CN211181953U - Automatic opening and closing tool for wire storage ring of magnetic ring winding machine - Google Patents

Automatic opening and closing tool for wire storage ring of magnetic ring winding machine Download PDF

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Publication number
CN211181953U
CN211181953U CN201921719836.1U CN201921719836U CN211181953U CN 211181953 U CN211181953 U CN 211181953U CN 201921719836 U CN201921719836 U CN 201921719836U CN 211181953 U CN211181953 U CN 211181953U
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China
Prior art keywords
ring
wire storage
storage ring
free end
driven wheel
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CN201921719836.1U
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Chinese (zh)
Inventor
周珂
陈慧
廖述艳
马细艳
黄奇翰
熊刚
张永生
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Zhongshan Competent Automation Equipment Co ltd
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Zhongshan Competent Automation Equipment Co ltd
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Abstract

The utility model discloses an automatic switching frock of wire storage ring of magnetic ring coiling machine, including the workstation with set up the rotary driving mechanism on the workstation, be provided with on the rotary driving mechanism by its drive pivoted wire storage ring, be equipped with the ring opening mouth on the wire storage ring and form first free end and second free end in the both sides of ring opening mouth, be provided with the first ring opening mechanism that can drive first free end and remove along the tangential direction and the axis direction of wire storage ring on the workstation. The utility model discloses can open the ring-opening mouth of wire storage ring automatically, work efficiency is high, need not manual operation, and the security is high.

Description

Automatic opening and closing tool for wire storage ring of magnetic ring winding machine
Technical Field
The utility model belongs to the technical field of the magnetic ring wire winding, concretely relates to magnetic ring coiling machine's wire storage ring switching frock.
Background
The wire storage ring is a necessary tool in the winding process of the inductance coil, and has the main function that a section of copper wire is stored in the winding process and then moves with the wire storage ring in a coordinated mode, and the section of the copper wire is regularly wound on the magnetic ring. The basic structure of the wire storage ring is an elastic steel ring which is provided with an opening, the outer circumference of the ring is provided with a groove for winding, the wall of the groove is provided with a wire hole or a wire groove, the opening is normally closed, the opening is broken off during winding, and then the magnetic ring and the two rings of the wire storage ring are buckled with each other by moving; and after the winding is finished, the open ring opening is broken off, so that the magnetic ring can be taken out.
At present, most of wire storage rings used on a magnetic ring winding machine are opened at an opening position in a manual mode, the working efficiency is low, and potential safety hazards exist due to the fact that an operator is possibly damaged by clamping when the wire storage rings recover to deform to close the opening.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a wire storage ring switching frock of magnetic ring coiling machine, this wire storage ring switching frock can be opened the ring-opening mouth of wire storage ring automatically, need not manual operation, and the security is high.
The utility model discloses a solve its technical problem and the technical scheme who adopts is:
the utility model provides an automatic switching frock of wire storage ring of magnetic ring coiling machine, includes the workstation with set up in rotary driving mechanism on the workstation, rotary driving mechanism on be provided with by its drive pivoted wire storage ring, be equipped with the ring opening on the wire storage ring and form first free end and second free end in the both sides of ring opening, the workstation on be provided with and drive first ring opening mechanism that first free end removed along the tangential direction and the axis direction of wire storage ring.
Preferably, the first ring opening mechanism comprises a first movable seat and a traveling mechanism capable of driving the first movable seat to move in two axes, the first movable seat is hinged with a first driven wheel, and the first driven wheel is surrounded by the wire storage ring and is in running fit with the wire storage ring.
Preferably, the traveling mechanism includes a first base disposed on the workbench, a first guide rail parallel to a tangential direction of the wire storage ring is disposed on the first base, a first sliding seat matched with the first guide rail and a first driving device capable of driving the first sliding seat to slide along the first guide rail are disposed on the first base, a second guide rail parallel to an axial direction of the wire storage ring is disposed on the first sliding seat, the first movable seat is mounted on the second guide rail, and a second driving device capable of driving the first movable seat to slide along the second guide rail is further disposed on the first sliding seat.
Preferably, a first engagement structure capable of restricting axial movement of the cable storage ring with respect to the first driven wheel is provided between the first driven wheel and the cable storage ring.
Preferably, the first engaging structure includes a circumferential V-shaped groove provided on the outer side wall of the first driven wheel, a portion of the inner side of the reservoir ring being embedded in the circumferential V-shaped groove.
Preferably, the table is provided with a second ring opening mechanism capable of driving the second free end to move away from the first free end along the tangential direction of the storage ring.
Preferably, the second ring opening mechanism includes a second movable base and a third driving device capable of driving the second movable base to move in a direction parallel to a tangent line of the storage ring, the second movable base is hinged to a second driven wheel, and the second driven wheel is surrounded by the storage ring and is rotatably engaged with the storage ring.
Preferably, the second driven pulley is spaced from the first driven pulley by a distance such that the first free end of the first driven pulley contacts and the second free end of the second driven pulley contacts when the rotation of the storage line ring is stopped.
Preferably, a second engagement structure capable of restricting axial movement of the storage wire ring with respect to the second driven wheel is provided between the second driven wheel and the storage wire ring.
Preferably, the second engaging structure includes a circumferential V-shaped groove provided on the outer side wall of the second driven wheel, and a portion of the inner side of the storage ring is partially fitted into the circumferential V-shaped groove.
The utility model has the advantages that: the utility model can automatically open the open loop of the wire storage ring, has high working efficiency, does not need manual operation, and has high safety; in addition, the open loop is realized by driving the two shafts of the first free end to move, and compared with the mode of only driving the first free end to move away from the second free end along one direction, the deformation quantity generated by the wire storage ring is smaller, so that the failure caused by the fatigue of the wire storage ring is avoided.
Drawings
FIG. 1 is an assembly view of the present invention;
fig. 2 is an exploded view of the present invention;
FIG. 3 is an exploded view of the first open-loop mechanism;
FIG. 4 is an exploded view of the second open-loop mechanism;
fig. 5 is a structural view of the reservoir ring.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
Referring to fig. 1 to 5, the embodiment of the utility model provides an automatic switching frock of wire storage ring of magnetic ring coiling machine, including workstation 1 with set up the rotary driving mechanism on workstation 1, the last drive pivoted wire storage ring 2 that is provided with of rotary driving mechanism is equipped with split ring mouth 21 on the wire storage ring 2, split ring mouth 21 forms first free end 22 and second free end 23 for a slit and split ring mouth 21's both sides, is provided with the first ring opening mechanism that can drive first free end 22 along the tangential direction and the axis direction removal of wire storage ring 2 on the workstation 1. The tangent direction of the wire storage ring 2 refers to the tangent direction of the tangent point at the opening 21.
In the process of ring opening, the first ring opening mechanism drives the first free end 22 to move away from the second free end 23 along the tangential direction of the wire storage ring 2, then the first free end 22 and the second free end 23 can be separated by moving upwards or downwards along the axial direction of the wire storage ring 2, at the moment, the magnetic ring can be installed in the wire storage ring 2 or taken out from the wire storage ring 2 through the opening between the first free end and the second free end, and after the work of taking out or installing the magnetic ring is finished, the wire storage ring 2 is reset under the driving of the self elasticity or the first ring opening mechanism. Compared with the prior art, the utility model can automatically open the open loop of the wire storage ring 2, has high working efficiency, does not need manual operation and has high safety; in addition, the open loop is realized by driving the first free end 22 to move along two axes, and compared with the mode of only driving the first free end 22 to move away from the second free end 23 along one direction, the deformation quantity generated by the wire storage ring 2 is smaller, which is beneficial to avoiding the fatigue and the failure of the wire storage ring 2.
Referring to fig. 2, the above-mentioned rotary driving mechanism is a conventional one, and includes a plurality of driving wheels 71 engaged with the inner side walls of the storage wire loops 2 to drive the storage wire loops 2 to rotate, and a main motor 72 disposed on the bottom surface of the table 1 to drive all the driving wheels 71 to rotate synchronously via a timing belt (not shown).
Referring to fig. 3, the first ring opening mechanism includes a first movable seat 31 and a traveling mechanism capable of driving the first movable seat 31 to move in two axes, a first driven wheel 32 is hinged on the first movable seat 31, an axis of the first driven wheel 32 is parallel to an axis of the storage ring 2, and the first driven wheel 32 is surrounded by the storage ring 2 and is rotatably matched with the storage ring 2. A first engagement structure capable of restricting axial movement of the cable storage ring 2 relative to the first driven wheel 32 is provided between the first driven wheel 32 and the cable storage ring 2. The first engaging structure includes a circumferential V-shaped groove 5 provided on the outer side wall of the first driven pulley 32, and a portion of the inner side of the wire storage ring 2 is partially embedded in the circumferential V-shaped groove 5.
Referring to fig. 2, the traveling mechanism includes a first base 40 provided on the table 1, a first guide rail 41 provided on the first base 40 in parallel with a tangential direction of the wire storage loop 2, a first slide 43 fitted to the first guide rail 41 and a first driving device 42 capable of driving the first slide 43 to slide along the first guide rail 41, a second guide rail 44 provided on the first slide 43 in parallel with an axial direction of the wire storage loop 2, the first movable base 31 attached to the second guide rail 44, and a second driving device 45 provided on the first slide 43 and capable of driving the first movable base 31 to slide along the second guide rail 44. Preferably, the first driving device 42 is a motor, and an output end of the motor is connected with a driven pulley through a belt mechanism, and the driven pulley drives the first sliding seat 43 to slide along the first guide rail 41 through a screw rod pair; the second driving device 45 is a cylinder, and an output end of the cylinder is connected to the first movable base 31 to drive the first movable base 31 to slide along the second guide rail 44.
As a further improvement of the present invention, the workbench 1 is provided with a second ring opening mechanism capable of driving the second free end 23 to move away from the first free end 22 along the tangential direction of the wire storage ring 2.
Referring to fig. 4, a third guide rail 61 parallel to a tangent line of the storage ring 2 is provided on the table 1, the second ring opening mechanism includes a second moving base 62 provided on the third guide rail 61, and a third driving device 63 capable of driving the second moving base 62 to move along the third guide rail 61, a second driven wheel 64 is hinged to the second moving base 62, an axis of the second driven wheel 64 is parallel to an axis of the storage ring 2, and the second driven wheel 64 is surrounded by the storage ring 2 and is rotatably engaged with the storage ring 2. Preferably, the third driving device 63 is a motor, and an output end of the motor is connected to a driven pulley through a belt mechanism, and the driven pulley drives the third slide to slide along the third guide rail 61 through a screw pair.
Referring to fig. 1 and 4, a second engagement structure capable of restricting axial movement of the cable storage ring 2 relative to the second driven wheel 64 is provided between the second driven wheel 64 and the cable storage ring 2. In this embodiment, the second engaging structure includes a circumferential V-shaped groove 5 provided on the outer side wall of the second driven pulley 64, and a part of the inner side of the wire storage ring 2 is partially fitted into the circumferential V-shaped groove 5.
The second driven wheel 64 is separated from the first driven wheel 32 by a certain distance, the second driven wheel 64 and the first driven wheel 32 are driven to rotate together when the storage line ring 2 rotates, and the V-shaped grooves 5 on the two driven wheels can provide support for the storage line ring 2, so that the storage line ring 2 is ensured to rotate stably; so that when the rotation of the storage loop 2 is stopped, the opening 21 is stopped between the two driven wheels, the first free end 22 is in contact with the first driven wheel 32 and the second free end 23 is in contact with the second driven wheel 64. The open loop process of the scheme is as follows: first, the first open-loop mechanism drives the first free end 22 to move away from the second free end 23 first in the tangential direction of the storage loop 2, while the second open-loop mechanism drives the second free end 23 to move away from the first free end 22 first in the tangential direction of the storage loop 2; then the first open-loop mechanism drives the first free end 22 to move upwards or downwards along the axial direction of the storage ring 2, so that the first free end 22 and the second free end 23 can be separated, at the moment, the magnetic ring can be put into the storage ring 2 or taken out from the storage ring 2 through the opening between the two, and after the work of taking out or putting in the magnetic ring is completed, the storage ring 2 is reset under the driving of the self elasticity or the first open-loop mechanism.
In some embodiments of the utility model, first ring-opening mechanism can adopt other structural style, for example adopt the fixed disc that sets up on first removal seat 31 to replace first from driving wheel 32, be provided with the V-arrangement groove on the lateral wall of disc equally, when storage wire ring 2 rotates, the disc is located storage wire ring 2 surrounds the region and with storage wire ring 2 interval certain distance, after storage wire ring 2 stall, the disc is close to first free end 22 and removes, make the inside part embedding V-arrangement groove 5 of first free end 22 in the disc, then the disc can drive first free end 22 along storage wire ring 2's tangential direction and storage wire ring 2's axis direction diaxon removal when moving along with running gear.
In some embodiments of the present invention, the second ring-opening mechanism may adopt other structural forms, for example, the second driven wheel 64 is replaced by a disc fixedly disposed on the second movable seat 62, a V-shaped groove is also disposed on the outer side wall of the disc, when the storage ring 2 rotates, the disc is located in the region surrounded by the storage ring 2 and has a certain distance from the storage ring 2, after the storage ring 2 stops rotating, the disc is close to the second free end 23 to move, so that the inner portion of the second free end 23 is embedded into the V-shaped groove 5 of the disc, and then the disc can drive the second free end 23 to move along the tangential direction of the storage ring 2 when moving along with the traveling mechanism.
The above is only the preferred embodiment of the present invention, as long as the technical solution of the purpose of the present invention is realized by the substantially same means, all belong to the protection scope of the present invention.

Claims (5)

1. The utility model provides an automatic switching frock of wire storage ring of magnetic ring coiling machine, includes workstation (1) and sets up the rotary driving mechanism on workstation (1), rotary driving mechanism on be provided with by its drive pivoted wire storage ring (2), wire storage ring (2) are equipped with ring opening (21) and form first free end (22) and second free end (23) in the both sides of ring opening (21), its characterized in that, workstation (1) on be provided with can drive first free end (22) along the tangent line direction and the first ring-opening mechanism of axis direction removal of wire storage ring (2), first ring-opening mechanism include first removal seat (31) and can drive the running gear of first removal seat (31) diaxon removal, first removal seat (31) on articulated have first from driving wheel (32), first from driving wheel (32) by wire storage ring (2) surround and the two normal running fit, workstation (1) on be provided with and drive second open loop mechanism that first free end (22) removed is kept away from along the tangential direction of wire storage ring (2) to second free end (23), second open loop mechanism include the second remove seat (62) and can drive second remove seat (62) along with third drive arrangement (63) that the tangent line parallel direction of wire storage ring (2) removed, second remove seat (62) on articulated have the second from driving wheel (64), the second from driving wheel (64) by wire storage ring (2) surround and the two normal running fit.
2. The automatic opening and closing tool for the wire storage ring of the magnetic ring winding machine as claimed in claim 1, wherein the traveling mechanism comprises a first base (40) arranged on the worktable (1), the first base (40) is provided with a first guide rail (41) parallel to the tangential direction of the wire storage ring (2), the first base (40) is provided with a first sliding seat (43) matched with the first guide rail (41) and a first driving device (42) capable of driving the first sliding seat (43) to slide along the first guide rail (41),
the first sliding seat (43) is provided with a second guide rail (44) parallel to the axial direction of the wire storage ring (2), the first moving seat (31) is installed on the second guide rail (44), and the first sliding seat (43) is further provided with a second driving device (45) capable of driving the first moving seat (31) to slide along the second guide rail (44).
3. The automatic opening and closing tool for the wire storage ring of the magnetic ring winding machine as claimed in claim 1, wherein the second driven wheel (64) and the first driven wheel (32) are arranged at intervals, so that the first free end (22) is in contact with the first driven wheel (32) and the second free end (23) is in contact with the second driven wheel (64) when the rotation of the wire storage ring (2) is stopped.
4. The automatic opening and closing tool for the wire storage ring of the magnetic ring winding machine as claimed in claim 1, wherein a second engaging structure capable of limiting the axial movement of the wire storage ring (2) relative to the second driven wheel (64) is provided between the second driven wheel (64) and the wire storage ring (2).
5. The automatic opening and closing tool for the wire storage ring of the magnetic ring winding machine as claimed in claim 4, wherein the second engaging structure comprises a circumferential V-shaped groove (5) disposed on an outer side wall of the second driven wheel (64), and a part of an inner side of the wire storage ring (2) is partially embedded in the circumferential V-shaped groove (5).
CN201921719836.1U 2019-10-14 2019-10-14 Automatic opening and closing tool for wire storage ring of magnetic ring winding machine Active CN211181953U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921719836.1U CN211181953U (en) 2019-10-14 2019-10-14 Automatic opening and closing tool for wire storage ring of magnetic ring winding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921719836.1U CN211181953U (en) 2019-10-14 2019-10-14 Automatic opening and closing tool for wire storage ring of magnetic ring winding machine

Publications (1)

Publication Number Publication Date
CN211181953U true CN211181953U (en) 2020-08-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921719836.1U Active CN211181953U (en) 2019-10-14 2019-10-14 Automatic opening and closing tool for wire storage ring of magnetic ring winding machine

Country Status (1)

Country Link
CN (1) CN211181953U (en)

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