Feeding mechanism for cutting and processing knitted trousers
Technical Field
The utility model relates to the technical field of feeding mechanisms, in particular to a feeding mechanism for cutting and processing knitted trousers.
Background
The knitted trousers in the current market are more in variety, and are cheap and durable, so that the knitted trousers are deeply favored by people, namely, the knitted fabric is formed by bending yarns into loops by using knitting needles and mutually stringing the yarns, and the knitted fabric is an ideal material of clothing due to the advantages of softness, ventilation, comfort in wearing, good elasticity and the like;
The knitted fabric is usually required to be cut in the production and processing process, a feeding structure is required to be used in the cutting process, when the feeding is required to be carried out, the fixing of a feeding roller is required to be released by the existing feeding mechanism, then the feeding roller which is processed to be woven cloth is taken out of an installation groove in a manual conveying mode, the feeding roller is detached, and then the feeding roller to be processed is conveyed to the positions, at the two ends of the feeding roller, of the feeding roller to be processed are respectively inserted into the installation groove, so that the feeding roller is installed on a machine body, and the feeding can be completed. This feed supplement mode goes on through the manual mode, and very consuming time is hard, is inconvenient for carrying out the feed supplement to the organism, and for this reason, we propose a feeding mechanism that is used for knitting trousers to cut processing.
Disclosure of utility model
The utility model aims to overcome the existing defects, and provides the feeding mechanism for cutting and processing the knitted trousers, which can conveniently supplement materials and effectively solve the problems in the background art.
In order to achieve the aim, the utility model provides the following technical scheme that the feeding mechanism for cutting and processing the knitted trousers comprises a bottom plate and a clamping assembly;
The bottom plate, the rear end of the upper side is fixed with two corresponding support plates, and the front sides of the two support plates are provided with adjusting components;
The clamping assembly comprises a fixed frame, moving strips, a rotating disc, a bidirectional screw and a first motor, wherein the fixed frame is fixed on the upper sides of the two supporting plates, the two corresponding moving strips are connected in a sliding mode in the fixed frame, the rotating disc is rotationally connected to the side faces of the moving strips, threaded holes are formed in the rear side edge portions of the moving strips, threads of the two threaded holes are opposite, the bidirectional screw is connected with the internal threads of the two threaded holes, the bidirectional screw is formed by welding threaded rods with opposite threads, the bidirectional screw is rotationally connected to the inside of the fixed frame, the first motor is installed on the right side of the fixed frame, an output shaft of the first motor is fixed on the right end of the bidirectional screw, a feeding assembly is installed on the upper side of the fixed frame, a discharging assembly is installed on the side faces of the two moving strips, and the feeding roller on the upper side is fixed through the clamping assembly;
The input end of the first motor is electrically connected with the output end of an external control switch group.
Further, still include storage module, storage module contains support frame, feed roll, knitting cloth and draw-in hole, the support frame has been placed to the upside of bottom plate, the feed roll is provided with two, the surface winding of feed roll has knitting cloth, the middle part of feed roll is provided with the draw-in hole, and two rolling discs are located the inside left and right sides in draw-in hole that the feed roll middle part of upside set up respectively, and the feed roll of downside is placed in the inside of support frame.
Further, the pay-off subassembly contains mount, second motor, guide roll and gear, the upside of fixed frame is fixed with two corresponding mounts, and the second motor is installed on the right side of the mount on right side, two relative changeing the hole has been seted up on the right side of mount, and the inside rotation in four changeing the hole is connected with two corresponding guide rolls, the right-hand member of guide roll at the upside is fixed to the output shaft of second motor, the left end of guide roll is fixed with the gear, and two gears mesh mutually, the output of outside control switch group is connected to the input electricity of second motor, carries out the pay-off to knitting cloth through setting up the pay-off subassembly.
Further, the adjusting part contains fixed strip, first electric telescopic handle and connecting plate, the front side of backup pad is fixed with the fixed strip, first electric telescopic handle is installed to the upside of fixed strip, be fixed with the connecting plate on the flexible arm of first electric telescopic handle, two connecting plates are fixed respectively in the left and right sides of support frame, the output of outside control switch group is connected to the input electricity of first electric telescopic handle, adjusts the height of support frame through setting up adjusting part.
Further, unloading subassembly contains slant piece, second electric telescopic handle, support bar and deflector, the side of movable strip is fixed with the slant piece, the side mounting of slant piece has the second electric telescopic handle, be fixed with the support bar on the flexible arm of second electric telescopic handle, the rear side of support bar is fixed with the deflector, the output of outside control switch group is connected to the input electricity of second electric telescopic handle, unloads through setting up unloading subassembly.
Compared with the prior art, the feeding mechanism for cutting the knitted trousers has the beneficial effects that the feeding mechanism for cutting the knitted trousers has the following advantages:
1. One end of the upper knitted fabric is inserted between the two guide rollers in the using process by arranging the feeding component, and then the second motor is started to enable the two guide rollers to rotate, so that feeding can be performed in the rotating process of the two guide rollers, and the feeding is extremely rapid;
2. Through setting up the clamping component and making winding knitting cloth on the feed roll surface of upside control first motor to changeing after finishing, first motor to changeing and make two rolling discs and the feed roll separation of upside, can will lift the feed roll of upside off after the separation, control two first electronic flexible contractions after the dismantlement and make the support frame upwards move, the support frame upwards moves and drives the feed roll of downside upwards to move between two rolling discs, start first motor and make two rolling discs remove the card hole of inserting into the feed roll middle part this moment, can accomplish the feed supplement under such circumstances, it is extremely convenient.
Drawings
FIG. 1 is a schematic view of the front side structure of the present utility model;
FIG. 2 is a schematic view of a clamping assembly according to the present utility model;
FIG. 3 is a schematic view of a feeding assembly according to the present utility model.
In the figure, a bottom plate, a2 supporting plates, a3 clamping assembly, a 31 fixing frame, a 32 moving bar, a 33 rotating disc, a 34 bidirectional screw, a 35 first motor, a 4 storage assembly, a 41 supporting frame, a 42 feeding roller, a 43 knitted fabric, a 44 clamping hole, a 5 feeding assembly, a 51 fixing frame, a 52 second motor, a 53 guide roller, a 54 gear, a 6 adjusting assembly, a 61 fixing bar, a 62 first electric telescopic rod, a 63 connecting plate, a 7 blanking assembly, a 71 oblique block, a 72 second electric telescopic rod, a 73 supporting bar and a 74 guide plate are arranged.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the embodiment provides a technical scheme that a feeding mechanism for cutting knitting trousers comprises a bottom plate 1 and a clamping component 3;
The back end of the upper side is fixed with two corresponding support plates 2, the front sides of the two support plates 2 are provided with adjusting assemblies 6, each adjusting assembly 6 comprises a fixing strip 61, a first electric telescopic rod 62 and a connecting plate 63, the front side of each support plate 2 is fixed with the fixing strip 61, the upper side of each fixing strip 61 is provided with the corresponding first electric telescopic rod 62, the telescopic arm of each first electric telescopic rod 62 is fixed with the corresponding connecting plate 63, the two connecting plates 63 are respectively fixed on the left side and the right side of the corresponding support frame 41, the input end of each first electric telescopic rod 62 is electrically connected with the output end of an external control switch group, and the height of the corresponding support frame 41 is adjusted by arranging the adjusting assemblies 6;
Clamping assembly 3: the device comprises a fixed frame 31, a movable bar 32, a rotating disc 33, a bidirectional screw 34 and a first motor 35, wherein the fixed frame 31 is fixed on the upper sides of the two support plates 2, two corresponding movable bars 32 are connected in a sliding manner in the fixed frame 31, the rotating disc 33 is connected on the side faces of the movable bars 32 in a rotating manner, threaded holes are formed in the rear side edge parts of the movable bars 32, threads of the two threaded holes are opposite, the bidirectional screw 34 is connected with the internal threads of the two threaded holes, the bidirectional screw 34 is formed by welding two threaded rods with opposite threads, the bidirectional screw 34 is rotationally connected in the fixed frame 31, the first motor 35 is arranged on the right side of the fixed frame 31, an output shaft of the first motor 35 is fixed on the right end of the bidirectional screw 34, a feeding component 5 is arranged on the upper side of the fixed frame 31, a discharging component 7 is arranged on the side faces of the two movable bars 32, and the device further comprises a storage component 4, the storage component 4 comprises a supporting frame 41, a feeding roller 42, knitted fabrics 43 and clamping holes 44, the supporting frame 41 is arranged on the upper side of the bottom plate 1, two feeding rollers 42 are arranged, the knitted fabrics 43 are wound on the surface of each feeding roller 42, the clamping holes 44 are arranged in the middle of each feeding roller 42, two rotating discs 33 are respectively positioned on the left side and the right side of the inside of the clamping holes 44 arranged in the middle of the feeding roller 42 on the upper side, the feeding roller 42 on the lower side is arranged in the supporting frame 41, the feeding component 5 comprises a fixing frame 51, a second motor 52, a guide roller 53 and a gear 54, two corresponding fixing frames 51 are fixed on the upper side of the fixing frame 31, the second motor 52 is arranged on the right side of the fixing frame 51, two relative rotating holes are formed on the right side of the fixing frame 51, two corresponding guide rollers 53 are rotatably connected in the inside of the four rotating holes, the output shaft of the second motor 52 is fixed on the right end of the guide roller 53 on the upper side, the left end of the guide roller 53 is fixed with a gear 54, the two gears 54 are meshed, the input end of the second motor 52 is electrically connected with the output end of an external control switch group, the blanking component 7 comprises an oblique block 71, a second electric telescopic rod 72, a support bar 73 and a guide plate 74, the side surface of the moving bar 32 is fixed with the oblique block 71, the side surface of the oblique block 71 is provided with the second electric telescopic rod 72, the telescopic arm of the second electric telescopic rod 72 is fixed with the support bar 73, the rear side of the support bar 73 is fixed with the guide plate 74, the input end of the second electric telescopic rod 72 is electrically connected with the output end of the external control switch group, the blanking component 7 is arranged for discharging, the feeding component 5 is arranged for feeding the knitted fabric 43, and the clamping component 3 is arranged for fixing the upper feeding roller 42;
Wherein the input of the first motor 35 is electrically connected to the output of an external control switch group.
The working principle of the feeding mechanism for the knitted trousers cutting processing is that firstly, one end of the knitted fabric on the upper side is inserted between two guide rollers 53, then the second motor 52 is started to enable the two guide rollers 53 to rotate, feeding can be carried out in the process that the two guide rollers 53 rotate, the pole is controlled to rotate after the knitted fabric wound on the surface of the feeding roller 42 on the upper side is used, the first motor 35 rotates to enable the bidirectional screw 34 to rotate to drive the two moving strips 32 to be gradually far away, the two moving strips 32 are far away, the two rotating discs 33 can be enabled to be far away from the feeding roller 42 on the upper side, the feeding roller 42 far away from the upper rear side is dismounted downwards along the two guide plates 74, after the two second motor telescopic rods 72 are started to enable the two guide plates 74 to be backwards moved away from the fixed frame 31, then the two first motor telescopic rods 62 are controlled to shrink to enable the supporting frame 41 to be upwards moved, the feeding roller 42 on the lower side is driven to be upwards moved between the two rotating discs 33, and the first motor 35 is started to enable the two rotating discs 33 to be enabled to be moved upwards, and the middle parts of the two rotating discs 33 to be conveniently inserted into the feeding discs to be convenient to fill the feeding holes 44.
It should be noted that the external control switch set disclosed in the above embodiment is provided with buttons corresponding to the first motor 35, the second motor 52, the first electric telescopic rod 62 and the second electric telescopic rod 72 one by one, the first motor 35 and the second motor 52 can be 1LE0003 three-phase asynchronous motors, and the first electric telescopic rod 62 and the second electric telescopic rod 72 can be TGC-A high-thrust electric telescopic rods.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.