CN220031013U - Rubber cushioning member forming die - Google Patents

Rubber cushioning member forming die Download PDF

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Publication number
CN220031013U
CN220031013U CN202321431548.2U CN202321431548U CN220031013U CN 220031013 U CN220031013 U CN 220031013U CN 202321431548 U CN202321431548 U CN 202321431548U CN 220031013 U CN220031013 U CN 220031013U
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China
Prior art keywords
fixed
die
electric telescopic
injection molding
mould subassembly
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Active
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CN202321431548.2U
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Chinese (zh)
Inventor
韩冰
赵欢
原沙沙
刘小超
陈天福
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Xinxiang Luda Technology Co ltd
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Xinxiang Luda Technology Co ltd
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Priority to CN202321431548.2U priority Critical patent/CN220031013U/en
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Abstract

The utility model discloses a rubber buffer piece forming die which comprises an upper end die assembly, a lower adjusting support piece, an injection molding machine, a cooling assembly, a servo motor, a supporting base, mechanical claws and a lower end die assembly, wherein supporting legs are respectively fixed at four corners of the lower surface of the supporting base, the lower end die assembly which is connected in a rotating mode is arranged on the upper surface of the supporting base, the servo motor which drives the lower end die assembly to rotate is arranged on the lower surface of the supporting base, a lower adjusting support piece is fixed on one side of the servo motor, an upper end die assembly is fixed on the lower adjusting support piece, the upper end die assembly corresponds to the lower end die assembly up and down, an injection molding machine is fixed on one side of the lower adjusting support piece, an outlet of the injection molding machine is connected with an injection molding opening of the upper end die assembly through a guide pipe, and the cooling assembly is fixed on the upper surface of the supporting base.

Description

Rubber cushioning member forming die
Technical Field
The utility model relates to the technical field of rubber buffer processing, in particular to a rubber buffer part forming die.
Background
The rubber industry is one of important basic industries of national economy, and not only provides daily necessaries for people, medical light industry rubber products and the like, but also provides various rubber production equipment or rubber parts for mining, transportation, construction, machinery, electronics and other heavy industries and emerging industries, the current forming die of many buffer rubbers needs to carry out in-film injection molding when the rubber buffer parts are injection molded, and two ends of the rubber buffer parts are connected with mounting parts, but the existing device needs to manually place the injection molding parts inside the die during processing, so that the placing speed is low, and a large amount of manpower is needed.
Disclosure of Invention
The utility model aims to overcome the existing defects, and provides the rubber buffer part forming die which is simple in structure and convenient to operate, can be used for continuous injection molding, improves the processing efficiency, provides convenience for people and can effectively solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a rubber cushioning spare forming die, includes upper end mould subassembly, lower regulation support piece, injection molding machine, cooling module, servo motor, support base, manipulator claw and lower end mould subassembly, the lower surface four corners of support base is fixed with respectively and supports the stilt, and the upper surface of support base is equipped with the lower end mould subassembly that rotates to be connected, and the lower surface of support base is equipped with and drives lower end mould subassembly pivoted servo motor, one side of servo motor is fixed with down regulation support piece, be fixed with upper end mould subassembly on the lower regulation support piece, upper end mould subassembly corresponds from top to bottom with lower end mould subassembly, and one side of lower regulation support piece is fixed with the injection molding machine, the export of injection molding machine passes through the pipe and is connected with the mouth of moulding plastics of upper end mould subassembly, the upper surface of support base is fixed with cooling module, cooling module is located under the upper end mould subassembly, the side of support base is fixed with two manipulators claw.
Further, the lower end mould subassembly includes the spliced pole that rotates through bearing and support base, and the upper end of spliced pole is fixed with four lower extreme mould boards, and four lower extreme mould boards are the cross structure, and the upper surface of lower extreme mould board is equipped with the mould recess, and the upper surface of lower extreme mould board evenly is fixed with the reference column.
Further, the lower adjusting support piece comprises an L-shaped support fixed with the support base, and two electric telescopic rods I are fixed on the L-shaped support.
Further, the upper end mould subassembly includes the mould board fixed with the flexible end of electric telescopic handle, and the lower surface of mould board is equipped with the locating hole with reference column one-to-one, can drive the mould board and reciprocate through the flexible of electric telescopic handle to this is mould board and lower extreme mould subassembly lock, can be better to making mould board and lower extreme mould board lock effect through the connection of reference column and locating hole.
Further, the cooling assembly comprises two electric telescopic rods II fixed on the supporting base, a water tank is fixed at the telescopic end of each electric telescopic rod II, a U-shaped cooling piece is fixed at the upper end of the water tank, a water outlet of the water tank is connected with a water inlet of an external water pump through a guide pipe, a water outlet of the water pump is connected with the water inlet of the U-shaped cooling piece through a guide pipe, a water outlet of the U-shaped cooling piece is connected with the water inlet of the water tank through the guide pipe, the water tank and the U-shaped cooling piece can be driven to move through the telescopic rods II, so that the U-shaped cooling piece can be attached to a lower end die plate, water in the water tank can be pumped into the U-shaped cooling piece through the water pump, and the lower end die plate can be cooled through the U-shaped cooling piece.
Further, the manipulator claw includes the backup pad fixed with support base one side, be equipped with the carousel of rotating the connection in the backup pad, the last fixed surface of carousel has electric telescopic handle three, electric telescopic handle three's flexible end is fixed with the upper end support arm, the one end of upper end support arm is fixed with the manipulator, and the lower fixed surface of backup pad has the motor that drives carousel pivoted, can drive the carousel through motor rotation and rotate, can drive electric telescopic handle three through the carousel, upper end support arm and manipulator rotate, can place the inside of mould recess with the injection molding through the manipulator, thereby place corresponding position to the injection molding at both ends respectively through two manipulators.
Compared with the prior art, the utility model has the beneficial effects that: the lower end die assembly can be driven to rotate through the rotation of the servo motor, thereby one lower end die plate is rotated to the position right below the die plate, the die plate can be driven to move up and down through the expansion of the electric telescopic rod, thereby the die plate and the lower end die assembly are buckled, the connection of the positioning column and the positioning hole can be better for the buckling effect of the die plate and the lower end die plate, the turntable can be driven to rotate through the rotation of the motor, the electric telescopic rod III, the upper end supporting arm and the mechanical claw can be driven to rotate through the turntable, the injection molding piece can be placed into the inside of the die groove through the mechanical claw, the corresponding position can be respectively placed to the injection molding pieces at the two ends through the two mechanical claws, the water tank and the U-shaped cooling piece can be driven to move through the expansion of the electric telescopic rod II, the U-shaped cooling piece can be attached to the lower end die plate, the water in the water tank can be pumped into the U-shaped cooling piece, the lower end die plate can be cooled through the U-shaped cooling piece, the rubber buffer piece can be molded, the structure is simple, the operation is simple, the injection molding efficiency can be improved, and the processing is convenient for people.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
fig. 2 is a schematic side view of the present utility model.
In the figure: the mold comprises an upper end mold component, an 11 positioning hole, a 12 mold plate, a 2 lower adjusting support piece, a 21 electric telescopic rod I, a 22L support, a 3 injection molding machine, a 4 cooling component, a 41U cooling piece, a 42 water tank, a 43 electric telescopic rod II, a 5 servo motor, a 6 supporting base, a 7 mechanical claw, a 71 mechanical claw, a 72 supporting plate, a 73 upper end supporting arm, a 74 motor, a 75 rotating disk, a 76 electric telescopic rod III, an 8 lower end mold component, a 81 mold groove, a 82 positioning column, a 83 lower end mold plate and a 84 rotating column.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-2, the present utility model provides a technical solution: the rubber buffer piece forming die comprises an upper end die assembly 1, a lower adjusting support piece 2, an injection molding machine 3, a cooling assembly 4, a servo motor 5, a supporting base 6, a mechanical gripper 7 and a lower end die assembly 8, wherein supporting legs are respectively fixed at four corners of the lower surface of the supporting base 6, the lower end die assembly 8 which is rotationally connected is arranged on the upper surface of the supporting base 6, the servo motor 5 which drives the lower end die assembly 8 to rotate is arranged on the lower surface of the supporting base 6, one side of the servo motor 5 is fixedly provided with the lower adjusting support piece 2, the upper end die assembly 1 is fixedly arranged on the lower adjusting support piece 2, the upper end die assembly 1 corresponds to the lower end die assembly 8 up and down, one side of the lower adjusting support piece 2 is fixedly provided with the injection molding machine 3, an outlet of the injection molding machine 3 is connected with an injection molding opening of the upper end die assembly 1 through a guide pipe, the cooling assembly 4 is fixedly arranged on the upper surface of the supporting base 6, the cooling component 4 is positioned right below the upper end mold component 1, two mechanical claws 7 are fixed on the side surface of the supporting base 6, the lower end mold component 8 comprises a rotating column 84 which is rotationally connected with the supporting base 6 through a bearing, four lower end mold plates 83 are fixed on the upper end of the rotating column 84, the four lower end mold plates 83 are in a cross-shaped structure, mold grooves 81 are arranged on the upper surface of the lower end mold plates 83, positioning columns 82 are uniformly fixed on the upper surface of the lower end mold plates 83, the lower adjusting supporting piece 2 comprises an L-shaped support 22 which is fixed with the supporting base 6, two electric telescopic rods I21 are fixed on the L-shaped support 22, the upper end mold component 1 comprises mold plates 12 which are fixed with the telescopic ends of the electric telescopic rods I21, positioning holes 11 which are in one-to-one correspondence with the positioning columns 82 are arranged on the lower surface of the mold plates 12, the mold plates 12 can be driven to move up and down through the telescopic of the electric telescopic rods I21, the mold plate 12 is buckled with the lower end mold assembly 8, the buckling effect of the mold plate 12 and the lower end mold plate 83 is better through the connection of the positioning column 82 and the positioning hole 11, the cooling assembly 4 comprises two electric telescopic rods II 43 fixed on the supporting base 6, a water tank 42 is fixed at the telescopic end of the electric telescopic rods II 43, a U-shaped cooling piece 41 is fixed at the upper end of the water tank 42, a water outlet of the water tank 42 is connected with a water inlet of an external water pump through a guide pipe, a water outlet of the water pump is connected with a water inlet of the U-shaped cooling piece 41 through a guide pipe, a water outlet of the U-shaped cooling piece 41 is connected with a water inlet of the water tank 42 through a guide pipe, the water tank 42 and the U-shaped cooling piece 41 can be driven to move through the telescopic of the electric telescopic rods II 43, the U-shaped cooling piece 41 can be attached with the lower end mold plate 83, water in the water tank 42 can be pumped into the U-shaped cooling piece 41 through the water pump, the lower end mold plate 83 can be internally cooled by the U-shaped cooling element 41, the mechanical gripper 7 comprises a supporting plate 72 fixed on one side of the supporting base 6, a rotary table 75 which is rotationally connected is arranged on the supporting plate 72, an electric telescopic rod III 76 is fixed on the upper surface of the rotary table 75, an upper end supporting arm 73 is fixed on the telescopic end of the electric telescopic rod III 76, a mechanical gripper 71 is fixed on one end of the upper end supporting arm 73, a motor 74 which drives the rotary table 75 to rotate is fixed on the lower surface of the supporting plate 72, the rotary table 75 can be driven to rotate by the motor 74, the electric telescopic rod III 76, the upper end supporting arm 73 and the mechanical gripper 71 can be driven to rotate by the rotary table 75, the injection molding element can be placed in a mold groove 81 by the mechanical gripper 71, the injection molding elements at two ends are respectively placed at corresponding positions by the two mechanical grippers 7, simple structure, simple operation, not only can continuously injection mold and improve the processing efficiency, and provides convenience for people
When in use: the lower end die assembly 8 can be driven to rotate through the rotation of the servo motor 5, the turntable 75 can be driven to rotate through the rotation of the motor 74 during the rotation, the electric telescopic rod III 76, the upper end supporting arm 73 and the mechanical claw 71 can be driven to rotate through the turntable 75, the injection molding piece can be placed into the die groove 81 through the mechanical claw 71, the injection molding pieces at the two ends are respectively placed at the corresponding positions through the two mechanical claws 7, the lower end die plate 83 with the injection molding piece placed is rotated to the position right below the die plate 12, the die plate 12 can be driven to move up and down through the expansion of the electric telescopic rod I21, the die plate 12 and the lower end die assembly 8 can be buckled through the positioning column 82 and the positioning hole 11, the buckling effect of the die plate 12 and the lower end die plate 83 is better through the connection of the positioning column 11, the injection molding machine 3 can be stretched and the water tank 42 and the U-shaped cooling piece 41 can be driven to move through the expansion of the electric telescopic rod II 43, the U-shaped cooling piece 41 can be attached to the lower end die plate 83, water in the water tank 42 can be pumped into the U-shaped cooling piece 41, and the inner part of the U-shaped cooling piece can be cooled down through the U-shaped cooling piece 83.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made hereto without departing from the spirit and principles of the present utility model.

Claims (6)

1. The utility model provides a rubber cushioning spare forming die, includes upper end mould subassembly (1), lower regulation support piece (2), injection molding machine (3), cooling module (4), servo motor (5), support base (6), mechanical gripper (7) and lower extreme mould subassembly (8), its characterized in that: support the lower surface four corners of base (6) and be fixed with respectively and prop the stilt, and the upper surface of support base (6) is equipped with lower extreme mould subassembly (8) of rotating connection, and the lower surface of support base (6) is equipped with drives lower extreme mould subassembly (8) pivoted servo motor (5), one side of servo motor (5) is fixed with down regulation support piece (2), be fixed with upper end mould subassembly (1) on lower regulation support piece (2), upper end mould subassembly (1) corresponds from top to bottom with lower extreme mould subassembly (8), and one side of lower regulation support piece (2) is fixed with injection molding machine (3), the export of injection molding machine (3) is connected with the injection molding mouth of upper end mould subassembly (1) through the pipe, the upper surface of support base (6) is fixed with cooling module (4), cooling module (4) are located under upper end mould subassembly (1), the side of support base (6) is fixed with two mechanical gripper (7).
2. The rubber buffer molding die according to claim 1, wherein: the lower end die assembly (8) comprises a rotating column (84) which is rotationally connected with the supporting base (6) through a bearing, four lower end die plates (83) are fixed at the upper end of the rotating column (84), the four lower end die plates (83) are of a cross-shaped structure, a die groove (81) is formed in the upper surface of each lower end die plate (83), and positioning columns (82) are uniformly fixed on the upper surface of each lower end die plate (83).
3. The rubber buffer molding die according to claim 2, wherein: the lower adjusting support piece (2) comprises an L-shaped support (22) fixed with the support base (6), and two electric telescopic rods (21) are fixed on the L-shaped support (22).
4. A rubber buffer molding die as claimed in claim 3, wherein: the upper end die assembly (1) comprises a die plate (12) fixed with the telescopic end of the first electric telescopic rod (21), and positioning holes (11) corresponding to the positioning columns (82) one by one are formed in the lower surface of the die plate (12).
5. The rubber buffer molding die according to claim 1, wherein: the cooling assembly (4) comprises two electric telescopic rods II (43) fixed on the supporting base (6), a water tank (42) is fixed at the telescopic end of the electric telescopic rods II (43), a U-shaped cooling piece (41) is fixed at the upper end of the water tank (42), a water outlet of the water tank (42) is connected with a water inlet of an external water pump through a water inlet, a water outlet of the water pump is connected with a water inlet of the U-shaped cooling piece (41) through a guide pipe, and a water outlet of the U-shaped cooling piece (41) is connected with a water inlet of the water tank (42) through a guide pipe.
6. The rubber buffer molding die according to claim 1, wherein: the mechanical gripper (7) comprises a supporting plate (72) fixed on one side of a supporting base (6), a rotary table (75) connected in a rotary mode is arranged on the supporting plate (72), an electric telescopic rod III (76) is fixed on the upper surface of the rotary table (75), an upper end supporting arm (73) is fixed at the telescopic end of the electric telescopic rod III (76), a mechanical gripper (71) is fixed at one end of the upper end supporting arm (73), and a motor (74) for driving the rotary table (75) to rotate is fixed on the lower surface of the supporting plate (72).
CN202321431548.2U 2023-06-07 2023-06-07 Rubber cushioning member forming die Active CN220031013U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321431548.2U CN220031013U (en) 2023-06-07 2023-06-07 Rubber cushioning member forming die

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321431548.2U CN220031013U (en) 2023-06-07 2023-06-07 Rubber cushioning member forming die

Publications (1)

Publication Number Publication Date
CN220031013U true CN220031013U (en) 2023-11-17

Family

ID=88741212

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321431548.2U Active CN220031013U (en) 2023-06-07 2023-06-07 Rubber cushioning member forming die

Country Status (1)

Country Link
CN (1) CN220031013U (en)

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