CN107955976B - Automatic overturning device for hemp strips - Google Patents

Automatic overturning device for hemp strips Download PDF

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Publication number
CN107955976B
CN107955976B CN201610897645.9A CN201610897645A CN107955976B CN 107955976 B CN107955976 B CN 107955976B CN 201610897645 A CN201610897645 A CN 201610897645A CN 107955976 B CN107955976 B CN 107955976B
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China
Prior art keywords
furling
hemp
furling device
conveying belt
degree turning
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CN201610897645.9A
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CN107955976A (en
Inventor
杨政
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Hunan Xiangma Textile Co ltd
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Hunan Xiangma Textile Co ltd
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01BMECHANICAL TREATMENT OF NATURAL FIBROUS OR FILAMENTARY MATERIAL TO OBTAIN FIBRES OF FILAMENTS, e.g. FOR SPINNING
    • D01B1/00Mechanical separation of fibres from plant material, e.g. seeds, leaves, stalks
    • D01B1/10Separating vegetable fibres from stalks or leaves
    • D01B1/14Breaking or scutching, e.g. of flax; Decorticating
    • D01B1/30Details of machines
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01BMECHANICAL TREATMENT OF NATURAL FIBROUS OR FILAMENTARY MATERIAL TO OBTAIN FIBRES OF FILAMENTS, e.g. FOR SPINNING
    • D01B1/00Mechanical separation of fibres from plant material, e.g. seeds, leaves, stalks
    • D01B1/10Separating vegetable fibres from stalks or leaves
    • D01B1/14Breaking or scutching, e.g. of flax; Decorticating
    • D01B1/30Details of machines
    • D01B1/34Devices holding fibres or fibre-bearing materials during treatment
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/66Disintegrating fibre-containing textile articles to obtain fibres for re-use

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • Feeding Of Articles To Conveyors (AREA)
  • Structure Of Belt Conveyors (AREA)

Abstract

The invention relates to an automatic overturning device for a hemp strip, which comprises a furling device cavity basin, a furling device discharging pipe, a furling device lower sliding and releasing press roller, a releasing press roller bracket, a steering gear and a steering gear belt pulley, wherein the hemp strip is transmitted to the furling device discharging pipe to be changed into a vertical position after passing through the furling device cavity basin, the steering gear reversely moves to enable the other side of the hemp strip to be attached to the steering gear to finish a flanging effect, and meanwhile, the automatic overturning device also comprises a 180-degree turning conveying belt mechanism and a 180-degree turning conveying belt mechanism belt pulley, so that the hemp strip can be turned 180 degrees; the automatic hemp strip turning device has the advantages that the hemp strips can be regularly transmitted and turned over more easily, and the turned hemp strips are transmitted to the station of the same or the next beating device, so that the hemp strips can be repeatedly beaten and turned over until reaching a complete degumming state.

Description

Automatic overturning device for hemp strips
Technical Field
The invention relates to the technical field of automatic overturning by adopting a mechanical mode, in particular to a device capable of automatically overturning a hemp strip.
Background
With the development of economy and society, the demand for purely natural plant fibers has greatly increased. As an important link in plant fiber extraction, the fiber is separated from the epidermis of the stalk plant which has been pretreated in the early stage. Ramie is one of important fiber crops in China, the moisture absorption and air permeability of the fiber are about 3-5 times that of cotton fiber, and the existing fiber separation method comprises repeatedly beating the pretreated plant epidermis by adopting a nonmetal hammer or repeatedly rolling the pretreated plant epidermis by adopting a plurality of pairs of cylindrical roller rollers. For the foregoing treatment method, the reciprocating beating device described in patent 201220580564.3, which makes the plant skin not wound during beating, but needs to be manually and continuously matched with overturning the plant skin to completely separate the plant fiber, so that a great deal of manpower is consumed, and the production efficiency is very low; for the latter treatment method, the plant epidermis is easy to drop in the gap between two adjacent roller rollers, which causes the roller rollers to be blocked, the defect of the working principle causes the separating equipment to be easy to damage, the maintenance workload is large, and the actual production is not facilitated. For the treatment of plant epidermis turnover, patent 201420477418.7 discloses a ramie frame turnover machine, which drives a ramie frame to turn over by a clamping manipulator so as to turn over edges of ramie stripes; although the device solves the flanging problem of the hemp strips, the flanging amount of the hemp strips depends on the size of the hemp frame, and the practical problems of hemp strip falling, incomplete flanging, hemp strip winding and the like can occur in the rotary flanging process.
Because the fiber separation of hemp stalk, need the upset of once pass to beat and just can make plant fiber separation's more thoroughly, and after separating for the first time, hemp stalk epidermis fibrous texture becomes soft and takes the fibrous of rectangular moreover, and plant fiber under this kind of state is difficult to find accurate stress point when the upset on the one hand, on the other hand can have the condition that the upset is not thorough or twine knots. How can be complete high-efficient with beating back fibrilia overturn, the fibrilia circulation after will overturning is beaten and is overturned simultaneously.
Disclosure of Invention
In order to solve the problems, the invention provides the following solution ideas: the beating, flanging and steering actions in the hemp stalk fiber separation process are realized through an independent structure, so that after the beating device is completed, hemp strips are sent into the turnover device through a conveying belt to be flanged and steered and then sent to the beating device of the next station to be beaten, and the beating device is reciprocated until the hemp stalk fibers meeting the requirements are obtained.
The invention relates to an automatic overturning device for a hemp strip, which comprises a furling device cavity basin, a furling device discharging pipe, a furling device lower sliding releasing pressing roller, a releasing pressing roller support, a steering gear and a steering gear belt pulley, wherein one end of the furling device cavity basin is provided with an opening, the furling device discharging pipe is arranged at the opening, the furling device lower sliding releasing pressing roller is arranged above the furling device cavity basin bottom surface and keeps a gap, the direction of the furling device lower sliding releasing pressing roller is mutually perpendicular to the central axis symmetry line of the furling device cavity basin bottom surface, the furling device lower sliding releasing pressing roller is fixed through the releasing pressing roller supports at two ends, the steering gear is arranged below the furling device discharging pipe, and the steering gear belt pulley is arranged on the steering gear. The automatic turning device for the ramie stripes is characterized in that the cavity basin of the furling device is arranged to incline, wherein the position of a discharging pipe of the furling device at one end of the cavity basin of the furling device is lower than that at the other end, the position of the steering device is also inclined and the plane included angle between the steering device and the cavity basin of the furling device is smaller than 90 degrees, and the transmission direction of the steering device is opposite to the movement direction of the ramie stripes in the cavity basin of the furling device. The hemp strips are transmitted to the discharging pipe of the furling device to be changed into a vertical position after passing through the cavity basin of the furling device, and the other side of the hemp strips is stuck on the steering device to finish the flanging effect due to the reverse motion of the steering device.
Further, the automatic hemp strip overturning device further comprises a 180-degree turning conveying belt mechanism and a 180-degree turning conveying belt mechanism belt pulley, wherein the 180-degree turning conveying belt mechanism is provided with the 180-degree turning conveying belt mechanism belt pulley, the 180-degree turning conveying belt mechanism belt pulley is driven by a motor, the 180-degree turning conveying belt mechanism structure is semicircular, and one end of the 180-degree turning conveying belt mechanism is connected with one end of the steering gear, which is lower in the two ends.
Furthermore, the baffles at the two sides of the furling device cavity basin are narrowed to the pipe orifice of the furling device discharging pipe and are trapezoid.
Further, at least 1 drawing-in device lower sliding releasing press roller is arranged on the drawing-in device cavity basin, and the drawing-in device lower sliding releasing press roller is connected with a motor for control.
The invention also provides a hemp copying intelligent device, which is characterized in that: the device comprises a hemp strip beating device and a hemp strip automatic overturning device, wherein the hemp strip beating device comprises: the device comprises a motor, a frame, a transmission belt, rollers, bearing blocks, rotating shafts, elastic plates and hammers, wherein the motor is arranged on a lower frame beam of the frame, two rollers are respectively arranged at two ends of the frame, the transmission belt is wound on the two rollers, the two bearing blocks are symmetrically arranged on the frames at two sides of the transmission belt, and the rotating shafts are arranged on the two bearing blocks in a crossing way through the transmission belt; the elastic plate is erected on the rotating shaft, and two ends of the elastic plate are respectively provided with one hammer; the rotating shaft is connected with the motor through a rocker, a connecting rod and an eccentric disc; a support and a supporting shaft are further arranged between the elastic plate and the hammer, the support is fixedly connected to the end part of the elastic plate, the supporting shaft is arranged at the free end of the support, and the hammer is rotatably arranged on the supporting shaft; the elastic plate is provided with a rigid auxiliary springboard at one end close to the rotating shaft; the rocker is connected with the connecting rod, and the connecting rod is connected with the eccentric disc by adopting a spherical hinge; the automatic overturning device for the sliver comprises: the device comprises a furling device cavity basin, a furling device discharging pipe, a furling device lower sliding and releasing compression roller, a releasing compression roller bracket, a steering device and a steering device belt pulley, wherein one end of the furling device cavity basin is provided with an opening, the furling device discharging pipe is arranged at the opening, the furling device lower sliding and releasing compression roller is arranged above the furling device cavity basin bottom surface and keeps a gap, the direction of the furling device lower sliding and releasing compression roller is mutually perpendicular to the central axis symmetry line of the furling device cavity basin bottom surface, the furling device lower sliding and releasing compression roller is fixed through the releasing compression roller brackets at two ends, the steering device is arranged below the furling device discharging pipe, the steering gear is provided with a steering gear belt pulley, the furling device cavity basin is inclined, wherein the position of a furling device discharging pipe at one end of the furling device cavity basin is lower than that at the other end, the steering gear is inclined and forms an included angle smaller than 90 degrees with the plane between the furling device cavity basins, the transmission direction of the steering gear is opposite to the movement direction of the hemp strips in the furling device cavity basin, two side baffles of the furling device cavity basin narrow towards the furling device discharging pipe orifice and are trapezoid, at least 1 furling device lower sliding and releasing compression roller is arranged on the furling device cavity basin, and the furling device lower sliding and releasing compression roller is connected with a motor for controlling; the automatic turning device for the hemp strips further comprises a 180-degree turning conveying belt mechanism and a 180-degree turning conveying belt mechanism belt pulley, wherein the 180-degree turning conveying belt mechanism is provided with the 180-degree turning conveying belt mechanism belt pulley, the 180-degree turning conveying belt mechanism belt pulley is driven by a motor, the 180-degree turning conveying belt mechanism structure is semicircular, and one end of the 180-degree turning conveying belt mechanism is connected with one end of the steering gear, which is lower in two ends. The intelligent device comprises a plurality of sliver beating devices and sliver automatic overturning devices, wherein the sliver beating devices convey beaten sliver to the sliver automatic overturning devices to overturn, and then the sliver automatic overturning devices convey sliver to the same or the next sliver beating device to beat, so that the sliver beating devices reciprocate.
The invention has the advantages that:
(1) The cavity basin of the furling device can centralize and uniformly overturn the beaten hemp strips, so that the hemp strips can be overturned more easily;
(2) The releasing press roller can control the transmission speed in the process of overturning the hemp strips, so that the hemp strips are regularly transmitted and overturned;
(3) The whole overturning process utilizes the rule of reverse transportation when the hemp strips are in a vertical state, so that the hemp strips can be completely overturned;
(4) The turned hemp strips can be transmitted to the station of the same or the next beating device through the steering device, so that the hemp strips can be repeatedly beaten and turned until reaching a complete degumming state.
The intelligent equipment for copying the hemp has the advantages that the equipment can meet the requirements, the cost is greatly saved, the control of the working process is flexible, the flanging steering effect is obvious, and the intelligent equipment for copying the hemp has good portability, expansibility and practicability.
Drawings
The invention is described in further detail below with reference to the attached drawing figures, wherein:
FIG. 1 is a schematic diagram of an assembly structure of an automatic overturning device for a sliver;
FIG. 2 is a top view of the retractor basin of the automatic sliver turning device of the present invention;
FIG. 3 is a side view of the retractor basin of the automatic sliver turning device of the present invention;
FIG. 4 is a schematic view of the steering gear and 180 degree turn conveyor mechanism in an automatic sliver turning device of the present invention;
FIG. 5 is a schematic diagram of a smart device for copying hemp with a device for automatically turning over hemp strips;
FIG. 6 is a schematic diagram of the pipeline structure of the intelligent hemp copying device of the invention;
the labels shown in the above figures are: 11. the device comprises a motor, a 12 frame, a 13 conveying belt, a 14 roller, a 15 bearing seat, a 21 eccentric disc, a 22 spherical hinge, a 23 connecting rod, a 24 spherical hinge, a 25 spindle, a 26 rocker, a 27 auxiliary springboard, a 31 spring steel plate, a 32 support, a 33 supporting shaft, a 34 hammer, a 35 drawing-down sliding and releasing press roller, a 36 drawing-down press roller support, a 37 drawing-in chamber basin, a 371 drawing-in discharging pipe, a 38 steering device, a 39 steering device belt pulley, a 40 180-degree turning conveying belt mechanism and a 41-180-degree turning conveying belt mechanism belt pulley.
Description of the embodiments
The present invention will be described in further detail with reference to the following embodiments and the accompanying drawings, in order to make the objects, technical solutions and advantages of the present invention more apparent. The exemplary embodiments of the present invention and the descriptions thereof are used herein to explain the present invention, but are not intended to limit the invention.
As shown in fig. 1-3, the automatic overturning device for the hemp strips comprises a furling device cavity basin (37), a furling device discharging pipe (371), a furling device lower sliding releasing pressing roller (35), a releasing pressing roller support (36), a steering gear (38) and a steering gear belt pulley (39), wherein an opening is formed in one end of the furling device cavity basin (37), the furling device discharging pipe (371) is arranged at the opening, the furling device lower sliding releasing pressing roller (35) is arranged above the bottom surface of the furling device cavity basin (37) and keeps a gap, the direction of the furling device lower sliding releasing pressing roller (35) is perpendicular to the central axis of the bottom surface of the furling device cavity basin (37), the furling device lower sliding releasing pressing roller (35) is fixed through the releasing pressing roller supports (36) at two ends, the steering gear (38) is arranged below the furling device discharging pipe (371), and the steering gear belt pulley (39) is arranged on the steering gear (38). The automatic turning device for the hemp strips is characterized in that the cavity basin (37) of the puller is arranged to be inclined, wherein the position of a puller discharging pipe (371) at one end of the cavity basin (37) of the puller is lower than that at the other end, the position of the diverter (38) is also inclined and the plane included angle between the diverter and the cavity basin (37) of the puller is smaller than 90 degrees, and the transmission direction of the diverter (38) is opposite to the movement direction of the hemp strips in the cavity basin (37) of the puller. The hemp strips are transmitted to a discharging pipe (371) of the furling device to be changed into a vertical position after passing through a cavity basin (37) of the furling device, and the other side of the hemp strips is attached to the steering device to finish the flanging effect due to the reverse movement of the steering device (38). The baffles on two sides of the furling device cavity basin (37) are narrowed towards the pipe orifice of the furling device discharging pipe (371) and are trapezoid; at least 1 drawing-in device lower sliding releasing press roller (35) is arranged on the drawing-in device cavity basin (37), and the drawing-in device lower sliding releasing press roller (35) is connected with a motor for control.
The automatic turning device for the hemp strips as shown in fig. 4 further comprises a 180-degree turning conveying belt mechanism (40) and a 180-degree turning conveying belt mechanism belt pulley (41), wherein the 180-degree turning conveying belt mechanism (40) is provided with the 180-degree turning conveying belt mechanism belt pulley (41), the 180-degree turning conveying belt mechanism belt pulley (41) is driven by a motor, the 180-degree turning conveying belt mechanism (40) is semicircular in structure, and one end of the 180-degree turning conveying belt mechanism (40) is connected with one end of a steering gear (38) with lower positions.
As shown in fig. 5 and 6, the intelligent hemp copying equipment comprises a hemp strip beating device and a hemp strip automatic overturning device, wherein the hemp strip beating device comprises a toward motor (11), a frame (12), a transmission belt (13), a roller (14), a bearing seat (15), an eccentric disc (21), spherical hinges (22) and (24), a connecting rod (23), a rotating shaft (25), a rocker (26), an auxiliary springboard (27), a spring steel plate (31), a support (32), a supporting shaft (33) and a stick (34); the automatic overturning device for the sliver comprises a drawing-in device lower sliding releasing compression roller (35), a lower sliding releasing compression roller bracket (36), a drawing-in device cavity basin (37), a steering device conveying belt (38), a steering device belt pulley (39), a 180-degree turning conveying belt mechanism (40) and a 180-degree turning conveying mechanism driving wheel (41). The hemp strip beating device is characterized in that a motor (11), a roller (14), a transmission belt (13) and other parts are arranged on a frame (12) according to a motion relation, a rotating shaft (25) is arranged on the frame through two bearing seats (15), the bearing seats (15) are arranged on two sides of the transmission belt (13), the rotating shaft (15) stretches across the transmission belt (13), and a rigid plate-shaped auxiliary springboard (27) is welded on one side of the rotating shaft; one end of each spring steel plate is connected with a support (32), in order to be convenient to adjust, in the embodiment, the two ends of each hammer (34) are connected with the two supports connected with the spring steel plates through supporting shafts (33) by adopting bolt connection and welding or riveting, and therefore, each hammer (34) can freely rotate around the supporting shafts (33); the other end of the spring steel plate (31) of the connecting support (32) is connected to the root of the auxiliary springboard (27) welded on the rotating shaft (25), the modes of welding, riveting, bolting and the like can be adopted, the free rotation of the hammer (34) needs to be ensured, only the root of the spring steel plate (31) is fixedly connected with the root of the auxiliary springboard (27), and the other parts of the spring steel plate and the auxiliary springboard are not fixedly connected; in order to ensure the running balance, the other side of the rotating shaft is also connected with a group of hammers and spring steel plate structures; one end of the rotating shaft (25) is provided with a rocker (26), and the rocker (26) is fixedly connected with the rotating shaft (25) in a key way; the other end of the rocker (26) is connected with one end of the connecting rod (23) by adopting a spherical hinge (24). The other end of the connecting rod (23) is connected with an eccentric hole on the eccentric disc (21) through a spherical hinge (22). The eccentric disc (21) is arranged on the output shaft of the motor (11); when the motor (11) rotates, the eccentric disc (21) drives the connecting rod (23) to do plane motion, and then drives the rocker (26) to do reciprocating swing. The rocker (26) drives the rotating shaft (25) to reciprocate, and the spring steel plate (31) and the support (32) and the supporting shaft (33) and the hammer (34) which are connected with the rocker drive the fixed shaft of the rotating shaft (25) to reciprocate, so that the hammer (34) can repeatedly strike the conveying belt (13). The auxiliary springboard (27) can make up for the defect of rigidity of the spring steel plate (31) when the hammer (34) moves upwards again, so that the quick lifting of the hammer (34) is realized. The symmetrical structure of the hammers and the steel plates on two sides of the rotating shaft (25) ensures that the operation is more balanced, the beating times are increased, and the beating efficiency is improved. When the hemp strips are knocked and scattered to the port through the conveyer belt, the hemp strips are folded by sliding downwards through a cavity basin of a folding device (37), fall into a steering gear belt (38), the steering gear belt (39) conveys the hemp strips onto a 180-degree turning conveyer belt, and then the 180-degree turning conveyer conveys the hemp strips to the next station for flanging and beating.
It should be noted that, in this embodiment, only a common installation structure form and a set of station rotating shafts and flanging structures are provided, and for those skilled in the art, local modification and finishing of this embodiment according to professional knowledge and common knowledge should be considered as the protection scope of this patent.
While the foregoing is directed to embodiments of the present invention, other and further details of the invention may be had by the foregoing description and the accompanying drawings, wherein, the invention is shown and described, it is to be understood that the invention is not limited to the specific embodiments of the invention. In addition, although specific terms are used in the present specification, these terms are for convenience of description only and do not limit the present invention in any way.

Claims (1)

1. The automatic overturning device for the hemp strips comprises a furling device cavity basin, a furling device discharging pipe, a furling device lower sliding and releasing pressing roller, a furling device pressing roller support, a steering device and a steering device belt pulley, and is characterized in that one end of the furling device cavity basin is provided with an opening, the furling device discharging pipe is arranged at the opening, the furling device lower sliding and releasing pressing roller is arranged above the furling device cavity basin bottom surface and keeps a gap, the direction of the furling device lower sliding and releasing pressing roller is mutually perpendicular to the center axis symmetry line of the furling device cavity basin bottom surface, the furling device lower sliding and releasing pressing roller is fixed through the release pressing roller supports at two ends, the steering device is arranged below the furling device discharging pipe, the steering device is provided with the steering device belt pulley, the furling device cavity basin is arranged to incline, the position of the furling device discharging pipe at one end of the furling device cavity basin is lower than the other end, the position of the steering device is also inclined and forms a plane included angle between the furling device cavity basin and the furling device cavity basin is smaller than 90 degrees, and the transmission direction of the steering device is opposite to the movement direction of the hemp strips in the furling device cavity; the baffles on two sides of the cavity basin of the furling device are narrowed towards the pipe orifice of the discharging pipe of the furling device and are trapezoid; at least 1 drawing device lower sliding release compression roller is arranged on the drawing device cavity basin, and the drawing device lower sliding release compression roller is connected with a motor for control;
the steering gear is characterized by further comprising a 180-degree turning conveying belt mechanism and 180-degree turning conveying belt mechanism belt pulleys, wherein the 180-degree turning conveying belt mechanism is provided with the 180-degree turning conveying belt mechanism belt pulleys, the 180-degree turning conveying belt mechanism belt pulleys are driven by a motor, the 180-degree turning conveying belt mechanism structure is semicircular, and one end of the 180-degree turning conveying belt mechanism is connected with one end of the steering gear, which is lower in the two ends.
CN201610897645.9A 2016-10-15 2016-10-15 Automatic overturning device for hemp strips Active CN107955976B (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
CN201610897645.9A CN107955976B (en) 2016-10-15 2016-10-15 Automatic overturning device for hemp strips

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CN107955976A CN107955976A (en) 2018-04-24
CN107955976B true CN107955976B (en) 2023-08-15

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Citations (8)

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Publication number Priority date Publication date Assignee Title
GB191029011A (en) * 1910-12-14 1911-11-23 George Martin Sime Improvements in Carding Machines for Flax, Hemp and Jute or similar Fibres.
GB592978A (en) * 1944-07-12 1947-10-06 Thomas C Taggart Improvements relating to apparatus for forming sliver rolls
CN2459909Y (en) * 2000-12-15 2001-11-21 陈恢渡 Husks hulling machine
CN101974805A (en) * 2010-11-15 2011-02-16 东华大学 Roller extrusion type releasing and separating device and method for ramie
CN201894944U (en) * 2010-12-07 2011-07-13 中国重型机械研究院有限公司 Swing arm fine crushing double roll machine
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Publication number Priority date Publication date Assignee Title
GB191029011A (en) * 1910-12-14 1911-11-23 George Martin Sime Improvements in Carding Machines for Flax, Hemp and Jute or similar Fibres.
GB592978A (en) * 1944-07-12 1947-10-06 Thomas C Taggart Improvements relating to apparatus for forming sliver rolls
CN2459909Y (en) * 2000-12-15 2001-11-21 陈恢渡 Husks hulling machine
CN101974805A (en) * 2010-11-15 2011-02-16 东华大学 Roller extrusion type releasing and separating device and method for ramie
CN201894944U (en) * 2010-12-07 2011-07-13 中国重型机械研究院有限公司 Swing arm fine crushing double roll machine
CN202064041U (en) * 2011-01-14 2011-12-07 湖南明星麻业股份有限公司 Fiber opener
CN102963667A (en) * 2012-11-30 2013-03-13 无锡杰思物流设备有限公司 Tail end baffle mechanism for conveyor
CN206127487U (en) * 2016-10-15 2017-04-26 杨政 Automatic turning device of ramie stripes and copy numb smart machine thereof

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* Cited by examiner, † Cited by third party
Title
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