CN214613249U - Tailoring and cutting device - Google Patents

Tailoring and cutting device Download PDF

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Publication number
CN214613249U
CN214613249U CN202120471245.8U CN202120471245U CN214613249U CN 214613249 U CN214613249 U CN 214613249U CN 202120471245 U CN202120471245 U CN 202120471245U CN 214613249 U CN214613249 U CN 214613249U
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CN
China
Prior art keywords
plates
fixedly connected
workbench
tailoring
cylinder
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Expired - Fee Related
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CN202120471245.8U
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Chinese (zh)
Inventor
卢久阳
孔新红
郭保旺
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Xuchang Huaxiang Garment Co ltd
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Xuchang Huaxiang Garment Co ltd
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Priority to CN202120471245.8U priority Critical patent/CN214613249U/en
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Publication of CN214613249U publication Critical patent/CN214613249U/en
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Abstract

The utility model relates to a tailoring device, comprises a workbench, its top surface both sides are equipped with the curb plate, the rear end is equipped with the backplate, a curb plate lower part is equipped with the hair-dryer, another curb plate lower part is equipped with logical groove, the outside intercommunication of curb plate that leads to the groove and correspond has the dump bin, one side that the workstation top surface is close to logical groove is equipped with decides anchor clamps, the opposite side is equipped with movable fixture, decide, movable fixture all includes the bottom plate of bottom plate and decides anchor clamps and sets firmly on the workstation, movable fixture's bottom plate slides and establishes on the workstation, one side that all is equipped with first electro-magnet and two bottom plates mutually the mutually in two bottom plates has all linked firmly the shape extension board of falling L, the horizontal part of two extension boards sets up relatively, vertical part's inboard all slides from top to bottom and is equipped with has magnetic clamp plate, a plurality of extension spring of fixedly connected with between clamp plate top surface and the extension board horizontal part that corresponds. The utility model discloses can stabilize the centre gripping and straighten, can effectively collect the useless cloth of processing and can carry out straight line, curve and tailor and drill to the cloth, guarantee to tailor efficiency and quality.

Description

Tailoring and cutting device
Technical Field
The utility model belongs to the technical field of clothing production, concretely relates to tailoring device.
Background
The production process flow of the clothes mainly comprises the steps of factory inspection of the auxiliary materials of the noodles, technical preparation, plate making, cutting, printing and dyeing, sewing, buttonholing and button sewing, ironing, inspection and packaging of ready-made clothes and the like. The tailoring is a key procedure of a garment production process, the style and the size are realized by using certain tailoring equipment in the procedure, and once the garment is tailored, the style and the size are basically difficult to change. However, the existing conventional tailoring equipment for clothing still has the following problems in actual use: 1. the cloth cannot be firmly and firmly clamped and effectively straightened and stretched flatly, so that the cloth is easy to deviate, misplace, fold, wrinkle and the like during cutting, the cutting precision and the cutting quality are greatly reduced, and even the whole cloth is scrapped; 2. waste cloth materials such as tiny cotton wool and edges generated in the cutting process are scattered and accumulated on the workbench, so that the subsequent cutting operation is greatly influenced, and the manual cleaning is inconvenient to operate, time-consuming and labor-consuming; 3. the cloth cutting machine can only perform straight line cutting, cannot meet the processing requirements of curve cutting and punching of cloth, is not flexible and convenient to use, and needs to be improved.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a dress processing device of tailorring that can stabilize centre gripping and flare-outing, can effectively collect the useless cloth of processing and can realize fast and switch straight line, curve and tailor and drill to the cloth to solve above-mentioned problem.
In order to achieve the above object, the utility model adopts the following technical scheme: a tailoring device for garment processing comprises a workbench, wherein two sides of the top surface of the workbench are both vertically provided with side plates, the rear end of the workbench is vertically provided with a back plate, the lower part of one side plate is provided with a blower, the lower part of the other side plate is provided with a through groove, the outer part of the side plate corresponding to the through groove is communicated with a waste box, and a pair of crushing rollers with crushing teeth are horizontally and rotatably arranged at positions below the through groove in the waste box; a fixed clamp is arranged on one side, close to the through groove, of the top surface of the workbench, a movable clamp is arranged on the other side of the top surface of the workbench, the fixed clamp and the movable clamp both comprise bottom plates, the bottom plates of the fixed clamp are fixedly arranged on the workbench, the bottom plates of the movable clamp are slidably arranged on the workbench, first electromagnets are arranged in the two bottom plates, inverted L-shaped support plates are fixedly connected to the opposite sides of the two bottom plates, the horizontal parts of the two support plates are oppositely arranged, magnetic pressing plates are slidably arranged on the inner sides of the vertical parts of the two support plates up and down, a plurality of tension springs are fixedly connected between the top surfaces of the pressing plates and the horizontal parts of the corresponding support plates, sawtooth-shaped protrusions are arranged on the bottom surfaces of the pressing plates and the top surfaces of the bottom plates, the protrusions of the pressing plates can be meshed with the protrusions on the corresponding bottom plates, and first oil cylinders are horizontally connected between the outer sides of the vertical parts of the support plates of the movable clamp and the corresponding side plates; the utility model discloses a cutter, including backplate and both sides board, be equipped with the roof between the top of backplate and both sides board, be equipped with feed mechanism between roof and the both sides board, feed mechanism vertical connection has the second hydro-cylinder down, the piston rod of second hydro-cylinder is down and fixedly connected with motor, the lateral part horizontally connected with third hydro-cylinder of the output shaft of motor, the piston rod tail end of third hydro-cylinder can be dismantled through the fast-assembling structure and be connected with and tailor sword or drill bit, the bottom of the output shaft of motor can be dismantled through the fast-assembling structure and be connected with and tailor sword or drill bit.
Preferably, feed mechanism includes two sets of transverse guide of fixed connection between both sides board upper portions, and two transverse guide are horizontal interval and set up side by side and on the two all slip the cover be equipped with first electric slider, the equal sliding connection of top surface of two first electric slider is on the roof bottom surface, fixedly connected with support of falling the U-shaped between the bottom surface of two first electric slider, fixedly connected with longitudinal rail between two vertical parts of support, the slip cover is equipped with the electric slider of second on the longitudinal rail, the top surface sliding connection of the electric slider of second is on the bottom surface of support horizontal part, second hydro-cylinder fixed connection is on the bottom surface of the electric slider of second.
Preferably, the fast-assembling structure is including the installation piece, the output shaft bottom of motor and the top fixed connection of the installation piece that corresponds, the piston rod tail end of third hydro-cylinder and the lateral part fixed connection of the installation piece that corresponds, the mounting groove has been seted up to installation piece bottom, the installation piece that mounting groove lateral part and bottom correspond is inside all to be equipped with the second electro-magnet, the top of cutting out sword and drill bit all is equipped with the adaptation in the mounting groove and has magnetic connecting block, cut out sword and drill bit and all can dismantle through connecting block and corresponding mounting groove and be connected.
Preferably, lead to the groove and smash the waste bin between the roller in the symmetry be equipped with two stock guides, two stock guides one end that carries on the back mutually all link firmly on the waste bin inside wall that corresponds, two stock guides relative one end all downward sloping settings and there is the clearance between the two, waste bin bottom intercommunication has row material pipe, it is equipped with the discharge valve on the material pipe to arrange.
Preferably, the upper parts of the inner sides of the two side plates are respectively provided with an infrared detector.
Preferably, the four corners department of workstation bottom surface all vertically is equipped with the fourth hydro-cylinder, the piston rod of fourth hydro-cylinder up and with the workstation bottom surface fixed connection that corresponds, the bottom of fourth hydro-cylinder all is connected with the walking wheel through damper.
Preferably, damper establishes by the telescopic link and establishes the damping spring in the telescopic link outside and forms, telescopic link and damping spring's top is all through last mounting panel and the fourth hydro-cylinder bottom fixed connection that corresponds, telescopic link and damping spring's bottom is all through mounting panel and the walking wheel fixed connection that corresponds down.
Preferably, the road wheels comprise a pair of directional wheels positioned on the same side and a pair of brake type universal wheels positioned on the other side.
The utility model has the advantages that: the utility model relates to a rationally, simple structure, during the clamping cloth, only need place the bottom plate of deciding anchor clamps and moving anchor clamps with the cloth both ends earlier, then put through the circuit of the first electro-magnet in the bottom plate, make the bottom plate of deciding anchor clamps and moving anchor clamps produce magnetic attraction, alright automatic will have magnetic clamp plate to inhale down for protruding meshing on the bottom plate that arch on the clamp plate and correspond, thereby press from both sides tight cloth. Then, the first oil cylinder is operated, a piston rod of the first oil cylinder is contracted, the clamp is driven to be far away from the fixed clamp, the cloth can be further straightened and stretched to be flat, firm clamping and effective straightening and stretching of the cloth are achieved, the phenomena of cloth offset dislocation and folding wrinkles can be effectively avoided when the cloth is cut, the cutting precision and the cutting quality can be guaranteed better, the circuit of the first electromagnet is cut off after the cloth is cut, the pressing plate can be automatically pulled up to reset under the driving of the reset elastic force of the stretching spring, the cut cloth can be taken down quickly, the feeding and discharging operation during cutting is simpler and more convenient, time and labor are saved, and the processing efficiency can be further improved.
When the straight line is cut out to needs, will cut out the sword through the fast-assembling structure and install on the bottom of the output shaft of motor, then utilize the second hydro-cylinder to drive and cut out the sword and go up and down, utilize feed mechanism to drive and cut out the sword and feed, alright realization is cut out the processing to the straight line of cloth. When curve cutting is needed, the cutting knife is installed at the tail end of the telescopic rod of the third oil cylinder through the fast-assembly structure, then the third oil cylinder is used for adjusting the curve to cut the needed radius, the second oil cylinder is used for driving the cutting knife to lift, the motor is used for driving the cutting knife to rotate, and meanwhile the feeding mechanism is used for changing the cutting position of the cutting knife, so that the curve cutting processing of cloth can be realized. When needs punch man-hour, install the drill bit on the bottom of the output shaft of motor through the fast-assembling structure, then utilize the second hydro-cylinder to drive the drill bit and go up and down, utilize the motor to drive the drill bit and rotate, utilize feed mechanism to change the drill bit position of punching simultaneously, alright realize the processing of punching to the cloth, easy operation is convenient, utilize an equipment alright realize cutting out the straight line of cloth, three kinds of processing demands that the curve was cut out and was punched, application range is wide and more nimble changeable, can strengthen the practicality of device greatly.
Tailor the in-process, the hair-dryer operation can provide wind-force to the workstation, thereby can blow waste cloth such as tiny cotton fibre and corner that produce when tailorring to waste material case place orientation, make waste cloth such as tiny cotton fibre and corner get into the waste bin through leading to the groove, realize the automatic clearance to the workstation, guarantee the clean of workstation, avoid influencing follow-up processing of tailorring, simultaneously, the waste material that gets into the waste bin can directly be smashed by crushing roller, the follow-up processing of being convenient for, labour saving and time saving more facilitates the use.
Drawings
Fig. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic view of the fixing clamp of the present invention;
fig. 3 is a left side view schematic structure diagram of the feeding mechanism of the present invention;
FIG. 4 is a schematic structural view of the quick-assembly structure of the present invention;
fig. 5 is a schematic structural view of the damping mechanism of the present invention.
Reference numbers in the figures: 1 is a workbench, 2 is a side plate, 3 is a back plate, 4 is a top plate, 5 is an infrared detector, 6 is a blower, 7 is a through groove, 8 is a waste bin, 9 is a guide plate, 10 is a crushing roller, 11 is a discharge pipe, 12 is a discharge valve, 13 is a fixed clamp, 14 is a movable clamp, 15 is a bottom plate, 16 is a first electromagnet, 17 is a support plate, 18 is a tension spring, 19 is a pressure plate, 20 is a bulge, 21 is a first oil cylinder, 22 is a transverse guide rail, 23 is a first electric slide block, 24 is a bracket, 25 is a longitudinal guide rail, 26 is a second electric slide block, 27 is a second oil cylinder, 28 is a motor, 29 is a third oil cylinder, 30 is a mounting block, 31 is a cutting knife, 32 is a drill bit, 33 is a second electromagnet, 34 is a mounting groove, 35 is a connecting block, 36 is a fourth oil cylinder, 37 is a shock absorption mechanism, 38 is a directional wheel, 39 is a universal wheel, 40 is an upper mounting plate, 41 is a telescopic rod, a shock absorbing spring is 42, and a lower mounting plate is 43.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments:
as shown in fig. 1 to 5, the tailoring device comprises a workbench 1, wherein two sides of the top surface of the workbench 1 are vertically provided with side plates 2, and the rear end of the workbench 1 is vertically provided with a back plate 3. The lower part of one side plate 2 is provided with a blower 6, the lower part of the other side plate 2 is provided with a through groove 7, and the outside of the side plate 2 corresponding to the through groove 7 is communicated with a waste box 8. A pair of crushing rollers 10 with crushing teeth are horizontally and rotatably arranged at the position below the through groove 7 in the waste box 8. In the cutting process, the blower 6 operates to provide wind power for the workbench 1, so that waste cloth materials such as fine cotton wool and corners generated in cutting can be blown to the direction of the waste box 8, the fine cotton wool and the corners enter the waste box 8 through the through grooves, automatic cleaning of the workbench 1 is realized, cleanness of the workbench 1 is guaranteed, influence on subsequent cutting processing is avoided, meanwhile, waste materials entering the waste box 8 can be directly crushed by the crushing roller 10, subsequent processing is facilitated, time and labor are saved, and the use is facilitated;
one side of the top surface of the workbench 1 close to the through groove 7 is provided with a fixed clamp 13, and the other side is provided with a movable clamp 14. The fixed clamp 13 and the movable clamp 14 both comprise a bottom plate 15, the bottom plate 15 of the fixed clamp 13 is fixedly arranged on the workbench 1, and the bottom plate of the movable clamp 14 is arranged on the workbench 1 in a sliding mode. The two bottom plates 15 are internally provided with first electromagnets 16, the two bottom plates are fixedly connected with inverted L-shaped support plates 17 on the opposite sides, the horizontal parts of the two support plates 17 are arranged oppositely, the inner sides of the vertical parts of the two support plates 17 are provided with magnetic pressure plates 19 in a vertically sliding manner, a plurality of extension springs 18 are fixedly connected between the top surfaces of the pressure plates 19 and the horizontal parts of the corresponding support plates 17, the bottom surfaces of the pressure plates 19 and the top surfaces of the bottom plates 15 are respectively provided with saw-toothed protrusions 20, and the protrusions 20 of the pressure plates 19 can be meshed with the protrusions 20 of the corresponding bottom plates 15. A first oil cylinder 21 is horizontally connected between the outer side of the vertical part of the support plate 17 of the movable clamp 14 and the corresponding side plate 2. When the cloth is clamped, the two ends of the cloth are placed on the bottom plates 15 of the fixed clamp 13 and the movable clamp 14, then the circuit of the first electromagnet 16 in the bottom plate 15 is switched on, the bottom plates 15 of the fixed clamp 13 and the movable clamp 14 generate magnetic attraction, and the magnetic pressing plate 19 can be attracted down, so that the protrusions 20 on the pressing plate 19 are meshed with the protrusions 20 on the corresponding bottom plates 15, and the cloth is clamped. Then, the first oil cylinder 21 is operated to contract a piston rod of the first oil cylinder, the first oil cylinder drives the clamp 14 to be far away from the fixed clamp 13, so that the cloth can be further straightened and stretched to be flat, the cloth is firmly and firmly clamped and effectively straightened and stretched to be flat, the phenomena of cloth offset, dislocation and folding wrinkles can be effectively avoided when the cloth is cut, the cutting precision and the cutting quality can be better ensured, and after the cutting is finished, a circuit of the first electromagnet 16 is cut off, and the pressing plate 19 can be automatically pulled up and reset under the driving of the reset elastic force of the stretching spring 18, so that the cut cloth can be quickly taken down, the feeding and discharging operation during the cutting is simpler and more convenient, the time and the labor are saved, and the processing efficiency can be further improved;
a top plate 4 is arranged between the top ends of the back plate 3 and the two side plates 2, a feeding mechanism is arranged between the top plate 4 and the two side plates 2, the feeding mechanism is vertically connected with a second oil cylinder 27 downwards, and a piston rod of the second oil cylinder 27 is downwards and fixedly connected with a motor 28. The lateral part of the output shaft of the motor 28 is horizontally connected with a third oil cylinder 29, the tail end of a piston rod of the third oil cylinder 29 is detachably connected with a cutting knife 31 through a fast-assembly structure, and the bottom end of the output shaft of the motor 28 is detachably connected with the cutting knife 31 or a drill 32 through the fast-assembly structure. When the straight line cutting is needed, the cutting knife 31 is installed at the bottom end of the output shaft of the motor 28 through the fast-assembly structure, then the second oil cylinder 27 is used for driving the cutting knife 31 to lift, the feeding mechanism is used for driving the cutting knife 31 to feed, and the straight line cutting processing of the cloth can be achieved. When curve cutting is needed, the cutting knife 31 is installed at the tail end of the telescopic rod of the third oil cylinder 29 through a fast-assembly structure, then the radius required for curve cutting is adjusted through the third oil cylinder 29, the cutting knife 31 is driven to lift through the second oil cylinder 27, the cutting knife 31 is driven to rotate through the motor 28, and meanwhile, the cutting position of the cutting knife 31 is changed through the feeding mechanism, so that curve cutting processing of cloth can be achieved. When needs punch man-hour, install drill bit 32 on the bottom of the output shaft of motor 28 through the fast-assembling structure, then utilize second hydro-cylinder 27 to drive drill bit 32 and go up and down, utilize motor 28 to drive drill bit 32 and rotate, utilize feed mechanism to change the position of punching of drill bit 32 simultaneously, alright realization is to the processing of punching of cloth, easy operation is convenient, utilize an equipment alright realize cutting out the straight line of cloth, three kinds of processing demands that the curve was cut out and was punched, application range is wide and more nimble changeable, can strengthen the practicality of device greatly.
In this embodiment, the feeding mechanism includes two sets of transverse guide rails 22 fixedly connected between the upper portions of the two side plates 2, the two transverse guide rails 22 are horizontally spaced and arranged side by side, and both of the two transverse guide rails are slidably sleeved with first electric sliders 23, and the top surfaces of the two first electric sliders 23 are slidably connected to the bottom surface of the top plate 4. An inverted U-shaped bracket 24 is fixedly connected between the bottom surfaces of the two first electric sliders 23, a longitudinal guide rail 25 is fixedly connected between the two vertical parts of the bracket 24, a second electric slider 26 is slidably sleeved on the longitudinal guide rail 25, the top surface of the second electric slider 26 is slidably connected to the bottom surface of the horizontal part of the bracket 24, and a second oil cylinder 27 is fixedly connected to the bottom surface of the second electric slider 26. In use, the transverse feeding motion of the second oil cylinder 27 can be realized by the movement of the first electric slide block 23 on the transverse guide rail 22, and the longitudinal feeding motion of the second oil cylinder 27 can be realized by the movement of the second electric slide block 26 on the longitudinal guide rail 25, so that the feeding motion of the cutting knife 31 in straight line cutting and the change of the cutting and punching positions in curve cutting and punching can be matched.
In the embodiment, the fast-assembly structure comprises mounting blocks 30, the bottom end of the output shaft of the motor 28 is fixedly connected with the top ends of the corresponding mounting blocks 30, and the tail end of the piston rod of the third cylinder 29 is fixedly connected with the side portions of the corresponding mounting blocks 30. Mounting groove 34 has been seted up to the bottom of installation piece 30, the lateral part of mounting groove 34 and the inside of the installation piece 30 that the bottom corresponds all are equipped with second electro-magnet 33, the second electro-magnet 33 of lateral part is the annular electro-magnet of a monoblock adaptation in mounting groove 34, the top of cutting out sword 31 and drill bit 32 all is equipped with adaptation in mounting groove 34 and has magnetic connecting block 35, make cutting out sword 31 and drill bit 32 all can dismantle with the mounting groove 34 that corresponds through connecting block 35 and be connected, when needing installation or when dismantling cutting out sword 31 or drill bit 32, only need put through or break off the circuit of the second electro-magnet 33 in the installation piece 30 that corresponds, it can to insert or extract corresponding mounting groove 34 with corresponding connecting block 35 again. The connecting block 35 and the pressing plate 19 may be made of a conventional magnetic material such as iron, and are not particularly limited.
In this embodiment, lead to the groove 7 and smash 8 interior symmetries of waste bin between the roller 10 and be equipped with two stock guides 9, two stock guides 9 one end that back on the back mutually all link firmly on the inside wall of the waste bin 8 that corresponds, and the equal downward sloping of the one end that two stock guides 9 are relative sets up and there is the clearance between the two for carry out the water conservancy diversion to the material that gets into waste bin 8, be more convenient for carry out shredding to the waste material. The bottom of the waste bin 8 is communicated with a discharge pipe 11, and a discharge valve 12 is arranged on the discharge pipe 11, so that the crushed waste can be cleaned conveniently.
In this embodiment, the inboard upper portion of both sides board 2 all is equipped with infrared detector 5, can detect the human body that is in between both sides board 2, only need during the use to be connected infrared detector 5 and the control center (not drawn in the picture) electricity of complete machine, make and tailor the in-process, when infrared detector 5 detects to be detained between both sides board 2 human body position, the control center of complete machine can in time control stop the operation of second hydro-cylinder 27 and motor 28, avoid causing the damage to the human body, improve workman's operational safety, guarantee workman's personal safety. All vertical fourth hydro-cylinder 36 that is equipped with in four corners department of 1 bottom surface of workstation, the piston rod of fourth hydro-cylinder 36 up and with the bottom surface fixed connection of the workstation 1 that corresponds, the bottom of fourth hydro-cylinder 36 all is connected with the walking wheel through damper 37 for when using, through the setting of fourth hydro-cylinder 36, can be convenient for adjust the height of workstation 1, make it more humanized, satisfy the operator's of different heights manipulation demand. The walking wheel is arranged, so that the whole device can walk and move conveniently, the position of the adjusting device can be adjusted according to actual use requirements, and the use flexibility and convenience of the device can be further improved.
In this embodiment, damper 37 establishes by telescopic link 41 and cover and constitutes at the damping spring 42 in the telescopic link 41 outside, the top of telescopic link 41 and damping spring 42 is all through the bottom fixed connection of last mounting panel 40 with the fourth hydro-cylinder 36 that corresponds, telescopic link 41 and damping spring 42's bottom is all through mounting panel 43 and the walking wheel fixed connection that corresponds down, make the cooperation through telescopic link 41 and damping spring 42, can improve the whole buffering damping performance who tailors the device, guarantee to tailor the stationarity of device when removing and during operation, alleviate the damage to workstation 1 and each part on it, improve the whole life who tailors the device. The travelling wheels comprise a pair of directional wheels 38 positioned on the same side and a pair of brake-type universal wheels 39 positioned on the other side, so that the movement and the positioning of the whole cutting device can be controlled more conveniently.
The utility model discloses a theory of operation: the utility model discloses when using, the clamping material loading of waiting to tailor the cloth is carried out earlier, specifically is: the two ends of the cloth are placed on the bottom plates 15 of the fixed clamp 13 and the movable clamp 14, then the circuit of the first electromagnet 16 in the bottom plate 15 is switched on, so that the bottom plates 15 of the fixed clamp 13 and the movable clamp 14 generate magnetic attraction, and the magnetic pressing plate 19 can be attracted down, so that the protrusions 20 on the pressing plate 19 are meshed with the corresponding protrusions 20 on the bottom plate 15, and the cloth is clamped. Then, the first oil cylinder 21 is operated to contract the piston rod of the first oil cylinder, the first oil cylinder drives the clamp 14 to be far away from the fixed clamp 13, and the cloth can be further straightened and stretched to be flat, so that the cloth is firmly and firmly clamped and effectively straightened and stretched to be flat, the phenomena of cloth deviation and dislocation and folding wrinkles can be effectively avoided when the cloth is cut, and the cutting precision and the cutting quality can be better ensured.
After the clamping is completed, the cutting operation can be carried out, and the method specifically comprises the following steps: when the straight line cutting is required, the second electromagnet 33 of the mounting block 30 on the bottom end of the output shaft of the motor 28 is turned on, and then the connecting block 35 of the cutting blade 31 is inserted into the mounting groove 34 of the mounting block 30, so that the mounting of the cutting blade 31 in the straight line cutting can be completed. Then, the second oil cylinder 27 is used for driving the cutting knife 31 to lift, and the feeding mechanism is used for driving the cutting knife 31 to feed, so that the linear cutting processing of the cloth can be realized; when curve cutting is needed, the second electromagnet 33 of the mounting block 30 on the bottom end of the output shaft of the motor 28 is switched off, the cutting knife 31 is taken down, then the second electromagnet 33 of the mounting block 30 on the tail end of the telescopic rod of the third oil cylinder 29 is switched on, the connecting block 35 of the cutting knife 31 is inserted into the mounting groove 34 of the mounting block 30, and then the mounting of the cutting knife 31 in the curve cutting can be completed. Then, the third oil cylinder 29 is used for adjusting the radius required by curve cutting, the second oil cylinder 27 is used for driving the cutting knife 31 to lift, the motor 28 is used for driving the cutting knife 31 to rotate, and meanwhile, the feeding mechanism is used for changing the cutting position of the cutting knife 31, so that the curve cutting processing of the cloth can be realized; when needs punch man-hour, earlier take off according to aforementioned step and tailor sword 31, install drill bit 32 according to aforementioned step again, then utilize second hydro-cylinder 27 to drive drill bit 32 and go up and down, utilize motor 28 to drive drill bit 32 and rotate, utilize feed mechanism to change the position of punching of drill bit 32 simultaneously, alright realization is to the processing of punching of cloth, easy operation is convenient, utilize an equipment alright realize tailorring the straight line of cloth, three kinds of processing demands that the curve was tailor and was punched, application range is wide and more nimble changeable, can strengthen the practicality of device greatly.
Tailor the in-process, hair-dryer 6 moves, can provide wind-force to workstation 1, thereby can blow waste cloth such as tiny cotton fibre and corner that produce when tailorring to 8 place directions in waste bin, make waste cloth such as tiny cotton fibre and corner get into waste bin 8 through leading to the groove, realize the automatic clearance to workstation 1, guarantee workstation 1's clean, avoid influencing follow-up processing of tailorring, and simultaneously, the waste material that gets into waste bin 8 can directly be smashed by crushing roller 10, the follow-up processing of being convenient for, time saving and labor saving more, and convenient to use.
After cutting, cutting off the circuit of the first electromagnet 16, and automatically pulling up and resetting the pressing plate 19 under the driving of the reset elastic force of the extension spring 18, so that the cut cloth can be taken down quickly, the feeding and discharging operations during cutting are simpler and more convenient, time and labor are saved, and the processing efficiency can be further improved.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (8)

1. A tailoring device for garment processing comprises a workbench and is characterized in that two sides of the top surface of the workbench are both vertically provided with side plates, the rear end of the top surface of the workbench is vertically provided with a back plate, the lower part of one side plate is provided with a blower, the lower part of the other side plate is provided with a through groove, the outer part of the side plate corresponding to the through groove is communicated with a waste box, and a pair of crushing rollers with crushing teeth are horizontally and rotatably arranged at positions below the through groove in the waste box; a fixed clamp is arranged on one side, close to the through groove, of the top surface of the workbench, a movable clamp is arranged on the other side of the top surface of the workbench, the fixed clamp and the movable clamp both comprise bottom plates, the bottom plates of the fixed clamp are fixedly arranged on the workbench, the bottom plates of the movable clamp are slidably arranged on the workbench, first electromagnets are arranged in the two bottom plates, inverted L-shaped support plates are fixedly connected to the opposite sides of the two bottom plates, the horizontal parts of the two support plates are oppositely arranged, magnetic pressing plates are slidably arranged on the inner sides of the vertical parts of the two support plates up and down, a plurality of tension springs are fixedly connected between the top surfaces of the pressing plates and the horizontal parts of the corresponding support plates, sawtooth-shaped protrusions are arranged on the bottom surfaces of the pressing plates and the top surfaces of the bottom plates, the protrusions of the pressing plates can be meshed with the protrusions on the corresponding bottom plates, and first oil cylinders are horizontally connected between the outer sides of the vertical parts of the support plates of the movable clamp and the corresponding side plates; the utility model discloses a cutter, including backplate and both sides board, be equipped with the roof between the top of backplate and both sides board, be equipped with feed mechanism between roof and the both sides board, feed mechanism vertical connection has the second hydro-cylinder down, the piston rod of second hydro-cylinder is down and fixedly connected with motor, the lateral part horizontally connected with third hydro-cylinder of the output shaft of motor, the piston rod tail end of third hydro-cylinder can be dismantled through the fast-assembling structure and be connected with and tailor sword or drill bit, the bottom of the output shaft of motor can be dismantled through the fast-assembling structure and be connected with and tailor sword or drill bit.
2. The tailoring cutting device according to claim 1, wherein the feeding mechanism comprises two sets of transverse guide rails fixedly connected between the upper portions of the two side plates, the two transverse guide rails are horizontally spaced and arranged side by side, a first electric slider is slidably sleeved on both of the transverse guide rails, the top surfaces of the two first electric sliders are slidably connected on the bottom surface of the top plate, an inverted U-shaped support is fixedly connected between the bottom surfaces of the two first electric sliders, a longitudinal guide rail is fixedly connected between the two vertical portions of the support, a second electric slider is slidably sleeved on the longitudinal guide rail, the top surface of the second electric slider is slidably connected on the bottom surface of the horizontal portion of the support, and the second oil cylinder is fixedly connected on the bottom surface of the second electric slider.
3. The tailoring and cutting device of claim 1, wherein the quick-assembly structure comprises an installation block, the bottom end of the output shaft of the motor is fixedly connected with the top end of the corresponding installation block, the tail end of the piston rod of the third cylinder is fixedly connected with the side portion of the corresponding installation block, the bottom of the installation block is provided with an installation groove, the installation block corresponding to the side portion and the bottom of the installation groove is internally provided with a second electromagnet, the top ends of the tailoring knife and the drill bit are provided with a magnetic connection block adapted to the installation groove, and the tailoring knife and the drill bit are detachably connected with the corresponding installation groove through the connection block.
4. The tailoring apparatus according to claim 1, wherein two material guiding plates are symmetrically disposed in the waste bin between the through groove and the pulverizing roller, opposite ends of the two material guiding plates are respectively fixed to the inner side wall of the corresponding waste bin, opposite ends of the two material guiding plates are respectively inclined downward with a gap therebetween, a discharge pipe is communicated with the bottom of the waste bin, and a discharge valve is disposed on the discharge pipe.
5. The tailoring apparatus of claim 1 wherein the upper inside portions of both side panels are provided with infrared detectors.
6. The tailoring and cutting device of claim 1, wherein a fourth cylinder is vertically disposed at each of four corners of the bottom surface of the workbench, a piston rod of the fourth cylinder faces upward and is fixedly connected with the corresponding bottom surface of the workbench, and a traveling wheel is connected to each of the bottom ends of the fourth cylinders through a damping mechanism.
7. The tailoring device of claim 6, wherein the damping mechanism comprises a telescopic rod and a damping spring sleeved outside the telescopic rod, the top ends of the telescopic rod and the damping spring are fixedly connected with the bottom end of a corresponding fourth oil cylinder through an upper mounting plate, and the bottom ends of the telescopic rod and the damping spring are fixedly connected with a corresponding traveling wheel through a lower mounting plate.
8. The tailoring apparatus of claim 6 wherein the road wheels comprise a pair of directional wheels on a same side and a pair of brake-type universal wheels on an opposite side.
CN202120471245.8U 2021-03-04 2021-03-04 Tailoring and cutting device Expired - Fee Related CN214613249U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120471245.8U CN214613249U (en) 2021-03-04 2021-03-04 Tailoring and cutting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120471245.8U CN214613249U (en) 2021-03-04 2021-03-04 Tailoring and cutting device

Publications (1)

Publication Number Publication Date
CN214613249U true CN214613249U (en) 2021-11-05

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120471245.8U Expired - Fee Related CN214613249U (en) 2021-03-04 2021-03-04 Tailoring and cutting device

Country Status (1)

Country Link
CN (1) CN214613249U (en)

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