Impurity removal system for refining cotton
11459674 ยท 2022-10-04
Assignee
Inventors
Cpc classification
International classification
Abstract
An impurity-removal system for refining cotton is provided. In the system, the bottom of the first bin shell is open, and the top of the first bin shell is provided with a first discharge opening, the air inlet of the first induced draft fan communicates with through a first air duct. The front wall of the first bin shell is provided with a first feeding opening, from which the rear of the conveying mechanism penetrates into the first bin shell, and the pressuring roller is installed on the first feeding opening of the first bin shell, and located above the mechanism. The first opening roller is movably installed in the first bin shell, located at the rear of the conveying mechanism, and first saw teeth in a row are set on the periphery of the first opening roller. The first motor is drivingly connected with the first opening roller.
Claims
1. An impurity removal system for refining cotton, comprising an opening-and-impurity-removal mechanism (100), a gravity impurity-removal mechanism (200), a drum impurity-removal mechanism (300) and a secondary opening-and-impurity-removal mechanism (400), wherein, the opening-and-impurity-removal mechanism (100) comprises a first bin shell (1), a first induced draft fan (2), a conveying mechanism (60), a pressing roller (3), a first opening roller (4), a second opening roller (5), a first motor (6), a second motor (7), a screw rod (8), a sliding seat (9), a first rotary shaft (10), a third motor (11), a fourth motor (12), a first bottom plate (13) and a second bottom plate (14), a bottom of the first bin shell (1) is open, and a top of the first bin shell (1) is provided with a first discharge opening (16), an air inlet of the first induced draft fan (2) communicates with the first discharge opening (16) through a first air duct (17), a front wall of the first bin shell (1) is provided with a first feeding opening (18), from which a rear part of the conveying mechanism (60) penetrates into the first bin shell (1), the pressuring roller (3) is movably installed on the first feeding opening (18) of the first bin shell (1), and located above the conveying mechanism (60), the first opening roller (4) is movably installed in the first bin shell (1), located at a rear end of the conveying mechanism (60), and first saw teeth (21) are set on a periphery of the first opening roller (4), the first motor (6) is connected with the first opening roller (4), the second opening roller (5) is movably installed in the first bin shell (1), and second saw teeth (23) are set on a periphery of the second opening roller (5), the second motor (7) is connected with the second opening roller (5), the first bottom plate (13) and the second bottom plate (14) are respectively fixedly installed in the first bin shell (1) below the first opening roller (4) and the second opening roller (5), the first bottom plate (13) and the second bottom plate (14) respectively present an arc shape corresponding to the first opening roller (4) and the second opening roller (5), an impurity-discharging hole (24) is set in the second bottom plate (14), an inner top of the first bin shell (1) is provided with a pair of supporting plates (40), between which a guiding column (41) is set, the third motor (11) is fixedly installed on an outer wall of the first bin shell (1), the screw rod (8) is movably installed on the pair of supporting plates (40), and one end of the screw rod (8) protrudes from the first bin shell (1) and is connected with the third motor (11), a through hole (43) and a screw hole (44) are set in the sliding seat (9), which movably encircles the guiding column (41) through the through hole (43), and the screw rod (8) is rotationally set in the screw hole (44) of the sliding seat (9), the first rotary shaft (10) is movably installed on the sliding seat (9), on which the fourth motor (12) is fixedly installed, and is connected to the first rotary shaft (10), and stirring rods (47) in a row are set on the first rotary shaft (10), the gravity impurity-removal mechanism (200) comprises a second bin shell (A1), a sixth motor (A2), a middle shaft (A3), a sieving hopper (A4), a seventh motor (A5), a second rotary shaft (A6), a cam (A7), a pulley (A8), a covering plate (A9) and a second induced draft fan (A10), a second feeding opening (A19) is set on a side of the second bin shell (A1), a top of the second bin shell (A1) is provided with a second discharging opening (A20), an air outlet of the first induced draft fan (2) communicates with the second feeding opening (A19) through a first pipe (S1), and an air inlet of the second induced draft fan (A10) communicates with the second discharging opening (A20) through a second air duct (A39), a bottom of the second bin shell (A1) is provided with a first impurity-discharging opening (A21), and the covering plate (A9) is hinged and set at the first impurity-discharging opening (A21) of the second bin shell (A1), a locking mechanism (A40) is set between the second bin shell (A1) and the covering plate (A9), a guiding hole (A29) is set on an inner side wall of the second bin shell (A1), the sieving hopper (A4) is located in the second bin shell (A1), a bottom of the sieving hopper (A4) is provided with a guiding column (A30), which is movably inserted in the guiding hole (A29), a first sieving hole (A31) is set in a bottom wall of the sieving hopper (A4), and an axis hole (A32) is set in a top wall of the second bin shell (A1), the middle shaft (A3) is movably inserted into the second bin shell (A1) through the axis hole (A32), and the sixth motor (A2) is connected to the middle shaft (A3), the middle shaft (A3) is provided with a transverse rod (A33), which is provided with a raking rod (A34), and the raking rod (A34) extends downward into the sieving hopper (A4), the second rotary shaft (A6) is movably inserted in the second bin shell (A1), and the cam (A7) is fixedly installed on the second rotary shaft (A6), the pulley (A8) is movably installed on the cam (A7), and the pulley (A8) is located under the bottom of the sieving hopper (A4), the seventh motor (A5) is connected with the second rotary shaft (A6), the drum impurity-removal mechanism (300) comprises a fourth bin shell (B1), a third induced draft fan (B2), a fourth induced draft fan (B3), a drum (B4), a thirteenth motor (B5), a fourteenth motor (B6), a connecting sleeve (B7), and a fourth rotary shaft (B9), a side part of the fourth bin shell (B1) is provided with a fourth feeding opening (B10), an air outlet of the second induced draft fan (A10) communicates with the fourth feeding opening (B10), the drum (B4) is movably installed in the fourth bin shell (B1), and is tube shaped, and first mesh (B12) is set on a peripheral wall of the drum (B4), a first scraper (B13) is set at the fourth feeding opening (B10) inside the fourth bin shell (B1), one end of the first scraper (B13) is configured to be adjacent to outer peripheral wall of the drum (B4), one end of the drum (B4) is provided with an impurity-discharging pipe (B14), an outer periphery of the impurity-discharging pipe (B14) is provide with an annular hump (B15), the connecting sleeve (B7) is fixedly installed on an outer wall of the fourth bin shell (B1), and the impurity-discharging pipe (B14) is movably mounted in the connecting sleeve (B7) with the annular hump (B15), and communicates with the connecting sleeve (B7), the third induced draft fan (B2) communicates with the connecting sleeve (B7) through a third air duct (B16), and the thirteenth motor (B5) is connected with the drum (B4), a bottom of the fourth bin shell (B1) is provided with a discharging pipe (B19), two side walls of the discharging pipe (B19) are respectively provided with arc plates (B20) having a same center of circle and same radius, an impurity-absorbing cavity (B21) is set on an outer side of the arc plate (B20) at one side, and second mesh (B22) communicating with the impurity-absorbing cavity (B21) is set on that arc plate (B20), and an impurity-outlet (B23) is set on an outer wall of the impurity-absorbing cavity (B21), the fourth induced draft fan (B3) communicates with the impurity-outlet (B23) through a fourth air duct (B24), the fourth rotatory shaft (B9) is movably inserted in the discharging pipe (B19), and a second scraper (B26) is set on the fourth rotatory shaft (B9), one end of the second scraper (B26) is configured to be adjacent to an inner side wall of the arc plate (B21), the fourteenth motor (B6) is connected with the fourth shaft (B9), the secondary opening-and-impurity-removal mechanism (400) comprises a third bin shell (C1), a pair of first lickers-in (C2), a second licker-in (C3), an eighth motor (C4), a ninth motor (C5), a vibrating sieve plate (C6), a tenth motor (C7), a third rotatory shaft (C8), a connecting rod (C9), a conveying shaft (C10), an eleventh motor (C11), a third opening roller (C12) and a twelfth motor (C13), a third feeding opening (C17) is set in a top of the third bin shell (C1), and the discharging pipe (B19) is connected to the third feeding opening (C17) through a second pipe (S2), a division plate (C14) is set in the third bin shell (C1), and an impurity-discharging channel (C15) is formed between the division plate (C14) and an inner wall of one side of the third bin shell (C1), a bottom of the third bin shell (C1) is provided with a conveying trough (C18), at a bottom of the conveying trough (C18) a second impurity-discharging opening (C19) is set, a lifting channel (C20) communicating with an inside of the third bin shell (C1) is set in a side of the third bin shell (C1), and a third discharging opening (C21) is set at an upper end of the lifting channel (C20), an impurity-leaking plate (C22) is set in the third bin shell (C1) and the lifting channel (C20), and two ends of the impurity-leaking plate (C22) are fixed at the division plate (C14) and the third discharging opening (C21) of the lifting channel (C20), the pair of first lickers-in (C2) are respectively movably installed at the third feeding opening (C17) of the third bin shell (C1), a periphery of the first lickers-in (C2) is provide with a first spike (C50), and the eighth motor (C4) is connected with the pair of first lickers-in (C2), the second licker-in (C3) is movably installed in the third bin shell (C1) below the pair of the first lickers-in (C2), a second spike (CM) is set on a periphery of the second licker-in (C3), and the ninth motor (C5) is connected with the second licker-in (C3), the third rotatory shaft (C8) is movably inserted in the third bin shell (C1), and a flying wheel disk (C33) is set on the third rotatory shaft (C8), one end of the vibrating sieve plate (C6) is hinged to an inner wall of the third bin shell (C1), one end of the connecting rod (C9) is hinged to the flying wheel disk (C33), and the other end of the connecting rod (C9) is hinged to the other end of the vibrating sieve plate (C6), the vibrating sieve plate (C6) is located above the impurity-discharging channel (C15) and below the second licker-in (C3), a second sieving hole (C37) is set on the vibrating sieve plate (C6), and the tenth motor (C7) is fixedly installed on the third bin shell (C1), and connected with the third rotatory shaft (C8), the conveying shaft (C10) is movably installed in the conveying trough (C18), and a spiral rib plate (C40) is set on the conveying shaft (C10), the third opening roller (C12) is movably installed in the third bin shell (C1) and the lifting channel (C20) with an incline, third saw teeth (C43) are set on a periphery of the third opening roller (C12), the impurity-leaking plate (C22) is located below the third opening roller (C12), and continuous arcs of the impurity-leaking plate (C22) are configured to respectively correspond to the third opening rollers (C12), impurity-leaking holes (C44) are set in the impurity-leaking plate (C22), and the twelfth motor (C13) is in connected with the third opening rollers (C12) in a row.
2. The impurity removal system for refining cotton according to claim 1, wherein, the opening-and-impurity-removal mechanism (100) is provided with a pair of corrugated dust-proof sleeves (15), the pair of corrugated dust-proof sleeves (15) respectively encircle an outside of the screw rod (8), one end of the pair of corrugated dust-proof sleeves (15) is fixedly connected with the sliding seat (9), and the other end of the pair of corrugated dust-proof sleeves (15) is fixedly connected with the pair of supporting plates (40).
3. The impurity removal system for refining cotton according to claim 1, wherein the conveying mechanism (60) comprises a frame (31), conveying rollers (32), a conveying belt (33) and a fifth motor (34), the conveying rollers (32) are movably installed in a row on the frame (31) through a third bearing (35), a pair of lateral obstructing plates (36) are set on the frame (31), and located on both sides of the conveying roller (32), the conveying belt (33) is wound on the conveying rollers (32) in a row, and a fifth belt pulley (37) is set on the conveying roller (32) at rearmost end, the fifth motor (34) is fixedly installed on the first bin shell (1), and a sixth belt pulley (38) is set on an output shaft of the fifth motor (34), and is connected to the fifth belt pulley (37) with a belt (39).
4. The impurity removal system for refining cotton according to claim 2, wherein, the conveying mechanism (60) comprises a frame (31), conveying rollers (32), a conveying belt (33) and a fifth motor (34), the conveying rollers (32) are movably installed in a row on the frame (31) through a third bearing (35), a pair of lateral obstructing plates (36) are set on the frame (31), and located on both sides of the conveying roller (32), the conveying belt (33) is wound on the conveying rollers (32) in a row, and a fifth belt pulley (37) is set on the conveying roller (32) at rearmost end, the fifth motor (34) is fixedly installed on the first bin shell (1), and a sixth belt pulley (38) is set on an output shaft of the fifth motor (34), and is connected to the fifth belt pulley (37) with a belt (39).
5. The impurity removal system for refining cotton according to claim 1, wherein, the first opening roller (4) is movably installed in the first bin shell (1) through a first bearing (20), the second opening roller (5) is movably installed in the first bin shell (1) through a second bearing (22), the first motor (6) and the second motor (7) are respectively fixedly installed on a side wall of the first bin shell (1), a first belt pulley (25) is set at one end of the first opening roller (4), and a second belt pulley (26) is set on an output shaft of the first motor (6), and connected to the first belt pulley (25) with a belt (27), a third belt pulley (28) is set at one end of the second opening roller (5), a fourth belt pulley (29) is set on an output shaft of the second motor (7), and connected to the third pulley (28) with a belt (30), the pressuring roller (3) is movably installed at the first feeding opening (18) of the first bin shell (1) through a fourth bearing (19), one end of the screw rod (8) protrudes from the first bin shell (1) and is connected with the third motor (11) through a first coupling (42), the first rotatory shaft (10) is movably installed on the sliding seat (9) through a fifth bearing (45), the fourth motor (12) is connected to the first rotatory shaft (10) through a second coupling (46).
6. The impurity removal system for refining cotton according to claim 2, wherein, the first opening roller (4) is movably installed in the first bin shell (1) through a first bearing (20), the second opening roller (5) is movably installed in the first bin shell (1) through a second bearing (22), the first motor (6) and the second motor (7) are respectively fixedly installed on a side wall of the first bin shell (1), a first belt pulley (25) is set at one end of the first opening roller (4), and a second belt pulley (26) is set on an output shaft of the first motor (6), and connected to the first belt pulley (25) with a belt (27), a third belt pulley (28) is set at one end of the second opening roller (5), a fourth belt pulley (29) is set on an output shaft of the second motor (7), and connected to the third pulley (28) with a belt (30), the pressuring roller (3) is movably installed at the first feeding opening (18) of the first bin shell (1) through a fourth bearing (19), one end of the screw rod (8) protrudes from the first bin shell (1) and is connected with the third motor (11) through a first coupling (42), the first rotatory shaft (10) is movably installed on the sliding seat (9) through a fifth bearing (45), the fourth motor (12) is connected to the first rotatory shaft (10) through a second coupling (46).
7. The impurity removal system for refining cotton according to claim 1, wherein, the gravity impurity-removal mechanism (200) further comprises a sealing gasket (A18), a bearing seat (A11), a thrust bearing (A12), a first radial bearing (A13), a first sealing ring (A14), a shaft sleeve (A15), a second radial bearing (A16) and a second sealing ring (A17), a flange plate (A22) is set at the first impurity-discharging opening (A21) of the second bin shell (A1), and the covering plate (A9) is hinged with the flange plate (A22) through a hinge (A23), the sealing gasket (A18) is fixedly installed on the flange plate (A22), the locking mechanism (A40) comprises a locking screw stem (A24) and a locking nut (A25), the locking screw stem (A24) is movably installed on the covering plate (A9) through a hinge pin (A26), a lock plate (A27) is set on the flange plate (A22), and the lock plate (A27) is provided with a lock groove (A28), in which the locking screw stem (A24) is accommodated, the locking nut (A25) is screwed on the locking screw stem (A24) and pressed against the lock plate (A27), and the covering plate (A9) is pressed against the sealing gasket (A18), the bearing seat (A11) fixedly installed on the second bin shell (A1), and the thrust bearing (A12) and the first radial bearing (A13) are respectively installed in the bearing seat (A11), the middle shaft (A3) is inserted in the bearing seat (A11), and a supporting seat (A35) is set on the middle shaft (A3) located in the bearing seat (A11), the supporting seat (A35) is set on the thrust bearing (A12), and the first radial bearing (A13) encircles an outside of the supporting seat (A35), the sixth motor (A2) is fixedly installed on the bearing seat (A11), and fixedly connected to the supporting seat (A35) through a second coupling (A36), the first sealing ring (A14) is fixed in the axis hole (A32) of the second bin shell (A1) and set outside the middle shaft (A3), the shaft sleeve (A15) is fixedly installed on the second bin shell (A1), and the second rotatory shaft (A6) is movably inserted in the shaft sleeve (A15) through the second radial bearing (A16), the second sealing ring (A17) is fixed in the shaft sleeve (A15) and encircles an outside of the second rotatory shaft (A6), the seventh motor (A5) is fixedly installed on the shaft sleeve (A15), and the seventh motor (A5) is connected with the second rotatory shaft (A6) through a third coupling (A38).
8. The impurity removal system for refining cotton according to claim 2, wherein, the gravity impurity-removal mechanism (200) further comprises a sealing gasket (A18), a bearing seat (A11), a thrust bearing (A12), a first radial bearing (A13), a first sealing ring (A14), a shaft sleeve (A15), a second radial bearing (A16) and a second sealing ring (A17), a flange plate (A22) is set at the first impurity-discharging opening (A21) of the second bin shell (A1), and the covering plate (A9) is hinged with the flange plate (A22) through a hinge (A23), the sealing gasket (A18) is fixedly installed on the flange plate (A22), the locking mechanism (A40) comprises a locking screw stem (A24) and a locking nut (A25), the locking screw stem (A24) is movably installed on the covering plate (A9) through a hinge pin (A26), a lock plate (A27) is set on the flange plate (A22), and the lock plate (A27) is provided with a lock groove (A28), in which the locking screw stem (A24) is accommodated, the locking nut (A25) is screwed on the locking screw stem (A24) and pressed against the lock plate (A27), and the covering plate (A9) is pressed against the sealing gasket (A18), the bearing seat (A11) fixedly installed on the second bin shell (A1), and the thrust bearing (A12) and the first radial bearing (A13) are respectively installed in the bearing seat (A11), the middle shaft (A3) is inserted in the bearing seat (A11), and a supporting seat (A35) is set on the middle shaft (A3) located in the bearing seat (A11), the supporting seat (A35) is set on the thrust bearing (A12), and the first radial bearing (A13) encircles an outside of the supporting seat (A35), the sixth motor (A2) is fixedly installed on the bearing seat (A11), and fixedly connected to the supporting seat (A35) through a second coupling (A36), the first sealing ring (A14) is fixed in the axis hole (A32) of the second bin shell (A1) and set outside the middle shaft (A3), the shaft sleeve (A15) is fixedly installed on the second bin shell (A1), and the second rotatory shaft (A6) is movably inserted in the shaft sleeve (A15) through the second radial bearing (A16), the second sealing ring (A17) is fixed in the shaft sleeve (A15) and encircles an outside of the second rotatory shaft (A6), the seventh motor (A5) is fixedly installed on the shaft sleeve (A15), and the seventh motor (A5) is connected with the second rotatory shaft (A6) through a third coupling (A38).
9. The impurity removal system for refining cotton according to claim 1, wherein, through a sixth bearing (C23), the pair of first lickers-in (C2) are respectively movably installed in the third bin shell (C1), the eighth motor (C4) is fixedly installed on the third bin shell (C1), a first gear (C24) is set at one end of each of the pair of first lickers-in (C2), respectively, and the first gears (C24) between the pair of first lickers-in (C2) mesh each other, a seventh belt pulley (C25) is set at the other end of one of the pair of first lickers-in (C2), and an eighth belt pulley (C26) is set on an output shaft of the eighth motor (C4), and is connected to the seventh belt pulley (C25) with a belt (C27), the second licker-in (C3) is movably installed in the third bin shell (C1) through a seventh bearing (C28), and a ninth belt pulley (C29) is set at one end of the second licker-in (C3), the ninth motor (C5) is fixedly installed on the third bin shell (C1), and a tenth belt pulley (C30) is set on an output shaft of the ninth motor (C5), and is belt drivingly connected to the ninth belt pulley (C29) with a belt (C31).
10. The impurity removal system for refining cotton according to claim 2, wherein, through a sixth bearing (C23), the pair of first lickers-in (C2) are respectively movably installed in the third bin shell (C1), the eighth motor (C4) is fixedly installed on the third bin shell (C1), a first gear (C24) is set at one end of each of the pair of first lickers-in (C2), respectively, and the first gears (C24) between the pair of first lickers-in (C2) mesh each other, a seventh belt pulley (C25) is set at the other end of one of the pair of first lickers-in (C2), and an eighth belt pulley (C26) is set on an output shaft of the eighth motor (C4), and is connected to the seventh belt pulley (C25) with a belt (C27), the second licker-in (C3) is movably installed in the third bin shell (C1) through a seventh bearing (C28), and a ninth belt pulley (C29) is set at one end of the second licker-in (C3), the ninth motor (C5) is fixedly installed on the third bin shell (C1), and a tenth belt pulley (C30) is set on an output shaft of the ninth motor (C5), and is connected to the ninth belt pulley (C29) with a belt (C31).
11. The impurity removal system for refining cotton according to claim 1, wherein, the third rotatory shaft (C8) is movably inserted into the third bin shell (C1) through an eighth bearing (C32), one end of the vibrating sieve plate (C6) is hinged to the inner wall of the third bin shell (C1) through a first pivoting shaft (C34), one end of the connecting rod (C9) is hinged to the flying wheel disk (C33) through a second pivoting shaft (C35), and the other end of the connecting rod (C9) is hinged to the other end of the vibrating sieve plate (C6) through a third pivoting shaft (C36), the tenth motor (C7) is fixedly installed on the third bin shell (C1), and connected with the third rotatory shaft (C8) through a ninth coupling (C38), and the eleventh motor (C11) is fixedly installed on the third bin shell (C1), and connected to the conveying shaft (C10) through a fifth coupling (C41).
12. The impurity removal system for refining cotton according to claim 2, wherein, the third rotatory shaft (C8) is movably inserted into the third bin shell (C1) through an eighth bearing (C32), one end of the vibrating sieve plate (C6) is hinged to the inner wall of the third bin shell (C1) through a first pivoting shaft (C34), one end of the connecting rod (C9) is hinged to the flying wheel disk (C33) through a second pivoting shaft (C35), and the other end of the connecting rod (C9) is hinged to the other end of the vibrating sieve plate (C6) through a third pivoting shaft (C36), the tenth motor (C7) is fixedly installed on the third bin shell (C1), and connected with the third rotatory shaft (C8) through a ninth coupling (C38), and the eleventh motor (C11) is fixedly installed on the third bin shell (C1), and connected to the conveying shaft (C10) through a fifth coupling (C41).
13. The impurity removal system for refining cotton according to claim 1, wherein, the third opening rollers (C12) are movably installed in the third bin shell (C1) and the lifting channel (C20) by a ninth bearing (C42) respectively, an eleventh belt pulley (C45) is set at one end of adjacent third opening rollers (C12), and the eleventh belt pulleys (C45) between the adjacent third opening rollers (C12) are connected to each other with a belt (C46), a twelfth belt pulley (C47) is set at the other end of one of the third opening rollers (C12), the twelfth motor (C13) is fixedly installed on the third bin shell (C1), and a thirteenth belt pulley (C48) is set on an output shaft of the twelfth motor (C13), and is connected to the twelfth belt pulley (C47) with a belt (C49).
14. The impurity removal system for refining cotton according to claim 2, wherein, the third opening rollers (C12) are movably installed in the third bin shell (C1) and the lifting channel (C20) by a ninth bearing (C42) respectively, an eleventh belt pulley (C45) is set at one end of adjacent third opening rollers (C12), and the eleventh belt pulleys (C45) between the adjacent third opening rollers (C12) are connected to each other with a belt (C46), a twelfth belt pulley (C47) is set at the other end of one of the third opening rollers (C12), the twelfth motor (C13) is fixedly installed on the third bin shell (C1), and a thirteenth belt pulley (C48) is set on an output shaft of the twelfth motor (C13), and is connected to the twelfth belt pulley (C47) with a belt (C49).
15. The impurity removal system for refining cotton according to claim 1, wherein, the drum impurity-removal mechanism (300) further comprises a third sealing ring (B8), the third sealing ring (B8) is fixed in the connecting sleeve (B7) and encircles an outside of the annular hump (B15), the drum (B4) is movably installed in the fourth bin shell (B1) through an eleventh bearing (B11), and the thirteenth motor (B5) is fixedly installed on the fourth bin shell (B1), a second gear (B17) is set at the other end of the drum (B4), and a third gear (B18) is set on an output shaft of the thirteenth motor (B5), and meshes with the second gear (B17), the fourth rotary shaft (B9) is movably inserted in the discharging pipe (B19) through a twelfth bearing (B25), the fourteenth motor (B6) is fixedly installed on the discharging pipe (B19), and is connected with the fourth rotatory shaft (B9) through a sixth coupling (B27).
16. The impurity removal system for refining cotton according to claim 2, wherein, the drum impurity-removal mechanism (300) further comprises a third sealing ring (B8), the third sealing ring (B8) is fixed in the connecting sleeve (B7) and encircles an outside of the annular hump (B15), the drum (B4) is movably installed in the fourth bin shell (B1) through an eleventh bearing (B11), and the thirteenth motor (B5) is fixedly installed on the fourth bin shell (B1), a second gear (B17) is set at the other end of the drum (B4), and a third gear (B18) is set on an output shaft of the thirteenth motor (B5), and meshes with the second gear (B17), the fourth rotary shaft (B9) is movably inserted in the discharging pipe (B19) through a twelfth bearing (B25), the fourteenth motor (B6) is fixedly installed on the discharging pipe (B19), and is connected with the fourth rotatory shaft (B9) through a sixth coupling (B27).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(27) As shown in
(28) As shown in
(29) As shown in
(30) As shown in
(31) The following part shows how the impurity-removal system for refining cotton operates. The compressed slab-shaped cotton linters are placed on the conveying belt 33 of the opening-and-impurity-removal mechanism 100, then the fifth motor 34 drives the conveying roller 32 to rotate. The conveying belt 33 is driven by the conveying roller 32 to convey the cotton linters to the first feeding opening 18 of the first bin shell 1, and is tightly pressed by the pressing roller 3. The first opening roller 4 is driven by the first motor 6 to rotate counterclockwise in