CN212245683U - Winding device - Google Patents

Winding device Download PDF

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Publication number
CN212245683U
CN212245683U CN202021787132.0U CN202021787132U CN212245683U CN 212245683 U CN212245683 U CN 212245683U CN 202021787132 U CN202021787132 U CN 202021787132U CN 212245683 U CN212245683 U CN 212245683U
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China
Prior art keywords
framework
pivot
rotating shaft
frame
driving motor
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Application number
CN202021787132.0U
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Chinese (zh)
Inventor
郑恒拓
郑恩雷
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Zhejiang Lxjeon Electric Co ltd
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Zhejiang Lxjeon Electric Co ltd
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Priority to CN202021787132.0U priority Critical patent/CN212245683U/en
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Abstract

The utility model discloses a winding device, which comprises a frame, wherein the frame is provided with a driving motor a, a rotating shaft b, a framework and a feeding disc for installing winding, the rotating shaft a is rotatably arranged on the frame, the framework comprises an inner framework and an outer framework, the inner framework and the outer framework are rotatably arranged on a rotating shaft a and are arranged side by side, a feeding disc a and a feeding disc b are arranged on the feeding disc corresponding to the inner framework and the outer framework, the feeding disc a and the feeding disc b are both rotatably arranged on the rotating shaft b and are arranged side by side, the machine base is also provided with a mounting plate and a guide rod, the mounting plate is slidably arranged on the guide rod, the machine base is also provided with a driving assembly, the outer framework is internally provided with a mounting groove, the rotating shaft a is an inflatable shaft, the inner framework and the outer framework can be wound simultaneously, the inner framework and the outer framework can be assembled after winding is finished, the use is simple, the operation is convenient, and the cost is lower.

Description

Winding device
Technical Field
The utility model relates to a winding device technical field, in particular to winding device.
Background
In the prior art, a winding device comprises a driving motor, a rotating shaft, a framework and a feeding disc, wherein a winding is sleeved on the feeding disc, the rotating shaft and a motor output shaft synchronously rotate, the framework is sleeved on the rotating shaft, the motor output shaft drives the rotating shaft to rotate, and the rotating shaft can drive the framework to rotate, so that the winding on the feeding disc is wound on the framework, and then the feeding disc is driven to move along the axial direction of the rotating shaft, so that the winding is uniformly wound on the framework; but has at least the following drawbacks: 1. when the framework comprises an inner framework and an outer framework which need to be wound, the inner framework or the outer framework can only be wound independently, and the use is limited; 2. after the winding of the inner framework and the outer framework is finished, manual assembly or assembly through another set of device is needed, the cost is high, and the steps are complex.
Disclosure of Invention
The utility model aims at: in order to overcome prior art's defect, the utility model provides a winding device can carry out the wire winding for inner frame and exoskeleton simultaneously, and the wire winding can also make up the assembly to inner frame and exoskeleton after finishing moreover, and simple to use convenient operation, the cost is also lower moreover.
The utility model discloses a winding device, including the frame, be equipped with driving motor a, pivot an, pivot b, skeleton on the frame and be used for installing wire-wound charging tray, pivot an rotates and sets up on the frame, pivot an and driving motor a output shaft fixed connection or integrative setting, pivot b rotates and sets up on the frame, pivot an and pivot b parallel arrangement, its characterized in that: the framework comprises an inner framework and an outer framework, the inner framework and the outer framework are sleeved on a rotating shaft a and arranged side by side, the inner framework and the outer framework rotate synchronously with the rotating shaft a, a feeding tray is provided with a feeding tray a and a feeding tray b corresponding to the inner framework and the outer framework, the feeding tray a and the feeding tray b are sleeved on the rotating shaft b and arranged side by side, the feeding tray a and the feeding tray b rotate synchronously with the rotating shaft b, the machine base is also provided with a mounting plate and a guide rod, the mounting plate is arranged on the guide rod in a sliding manner, the mounting plate is provided with an extension block, the extension block is provided with a through hole matched with the guide rod, the guide rod is inserted in the through hole, a driving motor a is arranged on the mounting plate, the machine base is also provided with a driving assembly for driving the mounting plate to slide back and forth, the outer framework is internally provided with a mounting groove, the inner framework can slide into or slide out, the pivot a tip is equipped with inflation inlet a, and air pump a's output is connected with inflation inlet a, and air pump a's output can rotate inflation inlet a relatively, and the one side that lies in the inner frame on the frame and keep away from outer skeleton is equipped with the electric jar, and the electric jar output is contradicted on inner frame, and the one end that lies in the outer frame on the pivot a and keep away from inner frame still is equipped with the separation blade, and the connection can be dismantled on pivot a to the separation blade.
By adopting the technical scheme, the driving motor a can drive the rotating shaft a, the rotating shaft can simultaneously drive the inner framework and the outer framework to rotate, the inner framework can drive the upper material tray a to rotate, so that the winding on the upper material tray a is wound on the inner framework, the outer framework can drive the upper material tray b to rotate, so that the winding on the upper material tray b is wound on the outer framework, the upper material tray a and the upper material tray b can drive the rotating shaft b to rotate, the matching of the through holes and the guide rods can play a role of guiding the mounting plate when sliding, the driving assembly can drive the mounting plate to slide, the driving motor a is arranged on the mounting plate, so that the driving motor a can be driven to slide when the mounting plate slides, the rotating shaft a and the output shaft of the driving motor a are integrally arranged or fixedly connected, the rotating shaft a can slide along with the driving motor a, so that the winding can be wound on the corresponding framework more uniformly, the mounting groove can be convenient for the inner frame to install in the exoskeleton, when air pump a is aerifyd for pivot a, can be so that inner frame and exoskeleton are more stable installs in pivot a, prevent that inner frame and exoskeleton pivot a slide and rotate relatively, when air pump a is for pivot a gassing, can be convenient for the dismantlement of inner frame and exoskeleton, and in pivot a gassing can also push the inner frame into the mounting groove through the electric jar in addition, the separation blade can prevent that the outer skeleton from following to slide when pushing away the inner frame of electric jar.
The utility model discloses a further setting again: the driving assembly comprises a driving motor b, a rotary disc and a connecting rod, the driving motor b is fixedly arranged on the base, the rotary disc is sleeved on an output shaft of the driving motor b and synchronously rotates with the output shaft of the driving motor b, the rotary disc is provided with a shaft body, the shaft body is arranged in parallel with the output shaft of the driving motor b, one end of the connecting rod is hinged on the shaft body, and the other end of the connecting rod is hinged on the mounting plate.
Adopt above-mentioned further setting again, driving motor b can drive the carousel and rotate, so the axis body can play the eccentric action with driving motor b output shaft parallel arrangement when rotating, can drive connecting rod reciprocating motion when the carousel rotates, can drive the mounting panel along guide bar length direction reciprocating motion when the connecting rod reciprocating motion to realize driving motor an and pivot an along guide bar length direction reciprocating motion.
The utility model discloses a further setting again: one side that is close to outer skeleton on the inner frame is equipped with the trip, lies in the mounting groove bottom on the outer skeleton and is equipped with the draw-in groove with trip looks adaptation, and draw-in groove end to end connection is the annular distribution, and the trip can be with draw-in groove buckle cooperation.
By adopting the above further arrangement, the cooperation of the clamping hook and the clamping groove can prevent the inner framework and the outer framework from being easily separated after combination, and the clamping groove is annularly distributed in the end-to-end connection, so that the clamping hook and the clamping groove are more convenient to cooperate, and the angle and the position do not need to be adjusted.
The utility model discloses a further setting: the rotating shaft b is an inflatable shaft, an inflation inlet b is arranged at the end part of the rotating shaft b, an air pump b is arranged on the machine base, the output end of the air pump b is connected with the inflation inlet b, and the output end of the air pump b can rotate relative to the inflation inlet b.
Adopt above-mentioned further setting, air pump b can fill gassing for pivot b, and gassing when going up the charging tray and need dismantling can be convenient for go up the charging tray and dismantle, and it aerifys to go up the charging tray when assembling in pivot b, can prevent to go up the charging tray and slide and rotate for more stable when using, can not drive air pump b when pivot b pivoted moreover and rotate, feasible more convenient when using.
The utility model discloses a further setting: still be equipped with between pivot b and the frame and be used for controlling pivot b pivoted brake subassembly, the brake subassembly is including the brake disc, the brake block, the screw rod that brake block mounting panel and drive brake block mounting panel removed, brake disc fixed connection is in pivot b, the brake block mounting panel presents the arc setting, and the cover is established on the brake disc, be equipped with the clearance between brake block mounting panel and the brake disc, the brake block is located the clearance and installs on the brake block mounting panel, it is equipped with the screw hole to lie in the brake disc top on the frame, screw hole and screw hole screw-thread fit are worn to locate by the screw rod, the one end of screw rod is equipped with the handle, other end fixed connection is on the brake block mounting panel, the screw rod rotates and can drive the brake block mounting panel and remove.
Adopt above-mentioned further setting, can drive the screw rod through turning handle and rotate, the screw rod can be pulled the brake block mounting panel after rotating and is removed, thereby make the brake block conflict on the brake disc, can rub with the brake block when the brake disc is pivoted this moment, come control pivot b pivoted speed through frictional force, the handle can be convenient for control screw rod and rotate, can also make when the material loading increase wire-wound tension when brake block conflicts with the brake disc in addition, make the phenomenon that prevents the virtual winding in the material loading take place.
The utility model discloses a further setting: the guide rod is arranged in a polygon shape.
With the above further arrangement, the mounting plate can be prevented from rotating when sliding.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural view of the driving assembly of the present invention;
FIG. 3 is a matching view of the driving motor a, the mounting plate and the rotating shaft a of the present invention;
FIG. 4 is a structural view of the inner frame of the present invention;
FIG. 5 is a structural view of the outer frame of the present invention;
FIG. 6 is a schematic diagram of the brake assembly mechanism and position of the present invention;
FIG. 7 is a drawing showing the combination of the brake pad mounting plate and the brake pad of the present invention;
fig. 8 is an enlarged view of a portion h of fig. 6.
Detailed Description
The following detailed description of the embodiments of the present invention is provided with reference to the accompanying drawings:
the rotating shaft a3 and the rotating shaft b4 both adopt inflatable shafts, and the structure, inflation and deflation and installation of the inflatable shafts are conventional means of persons skilled in the art, so the details are not described herein.
The utility model discloses a winding device, which comprises a base 1, wherein the base 1 is provided with a driving motor a2, a rotating shaft a3, a rotating shaft b4, a framework 5 and a charging tray 6 for installing winding wires, the rotating shaft a3 is rotationally arranged on the base 1, the rotating shaft a3 is fixedly connected with an output shaft of the driving motor a2 or is arranged integrally, the rotating shaft b4 is rotationally arranged on the base 1, the rotating shaft a3 and the rotating shaft b4 are arranged in parallel, in the embodiment of the utility model, the framework 5 comprises an inner framework 511 and an outer framework 512, the inner framework 511 and the outer framework 512 are sleeved on the rotating shaft a3 and are arranged side by side, the inner framework 511 and the outer framework 512 are synchronously rotated with the rotating shaft a3, the charging tray 6 is provided with a611 and a charging tray b612 corresponding to the inner framework 511 and the outer framework 512, the charging tray a611 and the charging tray b612 are sleeved on the rotating shaft b4 and are arranged side by side, the charging tray a611 and the charging tray b612 and the rotating shaft, the engine base 1 is further provided with a mounting plate 7 and a guide rod 8, the mounting plate 7 is slidably arranged on the guide rod 8, the mounting plate 7 is provided with an extension block 711, the extension block 711 is provided with a through hole 9 matched with the guide rod 8, the guide rod 8 is inserted in the through hole 9, a driving motor a2 is arranged on the mounting plate 7, the engine base 1 is further provided with a driving assembly 10 for driving the mounting plate 7 to slide back and forth, an outer framework 512 is internally provided with a mounting groove 5121, an inner framework 511 can slide into or slide out of the mounting groove 5121 through a notch of the mounting groove 5121, a rotating shaft a3 is an air expansion shaft, the engine base 1 is provided with an air pump a11, the end of the rotating shaft a3 is provided with an air charging port a12, the output end of the air pump a11 is connected with the air charging port a12, the output end of the air pump a11 can rotate relative to the air charging port a12, the output end of the air pump a11 can be connected, the electric cylinder 13 is arranged on one side of the inner frame 511, which is far away from the outer frame 512, of the machine base 1, the output end of the electric cylinder 13 is abutted against the inner frame 511, the stop piece 14 is further arranged on one end of the rotating shaft a3, which is far away from the inner frame 511, the stop piece 14 is detachably connected to the rotating shaft a3, the stop piece 14 can be matched with a threaded section 15 arranged on the rotating shaft a3 through a threaded hole, the specific installation belongs to the common knowledge of the technical personnel in the field, the detailed description is not provided herein, the driving motor a2 can drive the rotating shaft a3, the rotating shaft a3 can drive the inner frame 511 and the outer frame 512 to rotate at the same time, the inner frame 511 can drive the upper charging tray a611 to rotate, the winding on the upper charging tray a611 is wound on the inner frame 511, the outer frame 512 can drive the upper charging tray b612 to rotate, the winding on the upper charging tray b612 can drive the rotating shaft b4 to rotate, the rotating shaft b4 can be one or two, the upper tray a611 and the upper tray b612 can be sleeved on the same rotating shaft b4, or can be sleeved on different rotating shafts b4, the through hole 9 and the guide rod 8 can guide the mounting plate 7 when sliding, the driving component 10 can drive the mounting plate 7 to slide, the driving motor a2 is installed on the mounting plate 7, so that the mounting plate 7 can drive the driving motor a2 to slide when sliding, because the rotating shaft a3 and the output shaft of the driving motor a2 are integrally arranged or fixedly connected, the rotating shaft a3 can slide along with the driving motor a2, so that the winding can be more uniformly wound on the corresponding framework, the mounting groove 5121 can facilitate the installation of the inner framework 511 in the outer framework 512, when the air pump a11 inflates the rotating shaft a3, the inner framework 511 and the outer framework 512 can be more stably installed on the rotating shaft a3, the inner framework 511 and the outer framework 512 are prevented from sliding and rotating relative to the rotating shaft a3, when the air pump a11 deflates the rotating shaft a3, the inner framework 511 and the outer framework 512 can be conveniently detached, when the rotating shaft a3 deflates, the inner framework 511 can be pushed into the mounting groove 5121 through the electric cylinder 13, and the blocking piece 14 can prevent the outer framework 512 from sliding along with the electric cylinder 13 when the inner framework 511 is pushed.
The driving assembly 10 includes a driving motor b1011, a rotary disc 1012 and a connecting rod 1013, the driving motor b1011 is fixedly arranged on the machine base 1, the rotary disc 1012 is sleeved on an output shaft of the driving motor b1011 and rotates synchronously with the output shaft of the driving motor b1011, the rotary disc 1012 is provided with a shaft body 1014, the shaft body 1014 is arranged in parallel with the output shaft of the driving motor b1011, one end of the connecting rod 1013 is hinged on the shaft body 1014, the other end of the connecting rod 1013 is hinged on the mounting plate 7, the driving motor b1011 can drive the rotary disc 1012 to rotate, the shaft body 1014 is arranged in parallel with the output shaft of the driving motor b1011 so as to play an eccentric role when rotating, the rotary disc 1012 drives the connecting rod 1013 to reciprocate when the connecting rod 1013 reciprocates, the mounting plate 7 is driven to reciprocate along the length direction of the guide rod 8, and therefore, the reciprocating motion of.
One side that is close to outer skeleton 512 on the inner frame 511 is equipped with trip 5111, lie in the mounting groove 5121 bottom on the outer skeleton 512 and be equipped with the draw-in groove 5122 with trip 5111 looks adaptation, draw-in groove 5122 end to end connection is the annular distribution, trip 5111 can with draw-in groove 5122 buckle fit, trip 5111 and draw-in groove 5122 cooperation can prevent that inner frame 511 and outer skeleton 512 from separating easily after the combination, and draw-in groove 5122 end to end connection is the annular distribution and can be more convenient when trip 5111 and draw-in groove 5122 cooperation, need not angle regulation and position.
The rotating shaft b4 is an inflatable shaft, the end of the rotating shaft b4 is provided with an inflation port b16, the base 1 is provided with an air pump b17, the output end of the air pump b17 is connected with the inflation port b16, the output end of the air pump b17 can rotate relative to the inflation port b16, the air pump b17 can inflate and deflate the rotating shaft b4, the charging tray 6 can be deflated when needing to be disassembled, the charging tray 6 can be conveniently disassembled, the charging tray 6 can be inflated when being assembled on the rotating shaft b4, the charging tray 6 can be prevented from sliding and rotating, so that the use is more stable, the rotating shaft b4 cannot drive the air pump b17 to rotate when rotating, so that the use is more convenient, the output end of the charging tray b17 can be connected with the inflation port b16 through a bearing, the concrete connection belongs to common knowledge of the technical personnel in the field, and the detailed.
A brake component 18 for controlling the rotation of the rotating shaft b4 is further arranged between the rotating shaft b4 and the machine base 1, the brake component 18 comprises a brake disc 1811, a brake pad 1812, a brake pad mounting plate 1813 and a screw 1814 for driving the brake pad mounting plate 1813 to move, the brake disc 1811 is fixedly connected to the rotating shaft b4, the brake pad mounting plate 1813 is arranged in an arc shape and is sleeved on the brake disc 1811, a gap is arranged between the brake pad mounting plate 1813 and the brake disc 1811, the brake pad 1812 is arranged in the gap and is mounted on the brake pad mounting plate 1813, a threaded hole 1815 is arranged above the brake disc 1811 on the machine base 1, the screw 1814 is arranged in the threaded hole 1815 and is in threaded fit with the threaded hole 1815, one end of the screw 1814 is provided with a handle 1816, the other end is fixedly connected to the brake pad mounting plate 1813, the screw 1814 can drive the brake pad mounting plate 1813 to move by rotating the screw 1814, so as to realize the interference or, the screw 1814 pulls the brake pad mounting plate 1813 to move after rotating, so that the brake pad 1812 abuts against the brake disc 1811, the brake disc 1811 rubs against the brake pad 1812 when rotating, the rotating speed of the rotating shaft b4 is controlled by friction force, the handle 1816 can conveniently control the rotation of the screw 1814, and the tension of the winding can be increased when the brake pad 1812 abuts against the brake disc 1811, so that the phenomenon of virtual winding can be prevented when the winding is loaded.
The guide bar 8 is arranged in a polygon shape, and can prevent the mounting plate 7 from rotating when sliding.

Claims (6)

1. The utility model provides a winding device, including the frame, be equipped with driving motor a, pivot an, pivot b, skeleton on the frame and be used for installing wire-wound last charging tray, pivot an rotates and sets up on the frame, pivot an and driving motor a output shaft fixed connection or integrative setting, and pivot b rotates and sets up on the frame, pivot an and pivot b parallel arrangement, its characterized in that: the framework comprises an inner framework and an outer framework, the inner framework and the outer framework are sleeved on a rotating shaft a and arranged side by side, the inner framework and the outer framework rotate synchronously with the rotating shaft a, a feeding tray is provided with a feeding tray a and a feeding tray b corresponding to the inner framework and the outer framework, the feeding tray a and the feeding tray b are sleeved on the rotating shaft b and arranged side by side, the feeding tray a and the feeding tray b rotate synchronously with the rotating shaft b, the machine base is also provided with a mounting plate and a guide rod, the mounting plate is arranged on the guide rod in a sliding manner, the mounting plate is provided with an extension block, the extension block is provided with a through hole matched with the guide rod, the guide rod is inserted in the through hole, a driving motor a is arranged on the mounting plate, the machine base is also provided with a driving assembly for driving the mounting plate to slide back and forth, the outer framework is internally provided with a mounting groove, the inner framework can slide into or slide out, the pivot a tip is equipped with inflation inlet a, and air pump a's output is connected with inflation inlet a, and air pump a's output can rotate inflation inlet a relatively, and the one side that lies in the inner frame on the frame and keep away from outer skeleton is equipped with the electric jar, and the electric jar output is contradicted on inner frame, and the one end that lies in the outer frame on the pivot a and keep away from inner frame still is equipped with the separation blade, and the connection can be dismantled on pivot a to the separation blade.
2. A winding device according to claim 1, characterized in that: the driving assembly comprises a driving motor b, a rotary disc and a connecting rod, the driving motor b is fixedly arranged on the base, the rotary disc is sleeved on an output shaft of the driving motor b and synchronously rotates with the output shaft of the driving motor b, the rotary disc is provided with a shaft body, the shaft body is arranged in parallel with the output shaft of the driving motor b, one end of the connecting rod is hinged on the shaft body, and the other end of the connecting rod is hinged on the mounting plate.
3. A winding device according to claim 1 or 2, characterized in that: one side that is close to outer skeleton on the inner frame is equipped with the trip, lies in the mounting groove bottom on the outer skeleton and is equipped with the draw-in groove with trip looks adaptation, and draw-in groove end to end connection is the annular distribution, and the trip can be with draw-in groove buckle cooperation.
4. A winding device according to claim 3, characterized in that: the rotating shaft b is an inflatable shaft, an inflation inlet b is arranged at the end part of the rotating shaft b, an air pump b is arranged on the machine base, the output end of the air pump b is connected with the inflation inlet b, and the output end of the air pump b can rotate relative to the inflation inlet b.
5. A winding device according to claim 4, characterized in that: still be equipped with between pivot b and the frame and be used for controlling pivot b pivoted brake subassembly, the brake subassembly is including the brake disc, the brake block, the screw rod that brake block mounting panel and drive brake block mounting panel removed, brake disc fixed connection is in pivot b, the brake block mounting panel presents the arc setting, and the cover is established on the brake disc, be equipped with the clearance between brake block mounting panel and the brake disc, the brake block is located the clearance and installs on the brake block mounting panel, it is equipped with the screw hole to lie in the brake disc top on the frame, screw hole and screw hole screw-thread fit are worn to locate by the screw rod, the one end of screw rod is equipped with the handle, other end fixed connection is on the brake block mounting panel, the screw rod rotates and can drive the brake block mounting panel and remove.
6. A winding device according to claim 4 or 5, characterized in that: the guide rod is arranged in a polygon shape.
CN202021787132.0U 2020-08-24 2020-08-24 Winding device Active CN212245683U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021787132.0U CN212245683U (en) 2020-08-24 2020-08-24 Winding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021787132.0U CN212245683U (en) 2020-08-24 2020-08-24 Winding device

Publications (1)

Publication Number Publication Date
CN212245683U true CN212245683U (en) 2020-12-29

Family

ID=73981727

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021787132.0U Active CN212245683U (en) 2020-08-24 2020-08-24 Winding device

Country Status (1)

Country Link
CN (1) CN212245683U (en)

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