Blended yarn detection device for new material production
By designing a new material with automatic yarn fixation and tensile detection, the complex problem of manual fixation is solved, and efficient and accurate yarn detection and cleaning is achieved.
Patent Information
- Application Number
- CN202510486777.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-04-18
AI Technical Summary
The existing blended yarn detection device requires manual knotting when the yarn is fixed, which is complicated and inconvenient to operate, which affects the detection efficiency and effect.
A new material production blended yarn detection device is designed, which adopts the cooperation of components such as base, guide, observation shell, motor, rotating shaft, L-shaped rod, U-shaped pressure plate, etc. to realize automatic yarn fixing and tensile detection, and improves detection efficiency and accuracy through diverse wire dialing mechanisms and cleaning mechanisms.
Automatic fixation and rapid stretch detection of yarn is realized, avoiding yarn deviation, improving detection efficiency and accuracy, and effectively cleaning the yarn to reduce the impact on the device.
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Figure CN120404337A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of detection devices, and particularly to a detection device for blended spun yarns in new material production. Background Art
[0002] Blended spun yarn is a yarn spun by mixing two or more different fibers in a certain proportion. It combines the characteristics of different fibers and has some advantages of chemical fibers.
[0003] The patent with the publication number CN214096944U relates to a detection device for blended spun yarns, including a box body. A first motor is fixedly installed on the left side of the inner wall of the box body. The output end of the first motor is fixedly connected with a threaded column, and the right end of the threaded column is rotatably connected to the inner wall of the box body through a bearing. A threaded sleeve is threadedly connected to the surface of the threaded column, and the surface of the threaded sleeve is slidably connected to the inner wall of the box body. The top surface of the threaded sleeve is fixedly connected with a first connecting rod. A chute is opened on the top surface of the box body, and the surface of the first connecting rod is slidably connected to the inner wall of the chute. The top surface of the first connecting rod is fixedly connected with a first sliding sleeve. A sliding rod is slidably connected to the inner wall of the first sliding sleeve. The left side of the bottom surface of the sliding rod is fixedly connected with a first support rod. This device achieves the effect of facilitating the rapid detection of the tensile strength of blended spun yarns during use. The overall structure of the device is relatively simple, the maintenance cost is low, the operation steps are few, it is more convenient to use, and the practicability is good. However, when fixing the yarn, the staff needs to manually tie a knot to fix the yarn, which is very complicated and inconvenient. Therefore, a detection device for blended spun yarns in new material production is proposed to solve the above-mentioned problems. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide a detection device for blended spun yarns in new material production aiming at the deficiencies in the above-mentioned prior art.
[0005] To solve the above technical problems, the technical solution adopted by the present invention is: a detection device for mixing spun yarn produced from new materials, including a base, a guide table fixedly connected to the top of the base, an observation shell fixedly connected to the top of the base, a motor fixedly connected to the inner wall of the guide table, a rotating shaft fixedly connected to the output end of the motor, an L-shaped rod fixedly connected to the circumferential surface of the rotating shaft, a square block fixedly connected to the inner wall of the L-shaped rod, a U-shaped pressing plate slidably connected to the inner wall of the square block, a moving rod slidably connected to the inner wall of the square block through a spring, a sliding rod slidably connected to the inner wall of the L-shaped rod, a support plate fixedly connected to the circumferential surface of the L-shaped rod, a telescopic plate rotatably connected to the inner wall of the support plate, a diversity detection wire-pulling mechanism arranged on the top of the base, a cleaning mechanism for cleaning damaged yarn arranged on the top of the base, a connecting block fixedly connected to the circumferential surface of the sliding rod, a winding table fixedly connected to the top of the base, the inner wall of the guide table is rotatably connected to the circumferential surface of the rotating shaft, the observation shell is used for observation during detection and protecting the detection personnel, the inner wall of the U-shaped pressing plate is fixedly connected to the circumferential surface of the moving rod, and the U-shaped pressing plate is used for limiting the yarn to prevent the yarn from running off, the front part of the U-shaped pressing plate is rotatably connected to the inner wall of the telescopic plate, the side of the telescopic plate away from the U-shaped pressing plate is rotatably connected to the rear part of the connecting block, the sliding rod is used for acting as a switch during yarn detection, the winding table is used for fixing the yarn, during yarn detection, the yarn can be subjected to tensile detection by rotating the rotating shaft, when the L-shaped rod rotates, it will squeeze the yarn to increase the tensile strength of the yarn, thereby shortening the time required for detection, and by setting multiple L-shaped rods, the yarn can be detected batch by batch, improving the detection efficiency of the yarn. At the same time, the yarn can be pressed under the U-shaped pressing plate to prevent the yarn from running off during detection, resulting in uneven stress during yarn detection and affecting the detection effect, and the yarn can also be fixed quickly, improving the detection efficiency of the yarn.
[0006] Preferably, the wire dialing mechanism includes a V-shaped frame fixedly connected to the top of the base. A reciprocating lead screw is rotatably connected to the inner wall of the V-shaped frame. A pulley group is fixedly connected to the circumferential surface of the rotating shaft. A moving plate is movably connected to the circumferential surface of the reciprocating lead screw. A straight plate is fixedly connected to the left side of the V-shaped frame. A fixed rod is fixedly connected to the inner wall of the straight plate. An elastic sheet is fixedly connected to the top of the moving plate. A fixing plate is fixedly connected to the bottom of the moving plate. A push plate is fixedly connected to the inner wall of the fixing plate. The left side pulley shaft center of the pulley group is fixedly connected to the circumferential surface of the reciprocating lead screw. The inner wall of the moving plate is slidably connected to the circumferential surface of the fixed rod, and when the moving plate slides, the fixed rod limits it to prevent the moving plate from rotating. The top of the base contacts the bottom of the push plate, and the push plate cleans the broken wire. During the detection process, the moving plate moves to drive the elastic sheet to move, so as to diversely detect the yarn. By applying different forces, the detection effect of the yarn in different environments can be tested. At the same time, during the detection, the fixing plate moves to drive the push plate to move, so as to push the broken yarn during the detection process out of the detection area, avoiding the yarn winding on the components of the detection device, affecting the normal operation of the device, resulting in inaccurate detection data or equipment failure.
[0007] Preferably, the cleaning mechanism includes a fixed column fixedly connected to the top of the base. A sloping plate is slidably connected to the circumferential surface of the fixed column through a spring. A U-shaped frame is fixedly connected to the left side of the sloping plate. A convex block is fixedly connected to the bottom of the U-shaped frame. An L-shaped plate is fixedly connected to the front of the push plate. A wire winding roller is rotatably connected to the inner wall of the L-shaped plate. A transmission wheel is fixedly connected to the circumferential surface of the wire winding roller. The top of the push plate contacts the bottom of the U-shaped frame, and the movement track of the push plate contacts the convex block. The top of the base contacts the circumferential surface of the transmission wheel, and the transmission wheel rotates by contacting the top of the base. The wire winding roller is used to collect the yarn during operation. During the cleaning of the yarn, through multiple convex blocks, the sloping plate can move up and down reciprocally, so as to gather the yarn scattered at the edge inside the device to the middle, and then it is more convenient to collect and clean the yarn, further improving the cleaning effect of the yarn and reducing the influence of the yarn on the device. At the same time, during the yarn cleaning, the transmission wheel rotates to drive the wire winding roller to rotate, so as to wind the small amount of yarn missed in the cleaning around the surface of the wire winding roller by stirring, reducing the influence of the yarn on the detection.
[0008] The present invention adopts the above technical solutions and can bring the following beneficial effects: 1. The detection device for blended yarns produced from the new material operates through the cooperation among a base, a guide table, an observation shell, a motor, a rotating shaft, an L-shaped rod, a square block, a U-shaped pressing plate, a moving rod, a sliding rod, a support plate, a telescopic plate, a connecting block, and a winding table. When detecting the yarn, the rotating shaft rotates to stretch and detect the yarn. When the L-shaped rod rotates, it squeezes the yarn to improve the tensile strength of the yarn, thereby shortening the time required for detection. By setting multiple L-shaped rods, the yarn can be detected batch by batch, improving the detection efficiency of the yarn. At the same time, the yarn can be pressed against the bottom of the U-shaped pressing plate to prevent the yarn from running off during detection, which may cause uneven stress on the yarn during detection and affect the detection effect. It can also quickly fix the yarn and improve the detection efficiency of the yarn.
[0009] 2. The detection device for blended yarns produced from the new material operates through the cooperation among a V-shaped frame, a reciprocating lead screw, a pulley group, a moving plate, a straight plate, a fixed rod, and an elastic piece. During the detection process, the movement of the moving plate drives the elastic piece to move, thereby enabling diverse detection of the yarn. By applying different forces, the detection effect of the yarn in different environments can be tested.
[0010] 3. The detection device for blended yarns produced from the new material operates through the cooperation between a fixed plate and a push plate. When detecting, the movement of the fixed plate drives the push plate to move, thereby pushing out the yarn that breaks during the detection process from the interior of the detection area, preventing the yarn from winding around the components of the detection equipment, which may affect the normal operation of the equipment, resulting in inaccurate detection data or equipment failure.
[0011] 4. The detection device for blended yarns produced from the new material operates through the cooperation among a fixed column, an inclined plate, a U-shaped frame, and a convex block. During the process of cleaning the yarn, through multiple convex blocks, the inclined plate can move up and down reciprocally, thereby gathering the yarn scattered at the edges inside the device towards the middle, making it more convenient to collect and clean the yarn, further improving the cleaning effect of the yarn, and reducing the impact of the yarn on the device.
[0012] 5. The detection device for blended yarns produced from the new material operates through the cooperation among an L-shaped plate, a winding roller, and a transmission wheel. When cleaning the yarn, the rotation of the transmission wheel drives the winding roller to rotate, thereby winding the small amount of yarn that was missed during cleaning around the surface of the winding roller by agitation, reducing the impact of the yarn on the detection. Description of the Drawings
[0013] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a semi-sectional view of the structure of the rotating shaft of the present invention; Figure 3 is for the present invention Figure 2Enlarged view of the structure at position A in [the figure]; Figure 4 Half-sectional view of the wire-pulling mechanism of the present invention; Figure 5 For the present invention Figure 4 Enlarged view of the structure at position B in [the figure]; Figure 6 Half-sectional view of the cleaning mechanism of the present invention; Figure 7 For the present invention Figure 6 Enlarged view of the structure at position C in [the figure].
[0014] In the figure: 1. Base; 2. Guide table; 3. Observation shell; 4. Motor; 5. Rotating shaft; 6. L-shaped rod; 7. Square block; 8. U-shaped pressing plate; 9. Moving rod; 10. Sliding rod; 11. Support plate; 12. Telescopic plate; 13. Connecting block; 14. Wire-winding table; 15. Wire-pulling mechanism; 151. V-shaped frame; 152. Reciprocating lead screw; 153. Pulley set; 154. Moving plate; 155. Straight plate; 156. Fixed rod; 157. Elastic sheet; 158. Fixed plate; 159. Pushing plate; 16. Cleaning mechanism; 161. Fixed column; 162. Inclined plate; 163. U-shaped frame; 164. Convex block; 165. L-shaped plate; 166. Stranding roller; 167. Transmission wheel. Specific embodiments
[0015] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0016] Please refer to Figures 1 - 7, an embodiment of the present invention is: a detection device for blended yarns produced from new materials, including a base 1. A guide table 2 is fixedly connected to the top of the base 1, and an observation shell 3 is fixedly connected to the top of the base 1. A motor 4 is fixedly connected to the inner wall of the guide table 2. The output end of the motor 4 is fixedly connected to a rotating shaft 5. An L-shaped rod 6 is fixedly connected to the circumferential surface of the rotating shaft 5. A square block 7 is fixedly connected to the inner wall of the L-shaped rod 6. A U-shaped pressing plate 8 is slidably connected to the inner wall of the square block 7. A moving rod 9 is slidably connected to the inner wall of the square block 7 through a spring. A sliding rod 10 is slidably connected to the inner wall of the L-shaped rod 6. A support plate 11 is fixedly connected to the circumferential surface of the L-shaped rod 6. A telescopic plate 12 is rotatably connected to the inner wall of the support plate 11. A diverse detection and yarn guiding mechanism 15 is arranged on the top of the base 1, and a cleaning mechanism 16 for cleaning damaged yarns is arranged on the top of the base 1. A connecting block 13 is fixedly connected to the circumferential surface of the sliding rod 10. A winding table 14 is fixedly connected to the top of the base 1. The inner wall of the guide table 2 is rotatably connected to the circumferential surface of the rotating shaft 5. The observation shell 3 is used for observation during detection and protecting the detection personnel. The inner wall of the U-shaped pressing plate 8 is fixedly connected to the circumferential surface of the moving rod 9, and the U-shaped pressing plate 8 is used for limiting the yarn to prevent the yarn from running off. The front part of the U-shaped pressing plate 8 is rotatably connected to the inner wall of the telescopic plate 12. The side of the telescopic plate 12 away from the U-shaped pressing plate 8 is rotatably connected to the rear part of the connecting block 13. The sliding rod 10 is used for acting as a switch during yarn detection. The winding table 14 is used for fixing the yarn.
[0017] During yarn detection, open the protective door on the top of the observation shell 3 and fix the yarn reel on the winding table 14. After the yarn is fixed, start the motor 4 to drive the rotating shaft 5 to rotate. The rotation of the rotating shaft 5 drives the L-shaped rod 6 to rotate, so that the yarn can be stretched and detected by the rotation of the rotating shaft 5. When the L-shaped rod 6 rotates, it will squeeze the yarn to increase the tensile strength of the yarn, thereby shortening the time required for detection. By setting multiple L-shaped rods 6, the yarn can be detected in batches, improving the detection efficiency of the yarn. When fixing the yarn, press down the sliding rod 10. The downward movement of the sliding rod 10 drives the connecting block 13 to move downward. The downward movement of the connecting block 13 drives the telescopic plate 12 to rotate and compress. The rotation of the telescopic plate 12 drives the U-shaped pressing plate 8 to move upward, so that the yarn can be pressed against the bottom of the U-shaped pressing plate 8, avoiding the yarn from running off during detection, resulting in uneven stress on the yarn detection and affecting the detection effect, and can also quickly fix the yarn, improving the detection efficiency of the yarn.
[0018] Overall working principle: When conducting yarn detection, open the protective door at the top of the observation shell 3 and fix the yarn reel on the winding table 14. After the yarn is fixed, start the motor 4 to drive the rotating shaft 5 to rotate. The rotation of the rotating shaft 5 drives the L-shaped rod 6 to rotate, and then the yarn is stretched through the L-shaped rod 6 to conduct strength detection. At the same time, after the yarn is fixed, press the sliding rod 10 so that the U-shaped pressing plate 8 can fix the yarn to prevent it from running off course.
[0019] The wire deflecting mechanism 15 includes a V-shaped frame 151. The V-shaped frame 151 is fixedly connected to the top of the base 1. A reciprocating lead screw 152 is rotatably connected to the inner wall of the V-shaped frame 151. A pulley group 153 is fixedly connected to the circumferential surface of the rotating shaft 5. A moving plate 154 is movably connected to the circumferential surface of the reciprocating lead screw 152. A straight plate 155 is fixedly connected to the left side of the V-shaped frame 151. A fixed rod 156 is fixedly connected to the inner wall of the straight plate 155. An elastic piece 157 is fixedly connected to the top of the moving plate 154. A fixing plate 158 is fixedly connected to the bottom of the moving plate 154. A pushing plate 159 is fixedly connected to the inner wall of the fixing plate 158. The axis of the left pulley of the pulley group 153 is fixedly connected to the circumferential surface of the reciprocating lead screw 152. The inner wall of the moving plate 154 is slidably connected to the circumferential surface of the fixed rod 156, and when the moving plate 154 slides, the fixed rod 156 will limit it to prevent the moving plate 154 from rotating. The top of the base 1 is in contact with the bottom of the pushing plate 159, and the pushing plate 159 clears the broken line.
[0020] During the detection process, the rotation of the rotating shaft 5 drives the pulley group 153 to rotate. The pulley group 153 drives the reciprocating lead screw 152 to rotate through a belt. The rotation of the reciprocating lead screw 152 causes the slider provided on the inner wall of the moving plate 154 to contact the thread on the surface of the reciprocating lead screw 152, thereby causing the moving plate 154 to move. The movement of the moving plate 154 will contact the fixed rod 156, and the fixed rod 156 will limit the moving plate 154 to prevent the moving plate 154 from rotating during the movement, affecting the normal movement of the moving plate 154. The movement of the moving plate 154 drives the elastic piece 157 to move, so that the yarn can be detected in various ways. By applying different forces, the detection effect of the yarn in different environments can be tested; During the detection, the movement of the moving plate 154 drives the fixing plate 158 to move, and the movement of the fixing plate 158 drives the pushing plate 159 to move, so that the broken yarn during the detection process can be pushed out of the detection area, avoiding the yarn from winding around the components of the detection equipment, affecting the normal operation of the equipment, resulting in inaccurate detection data or equipment failure.
[0021] Overall working principle: During the detection process, the rotating shaft 5 rotates to drive the pulley group 153 to rotate. The pulley group 153 drives the reciprocating lead screw 152 to rotate through a belt. The movement of the reciprocating lead screw 152 drives the moving plate 154 to move. The moving plate 154 drives the elastic piece 157 to move, enabling the yarn to deform under a certain external force, and then observing its ability to return to its original state to evaluate the elastic performance of the yarn. At the same time, the movement of the fixed plate 158 drives the push plate 159 to move, which can clean the yarn and prevent the yarn from winding around the reciprocating lead screw 152.
[0022] Please refer to Figures 1 - 7 , on the basis of the above-mentioned embodiment, in another embodiment of the present invention, the cleaning mechanism 16 includes a fixed column 161. The fixed column 161 is fixedly connected to the top of the base 1. The circumferential surface of the fixed column 161 is slidably connected with an inclined plate 162 through a spring. The left side of the inclined plate 162 is fixedly connected with a U-shaped frame 163. The bottom of the U-shaped frame 163 is fixedly connected with a convex block 164. The front part of the push plate 159 is fixedly connected with an L-shaped plate 165. A winding roller 166 is rotatably connected to the inner wall of the L-shaped plate 165. A transmission wheel 167 is fixedly connected to the circumferential surface of the winding roller 166. The top of the push plate 159 is in contact with the bottom of the U-shaped frame 163, and the movement trajectory of the push plate 159 contacts the convex block 164. The top of the base 1 is in contact with the circumferential surface of the transmission wheel 167, and the transmission wheel 167 rotates by contacting the top of the base 1. The winding roller 166 is used to collect the yarn during operation.
[0023] During the process of cleaning the yarn, the movement of the push plate 159 will contact the convex block 164 and exert an extrusion force on the convex block 164, forcing the convex block 164 to move upward. The upward movement of the convex block 164 drives the U-shaped frame 163 to move upward. The upward movement of the U-shaped frame 163 drives the inclined plate 162 to move upward. The upward movement of the inclined plate 162 drives the spring on the surface of the fixed column 161 to stretch. After the push plate 159 passes over the U-shaped frame 163, the convex block 164 no longer receives the extrusion force from the push plate 159, and then the U-shaped frame 163 moves downward. Through multiple convex blocks 164, the inclined plate 162 can move up and down reciprocally, so that the yarn scattered at the inner edge of the device can be gathered towards the middle, which is more convenient for collecting and cleaning the yarn, further improving the cleaning effect of the yarn and reducing the impact of the yarn on the device; When cleaning the yarn, the pushing plate 159 moves to drive the L-shaped plate 165 to move. The movement of the L-shaped plate 165 drives the stranding roller 166 to move. The movement of the stranding roller 166 drives the transmission wheel 167 to move. During the movement of the transmission wheel 167, it will contact the top of the base 1 and generate frictional force, enabling the transmission wheel 167 to rotate through the frictional force. The rotation of the transmission wheel 167 drives the stranding roller 166 to rotate, so that a small amount of yarn missed during cleaning can be wound around the surface of the stranding roller 166 by stirring, reducing the impact of the yarn on the detection.
[0024] Overall working principle: During the process of cleaning the yarn, the movement of the pushing plate 159 will contact the convex block 164 and exert an extrusion force on the convex block 164, forcing the convex block 164 to move upward. The upward movement of the convex block 164 drives the U-shaped frame 163 to move upward, which can facilitate the collection and cleaning of the yarn, further improving the cleaning effect of the yarn and reducing the impact of the yarn on the device. At the same time, the transmission wheel 167 can rotate through the frictional force, and the rotation of the transmission wheel 167 drives the stranding roller 166 to rotate, reducing the impact of the yarn on the device.
[0025] The present invention provides a detection device for blended yarns produced from new materials. There are many methods and ways to specifically implement this technical solution. The above is only the preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention. Each component not clearly defined in this embodiment can be implemented by existing technologies.
Claims
1. A detection device for blended yarn produced from a new material, comprising a base (1), characterized in that: A guide platform (2) is fixedly connected to the top of the base (1), an observation shell (3) is fixedly connected to the top of the base (1), a motor (4) is fixedly connected to the inner wall of the guide platform (2), a rotating shaft (5) is fixedly connected to the output end of the motor (4), an L-shaped rod (6) is fixedly connected to the circumferential surface of the rotating shaft (5), a square block (7) is fixedly connected to the inner wall of the L-shaped rod (6), a U-shaped pressing plate (8) is slidably connected to the inner wall of the square block (7), a moving rod (9) is slidably connected to the inner wall of the square block (7) through a spring, a sliding rod (10) is slidably connected to the inner wall of the L-shaped rod (6), a support plate (11) is fixedly connected to the circumferential surface of the L-shaped rod (6), a telescopic plate (12) is rotatably connected to the inner wall of the support plate (11), a wire-pulling mechanism (15) for diversity detection is arranged on the top of the base (1), a cleaning mechanism (16) for cleaning damaged yarn is arranged on the top of the base (1), a connecting block (13) is fixedly connected to the circumferential surface of the sliding rod (10), and a winding platform (14) is fixedly connected to the top of the base (1).
2. The detection device for blended yarn produced from a new material according to claim 1, wherein: The inner wall of the guide platform (2) is rotatably connected to the circumferential surface of the rotating shaft (5), the observation shell (3) is used for observing during detection and protecting the detection personnel, the inner wall of the U-shaped pressing plate (8) is fixedly connected to the circumferential surface of the moving rod (9), and the U-shaped pressing plate (8) is used for limiting the yarn to prevent the yarn from running off track. The front part of the U-shaped pressing plate (8) is rotatably connected to the inner wall of the telescopic plate (12), the side of the telescopic plate (12) away from the U-shaped pressing plate (8) is rotatably connected to the rear part of the connecting block (13), the sliding rod (10) is used for acting as a switch during yarn detection, and the winding platform (14) is used for fixing the yarn.
3. The detection device for blended spun yarn produced from a new material according to claim 2, wherein: The wire-pulling mechanism (15) includes a V-shaped frame (151), the V-shaped frame (151) is fixedly connected to the top of the base (1), a reciprocating lead screw (152) is rotatably connected to the inner wall of the V-shaped frame (151), a pulley group (153) is fixedly connected to the circumferential surface of the rotating shaft (5), a moving plate (154) is movably connected to the circumferential surface of the reciprocating lead screw (152), a straight plate (155) is fixedly connected to the left side of the V-shaped frame (151), and a fixed rod (156) is fixedly connected to the inner wall of the straight plate (155).
4. The detection device for blended spun yarn produced from a new material according to claim 3, wherein: An elastic piece (157) is fixedly connected to the top of the moving plate (154), a fixing plate (158) is fixedly connected to the bottom of the moving plate (154), and a pushing plate (159) is fixedly connected to the inner wall of the fixing plate (158).
5. The detecting device for blended yarn produced from new materials according to claim 4, wherein: The left pulley axis of the pulley set (153) is fixedly connected to the circumferential surface of the reciprocating lead screw (152). The inner wall of the moving plate (154) is slidably connected to the circumferential surface of the fixed rod (156). When the moving plate (154) slides, the fixed rod (156) limits it to prevent the moving plate (154) from rotating. The top of the base (1) is in contact with the bottom of the push plate (159), and the push plate (159) clears the broken lines.
6. The detecting device for blended spun yarn produced from new materials according to claim 5, characterized in that: The cleaning mechanism (16) includes a fixed column (161). The fixed column (161) is fixedly connected to the top of the base (1). The circumferential surface of the fixed column (161) is slidably connected to an inclined plate (162) through a spring. The left side of the inclined plate (162) is fixedly connected to a U-shaped frame (163). The bottom of the U-shaped frame (163) is fixedly connected to a convex block (164). The front part of the push plate (159) is fixedly connected to an L-shaped plate (165).
7. The detection device for blended spun yarn produced from a new material according to claim 6, wherein: A wire winding roller (166) is rotatably connected to the inner wall of the L-shaped plate (165). A transmission wheel (167) is fixedly connected to the circumferential surface of the wire winding roller (166).
8. A detection device for blended spun yarn produced from a new material according to claim 7, characterized in that: The top of the push plate (159) is in contact with the bottom of the U-shaped frame (163), and the movement track of the push plate (159) contacts the convex block (164). The top of the base (1) is in contact with the circumferential surface of the transmission wheel (167), and the transmission wheel (167) rotates by contacting the top of the base (1). The wire winding roller (166) is used to collect the yarn during operation.
Citation Information
Patent Citations
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