CN217544367U - Insulating paper tape wrapping device - Google Patents

Insulating paper tape wrapping device Download PDF

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Publication number
CN217544367U
CN217544367U CN202221588745.0U CN202221588745U CN217544367U CN 217544367 U CN217544367 U CN 217544367U CN 202221588745 U CN202221588745 U CN 202221588745U CN 217544367 U CN217544367 U CN 217544367U
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CN
China
Prior art keywords
unit
disc
transmission
paper tape
loading
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Active
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CN202221588745.0U
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Chinese (zh)
Inventor
隋东升
薛亮
杨超
彭学锋
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Ataqi Dayi Hu Electric Co ltd
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Ataqi Dayi Hu Electric Co ltd
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Priority to CN202221588745.0U priority Critical patent/CN217544367U/en
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Abstract

The utility model relates to an insulating paper tape wraps device, including disc unit, loading unit, guide element, walking unit, first drive unit, second drive unit and the control unit. The transformer body insulation paper tape loading device has the advantages that through the arrangement of the disc unit, the loading unit, the guide unit and the first transmission unit, the insulation paper tape on the loading unit can be wound on the transformer body along the circumferential direction of the transformer body; through setting up walking unit and second transmission unit for the insulating paper tape that is located on the loading unit can be twined in mutual-inductor ware body along the axial of mutual-inductor ware body, and then wraps the whole of mutual-inductor ware body with insulating paper tape, relies on artificial mode of wrapping in the tradition relatively, through using this device, and winding speed is fast, and is efficient, and twine in the insulating paper tape of mutual-inductor ware body can the unified specification.

Description

Insulating paper tape wrapping device
Technical Field
The utility model relates to a wrap technical field, especially relate to an insulating paper tape wraps device.
Background
The insulating paper is a generic name of paper for electrical insulation, and is used as an insulating material for various electric appliances such as cables and coils.
The current transformer is characterized in that insulating paper tapes are needed to be used for winding the straight line parts of the transformer in a multilayer mode in the manufacturing process of the current transformer, the traditional manual winding mode is slow, and the tightness degree and the size of the insulating paper tapes wound on the transformer body are not unified due to different working experiences and winding force of winding personnel.
At present, no effective solution is provided aiming at the problems of low winding speed, no same standard for tightness degree and size and the like in the related technology.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an insulating paper tape wraps device to not enough among the prior art to the winding speed is slow in the traditional manual winding mode who exists among the solution correlation technique, and winding insulating paper tape can not unify elasticity degree and size scheduling problem.
In order to achieve the purpose, the utility model adopts the technical proposal that:
the utility model provides an insulating paper tape wraps device, include:
the middle part of the disc unit is used for the mutual inductor body to pass through;
the loading unit is arranged on the disc unit along the radial direction of the disc unit and is used for loading the insulating paper tape;
the guide unit is arranged on the disc unit along the radial direction of the disc unit and used for guiding the insulation paper;
the walking unit is arranged at the bottom of the disc unit and is used for enabling the disc unit to walk along the axial direction of the disc unit;
the first transmission unit is arranged on the disc unit, is in transmission connection with the disc unit and is used for enabling the disc unit to rotate;
the second transmission unit is arranged on the disc unit, is in transmission connection with the walking unit and is used for enabling the walking unit to move;
and the control unit is arranged on the disc unit and is electrically connected with the first transmission unit and the second transmission unit respectively.
In some of these embodiments, the disk unit comprises:
a disc member provided with the loading unit and the guide unit in a radial direction;
the through hole element is arranged in the middle of the disc element and is used for the mutual inductor body to pass through;
and the base element is arranged at the bottom of the disc element and is connected with the walking unit.
In some of these embodiments, the loading unit comprises:
at least one first loading wheel element, which is arranged on the disk unit along the radial direction of the disk unit and is used for loading an insulating paper tape;
and the second loading wheel element is arranged on the disc unit along the radial direction of the disc unit and is close to the middle of the disc unit and used for providing tension for the insulating paper tape.
In some of these embodiments, the guide unit comprises:
a first connecting member, a first end of which is rotatably provided to the disc unit;
the guide element is fixed at the second end of the first connecting element and used for guiding the insulating paper tape when the mutual inductor body is bound;
the first end of the second connecting element is arranged on the disc unit, the second connecting element is arranged on the outer side of the first connecting element, and the length of the second connecting element is smaller than that of the first connecting element.
In some of these embodiments, the guide unit further comprises:
the first fastening element is respectively arranged at the second ends of the first connecting element and the second connecting element in a penetrating way;
the second fastening element is detachably connected with the first fastening element and used for abutting against the first connecting element/the second connecting element.
In some of these embodiments, the guide unit further comprises:
and the locking connecting elements are respectively arranged at the first ends of the first connecting element and the second connecting element and are used for fixing the first connecting element and the second connecting element with the disc unit after rotating.
In some of these embodiments, the walking unit comprises:
a plurality of road wheel elements rotatably disposed at the bottom of the disk unit.
In some of these embodiments, the walking unit further comprises:
the guide rail component, the guide rail component set up in walking wheel component bottom, just the length direction of guide rail component is followed the axial setting of disc unit is used for the walking wheel component is followed the axial walking of disc unit.
In some of these embodiments, the first transmission unit comprises:
a first drive element;
a first transmission element disposed on a rotational axis of the first drive element;
a second transmission element provided to the disc unit;
and the third transmission element is in transmission connection with the first transmission element and the second transmission element respectively.
In some of these embodiments, the second transmission unit comprises:
a second drive element;
a fourth transmission element arranged on the rotating shaft of the second driving element;
and the fifth transmission element is arranged on the walking unit and is in transmission connection with the fourth transmission element.
In some of these embodiments, the control unit comprises:
the first frequency conversion element is arranged on the disc unit and is electrically connected with the first transmission unit;
and the second frequency conversion element is arranged on the disc unit and is electrically connected with the second transmission unit.
In some of these embodiments, further comprising:
and the protection unit is arranged on the outer side of the disc unit along the circumferential direction of the disc unit and is used for protecting the loading unit and the guide unit.
In some of these embodiments, the protection unit comprises:
at least two protection cover elements, the protection cover elements are arranged on the outer side of the disc unit along the circumferential direction of the disc unit and are used for protecting the loading unit and the guide unit.
The utility model adopts the above technical scheme, compare with prior art, have following technological effect:
the utility model relates to an insulating paper tape wrapping device, through setting up disc unit, loading unit, guide unit and first drive unit, when mutual-inductor ware body passes the disc unit coaxially, first drive unit is connected with the transmission of disc unit, drives the disc unit and rotates, and then drives loading unit and guide unit and rotate synchronously, makes the insulating paper tape that is located on loading unit can twine the mutual-inductor ware body along the circumference of mutual-inductor ware body; through setting up walking unit and second drive unit, second drive unit drives the axial walking of walking unit along the disc unit for the axial that is located mutual-inductor ware body can be followed to the insulating paper tape that is located loading unit twines in mutual-inductor ware body, and then wraps the whole of mutual-inductor ware body with insulating paper tape, relies on artificial mode of wrapping in the tradition relatively, through using this device, the winding speed is fast, and is efficient, and twine in the insulating paper tape of mutual-inductor ware body can unify the specification.
Drawings
Fig. 1 is a schematic structural diagram (one) of an insulation paper tape wrapping device according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram (two) of an insulating paper tape wrapping device according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a disc unit according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a loading unit according to an embodiment of the present invention;
fig. 5 is a schematic structural view of a guide unit according to an embodiment of the present invention;
fig. 6 is an enlarged schematic view of the structure of the guiding unit according to the embodiment of the present invention
Fig. 7 is a schematic structural view of a walking unit according to an embodiment of the present invention;
fig. 8 is a schematic structural diagram of a first transmission unit according to an embodiment of the present invention;
fig. 9 is a schematic structural view of a second transmission unit according to an embodiment of the present invention;
fig. 10 is a schematic structural diagram of a protection unit according to an embodiment of the present invention.
Wherein the reference numerals are:
110. a disc unit; 111. a disc member; 112. a through-hole element; 113. a base member;
120. a loading unit; 121. a first loading wheel element; 122. a second load wheel element;
130. a guide unit; 131. a first connecting element; 132. a guide member; 133. a second connecting element; 134. a first fastening element; 135. a second fastening element;
140. a traveling unit; 141. a road wheel element;
150. a first transmission unit; 151. a first drive element;
160. a second transmission unit; 161. a second drive element;
170. a control unit;
180. a protection unit; 181. a shield element.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
The present invention will be further described with reference to the accompanying drawings and specific embodiments, which are not intended to limit the present invention.
The utility model discloses an exemplary embodiment, as shown in FIGS. 1-2, the utility model provides an insulating paper tape wrapping device, including disc unit 110, loading unit 120, guide unit 130, walking unit 140, first drive unit 150, second drive unit 160 and the control unit 170. Wherein, the middle part of the disc unit 110 is used for the mutual inductor body to pass through; the loading unit 120 is arranged on the disc unit 110 along the radial direction of the disc unit 110 and is used for loading the insulating paper tape; the guide unit 130 is provided to the disc unit 110 in a radial direction of the disc unit 110, for guiding the insulation paper; the traveling unit 140 is disposed at the bottom of the disc unit 110, and is used for allowing the disc unit 110 to travel along the axial direction thereof; the first transmission unit 150 is disposed on the disc unit 110, and is in transmission connection with the disc unit 110, for rotating the disc unit 110; the second transmission unit 160 is disposed on the disc unit 110, and is in transmission connection with the walking unit 140, for moving the walking unit 140; the control unit 170 is disposed on the disc unit 110 and electrically connected to the first transmission unit 150 and the second transmission unit 160, respectively.
Specifically, a transformer body is inserted through the middle of the disk unit 110, wherein the transformer body is coaxially disposed with the disk unit 110, and the transformer body is clamped by a clamping device in the prior art, so that the transformer device is kept still.
Specifically, the insulating paper tape is loaded on the loading unit 120 in a roll form.
Specifically, a winding end of the insulating paper tape for winding the transformer body is provided to the guide unit 130 for guiding the insulating paper tape to wind the transformer body.
Specifically, remove through walking unit 140 and make the utility model discloses insulating paper tape wrapping device wholly can remove the position that needs the operation, is carrying out the insulating paper tape winding in-process to mutual-inductor ware body simultaneously, and walking unit 140 is through the axial displacement along disc unit 110 for the insulating paper tape that loads in loading unit 120 can wrap mutual-inductor ware body wholly.
Specifically, the first transmission unit 150 is in transmission connection with the disc unit 110, so that the disc unit 110 rotates, and then the loading unit 120 arranged on the disc unit 110 is driven to rotate, so that the insulating paper tape loaded on the loading unit 120 performs one of the circumferences of the mutual inductor body in a rotating manner.
Specifically, the second transmission unit 160 is in transmission connection with the walking unit 140, and the walking unit 140 is caused to move by operating the second transmission unit 160.
Specifically, the control unit 170 is electrically connected to the first transmission unit 150 and the second transmission unit 160, respectively. The staff only needs to pass through operation control unit 170 for first drive unit 150, second drive unit 160 move, and then make the utility model discloses insulating paper tape binding device wholly moves to realize insulating paper tape to the binding of mutual-inductor ware body, easy and simple to handle, it is efficient and wrap the standard unifiedly.
As shown in fig. 3, the disk unit 110 includes a disk member 111, a through-hole member 112, and a base member 113. Wherein the disc member 111 is radially provided with a loading unit 120 and a guide unit 130; the through hole element 112 is arranged in the middle of the disc element 111 and is used for the mutual inductor body to pass through; the base member 113 is disposed at the bottom of the disc member 111 and is connected to the traveling unit 140.
Specifically, the disk member 111 is rotatably coupled to the base member 113, the loading unit 120 and the guide unit 130 are disposed at one side of the disk member 111, and the first traveling unit 140 is disposed at the base member 113 and located at the other side of the disk member 111.
Specifically, the through-hole member 112 is disposed coaxially with the disc member 111.
Specifically, the through-hole member 112 is a through-hole which is coaxially opened in the middle of the disc member 111, and the diameter of the through-hole is set in conformity with the diameter of the transformer body passing through the through-hole and is larger than the diameter of the transformer body passing through the through-hole so as to facilitate passage of the transformer body.
Specifically, the base member 113 is rotatably connected to the traveling unit 140.
As shown in fig. 4, the loading unit 120 comprises at least one first loading wheel element 121 and at least one second loading wheel element 122. Wherein, the first loading wheel element 121 is arranged on the disc unit 110 along the radial direction of the disc unit 110 for loading the insulating paper tape; the second loading wheel member 122 is provided to the disk unit 110 in a radial direction of the disk unit 110 and is provided near the middle of the disk unit 110 for providing tension to the insulating paper tape.
Specifically, a first loading wheel member 121 is provided to the disc member 111 in a radial direction of the through-hole member 112 for loading the insulating paper tape; the second loading wheel member 122 is provided to the disc member 111 in a radial direction of the through-hole member 112 and is disposed adjacent to the through-hole member 112 for providing tension to the insulating paper tape.
In some embodiments, there are two first loading wheel members 121, and the two first loading wheel members 121 are disposed at two radial ends of the through hole member 112 in a central symmetry manner, and the first loading wheel members 121 are disposed to rotate synchronously with the disk member 111.
In some of these embodiments, the first load wheel element 121 is a rubber wheel.
Specifically, the second loading wheel element 122 is disposed closer to the through hole element 112 than the first loading wheel element 121, and the second loading wheel element 122 is disposed downstream of the first loading wheel element 121 and upstream of the guide unit 130.
In some of these embodiments, the second load wheel element 122 is a rubber wheel and has a certain damping to provide tension to the insulating tape to ensure the compactness of the insulating tape wrapping the transformer body.
Specifically, the insulating paper tape is loaded on the first loading wheel element 121 in a roll form, and the winding end of the insulating paper tape is wound around the second loading wheel element 122 in a tensioned manner, guided by the guide unit 130, and finally wound around the transformer body.
As shown in fig. 5 to 6, the guide unit 130 includes a first connecting member 131, a guide member 132, and a second connecting member 133. Wherein, the first end of the first connection element 131 is rotatably disposed on the disc unit 110; the guide element 132 is fixed at the second end of the first connecting element 131 and used for guiding the insulating paper tape when the transformer body is wrapped; the first end of the second connecting member 133 is disposed at the disc unit 110, the second connecting member 133 is disposed at the outer side of the first connecting member 131, and the length of the second connecting member 133 is less than the length of the first connecting member 131.
Specifically, the first end of the first connecting element 131 is rotatably arranged on the disc element 111, and the first connecting element 131 is rotated relative to the disc element 111 to realize adjustment of different angles during the insulation bandaging; a first end of the second connecting member 133 is disposed at the disc member 111, and the second connecting member 133 is disposed at an outer side of the first connecting member 131.
Specifically, the guide member 132 is disposed close to the transformer body.
In particular, the guide element 132 is arranged downstream of the second loading wheel element 122.
In some of these embodiments, the first connection element 131 is a connecting rod.
In some of these embodiments, the guide element 132 is a guide rod.
In some of these embodiments, the second connecting element 133 is a link.
Further, the guide unit 130 further includes a first fastening member 134 and a second fastening member 135. Wherein, the first fastening element 134 is respectively inserted into the second ends of the first connecting element 131 and the second connecting element 133; the second fastening element 135 is detachably connected with the first fastening element 134 for abutting against the first/second connecting element 131/133.
Specifically, when the screw-coupling end of the first fastening member 134 is passed out from the first connecting member 131 to the second connecting member 133, the second fastening member 135 is screw-coupled to the first fastening member 134 from the second connecting member 133 side; when the screw-coupling end of the first fastening member 134 passes out from the second connecting member 133 toward the first connecting member 131, the second fastening member 135 is screw-coupled to the first fastening member 134 from the first connecting member 131 side. Through the threaded connection of the second fastening element 135 and the first fastening element 134, after the first connecting element 131 is rotated relative to the disc element 111, the distance of the second end between the first connecting element 131 and the second connecting element 133 is fixed, and thus the position of the first connecting element 131 and the guide element 132 is fixed, that is, the angle adjustment during the binding of the insulating paper tape is completed, so as to facilitate the binding of the instrument body by the insulating paper tape.
In some of these embodiments, the first fastening element 134 is a long screw.
In some of these embodiments, the second fastening element 135 is a nut.
Further, the guiding unit 130 further comprises a locking connection member disposed at a first end of the first connection member 131, for fixing the first connection member 131 to the disc member 111 after rotating.
In particular, the first end of the first connecting member 131 is rotatably connected to the disc member 111 by a locking connecting member, and when the rotation of the first connecting member 131 relative to the disc member 111 is completed, the locking of the position between the first connecting member 131 and the disc member 111 is achieved by the locking connecting member. The angle stability when the insulating paper tape after further increasing the regulation wraps.
In some of these embodiments, the second connecting member 133 is secured to the disk member 111.
In particular, the adjustment of the angle at the time of the insulation bandaging is carried out by turning the first connecting element 131, and after adjustment to the proper position, locking of the position between the first connecting element 131, the second connecting element 133 and the disc element 111 is achieved by the threaded connection of the first fastening element 134 and the second fastening element 135.
As shown in fig. 7, the traveling unit 140 includes a plurality of traveling wheel members 141, and the traveling wheel members 141 are rotatably provided at the bottom of the disk unit 110.
Specifically, the road wheel member 141 is rotatably disposed at the bottom of the base member 113.
In some of these embodiments, there are at least 4 traction elements 141. The 4 road wheel members 141 are symmetrically disposed at the bottom four corners of the base member 113.
In some of these embodiments, road wheel element 141 is a road wheel.
Further, the traveling unit 140 further includes a rail member disposed on a horizontal plane for the traveling wheel member 141 to perform a reciprocating linear motion.
In some of these embodiments, the length direction of the rail member is disposed along the axial direction of the disk unit 110 for the road wheel member 141 to travel along the axial direction of the disk unit 110.
Specifically, guide rail component detachably sets up in wrapping the subaerial of insulating paper tape operation, guarantees that insulating paper tape wraps the in-process to the mutual-inductor device, and walking wheel component 141 walks along disc element 111's axial all the time, and then guarantees that insulating paper tape can wrap the whole of mutual-inductor ware body.
As shown in fig. 8, the first transmission unit 150 includes a first driving element 151, a first transmission element, a second transmission element, and a third transmission element. Wherein, the first transmission element is arranged on the rotating shaft of the first driving element 151; the second transmission element is arranged on the disc unit 110; the third transmission element is respectively connected with the first transmission element and the second transmission element in a transmission way.
Specifically, the first driving element 151 is disposed on the base element 113; the second transmission member is disposed at the disk member 111 and is located at a side of the disk member 111 where the loading unit 120 and the guide unit 130 are not disposed.
Specifically, the first transmission element is in transmission connection with the second transmission element through a third transmission element, so that the first driving element 151 drives the disc element 111 to rotate, and further drives the loading unit 120 and the guiding unit 130 to rotate.
In some of these embodiments, the first drive element 151 is a 3-phase asynchronous motor.
In some of these embodiments, the first and second transmission elements are toothed pulleys and the third transmission element is a toothed third transmission element, respectively.
As shown in fig. 9, the second transmission unit 160 includes a second driving element 161, a fourth transmission element, and a fifth transmission element. Wherein, the fourth transmission element is arranged on the rotating shaft of the second driving element 161; the fifth transmission element is disposed on the walking unit 140 and is in transmission connection with the fourth transmission element.
Specifically, the second driving element 161 is disposed on the base element 113.
In some of these embodiments, the fourth and fifth transmission elements are intermeshing gears.
The control unit 170 comprises a first frequency translating element and a second frequency translating element. Wherein, the first frequency conversion element is disposed on the disc unit 110 and electrically connected to the first transmission unit 150; the second frequency conversion element is disposed on the disk unit 110 and electrically connected to the second transmission unit 160.
Specifically, first frequency conversion component and second frequency conversion component can carry out synchronous drive for the in-process of mutual-inductor ware body is wrapped to insulating paper tape, and insulating paper tape carries out circumference and circumferential wrapping to mutual-inductor ware body simultaneously.
Specifically, the first frequency conversion element and the second frequency conversion element are frequency converters respectively, are controlled by a switch and can be switched, and the frequency of the frequency converters is adjusted by a slide rheostat.
Further, the insulating paper tape wrapping device further comprises a protection unit 180. The protection unit 180 is disposed outside the disk unit 110 in a circumferential direction of the disk unit 110 to protect the loading unit 120 and the guide unit 130.
As shown in fig. 10, the protective unit 180 includes at least two protective cover elements 181. The protective cover element 181 is disposed outside the disk unit 110 in the circumferential direction of the disk unit 110 to protect the loading unit 120 and the guide unit 130.
Specifically, the shield member 181 is disposed outside the disk member 111 in the circumferential direction of the disk unit 110 to shield the loading unit 120 and the guide unit 130. In the process of wrapping the transformer body by the insulating paper tape, the disc element 111 rotates at a high speed, and the protective cover element 181 is arranged to prevent the loading unit 120 and the guide unit 130 from being interfered by the external environment to influence the work, and meanwhile, the safety of working personnel during work is improved.
The utility model discloses a working process and principle as follows:
the whole insulating paper tape wrapping device of the utility model is moved to the operation place of the transformer body by the insulating paper tape through the walking unit 140;
the guiding unit 130 is angularly adjusted according to the required wrapping angle: after rotating the first connecting member 131 to a proper position with respect to the disc member 111, the second end of the first connecting member 131 is connected to the second end of the second connecting member 133 by the first fastening member 134 and the second fastening member 135 such that the distance between the second end of the first connecting member 131 and the second end of the second connecting member 133 is fixed, and at this time, the angle adjustment is completed;
loading the first loading wheel element 121 with the coiled insulating paper tape, winding the winding end of the insulating paper tape around the second loading wheel element 122 in a tensioned manner, and guiding the insulating paper tape around the guide element 132;
the mutual inductor body penetrates through the through hole element 112, wherein the mutual inductor body is coaxial with the through hole element 112, the first frequency conversion element and the second frequency conversion element are synchronously driven, so that the first transmission unit 150 and the second transmission unit 160 synchronously operate, the disc unit 110 and the walking unit 140 are further driven to move, the insulating paper tape wraps the mutual inductor body axially and circumferentially at the same time in the process of wrapping the mutual inductor body, and finally the mutual inductor body is wrapped integrally.
The utility model has the advantages that by arranging the disc unit, the loading unit, the guiding unit and the first transmission unit, when the mutual inductor body coaxially passes through the disc unit, the first transmission unit is in transmission connection with the disc unit to drive the disc unit to rotate, so as to drive the loading unit and the guiding unit to synchronously rotate, and the insulating paper tape on the loading unit can be wound on the mutual inductor body along the circumferential direction of the mutual inductor body; through setting up walking unit and second transmission unit, second transmission unit drives the axial walking of walking unit along the disc unit for the insulating paper tape that is located on the loading unit can be followed the axial of mutual-inductor ware body and twined in the mutual-inductor ware body, and then wraps the whole of mutual-inductor ware body with insulating paper tape, and is compared in the tradition and relies on artificial mode of wrapping, through using this device, winding speed is fast, and is efficient, and twine in the insulating paper tape of mutual-inductor ware body can unify the specification.
The above is only a preferred embodiment of the present invention, and not intended to limit the scope of the invention, and it should be appreciated by those skilled in the art that various equivalent substitutions and obvious changes made in the specification and drawings should be included within the scope of the present invention.

Claims (10)

1. The utility model provides an insulating paper tape wrapping device for mutual-inductor ware body wraps insulating paper tape, its characterized in that includes:
the middle part of the disc unit is used for the mutual inductor body to pass through;
the loading unit is arranged on the disc unit along the radial direction of the disc unit and is used for loading the insulating paper tape;
the guide unit is arranged on the disc unit along the radial direction of the disc unit and used for guiding the insulation paper;
the traveling unit is arranged at the bottom of the disc unit and is used for enabling the disc unit to travel along the axial direction of the disc unit;
the first transmission unit is arranged on the disc unit, is in transmission connection with the disc unit and is used for enabling the disc unit to rotate;
the second transmission unit is arranged on the disc unit, is in transmission connection with the walking unit and is used for enabling the walking unit to move;
and the control unit is arranged on the disc unit and is electrically connected with the first transmission unit and the second transmission unit respectively.
2. An insulation bandaging device according to claim 1, characterised in that said disc unit comprises:
a disc member provided with the loading unit and the guide unit in a radial direction;
the through hole element is arranged in the middle of the disc element and is used for the mutual inductor body to pass through;
and the base element is arranged at the bottom of the disc element and is connected with the walking unit.
3. The insulating bandaging device according to claim 1, characterised in that the loading unit comprises:
at least one first loading wheel element, which is arranged on the disk unit along the radial direction of the disk unit and is used for loading an insulating paper tape;
and the second loading wheel element is arranged on the disk unit along the radial direction of the disk unit and is close to the middle of the disk unit and used for providing tension for the insulating paper tape.
4. The insulating bandaging device according to claim 1, characterized in that the guide unit comprises:
a first connecting member, a first end of which is rotatably provided to the disc unit;
the guide element is fixed at the second end of the first connecting element and used for guiding the insulating paper tape when the mutual inductor body is bound;
the first end of the second connecting element is arranged on the disc unit, the second connecting element is arranged on the outer side of the first connecting element, and the length of the second connecting element is smaller than that of the first connecting element.
5. An insulating bandaging device according to claim 4, characterised in that the guide unit further comprises:
the first fastening element is respectively arranged at the second ends of the first connecting element and the second connecting element in a penetrating way;
the second fastening element is detachably connected with the first fastening element and used for abutting against the first connecting element/the second connecting element.
6. The insulating bandaging device according to claim 1, characterized in that the walking unit comprises:
a plurality of road wheel elements rotatably disposed at the bottom of the disk unit.
7. An insulating bandaging device according to claim 1, characterised in that the first transmission unit comprises:
a first drive element;
a first transmission element disposed on a rotational axis of the first drive element;
a second transmission element provided to the disc unit;
the third transmission element is in transmission connection with the first transmission element and the second transmission element respectively; and/or
The second transmission unit includes:
a second drive element;
a fourth transmission element arranged on the rotating shaft of the second driving element;
and the fifth transmission element is arranged on the walking unit and is in transmission connection with the fourth transmission element.
8. An insulating bandaging device according to claim 1, characterised in that the control unit comprises:
the first frequency conversion element is arranged on the disc unit and is electrically connected with the first transmission unit;
and the second frequency conversion element is arranged on the disc unit and is electrically connected with the second transmission unit.
9. An insulating bandaging device according to any one of claims 1 to 8, further comprising:
and the protection unit is arranged on the outer side of the disc unit along the circumferential direction of the disc unit and is used for protecting the loading unit and the guide unit.
10. An insulating bandaging device according to claim 9, characterised in that the protection unit comprises:
the protective cover elements are arranged on the outer side of the disc unit along the circumferential direction of the disc unit and used for protecting the loading unit and the guide unit.
CN202221588745.0U 2022-06-23 2022-06-23 Insulating paper tape wrapping device Active CN217544367U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221588745.0U CN217544367U (en) 2022-06-23 2022-06-23 Insulating paper tape wrapping device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221588745.0U CN217544367U (en) 2022-06-23 2022-06-23 Insulating paper tape wrapping device

Publications (1)

Publication Number Publication Date
CN217544367U true CN217544367U (en) 2022-10-04

Family

ID=83420800

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221588745.0U Active CN217544367U (en) 2022-06-23 2022-06-23 Insulating paper tape wrapping device

Country Status (1)

Country Link
CN (1) CN217544367U (en)

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