CN211812162U - Overturning and bobbin-loading device and warping equipment - Google Patents
Overturning and bobbin-loading device and warping equipment Download PDFInfo
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- CN211812162U CN211812162U CN201922208863.9U CN201922208863U CN211812162U CN 211812162 U CN211812162 U CN 211812162U CN 201922208863 U CN201922208863 U CN 201922208863U CN 211812162 U CN211812162 U CN 211812162U
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- yarn
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- creel
- belt mechanism
- conveyor belt
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Abstract
The utility model relates to a upset dress section of thick bamboo device and warping equipment, upset dress section of thick bamboo device includes axis of rotation, yarn frame and driving piece, the axis of rotation be used for with conveyor belt mechanism's frame is connected, the yarn frame has the chamber that holds that is used for acceping the yarn car, just the yarn frame with rotation axis connection is so that the yarn frame can be relative conveyor belt mechanism rotates, the driving piece is used for the drive the yarn frame is relative conveyor belt mechanism rotates, thereby drives hold the yarn car motion in the chamber in order to fall the section of thick bamboo yarn in the yarn car to on conveyor belt mechanism's the conveyer belt. Can shift the section of thick bamboo yarn in the yarn car to the conveyer belt fast through this upset dress section of thick bamboo device, need not artifical a transfer, reduce the consumption of dress section of thick bamboo time, improve production efficiency, reduced staff's intensity of labour simultaneously, can provide a relatively light operational environment for the staff.
Description
Technical Field
The utility model relates to the field of textile technology, especially, relate to a upset dress section of thick bamboo device and warping equipment.
Background
Warping is a process in which a certain number of warp yarns are wound in parallel on a beam or a beam according to a predetermined length and width, and the warped warp yarns are used for sizing and drawing. Warping is a preparatory process for weaving, and spooling is a preparatory process prior to warping. At present, the warping package is respectively provided with tray yarn, package yarn and carton yarn, wherein the package yarn and the carton yarn need to be unpacked and unpacked to pour cheese into a yarn car, and then workers transfer the cheese to a conveying belt from the yarn car one by one. In the process, the staff need to continuously bend down to pick up the cheese from the yarn trolley and put the cheese on the conveying belt, the labor intensity is high, strain can be caused to the lumbar vertebrae of the staff, the speed of loading the cheese is slow, and the production efficiency is reduced.
SUMMERY OF THE UTILITY MODEL
In view of the above, it is desirable to provide a flip loader device that can improve production efficiency.
The utility model provides a upset dress barreled is put for the conveyer belt mechanism cooperation with warping equipment, upset dress barreled is put and is included axis of rotation, yarn frame and driving piece, the axis of rotation be used for with conveyer belt mechanism's frame is connected, the yarn frame has the chamber that holds that is used for acceping the yarn car, just the yarn frame with rotation axis connection is so that the yarn frame can be relative conveyer belt mechanism rotates, the driving piece is used for the drive the yarn frame is relative conveyer belt mechanism rotates, thereby drives hold the yarn car motion in the chamber in order to fall the section of thick bamboo yarn in the yarn car extremely on conveyer belt mechanism's the conveyer belt.
In one embodiment, the side surface of the yarn trolley frame is provided with a yarn trolley inlet communicated with the accommodating cavity, and the top surface of the yarn trolley frame is provided with a cone yarn outlet communicated with the accommodating cavity.
In one embodiment, the bottom surface of the yarn trolley frame is provided with a yarn trolley guide rail, and the yarn trolley guide rail horizontally extends from one side of the yarn trolley inlet to the other side of the yarn trolley inlet.
In one embodiment, the cart guide rails are parallel to the axis of rotation.
In one embodiment, the cart guide rail comprises a first rail and a second rail, and the first rail and the second rail are arranged in parallel at intervals.
In one embodiment, a buffer baffle is arranged on the side surface of the yarn trolley frame far away from the yarn trolley inlet, and one end of the yarn trolley guide rail is connected with the buffer baffle.
In one embodiment, the yarn trolley frame is further provided with a limiting rod and a power part connected with the limiting rod, and the power part can drive the limiting rod to move to the yarn trolley inlet so as to limit the yarn trolley in the accommodating cavity.
The utility model also provides a warping equipment, including conveyor belt mechanism and above-mentioned upset dress section of thick bamboo device, conveyor belt mechanism includes frame and conveyer belt, the axis of rotation with the frame is connected.
In one embodiment, the axial direction of the rotating shaft is parallel to the conveying direction of the conveyor belt.
In one embodiment, the yarn winding machine further comprises a yarn trolley for accommodating the cone yarn, and pulleys are arranged at the bottom of the yarn trolley.
The utility model discloses a upset dress section of thick bamboo device is when using, is connected the axis of rotation with conveyor belt mechanism's frame to the yarn car frame that is connected with the axis of rotation just can the relative conveyor belt mechanism rotate, then will be equipped with the yarn car of section of thick bamboo yarn and put into holding the chamber of yarn frame, the relative conveyor belt mechanism of rethread driving piece drive yarn car frame rotates, alright drive hold the yarn car motion in the chamber in order to fall the section of thick bamboo yarn in the yarn car to conveyor belt mechanism's conveyer belt. So, can shift the section of thick bamboo yarn in the yarn car to the conveyer belt fast through this upset dress section of thick bamboo device, need not artifical a transfer, reduced the consumption of dress section of thick bamboo time, improved production efficiency, reduced staff's intensity of labour simultaneously, can provide a relatively light operational environment for the staff.
Drawings
Fig. 1 is a schematic structural diagram of a warping apparatus according to an embodiment.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully below, and preferred embodiments of the present invention will be described. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
As shown in fig. 1, the turnover bobbin loader 100 of an embodiment of the present invention is configured to cooperate with a conveyor belt mechanism 210 of a warping apparatus 200, the turnover bobbin loader 100 includes a rotation shaft 110, a yarn carriage frame 120 and a driving member 130, the rotation shaft 110 is configured to be connected to a frame 211 of the conveyor belt mechanism 210, the yarn carriage frame 120 has a containing cavity for containing a yarn carriage 220, the yarn carriage frame 120 is connected to the rotation shaft 110 so that the yarn carriage frame 120 can rotate relative to the conveyor belt mechanism 210, and the driving member 130 is configured to drive the yarn carriage frame 120 to rotate relative to the conveyor belt mechanism 210, so as to drive the yarn carriage 220 in the containing cavity to move to dump a yarn bobbin 300 in the yarn carriage 220 onto a conveyor belt 212 of the conveyor belt mechanism 210.
The utility model discloses a upset dress section of thick bamboo device 100 is when using, be connected axis of rotation 110 with the frame 211 of conveyer belt mechanism 210 to the yarn car frame 120 of being connected with axis of rotation 110 just can the relative conveyer belt mechanism 210 rotate, then the yarn car 220 that will be equipped with section of thick bamboo yarn 300 is put into holding the chamber of yarn car frame 120, the relative conveyer belt mechanism 210 of rethread driving piece 130 drive yarn car frame 120 rotates, alright drive hold the yarn car 220 motion in the chamber in order to fall the section of thick bamboo yarn 300 in the yarn car 220 to the conveyer belt 212 of conveyer belt mechanism 210. Thus, the bobbin yarn 300 in the yarn trolley 220 can be quickly transferred to the conveying belt 212 through the overturning and bobbin loading device 100 without manual transfer, the consumption of bobbin loading time is reduced, the production efficiency is improved, the labor intensity of workers is reduced, and a relatively light working environment can be provided for the workers.
Alternatively, the driving member 130 is a hydraulic cylinder, one end of which is connected to the yarn carriage 120 and the other end of which is mounted on the ground corresponding to the conveyor belt 212. It is understood that the type of the driving member 130 is not limited thereto. Optionally, the size of the accommodating cavity is matched with the size of the charkha 220, and just one charkha 220 can be placed in the accommodating cavity, the shape of the accommodating cavity is designed according to the shape of the charkha 220, and the accommodating cavity is in a cuboid shape in the embodiment.
In one specific example, the side of the creel 120 is provided with a creel inlet 121 communicating with the receiving cavity, and the top of the creel 120 is provided with a cone yarn outlet 122 communicating with the receiving cavity. In this way, the creel 220 can be more easily inserted into the receiving cavity of the creel stand 120 through the side, and the cone yarn 300 can be easily poured out from the top of the creel stand 120.
In one particular example, the bottom surface of the creel 120 is provided with a cart rail 140, and the cart rail 140 extends horizontally from one side of the cart inlet 121 to the other. In this manner, the charkholder 220 can be more easily pushed into the receiving cavity of the charkholder frame 120 by the guidance of the charkholder guide 140.
In one particular example, the cart rails 140 are parallel to the axis of rotation 110. In this way, the direction of the yarn carrier 220 entering and exiting the yarn carrier frame 120 is parallel to the rotating shaft 110, so that the yarn carrier 220 can better keep stable in the accommodating cavity during the rotation of the yarn carrier frame 120, and the yarn carrier 220 is prevented from moving along the yarn carrier guide rail 140 when the yarn carrier frame 120 rotates.
In one specific example, the cart rail 140 includes a first rail 141 and a second rail 142, and the first rail 141 and the second rail 142 are spaced apart and arranged in parallel.
In one specific example, the side of the creel 120 away from the creel entrance 121 is provided with a buffer stop 150, and one end of the creel rail 140 is connected to the buffer stop 150. Thus, when the charkha 220 is pushed into the charkha frame 120, the buffer baffle 150 can provide a buffer function to prevent the charkha 220 from violently colliding with the charkha frame 120. It is understood that the buffering barrier 150 may be a slope plate, a flexible plate, or other various members having a buffering effect.
In a specific example, the creel 120 is further provided with a limiting rod 161 and a power member 162 connected with the limiting rod 161, and the power member 162 can drive the limiting rod 161 to move to the yarn car inlet 121 for limiting the yarn car 220 in the accommodating cavity. In this way, after the charkha 220 is pushed into the charkha frame 120, the power member 162 can move the limiting rod 161 to the charkha inlet 121, so that the charkha 220 is locked in the accommodating cavity, and the charkha 220 is prevented from falling out of the accommodating cavity when rotating.
As shown in fig. 1, the warping apparatus 200 according to an embodiment of the present invention includes a conveyor belt mechanism 210 and the above-mentioned turning and bobbin-loading device 100, the conveyor belt mechanism 210 includes a frame 211 and a conveyor belt 212, and the rotating shaft 110 is connected to the frame 211.
When the warping device 200 is used, the rotating shaft 110 is connected with the frame 211 of the conveyor belt mechanism 210, so that the creel frame 120 connected with the rotating shaft 110 can rotate relative to the conveyor belt mechanism 210, then the creel 220 with the yarns 300 is placed into the accommodating cavity of the creel frame 120, the creel frame 120 is driven by the driving piece 130 to rotate relative to the conveyor belt mechanism 210, and then the creel 220 in the accommodating cavity can be driven to move so as to pour the yarns 300 in the creel 220 onto the conveyor belt 212 of the conveyor belt mechanism 210. Thus, the cone yarn 300 in the yarn trolley 220 can be quickly transferred to the conveying belt 212 through the overturning and tube loading device 100 without manual transfer, the consumption of tube loading time is reduced, the production efficiency is improved, the labor intensity of workers is reduced, and a relatively light working environment can be provided for the workers.
In one embodiment, the axial direction of the rotating shaft 110 is parallel to the conveying direction of the conveyor belt 212, which facilitates the simultaneous pouring and conveying of a large number of bobbins.
In one specific example, the warping apparatus 200 further includes a creel 220 for receiving the cone yarn 300, and the bottom of the creel 220 is provided with a pulley 221, so that the creel 220 can be more easily pushed into the creel frame 120 by the pulley 221 cooperating with the creel guide rail 140. Optionally, the number of pulleys 221 is at least 4.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (10)
1. The utility model provides a upset dress barreled is put for the conveyer belt mechanism cooperation with warping equipment, a serial communication port, upset dress barreled is put including axis of rotation, yarn frame and driving piece, the axis of rotation be used for with conveyer belt mechanism's frame is connected, the yarn frame has the chamber that holds that is used for acceping the yarn car, just the yarn frame with rotation axis connection is so that the yarn frame can be relative conveyer belt mechanism rotates, the driving piece is used for the drive the yarn frame is relative conveyer belt mechanism rotates, thereby drives hold the yarn car motion in the chamber in order to fall the section of thick bamboo yarn in the yarn car to on conveyer belt mechanism's the conveyer belt.
2. The flip-loader device of claim 1 wherein the side of the yarn carriage has a yarn carriage inlet in communication with the receiving cavity and the top of the yarn carriage has a yarn drum outlet in communication with the receiving cavity.
3. The flip-loader assembly of claim 2 wherein the bottom surface of the creel stand is provided with a creel guide rail that extends horizontally from one side of the creel inlet to the other.
4. The flip loader device of claim 3 wherein said cart guide is parallel to said axis of rotation.
5. The flip loader device of claim 3 wherein said cart guide comprises a first rail and a second rail, said first rail and said second rail being spaced apart and arranged in parallel.
6. The flip-loader device of claim 3 wherein the side of the creel frame remote from the creel entrance is provided with a buffer stop, and one end of the creel guide rail is connected to the buffer stop.
7. The flip-loader device as claimed in any one of claims 1 to 6, wherein the creel stand is further provided with a limiting rod and a power member connected to the limiting rod, and the power member can drive the limiting rod to move to the creel inlet so as to limit the creel located in the accommodating cavity.
8. A warping device, characterized by comprising a conveyor belt mechanism and the overturning and bobbin-loading device of any one of claims 1 to 7, wherein the conveyor belt mechanism comprises a rack and a conveyor belt, and the rotating shaft is connected with the rack.
9. The warping apparatus of claim 8, wherein the axis of the rotating shaft is parallel to the transport direction of the conveyor belt.
10. The warping apparatus of claim 9, further comprising a creel for receiving the cone yarn, wherein a pulley is provided at a bottom of the creel.
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CN201922208863.9U CN211812162U (en) | 2019-12-10 | 2019-12-10 | Overturning and bobbin-loading device and warping equipment |
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CN201922208863.9U CN211812162U (en) | 2019-12-10 | 2019-12-10 | Overturning and bobbin-loading device and warping equipment |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN113581921A (en) * | 2021-07-12 | 2021-11-02 | 广州盛原成自动化科技有限公司 | Bobbin arranging system and using method thereof |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN113581921A (en) * | 2021-07-12 | 2021-11-02 | 广州盛原成自动化科技有限公司 | Bobbin arranging system and using method thereof |
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