CN113104653A - Leftover material recovery processing device for tailoring - Google Patents

Leftover material recovery processing device for tailoring Download PDF

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Publication number
CN113104653A
CN113104653A CN202110311794.3A CN202110311794A CN113104653A CN 113104653 A CN113104653 A CN 113104653A CN 202110311794 A CN202110311794 A CN 202110311794A CN 113104653 A CN113104653 A CN 113104653A
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China
Prior art keywords
arc
box
cloth
box body
shaped
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CN202110311794.3A
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CN113104653B (en
Inventor
尤伶俐
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Wenzhou Polytechnic
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Wenzhou Polytechnic
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Priority to CN202110311794.3A priority Critical patent/CN113104653B/en
Publication of CN113104653A publication Critical patent/CN113104653A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H45/00Folding thin material
    • B65H45/02Folding limp material without application of pressure to define or form crease lines
    • B65H45/06Folding webs
    • B65H45/10Folding webs transversely
    • B65H45/101Folding webs transversely in combination with laying, i.e. forming a zig-zag pile
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B15/00Preventing escape of dirt or fumes from the area where they are produced; Collecting or removing dirt or fumes from that area
    • B08B15/04Preventing escape of dirt or fumes from the area where they are produced; Collecting or removing dirt or fumes from that area from a small area, e.g. a tool
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B7/00Cleaning by methods not provided for in a single other subclass or a single group in this subclass
    • B08B7/02Cleaning by methods not provided for in a single other subclass or a single group in this subclass by distortion, beating, or vibration of the surface to be cleaned
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/10Handled articles or webs
    • B65H2701/17Nature of material
    • B65H2701/174Textile, fibre

Abstract

The utility model provides a leftover bits recovery processing device for tailoring, including first box, there is the second box on first box right side, there is cylindrical cavity inside of first box, there is first pivot between the side wall around the cylindrical cavity, the board is dialled in the connection of first pivot outside, there is the feed port cylindrical cavity upside, there is the barrel around the second box between the side wall, first air exhaust device is connected to barrel one end center department, there is the second through-hole the barrel outside, there is first arc second through-hole outer end, second box rear side inner wall elasticity telescopic link, there is the wedge elasticity telescopic link outer end, there is collection device under the barrel. According to the invention, stacked and wound cloth is scattered through the shifting plate, a continuous negative pressure effect is achieved in the cylinder body, so that raised part of dust can be sucked, when the cloth passes through the upper side of the collecting device, the cloth can fall into the collecting device through the cooperation of the wedge-shaped block and the first arc-shaped plate, and the situation that leftover materials are too scattered and subsequent treatment is difficult to carry out is prevented.

Description

Leftover material recovery processing device for tailoring
Technical Field
The invention belongs to the field of clothing leftover material processing equipment, and particularly relates to a leftover material recycling device for clothing processing.
Background
In the production and manufacturing process of the clothes, the cloth of the clothes cannot be fully utilized, a large amount of leftover materials are usually left, all the leftover materials are collected together, the leftover materials collected together are disordered and influence the attractiveness, and a large amount of storage space is occupied; some manufacturers have no possibility of recycling part of small and short leftover materials or have overhigh recycling cost, and can be directly crushed and burnt by the manufacturers, and part of longer leftover materials can also be recycled for cloth art hair ornaments and other purposes, so the value is higher, the leftover materials need to be sorted, the existing leftover material screening is mainly carried out by manual screening, the labor intensity of workers is high, and the physical health of the workers can be seriously damaged due to a large amount of dust carried on cloth in the screening process.
Disclosure of Invention
The invention provides a leftover material recovery processing device for garment processing, which is used for overcoming the defects in the prior art.
The invention is realized by the following technical scheme:
a leftover material recovery processing device for clothing processing comprises a first box body, a second box body is fixedly connected to the right side of the first box body, a cylindrical cavity is formed in the first box body, a first rotating shaft is rotatably connected between the front side wall and the rear side wall of the cylindrical cavity and driven by a first driving device, a plurality of shifting plates are uniformly and fixedly connected to the outer side of the first rotating shaft, a feeding hole is formed in the upper side of the cylindrical cavity, a flat narrow hole is formed in the joint of the second box body and the first box body and communicates the cylindrical cavity with the interior of the second box body, a hollow barrel body is rotatably connected between the front side wall and the rear side wall of the second box body and driven by a second driving device, a first air exhaust device is rotatably connected and communicated at the center of one end of the barrel body and can generate negative pressure in the barrel body, a plurality of second through holes are uniformly formed in the outer side of the barrel body in an annular manner, the outer end of second through-hole all is equipped with first arc, the inside wall of first arc can cooperate with the lateral wall sealing contact of barrel, the third through-hole has been seted up to the face of first arc corresponding the second through-hole, the equal first pipe of fixedly connected with in outer end of third through-hole, first pipe can rotate to align with the slot, the arc spout has all been seted up to the lateral wall of barrel corresponding first arc, all the cooperation is installed in the arc spout and is installed the slider, slider and the first arc fixed connection that corresponds, spring fixed connection is passed through to one side of slider and arc spout, the rear side inner wall fixed mounting of second box has the flexible telescopic link of movable rod court front side, flexible telescopic link is located the left downside of barrel, flexible telescopic link's movable rod outer end fixedly connected with wedge, the one end of first arc is seted up can with wedge complex inclined plane, the downside of barrel is equipped with collection device.
According to the leftover material recycling device for clothing processing, the second air exhaust device is arranged in the right upper corner area of the second box body.
As above a leftover bits recovery processing device for tailoring, second air exhaust device include second cowl, the regional fixed mounting in the inside upper right corner of second box has the concave surface towards the second cowl of barrel, second cowl does not influence the normal rotation of barrel and first pipe, first fan is installed in the upper right corner of second box, the outside cover of first fan is equipped with the casing, the extraction opening has been seted up to the bottom of casing, the interior sealed fixedly connected with filter screen of extraction opening, the fourth through-hole has been seted up on the second cowl, the cross-sectional area of fourth through-hole is less than the extraction opening, the extraction opening inclines towards the upper right side, the lateral wall of second box corresponds the lower extreme of second cowl and has seted up first material taking port, the outer end of first material taking port is equipped with first gate.
According to the leftover material recycling device for clothing processing, the arc-shaped groove is formed in the outer end of the right side of the narrow hole, and the arc-shaped baffle with the plurality of small holes formed in the plate surface is installed at the outer end of the first pipe corresponding to the arc-shaped groove.
According to the leftover material recycling device for clothing processing, the arc-shaped baffle is made of elastic materials.
As above, leftover bits recovery processing device for tailoring, collection device including cut fork automatic lifting platform, the interior bottom fixed mounting of second box has cut fork automatic lifting platform, the top of cutting fork automatic lifting platform is equipped with the collecting box, the lateral wall of second box corresponds the collecting box and has seted up the second and gets the material mouth, the outer end cooperation of second material mouth is equipped with the second gate.
According to the leftover material recycling device for clothing processing, the position measuring sensor is installed at the upper end of the side wall of the collecting box.
According to the leftover material recycling device for clothing processing, the upper end of the feeding hole is provided with the feeding cover plate.
According to the leftover material recycling device for garment processing, the stiffness coefficient of the spring in the elastic telescopic rod is larger than that of the spring.
According to the leftover material recycling device for clothing processing, the first air exhaust device comprises the second pipe, the second pipe penetrates through the center of one end of the cylinder body, the second pipe is connected with the cylinder body through the sealing bearing, one end of the second pipe extends into the cylinder body, and the other end of the second pipe is communicated with the second fan through the pipeline.
The invention has the advantages that: when the invention is used, disordered clothing leftover materials are poured into the cylindrical cavity through the feeding hole, the first rotating shaft and the shifting plate are driven to rotate by the first driving device, the shifting plate breaks up and throws away the piled leftover materials when rotating, then the first air extractor is started to generate negative pressure in the cylinder body, the second driving device is controlled to drive the cylinder body and the first pipe to rotate clockwise, dust on the cloth can be lifted up due to the shifting of the shifting plate in the cylindrical cavity, the first pipe and the second through hole are aligned at the moment and continuously play a suction effect so as to suck the dust into the cylinder body, when one first pipe rotates to be aligned with the narrow hole, the cloth in the cylindrical cavity is sucked from the narrow hole by suction force, the narrow hole can only pass through one cloth at a time, therefore, after one cloth enters the narrow hole, the cloth in the cylindrical cavity is not subjected to traction force any more, one end of the cloth passes through the narrow hole and is adsorbed on the outer side of the first pipe, the first pipe rotates along with the barrel, the cloth is pulled out from the narrow hole by the first pipe, and due to the fact that a certain distance exists between the shifting plate and the side wall of the cylindrical cavity, the shifting plate can be prevented from pulling the cloth, the first pipe rotates along with the barrel until the first arc-shaped plate contacts with the wedge-shaped block, the first arc-shaped plate is blocked, therefore, the first arc-shaped plate drives the first pipe to rotate anticlockwise relative to the barrel until the first arc-shaped plate seals the corresponding second through hole, the spring is compressed to the limit, the second pipe corresponding to the closed second through hole does not generate suction any more to enable the cloth at the outer end to fall downwards, if the cloth is short, the cloth directly falls into the collecting device, if the cloth is long cloth, one end of the cloth freely falls downwards to the right side inside of the collecting device to contact with the inside of the collecting device, and at the moment, the long cloth, the long cloth gradually inclines until the second through hole corresponding to the first pipe is closed and the other end of the long cloth falls on the left side inside the collecting device, so that the long cloth is tiled and folded; the collecting device is simple in structure and ingenious in design, stacked and wound cloth is scattered through the shifting plate, dust on the cloth can be lifted while the cloth is scattered, a continuous negative pressure effect is achieved in the cylinder body so that the lifted part of dust can be sucked, the maximum suction force can be achieved when the first pipe is aligned with the narrow hole so that the cloth can be pulled out of the cylindrical cavity, the first pipe can only suck one piece of cloth each time due to the arrangement of the narrow hole and the first pipe, when the cloth passes through the upper side of the collecting device, the cloth can fall into the collecting device through the matching of the wedge block and the first arc plate, the short cloth falls freely, the long cloth can be tiled and folded, and the situation that leftover materials are too scattered and subsequent processing is difficult to perform is avoided.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic structural view of the present invention; FIG. 2 is an enlarged view of I of FIG. 1; FIG. 3 is a schematic top view of a wedge block in cooperation with a first arcuate plate; fig. 4 is an enlarged view of ii of fig. 1.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
A leftover material recovery processing device for clothing processing comprises a first box body 1, a second box body 2 is fixedly connected to the right side of the first box body 1, a cylindrical cavity 3 is formed in the first box body 1, a first rotating shaft 4 is rotatably connected between the front side wall and the rear side wall of the cylindrical cavity 3, the first rotating shaft 4 is driven by a first driving device, a plurality of shifting plates 5 are uniformly and fixedly connected to the outer side of the first rotating shaft 4, a feeding hole 6 is formed in the upper side of the cylindrical cavity 3, a flat narrow hole 7 is formed at the joint of the second box body 2 and the first box body 1, the cylindrical cavity 3 is communicated with the inner part of the second box body 2 through the narrow hole 7, a hollow barrel body 8 is rotatably connected between the front side wall and the rear side wall of the second box body 2, the rotating shaft of the barrel body 8 is driven by a second driving device, a first air extracting device is rotatably connected to the center of one end, the first air extractor can enable the interior of the barrel body 8 to generate negative pressure, a plurality of second through holes 9 are uniformly and annularly formed in the outer side of the barrel body 8, first arc-shaped plates 10 are arranged at the outer ends of the second through holes 9, the inner side walls of the first arc-shaped plates 10 can be in sealing contact fit with the outer side walls of the barrel body 8, third through holes 11 are formed in the plate surfaces of the first arc-shaped plates 10 corresponding to the second through holes 9, first pipes 12 are fixedly connected to the outer ends of the third through holes 11, the first pipes 12 can rotate to be aligned with the narrow holes 7, arc-shaped chutes 13 are formed in the outer side walls of the barrel body 8 corresponding to the first arc-shaped plates 10, sliders 14 are mounted in the arc-shaped chutes 13 in a matched mode, the sliders 14 are fixedly connected with the corresponding first arc-shaped plates 10, the sliders 14 are fixedly connected with one sides of the arc-shaped chutes 13 through springs 15, elastic telescopic rods 16 with the movable rods facing to the front, the movable rod outer end fixedly connected with wedge 17 of elastic telescopic rod 16, the one end of first arc 10 seted up can with wedge 17 complex inclined plane, the downside of barrel 8 is equipped with collection device. When the invention is used, messy clothing leftover materials are firstly poured into the cylindrical cavity 3 through the feeding hole, the first rotating shaft and the poking plate 5 are driven to rotate by the first driving device, the poking plate 5 scatters and throws away the piled leftover materials when rotating, then the first air extractor is started to generate negative pressure in the cylinder 8, the second driving device is controlled to drive the cylinder 8 and the first pipe 12 to rotate clockwise, the cloth in the cylindrical cavity is poked by the poking plate, dust on the cloth can be kicked up, the first pipe and the second through hole are aligned at the moment and continuously play a role of suction, so that the dust can be sucked into the cylinder 8, when one first pipe 12 rotates to be aligned with the narrow hole 7, the cloth in the cylindrical cavity 3 enters from the narrow hole 7 by suction force, the narrow hole 7 can only pass through one cloth at a time, therefore, after one cloth enters the narrow hole 7, the cloth in the cylindrical cavity 3 is not subjected to traction force any more, one end of the cloth passes through the narrow hole 7 and is adsorbed on the outer side of the first pipe 12, the first pipe 12 rotates along with the barrel 8, the cloth is pulled out from the narrow hole 7 by the first pipe 12, and because a certain distance exists between the pulling plate and the side wall of the cylindrical cavity, the pulling plate can be prevented from pulling the cloth, the first pipe rotates along with the barrel 8 until the first arc-shaped plate 10 contacts with the wedge-shaped block 17, and the first arc-shaped plate 10 is blocked, so that the first arc-shaped plate 10 drives the first pipe 12 to rotate anticlockwise relative to the barrel 8 until the first arc-shaped plate 10 seals the corresponding second through hole 9, the spring 15 is compressed to the limit, the second pipe corresponding to the closed second through hole 9 does not generate suction force any more to enable the cloth at the outer end to vertically fall, if the cloth is short, the cloth directly falls into the collecting device, if the cloth is long cloth, one end of the cloth freely falls into the right side of the inner side of the collecting device to contact with the, when the spring 15 is compressed to the limit, the first arc plate rotates continuously along with the cylinder, the first arc plate pushes the wedge block 17, the movable rod of the elastic telescopic rod 16 drives the wedge block 17 to move backwards so that the first arc plate can rotate continuously to bypass the wedge block, and after the first arc plate bypasses the wedge block, the spring 15 drives the first arc plate to reset so that the second through hole 9 is reopened, so that the first pipe can have the negative pressure suction effect again; the collecting device is simple in structure and ingenious in design, stacked and wound cloth is scattered through the shifting plate, dust on the cloth can be lifted while the cloth is scattered, a continuous negative pressure effect is achieved in the cylinder body 8, the lifted part of dust can be sucked, the maximum suction force can be achieved when the first pipe is aligned with the narrow hole, the cloth can be pulled out of the cylindrical cavity 3, only one cloth can be sucked by the first pipe each time due to the arrangement of the narrow hole and the first pipe, when the cloth passes through the upper side of the collecting device, the cloth can fall into the collecting device through the matching of the wedge-shaped block and the first arc-shaped plate, the short cloth falls freely, the long cloth can be tiled and folded, and the situation that leftover materials are too scattered and difficult to perform subsequent treatment is avoided.
Specifically, as shown in the figure, the second air extractor is disposed in the upper right corner area of the second box 2. When the strip-shaped cloth is short, only one first pipe sucks one end of the cloth, when the first pipe drives the strip-shaped cloth to rotate to be close to the second air exhaust device, the second air exhaust device can suck one end of the cloth which freely falls down, and the suction force of the second air exhaust device is larger than that of one first pipe to the cloth, so that the second air exhaust device sucks the cloth away; when the strip-shaped cloth is sucked by two or more first pipes 12, the suction force of the second suction device is not enough to suck the strip-shaped cloth away, so that the cloth continues to rotate along with the first pipes.
Specifically, as shown in the figure, the second air extractor of this embodiment includes second arc baffle 18, the regional fixed mounting in the inside upper right corner of second box 2 has the second arc baffle 18 of concave surface towards barrel 8, second arc baffle 18 does not influence the normal rotation of barrel 8 and first pipe 12, first fan 19 is installed in the upper right corner of second box 2, the outside cover of first fan 19 is equipped with casing 20, extraction opening 21 has been seted up to the bottom of casing 20, sealed fixedly connected with filter screen 22 in the extraction opening 21, fourth through-hole 23 has been seted up on the second arc baffle 18, the cross-sectional area of fourth through-hole 23 is less than extraction opening 21, extraction opening 21 inclines towards the upper right, first material taking port 29 has been seted up to the lower extreme that the lateral wall of second box 2 corresponds second arc baffle 18, the outer end of first material taking port 29 is equipped with first gate. Starting the first fan 19, starting air extraction by the first fan 19, generating suction by the air extraction opening 21, starting the second air extraction device to work, and when the first pipe 12 drags the cloth to slowly go out from the narrow hole 7, at the moment, if the cloth is completely dragged out before the adjacent second first pipe 12 reaches the narrow hole, the cloth is short; if the adjacent second first pipe 12 reaches the narrow hole and is positioned in the previous first pipe to be matched and sucked together, the cloth is long, when the first pipe is provided with short cloth and passes through the air suction opening 21, one end of the cloth which freely falls is sucked by the air suction opening 21 and pushed towards the lower part of the right side of the second arc-shaped partition plate, the cloth is gradually straightened along with the continuous rotation of the first pipe, because the suction force at the air suction opening 21 is greater than that at the first pipe and the force of pulling the cloth by the air suction opening is vertical to the first pipe, the air suction opening 21 can suck the cloth into the right side of the second arc-shaped partition plate 18 and the cloth slides downwards along the extension direction of the curved surface of the second arc-shaped partition plate 18, and the long cloth is sucked by at least two first pipes, therefore, when the long cloth enters the air suction opening, the long cloth cannot be influenced by the suction effect of the air suction opening and can continuously move along with the first pipe until the long cloth is tiled or folded in the collecting device, thereby realize the concentrated collection of short cloth and the folding collection of tiling of long cloth, be convenient for recycle of long cloth and the subsequent processing to short cloth, and filter screen 22 then can prevent the cloth bits to get into first fan, prevents to block up.
Further, as shown in the figure, the outer end of the right side of the narrow hole 7 is provided with an arc-shaped groove 24, and the outer end of the first pipe 12 corresponding to the arc-shaped groove 24 is provided with an arc-shaped baffle 25 with a plurality of small holes on the surface. The arc-shaped baffle plate 25 blocks the outlet of the first pipe, prevents that the cloth of less piece from being caused by the suction pipe and blocking, sets up the normal function of bleeding that the aperture guaranteed the first pipe simultaneously on arc-shaped baffle plate 25, through arc-shaped baffle plate 25 and arc recess 24's cooperation for arc-shaped baffle plate guarantees the great suction to the aperture in when first pipe 12 aligns with the aperture when cooperation motion in arc recess 24, and makes the cloth can normally pass through not scraped.
Further, as shown, the curved baffle 25 of the present embodiment is made of an elastic material. The cowl 25 is made of an elastic material so that the cowl 25 can be better fitted with the curved groove 24 and can prevent the inner wall of the second tank from interfering with the first pipe.
Furthermore, as shown in the figure, the collecting device described in this embodiment includes a scissor-type automatic lifting platform 26, the scissor-type automatic lifting platform 26 is fixedly installed at the inner bottom of the second box body 2, the top of the scissor-type automatic lifting platform 26 is provided with a collecting box 27, the side wall of the second box body 2 corresponds to the collecting box 27 and is provided with a second material taking port 30, and the outer end of the second material taking port 30 is provided with a second gate in a matching manner. Along with the continuous increase of cloth in the collecting box 27, thereby control the height of first outside of tubes end in the collecting box 27 through the lift of control scissors fork formula automatic lifting platform to be convenient for long cloth tiling and folding in the collecting box 27.
Further, as shown in the drawing, a position measuring sensor 28 is mounted on the upper end of the side wall of the collection tank 27 in the present embodiment. The position measuring sensor 28 can detect the height of the cloth which is already tiled and folded in the collecting box 27, so that a signal is sent to the control terminal, and the control terminal controls the scissor-type automatic lifting platform to adjust the corresponding height position, thereby facilitating the folding and tiling of the subsequent cloth.
Further, as shown in the drawings, the upper end of the feeding hole 6 of the present embodiment is provided with a cover plate 31. The cover plate 31 can seal the cylindrical cavity and prevent dust from escaping.
Further, as shown in the drawings, the stiffness coefficient of the spring in the elastic expansion link 16 of the present embodiment is larger than that of the spring 15. When the wedge-shaped plate and the first arc-shaped plate are extruded, the spring 15 deforms first because the stiffness coefficient of the spring in the elastic telescopic rod 16 is larger than that of the spring 15 until the second through hole 9 is completely sealed by the first arc-shaped plate.
Furthermore, as shown in the drawings, the first air extractor of the embodiment includes a second pipe 32, the second pipe 32 penetrates through the center of one end of the cylinder 8, the second pipe 32 is connected with the cylinder 18 through a sealed bearing, one end of the second pipe 32 extends into the cylinder 18, and the other end of the second pipe 32 is communicated with the second fan through a pipeline. The inside of the cylinder 8 is pumped by the second fan and the second pipe 32 to generate negative pressure therein, and the rotation of the cylinder 8 is not affected.
Finally, it should be noted that: the above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.

Claims (10)

1. The utility model provides a leftover bits recovery processing device for tailoring which characterized in that: comprises a first box body (1), a second box body (2) is fixedly connected on the right side of the first box body (1), a cylindrical cavity (3) is arranged in the first box body (1), a first rotating shaft (4) is rotatably connected between the front side wall and the rear side wall of the cylindrical cavity (3), the first rotating shaft (4) is driven by a first driving device, a plurality of shifting plates (5) are uniformly and fixedly connected on the outer side of the first rotating shaft (4), a feeding hole (6) is arranged on the upper side of the cylindrical cavity (3), a flat narrow hole (7) is arranged at the joint of the second box body (2) and the first box body (1), the cylindrical cavity (3) is communicated with the inside of the second box body (2) by the narrow hole (7), a hollow cylinder body (8) is rotatably connected between the front side wall and the rear side wall of the second box body (2), the rotating shaft of the cylinder body (8) is driven by a second driving device, a first air exhaust device is rotatably connected at the center of one, the first air extractor can enable the interior of the barrel body (8) to generate negative pressure, a plurality of second through holes (9) are uniformly and annularly formed in the outer side of the barrel body (8), first arc-shaped plates (10) are arranged at the outer ends of the second through holes (9), the inner side walls of the first arc-shaped plates (10) can be in sealing contact fit with the outer side walls of the barrel body (8), third through holes (11) are formed in the plate surfaces of the first arc-shaped plates (10) corresponding to the second through holes (9), first pipes (12) are fixedly connected with the outer ends of the third through holes (11), the first pipes (12) can rotate to be aligned with the narrow holes (7), arc-shaped chutes (13) are formed in the outer side walls of the barrel body (8) corresponding to the first arc-shaped plates (10), sliding blocks (14) are installed in the arc-shaped chutes (13) in a matched mode, the sliding blocks (14) are fixedly connected with the corresponding first arc-shaped plates (10), and the sliding blocks (14) are, the rear side inner wall fixed mounting of second box (2) has movable rod towards elastic telescopic rod (16) of front side, and elastic telescopic rod (16) are located the left downside of barrel (8), and the movable rod outer end fixedly connected with wedge (17) of elastic telescopic rod (16), the one end of first arc (10) seted up can with wedge (17) complex inclined plane, the downside of barrel (8) is equipped with collection device.
2. The leftover material recycling device for clothing processing according to claim 1, wherein: and a second air exhaust device is arranged in the right upper corner area inside the second box body (2).
3. The leftover material recycling device for clothing processing according to claim 2, wherein: the second air extractor comprises a second arc-shaped partition plate (18), a second arc-shaped partition plate (18) with a concave surface facing the cylinder (8) is fixedly installed in the upper right corner area of the inner part of the second box body (2), the second arc-shaped partition plate (18) does not influence the normal rotation of the cylinder (8) and the first pipe (12), a first fan (19) is installed on the upper right corner of the second box body (2), a shell (20) is sleeved outside the first fan (19), an air extraction opening (21) is formed in the bottom of the shell (20), a filter screen (22) is fixedly connected in the air extraction opening (21) in a sealing manner, a fourth through hole (23) is formed in the second arc-shaped partition plate (18), the cross-sectional area of the fourth through hole (23) is smaller than that of the air extraction opening (21), the air extraction opening (21) inclines towards the upper right side, a first material taking opening (29) is formed in the side wall of the second box, the outer end of the first material taking port (29) is provided with a first gate.
4. The leftover material recycling device for clothing processing according to claim 1, wherein: arc-shaped grooves (24) are formed in the outer ends of the right sides of the narrow holes (7), arc-shaped baffle plates (25) with the surfaces provided with a plurality of small holes are installed on the outer ends of the first pipes (12) corresponding to the arc-shaped grooves (24).
5. The leftover material recycling device for clothing processing according to claim 4, wherein: the arc-shaped baffle (25) is made of elastic materials.
6. The leftover material recycling device for clothing processing according to claim 1, wherein: the collecting device comprises a scissor-type automatic lifting platform (26), the scissor-type automatic lifting platform (26) is fixedly mounted at the inner bottom of the second box body (2), a collecting box (27) is arranged at the top of the scissor-type automatic lifting platform (26), the side wall of the second box body (2) corresponds to the collecting box (27) and is provided with a second material taking port (30), and the outer end of the second material taking port (30) is matched with a second gate.
7. The leftover material recycling device for clothing processing according to claim 6, wherein: the upper end of the side wall of the collecting box (27) is provided with a position measuring sensor (28).
8. The leftover material recycling device for clothing processing according to claim 1, wherein: the upper end of the feeding hole (6) is provided with a cover plate (31).
9. The leftover material recycling device for clothing processing according to claim 1, wherein: the stiffness coefficient of the spring in the elastic telescopic rod (16) is larger than that of the spring (15).
10. The leftover material recycling device for clothing processing according to claim 1, wherein: the first air extracting device comprises a second pipe (32), the second pipe (32) penetrates through the center of one end of the cylinder body (8), the second pipe (32) is connected with the cylinder body (18) through a sealing bearing, one end of the second pipe (32) extends into the cylinder body (18), and the other end of the second pipe (32) is communicated with a second fan through a pipeline.
CN202110311794.3A 2021-03-24 2021-03-24 Leftover material recovery processing device for tailoring Active CN113104653B (en)

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CN202110311794.3A CN113104653B (en) 2021-03-24 2021-03-24 Leftover material recovery processing device for tailoring

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US3790154A (en) * 1969-05-05 1974-02-05 Gerber Garment Technology Inc Apparatus for holding sheet material and other objects during working
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CN114289773A (en) * 2021-12-20 2022-04-08 朗峰新材料启东有限公司 Automatic scrap collecting device of precision shearing machine for nanocrystalline strips
CN114289773B (en) * 2021-12-20 2022-09-30 朗峰新材料启东有限公司 Automatic scrap collecting device of precision shearing machine for nanocrystalline strips

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