CN215845096U - Novel die assembly for punch forming of metal product - Google Patents

Novel die assembly for punch forming of metal product Download PDF

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Publication number
CN215845096U
CN215845096U CN202121762060.9U CN202121762060U CN215845096U CN 215845096 U CN215845096 U CN 215845096U CN 202121762060 U CN202121762060 U CN 202121762060U CN 215845096 U CN215845096 U CN 215845096U
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die
block
hydraulic
die assembly
novel
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CN202121762060.9U
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朱明威
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Suzhou Lingmo Precision Hardware Products Co ltd
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Suzhou Lingmo Precision Hardware Products Co ltd
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Abstract

The utility model discloses a novel die assembly for punch forming of metal products, which comprises a die seat, wherein the die assembly is connected above the die seat, hydraulic mechanisms are arranged on the edges of two sides inside the die assembly, forming mechanisms are arranged on two sides of the inner wall of the die assembly, trimming mechanisms are arranged on two sides of the outer wall of each forming mechanism, and a sliding device is arranged at one end of each trimming mechanism. According to the trimming device, the excess material extruded after the die is punched can be trimmed and cut through the arrangement of the laser cutting knife and the cutting groove in the trimming mechanism, so that the shape of the die after punching is finer, the die assembly can be buffered during punching due to the arrangement of the hydraulic mechanism, the device is prevented from being damaged and influencing use, the device is simple in operation method and structure and convenient to carry, redundant manual workload is reduced, and punching work is not complicated.

Description

Novel die assembly for punch forming of metal product
Technical Field
The utility model relates to the related technical field of metal products, in particular to a novel die assembly for punch forming of metal products.
Background
The metal product industry comprises structural metal product manufacturing, metal tool manufacturing, container and metal packaging container manufacturing, stainless steel and similar daily metal product manufacturing and the like, along with social progress and technological development, the metal product is more and more widely applied in various fields of industry, agriculture and people's life, and larger values are created for the society.
However, the currently used die assembly has the limitation of application range, can only be limited to a certain product processing technology, is not wide in use direction, does not have the problem that the die can be cut and processed when the die is stamped, increases too much manual workload, and is troublesome to use, so that the novel die assembly for punch forming of metal products is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a novel die assembly for punch forming of metal products, which aims to solve the problems that the prior die assembly proposed in the background technology has limitation of application range, can be limited to a certain product processing technology, has a small using direction, can not cut a die while stamping the die, increases excessive manual workload and is troublesome to use.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a novel metal product stamping forming's mould subassembly, includes the mould seat, the top of mould seat is connected with the mould subassembly, the inside both sides edge of mould subassembly all is provided with hydraulic pressure mechanism, forming mechanism is all installed to the inner wall both sides of mould subassembly, forming mechanism's outer wall both sides all are provided with deburring mechanism, deburring mechanism's one end is provided with slider.
Preferably, the mold assembly comprises an upper mold block, a lower mold block and a die press, the upper mold block and the lower mold block are respectively installed above the mold base, the upper mold block is located above the lower mold block, and the die press is installed above the surface of the upper mold block.
Preferably, the hydraulic mechanism comprises a hydraulic sleeve, a hydraulic cylinder and a hydraulic rod, one end of the hydraulic sleeve is connected to one side of the surface of the lower module, the hydraulic cylinder and the hydraulic rod are respectively installed above the hydraulic sleeve, and the hydraulic rod is connected with the hydraulic cylinder.
Preferably, the molding mechanism comprises a mold cavity and a mold body, the mold cavity is arranged in the middle of the surface of the lower mold block, and the mold body is connected below the surface of the upper mold block.
Preferably, the trimming mechanism comprises a laser cutting knife and a cutting groove, the laser cutting knife is respectively installed on two sides of the outer wall of the upper module, and the cutting groove is formed in the outer edge of the die cavity.
Preferably, the sliding mechanism comprises a sliding groove, a sliding block and a connecting piece, the sliding groove is formed in the outer edge of the die body and is located on the surface of the upper die block, the laser cutting knife is installed on the surface of the sliding block through the connecting piece, and the sliding block is matched with the sliding groove in the surface of the upper die block
Compared with the prior art, the utility model has the beneficial effects that:
1. the novel die assembly for punch forming of metal products can buffer the device for a certain distance in the punching process through the installation of the hydraulic mechanism, and can protect the device;
2. the novel die component for punch forming of metal products can cut the extruded and removed excess materials after the die is punched through the installation of the trimming mechanism;
3. the novel die assembly for punch forming of metal products can enable the work processing of the trimming mechanism to be smoother and more careful through the arrangement of the sliding mechanism.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic side view of the present invention;
FIG. 3 is a schematic structural view of the sliding mechanism of the present invention;
FIG. 4 is a bottom view of the upper module of the present invention.
In the figure: 1. a mold base; 2. a mold assembly; 201. an upper module; 202. a lower module; 203. a die press; 3. a hydraulic mechanism; 301. a hydraulic sleeve; 302. a hydraulic cylinder; 303. a hydraulic lever; 4. a molding mechanism; 401. a mold cavity; 402. a mold body; 5. a trimming mechanism; 501. a laser cutter; 502. cutting the groove; 6. a sliding device; 601. a chute; 602. a slider; 603. a connecting member.
Detailed Description
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.
Referring to fig. 1-4, the present invention provides a technical solution: the utility model provides a novel metal product stamping forming's mould subassembly, includes mould seat 1, and the top of mould seat 1 is connected with mould subassembly 2, and the inside both sides edge of mould subassembly 2 all is provided with hydraulic pressure mechanism 3, and forming mechanism 4 is all installed to mould subassembly 2's inner wall both sides, and forming mechanism 4's outer wall both sides all are provided with deburring mechanism 5, and the one end of deburring mechanism 5 is provided with slider 6.
By adopting the scheme, the device can be prevented from being damaged and influencing use, the operation method and the structure of the device are simple, the carrying is convenient, redundant manual workload is reduced, and the stamping work is not complicated.
Specifically, the mold assembly 2 includes an upper mold block 201, a lower mold block 202, and a stamper 203, the upper mold block 201 and the lower mold block 202 are respectively installed above the mold base 1, the upper mold block 201 is located above the lower mold block 202, and the stamper 203 is installed above the surface of the upper mold block 201.
By adopting the scheme, the pressure can be increased during the punching of the device through the use of the die pressing device 203, and the punching work can be better carried out.
Specifically, the hydraulic mechanism 3 includes a hydraulic sleeve 301, a hydraulic cylinder 302 and a hydraulic rod 303, one end of the hydraulic sleeve 301 is connected to one side of the surface of the lower module 202, the hydraulic cylinder 302 and the hydraulic rod 303 are respectively installed above the hydraulic sleeve 301, and the hydraulic rod 303 is connected to the hydraulic cylinder 302.
Through adopting above-mentioned scheme, hydraulic pressure mechanism 3's installation can make the device carry out certain distance buffering in the stamping process, can play the guard action to the device.
Specifically, the molding mechanism 4 includes a mold cavity 401 and a mold body 402, the mold cavity 401 is disposed in the middle of the surface of the lower mold block 202, and the mold body 402 is connected below the surface of the upper mold block 201.
By adopting the above scheme, the mold body 402 can be replaced according to the required mold shape.
Specifically, the trimming mechanism 5 includes a laser cutting knife 501 and a cutting groove 502, the laser cutting knife 501 is respectively installed on two sides of the outer wall of the upper module 201, and the cutting groove 502 is opened on the outer edge of the mold cavity 401.
By adopting the scheme, the trimming mechanism 5 can be installed to cut the extruded and removed excess materials after the die stamping.
Specifically, the sliding device 6 includes a sliding groove 601, a sliding block 602 and a connecting member 603, the sliding groove 601 is opened at an outer edge of the mold body 402, the sliding groove 601 is located on a surface of the upper mold block 201, the laser cutting knife 501 is installed on the surface of the sliding block 602 through the connecting member 603, and the sliding block 602 is matched with the sliding groove 601 on the surface of the upper mold block 201.
By adopting the above-described arrangement, the provision of the slide device 6 makes the working process of the deburring mechanism 5 smoother and more careful.
The working principle is as follows: whether all parts are damaged or not is checked, if the parts are damaged, the parts are replaced in time, damage caused in the operation process of the device after installation is avoided, unnecessary influence is generated, a metal product to be punched is placed into a die cavity 401 formed in the surface of a lower die block 202, pressure can be manually applied to a die pressing device 203 for punching, a die body 402 of an upper die block 201 performs punching work on the metal product in the die cavity 401, a hydraulic mechanism 3 works while punching, the pressure is buffered, damage to the device caused by excessive pressure in the punching process is avoided, use in the later period is influenced, then the residual material of the punched metal product can be cut by a laser cutting knife 501 of a trimming mechanism 5 after the punching work is completed, a sliding device 6 enables the laser cutting knife 501 to slide, the metal product is cut more comprehensively, and the cut residual material is left in a cutting groove 502, the use of the device is not influenced, and the working principle and the use method of the novel die assembly for punch forming of the metal product are the same, wherein the model of the laser cutting knife 501 is FS53250D 20.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a novel metal product stamping forming's mould subassembly, a serial communication port, including mould seat (1), the top of mould seat (1) is connected with mould subassembly (2), the inside both sides edge of mould subassembly (2) all is provided with hydraulic pressure mechanism (3), forming mechanism (4) are all installed to the inner wall both sides of mould subassembly (2), the outer wall both sides of forming mechanism (4) all are provided with deburring mechanism (5), the one end of deburring mechanism (5) is provided with slider (6).
2. The novel die assembly for punch forming of metal products as claimed in claim 1, wherein: the die assembly (2) comprises an upper die block (201), a lower die block (202) and a die pressing device (203), the upper die block (201) and the lower die block (202) are respectively installed above the die base (1), the upper die block (201) is located above the lower die block (202), and the die pressing device (203) is installed above the surface of the upper die block (201).
3. The novel die assembly for punch forming of metal products as claimed in claim 2, wherein: the hydraulic mechanism (3) comprises a hydraulic sleeve (301), a hydraulic cylinder (302) and a hydraulic rod (303), one end of the hydraulic sleeve (301) is connected to one side of the surface of the lower module (202), the hydraulic cylinder (302) and the hydraulic rod (303) are respectively installed above the hydraulic sleeve (301), and the hydraulic rod (303) is connected with the hydraulic cylinder (302).
4. The novel die assembly for punch forming of metal products as claimed in claim 2, wherein: the molding mechanism (4) comprises a mold cavity (401) and a mold body (402), the mold cavity (401) is arranged in the middle of the surface of the lower mold block (202), and the mold body (402) is connected below the surface of the upper mold block (201).
5. The novel die assembly for punch forming of metal products as claimed in claim 4, wherein: the trimming mechanism (5) comprises a laser cutting knife (501) and cutting grooves (502), the laser cutting knife (501) is respectively installed on two sides of the outer wall of the upper module (201), and the cutting grooves (502) are formed in the outer edge of the die cavity (401).
6. The novel die assembly for punch forming of metal products as claimed in claim 5, wherein: the sliding device (6) comprises a sliding groove (601), a sliding block (602) and a connecting piece (603), the sliding groove (601) is formed in the outer edge of the die body (402), the sliding groove (601) is located in the surface of the upper die block (201), the laser cutting knife (501) is installed on the surface of the sliding block (602) through the connecting piece (603), and the sliding block (602) is matched with the sliding groove (601) in the surface of the upper die block (201).
CN202121762060.9U 2021-07-30 2021-07-30 Novel die assembly for punch forming of metal product Active CN215845096U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121762060.9U CN215845096U (en) 2021-07-30 2021-07-30 Novel die assembly for punch forming of metal product

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121762060.9U CN215845096U (en) 2021-07-30 2021-07-30 Novel die assembly for punch forming of metal product

Publications (1)

Publication Number Publication Date
CN215845096U true CN215845096U (en) 2022-02-18

Family

ID=80328988

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121762060.9U Active CN215845096U (en) 2021-07-30 2021-07-30 Novel die assembly for punch forming of metal product

Country Status (1)

Country Link
CN (1) CN215845096U (en)

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