CN215418937U - Two electric wires shell device - Google Patents

Two electric wires shell device Download PDF

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Publication number
CN215418937U
CN215418937U CN202121344941.9U CN202121344941U CN215418937U CN 215418937 U CN215418937 U CN 215418937U CN 202121344941 U CN202121344941 U CN 202121344941U CN 215418937 U CN215418937 U CN 215418937U
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Prior art keywords
peeling
driving
assembly
clamping
driving member
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CN202121344941.9U
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Chinese (zh)
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覃永康
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Zhongshan Neslon Robot Co ltd
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Zhongshan Neslon Robot Co ltd
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Abstract

The utility model discloses a two-plug wire peeling device, which at least comprises the following components: a mounting frame; the front and back feeding driving mechanism is arranged on the mounting frame; a pressing mechanism mounted on the mounting frame and configured to press the electric wire; the sheath peeling mechanism is arranged on the front and back feeding driving mechanism, is matched with the pressing mechanism and is configured to peel the sheath of the electric wire so as to expose two core wires in the electric wire; the front and back feeding driving mechanism is configured to drive the peeling mechanism to move back and forth. The utility model provides a peeling device with a brand new structure, which has the working principle that: the electric wire input into the device is pressed under the action of the pressing mechanism, and then the front-back feeding driving mechanism drives the sheath stripping mechanism to strip the wires, so that the sheaths are removed, two core wires are exposed, and the subsequent processing is facilitated; the peeling device can realize automatic peeling and has high production efficiency.

Description

Two electric wires shell device
Technical Field
The utility model relates to the field of electric wire processing equipment, in particular to a two-plug electric wire peeling device.
Background
With the increasing living standard of consumers, household appliances are becoming more and more popular, and each household basically cannot leave the household appliance product. For example: water heaters, microwave ovens, electric rice cookers, and electric kettles and other household appliances. Plugs with wires have become an important bridge for connecting household appliances with external ac power sources.
The existing plug with the electric wire is generally obtained by riveting a wire body and a terminal, when riveting is carried out, the head of the wire body needs to be processed to realize riveting, and the tail of the wire body also needs to be subjected to wire stripping, peeling and other processing, so that subsequent connection and the like are facilitated.
In the prior art, the wire stripping work of the electric wire is basically completed by manual operation or by assistance of an auxiliary tool, the manual factor influence of the manual operation is large, the human error is inevitable, and the wire stripping machine has the defects of high error rate, low production efficiency, low production precision and the like.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a two-plug wire peeling device which can solve at least one of the problems.
According to one aspect of the utility model, a two-plug wire stripping device is provided, comprising at least the following components:
a mounting frame;
the front and back feeding driving mechanism is arranged on the mounting frame;
a pressing mechanism mounted on the mounting frame and configured to press the electric wire;
the sheath peeling mechanism is arranged on the front and back feeding driving mechanism, is matched with the pressing mechanism and is configured to peel the sheath of the electric wire so as to expose two core wires in the electric wire;
the front and back feeding driving mechanism is configured to drive the peeling mechanism to move back and forth.
Therefore, the utility model provides a peeling device with a brand new structure, which has the working principle that: the electric wire input into the device is pressed under the action of the pressing mechanism, and then the front-back feeding driving mechanism drives the sheath stripping mechanism to strip the wires, so that the sheaths are removed, two core wires are exposed, and the subsequent processing is facilitated; the peeling device can realize automatic peeling and has high production efficiency.
In some embodiments, the peeling mechanism comprises a connecting block, a first driving component and a peeling component, wherein the connecting block is arranged on the front-back feeding driving mechanism, the first driving component is arranged on the connecting block, and the peeling component is in power connection with the first driving component;
the peeling assembly includes a pair of peeling blocks, and the first drive assembly is capable of driving the pair of peeling blocks toward or away from each other.
In some embodiments, the peeling mechanism further comprises a peeling assembly, the peeling assembly comprises a pair of peeling blocks and a pair of pressing blocks, the pair of peeling blocks are correspondingly arranged on one side of the pair of peeling blocks, the pair of pressing blocks correspond to the pair of peeling blocks and are arranged behind the peeling blocks, and the peeling blocks are matched with the core wires and used for peeling off the skins of the core wires; the pressing block is matched with the core wire and used for pressing the core wire. Therefore, the skin cutting assembly can cut the skin of the exposed core wire according to the required length, so that the subsequent core wire stripping work is facilitated; the compact heap is used for pressing from both sides tight heart yearn, plays the auxiliary action, and the stable of the work of surely skinning of the piece of being convenient for surely skinning goes on.
In some embodiments, the first driving assembly includes a first driving member, a worm and gear transmission module, a power output gear, a lower sliding block and an upper sliding block, the worm and gear transmission module is in power connection with an output end of the first driving member, the power output gear is in transmission connection with the worm and gear transmission module, one of the pair of skin stripping blocks is installed on the lower sliding block, the other one of the pair of skin stripping blocks is installed on the upper sliding block, a first rack meshed with the power output gear is arranged on the lower sliding block, a second rack meshed with the power output gear is arranged on the upper sliding block, and the upper sliding block can move relative to the lower sliding block under the driving of the first driving member. Thus, the operating principle of the first drive assembly is: first driving piece drive worm gear drive module work, worm gear drive module drive power take off gear revolve, and then drive the relative lower sliding block of upper sliding block and upwards or downstream for peel off the skin piece on the upper sliding block and keep away from or be close to the piece of peeling off on the lower sliding block, feed actuating mechanism around the cooperation and accomplish and peel off the skin work.
In some embodiments, the front-back feeding driving mechanism comprises a fixed plate, a second driving part, a screw rod, a nut, a linear guide rail and a sliding block, the fixed plate is fixedly connected with the mounting frame, the second driving part and the linear guide rail are fixedly mounted on the fixed plate, the lower end of the sliding block is sleeved on the periphery of the linear guide rail and is in sliding fit with the linear guide rail, the driving end of the second driving part is in power connection with the screw rod, the nut is sleeved on the periphery of the screw rod, and the connecting block is connected with both the sliding block and the nut. Therefore, the working principle of the front and back feeding driving mechanism is as follows: the second driving piece drives the screw rod to rotate, so that the nut slides along the screw rod, the sliding block is driven to slide along the linear guide rail, the skin peeling mechanism is driven to move back and forth, and corresponding work is completed by matching with the pressing mechanism.
In some embodiments, the pressing mechanism includes a pressing assembly and a clamping assembly, the pressing assembly includes a third driving member, a supporting plate and a pressing block, the third driving member and the supporting plate are mounted on the mounting frame, the pressing block is mounted at the driving end of the third driving member and is matched with the supporting plate below the third driving member to press the electric wire together, the clamping assembly includes a fourth driving member and a clamping block, and the clamping block is mounted at the driving end of the fourth driving member and is matched with the electric wire. Therefore, the pressing assembly can press the electric wire after the electric input, and the stable wire stripping work is facilitated.
In some embodiments, the two-plug electric wire peeling device further comprises a clamping and conveying mechanism, the clamping and conveying mechanism comprises a fifth driving part, an upper clamping and conveying assembly and a lower clamping and conveying assembly, the upper clamping and conveying assembly and the lower clamping and conveying assembly are arranged oppositely and located in front of the pressing mechanism, the upper clamping and conveying assembly is connected with the fifth driving part, and the upper clamping and conveying assembly can be far away from or close to the lower clamping and conveying assembly under the driving of the fifth driving part. Therefore, the clamping and conveying mechanism can realize the input of the electric wire.
In some embodiments, the upper clamping conveyor assembly includes a sixth drive member, an upper clamping roller, and an upper belt drive module, the fifth drive member being in powered communication with the upper belt drive module, the upper belt drive module being in drive communication with the upper clamping roller.
In some embodiments, the lower clamping conveyor assembly includes a seventh driving member, a lower clamping roller, and a lower belt drive module, the sixth driving member being in powered connection with the lower belt drive module, the lower belt drive module being in drive connection with the lower clamping roller.
The utility model has the beneficial effects that:
the utility model provides a peeling device with a brand new structure, which has the working principle that: the electric wire input into the device is pressed under the action of the pressing mechanism, and then the front-back feeding driving mechanism drives the sheath stripping mechanism to strip the wires, so that the sheaths are removed, two core wires are exposed, and the subsequent processing is facilitated; the peeling device can realize automatic peeling and has high production efficiency.
The wire stripping process of the two-plug wire outer skin stripping device can be automatically carried out, manual operation is not needed, labor is greatly reduced, labor cost is saved, and meanwhile production efficiency and production quality are greatly improved.
Drawings
Fig. 1 is a schematic perspective view of a two-plug wire peeling device according to an embodiment of the present invention;
FIG. 2 is a simplified schematic diagram of the two-pin wire stripper of FIG. 1;
FIG. 3 is a perspective view of the front and rear feeding driving mechanism and the peeling mechanism of the two-pin electric wire peeling device shown in FIG. 2;
FIG. 4 is a schematic perspective view of the peeling mechanism of the two-pin electric wire peeling device shown in FIG. 3;
FIG. 5 is an enlarged schematic view of the peeling mechanism shown in FIG. 4 at A;
FIG. 6 is a schematic structural view of an electrical wire treated by a two-wire stripping device according to an embodiment of the present invention;
FIG. 7 is a schematic structural view of the peeling mechanism shown in FIG. 4 with a portion omitted;
FIG. 8 is a perspective view of the peeling mechanism shown in FIG. 4 with a portion omitted;
FIG. 9 is a perspective view of the pressing mechanism of the two-pin electric wire peeling device shown in FIG. 2;
fig. 10 is a perspective view of the clamping and conveying mechanism of the two-pin electric wire stripping device shown in fig. 2.
Reference numerals in FIGS. 1 to 10: 1-an electric wire; 2-a peeling device; 11-outer skin; 12-a core wire; 13-copper wire; 21-a mounting frame; 22-a front and rear feed drive mechanism; 23-a hold-down mechanism; 24-a skinning mechanism; 25-a clamping and conveying mechanism; 221-a fixing plate; 222-a second drive member; 223-a screw rod; 224-a nut; 225-linear guide rail; 226-a slider; 231-a hold-down assembly; 232-a clamping assembly; 241-connecting block; 242 — a first drive assembly; 243-peeling assembly; 244-a peel cutting assembly; 251-a fifth drive member; 252-an upper clamp delivery assembly; 253-lower clamp conveyor assembly; 2311-a third drive; 2312-a support plate; 2313-briquetting; 2321-a fourth drive; 2322-clamping block; 2421 — a first driver; 2422-worm gear and worm transmission module; 2423-power take-off gear; 2424-lower slider; 2425-upper sliding block; 2431-peeling off the skin; 2441 cutting into pieces; 2442-a compression block; 2521-a sixth drive element; 2522-upper clamping roller; 2523-upper belt drive module; 2531-seventh drive; 2532-lower clamping roller; 2533-lower belt drive module; 2424 a-first rack; 2425 a-second rack.
Detailed Description
The present invention will be described in further detail with reference to the following drawings and specific examples.
Fig. 1 to 10 schematically show a two-plug wire stripping device according to an embodiment of the present invention.
As shown in fig. 1 to 10, the two-plug wire peeling device 2 at least comprises the following components:
a mounting frame 21;
a front-rear feed drive mechanism 22 attached to the mounting frame 21;
a pressing mechanism 23 attached to the mounting frame 21 and configured to press the electric wire 1;
a peeling mechanism 24 mounted on the forward/backward feed driving mechanism 22 and engaged with the pressing mechanism 23, and configured to peel the outer layer 11 of the electric wire 1 to expose the two core wires 12 in the electric wire 1;
the front-rear feed drive mechanism 22 is configured to drive the skinning mechanism 24 to move forward and backward.
The peeling mechanism 24 includes a connecting block 241, a first driving assembly 242, and a peeling assembly 243. The connecting block 241 is mounted on the front-rear feeding driving mechanism 22, the first driving assembly 242 is mounted on the connecting block 241, and the outer skin peeling assembly 243 is in power connection with the first driving assembly 242;
the peeling assembly 243 includes a pair of peeling blocks 2431, and the first drive assembly 242 is capable of driving the pair of peeling blocks 2431 toward or away from each other.
As shown in fig. 4-6, the skinning mechanism 24 further includes a skin cutting assembly 244. The skin cutting assembly 244 includes a pair of skin cutting blocks 2441 and a pair of compression blocks 2442. A pair of skin stripping blocks 2441 is correspondingly arranged on one side of the pair of skin stripping blocks 2431, a pair of pressing blocks 2442 is corresponding to the pair of skin stripping blocks 2441 and is arranged behind the skin stripping blocks 2441, and the heights of the skin stripping blocks 2441 are different from those of the pressing blocks 2442. The skin cutting block 2441 is engaged with the core wire 12 for cutting off the outer skin of the core wire 12; the hold down 2442 cooperates with the core 12 for holding down the core 12. Thus, the peeling assembly 244 can cut the skin of the exposed core wire 12 according to a required length, so as to facilitate the subsequent core wire stripping 12 operation; the pressing block 2442 is used for clamping the core wire 12, plays an auxiliary role, and is convenient for stable skin cutting operation of the skin cutting block 2441.
As shown in fig. 7-8, the first drive assembly 242 of the present embodiment includes a first drive element 2421, a worm gear drive module 2422, a power take off gear 2423, a lower slide block 2424, and an upper slide block 2425. The worm and gear transmission module 2422 is in power connection with the output end of the first driving element 2421, the power output gear 2423 is in transmission connection with the worm and gear transmission module 2422, one of the pair of peeling blocks 2431 is mounted on the lower sliding block 2424, the other one is mounted on the upper sliding block 2425, the lower sliding block 2424 is provided with a first rack 2424a meshed with the power output gear 2423, the upper sliding block 2425 is provided with a second rack 2425a meshed with the power output gear 2423, and the upper sliding block 2425 can move relative to the lower sliding block 2424 under the driving of the first driving element 2421. The first driver 2421 of the present embodiment may be a servo motor. The worm gear drive module 2422 of the present embodiment may be formed by a combination of two vertically meshing bevel gears. Thus, the first drive assembly 242 operates on the following principle: the first driving part 2421 drives the worm and gear transmission module 2422 to work, the worm and gear transmission module 2422 drives the power output gear 2423 to rotate, and then the lower sliding block 2424 and the upper sliding block 2425 are driven to move towards the core wire 12 or move away from the core wire 12 in the opposite direction, and the peeling work is finished by matching with the front and rear feeding driving mechanism 22.
As shown in fig. 2 to 3, the forward-backward feed drive mechanism 22 of the present embodiment includes a fixed plate 221, a second driver 222, a lead screw 223, a nut 224, a linear guide 225, and a slider 226. The fixed plate 221 is fixedly connected with the mounting frame 21, the second driving element 222 and the linear guide rail 225 are fixedly mounted on the fixed plate 221, the lower end of the sliding block 226 is sleeved on the periphery of the linear guide rail 225 and is in sliding fit with the linear guide rail 225, the driving end of the second driving element 222 is in power connection with the screw rod 223, the nut 224 is sleeved on the periphery of the screw rod 223, and the connecting block 241 is connected with both the sliding block 226 and the nut 224. The second driver 222 of the present embodiment may be a servo motor. Thus, the operation principle of the front-rear feed drive mechanism 22 is: the second driving member 222 drives the screw rod 223 to rotate, so that the nut 224 slides along the screw rod 223, and drives the slider 226 to slide along the linear guide 225, so as to drive the peeling mechanism 24 to move back and forth, and complete corresponding work in cooperation with the pressing mechanism 23.
As shown in fig. 1 and 9, the pressing mechanism 23 of the present embodiment includes a pressing member 231 and a clamping member 232. The hold-down assembly 231 includes a third driving member 2311, a support plate 2312 and a pressing piece 2313. The third driving member 2311 and the supporting plate 2312 are mounted on the mounting frame 21, and the pressing block 2313 is mounted at the driving end of the third driving member 2311 and matched with the supporting plate 2312 below to press the electric wire 1 together. Limiting holes can be formed in the top of the supporting plate 2312, so that the pressing block 2313 can be conveniently inserted to achieve rapid positioning. The third driver 2311 of the present embodiment may be a telescopic cylinder. The clamping assembly 232 includes a fourth driving member 2321 and a clamping block 2322, and the clamping block 2322 is mounted to the driving end of the fourth driving member 2321 and is engaged with the electric wire 1. The fourth driver 2321 of the present embodiment may be a telescopic cylinder. Therefore, the pressing component 231 can press the electric wire 1 after the electric input, so that the stable wire stripping operation is facilitated.
As shown in fig. 1 and 10, the two-plug electric wire 1 peeling device 2 further includes a clamping and conveying mechanism 25. The clamping and conveying mechanism 25 comprises a fifth driving member 251, an upper clamping and conveying assembly 252 and a lower clamping and conveying assembly 253, the upper clamping and conveying assembly 252 and the lower clamping and conveying assembly 253 are oppositely arranged and are positioned in front of the pressing mechanism 23, the upper clamping and conveying assembly 252 is connected with the fifth driving member 251, and the upper clamping and conveying assembly 252 can be far away from or close to the lower clamping and conveying assembly 253 under the driving of the fifth driving member 251; the fifth driving member 251 of the present embodiment may be a telescopic cylinder.
The upper clamp delivery assembly 252 includes a sixth drive 2521, an upper clamp roller 2522, and an upper belt drive module 2523. The sixth driving element 2521 is in power connection with an upper belt transmission module 2523, and the upper belt transmission module 2523 is in transmission connection with the upper clamping roller 2522;
the lower clamp transport assembly 253 includes a seventh driving member 2531, a lower clamp roller 2532 and a lower belt drive module 2533. The sixth driving member 2521 is in power connection with the lower belt transmission module 2533, and the lower belt transmission module 2533 is in transmission connection with the lower clamping roller 2532. Thereby, the clamp feeding mechanism 25 can feed the electric wire 1. The sixth driving element 2521 and the seventh driving element 2531 of the present embodiment may be motors, and the upper belt transmission module 2523 and the lower belt transmission module 2533 may be a combined structure of two synchronizing wheels and a transmission belt.
The utility model provides a peeling device 2 with a brand new structure, and the working principle of the peeling device 2 is as follows: the electric wire 1 input into the device is pressed under the action of the pressing mechanism 23, then the front-back feeding driving mechanism 22 drives the outer skin peeling mechanism 24 to peel the electric wire 1, the outer skin 11 is removed, and two core wires 12 are exposed, so that the subsequent processing is convenient; the peeling device 2 can realize automatic peeling 11 and has high production efficiency.
The wire stripping process of the two-plug wire 1 peeling device 2 can be automatically carried out without manual operation, so that the labor is greatly reduced, the labor cost is saved, and the production efficiency and the production quality are greatly improved.
What has been described above are merely some embodiments of the present invention. It will be apparent to those skilled in the art that various changes and modifications can be made without departing from the inventive concept thereof, and these changes and modifications can be made without departing from the spirit and scope of the utility model.

Claims (9)

1. A two-plug wire peeling device is characterized by at least comprising the following components:
a mounting frame;
the front and back feeding driving mechanism is arranged on the mounting frame;
a pressing mechanism mounted to the mounting bracket and configured to press the electric wire;
the sheath peeling mechanism is arranged on the front and back feeding driving mechanism and matched with the pressing mechanism, and is configured to peel the electric wire so as to expose two core wires in the electric wire;
the front and back feeding driving mechanism is configured to drive the peeling mechanism to move back and forth.
2. The two-pin electric wire stripping device according to claim 1, wherein the stripping mechanism comprises a connecting block, a first driving assembly and a stripping assembly, the connecting block is mounted on the front and rear feeding driving mechanism, the first driving assembly is mounted on the connecting block, and the stripping assembly is in power connection with the first driving assembly;
the peeling assembly comprises a pair of peeling blocks, and the first driving assembly can drive the pair of peeling blocks to approach or move away from each other.
3. The two-pin electric wire peeling device according to claim 2, wherein the peeling mechanism further comprises a peeling assembly, the peeling assembly comprises a pair of peeling blocks and a pair of pressing blocks, the pair of peeling blocks are correspondingly arranged on one side of the pair of peeling blocks, and the pair of pressing blocks are correspondingly arranged behind the pair of peeling blocks;
the skin cutting block is matched with the core wire and is used for cutting off the skin of the core wire;
the core wires of the pressing blocks are matched and used for pressing the core wires.
4. The two-plug wire peeling device according to claim 2, wherein the first driving assembly comprises a first driving piece, a worm and gear transmission module, a power output gear, a lower sliding block and an upper sliding block, the worm and gear transmission module is in power connection with an output end of the first driving piece, the power output gear is in transmission connection with the worm and gear transmission module, one of the peeling blocks is installed on the lower sliding block, the other peeling block is installed on the upper sliding block, a first rack meshed with the power output gear is arranged on the lower sliding block, a second rack meshed with the power output gear is arranged on the upper sliding block, and under the driving of the first driving piece, the lower sliding block and the upper sliding block can move in opposite directions to be close to the wire or move in opposite directions to be away from the wire.
5. The two-plug wire peeling device according to claim 4, wherein the front and rear feeding driving mechanism comprises a fixed plate, a second driving member, a screw rod, a nut, a linear guide rail and a sliding block, the fixed plate is fixedly connected with the mounting frame, the second driving member and the linear guide rail are fixedly mounted on the fixed plate, the lower end of the sliding block is sleeved on the periphery of the linear guide rail and is in sliding fit with the linear guide rail, the driving end of the second driving member is in power connection with the screw rod, the nut is sleeved on the periphery of the screw rod, and the connecting block is connected with both the sliding block and the nut.
6. The two-plug electric wire peeling device according to any one of claims 1 to 5, wherein the pressing mechanism comprises a pressing assembly and a clamping assembly, the pressing assembly comprises a third driving member, a supporting plate and a pressing block, the third driving member and the supporting plate are mounted on the mounting frame, the pressing block is mounted at the driving end of the third driving member and matched with the supporting plate below the third driving member to press the electric wires together, the clamping assembly comprises a fourth driving member and a clamping block, and the clamping block is mounted at the driving end of the fourth driving member and matched with the electric wires.
7. The two-pin electric wire peeling device according to claim 6, further comprising a clamping and conveying mechanism, wherein the clamping and conveying mechanism comprises a fifth driving member, an upper clamping and conveying assembly and a lower clamping and conveying assembly, the upper clamping and conveying assembly and the lower clamping and conveying assembly are oppositely arranged and located in front of the pressing mechanism, the upper clamping and conveying assembly is connected with the fifth driving member, and the upper clamping and conveying assembly can be far away from or close to the lower clamping and conveying assembly under the driving of the fifth driving member.
8. The two-pin wire stripping device according to claim 7, wherein the upper clamping conveyor assembly comprises a sixth driving member, an upper clamping roller and an upper belt transmission module, the sixth driving member is in power connection with the upper belt transmission module, and the upper belt transmission module is in transmission connection with the upper clamping roller.
9. The two-pin wire stripping device according to claim 7, wherein the lower clamping conveying assembly comprises a seventh driving member, a lower clamping roller and a lower belt transmission module, the seventh driving member is in power connection with the lower belt transmission module, and the lower belt transmission module is in transmission connection with the lower clamping roller.
CN202121344941.9U 2021-06-16 2021-06-16 Two electric wires shell device Active CN215418937U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121344941.9U CN215418937U (en) 2021-06-16 2021-06-16 Two electric wires shell device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121344941.9U CN215418937U (en) 2021-06-16 2021-06-16 Two electric wires shell device

Publications (1)

Publication Number Publication Date
CN215418937U true CN215418937U (en) 2022-01-04

Family

ID=79639684

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121344941.9U Active CN215418937U (en) 2021-06-16 2021-06-16 Two electric wires shell device

Country Status (1)

Country Link
CN (1) CN215418937U (en)

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