CN219703114U - Motorcycle packaging support bending machine - Google Patents

Motorcycle packaging support bending machine Download PDF

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Publication number
CN219703114U
CN219703114U CN202321110726.1U CN202321110726U CN219703114U CN 219703114 U CN219703114 U CN 219703114U CN 202321110726 U CN202321110726 U CN 202321110726U CN 219703114 U CN219703114 U CN 219703114U
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Prior art keywords
rotary
pushing
column
seat
driving mechanism
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CN202321110726.1U
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Chinese (zh)
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杨壹君
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Chongqing Yueheng Machinery Manufacturing Co ltd
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Chongqing Yueheng Machinery Manufacturing Co ltd
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Abstract

The utility model discloses a motorcycle packaging support bending machine, which comprises: the device comprises a rotating column, a rotating seat, a compression column, a lifting driving mechanism, a rotary driving mechanism, a first moving seat, a first pushing head, a positioning block, a first horizontal pushing mechanism and a working platform; the rotary column is fixed on the rotary seat, the lifting driving mechanism is arranged on the rotary seat, the output end of the lifting driving mechanism is connected to the compression column, the side surface of the rotary column is sunken to form a groove, the groove is used for the compression column to extend in, and the rotary seat is driven to rotate by the rotary driving mechanism; the rotating seat and the rotary driving mechanism are arranged on the working platform; a first horizontal pushing mechanism is arranged on the working platform. The bending machine for the motorcycle packaging support solves the problem that in the prior art, a convex part of a hanging hook in the motorcycle packaging support is formed.

Description

Motorcycle packaging support bending machine
Technical Field
The utility model relates to a bending machine, in particular to a motorcycle packaging support bending machine.
Background
In a motorcycle packaging stand, it is necessary to use a suspension hook that suspends a suspension rod and restricts the suspension rod from rotating. As shown in fig. 1, the hanging hook includes: the upper suspension arm and the lower support arm are of arc structures, the lower support arm protrudes towards the center of the arc to form a convex part, the convex part is placed into the suspension rod in a protruding mode to limit the rotation of the suspension rod, the upper suspension arm extending upwards is fixed to the lower support arm, the upper suspension arm is installed in a motorcycle packaging support frame to achieve the purpose of hanging the suspension rod, and when the suspension rod is located on the lower support arm, the joint of the upper suspension arm and the lower support arm has the effect of blocking the upward movement of the suspension rod.
In the prior art, steel sheet bender includes: compressing mechanism, column spinner, roating seat, rotary driving mechanism, compressing head and linear driving mechanism, compressing mechanism are used for compressing tightly steel sheet one end on the column spinner, and compressing mechanism and column spinner are installed on the roating seat, and the roating seat is rotated by rotary driving mechanism drive to drive compressing mechanism and column spinner and rotate together, install the compressing head at the column spinner, the compressing head compresses tightly the steel sheet, and the compressing head is by linear driving mechanism drive removal.
According to the steel plate bending machine, when the linear driving mechanism drives the pressing head to press the steel plate to be located at the position beside the pressing mechanism, the rotary driving mechanism drives the steel plate to rotate together with the rotary column, so that the steel plate is pressed on the rotary column of the cylindrical structure to form an arc-shaped steel plate structure. Although the steel plate bending machine can realize bending to form an arc-shaped steel plate structure, the steel plate bending machine still has the following defects: the steel plate bending machine can only bend and shape the lower supporting arm of the hanging hook, and can not form a convex part on the bent supporting arm, so that the motorcycle packaging bracket with the hanging hook can not be produced.
Disclosure of Invention
The utility model provides a motorcycle packaging support bending machine, which solves the problem of forming a convex part of a suspension hook in a motorcycle packaging support in the prior art.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the utility model discloses a motorcycle packaging support bending machine, which comprises: the device comprises a rotating column, a rotating seat, a compression column, a lifting driving mechanism, a rotary driving mechanism, a first moving seat, a first pushing head, a positioning block, a first horizontal pushing mechanism and a working platform; the rotary column is fixed on the rotary seat, the lifting driving mechanism is arranged on the rotary seat, the output end of the lifting driving mechanism is connected to the compression column, the side surface of the rotary column is sunken to form a groove, the groove is used for the compression column to extend in, and the rotary seat is driven to rotate by the rotary driving mechanism; the rotating seat and the rotary driving mechanism are arranged on the working platform; the working platform is provided with a first horizontal pushing mechanism, the first horizontal pushing mechanism pushes the first movable seat to move in the X direction, the first movable seat is provided with a rotatable first pushing head, the first pushing head is provided with a crescent pushing surface, the middle part of the pushing surface protrudes towards the direction of the rotating column to form a pushing protrusion, the pushing protrusion is used for pressing a steel plate into a groove to form a protruding part of a hanging hook, one corner of the first pushing head is an extrusion angle, and the extrusion angle is hinged with the first movable seat; the top surface of the first movable seat is recessed to form a first slot and a second slot, the first slot and the second slot are used for placing a positioning block, and when the positioning block is positioned in the first slot, the positioning block positioning pushing protrusion is opposite to the groove on the rotary column; when the positioning block is positioned in the second slot, the positioning block positions and pushes the protrusion to deviate from the groove on the rotary column.
Preferably, the extrusion angle forms an extrusion surface, the extrusion surface is of an arc structure, and the extrusion surface is tangent to the steel plate on the rotary column.
Preferably, the first pressing head forms an L-shaped positioning surface at one side away from the pressing surface, and the positioning surface is tightly attached to the positioning block.
Preferably, the rotation driving mechanism includes: the driving gear ring is fixed with the rotating seat, the driving gear ring is meshed with the gear, and the gear can be driven to rotate by the rotating motor.
Preferably, the working platform comprises: the device comprises an upper supporting plate and a lower supporting plate, wherein a first moving seat, a first pushing head, a positioning block and a first horizontal pushing mechanism are arranged on the upper supporting plate, a rotating motor is arranged on the lower supporting plate, the upper supporting plate is connected with the lower supporting plate through a supporting column, and the rotating column is extruded out of the upper supporting plate.
Preferably, the rotary seat passes through the upper supporting plate, the top surface of the rotary seat and the top surface of the upper supporting plate are arranged on the same plane, and the rotary seat is provided with a through groove for the compression column to pass through.
Preferably, a second horizontal pushing mechanism is installed on the upper supporting plate, the second horizontal pushing mechanism drives a second movable seat to move in the X direction, a third horizontal pushing mechanism is installed on the second movable seat, the third horizontal pushing mechanism pushes a second pushing head to move in the Z direction, a jack is formed in the upper supporting plate, the jack is located on one side of the rotating column, which is away from the first pushing head, the jack is used for inserting the bottom end of a bearing plate, and the second pushing head pushes a steel plate to form a joint of an upper suspension arm and a lower support arm of a suspension hook between the rotating column and the bearing plate.
Compared with the prior art, the utility model has the following beneficial effects:
the lower supporting arm of the suspension hook in the motorcycle packaging bracket is formed by punching and bending twice, and the first punching and bending are performed: the positioning block is inserted into the first slot, the pressing column is lowered to the bottom crossing position, and the first pushing head is pushed by the first horizontal pushing mechanism to punch towards the position of the groove on the rotating column, so that the steel plate is punched, and a part of arc structure and a part of convex part are formed. And (3) punching and bending for the second time: the locating piece inserts in the second slot, compresses tightly the post simultaneously and risees under lifting drive mechanism's drive, compresses tightly the post and risees to impress the convex part into the column spinner recess in, and rotation drive mechanism drive roating seat drives the steel sheet, compresses tightly post and column spinner and rotate together afterwards to realized bending and formed the lower support arm of whole arc structure. The compacting column has the function of driving the steel plates to rotate together, so that the deformation of the convex parts caused by the relative displacement of the steel plates is avoided, and the quality of the hanging hook products in the motorcycle packaging bracket is ensured. Thereby ensuring the production of the suspension hooks in the motorcycle packaging bracket with the structure shown in figure 1 and ensuring the quality of the suspension hooks in the motorcycle packaging bracket.
Additional advantages, objects, and features of the utility model will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the utility model.
Drawings
Fig. 1 is a schematic view of the structure of a suspension hook in a motorcycle packaging bracket.
Fig. 2 is a schematic structural view of a motorcycle packing support bending machine.
Fig. 3 is a schematic structural view of a motorcycle packaging bracket bending machine.
Fig. 4 is an enlarged view at a in fig. 3.
Reference numerals: the upper suspension arm 101, the lower support arm 102, the convex portion 103, the rotating column 2, the groove 20, the rotating seat 3, the lifting drive mechanism 5, the rotation drive mechanism 6, the drive toothed ring 61, the gear 62, the rotating motor 63, the first moving seat 7, the first slot 71, the second slot 72, the first pushing head 8, the pushing surface 81, the pushing protrusion 82, the pressing surface 83, the positioning block 9, the first horizontal pushing mechanism 10, the work platform 11, the upper support plate 111, the lower support plate 112, the support column 113, the second horizontal pushing mechanism 12, the second moving seat 13, the third horizontal pushing mechanism 14, the second pushing head 15, the pressure bearing plate 16, and the steel plate 17.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the present utility model more clear and easy to understand, the present utility model is further described below with reference to the accompanying drawings and the detailed description:
as shown in fig. 2 to 4, the present utility model discloses a motorcycle packing support bending machine, comprising: the device comprises a rotary column 2, a rotary seat 3, a compression column, a lifting driving mechanism 5, a rotary driving mechanism 6, a first moving seat 7, a first pushing head 8, a positioning block 9, a first horizontal pushing mechanism 10 and a working platform 11; the rotary column 2 is fixed on the rotary seat 3, the rotary seat 3 is provided with a lifting driving mechanism 5, the output end of the lifting driving mechanism 5 is connected to the compression column, the side surface of the rotary column 2 is sunken to form a groove 20, the groove 20 is used for the compression column to extend in, and the rotary seat 3 is driven to rotate by the rotary driving mechanism 6; the rotating seat 3 and the rotary driving mechanism 6 are arranged on the working platform 11; a first horizontal pushing mechanism 10 is arranged on the working platform 11, the first horizontal pushing mechanism 10 pushes the first movable seat 7 to move in the X direction, a rotatable first pushing head 8 is arranged on the first movable seat 7, the first pushing head 8 is formed with a crescent-shaped pushing surface 81, the middle part of the pushing surface 81 protrudes towards the direction of the rotating column 2 to form a pushing protrusion 82, the pushing protrusion 82 is used for pressing a steel plate 17 into the groove 20 to form a protruding part 103 of a hanging hook, one corner of the first pushing head 8 is an extrusion angle, and the extrusion angle is hinged with the first movable seat 7; the top surface of the first movable seat 7 is recessed to form a first slot 71 and a second slot 72, the first slot 71 and the second slot 72 are respectively provided for the positioning block 9 to be placed in, and when the positioning block 9 is positioned in the first slot 71, the positioning block 9 positioning pushing protrusion 82 is opposite to the groove 20 on the rotary column 2; the positioning block 9 positioning pushing projection 82 is offset from the groove 20 on the spin column 2 when the positioning block 9 is positioned in the second slot 72. The positioning block 9 is inserted into the first slot 71 or the second slot 72, so that the reaction force of the steel plate 17 to the first pushing head 8 during bending can be fully contained, and the bending work can be smoothly performed.
The extrusion angle is provided with an extrusion surface 83, the extrusion surface 83 is of an arc structure, and the extrusion surface 83 is tangent to the steel plate 17 on the rotary column 2. The pressing surface 83 is in an arc structure, so that the pressing surface 83 is clung to the steel plate 17 after the first pushing head 8 rotates relative to the first moving seat 7. The subsequent steel plate 17 and the rotary column 2 are guaranteed to rotate together relative to the first pushing head 8 so as to form a subsequent arc-shaped structure.
One side of the first pushing head 8, which is away from the pushing surface 81, forms an L-shaped positioning surface, and the positioning surface is tightly attached to the positioning block 9. The sufficient contact between the positioning surface and the positioning block 9 is ensured, and the supporting force of the positioning block 9 to the first pushing head 8 is ensured.
The rotation driving mechanism 6 includes: the drive ring gear 61, the gear 62, and the rotating motor 63, the drive ring gear 61 is fixed to the rotating base 3, the drive ring gear 61 is meshed with the gear 62, and the gear 62 can be driven to rotate by the rotating motor 63. The rotary motor 63 drives the driving gear ring 61 to rotate through the gear 62, thereby driving the entire rotary seat 3 to rotate.
The work platform 11 includes: the upper support plate 111 and the lower support plate 112, the first movable seat 7, the first pushing head 8, the positioning block 9 and the first horizontal pushing mechanism 10 are arranged on the upper support plate 111, the rotating motor 63 is arranged on the lower support plate 112, the upper support plate 111 and the lower support plate 112 are connected through the support column 113, and the rotating column 2 emerges from the upper support plate 111. The upper supporting plate 111 is guaranteed to form a working surface, the rotating motor 63 is installed on the lower supporting plate 112, and the situation that the rotating driving mechanism 6 is installed above and occupies the bending space of the steel plate 17 is avoided.
The rotating seat 3 passes through the upper supporting plate 111, the top surface of the rotating seat 3 and the top surface of the upper supporting plate 111 are arranged on the same plane, and the rotating seat 3 is provided with a through groove for the compression column to pass through. Because the compression column rotates along with the rotary column 2, the top surface of the rotary seat 3 is arranged to emerge, and the situation that the bending part of the steel plate 17 is not supported when the annular rotary groove of the compression column is required to be arranged to cause bending is avoided.
The second horizontal pushing mechanism 12 is installed on the upper supporting plate 111, the second horizontal pushing mechanism 12 drives a second movable seat 13 to move in the X direction, the second movable seat 13 is provided with a third horizontal pushing mechanism 14, the third horizontal pushing mechanism 14 pushes a second pushing head 15 to move in the Z direction, a jack is formed in the upper supporting plate 111, the jack is located on one side of the rotating column 2, which is far away from the first pushing head 8, the jack is used for inserting the bottom end of a bearing plate 16, and the second pushing head 15 pushes a steel plate 17 to push a connecting part of the upper suspension arm 101 and the lower support arm 102 in a suspension hook between the rotating column 2 and the bearing plate 16. The third horizontal pushing mechanism 14 and the second pushing ram 15 are used for realizing the third bending of the steel plate 17, and when the first bending and the second bending are realized, the positions of the third horizontal pushing mechanism 14 and the second pushing ram 15 away from the steel plate 17 are driven by the second horizontal pushing mechanism 12 and the second moving seat 13 because the steel plate 17 is longer so as to avoid the third horizontal pushing mechanism 14 and the second pushing ram 15 from occupying the positions of the steel plate 17. Then, when the first and second bending are completed, the rotary driving mechanism 6 is rotated back so that one end of the arc-shaped steel plate 17 is rotated to the side of the bearing plate 16; subsequently, the third horizontal pushing mechanism 14 drives the second pushing head 15 to move, and the second pushing head 15 compresses the steel plate 17 on the rotary column 2 and the bearing plate, so that the arc-shaped structure at the joint of the upper suspension arm 101 and the lower support arm 102 of the suspension hook is formed, and the third bending is realized, so that a suspension hook finished product is formed.
The first horizontal pushing mechanism 10, the second horizontal pushing mechanism 12 and the third horizontal pushing mechanism 14 are all hydraulic cylinders. The lifting driving mechanism 5 is an air cylinder.
Finally, it is noted that the above embodiments are only for illustrating the technical solution of the present utility model and not for limiting the same, and although the present utility model has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications and equivalents may be made thereto without departing from the spirit and scope of the technical solution of the present utility model, which is intended to be covered by the scope of the claims of the present utility model.

Claims (7)

1. Motorcycle packaging support bender, its characterized in that includes: the device comprises a rotating column (2), a rotating seat (3), a compression column, a lifting driving mechanism (5), a rotating driving mechanism (6), a first moving seat (7), a first pushing head (8), a positioning block (9), a first horizontal pushing mechanism (10) and a working platform (11);
the rotary column (2) is fixed on the rotary seat (3), the lifting driving mechanism (5) is arranged on the rotary seat (3), the output end of the lifting driving mechanism (5) is connected to the compression column, the side surface of the rotary column (2) is sunken to form a groove (20), the groove (20) is used for the compression column to extend in, and the rotary seat (3) is driven to rotate by the rotary driving mechanism (6);
the rotating seat (3) and the rotary driving mechanism (6) are arranged on the working platform (11);
a first horizontal pushing mechanism (10) is arranged on the working platform (11), the first horizontal pushing mechanism (10) pushes the first movable seat (7) to move in the X direction, a first rotatable pushing head (8) is arranged on the first movable seat (7), the first pushing head (8) is provided with a crescent pushing surface (81), the middle part of the pushing surface (81) protrudes towards the direction of the rotary column (2) to form a pushing protrusion (82), the pushing protrusion (82) is used for pressing a steel plate (17) into the groove (20) to form a protruding part (103) of a hanging hook, one corner of the first pushing head (8) is an extrusion angle, and the extrusion angle is hinged with the first movable seat (7);
the top surface of the first movable seat (7) is recessed to form a first slot (71) and a second slot (72), the first slot (71) and the second slot (72) are used for placing a positioning block (9), and when the positioning block (9) is positioned in the first slot (71), the positioning block (9) positions and pushes a protrusion (82) to be opposite to a groove (20) on the rotary column (2); when the positioning block (9) is positioned in the second slot (72), the positioning block (9) positions the pushing protrusion (82) to deviate from the groove (20) on the rotary column (2).
2. Motorcycle packaging support bending machine according to claim 1, characterized in that the extrusion angle forms an extrusion surface (83), the extrusion surface (83) is of circular arc structure, the extrusion surface (83) is tangential to the steel plate (17) on the rotary column (2).
3. Motorcycle packaging support bending machine according to claim 2, characterized in that the side of the first pushing head (8) facing away from the pushing surface (81) forms an L-shaped positioning surface, which is in close contact with the positioning block (9).
4. A motorcycle packaging stand bending machine according to any one of claims 1 to 3, characterized in that the rotary drive mechanism (6) comprises: the driving gear ring (61), the gear (62) and the rotating motor (63), the driving gear ring (61) is fixed with the rotating seat (3), the driving gear ring (61) is meshed with the gear (62), and the gear (62) can be driven to rotate by the rotating motor (63).
5. Motorcycle packaging stand bending machine according to claim 4, characterized in that the working platform (11) comprises: the rotary column comprises an upper supporting plate (111) and a lower supporting plate (112), wherein a first movable seat (7), a first pushing head (8), a positioning block (9) and a first horizontal pushing mechanism (10) are arranged on the upper supporting plate (111), a rotary motor (63) is arranged on the lower supporting plate (112), the upper supporting plate (111) is connected with the lower supporting plate (112) through a supporting column (113), and a rotary column (2) emits out of the upper supporting plate (111).
6. The motorcycle packaging support bending machine according to claim 5, wherein the rotating seat (3) penetrates through the upper supporting plate (111), the top surface of the rotating seat (3) and the top surface of the upper supporting plate (111) are arranged on the same plane, and the rotating seat (3) is provided with a penetrating groove for the compression column to penetrate through.
7. Motorcycle packaging support bending machine according to claim 6, characterized in that a second horizontal pushing mechanism (12) is mounted on the upper support plate (111), the second horizontal pushing mechanism (12) drives a second movable seat (13) to move in the X direction, a third horizontal pushing mechanism (14) is mounted on the second movable seat (13), the third horizontal pushing mechanism (14) pushes a second pushing head (15) to move in the Z direction, a jack is formed in the upper support plate (111), the jack is located on one side of the rotary column (2) away from the first pushing head (8), the jack is used for inserting the bottom end of a bearing plate (16), and the second pushing head (15) pushes a steel plate (17) between the rotary column (2) and the bearing plate (16) to form the joint of the upper suspension arm (101) and the lower support arm (102) of the suspension hook.
CN202321110726.1U 2023-05-10 2023-05-10 Motorcycle packaging support bending machine Active CN219703114U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321110726.1U CN219703114U (en) 2023-05-10 2023-05-10 Motorcycle packaging support bending machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321110726.1U CN219703114U (en) 2023-05-10 2023-05-10 Motorcycle packaging support bending machine

Publications (1)

Publication Number Publication Date
CN219703114U true CN219703114U (en) 2023-09-19

Family

ID=88000090

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321110726.1U Active CN219703114U (en) 2023-05-10 2023-05-10 Motorcycle packaging support bending machine

Country Status (1)

Country Link
CN (1) CN219703114U (en)

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