, people's requirements for the waterproofness of cloth are getting higher and higher, and waterproof cloth has emerged as the times require. It is on the basis of ordinary cloth, which is endowed with the ability to block liquid water through physical or chemical treatment. It is mainly composed of high-molecular waterproof and breathable material PTFE film and cloth. It can prevent water, moisture, air, wind and cold.
[0003] In the production process of waterproof cloth, high-molecular waterproof and breathable material PTFE film and cloth are usually compounded by using a film laminating machine. Then the edge of the compounded cloth is cut by using an edge cutting machine. For example, the cloth automatic edge cutting equipment for garment production provided in Chinese patent CN114990871A includes a mounting mechanism. A sliding assembly is provided on the mounting mechanism, and the sliding rod of the sliding assembly is provided on the front side of the upper end of the main body in the mounting mechanism. When the cloth edge material of the main body needs to be cleaned, the top plate is removed from the turnover plate, and the edge material on the top plate falls onto the turnover plate. At this time, the clamping rod is pulled to the two ends, so that the clamping rod is separated from the clamping rod at the two ends of the turnover plate. By rotating the turnover plate, the cloth edge material can slide between the turnover plates and fall into the collection box in the main body for collection.
[0004] For example, the above-mentioned edge cutting equipment can produce long edge material, although it has certain edge material collection function, but in the actual use process, there are still the following defects:
[0005] Firstly, it cannot continuously collect edge material and needs to frequently replace the collection box.
[0006] Secondly, the edge material is stacked disorderly, and it is difficult to reuse.
[0007] Thirdly, it is difficult to store the edge material, and additional process is needed to pack the edge material, otherwise it will occupy a large space and seriously affect the production efficiency. INVENTION CONTENTS
[0008] The utility model provides a kind of collection device suitable for cloth edge material, which can effectively solve the problems mentioned in the background art.
[0009] To achieve the above purpose, the utility model adopts the following technical scheme:
[0010] A kind of collection device suitable for cloth edge material, including main body frame, reel rod supply part, winding part, transfer separation part, film storage part and control part.
[0011] Specifically, main body frame includes base, feeding seat, transfer carrier plate and "C" frame.The base includes cuboid hollow container one, and strip-shaped through hole one, rectangular through hole one, rectangular through hole two, rectangular through hole three, rectangular through hole four are arranged on the upper bottom plate, rectangular through hole five is arranged on the left side plate.The feeding seat is arranged on the base by support column one, and includes cuboid hollow container two.The "C" frame is arranged on the base, and the left end is slightly higher than the right end.The transfer carrier plate is arranged on the base by support column two, and is located above the feeding seat, and strip-shaped through hole two is arranged on it.
[0012] Specifically, reel rod supply part includes shaft rod supply mechanism and soft magnetic strip supply mechanism.Shaft rod supply mechanism includes chain conveyer belt one, separation plate one, screw stepper motor one, electric telescopic rod one, jaw motor one and shaft rod;Chain conveyer belt one is arranged on the feeding seat;Separation plate one is arranged on the chain plate of chain conveyer belt one;Screw stepper motor one and slide rod one are arranged on the transfer carrier plate;Movable carrier plate one is slidably connected on the slide rod one;Mounting carrier plate one is arranged on the lower bottom surface of movable carrier plate one by connecting stub;Electric telescopic rod one is arranged on the lower bottom surface of mounting carrier plate one;Jaw motor one is arranged on the movable end of electric telescopic rod one;Strip-shaped grooves are equidistantly arranged on the shaft rod.Soft magnetic strip supply mechanism includes chain conveyer belt two, separation plate two, electric telescopic rod two and jaw motor two;Chain conveyer belt two is arranged in the base, and the left end is arranged on the left side plate of base by mounting plate;Separation plate two is arranged on the chain plate of chain conveyer belt two;Electric telescopic rod two is arranged in the base;Jaw motor two is arranged on the movable end of electric telescopic rod two, and is slidably connected in rectangular through hole three.
[0013] Specifically, winding part includes fixed seat mechanism and winding mechanism.Fixed seat mechanism includes push rod motor one, "Y" shaped positioning block and rolling bearing;Push rod motor one is arranged in the base;"Y" shaped positioning block is arranged on the movable end of push rod motor one;Rolling bearing is arranged on "Y" shaped positioning block.Winding mechanism includes limiting adjustment structure and winding structure;Winding structure includes electric telescopic rod three, movable carrier plate two and electric chuck;Movable carrier plate two is slidably connected on the base by slide rod two;Electric telescopic rod three is arranged on the base;Movable carrier plate two is connected with the movable end of electric telescopic rod three;Electric chuck is arranged on movable carrier plate two;Limiting adjustment structure includes screw stepper motor three and limiting frame;Screw stepper motor three is arranged on the base by "n" shaped mounting bracket;Limiting frame is slidably connected on "n" shaped mounting bracket by slide rod two, and is connected with the nut seat of screw stepper motor three.
[0014] Specific, transfer separation part includes cutting mechanism and transfer mechanism. Transfer mechanism includes screw stepper motor two, movable carrier plate three, push rod motor two and jaw motor three; screw stepper motor two, slide rod three are arranged in base; movable carrier plate three is slidably connected on slide rod three, and is connected with screw stepper motor two nut seat; push rod motor two is arranged on movable carrier plate three; jaw motor three is arranged on the movable end of push rod motor two. Cutting mechanism includes laser cutting knife and electric telescopic rod four; electric telescopic rod four is arranged in base; laser cutting knife is arranged on the movable end of electric telescopic rod four, and is slidably connected in rectangular hole four.
[0015] Specific, film storage part includes film structure one, film structure two, limit roller, sealing machine and electric telescopic rod five. Film structure one includes "n" shaped frame one, connecting rod one and electromagnet one; "n" shaped frame one is arranged on the lower bottom surface of transfer carrier plate through mounting rod; connecting rod one is connected on "n" shaped frame one through pin shaft; electromagnet one is arranged on "n" shaped frame one, and is matched with connecting rod one; film structure two includes "n" shaped frame two, connecting rod two and electromagnet two; "n" shaped frame two is arranged in base through mounting rod; connecting rod two is connected on "n" shaped frame two through pin shaft; electromagnet two is arranged on "n" shaped frame two, and is matched with connecting rod two; limit roller is arranged on the lower bottom surface of transfer carrier plate, the upper bottom plate of base through mounting frame; sealing machine is arranged on the lower bottom surface of transfer carrier plate through electric telescopic rod five, and sealing base is arranged on the upper bottom plate of base through mounting frame.
[0016] Specific, control part includes control mechanism, feedback mechanism and PLC controller. Control mechanism includes start switch, fixed switch one, upper shaft switch, fixed switch two, acquisition switch and pause switch. Feedback mechanism includes several distance sensor modules.
[0017] Further, dustproof curtain is additionally arranged on the side surface of transfer carrier plate.
[0018] The beneficial effects of the prior art are as follows:
[0019] In the utility model, through the integrated arrangement of the main frame, the reel rod supply part, the winding part, the transfer separation part, the film storage part and the control part, the following functions are realized:
[0020] Firstly, the edge material can be continuously collected for a long time, and the utility model is suitable for various processing equipment (such as edge trimmer, film laminating machine and the like).
[0021] Secondly, the edge material is collected in order by the reel, and the difficulty of subsequent utilization is greatly reduced.
[0022] Thirdly, the design of the film storage part significantly reduces the storage difficulty, saves the storage space, and is beneficial to improving the production efficiency of related products. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a top view structure schematic diagram of the utility model;
[0024] Figure 2 It is a top view structure schematic diagram of the utility model Figure One ;
[0025] Figure 3 It is a top view structure schematic diagram of the utility model Figure Two ;
[0026] Figure 4 It is a front view structure schematic diagram of the utility model;
[0027] Figure 5 It is a front view structure schematic diagram of the utility model;
[0028] Figure 6 It is a system structure schematic diagram of the utility model Figure One ;
[0029] Figure 7 It is a system structure schematic diagram of the utility model Figure Two .
[0030] In the figure: 101. base, 102. feeding seat, 103. transfer carrier plate, 104. "C" frame, 201. chain conveyor one, 202. lead screw stepper motor one, 203. electric telescopic rod one, 204. jaw motor one, 205. shaft rod, 206. chain conveyor two, 207. electric telescopic rod two, 208. jaw motor two, 301. "Y" shaped positioning block, 302. electric telescopic rod three, 303. electric chuck, 304. lead screw stepper motor three, 305. limiting frame, 401. lead screw stepper motor two, 402. jaw motor three, 403. laser cutting knife, 404. electric telescopic rod four, 501. upper film structure one, 502. upper film structure two, 503. limiting roller shaft, 504. sealing machine, 505. electric telescopic rod five. DETAILED DESCRIPTION
[0031] Embodiment 1, refer to the attached Figures 1-7 A kind of collection device suitable for cloth edge material, including main frame, reel rod supply part, winding part, transfer separation part, film covering storage part and control part.
[0032] Main frame includes base 101, feeding seat 102, transfer carrier plate 103 and "C" frame 104.
[0033] Base 101 includes cuboid hollow container one.
[0034] The upper bottom plate of the cuboid hollow container one is provided with a strip-shaped through hole one, a rectangular through hole one, a rectangular through hole two, a rectangular through hole three and a rectangular through hole four.
[0035] The left side plate of the cuboid hollow container one is provided with a rectangular through hole five.
[0036] The upper feeding seat 102 is arranged on the base 101 through a support column one.
[0037] The upper feeding seat 102 comprises a cuboid hollow container two.
[0038] The "C" shaped frame 104 is arranged on the base 101; the left end of the "C" shaped frame 104 is slightly higher than the right end.
[0039] The transfer carrier plate 103 is arranged on the base 101 through a support column two.
[0040] The transfer carrier plate 103 is located above the upper feeding seat 102.
[0041] The transfer carrier plate 103 is provided with a strip-shaped through hole two.
[0042] The reel rod feeding part comprises a shaft rod feeding mechanism and a soft magnetic strip feeding mechanism.
[0043] The shaft rod feeding mechanism comprises a chain conveyor belt one 201, a partition plate one, a lead screw stepping motor one 202, an electric telescopic rod one 203, a jaw motor one 204 and a shaft rod 205.
[0044] The chain conveyor belt one 201 is arranged on the upper feeding seat 102.
[0045] The partition plate one is arranged on the chain plate of the chain conveyor belt one 201.
[0046] The lead screw stepping motor one 202 and the sliding rod one are arranged on the transfer carrier plate 103.
[0047] The movable carrier plate one is slidingly connected to the sliding rod one.
[0048] The mounting carrier plate one is arranged on the lower bottom surface of the movable carrier plate one through a connecting short column.
[0049] The electric telescopic rod one 203 is arranged on the lower bottom surface of the mounting carrier plate one.
[0050] The jaw motor one 204 is arranged on the movable end of the electric telescopic rod one 203.
[0051] The shaft rod 205 is provided with strip-shaped grooves at equal intervals.
[0052] The soft magnetic strip feeding mechanism comprises a chain conveyor belt two 206, a partition plate two, an electric telescopic rod two 207 and a jaw motor two 208.
[0053] The chain conveyor two 206 is arranged in the base 101; and the left end of the chain conveyor two 206 is arranged on the left side plate of the base 101 through the mounting plate.
[0054] The second partition plate is arranged on the chain plate of the chain conveyor two 206.
[0055] The second electric telescopic rod 207 is arranged in the base 101.
[0056] The second jaw motor 208 is arranged on the movable end of the second electric telescopic rod 207; and the second jaw motor 208 is slidingly connected in the rectangular through hole three.
[0057] The winding part comprises a fixed seat mechanism and a winding mechanism.
[0058] The fixed seat mechanism comprises a push rod motor one, a “Y” shaped positioning block 301 and a rolling bearing.
[0059] The push rod motor one is arranged in the base 101.
[0060] The “Y” shaped positioning block 301 is arranged on the movable end of the push rod motor one.
[0061] The rolling bearing is arranged on the “Y” shaped positioning block 301.
[0062] The winding mechanism comprises a limiting adjustment structure and a winding structure.
[0063] The winding structure comprises a third electric telescopic rod 302, a movable carrier plate two and a motor chuck 303.
[0064] The movable carrier plate two is slidingly connected on the base 101 through a second sliding rod.
[0065] The third electric telescopic rod 302 is arranged on the base 101.
[0066] The movable carrier plate two is connected with the movable end of the third electric telescopic rod 302.
[0067] The motor chuck 303 is arranged on the movable carrier plate two.
[0068] The limiting adjustment structure comprises a lead screw stepper motor three 304 and a limiting frame 305.
[0069] The lead screw stepper motor three 304 is arranged on the base 101 through an “n” shaped mounting bracket.
[0070] The limiting frame 305 is slidingly connected on the “n” shaped mounting bracket through a second sliding rod; and is connected with the nut seat of the lead screw stepper motor three 304.
[0071] The transfer separation part comprises a cutting mechanism and a transfer mechanism.
[0072] The transferring mechanism comprises a second screw stepper motor 401, a movable carrier plate 3, a second push rod motor and a third clamping jaw motor 402.
[0073] The second screw stepper motor 401 and the third slide rod are arranged in the base 101.
[0074] The movable carrier plate 3 is slidingly connected to the third slide rod and connected to the nut seat of the second screw stepper motor 401.
[0075] The second push rod motor is arranged on the movable carrier plate 3.
[0076] The third clamping jaw motor 402 is arranged on the movable end of the second push rod motor.
[0077] The cutting mechanism comprises a laser cutting knife 403 and a fourth electric telescopic rod 404.
[0078] The fourth electric telescopic rod 404 is arranged in the base 101.
[0079] The laser cutting knife 403 is arranged on the movable end of the fourth electric telescopic rod 404 and slidingly connected to the rectangular through hole four.
[0080] The film storage part comprises an upper film structure one 501, an upper film structure two 502, a limiting roller shaft 503, a sealing machine 504 and a fifth electric telescopic rod 505.
[0081] The upper film structure one 501 comprises an “n” shaped frame one, a connecting rod one and an electromagnet one.
[0082] The “n” shaped frame one is arranged on the lower bottom surface of the transferring carrier plate 103 through a mounting rod.
[0083] The connecting rod one is pin shaft connected to the “n” shaped frame one.
[0084] The electromagnet one is arranged on the “n” shaped frame one and matched with the connecting rod one.
[0085] The upper film structure two 502 comprises an “n” shaped frame two, a connecting rod two and an electromagnet two.
[0086] The “n” shaped frame two is arranged in the base 101 through a mounting rod.
[0087] The connecting rod two is pin shaft connected to the “n” shaped frame two.
[0088] The electromagnet two is arranged on the “n” shaped frame two and matched with the connecting rod two.
[0089] The limiting roller shaft 503 is arranged on the lower bottom surface of the transferring carrier plate 103 and the upper bottom plate of the base 101 through a mounting frame.
[0090] The sealing machine 504 is arranged on the lower bottom surface of the transferring carrier plate 103 through the fifth electric telescopic rod 505.
[0091] The sealing base is arranged on the upper bottom plate of the base 101 through the mounting frame.
[0092] The control part comprises a control mechanism, a feedback mechanism and a PLC controller.
[0093] The control mechanism comprises a start switch, a fixed switch one, an upper shaft switch, a fixed switch two, a collection switch and a pause switch.
[0094] The start switch, the fixed switch one, the upper shaft switch, the fixed switch two, the collection switch and the pause switch are arranged on the side plate of the feeding seat 102.
[0095] The feedback mechanism comprises a distance sensor module one, a distance sensor module two, a distance sensor module three, a distance sensor module four and a distance sensor module five.
[0096] The distance sensor module one is arranged on the lower bottom surface of the mounting board one and is used for assisting the PLC controller in detecting the position of the shaft rod 205.
[0097] The distance sensor module two is arranged on the base 101 and is used for assisting the PLC controller in detecting the position of the shaft rod 205.
[0098] The distance sensor module three is arranged on the motor chuck 303 and is used for assisting the PLC controller in detecting the position of the shaft rod 205.
[0099] The distance sensor module four is arranged in the base 101 and is located below the chain type conveying belt two 206 and is used for assisting the PLC controller in detecting the position of the soft magnetic strip.
[0100] The distance sensor module five is arranged on the base 101 and is located on one side of the laser cutting knife 403 and is used for assisting the PLC controller in detecting the position of the shaft rod 205.
[0101] The screw rod stepping motor comprises a servo motor, a ball screw pair and a nut seat.
[0102] Working principle and use method:
[0103] First step, pre-setting:
[0104] Tap the start switch, and power on the device for debugging.
[0105] The film-covered reel (i.e. the reel installed with the film roll) is installed on the film-feeding structure 501 and the film-feeding structure 502, and the fixed switch 1 is pressed. The PLC controller controls the electromagnet 1 and the electromagnet 2 to start. The two ends of the film-covered reel are fixedly connected.
[0106] The shaft rod 205 and the soft magnetic strip are respectively placed on the chain conveyor 1 201 and the chain conveyor 2 206.
[0107] In the second step, the following are used:
[0108] The upper shaft switch is pressed, and the PLC controller outputs a signal to the chain conveyor 1 201. The chain conveyor 1 201 starts to drive the shaft rod 205 to move to the lower side of the installation plate 1. The distance sensor module 1 outputs the collected signal to the PLC controller, and the PLC controller outputs a signal to the screw stepper motor 1 202, the electric telescopic rod 1 203, and the jaw motor 1 204.
[0109] The electric telescopic rod 1 203 drives the jaw motor 1 204 to clamp the shaft rod 205. Under the cooperation of the screw stepper motor 1 202, the shaft rod 205 is placed on the “Y”-shaped positioning block 301. The distance sensor module 2 outputs the collected signal to the PLC controller, and the PLC controller outputs a signal to the electric telescopic rod 3 302, the push rod motor 1, the push rod motor 2, and the jaw motor 3 402.
[0110] The push rod motor 1, the push rod motor 2, and the jaw motor 3 402 start to fix the shaft rod 205. The electric telescopic rod 3 302 starts to drive the electric chuck 303 to move close to the shaft rod 205. The distance sensor module 3 outputs the collected signal to the PLC controller, and the PLC controller outputs a signal to the electric chuck 303. The electric chuck 303 fixes the shaft rod 205. The jaw motor 3 402 delays to release the shaft rod 205.
[0111] After one end of the to-be-collected fabric edge material (generated when the trimming machine and the film-coating machine work) passes through the limiting frame 305 and moves to the lower side of the shaft rod 205, the fixed switch 2 is pressed. The distance sensor module 4 outputs the collected signal to the PLC controller, and the PLC controller outputs a signal to the chain conveyor 2 206, the electric telescopic rod 2 207, and the jaw motor 2 208. The chain conveyor 2 206 drives the soft magnetic strip to move to the lower side of the jaw motor 2 208. The electric telescopic rod 2 207 and the jaw motor 2 208 start to clamp the soft magnetic strip and move upward, so that the soft magnetic strip and the shaft rod 205 fix the edge material.
[0112] In the third step, the following are used:
[0113] Press the collection switch, the PLC controller output signal to the screw stepper motor three 304, electric chuck 303. Electric chuck 303 drives the shaft rod 205 rotation, screw stepper motor three 304 drives the limit frame 305 orderly movement, so that the edge material is evenly wound on the shaft rod 205.
[0114] When the shaft rod 205 is full (determined by the distance sensor module four auxiliary PLC controller), the PLC controller output signal to the screw stepper motor two 401, push rod motor two, jaw motor three 402.
[0115] Push rod motor two, jaw motor three 402 clamping shaft rod 205, screw stepper motor two 401 delay drive shaft rod 205 through the limit roller shaft 503 (in the process, complete the new empty load shaft rod 205 fixed).
[0116] The distance sensor module five will be collected to the signal output to the PLC controller, the PLC controller output signal to the laser cutting knife 403, electric telescopic rod four 404, sealing machine 504, electric telescopic rod five 505.
[0117] Electric telescopic rod four 404, laser cutting knife 403 start, complete the cutting of the edge material. Sealing machine 504, electric telescopic rod five 505 delay start, complete the seal on the shaft rod 205 on the edge material roll (that is, using the film reel on the film wrapped "the entire edge material roll on the shaft rod 205"). After that, the screw stepper motor two 401 will be transferred to the shaft rod 205 in "C" frame 104.
[0118] Example 2, on the basis of example 1, add dustproof curtain on the side of the transfer plate 103.
Claims
1. A device for collecting fabric scraps, characterized in that: The application relates to a film covering machine, which comprises a main frame, a reel rod supply part, a winding part, a transfer separation part, a film storage part and a control part; the main frame comprises a base (101), a feeding seat (102), a transfer carrier plate (103) and a C-shaped frame (104); the reel rod supply part comprises a chain conveyor belt I (201), a separation plate I, a screw stepper motor I (202), an electric telescopic rod I (203), a clamping jaw motor I (204) and a shaft rod (205); the soft magnetic strip supply part comprises a chain conveyor belt II (206), a separation plate II, an electric telescopic rod II (207) and a clamping jaw motor II (208); the winding mechanism comprises a limiting adjustment structure and a winding structure; the winding structure comprises an electric telescopic rod III (302), a movable carrier plate II and an electric chuck (303); the movable carrier plate II is slidably connected to the base (101) through a slide rod II; the electric telescopic rod III (302) is arranged on the base (101); the movable carrier plate II is connected with the movable end of the electric telescopic rod III (302); the electric chuck (303) is arranged on the movable carrier plate II; the limiting adjustment structure comprises a screw stepper motor III (304) and a limiting frame (305); the screw stepper motor III (304) is arranged on the base (101) through an n-shaped mounting bracket; the limiting frame (305) is slidably connected to the n-shaped mounting bracket through a slide rod II and connected with the nut seat of the screw stepper motor III (304); the transfer separation part comprises a cutting mechanism and a transfer mechanism; the film storage part comprises a film feeding structure I (501), a film feeding structure II (502), a limiting roller (503), a sealing machine (504) and an electric telescopic rod V (505).
2. A device for collecting selvedge according to claim 1, characterized in that: The chain conveyor belt I (201) is arranged on the feeding seat (102); the separation plate I is arranged on the chain plate of the chain conveyor belt I (201); the screw stepper motor I (202) and a slide rod I are arranged on the transfer carrier plate (103); a movable carrier plate I is slidably connected to the slide rod I; a mounting carrier plate I is arranged on the lower bottom surface of the movable carrier plate I through a connecting short column; the electric telescopic rod I (203) is arranged on the lower bottom surface of the mounting carrier plate I; the clamping jaw motor I (204) is arranged on the movable end of the electric telescopic rod I (203); a strip-shaped groove is arranged on the shaft rod (205).
3. The device for collecting the selvedge of a cloth according to claim 1, characterized in that: The left end of the chain conveyor belt II (206) is arranged on the left side plate of the base (101) through a mounting plate; the separation plate II is arranged on the chain plate of the chain conveyor belt II (206); the electric telescopic rod II (207) is arranged in the base (101); the clamping jaw motor II (208) is arranged on the movable end of the electric telescopic rod II (207); the clamping jaw motor II (208) is slidably connected in the rectangular through hole III.
4. The device for collecting fabric selvage according to claim 1, wherein: The base (101) comprises a cuboid hollow container one, a strip-shaped through hole one, a rectangular through hole one, a rectangular through hole two, a rectangular through hole three, a rectangular through hole four arranged on the upper bottom plate, and a rectangular through hole five arranged on the left side plate; the upper feeding seat (102) is arranged on the base (101) through a support column one and comprises a cuboid hollow container two; the "C" shaped frame (104) is arranged on the base (101) and the left end is higher than the right end; the transfer carrier plate (103) is arranged on the base (101) through a support column two and is located above the upper feeding seat (102), and a strip-shaped through hole two is arranged on the transfer carrier plate (103).
5. The device for collecting fabric selvedges according to claim 1, characterized in that: The transfer mechanism comprises a lead screw stepping motor two (401), a movable carrier plate three, a push rod motor two and a jaw motor three (402); the lead screw stepping motor two (401) and a sliding rod three are arranged in the base (101); the movable carrier plate three is slidingly connected to the sliding rod three and connected to the nut seat of the lead screw stepping motor two (401); the push rod motor two is arranged on the movable carrier plate three; the jaw motor three (402) is arranged on the movable end of the push rod motor two.
6. The device for collecting fabric selvedges according to claim 1, characterized in that: The cutting mechanism comprises a laser cutting knife (403) and an electric telescopic rod four (404); the electric telescopic rod four (404) is arranged in the base (101); the laser cutting knife (403) is arranged on the movable end of the electric telescopic rod four (404) and slidingly connected in the rectangular through hole four.
7. The device for collecting fabric selvage according to claim 1, wherein: The upper film structure one (501) comprises an "n" shaped frame one, a connecting rod one and an electromagnet one; the "n" shaped frame one is arranged on the lower bottom surface of the transfer carrier plate (103) through a mounting rod; the connecting rod one is connected to the "n" shaped frame one through a pin shaft; the electromagnet one is arranged on the "n" shaped frame one and matched with the connecting rod one.
8. The device for collecting fabric selvage according to claim 1, wherein: The upper film structure two (502) comprises an "n" shaped frame two, a connecting rod two and an electromagnet two; the "n" shaped frame two is arranged in the base (101) through a mounting rod; the connecting rod two is connected to the "n" shaped frame two through a pin shaft; the electromagnet two is arranged on the "n" shaped frame two and matched with the connecting rod two.
9. The device for collecting fabric selvage according to claim 1, wherein: The limiting roller shaft (503) is arranged on the lower bottom surface of the transfer carrier plate (103) and the upper bottom plate of the base (101) through a mounting frame; the sealing machine (504) is arranged on the lower bottom surface of the transfer carrier plate (103) through an electric telescopic rod five (505).
10. The device for collecting fabric selvedges according to claim 1, characterized in that: A dustproof curtain is additionally arranged on the side surface of the transfer carrier plate (103).
Citation Information
Patent Citations
Automatic cloth trimming equipment for garment production
CN114990871A