Wool conveying mechanism
By designing a wool transport mechanism, the problem of wool residue in wool conveying equipment was solved, speed matching with wool combing equipment was achieved, processing efficiency and quality were improved, and equipment safety was enhanced.
Patent Information
- Application Number
- CN202520458040.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-17
AI Technical Summary
Wool can easily remain at the bottom of the housing of wool conveying equipment, causing wool from different batches to mix and resulting in a decline in wool quality.
A wool transport mechanism was designed, including a frame, a conveying component and a feeding component. Through the cooperation of the conveying channel and the conveying unit, the speed is matched with that of the carding equipment, and the wool at the bottom of the conveying chamber is removed by the pushing unit to avoid residue.
It improves wool processing efficiency, avoids wool residue during transportation, ensures wool quality, and enhances equipment safety and protects the operating environment.
Smart Images

Figure CN223852872U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wool transportation equipment technical field especially relates to a wool transportation mechanism. BACKGROUND
[0002] Wool is a common textile raw material, which has good warmth retention performance.
[0003] In the production process of wool, the wool is first cleaned by a cleaning device to remove grease, dust and other impurities in the wool, then the cleaned wool is opened by an opening device, then the wool fibers are arranged in parallel to form a wool web by a carding device, and finally the carded wool web is stretched and twisted by a roving device to form a roving.
[0004] At present, due to the characteristics of wool, the processing time of the carding device is much longer than that of the opening device, so the opening device is usually used in combination with two carding devices, and a wool conveying device needs to be installed between the opening device and the carding device to meet the wool conveying requirements. Although this kind of wool conveying device can be used, the bottom of the box body of the wool conveying device is easy to leave wool, which causes the mixing of wool of different batches and the decline of wool quality. SUMMARY
[0005] Therefore, the utility model provides a wool transportation mechanism to solve the problem that the bottom of the box body of the wool conveying device is easy to leave wool, which causes the mixing of wool of different batches and the decline of wool quality.
[0006] In order to achieve the above purpose, the utility model provides a wool transportation mechanism, which comprises a rack, a conveying channel arranged along the length direction of the rack, a conveying assembly, a pushing assembly fixed on the conveying unit, the conveying unit is arranged in the conveying channel by sliding mode and can reciprocate along the direction of the conveying channel, the driving unit is fixedly connected with the rack, the driving unit comprises a driving end for driving the conveying unit to move, the conveying unit comprises a conveying cavity, the top of the conveying cavity is provided with a feeding port penetrating the conveying unit, the bottom of the conveying cavity is provided with a discharging port penetrating the conveying unit, the pushing unit has a pushing end which can move along the length direction of the rack, the pushing end is arranged in the conveying cavity by sliding mode, a feeding assembly is fixed on the top of the rack and has a feeding channel arranged along the vertical direction, and the feeding channel can communicate with the feeding port.
[0007] In an optional example, the conveying channel comprises guide rails fixedly connected with the rack, and the side wall of the conveying unit is fixed with rolling wheels which are installed in the guide rails by sliding mode.
[0008] In an optional example, the side of the conveying unit is provided with a mounting cavity, the pushing unit comprises a pushing guide rod fixedly arranged in the mounting cavity along the length direction of the rack, the pushing end comprises a pushing block and sliding blocks fixed to both ends of the pushing block, the pushing block is arranged in the conveying cavity and can slide along the bottom of the conveying cavity, and the sliding blocks are sleeved on the outer wall of the pushing guide rod in a sliding manner.
[0009] In an optional example, the pushing block is provided with an inclined portion towards one end of the other group of conveying units.
[0010] In an optional example, the pushing unit comprises a pushing motor fixedly connected with the conveying frame, a pushing guide rod, a driving pulley, a driven pulley, a transmission chain, two traction guide wheels and at least four chain wheels, the pushing guide rod is fixedly arranged in the mounting cavity along the length direction of the rack, the pushing motor is fixedly connected with the conveying unit, the driving pulley is fixed to the output shaft of the pushing motor, the four chain wheels are fixed in the mounting cavity in a rotating manner, the four chain wheels are symmetrically arranged with the center line of the long side of the conveying unit as the center and two chain wheels as a group, the two traction guide wheels are fixedly connected with the sliding blocks in a rotating manner, one end of the transmission chain is fixedly connected with one side wall in the mounting cavity, the other end of the transmission chain passes through a group of traction guide wheels, a group of chain wheels, another group of chain wheels, another traction guide wheel in sequence in a guiding manner and is fixedly connected with the other side wall in the mounting cavity, the driven pulley is fixedly connected with one chain wheel, and the driving pulley and the driven pulley are drivingly connected in a belt transmission manner.
[0011] In an optional example, the conveying unit comprises a rectangular conveying frame, an inner plate group is fixedly arranged in the conveying frame, the inner plate group and the conveying frame combine to form a conveying cavity, and an outer plate group is fixedly arranged outside the conveying frame, the outer plate group and the inner plate group combine to form a mounting cavity.
[0012] In an optional example, the inner plate group comprises four side plates, a top plate and a bottom plate, the four side plates are fixed to the four side walls of the conveying frame perpendicular to the horizontal plane, the top plate is fixed to the upper end of the conveying frame, a top through slot penetrating through the top plate is formed at the upper end of the top plate, the feeding port comprises a guide pipe fixedly connected with the top plate, the guide pipe is in communication with the conveying cavity, the discharging port comprises a discharging plate and a discharging telescopic cylinder, the bottom plate is fixedly connected with the bottom of the conveying frame, the discharging plate is connected with the bottom plate in a rotating manner, one end of the discharging telescopic cylinder is connected with the bottom plate in a rotating manner, and the other end of the discharging telescopic cylinder is connected with the discharging plate in a rotating manner.
[0013] In an optional example, the feeding assembly comprises an upper end plate fixedly connected with the rack, a lower end of the upper end plate is further provided with a partition plate in a sliding manner, the partition plate is used for separating the feeding channel from the feeding port, a partition telescopic cylinder is fixedly arranged at the lower end of the upper end plate, and a telescopic end of the partition telescopic cylinder is fixedly connected with the partition plate.
[0014] In an optional example, a feeding guide rod is arranged at the lower end of the upper end plate along the length direction of the rack, a guide sliding block is fixedly arranged on the partition plate, a guide sliding hole is arranged on the guide sliding block, and the feeding guide rod is inserted into the guide sliding hole in a sliding manner.
[0015] In an optional example, the driving unit comprises a driving motor fixedly connected with the rack, the driving end comprises a driving gear, the driving gear is fixedly connected with an output shaft of the driving motor in a key connection manner, and the upper end of the conveying unit is fixedly provided with a driven rack, and the driving gear is engaged with the driven rack.
[0016] The beneficial effects of the present application are as follows: through the cooperation of the conveying channel and the conveying unit, the opening equipment can be matched with the running speed of the carding equipment, the waiting of the opening equipment is avoided, the processing time of the wool is saved, the processing efficiency of the wool is improved, and through the increase of the pushing unit, the wool at the bottom of the conveying cavity can be effectively removed, the residue of the wool at the bottom of the conveying cavity is avoided, and the production quality of the wool is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the present application or prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description only illustrate the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0018] Figure 1 It is a front view of the embodiment of the present application.
[0019] Figure 2 It is a perspective structural schematic view of the embodiment of the present application.
[0020] Figure 3 It is a sectional view of the conveying unit in the embodiment of the present application.
[0021] Figure 4 It is an exploded structural schematic view of the conveying unit in the embodiment of the present application.
[0022] Figure 5 It is an internal structural schematic view of the conveying unit in the embodiment of the present application.
[0023] Figure 6A schematic diagram of a three-dimensional structure of the pushing block in the embodiment of the utility model;
[0024] Figure 7 A schematic diagram of the installation structure of the discharge plate in the embodiment of the utility model;
[0025] Figure 8 A schematic diagram of the explosion structure of the feeding assembly in the embodiment of the utility model;
[0026] Figure 9 A schematic diagram of the three-dimensional structure of the driving unit in the embodiment of the utility model.
[0027] In the drawing, marks are: 1, rack; 101, conveying channel; 11, guide rail; 2, feeding assembly; 201, feeding channel; 21, upper end plate; 22, isolation plate; 23, separation telescopic cylinder; 24, feeding guide rod; 25, guide sliding block; 3, driving unit; 31, driving motor; 32, driving gear; 33, driven rack; 4, conveying unit; 401, conveying cavity; 402, feeding port; 403, discharge port; 4031, discharge plate; 4032, discharge telescopic cylinder; 404, installation cavity; 41, rolling wheel; 42, conveying frame; 43, outer plate group; 44, side plate; 45, top plate; 46, bottom plate; 5, pushing unit; 51, pushing end; 52, pushing guide rod; 511, sliding block; 512, pushing block; 5121, inclined part; 53, pushing motor; 54, driving pulley; 55, driven pulley; 56, transmission chain; 57, traction guide wheel; 58, chain wheel. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical scheme and advantages of the utility model more clearly and clearly, the following is further detailed in combination with specific embodiments.
[0029] It should be noted that, unless otherwise defined, the technical terms or scientific terms used in the utility model should be understood as the usual meaning by those skilled in the art to which the utility model belongs. The "first", "second" and similar words used in the utility model do not represent any order, quantity or importance, but are only used to distinguish different components. "Include" or "contain" and similar words mean that the elements or objects before the word cover the elements or objects listed after the word and their equivalents, and do not exclude other elements or objects. "Connection" or "connection" and similar words are not limited to physical or mechanical connection, but can include electrical connection, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to represent the relative positional relationship, when the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0030] In an embodiment, please refer toFigures 1 to 3 The utility model provides a wool conveying mechanism, including: frame 1, conveying assembly and feed assembly 2.
[0031] Frame 1 has a conveying channel 101 along the length direction of frame 1, wherein the two ends of conveying channel 101 are respectively matched with the wool inlet end of the external combing device, and the wool enters the combing device through conveying channel 101 for combing process.
[0032] The conveying assembly includes a driving unit 3, two groups of conveying units 4 fixedly connected with each other, and a pushing unit 5 fixed on the conveying units 4, the conveying units 4 are slidably arranged in the conveying channel 101 and can reciprocate along the direction of the conveying channel 101, the driving unit 3 is fixedly connected with the frame 1, the driving unit 3 includes a driving end for driving the conveying units 4 to move, the conveying units 4 include a conveying cavity 401, the top of the conveying cavity 401 is provided with a feed port 402 penetrating through the conveying unit 4, the bottom of the conveying cavity 401 is provided with a discharge port 403 penetrating through the conveying unit 4, the pushing unit 5 has a pushing end 51 capable of moving along the length direction of the frame 1, and the pushing end 51 is slidably arranged in the conveying cavity 401, wherein the wool after the preliminary opening treatment can be matched with the running speed of the combing device after being stored and transported by the two groups of conveying units 4, and the pushing unit 5 can effectively remove the wool at the bottom of the conveying cavity 401.
[0033] The feed assembly 2 is fixed on the top of the frame 1 and has a feed channel 201 arranged in the vertical direction, and the feed channel 201 can be in communication with the feed port 402, wherein the feed channel 201 is connected with the external opening device, the wool flows into the feed channel 201 after being opened by the opening device, and the entry of the wool is controlled through the feed channel 201.
[0034] Specifically, the utility model cooperates the conveying channel 101 with the conveying unit 4, so that the opening device can be matched with the running speed of the combing device, the waiting of the opening device is avoided, the processing time of the wool is saved, the processing efficiency of the wool is improved, the pushing unit 5 is added, the wool at the bottom of the conveying cavity 401 can be effectively removed, the residue of the wool at the bottom of the conveying cavity 401 is avoided, and the production quality of the wool is reduced.
[0035] In an optional example, referring to Figures 1 to 4 As shown in the figure, the conveying channel 101 includes guide rails 11 fixedly connected with the frame 1 by bolt connection, and the side walls of the conveying units 4 are fixedly provided with rolling wheels 41 by bolt connection, and the rolling wheels 41 are slidably installed in the guide rails 11.
[0036] Specifically, the example realizes the sliding of the conveying unit 4 through the cooperation of the guide rail 11 and the rolling wheel 41, and ensures the stability and accuracy of the conveying unit 4 during operation.
[0037] In an optional example, referring to Figures 1 to 5 As shown, the side of the conveying unit 4 is provided with a mounting cavity 404, the pushing unit 5 includes a pushing guide rod 52 fixedly arranged in the mounting cavity 404 along the length direction of the rack 1, the pushing end 51 includes a pushing block 512 and sliding blocks 511 fixed to both ends of the pushing block 512 by means of bolt connection, the sliding blocks 511 are arranged in the mounting cavity 404, the pushing block 512 is arranged in the conveying cavity 401 and can slide along the bottom of the conveying cavity 401, and the sliding blocks 511 are sleeved on the outer wall of the pushing guide rod 52 by sliding. The sliding blocks 511 are provided with pushing sliding holes, and the pushing guide rod 52 is inserted into the pushing sliding holes by sliding. A telescopic protective cover is fixed in the mounting cavity 404 along the length direction of the rack 1, the sliding blocks 511 are connected with the pushing guide rod 52 by sliding through the protective cover, and the protective cover can improve the sealing performance of the conveying cavity 401.
[0038] Specifically, the example facilitates the installation of other structures through the mounting cavity 404 added to the side of the conveying unit 4, and the mounting cavity 404 can effectively prevent the wool from flying, thereby ensuring the safety of the wool processing equipment.
[0039] In an optional example, referring to Figures 1 to 6 As shown, the pushing block 512 is provided with an inclined portion 5121 at one end of the pushing block 512 facing the other group of conveying units 4. The one end of the pushing block 512 facing the discharge port 403 forms a 90° angle, and the inclined portion 5121 and the bottom of the conveying cavity 401 form an angle greater than 90°.
[0040] Specifically, the pushing block 512 needs to reciprocate in the conveying cavity 401 in the example, when the pushing block 512 moves towards the direction close to the discharge port 403, the pushing block 512 can push the wool at the bottom of the conveying cavity 401 to move towards the discharge port 403, and when the pushing block 512 moves away from the discharge port 403, the inclined portion 5121 can cut into the wool from below. The wool moves along the surface of the pushing block 512 under the guidance of the inclined portion 5121, thereby avoiding the wool at the bottom of the conveying cavity 401 being squeezed when the pushing block 512 moves in the opposite direction.
[0041] In an optional example, referring to Figures 1 to 5As shown, the pushing unit 5 comprises a pushing motor 53 fixedly connected with the conveying frame 42, a driving pulley 54, a driven pulley 55, a transmission chain 56, two traction guide wheels 57 and at least four chain wheels 58. The pushing motor 53 is fixedly connected with the outer wall of the conveying unit 4 by screw connection. The driving pulley 54 is fixed on the output shaft of the pushing motor 53 by key connection. The four chain wheels 58 are fixed in the mounting cavity 404 by shaft connection. The four chain wheels 58 are symmetrically arranged with the long side centerline of the conveying unit 4 as the center and two chain wheels 58 as a group. The two traction guide wheels 57 are fixedly connected with the upper end of the sliding block 511 by shaft connection. One end of the transmission chain 56 is fixedly connected with one side wall in the mounting cavity 404 by screw connection. The other end of the transmission chain 56 is first guided by one traction guide wheel 57, then guided by a group of chain wheels 58, then guided by another group of chain wheels 58, and finally fixedly connected with the other side wall in the mounting cavity 404 by another traction guide wheel 57. The driven pulley 55 is fixedly connected with one chain wheel 58. The driving pulley 54 and the driven pulley 55 are drivingly connected by belt transmission. The rotation centerlines of the traction guide wheels 57 and the chain wheels 58 are arranged along the width direction of the rack 1. The transmission chain 56 forms an inverted convex structure after being guided.
[0042] Specifically, when the pushing motor 53 works in this example, the pushing motor 53 drives the driving pulley 54 to rotate, the driving pulley 54 drives the driven pulley 55 to rotate, the driven pulley 55 drives one chain wheel 58 to rotate, the chain wheel 58 drives the transmission chain 56 to move, the transmission chain 56 drives the traction guide wheel 57 to move, and the traction guide wheel 57 drives the sliding block 511 to move, so as to realize the reciprocating movement of the pushing block 512. The pushing unit 5 has the advantages of stable transmission and long service life. When the pushing unit 5 fails, the pushing motor 53 is effectively protected.
[0043] In an optional example, referring to Figures 1 to 7 As shown, the conveying unit 4 comprises a rectangular conveying frame 42. An inner plate group is fixed in the conveying frame 42 by screw connection. The inner plate group and the conveying frame 42 combine to form a conveying cavity 401. An outer plate group 43 is fixed outside the conveying frame 42 by screw connection. The outer plate group 43 and the inner plate group combine to form a mounting cavity 404.
[0044] Specifically, the design of splitting the conveying unit 4 into the conveying frame 42, the inner plate group and the outer plate group 43 can effectively reduce the manufacturing difficulty of the conveying unit 4 and reduce the manufacturing cost of the conveying unit 4.
[0045] In an optional example, referring to Figures 1 to 7As shown, the inner plate set includes four side plates 44, a top plate 45 and a bottom plate 46. The four side plates 44 are fixed to the four vertical walls of the conveying frame 42 by bolting. The top plate 45 is fixed to the upper end of the conveying frame 42 by bolting. The upper end of the top plate 45 is provided with a top through slot extending through the top plate 45. The feeding port 402 includes a guide pipe fixedly connected with the top plate 45 by bolting. The guide pipe is in communication with the conveying cavity 401. The discharging port 403 includes a discharging plate 4031 and a discharging telescopic cylinder 4032. The bottom plate 46 is fixedly connected with the bottom of the conveying frame 42. The discharging plate 4031 is connected with the bottom plate 46 by a rotating shaft. One end of the discharging telescopic cylinder 4032 is connected with the bottom plate 46 by a rotating shaft. The other end of the discharging telescopic cylinder 4032 is connected with the discharging plate 4031 by a rotating shaft. The rotating center lines of the discharging plate 4031 and the discharging telescopic cylinder 4032 are arranged along the width direction of the rack 1.
[0046] Specifically, the wool is prevented from scattering during the switching of the conveying unit 4, the working environment of the operator is protected, and the safety of the equipment is improved.
[0047] In an optional example, referring to Figures 1 to 8 As shown, the feeding assembly 2 includes an upper end plate 21 fixedly connected with the rack 1 by bolting. The lower end of the upper end plate 21 is further provided with a partition plate 22 installed by sliding. The partition plate 22 is used to separate the communication between the feeding channel 201 and the feeding port 402. The lower end of the upper end plate 21 is fixedly provided with a partition telescopic cylinder 23. The telescopic end of the partition telescopic cylinder 23 is fixedly connected with the partition plate 22 by bolting.
[0048] Specifically, the wool is prevented from scattering during the switching of the conveying unit 4, the working environment of the operator is protected, and the safety of the equipment is improved.
[0049] In an optional example, referring to Figures 1 to 8 As shown, the lower end of the upper end plate 21 is fixedly provided with a feeding guide rod 24 arranged along the length direction of the rack 1 by bolting. The partition plate 22 is fixedly provided with a guide sliding block 25. The guide sliding block 25 is provided with a guide sliding hole. The feeding guide rod 24 is inserted into the guide sliding hole by sliding.
[0050] Specifically, the example realizes the stable movement of the upper end plate 21 through the cooperation of the feeding guide rod 24 and the guide slider 25, facilitates the disassembly and maintenance of the feeding assembly 2.
[0051] In an optional example, referring to Figures 1 to 8 As shown, the driving unit 3 comprises a driving motor 31 fixedly connected with the rack 1 through bolt connection, the driving end comprises a driving gear 32, the driving gear 32 is sleeved on the outer wall of the output shaft of the driving motor 31 through key connection, and the upper end of the conveying unit 4 is fixedly provided with a driven rack 33 through bolt connection.
[0052] Specifically, the example realizes the stable movement of the upper end plate 21 through the cooperation of the feeding guide rod 24 and the guide slider 25, facilitates the disassembly and maintenance of the feeding assembly 2.
[0053] In general, the utility model discloses a conveying channel 101 and the cooperation of conveying unit 4, make the opening equipment can be matched with the operating speed of the combing equipment, avoid the waiting of opening equipment, save the processing time of wool, improve the processing efficiency of wool, and through increasing push unit 5, can effectively remove the wool at the bottom of conveying cavity 401, avoid the residue of wool at the bottom of conveying cavity 401, reduce the production quality of wool, simultaneously through the installation cavity 404 of increasing in the side portion of conveying unit 4, facilitate the installation of other structures, and installation cavity 404 can effectively avoid the floating of wool, guarantee the safety of wool processing equipment.
[0054] Those skilled in the art will understand that the above discussion of any embodiment is only exemplary and is not intended to suggest the scope (including claims) of the utility model is limited to these examples; under the thought of the utility model, the above embodiment or the technical features in different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes of different aspects of the utility model as described above, for the sake of brevity, they are not provided in detail.
[0055] The utility model aims at covering all such alternatives, modifications and variations falling within the broad scope of the appended claims. Therefore, any omission, modification, equivalent replacement, improvement, etc. made in the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A wool conveying mechanism characterised by, The utility model relates to a kind of conveying device, including: Rack (1) with a conveying channel (101) being arranged along the length direction of rack (1); Conveying assembly, including drive unit (3) and two groups of mutually fixed connection conveying unit (4), push unit (5) fixed on conveying unit (4), the conveying unit (4) is installed in conveying channel (101) by sliding mode, and can reciprocatingly move along the direction of conveying channel (101), the drive unit (3) is fixedly connected with rack (1), the drive unit (3) includes the drive end for driving conveying unit (4) to move, the conveying unit (4) includes conveying cavity (401), the top of conveying cavity (401) is provided with feed inlet (402) passing through conveying unit (4), the bottom of conveying cavity (401) is provided with discharge outlet (403) passing through conveying unit (4), the push unit (5) has a push end (51) that can move along the length direction of rack (1), the push end (51) is installed in conveying cavity (401) by sliding mode; Feed assembly (2) is fixed on the top of rack (1), with a feed channel (201) being arranged along the vertical direction, the feed channel (201) can be communicated with feed inlet (402).
2. A wool conveying mechanism according to claim 1, characterised in that, The conveying channel (101) includes guide rail (11) fixedly connected with rack (1), the side wall of conveying unit (4) is fixed with rolling wheel (41), the rolling wheel (41) is installed in guide rail (11) by sliding mode.
3. A wool transport mechanism according to claim 2, characterised in that, The side of conveying unit (4) is provided with mounting cavity (404), the push unit (5) includes push guide rod (52) fixedly installed in mounting cavity (404) along the length direction of rack (1), the push end (51) includes push block (512) and sliding block (511) fixed on both ends of push block (512), the push block (512) is arranged in conveying cavity (401), and can slide along the bottom of conveying cavity (401), the sliding block (511) is sleeved on the outer wall of push guide rod (52) by sliding mode.
4. A wool transport mechanism according to claim 3, characterised in that, The push block (512) is provided with inclined portion (5121) towards one end of another conveying unit (4).
5. The wool transport mechanism of claim 3, wherein, The pushing unit (5) comprises a pushing motor (53) fixedly connected with the conveying frame (42), a pushing guide rod (52), a driving pulley (54), a driven pulley (55), a transmission chain (56), two traction guide wheels (57) and at least four chain wheels (58), the pushing guide rod (52) is fixedly arranged in the installation cavity (404) along the length direction of the rack (1), the pushing motor (53) is fixedly connected with the conveying unit (4), the driving pulley (54) is fixed on the output shaft of the pushing motor (53), the four chain wheels (58) are all fixed in the installation cavity (404) by rotation, the four chain wheels (58) are symmetrically arranged with the long side center line of the conveying unit (4) as the center and two chain wheels (58) as a group, the two traction guide wheels (57) are fixedly connected with the sliding block (511) by rotation, one end of the transmission chain (56) is fixedly connected with one side wall in the installation cavity (404), the other end of the transmission chain (56) is guided through a group of traction guide wheels (57), a group of chain wheels (58), another group of chain wheels (58) and another traction guide wheel (57) in sequence and is fixedly connected with the other side wall in the installation cavity (404), the driven pulley (55) is fixedly connected with one chain wheel (58), and the driving pulley (54) and the driven pulley (55) are drivingly connected through belt transmission.
6. The wool transport mechanism of claim 2, wherein, The conveying unit (4) comprises a rectangular conveying frame (42), the conveying frame (42) is fixedly provided with an inner plate group, the inner plate group and the conveying frame (42) are combined to form a conveying cavity (401), and the conveying frame (42) is fixedly provided with an outer plate group (43).
7. A wool transport mechanism according to claim 6, characterised in that, The inner plate group comprises four side plates (44), a top plate (45) and a bottom plate (46), the four side plates (44) are fixed to the four side walls of the conveying frame (42) perpendicular to the horizontal plane, the top plate (45) is fixed to the upper end of the conveying frame (42), the upper end of the top plate (45) is provided with a top through slot penetrating through the top plate (45), the feeding port (402) comprises a guide pipe fixedly connected with the top plate (45), the guide pipe is in communication with the conveying cavity (401), the discharging port (403) comprises a discharging plate (4031) and a discharging telescopic cylinder (4032), the bottom plate (46) is fixedly connected with the bottom of the conveying frame (42), the discharging plate (4031) is rotatably connected with the bottom plate (46), one end of the discharging telescopic cylinder (4032) is rotatably connected with the bottom plate (46), and the other end of the discharging telescopic cylinder (4032) is rotatably connected with the discharging plate (4031).
8. The wool transport mechanism of claim 1, wherein, The feeding assembly (2) comprises an upper end plate (21) fixedly connected with the rack (1), the lower end of the upper end plate (21) is further provided with a partition plate (22) in a sliding mode, the partition plate (22) is used for separating the communication between the feeding channel (201) and the feeding port (402), the lower end of the upper end plate (21) is fixedly provided with a partition telescopic cylinder (23), and the telescopic end of the partition telescopic cylinder (23) is fixedly connected with the partition plate (22).
9. A wool transport mechanism according to claim 8, characterised in that, The lower end of the upper end plate (21) is fixedly provided with a feeding guide rod (24) arranged along the length direction of the rack (1), the partition plate (22) is fixedly provided with a guide sliding block (25), the guide sliding block (25) is provided with a guide sliding hole, and the feeding guide rod (24) is inserted into the guide sliding hole in a sliding mode.
10. The wool transport mechanism of claim 1, wherein, The driving unit (3) comprises a driving motor (31) fixedly connected with the rack (1), the driving end comprises a driving gear (32), the driving gear (32) is fixedly connected with the output shaft of the driving motor (31) in a key connection mode, and the upper end of the conveying unit (4) is fixedly provided with a driven rack (33), and the driving gear (32) is engaged with the driven rack (33).