CN210630740U - Shoemaking production line - Google Patents

Shoemaking production line Download PDF

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Publication number
CN210630740U
CN210630740U CN201920979255.5U CN201920979255U CN210630740U CN 210630740 U CN210630740 U CN 210630740U CN 201920979255 U CN201920979255 U CN 201920979255U CN 210630740 U CN210630740 U CN 210630740U
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China
Prior art keywords
transverse sliding
production line
transverse
sliding block
plate
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CN201920979255.5U
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Chinese (zh)
Inventor
范朝龙
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Jiangxi Jifeng Shoes Co Ltd
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Jiangxi Jifeng Shoes Co Ltd
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Abstract

The utility model discloses a shoemaking production line belongs to shoes manufacturing field, shoemaking production line includes the production line main part, the upright curb plate of setting in production line main part one side, rotationally with the work platen that founds the curb plate and be connected, the upper portion of founding the curb plate is provided with horizontal sliding shaft, the work platen with horizontal sliding shaft sliding connection and can follow about horizontal sliding shaft, the middle part of founding the curb plate is provided with first horizontal slide rail, sliding connection has the first horizontal slider that removes about can following first horizontal slide rail on the first horizontal slide rail, first horizontal slider is connected with the work platen through the bracing piece. The utility model discloses a shoemaking production line can realize the lateral shifting of work platen, and the shoes of being convenient for shift the station.

Description

Shoemaking production line
Technical Field
The utility model relates to a shoes field of making especially relates to a shoemaking production line.
Background
In a shoe making production line, particularly a forming production line, a plurality of working tables are required to be arranged on one side or two sides of the production line, and operators perform shoe material processing on the working tables, including the processing of roughing, glue brushing, gluing and the like.
The work platen of current shoemaking production line is usually fixed motionless, or set up to rotate and hide the work platen in the original position, but it all can not follow production line lateral shifting, a plurality of stations on the production line only need usually one workman's operation can, but its work platen all sets up on a plurality of stations, extravagant material, and is with high costs, and need add man-hour with the machinery that a plurality of shoes were transferred to next station to shoes processing back in a station, because the work platen sets up to motionless usually, or set up to rotate in the original position only, make the station of shoes shift inconvenient, production machining efficiency is low.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to solve the technical problem of providing a shoemaking production line to realize the transverse movement of a working bedplate and facilitate the transfer of shoes to stations.
The utility model adopts the technical proposal that:
the utility model provides a pair of shoemaking production line, including the production line main part, set up the upright curb plate of production line main part one side, rotationally with the work platen that the curb plate is connected founds, the upper portion of founding the curb plate is provided with horizontal slide-bar, the work platen with horizontal slide-bar sliding connection can follow control about the horizontal slide-bar, the middle part of founding the curb plate is provided with first horizontal slide rail, sliding connection has on the first horizontal slide rail can follow first horizontal slider that removes about first horizontal slide rail, first horizontal slider pass through the bracing piece with the work platen is connected.
As a further improvement of the scheme, a second transverse slide rail is arranged on one side of the working table plate, which is far away from the transverse slide shaft, a second transverse slide block capable of moving left and right along the second transverse slide rail is connected onto the second transverse slide rail in a sliding manner, one end of the support rod is connected with the first transverse slide block, and the other end of the support rod is connected with the second transverse slide block.
As a further improvement of the scheme, one side of the working table plate is provided with a guide sliding block, the guide sliding block is connected with the transverse sliding shaft in a sliding mode, and the guide sliding block can rotate around the transverse sliding shaft.
As a further improvement of the scheme, a first sliding groove is formed in the middle of the first transverse sliding rail along the length direction of the first transverse sliding rail, and the first transverse sliding block is in sliding fit with the first sliding groove.
As a further improvement of the scheme, a second sliding groove is formed in the middle of the second transverse sliding rail along the length direction of the second transverse sliding rail, and the second transverse sliding block is in sliding fit with the second sliding groove.
As a further improvement of the scheme, the upper end of the first transverse sliding block and the lower end of the first transverse sliding block are both provided with rolling wheels, and the rolling wheels are in rolling contact with the inner wall of the first sliding groove.
As a further improvement of the present scheme, the first transverse slide rail includes a first upper L-shaped strip and a first lower L-shaped strip fixed to the vertical side plate, and the first sliding groove is formed between the first upper L-shaped strip and the first lower L-shaped strip.
As a further improvement of the present solution, the second transverse slide rail includes a second upper L-shaped strip and a second lower L-shaped strip fixed to the work table, and the second sliding groove is formed between the second upper L-shaped strip and the second lower L-shaped strip.
As a further improvement of the scheme, one side of the first transverse sliding block is provided with a first hinged plate, one side of the second transverse sliding block is provided with a second hinged plate, one end of the supporting rod is hinged with the first hinged plate, and the other end of the supporting rod is hinged with the second hinged plate.
As a further improvement of the present solution, the transverse sliding shaft, the first transverse sliding rail, and the second transverse sliding rail are arranged in parallel.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model provides a shoemaking production line, through setting up the horizontal slide rail in the upper portion of founding the curb plate, set up first horizontal slide rail and with first horizontal slide rail sliding fit's first horizontal slider in the middle part of founding the curb plate, and be connected first horizontal slider and work platen through the bracing piece, the bracing piece supports the work platen, when needing to shift the work platen to next station, promote work platen and bracing piece to one side, the work platen transversely slides along horizontal slide rail, first horizontal slider transversely slides along first horizontal slide rail, can make the work platen steadily move to another station, be convenient for shoes on the work platen shift to next station and process, when the work platen does not need work, slide first horizontal slider off first horizontal slide rail, lose the support of bracing piece, the work platen can rotate to vertical state around horizontal slide rail, the occupied space is small. More than, through the utility model provides a pair of shoemaking production line has effectively solved the problem that work platen can not lateral shifting shift the station on the current production line, can improve production machining efficiency, and the multistation only need a work platen can, practice thrift the cost.
Drawings
FIG. 1 is a schematic top view of a shoe manufacturing line according to an embodiment of the present invention;
FIG. 2 is a schematic front view of a shoe manufacturing line according to an embodiment of the present invention;
FIG. 3 is a schematic left-view structural view of a shoe manufacturing line according to an embodiment of the present invention;
fig. 4 is a partially enlarged schematic view of a in fig. 3 according to an embodiment of the present invention;
fig. 5 is a partially enlarged schematic view of B in fig. 3 according to an embodiment of the present invention.
In the figure:
1. a production line main body; 2. standing the side plate; 3. a work table; 4. a transverse slide shaft; 5. a first transverse slide rail; 6. a first lateral slider; 7. a support bar; 8. a second transverse slide rail; 9. a second lateral slider; 30. a guide slider; 50. a first chute; 80. a second chute; 61. a roller; 51. a first upper L-shaped bar; 52. a first lower L-shaped bar; 81. a second upper L-shaped strip; 82. A second lower L-shaped strip; 63. a first hinge plate; 62. and a second hinge plate.
Detailed Description
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings and technical solutions needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
The present invention will be further explained with reference to the accompanying drawings.
As shown in fig. 1 to 5, the shoe manufacturing line provided in this embodiment includes a line main body 1, a vertical side plate 2 fixedly disposed on one side of the line main body 1, a work table plate 3 rotatably connected to the vertical side plate 2, a horizontal sliding shaft 4 disposed on an upper portion of the vertical side plate 2, the work table plate 3 slidably connected to the horizontal sliding shaft 4 and capable of moving left and right along the horizontal sliding shaft 4 and rotating around the horizontal sliding shaft 4, connecting plates respectively fixed to two ends of an upper portion of the vertical side plate 2, two ends of the horizontal sliding shaft 4 respectively connected to the connecting plates, a first horizontal sliding rail 5 parallel to the horizontal sliding shaft 4 disposed in a middle portion of the vertical side plate 2, the first horizontal sliding rail 5 disposed below the horizontal sliding shaft 4, a first horizontal sliding block 6 slidably connected to the first horizontal sliding rail 5 and capable of moving left and right along the first horizontal sliding rail 5, the first horizontal sliding block 6 connected to the work table plate 3 through a support rod 7, a stable triangular structure is formed among the supporting rod 7, the working table plate 3 and the vertical side plate 2. When the working table plate is needed to be used, the working table plate 3 is rotated to be in a horizontal state around the transverse sliding shaft 4, the first transverse sliding block 6 is connected with the first transverse sliding rail 5 in a sliding mode, the supporting rod 7 supports the working table plate 3, when the work table plate 3 needs to be transferred to the next station, the work table plate 3 and the support rod 7 are pushed to one side close to the station to be transferred, the work table plate 3 transversely slides along the transverse sliding shaft 4, the first transverse sliding block 6 transversely slides along the first transverse sliding rail 5, the working table plate 3 can be stably moved to another station, the shoes on the working table plate 3 can be conveniently transferred to the next station for processing, when the working table plate 3 does not need to work, the first transverse sliding block 6 slides away from the first transverse sliding rail 5, the lower end of the supporting rod 7 loses support, the working table plate 3 can rotate around the transverse sliding shaft 4 to be in a vertical state, and the occupied space is small. More than, through the shoemaking production line that this embodiment provided, effectively solved the problem that work platen can not lateral shifting shifts the station on the current production line, can improve production machining efficiency, and the multistation only need a work platen can, practice thrift the cost.
In order to facilitate the transverse movement of the supporting rod 7, further, a second transverse slide rail 8 is arranged on one side of the worktable plate 3 away from the transverse slide shaft 4, the first transverse slide rail 5 and the second transverse slide rail 8 are arranged in parallel, a second transverse slide block 9 capable of moving left and right along the second transverse slide rail 8 is connected on the second transverse slide rail 8 in a sliding manner, one end of the supporting rod 7 is connected with the first transverse slide block 6, the other end of the supporting rod 7 is connected with the second transverse slide block 9, a first hinge plate 63 is arranged on one side of the first transverse slide block 6, a second hinge plate 62 is arranged on one side of the second transverse slide block 9, one end of the supporting rod 7 is hinged with the first hinge plate 63, the other end of the supporting rod 7 is hinged with the second hinge plate 62, when the supporting rod 7 is pushed transversely, the second transverse slide block 9 at the upper end of the supporting rod, the first transverse sliding block 6 at the lower end of the supporting rod 7 and the transverse sliding along the first transverse sliding rail 5 facilitate the movement of the supporting rod 7 only when the working table plate 3 is not used, so that the second transverse sliding block 9 slides out of the end part of the second transverse sliding rail 8, or the first transverse sliding block 6 slides out of the first transverse sliding rail 5, and the movement is more convenient.
In order to facilitate the matching of the working table plate 3 and the transverse sliding shaft 4, further, a guide sliding block 30 is fixedly arranged on one side of the working table plate 3, a sliding through hole in sliding fit with the transverse sliding shaft 4 is formed in the guide sliding block 30, the guide sliding block 30 is in sliding connection with the transverse sliding shaft 4, and the guide sliding block 30 can rotate around the transverse sliding shaft 4.
In order to facilitate the matching of the first transverse sliding block 6 and the first transverse sliding rail 5, further, a first sliding groove 50 is arranged in the middle of the first transverse sliding rail 5 along the length direction of the first transverse sliding rail 5, the first transverse sliding block 6 is in sliding fit with the first sliding groove 50, the first transverse sliding rail 5 comprises a first upper L-shaped strip 51 and a first lower L-shaped strip 52 which are fixed on the vertical side plate 2, the first sliding groove 50 is formed between the first upper L-shaped strip 51 and the first lower L-shaped strip 52, and the first hinge plate 63 extends out of the first sliding groove 50 and is hinged to the support rod 7.
For improving first horizontal slider 6 gliding smooth and easy in first horizontal slide rail 5, furtherly, the upper end of first horizontal slider 6 and the lower extreme of first horizontal slider 6 all are provided with gyro wheel 61, gyro wheel 61 and first spout 50's inner wall rolling contact, the cell body has all been seted up to the upper end and the lower extreme of first horizontal slider 6, gyro wheel 61 sets up promptly in this cell body, and be connected with first horizontal slider 6 through pin pivot and bearing, the outer edge of gyro wheel 61 stretches out the cell body and with first spout 50's inner wall rolling contact.
In order to facilitate the matching of the second transverse sliding block 9 and the second transverse sliding rail 8, further, a second sliding chute 80 is arranged in the middle of the second transverse sliding rail 8 along the length direction of the second transverse sliding rail 8, the second transverse sliding block 9 is in sliding fit with the second sliding chute 80, the second transverse sliding rail 8 comprises a second upper L-shaped strip 81 and a second lower L-shaped strip 82 which are fixed on the working table plate 3, the second sliding chute 80 is formed between the second upper L-shaped strip 81 and the second lower L-shaped strip 82, and the shape of the second transverse sliding block 9 is matched with the shape of the second sliding chute 80.
The above description is only for the specific embodiments of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that are not thought of through the creative work should be covered within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope defined by the claims.

Claims (10)

1. A shoemaking production line comprises a production line main body (1), a vertical side plate (2) arranged on one side of the production line main body (1), and a working table plate (3) rotatably connected with the vertical side plate (2), and is characterized in that:
a transverse sliding shaft (4) is arranged at the upper part of the vertical side plate (2), and the working table plate (3) is connected with the transverse sliding shaft (4) in a sliding manner and can move left and right along the transverse sliding shaft (4);
a first transverse sliding rail (5) is arranged in the middle of the vertical side plate (2), and a first transverse sliding block (6) capable of moving left and right along the first transverse sliding rail (5) is connected onto the first transverse sliding rail (5) in a sliding manner;
the first transverse sliding block (6) is connected with the working table plate (3) through a supporting rod (7).
2. A shoemaking production line according to claim 1, characterized in that:
a second transverse sliding rail (8) is arranged on one side, far away from the transverse sliding shaft (4), of the working table plate (3);
the second transverse sliding rail (8) is connected with a second transverse sliding block (9) which can move left and right along the second transverse sliding rail (8) in a sliding way;
one end of the supporting rod (7) is connected with the first transverse sliding block (6);
the other end of the supporting rod (7) is connected with the second transverse sliding block (9).
3. A shoemaking production line according to claim 1, characterized in that:
a guide sliding block (30) is arranged on one side of the working table plate (3);
the guide sliding block (30) is connected with the transverse sliding shaft (4) in a sliding mode, and the guide sliding block (30) can rotate around the transverse sliding shaft (4).
4. A shoemaking production line according to claim 1, characterized in that:
a first sliding chute (50) is arranged in the middle of the first transverse sliding rail (5) along the length direction of the first transverse sliding rail (5);
the first transverse sliding block (6) is in sliding fit with the first sliding groove (50).
5. A shoemaking production line according to claim 2, characterized in that:
a second sliding chute (80) is formed in the middle of the second transverse sliding rail (8) along the length direction of the second transverse sliding rail (8);
the second transverse sliding block (9) is in sliding fit with the second sliding chute (80).
6. A shoemaking production line according to claim 4, characterized in that:
the upper end of the first transverse sliding block (6) and the lower end of the first transverse sliding block (6) are provided with rollers (61);
the roller (61) is in rolling contact with an inner wall of the first chute (50).
7. A shoemaking production line according to claim 4, characterized in that:
the first transverse sliding rail (5) comprises a first upper L-shaped strip (51) and a first lower L-shaped strip (52) which are fixed on the vertical side plate (2);
the first sliding groove (50) is formed between the first upper L-shaped strip (51) and the first lower L-shaped strip (52).
8. A shoemaking production line according to claim 5, characterized in that:
the second transverse sliding rail (8) comprises a second upper L-shaped strip (81) and a second lower L-shaped strip (82) which are fixed on the workbench plate (3);
the second sliding groove (80) is formed between the second upper L-shaped strip (81) and the second lower L-shaped strip (82).
9. A shoemaking production line according to claim 2, characterized in that:
a first hinge plate (63) is arranged on one side of the first transverse sliding block (6);
a second hinge plate (62) is arranged on one side of the second transverse sliding block (9);
one end of the supporting rod (7) is hinged with the first hinge plate (63);
the other end of the supporting rod (7) is hinged with the second hinged plate (62).
10. A shoemaking production line according to claim 2, characterized in that:
the transverse sliding shaft (4), the first transverse sliding rail (5) and the second transverse sliding rail (8) are arranged in parallel.
CN201920979255.5U 2019-06-26 2019-06-26 Shoemaking production line Active CN210630740U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920979255.5U CN210630740U (en) 2019-06-26 2019-06-26 Shoemaking production line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920979255.5U CN210630740U (en) 2019-06-26 2019-06-26 Shoemaking production line

Publications (1)

Publication Number Publication Date
CN210630740U true CN210630740U (en) 2020-05-29

Family

ID=70799558

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920979255.5U Active CN210630740U (en) 2019-06-26 2019-06-26 Shoemaking production line

Country Status (1)

Country Link
CN (1) CN210630740U (en)

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