CN215402038U - Reel winding mechanism of continuous carrier band full-automatic material receiving machine - Google Patents

Reel winding mechanism of continuous carrier band full-automatic material receiving machine Download PDF

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Publication number
CN215402038U
CN215402038U CN202120552003.1U CN202120552003U CN215402038U CN 215402038 U CN215402038 U CN 215402038U CN 202120552003 U CN202120552003 U CN 202120552003U CN 215402038 U CN215402038 U CN 215402038U
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winding
cylinder
axis
fixed
sliding
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CN202120552003.1U
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Chinese (zh)
Inventor
胡晓群
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Shenzhen Hengfeng Rui Electromechanical Equipment Co ltd
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Shenzhen Hengfeng Rui Electromechanical Equipment Co ltd
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Abstract

The utility model discloses a reel winding mechanism of a continuous carrier band full-automatic material receiving machine, and relates to the technical field of mechanical equipment; two winding fixing pieces are fixed on a skip bottom plate, a Y-axis rail is fixed on each winding fixing piece, a Y-axis sliding block is arranged on each Y-axis rail in a sliding mode, a winding sliding piece is fixed between the rear sides of the left Y-axis sliding block and the rear side of the right Y-axis sliding block, a Y-axis connecting piece is fixed on the Y-axis sliding block on the right side, a winding Y-axis cylinder is fixed on the skip bottom plate, and the pushing end of the winding Y-axis cylinder is fixedly connected with the Y-axis connecting piece; a material pushing cylinder is fixed on the upper side of the winding sliding part, a material pushing frame is fixed on the pushing end of the material pushing cylinder, a material tray positioning cylinder is arranged on the rear side of the winding sliding part, a winding motor is fixed on the front side of the winding sliding part, and an output shaft of the winding motor penetrates through the winding sliding part; can compress tightly the charging tray and fix a position, can replace the manual work to receive and release the reel, use manpower sparingly and time, and after the rolling, can flatten the operation to the material area, improve production efficiency.

Description

Reel winding mechanism of continuous carrier band full-automatic material receiving machine
Technical Field
The utility model relates to the technical field, in particular to a reel winding mechanism of a continuous carrier band full-automatic material receiving machine.
Background
The semiconductor is a material with the conductivity between the conductor and the insulator at normal temperature, and has wide application in radio, television and temperature measurement; the semiconductor chip is packaged in the material belt, and the material belt needs to be wound into a disc; the existing winding mode is generally manual winding, and winding is performed by adopting a winding roller, and after one material tray is wound, another material tray is manually replaced again, so that the production efficiency is reduced.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a reel winding mechanism of a continuous carrier band full-automatic material receiving machine, which is reasonable in design, can compress and position a material disc, can replace manual winding and unwinding of a reel, saves labor and time, can flatten a material band after winding, and improves production efficiency.
In order to achieve the purpose, the utility model adopts the following technical scheme: the automatic winding machine comprises a winding Y-axis cylinder, a Y-axis connecting piece, a winding fixing piece, a winding sliding piece, a charging tray positioning cylinder, a tail rubber pressing piece and a tail rubber pressing swing arm, wherein two winding fixing pieces are fixed on a bottom plate of the skip car; a material pushing cylinder is fixed on the upper side of the winding sliding part, a material pushing frame is fixed on the pushing end of the material pushing cylinder, a material tray positioning cylinder is arranged on the rear side of the winding sliding part, a winding motor is fixed on the front side of the winding sliding part, a rotating shaft is fixed after an output shaft of the winding motor penetrates through the winding sliding part, the material tray is sleeved on the rotating shaft, and the material tray is arranged on the rear side of the material tray positioning cylinder; a tail pressing glue cylinder is fixed on the inner wall of the rear side of the skip car, a tail pressing glue swing arm is arranged on the front side of the pushing end of the tail pressing glue cylinder, the tail pressing glue swing arm and the pushing end of the tail pressing glue cylinder are hinged through a hinge shaft, a tail pressing glue rotating shaft is arranged in one side, away from the skip car, of the tail pressing glue swing arm in a sliding mode, the rear end of the tail pressing glue rotating shaft is arranged on the skip car in a screwing mode through a tail pressing glue rotating shaft seat, and a tail pressing glue piece is arranged on one side, close to the skip car, of the tail pressing glue swing arm; the rear side of the charging tray is provided with a Z-axis rail, the Z-axis rail is fixed on a charging carriage bottom plate, a supporting block is arranged on the Z-axis rail in a sliding manner, a charging tray spreading cylinder is arranged on the front side of the supporting block, the charging tray spreading cylinder is connected and fixed with a charging tray spreading cylinder fixing piece, the charging tray spreading cylinder fixing piece is arranged in an L-shaped structure, a charging tray spreading piece is fixed at the bottom pushing end of the charging tray spreading cylinder, the rear side of the charging tray spreading piece is connected and fixed with the supporting block, the charging tray spreading piece is arranged on the upper side of the charging tray, a supporting block is fixed at the rear side of the charging tray spreading cylinder fixing piece, the supporting block is fixed with a charging carriage side plate, a clamping Z-axis cylinder is fixed on the supporting block, a limiting block is arranged at the pushing end of the clamping Z-axis cylinder, and a Z-axis sensor is arranged on the limiting block; the winding Y-axis cylinder, the pushing cylinder, the tail rubber pressing cylinder, the material tray expanding cylinder and the material tray positioning cylinder are all connected with an external air source, and the winding motor is connected with an external power source.
Furthermore, the limiting block is provided with a Z-axis upper limiting block.
Further, a connecting block is fixed between the left rolling fixing part and the right rolling fixing part.
Furthermore, a sliding groove is formed in one side, away from the material tray, of the tail pressing glue swing arm, and the tail pressing glue rotating shaft penetrates through the sliding groove in a sliding mode.
After adopting the structure, the utility model has the beneficial effects that: the reel winding mechanism of the continuous carrier band full-automatic material receiving machine can compress and position a material disc, can replace manual reel winding and unwinding, saves labor and time, can flatten a material band after winding, and improves production efficiency.
Description of the drawings:
fig. 1 is a schematic structural view of the present invention.
Fig. 2 is an enlarged view of a portion a in fig. 1.
Fig. 3 is an enlarged view of a portion B in fig. 1.
Fig. 4 is an enlarged view of the portion C in fig. 1.
Description of reference numerals:
the device comprises a winding Y-axis cylinder 1, a Y-axis connecting piece 2, a winding fixing piece 3, a winding sliding piece 4, a charging tray 5, a charging tray positioning cylinder 6, a tail pressing rubber piece 7, a tail pressing rubber swing arm 8, a sliding groove 8-1, a Y-axis rail 9, a Y-axis sliding block 10, a material pushing cylinder 11, a material pushing frame 12, a winding motor 13, a tail pressing rubber cylinder 14, a tail pressing rubber rotating shaft 15, a Z-axis rail 16, a supporting block 17, a charging tray expanding cylinder 18, a charging tray expanding piece 19, a supporting block 20, a clamping Z-axis cylinder 21, a limiting block 22, a Z-axis limiting 23, a connecting block 24, a tail pressing rubber rotating shaft seat 25, a Z-axis inductor 26 and a charging tray cylinder expanding fixing piece 27.
The specific implementation mode is as follows:
the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1 to 4, the following technical solutions are adopted in the present embodiment: the automatic winding machine comprises a winding Y-axis cylinder 1, a Y-axis connecting piece 2, winding fixing pieces 3, a winding sliding piece 4, a material disc 5, a material disc positioning cylinder 6, a tail pressing rubber piece 7 and a tail pressing rubber swing arm 8, wherein two winding fixing pieces 3 are fixedly welded on a bottom plate of the skip car, a connecting block 24 is fixedly welded between the left winding fixing piece 3 and the right winding fixing piece 3, a Y-axis rail 9 is fixedly welded on the winding fixing pieces 3, a Y-axis sliding block 10 is slidably arranged on the Y-axis rail 9, a winding sliding piece 4 is fixedly welded between the rear sides of the left Y-axis sliding block 10 and the right Y-axis sliding block 10, the Y-axis connecting piece 2 is fixedly welded on the Y-axis sliding block 10 on the right side, the winding Y-axis cylinder 1 is fixedly fixed on the bottom plate of the skip car by using bolts, and the pushing end of the winding Y-axis cylinder 1 is fixedly connected with the Y-axis connecting piece 2; a material pushing cylinder 11 is fixed on the upper side of the winding sliding part 4 through a bolt, a material pushing frame 12 is fixedly welded on the pushing end of the material pushing cylinder 11, a material tray positioning cylinder 6 is arranged on the rear side of the winding sliding part 4, a winding motor 13 is fixed on the front side of the winding sliding part 4 through a bolt, a rotating shaft is fixedly welded after an output shaft of the winding motor 13 penetrates through the winding sliding part 4, a material tray 5 is sleeved on the rotating shaft, and the material tray 5 is arranged on the rear side of the material tray positioning cylinder 6; a tail pressing glue cylinder 14 is fixed on the inner wall of the rear side of the skip car by using bolts, a tail pressing glue swing arm 8 is arranged on the front side of the pushing end of the tail pressing glue cylinder 14, the tail pressing glue swing arm 8 and the pushing end of the tail pressing glue cylinder 14 are hinged through a hinge shaft, a sliding groove 8-1 is formed in one side, away from the material disc 5, of the tail pressing glue swing arm 8, a tail pressing glue rotating shaft 15 is slidably arranged in the sliding groove 8-1 in a penetrating manner, the rear end of the tail pressing glue rotating shaft 15 is screwed on the skip car by a tail pressing glue rotating shaft seat 25, the tail pressing glue rotating shaft seat 25 is fixed on the skip car by using bolts, the tail pressing glue rotating shaft 15 is inserted and welded in the tail pressing glue rotating shaft seat 25, and a tail pressing glue piece 7 is arranged on one side, close to the material disc 5, of the tail pressing glue swing arm 8; the rear side of a charging tray 5 is provided with a Z-axis rail 16, the Z-axis rail 16 is welded and fixed on a charging carriage bottom plate, the Z-axis rail 16 is provided with a supporting block 17 in a sliding manner, the front side of the supporting block 17 is provided with a charging tray expanding cylinder 18, the charging tray expanding cylinder 18 is fixedly connected with a charging tray expanding cylinder fixing part 27, the charging tray expanding cylinder fixing part 27 is arranged in an L-shaped structure, a charging tray expanding part 19 is fixed at the bottom pushing end of the charging tray expanding cylinder 18, the rear side of the charging tray expanding part 19 is fixedly connected with the supporting block 17 by a bolt, the charging tray expanding part 19 is arranged at the upper side of the charging tray 5, a supporting block 20 is fixedly welded at the rear side of the charging tray expanding cylinder fixing part 27, the supporting block 20 is fixedly welded with a charging carriage side plate, a clamping Z-axis cylinder 21 is fixed on the supporting block 20 by a bolt, a limiting block 22 is arranged at the pushing end of the clamping Z-axis cylinder 21, and a Z-axis inductor 26 on the limiting block 22 is arranged on the Z-axis, A Z-axis upper limit 23; the winding Y-axis cylinder 1, the material pushing cylinder 11, the tail rubber pressing cylinder 14, the material tray expanding cylinder 18 and the material tray positioning cylinder 6 are connected with an external air source through air pipes, and the winding motor 13 is connected with the external power source through power lines.
The working principle of the specific embodiment is as follows: when the device is used, the material disc 5 is pushed to be arranged on an output shaft at the rear side of the winding motor 13, the material disc 5 is positioned through the material disc positioning cylinder 6, the material disc expanding cylinder 18 is pushed downwards, the material disc expanding part 19 is arranged on the material disc 5 to limit the material disc 5, the material disc expanding part 19 drives the supporting block 17 to move downwards when moving, so that guiding is carried out, and the supporting block 17 is induced through the inductor 26 on the Z axis at the upper side when moving, so that the distance when the material disc expanding part 19 moves is determined; the winding Y-axis cylinder 1 pushes, the Y-axis connecting piece 2 drives the winding sliding piece 4 to move in the Y-axis direction, the material pushing cylinder 11 pushes the carrier band to the material disc 5, the winding motor 13 is started to roll the material disc 5, and after winding, the tail pressing glue cylinder 14 pushes to drive the tail pressing glue swing arm 8 to rotate around the rotary joint of the tail pressing glue rotating shaft 15, so that the tail pressing glue swing arm 8 drives the tail pressing glue piece 7 to move, and the carrier band on the material disc 5 is flattened.
After adopting above-mentioned structure, this embodiment's beneficial effect is as follows:
1. the winding sliding part 4 moves on the Y axis by driving the Y-axis connecting part 2 to move, so that the material tray positioning cylinder 6 and the material pushing cylinder 11 move;
2. the tray 5 is unfolded by driving the tray unfolding part 19 to move downwards and placing the tray unfolding part on the upper side of the tray 5;
3. swing through pressing tail rubber swing arm 8, make and press tail rubber 7 to compress tightly the operation to charging tray 5.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.

Claims (4)

1. The utility model provides a full-automatic receipts material machine's reel winding mechanism of continuous carrier band which characterized in that: the automatic winding machine comprises a winding Y-axis cylinder (1), a Y-axis connecting piece (2), winding fixing pieces (3), a winding sliding piece (4), a material disc (5), a material disc positioning cylinder (6), a tail pressing rubber piece (7) and a tail pressing rubber swing arm (8), wherein two winding fixing pieces (3) are fixed on a material car bottom plate, a Y-axis rail (9) is fixed on each winding fixing piece (3), a Y-axis sliding block (10) is arranged on each Y-axis rail (9) in a sliding mode, the winding sliding piece (4) is fixed between the rear sides of the left Y-axis sliding block (10) and the rear side of the right Y-axis sliding block (10), the Y-axis connecting piece (2) is fixed on the Y-axis sliding block (10) on the right side, the winding Y-axis cylinder (1) is fixed on the material car bottom plate, and the pushing end of the winding Y-axis cylinder (1) is fixedly connected with the Y-axis connecting piece (2); a material pushing cylinder (11) is fixed on the upper side of the winding sliding part (4), a material pushing frame (12) is fixed on the pushing end of the material pushing cylinder (11), a material tray positioning cylinder (6) is arranged on the rear side of the winding sliding part (4), a winding motor (13) is fixed on the front side of the winding sliding part (4), a rotating shaft is fixed after an output shaft of the winding motor (13) penetrates through the winding sliding part (4), a material tray (5) is sleeved on the rotating shaft, and the material tray (5) is arranged on the rear side of the material tray positioning cylinder (6); a tail rubber pressing cylinder (14) is fixed on the inner wall of the rear side of the skip car, a tail rubber pressing swing arm (8) is arranged on the front side of the pushing end of the tail rubber pressing cylinder (14), the tail rubber pressing swing arm (8) and the pushing end of the tail rubber pressing cylinder (14) are hinged through a hinge shaft, a tail rubber pressing rotating shaft (15) is arranged in one side, away from the material disc (5), of the tail rubber pressing swing arm (8) in a sliding mode, the rear end of the tail rubber pressing rotating shaft (15) is arranged on the skip car in a screwed mode through a tail rubber pressing rotating shaft seat (25), and a tail rubber pressing piece (7) is arranged on one side, close to the material disc (5), of the tail rubber pressing swing arm (8); a Z-axis rail (16) is arranged at the rear side of the material tray (5), the Z-axis rail (16) is fixed on a bottom plate of the material tray, a supporting block (17) is arranged on the Z-axis rail (16) in a sliding manner, a material tray expanding cylinder (18) is arranged at the front side of the supporting block (17), the material tray expanding cylinder (18) is fixedly connected with a fixing part (27) of the material tray expanding cylinder, the fixing part (27) of the material tray expanding cylinder is arranged in an L-shaped structure, a material tray expanding part (19) is fixed at the bottom pushing end of the material tray expanding cylinder (18), the rear side of the material tray expanding part (19) is fixedly connected with the supporting block (17), the material tray expanding part (19) is arranged at the upper side of the material tray (5), a supporting block (20) is fixed at the rear side of the fixing part (27) of the material tray expanding cylinder, the supporting block (20) is fixed with a side plate of the material tray, a clamping Z-axis cylinder (21) is fixed on the supporting block (20), and a limiting block (22) is arranged at the pushing end of the clamping Z-axis cylinder (21), a Z-axis sensor (26) is arranged on the limiting block (22); the winding Y-axis cylinder (1), the material pushing cylinder (11), the tail rubber pressing cylinder (14), the material tray opening cylinder (18) and the material tray positioning cylinder (6) are all connected with an external air source, and the winding motor (13) is connected with an external power source.
2. The reel winding mechanism of the continuous carrier tape full-automatic material receiving machine as claimed in claim 1, wherein: the limiting block (22) is provided with a Z-axis upper limiting block (23).
3. The reel winding mechanism of the continuous carrier tape full-automatic material receiving machine as claimed in claim 1, wherein: a connecting block (24) is fixed between the left rolling fixing piece and the right rolling fixing piece (3).
4. The reel winding mechanism of the continuous carrier tape full-automatic material receiving machine as claimed in claim 1, wherein: a sliding groove (8-1) is formed in one side, away from the material tray (5), of the tail rubber pressing swing arm (8), and the tail rubber pressing rotating shaft (15) penetrates through the sliding groove (8-1) in a sliding mode.
CN202120552003.1U 2021-03-17 2021-03-17 Reel winding mechanism of continuous carrier band full-automatic material receiving machine Active CN215402038U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120552003.1U CN215402038U (en) 2021-03-17 2021-03-17 Reel winding mechanism of continuous carrier band full-automatic material receiving machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120552003.1U CN215402038U (en) 2021-03-17 2021-03-17 Reel winding mechanism of continuous carrier band full-automatic material receiving machine

Publications (1)

Publication Number Publication Date
CN215402038U true CN215402038U (en) 2022-01-04

Family

ID=79668552

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120552003.1U Active CN215402038U (en) 2021-03-17 2021-03-17 Reel winding mechanism of continuous carrier band full-automatic material receiving machine

Country Status (1)

Country Link
CN (1) CN215402038U (en)

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