A wooden hanger processing production line

By designing a wooden hanger processing production line that integrates cutting angles, tenons, sawing, glue coating and profiling, the existing production line has been solved, and efficient automated production and improvement of yield rates have been achieved.

CN116038851BActive Publication Date: 2025-05-23GUILIN YUXIANG CLOTHES RACK CO LTD
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Patent Information

Application Number
CN202211664247.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-23
Publication Date
2025-05-23
Estimated Expiration
2042-12-23

AI Technical Summary

Technical Problem

The existing wooden hanger production line has low efficiency, high labor costs, and large material storage space.

Method used

A wooden clothes rack processing production line is designed, including a double-end angle cutting machine, a double-end tenon opening machine, a sawing bending machine, an automatic glue-coating and automatic contour slitting machine. Through the combination of these equipment, the main body of the clothes rack can be cut, tenon opening, sawing, glue-coating and contour processing are realized.

Benefits of technology

It effectively reduces the manpower handling of materials in all processing links, saves labor costs and material storage space, and improves the degree of production automation and yield rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a wooden hanger processing production line, comprising a double-end angle cutting machine, the double-end angle cutting machine is used to cut the two ends of the hanger body and convey the hanger body to the next process; a double-end tenoning machine, the double-end tenoning machine is used to receive the hanger body conveyed by the double-end angle cutting machine, and tenon the two ends of the hanger body before conveying it to the next process; a sawing and bending machine, the sawing and bending machine is used to receive the hanger body conveyed by the double-end tenoning machine, and convey the hanger body to the next process after sawing and bending it into shape; an automatic gluing and tenoning machine, the automatic gluing and tenoning machine is used to receive the hanger body conveyed by the sawing and bending machine, and convey it to the next process after gluing and tenoning; an automatic profiling slitting machine, the automatic profiling slitting machine is used to receive the hanger body conveyed by the automatic gluing and tenoning machine, and output it after profiling processing. The present invention effectively improves the processing efficiency of wooden hangers, saves labor costs and material storage space.
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Description

Technical Field

[0001] The invention relates to the field of household article manufacturing and production, in particular to a wooden hanger processing production line. Background Art

[0002] A wooden clothes hanger is a rack used to hang clothes. Since its shape can be changed at will, it is often used to hang suits.

[0003] Wooden hangers are of excellent quality and in great demand. In existing wooden hanger manufacturers, the production of hangers is mainly done manually, including chamfering, mortising, bending, gluing, etc. Each link requires a lot of manpower and material resources, a large workload, and low efficiency.

[0004] Therefore, those skilled in the art are committed to developing a wooden hanger processing production line to improve the processing efficiency of wooden hangers and save labor costs and material storage space. Summary of the invention

[0005] The technical problem to be solved by the present invention is to provide a wooden hanger processing production line, which improves the processing efficiency of wooden hangers and saves labor costs and material storage space.

[0006] The technical solution of the present invention to solve the above technical problems is as follows: a wooden hanger processing production line, comprising

[0007] A double-end corner cutting machine, which is used to cut the two ends of the hanger body and convey the hanger body to the next process;

[0008] A double-end tenoning machine, which is used to receive the hanger body delivered by the double-end angle cutting machine, tenon the two ends of the hanger body, and then deliver it to the next process;

[0009] A sawing and bending machine, which is used to receive the clothes hanger body delivered by the double-end tenoning machine, saw and bend the clothes hanger body into shape, and then deliver it to the next process;

[0010] An automatic gluing and tenoning machine, which is used to receive the hanger body delivered by the saw bending machine, apply glue, tenon and then deliver it to the next process;

[0011] An automatic profiling slitting machine is used to receive the hanger body delivered by the automatic gluing and tenoning machine, and output it after profiling.

[0012] The beneficial effects of the present invention are as follows: the wooden hanger blanks are successively cut by a double-end angle cutting machine, tenoned by a double-end tenoning machine, sawn and bent by a sawing and bending machine, glued and tenoned by an automatic gluing and tenoning machine, and cut by an automatic profiling and slitting machine before being output, which can effectively reduce the manpower handling of materials in various processing links, save manpower costs and material storage space, improve the degree of production automation, and improve the yield rate.

[0013] Based on the above technical solution, the present invention can also be improved as follows.

[0014] Further, the double-end angle cutter includes an angle cutter base, two angle cutter bases are installed with angle cutter crossbeams, the angle cutter crossbeams have dovetail slots, the angle cutter crossbeams are connected with an angle cutter conveying seat and an angle cutting assembly, the two angle cutting assemblies are located on both sides of the angle cutter conveying seat, a pneumatic pushing device is installed at the end of the angle cutter conveying seat, a conveying slide rail is installed on the angle cutter conveying seat, and a pressing mechanism is installed on the conveying slide rail;

[0015] The two corner cutting assemblies each comprise a corner cutting support, the side surface of the corner cutting support is provided with a dovetail slot and is engaged and connected with a corner cutting motor, and a corner cutting saw blade is installed at the output end of the corner cutting motor.

[0016] The beneficial effect of adopting the above further solution is that after the pressing mechanism presses the wooden hanger, it is convenient for it to move on the conveying slide rail, and then it is convenient for the angle cutting motor to cut the two ends of the wooden hanger flat, which is convenient for the next processing step.

[0017] Further, the double-end tenoning machine includes a tenoning machine base, a chain feeding device is installed on the tenoning machine base, a plurality of evenly distributed engaging stations are arranged on the chain feeding device, a tenoning gantry is also installed on the tenoning machine base, a belt-type synchronous pressing device is installed between the plurality of tenoning gantry frames, and the belt-type synchronous pressing device is located directly above the chain feeding device;

[0018] A flush motor is installed on the side wall of the tenoning gantry, two of which are located on both sides of the chain feeding device, and a flush saw blade is installed on the output end of the flush motor. A tenoning motor is also installed on the other side wall of the tenoning gantry, two of which are located on both sides of the chain feeding device, and a tenoning mechanism is installed on the output end of the tenoning motor;

[0019] A first automatic feeding bin is installed at the front end of the upper side of the chain feeding device, a horizontal pushing cylinder, a lifting cylinder and a sensor are installed at the lower side of the first automatic feeding bin for synchronous feeding, and an inclined conveyor belt and a horizontal conveyor belt are arranged at the input end of the first automatic feeding bin.

[0020] The beneficial effect of adopting the above further solution is that the first automatic feeding bin feeds materials to the chain feeding device synchronously, so that each wooden hanger body is engaged in the engaging position, which is conducive to aligning and mortising the two ends of the wooden hanger.

[0021] Further, the saw bending machine includes a saw bending machine base, two parallel horizontal slide rails are installed on the upper side of the saw bending machine base, the horizontal slide rails are connected to the saw bending longitudinal support plate through a slider, a horizontal rack is installed on the side wall of the saw bending machine base, a horizontal motor is installed at the bottom of the saw bending longitudinal support plate, a gear matching the horizontal rack is installed at the output end of the horizontal motor, and the rotation of the horizontal motor drives the multiple saw bending longitudinal support plates to move horizontally and longitudinally;

[0022] A plurality of the saw-bent longitudinal support plates are installed with transverse guide rails, and the transverse guide rails are connected to the transverse support plates through transverse sliders, and a plurality of the transverse support plates are connected with fixture beams, and a plurality of evenly distributed wooden hanger fixtures are installed on the fixture beams. A transverse motor and a transverse rack are also installed on the transverse support plates, and a transverse gear matched with the transverse rack is installed at the output end of the transverse motor, and the rotation of the transverse motor drives the fixture beam to move back and forth horizontally and laterally.

[0023] The side wall of the saw bending machine seat is also provided with a sawing machine and an automatic feeding bin. The wooden hanger clamp clamps the wooden hanger conveyed by the automatic feeding bin and moves along the horizontal slide rail and the transverse guide rail, and the sawing machine saws the wooden hanger;

[0024] The automatic feeding bin comprises a feeding bin base, a plurality of bins are mounted on the feeding bin base, a guide rod is mounted on the lower side of the bin, and a horizontal push cylinder and a horizontal push plate are also mounted on the side wall of the bin.

[0025] The beneficial effect of adopting the above further scheme is that the horizontal motor rotates to drive the wooden hanger clamp to clamp the wooden hanger conveyed by the automatic feeding bin, and during the movement along the horizontal guide rail according to the horizontal wavy curve trajectory, the sawing machine saws the material into shape.

[0026] Further, the automatic gluing and tenoning machine comprises a tenoning chassis, a plurality of silo pillars are installed on the tenoning chassis, a second automatic feeding silo is installed on two adjacent silo pillars, a feeding mechanism is installed between the second automatic feeding silo and the silo pillars, and the feeding mechanism extends backwards, an automatic gluing device for applying glue to the wooden hanger is installed on the side of the silo pillar, a tool assembly for opening the ridge and tail is installed on the tenoning chassis and at the end of the feeding mechanism, an automatic clamping assembly is also installed on the upper side of the tool assembly, and the clamping end of the automatic clamping assembly is located directly above the feeding mechanism;

[0027] A mortise and tenon gantry is also installed on the mortise and tenon chassis, an automatic mortise and tenon lifting device is installed in the middle of the mortise and tenon gantry, an automatic mortise and tenon device is installed on the lower side of the automatic mortise and tenon lifting device, and an automatic output device is installed at the output end of the automatic mortise and tenon device.

[0028] The beneficial effect of adopting the above further scheme is that the automatic gluing and tenoning machine can glue and tenon the wooden hanger body.

[0029] Further, the automatic profiling slitting machine comprises a profiling chassis, a turntable is installed on the profiling chassis, a plurality of evenly distributed front clamp assemblies and side clamp assemblies are installed on the turntable, a profiling backing mold group is arranged directly below each of the front clamp assemblies, and the turntable drives the front clamp assemblies, the side clamp assemblies and the profiling backing mold group to rotate;

[0030] A forward coarse imitation device, a reverse coarse imitation device, a forward fine imitation device, a reverse fine imitation device, a forward yarn belt device, a reverse yarn belt device, an automatic polishing device and an automatic slitting device are sequentially installed on the chassis along the rotation direction of the turntable.

[0031] The beneficial effect of adopting the above further solution is that the automatic profiling and slitting machine profiles and slits the wooden hangers and then outputs them to form wooden hangers.

[0032] Furthermore, a first conveying mechanism is arranged between the double-end angle cutting machine and the double-end tenoning machine, a second conveying mechanism is arranged between the double-end tenoning machine and the sawing and bending machine, and a third conveying mechanism is arranged between the automatic gluing and tenoning machine and the automatic profiling and slitting machine.

[0033] The beneficial effect of adopting the above further solution is that each conveying device can effectively reduce the manpower handling of materials in each processing link, saving manpower costs and material storage space.

[0034] Further, the first conveying mechanism includes a first conveying frame, a first conveying belt support frame is installed on the first conveying frame, an active roller and a passive roller are installed at both ends of the first conveying belt support frame, the active roller and the passive roller are covered with a first conveying belt, a first power assembly is installed on the side wall of the first conveying frame, and an output end of the first power assembly is connected to the active roller;

[0035] A first guard plate is connected to the first conveyor belt support frame and is located on the upper side of the first conveyor belt.

[0036] The beneficial effect of adopting the above further solution is that the first conveying mechanism is used to convey the wooden hangers cut at both ends to the double-end tenoning machine.

[0037] Further, the second conveying mechanism includes a first conveying assembly, a second conveying assembly and a third conveying assembly which are arranged in sequence, the first conveying assembly includes a second conveying frame, two first conveying skeletons which are arranged in parallel are installed on the second conveying frame, synchronous driven wheels are installed at both ends of the first conveying skeleton, and the second conveying belt is covered with a second conveying belt, a second power assembly is installed on the side wall of the second conveying frame, a synchronous driving wheel is installed at the output end of the second power assembly, a synchronous shaft is arranged between the two synchronous driving wheels, and the synchronous driving wheel is meshed with the second conveying belt for transmission;

[0038] The second conveying assembly includes a third conveying frame, a third conveying belt and a third power assembly are installed on the third conveying frame, a third guard plate is installed on the side wall of the third conveying frame, a material diverting device is arranged at the end of the third conveying frame, and at least one movable stacking device is also arranged at the end of the material diverting device;

[0039] The third conveying assembly comprises a fourth conveying frame, on which a fourth conveying belt and a fourth power device are mounted, and on which a fourth guard plate is also mounted.

[0040] The beneficial effect of adopting the above further solution is that the second conveying mechanism is used to convey the wooden hangers with double-end tenoning to the gluing and tenoning machine for further processing.

[0041] Further, the third conveying mechanism includes a fifth conveying frame, two sets of conveying guide wheels are arranged at both ends of the fifth conveying frame, conveying ribs are wrapped around the outer sides of the conveying guide wheels, a fifth power assembly is installed on the side wall of the fifth conveying frame, and the output end of the fifth power assembly is connected to the conveying guide wheels;

[0042] An inclined guide plate is also installed on the fifth conveying frame and between the two conveying ribs.

[0043] The beneficial effect of adopting the above further scheme is that the third conveying assembly is used to convey the wooden hangers from the glue coating and tenoning machine to the automatic profiling slitting machine for further processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] Figure 1 It is a structural schematic diagram of a specific embodiment of the present invention;

[0045] Figure 2 This is a schematic structural diagram of a double-end angle cutting machine according to a specific embodiment of the present invention;

[0046] Figure 3 This is a schematic diagram of the structure of a double-end tenoning machine according to a specific embodiment of the present invention;

[0047] Figure 4 This is a schematic structural diagram of a saw bending machine according to a specific embodiment of the present invention;

[0048] Figure 5 This is a structural schematic diagram of an automatic gluing and tenoning machine according to a specific embodiment of the present invention;

[0049] Figure 6 It is a structural schematic diagram of an automatic profiling slitting machine according to a specific embodiment of the present invention;

[0050] Figure 7 This is a schematic structural diagram of a first conveying mechanism according to a specific embodiment of the present invention;

[0051] Figure 8 It is a schematic structural diagram of a second conveying mechanism according to a specific embodiment of the present invention;

[0052] Fig. 9 It is a schematic structural diagram of a third conveying mechanism according to a specific embodiment of the present invention.

[0053] In the accompanying drawings, the components represented by the reference numerals are listed as follows:

[0054] 100, double-end angle cutting machine; 200, first conveying mechanism; 300, double-end tenoning machine; 400, second conveying mechanism; 500, sawing and bending machine; 600, automatic gluing and tenoning machine; 700, third conveying mechanism; 800, automatic profiling slitting machine;

[0055] 101. Angle cutter base; 102. Angle cutter crossbeam; 103. Dovetail slot; 104. Angle cutter conveyor seat; 105. Angle cutter assembly; 106. Pneumatic pusher; 107. Conveying slide rail; 108. Pressing mechanism; 109. Angle cutter support; 110. Angle cutter motor; 111. Angle cutter saw blade;

[0056] 201, first conveyor frame; 202, first conveyor belt support frame; 203, active roller; 204, passive roller; 205, first conveyor belt; 206, first power assembly; 207, first guard plate;

[0057] 301, tenoning machine base; 302, chain feeding device; 303, clamping station; 304, tenoning gantry; 305, belt-type synchronous pressing device; 306, flush motor; 307, tenoning motor; 308, tenoning mechanism; 309, first automatic feeding bin; 310, slope conveyor belt; 311, horizontal conveyor belt;

[0058] 410, first conveying assembly; 411, second conveying frame; 412, first conveying frame; 413, synchronous driven wheel; 414, second conveying belt; 415, second power assembly; 416, synchronous shaft;

[0059] 420, second conveying assembly; 421, third conveying frame; 422, third conveying belt; 423, third power assembly; 424, material diversion device; 425, movable stacking device; 426, third guard plate;

[0060] 430, third conveying assembly; 431, fourth conveying frame; 432, fourth conveyor belt; 433, fourth power device; 434, fourth guard plate;

[0061] 501, saw bending machine base; 502, horizontal slide rail; 503, saw bending longitudinal support plate; 504, horizontal rack; 505, horizontal motor; 506, horizontal guide rail; 507, horizontal support plate; 508, fixture beam; 509, wooden hanger fixture; 510, horizontal motor; 511, horizontal rack; 512, sawing machine; 513, silo base; 514, automatic feeding silo; 515, silo;

[0062] 601, tenon chassis; 602, silo pillar; 603, second automatic feeding silo; 604, feeding mechanism; 605, automatic gluing device; 606, tool assembly; 607, automatic clamping assembly; 608, tenon gantry; 609, automatic tenon lifting device; 610, automatic tenon device;

[0063] 701, fifth conveying frame; 702, conveying guide wheel; 703, conveying rib; 704, fifth power assembly; 705, guide plate;

[0064] 801, profiling chassis; 802, turntable; 803, front clamp assembly; 804, side clamp assembly; 805, profiling template group; 806, forward coarse imitation device; 807, reverse coarse imitation device; 808, forward fine imitation device; 809, reverse fine imitation device; 810, forward yarn belt device; 811, reverse yarn belt device; 812, automatic polishing device; 813, automatic slitting device. DETAILED DESCRIPTION

[0065] The principles and features of the present invention are described below in conjunction with the accompanying drawings. The examples given are only used to explain the present invention and are not used to limit the scope of the present invention.

[0066] In the description of the present invention, it is necessary to understand that the terms "center", "length", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "inside", "outside", "peripheral", "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 invention and simplifying the description, and do not indicate or imply that the referred system or element 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 invention.

[0067] In the description of the present invention, “plurality” means at least two, for example, two, three, etc., unless otherwise clearly and specifically defined.

[0068] In the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0069] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Fig. 9 As shown, a wooden hanger processing production line includes a double-end corner cutting machine 100, which is used to cut the two ends of the hanger body and convey the hanger body to the next process;

[0070] The double-end tenoning machine 300 is used to receive the hanger body delivered by the double-end angle cutting machine 100, tenon the two ends of the hanger body, and then deliver it to the next process;

[0071] The saw bending machine 500 is used to receive the clothes hanger body delivered by the double-end tenoning machine 300, saw and bend the clothes hanger body into shape, and then deliver it to the next process;

[0072] The automatic gluing and tenoning machine 600 is used to receive the hanger body delivered by the saw bending machine 500, apply glue, tenon and then deliver it to the next process;

[0073] The automatic profiling slitting machine 800 is used to receive the hanger body delivered by the automatic gluing and tenoning machine 600, and output it after profiling.

[0074] The main body blank of the wooden clothes hanger in the present invention is successively cut at both ends by a double-end angle cutting machine 100, tenoned at both ends by a double-end tenoning machine 300, sawed and bent into shape by a sawing and bending machine 500, glued and tenoned by an automatic gluing and tenoning machine 600, and cut by an automatic profiling and slitting machine 800 before being output, which can effectively reduce the manpower handling of materials in various processing links, save manpower costs and material storage space, improve the degree of production automation, improve production efficiency, and improve product yield.

[0075] like Figure 1, Figure 2 As shown, in some embodiments, the double-end angle cutter 100 includes an angle cutter base 101, two angle cutter bases 101 are mounted with angle cutter beams 102, the angle cutter beams 102 are provided with dovetail slots 103, the angle cutter beams 102 are connected with angle cutter conveying seats 104 and angle cutting components 105, the angle cutting components 105 are provided with dovetail grooves adapted to the dovetail slots 103, the angle cutter conveying seats 104 are straddled on the angle cutter beams 102 and are arranged vertically with the angle cutter beams 102. The two angle cutting components 105 are located on both sides of the angle cutter conveying seats 104, and are respectively used to cut the two ends of the wooden hanger body. The ends of the angle cutter conveying seats 104 are mounted with pneumatic pushing devices 106, which include a pushing cylinder and a pushing plate. During the pushing process of the pushing cylinder, the angle cutting components 105 cut the two ends of the wooden hanger body. A conveying slide rail 107 is installed on the corner cutter conveying seat 104. The two conveying slide rails 107 are arranged in parallel. A pressing mechanism 108 is installed on the conveying slide rail 107. The pressing mechanism 108 includes a pressing rod and a compression spring. The pressing rod is arranged parallel to the conveying slide rail 107 to prevent the wooden hanger body from moving during the cutting process, resulting in inaccurate cutting.

[0076] Specifically, the two corner cutting components 105 each include a corner cutting support 109, a dovetail groove matching the dovetail slot 103 is provided at the bottom of the corner cutting support 109, a dovetail slot is provided on the side of the corner cutting support 109 and is engaged with a corner cutting motor 110, and the corner cutting motor 110 is installed on the side wall of the corner cutting support 109 through the dovetail slot, which is convenient for adjusting the height of the corner cutting motor 110 to cut different wooden hanger bodies, and a corner cutting saw blade 111 is installed at the output end of the corner cutting motor 110.

[0077] like Figure 1 , Figure 7As shown, in some embodiments, a first conveying mechanism 200 is provided between the double-end corner cutting machine 100 and the double-end tenoning machine 300. Specifically, the first conveying mechanism 200 includes a first conveying machine frame 201, which is welded by multiple square tubes, and a height adjusting device is installed at the bottom of the first conveying machine frame 201. A first conveyor belt support frame 202 is installed on the first conveying machine frame 201. An active roller 203 and a passive roller 204 are respectively installed at both ends of the first conveyor belt support frame 202. The active roller 203 and the passive roller 204 are covered with a first conveyor belt 205. A first power assembly 206 is installed on the side wall of the first conveying machine frame 201. The first power assembly 206 can adopt a motor and a speed reducer. The output end of the first power assembly 206 is connected to the active roller 203. The rotation of the first power assembly 206 drives the active roller 203 to rotate, and then the first conveyor belt 205 moves to convey the wooden hanger body. A first guard plate 207 is connected above the first conveyor belt 205 on the first conveyor belt support frame 202. The first guard plate 207 is used for limiting and guiding, preventing the wooden hanger body from falling, and can also be used for blocking and current limiting.

[0078] As Figure 1 , Figure 3 shown, in another embodiment, the double-end tenoning machine 300 includes a tenoning machine base 301. The cross-section of the tenoning machine base 301 is rectangular. A chain feeding device 302 is installed on the tenoning machine base 301. A plurality of evenly distributed clamping stations 303 are provided on the chain feeding device 302. The clamping stations 303 are used to clamp and stabilize the wooden hanger body one by one, which is beneficial to subsequent processing. A tenoning gantry 304 is also installed on the tenoning machine base 301. A belt-type synchronous pressing device 305 is installed between a plurality of tenoning gantries 304. The belt-type synchronous pressing device 305 is located directly above the chain feeding device 302. The belt-type synchronous pressing device 305 further presses and fastens the wooden hanger body, which is beneficial to subsequent tenoning and flush cutting.

[0079] A flush cutting motor 306 is installed on the side wall of the tenoning gantry 304. The two flush cutting motors 306 are located on both sides of the chain feeding device 302. A flush cutting saw blade is installed at the output end of the flush cutting motor 306. The flush cutting saw blade further cuts the two ends of the wooden hanger body flush, which is beneficial to subsequent tenoning. A tenoning motor 307 is also installed on the side wall of another tenoning gantry 304. The two tenoning motors 307 are located on both sides of the chain feeding device 302. A tenoning mechanism 308 is installed at the output end of the tenoning motor 307. During the transmission of the wooden hanger body, the tenoning mechanisms 308 at both ends are used to open tenon grooves at both ends of the wooden hanger body.

[0080] In the embodiment, a first automatic feeding bin 309 is installed at the front end of the upper side of the chain feeding device 302. The first automatic feeding bin 309 has a bin body. A horizontal push cylinder, a lifting cylinder and a sensor are installed at the lower side of the first automatic feeding bin 309 for synchronous feeding, so that the wooden hanger body is accurately engaged with the engaging station 303. The input end of the first automatic feeding bin 309 is provided with a slope conveyor belt 310 and a horizontal conveyor belt 311. The slope conveyor belt 310 and the horizontal conveyor belt 311 are used to guide the wooden hanger body, and use the gravity and the principle of imbalance of the center of gravity to automatically rotate the material by 90° during the transfer to the next device. The material changes from a "side-standing" state to a "lying" state, so as to automatically fall into the first automatic feeding bin 309.

[0081] like Figure 1 , Figure 8 As shown, in some embodiments, a second conveying mechanism 400 is provided between the double-end tenoning machine 300 and the saw bending machine 500. The second conveying mechanism 400 includes a first conveying assembly 410, a second conveying assembly 420 and a third conveying assembly 430 which are provided in sequence.

[0082] Specifically, the first conveyor assembly 410 includes a second conveyor frame 411, which is welded by a plurality of square tubes, and a height adjustment device is installed at the bottom of the second conveyor frame 411. Two parallel first conveyor skeletons 412 are installed on the second conveyor frame 411, and synchronous driven wheels 413 are installed at both ends of the first conveyor skeleton 412. The synchronous driven wheels 413 are covered with a second conveyor belt 414. A second power assembly 415 is installed on the side wall of the second conveyor frame 411. The second power assembly 415 can adopt a reduction motor. A synchronous driving wheel is installed at the output end of the second power assembly 415. A synchronous shaft 416 is arranged between the two synchronous driving wheels. The synchronous driving wheel is meshed with the second conveyor belt 414 for transmission. The rotation of the second power assembly 415 drives the synchronous driving wheel to rotate, thereby driving the two second conveyor belts 414 to move synchronously, and the wooden hanger body is transported to the second conveyor assembly 420.

[0083] In some embodiments, the second conveying component 420 includes a third conveying frame 421, on which a third conveying belt 422 and a third power component 423 are installed, and a third guard plate 426 is installed on the side wall of the third conveying frame 421. A material diverting device 424 is provided at the end of the third conveying frame 421. The material diverting device 424 diverts the wooden hanger body to prevent excessive accumulation. At least one movable stacking device 425 is also provided at the end of the material diverting device 424. Multiple movable stacking devices 425 stack the wooden hanger bodies vertically in turn to prevent excessive incoming material volume from causing blockage.

[0084] In another embodiment, the third conveying assembly 430 includes a fourth conveying frame 431, on which a fourth conveying belt 432 and a fourth power device 433 are installed, and a fourth guard plate 434 is also installed on the fourth conveying frame 431. The fourth conveying frame 431 is also provided with a material baffle plate, which can accumulate a moving number of wooden hanger bodies to buffer the production capacity difference between the front and rear processing equipment.

[0085] like Figure 1 , Figure 4 As shown, in another embodiment, the sawing and bending machine 500 includes a sawing and bending machine base 501, two parallel horizontal slide rails 502 are installed on the upper side of the sawing and bending machine base 501, the horizontal slide rails 502 are connected to the sawing and bending longitudinal support plate 503 through a slider, a horizontal rack 504 is installed on the side wall of the sawing and bending machine base 501, a horizontal motor 505 is installed at the bottom of the sawing and bending longitudinal support plate 503, and a gear matching the horizontal rack 504 is installed at the output end of the horizontal motor 505. The rotation of the horizontal motor 505 drives multiple sawing and bending longitudinal support plates 503 to move horizontally and longitudinally along the horizontal slide rail 502.

[0086] A plurality of saw-bend longitudinal pallets 503 are provided with transverse guide rails 506, which are arranged vertically with the horizontal slide rails. The transverse guide rails 506 are connected with transverse pallets 507 through transverse slide blocks. A clamp beam 508 is connected to the plurality of transverse pallets 507, and a plurality of evenly distributed wooden hanger clamps 509 are installed on the clamp beam 508. A transverse motor 510 and a longitudinal rack 511 are also installed on the transverse pallet 507. A transverse gear matched with the transverse rack 511 is installed at the output end of the transverse motor 510. The rotation of the transverse motor 510 drives the clamp beam 508 to move transversely.

[0087] The side wall of the saw bending machine base 501 is also provided with a sawing machine 512 and an automatic feeding bin 514. The wooden hanger clamp 509 clamps the wooden hanger transported by the automatic feeding bin 514 and moves along the horizontal slide rail 502. The sawing machine 512 saws the wooden hanger. The automatic feeding bin 514 includes a feeding bin base 513. A plurality of bins 515 are installed on the feeding bin base 513. A guide rod is installed on the lower side of the bin 515. The side wall of the bin 515 is also installed with a horizontal push cylinder and a horizontal push plate.

[0088] During the specific sawing and bending process, the horizontal motor 505 rotates to drive the clamp beam 508 and the wooden hanger clamp 509 to move horizontally to the side wall of the automatic feeding bin 514, and the transverse motor 510 rotates to make the wooden hanger clamp 509 move horizontally to clamp the wooden hanger body transported by the automatic feeding bin 514, and then the horizontal motor 505 and the transverse motor 510 rotate at the same time to drive the wooden hanger clamp 509 to move along a horizontal wavy curve trajectory. During the horizontal movement of the wooden hanger clamp 509, the sawing machine 512 saws the wooden hanger for processing.

[0089] like Figure 1 , Figure 5 As shown, in some embodiments, the automatic gluing and tenoning machine 600 is used to gluing, opening, trimming, and tenoning the main body of the wooden hanger, and output it in a “>” shape by lying flat and moving backward. Specifically, the automatic gluing and tenoning machine 600 includes a tenoning chassis 601, and a plurality of silo pillars 602 are installed on the tenoning chassis 601, and two adjacent silo pillars 602 form a group. A second automatic feeding bin 603 is installed on two adjacent silo pillars 602, and a feeding mechanism 604 is installed between the second automatic feeding bin 603 and the silo pillar 602, and the feeding mechanism 604 extends backward. An automatic gluing device 605 for applying glue to the wooden hanger is installed on the side of the silo pillar 602, and the automatic gluing device 605 is installed in the middle position of the upper front of the tenoning chassis 601 by screw connection, and is located between the left and right second automatic feeding bin 603 pillars. A tool assembly 606 for opening the door and tail is installed on the mortise and tenon chassis 601 and at the end of the feeding mechanism 604. An automatic clamping assembly 607 is also installed on the upper side of the tool assembly 606, and the clamping end of the automatic clamping assembly 607 is located directly above the feeding mechanism 604.

[0090] A mortise and tenon gantry 608 is also installed on the mortise and tenon chassis 601, an automatic mortise and tenon lifting device 609 is installed in the middle of the mortise and tenon gantry 608, an automatic mortise and tenon device 610 is installed on the lower side of the automatic mortise and tenon lifting device 609, and an automatic output device is installed at the output end of the automatic mortise and tenon device 610.

[0091] like Figure 1 , Fig. 9 As shown, in some embodiments, a third conveying mechanism 700 is provided between the automatic gluing and tenoning machine 600 and the automatic profiling and slitting machine 800. Specifically, the third conveying mechanism 700 includes a fifth conveying frame 701, a foot plate is installed at the bottom of the fifth conveying frame 701, two sets of conveying guide wheels 702 are provided at both ends of the fifth conveying frame 701, and conveying ribs 703 are wrapped around the outer surface of the conveying guide wheels 702. A fifth power assembly 704 is installed on the side wall of the fifth conveying frame 701, and the output end of the fifth power assembly 704 is connected to the conveying guide wheel 702. The fifth power assembly 704 rotates the to-be-determined conveying rib 703 to move, and then the wooden hanger body is conveyed to the next processing step. An inclined guide plate 705 is also installed on the fifth conveying frame 701 and located between the two conveying ribs 703. The guide plate 705 is used to guide the wooden hanger body and allow the wooden hanger body to slowly flip 90°, thereby facilitating the transmission of the third conveying mechanism 700.

[0092] like Figure 1 , Figure 6As shown, in a specific embodiment, the automatic profiling slitting machine 800 includes a profiling chassis 801, which is made of steel plates and channel steels that are welded and plane-processed and then spliced ​​together. The bottom of the profiling chassis 801 is supported by a plurality of foot plates, which are connected to the profiling chassis 801 through screws and nuts. The installation level of the profiling chassis 801 can be adjusted by adjusting the position of the nuts. A turntable 802 is installed on the profiling chassis 801, and the turntable 802 is installed above the profiling chassis 801 through screw connection, centered on the left and right and slightly forward. A plurality of evenly distributed front clamp assemblies 803 and side clamp assemblies 804 are installed on the turntable 802, and the side walls of the front clamp assemblies 803 and the side clamp assemblies 804 are provided with profiling support mold groups 805. The turntable 802 drives the front clamp assemblies 803, the side clamp assemblies 804 and the profiling support mold groups 805 to rotate;

[0093] A forward coarse imitation device 806, a reverse coarse imitation device 807, a forward fine imitation device 808, a reverse fine imitation device 809, a forward yarn belt device 810, a reverse yarn belt device 811, an automatic polishing device 812 and an automatic slitting device 813 are sequentially installed on the profiling chassis 801 along the rotation direction of the turntable 802.

[0094] A plurality of "︿"-shaped wooden hanger bodies are manually or mechanically taken and clamped in each group of front clamp components 803. After the front clamp components 803 are clamped, the wooden hanger bodies move in a circle with the turntable 802, and the rough imitation, fine imitation, sanding and polishing of the back of the material are automatically completed in sequence. Then the side clamp components 804 are clamped, and the front clamp components 803 are released. Finally, the wooden hanger bodies are cut by the automatic cutting device 813, and each "︿"-shaped wooden hanger body is divided into three, that is, three wooden hanger bodies are obtained.

[0095] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art may combine and combine the different embodiments or examples described in this specification and the features of the different embodiments or examples, without contradiction.

[0096] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims

1. A wooden hanger processing production line, Features: include A double-end corner cutting machine (100), the double-end corner cutting machine (100) is used to cut the two ends of the hanger body and convey the hanger body to the next process; A double-end tenoning machine (300), the double-end tenoning machine (300) is used to receive the clothes hanger body delivered by the double-end angle cutting machine (100), tenon the two ends of the clothes hanger body, and then deliver it to the next process; A sawing and bending machine (500), the sawing and bending machine (500) is used to receive the clothes hanger body delivered by the double-end tenoning machine (300), saw and bend the clothes hanger body into shape, and then deliver it to the next process; An automatic gluing and tenoning machine (600), the automatic gluing and tenoning machine (600) is used to receive the hanger body delivered by the saw bending machine (500), apply glue, tenon and then deliver it to the next process; An automatic profiling slitting machine (800), the automatic profiling slitting machine (800) is used to receive the hanger body delivered by the automatic gluing and tenoning machine (600), and output it after profiling; The double-end angle cutter (100) comprises an angle cutter base (101), two angle cutter bases (101) are mounted with angle cutter crossbeams (102), the angle cutter crossbeams (102) are provided with dovetail slots (103), the angle cutter crossbeams (102) are engaged and connected with an angle cutter conveying seat (104) and an angle cutting assembly (105), the two angle cutting assemblies (105) are located on both sides of the angle cutter conveying seat (104), a pneumatic material pushing device (106) is mounted at the end of the angle cutter conveying seat (104), a conveying slide rail (107) is mounted on the angle cutter conveying seat (104), and a material pressing mechanism (108) is mounted on the conveying slide rail (107); The two corner cutting assemblies (105) each comprise a corner cutting support (109), the side of the corner cutting support (109) having a dovetail slot and being engaged with a corner cutting motor (110), and the output end of the corner cutting motor (110) being installed with a corner cutting saw blade (111); The double-end tenoning machine (300) comprises a tenoning machine base (301), a chain feeding device (302) is installed on the tenoning machine base (301), a plurality of evenly distributed engaging stations (303) are arranged on the chain feeding device (302), a tenoning gantry (304) is also installed on the tenoning machine base (301), a belt-type synchronous pressing device (305) is installed between the plurality of tenoning gantry frames (304), and the belt-type synchronous pressing device (305) is located directly above the chain feeding device (302); A flush motor (306) is installed on the side wall of the tenoning gantry (304), two of the flush motors (306) are located on both sides of the chain feeding device (302), and a flush saw blade is installed on the output end of the flush motor (306); a tenoning motor (307) is also installed on the side wall of the other tenoning gantry (304), two of the tenoning motors (307) are located on both sides of the chain feeding device (302), and a tenoning mechanism (308) is installed on the output end of the tenoning motor (307); A first automatic feeding bin (309) is installed at the front end of the upper side of the chain feeding device (302); a horizontal push cylinder, a lifting cylinder and a sensor are installed at the lower side of the first automatic feeding bin (309) for synchronous feeding; and a slope conveyor belt (310) and a horizontal conveyor belt (311) are provided at the input end of the first automatic feeding bin (309).

2. The wooden hanger processing production line according to claim 1, Features: The saw bending machine (500) comprises a saw bending machine base (501), two parallel horizontal slide rails (502) are installed on the upper side of the saw bending machine base (501), the horizontal slide rails (502) are connected to a saw bending longitudinal support plate (503) through a slider, a horizontal rack (504) is installed on the side wall of the saw bending machine base (501), a horizontal motor (505) is installed at the bottom of the saw bending longitudinal support plate (503), a gear matched with the horizontal rack (504) is installed at the output end of the horizontal motor (505), and the horizontal motor (505) rotates to drive the plurality of saw bending longitudinal support plates (503) to move horizontally and longitudinally; A plurality of the saw-bent longitudinal support plates (503) are installed with transverse guide rails (506), and the transverse guide rails (506) are connected to transverse support plates (507) via transverse sliders, and a clamp beam (508) is connected to the plurality of transverse support plates (507), and a plurality of evenly distributed wooden hanger clamps (509) are installed on the clamp beam (508). A transverse motor (510) and a transverse rack (511) are also installed on the transverse support plate (507), and a transverse gear matched with the transverse rack (511) is installed at the output end of the transverse motor (510), and the transverse motor (510) rotates to drive the clamp beam (508) to move back and forth horizontally and laterally. The side wall of the saw bending machine base (501) is also provided with a sawing machine (512) and an automatic feeding bin (514); the wooden hanger clamp (509) clamps the wooden hanger conveyed by the automatic feeding bin (514) and moves along the horizontal slide rail (502) and the transverse guide rail (506); and the sawing machine saws the wooden hanger; The automatic feeding bin (514) comprises a feeding bin base (513), a plurality of bins (515) are mounted on the feeding bin base (513), a guide rod is mounted on the lower side of the bin (515), and a horizontal push cylinder and a horizontal push plate are also mounted on the side wall of the bin (515).

3. The wooden hanger processing production line according to claim 1, Features: The automatic gluing and tenoning machine (600) comprises a tenoning chassis (601), a plurality of silo pillars (602) are installed on the tenoning chassis (601), a second automatic feeding silo (603) is installed on two adjacent silo pillars (602), a feeding mechanism (604) is installed between the second automatic feeding silo (603) and the silo pillars (602), and the feeding mechanism (604) extends backwards, an automatic gluing device (605) for applying glue to the wooden hanger is installed on the side of the silo pillar (602), a tool assembly (606) for opening and aligning the ends is installed on the tenoning chassis (601) and located at the end of the feeding mechanism (604), an automatic clamping assembly (607) is also installed on the upper side of the tool assembly (606), and the clamping end of the automatic clamping assembly (607) is located directly above the feeding mechanism (604); A mortise and tenon gantry (608) is also installed on the mortise and tenon chassis (601), an automatic mortise and tenon lifting device (609) is installed in the middle of the mortise and tenon gantry (608), an automatic mortise and tenon device (610) is installed at the lower side of the automatic mortise and tenon lifting device (609), and an automatic output device is installed at the output end of the automatic mortise and tenon device (610).

4. The wooden hanger processing production line according to claim 1, Features: The automatic profiling slitting machine (800) comprises a profiling chassis (801), a rotating disk (802) is mounted on the profiling chassis (801), a plurality of evenly distributed front clamp assemblies (803) and side clamp assemblies (804) are mounted on the rotating disk (802), a profiling backing mold group (805) is arranged directly below each of the front clamp assemblies (803), and the rotating disk (802) drives the front clamp assemblies (803), the side clamp assemblies (804) and the profiling backing mold group (805) to rotate; The profiling chassis (801) is provided with a forward coarse imitation device (806), a reverse coarse imitation device (807), a forward fine imitation device (808), a reverse fine imitation device (809), a forward yarn belt device (810), a reverse yarn belt device (811), an automatic polishing device (812) and an automatic slitting device (813) in sequence along the rotation direction of the turntable (802).

5. The wooden hanger processing production line according to any one of claims 1 to 4, Features: A first conveying mechanism (200) is arranged between the double-end angle cutting machine (100) and the double-end tenoning machine (300), a second conveying mechanism (400) is arranged between the double-end tenoning machine (300) and the sawing and bending machine (500), and a third conveying mechanism (700) is arranged between the automatic gluing and tenoning machine (600) and the automatic profiling and slitting machine (800).

6. The wooden hanger processing production line according to claim 5, Features: The first conveying mechanism (200) comprises a first conveying frame (201), a first conveying belt support frame (202) is installed on the first conveying frame (201), an active roller (203) and a passive roller (204) are installed at both ends of the first conveying belt support frame (202), the active roller (203) and the passive roller (204) are covered with a first conveying belt (205), a first power assembly (206) is installed on the side wall of the first conveying frame (201), and the output end of the first power assembly (206) is connected to the active roller (203); A first guard plate (207) is connected to the first conveyor belt support frame (202) and is located on the upper side of the first conveyor belt (205).

7. The wooden hanger processing production line according to claim 5, Features: The second conveying mechanism (400) comprises a first conveying assembly (410), a second conveying assembly (420) and a third conveying assembly (430) which are arranged in sequence, the first conveying assembly (410) comprises a second conveying frame (411), two first conveying skeletons (412) arranged in parallel are installed on the second conveying frame (411), both ends of the first conveying skeleton (412) are installed with synchronous driven wheels (413), the outer surface of the synchronous driven wheels (413) is covered with a second conveying belt (414), a second power assembly (415) is installed on the side wall of the second conveying frame (411), a synchronous driving wheel is installed on the output end of the second power assembly (415), a synchronous shaft (416) is arranged between the two synchronous driving wheels, and the synchronous driving wheel is meshed with the second conveying belt (414) for transmission; The second conveying assembly (420) comprises a third conveying frame (421), a third conveying belt (422) and a third power assembly (423) are installed on the third conveying frame (421), a third guard plate (426) is installed on the side wall of the third conveying frame (421), a material diverting device (424) is arranged at the end of the third conveying frame (421), and at least one movable stacking device (425) is also arranged at the end of the material diverting device (424); The third conveying assembly (430) comprises a fourth conveying frame (431), on which a fourth conveying belt (432) and a fourth power device (433) are installed, and on which a fourth guard plate (434) is also installed.

8. The wooden hanger processing production line according to claim 5, Features: The third conveying mechanism (700) comprises a fifth conveying frame (701), two sets of conveying guide wheels (702) are arranged at both ends of the fifth conveying frame (701), conveying ribs (703) are wound around the outer sides of the conveying guide wheels (702), a fifth power assembly (704) is installed on the side wall of the fifth conveying frame (701), and the output end of the fifth power assembly (704) is connected to the conveying guide wheels (702); An inclined guide plate (705) is also installed on the fifth conveying frame (701) and between the two conveying ribs (703).

Citation Information

Patent Citations

  • Wooden clothes hanger processing production line

    CN219359731U