CN212978628U - Die carrier structure suitable for quick switching of light die cutting die - Google Patents
Die carrier structure suitable for quick switching of light die cutting die Download PDFInfo
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- CN212978628U CN212978628U CN202022025063.6U CN202022025063U CN212978628U CN 212978628 U CN212978628 U CN 212978628U CN 202022025063 U CN202022025063 U CN 202022025063U CN 212978628 U CN212978628 U CN 212978628U
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Abstract
The utility model relates to a die carrier structure suitable for quick switching of light die cutting dies, which comprises an upper die component and a lower die component, wherein a plurality of upper die positioning columns are formed on the lower surface of an upper die plate, and upper positioning holes are arranged on the upper surface of an upper die; a flat through groove is respectively arranged at the edges of the two sides of the lower surface of the upper cutting die, a tightening flat belt is attached in the flat through groove, and the two ends of the flat belt are fixed on the lower surface of the upper die plate; the upper cutting die is also provided with a needle hole for the punch needle to pass through; the utility model adopts the matching positioning of the positioning hole and the positioning column and the connection of fixing the upper cutting die by the tightened flat belt, so the replacement of the cutting die is more rapid and convenient, the disassembly and assembly of the whole set of die are not needed, the time is saved, the efficiency is improved, and the die development and the production cost are saved; through setting up flat logical groove, can not produce thickness salient when making elastic webbing or single face sticky tape and last cutting die equipment to can not influence the precision of cross cutting processing.
Description
The technical field is as follows:
the utility model relates to a cross cutting mould equipment technical field refers in particular to a die carrier structure suitable for light-duty cross cutting mould fast switch-over.
Background art:
the electronic industry has a large amount of parts to adopt cross cutting equipment and technology to produce, consequently needs a large amount of cross cutting moulds, and every set of cross cutting mould all has upper substrate, cope match-plate pattern, cutting die, lower bolster, infrabasal plate to constitute among the prior art, and development cost is high, and loading and unloading switch at every turn needs a large amount of time to be used in transportation, dismantlement, equipment and debugging, and is inefficient, and dismouting part is in large quantities and the mould is great, occupies warehouse storage space.
The utility model has the following contents:
the utility model aims at overcoming the weak point of current product, providing a die carrier structure suitable for light-duty cross cutting mould fast switch-over.
The utility model adopts the technical proposal that: the utility model provides a die carrier structure suitable for light-duty cross cutting mould fast switch-over, it includes mould subassembly and lower mould subassembly, goes up the mould subassembly and includes upper substrate, cope match-plate pattern and last cutting die, and lower mould subassembly includes infrabasal plate, lower bolster and lower cutting die, wherein: a plurality of upper cutting die positioning columns are formed on the lower surface of the upper template, and correspondingly, upper positioning holes corresponding to the upper cutting die positioning columns are formed in the upper surface of the upper cutting die; the upper base plate is provided with a plurality of punching needle mounting parts for mounting punching needles, and the upper base plate is provided with a plurality of corresponding punching needle through holes for the punching needles to penetrate downwards; the upper cutting die is matched and positioned with an upper cutting die positioning column of the upper template through an upper positioning hole, the edges of two sides of the lower surface of the upper cutting die are respectively provided with a flat through groove, a tightening flat belt is attached to the flat through grooves, and two ends of the flat belt are fixed on the lower surface of the upper template; the upper cutting die is also provided with a needle hole for the punch needle to pass through; the upper surface of the lower template is also provided with a lower cutting die positioning column, and the lower cutting die is provided with a corresponding lower positioning hole.
The flat belt is a single-sided adhesive tape, and two ends of the single-sided adhesive tape are adhered to the lower surface of the upper cutting die.
The flat belt is an elastic belt, and two ends of the elastic belt are provided with hanging holes; two groups of hooks are respectively arranged at the opposite positions of the lower surface of the upper template and the two ends of the flat through groove of the upper cutting die through screws, and the hanging holes of the elastic belts are connected with the hooks.
The utility model adopts the matching positioning of the positioning hole and the positioning column and the connection of fixing the upper cutting die by the tightened flat belt, so the replacement of the cutting die is more rapid and convenient, the disassembly and assembly of the whole set of die are not needed, the time is saved, the efficiency is improved, and the die development and the production cost are saved; through setting up flat logical groove, can not produce thickness salient when making elastic webbing or single face sticky tape and last cutting die equipment to can not influence the precision of cross cutting processing.
Description of the drawings:
fig. 1 is a schematic structural diagram of a first embodiment of the present invention;
fig. 2 is a bottom view of the upper cutting die of the present invention;
fig. 3 is a schematic structural diagram of a second embodiment of the present invention.
The specific implementation mode is as follows:
the present invention will be further described with reference to the following specific embodiments and accompanying drawings.
As shown in fig. 1-3, a die carrier structure suitable for light-duty cross cutting mould fast switch over, it includes mould component 1 and lower mould component 2, goes up mould component 1 and includes upper substrate 11, upper template 12 and last cutting die 13, lower mould component 2 includes infrabasal plate 21, lower bolster 22 and lower cutting die 23, wherein: a plurality of upper cutting die positioning posts 121 are formed on the lower surface of the upper template 12, and correspondingly, upper positioning holes 131 corresponding to the upper cutting die positioning posts 121 are formed on the upper surface of the upper cutting die 13; the upper base plate 11 is provided with a plurality of punching needle mounting parts 111 for mounting the punching needles 14, and the upper base plate 12 is provided with a plurality of corresponding punching needle through holes 122 for the punching needles 14 to penetrate downwards; the punching needle mounting parts 111 and the punching needle through holes 122 are defined into standard intervals and sizes according to parameters such as common sizes, specifications and the like, for example, a plurality of punching needle mounting parts 111 and the punching needle through holes 122 can be arranged in an array mode, and the number of the punching needle mounting parts 111 and the punching needle through holes 122 is larger than that of the required punching needles, so that the positions and the number of the punching needle mounting parts can be selected according to requirements when the punching needle punching machine is used, and the punching needle punching machine is suitable for the processing requirements of different products; the upper cutting die 13 is matched and positioned with the upper cutting die positioning column 121 of the upper template 12 through the upper positioning hole 131, the edges of two sides of the lower surface of the upper cutting die 13 are respectively provided with a flat through groove 132, a tightening flat belt 15 is attached to the flat through groove 132, and two ends of the flat belt 15 are fixed on the lower surface of the upper template 12; the upper cutting die 13 is also provided with a needle hole 133 for the punch needle 14 to pass through; the lower die 22 is also provided with a lower die positioning post 221 on the upper surface thereof, and the lower die 23 is provided with a corresponding lower positioning hole 231.
In the first embodiment, the flat tape 15 is a single-sided adhesive tape, and both ends of the single-sided adhesive tape are adhered to the lower surface of the upper cutting die.
As shown in fig. 3, as a second embodiment, the flat belt 15 is an elastic belt, and both ends of the elastic belt are provided with hanging holes; two groups of hooks 123 are respectively installed on the lower surface of the upper template 12 and opposite positions of two ends of the flat through groove 132 of the upper cutting die 13 through screws, and the hanging holes of the elastic belts are connected with the hooks 123.
The positioning holes of the upper cutting die 13 and the lower cutting die 23 in the cutting die are also designed into standard sizes and specifications, the positions of other cutting edges are developed and designed according to requirements, the positions of needle holes in the upper cutting die 13 can be set according to the shapes of the cutting edges and the standard positions of the upper needle mounting part and the needle punching through hole in the upper die assembly, and proper positions are selected for setting and processing, so that the product processing requirements are met, and the assembly of the universal upper die assembly is also met. When the die is developed aiming at different products, only the cutting die needs to be developed, the development of the whole die is not needed, the upper positioning holes are formed in the positions and the sizes of the upper positioning columns of the upper die plate in the upper cutting die mounting die frame in the cutting die, then the shape and the positions of the cutting edges are designed, and the positions of the pin holes are formed in the positions avoiding the cutting edges according to the positions of the punching pin mounting part and the punching pin through hole in the upper die assembly, so that the punching pins can penetrate through the upper cutting die after die cutting, and then materials after die cutting are separated.
In conclusion, the positioning holes and the positioning columns are matched for positioning, and the upper cutting die is fixed and connected through the tightened flat belt, so that the cutting die is replaced more quickly and conveniently, the whole die is not required to be disassembled and assembled, the time is saved, the efficiency is improved, and the die development and production cost is saved; through setting up flat logical groove, can not produce thickness salient when making elastic webbing or single face sticky tape and last cutting die equipment to can not influence the precision of cross cutting processing.
Claims (3)
1. The utility model provides a die carrier structure suitable for light-duty cross cutting mould fast switch-over, it includes mould subassembly and lower mould subassembly, goes up the mould subassembly and includes upper substrate, cope match-plate pattern and last cutting die, and lower mould subassembly includes infrabasal plate, lower bolster and lower cutting die, its characterized in that: a plurality of upper cutting die positioning columns are formed on the lower surface of the upper template, and correspondingly, upper positioning holes corresponding to the upper cutting die positioning columns are formed in the upper surface of the upper cutting die; the upper base plate is provided with a plurality of punching needle mounting parts for mounting punching needles, and the upper base plate is provided with a plurality of corresponding punching needle through holes for the punching needles to penetrate downwards; the upper cutting die is matched and positioned with an upper cutting die positioning column of the upper template through an upper positioning hole, the edges of two sides of the lower surface of the upper cutting die are respectively provided with a flat through groove, a tightening flat belt is attached to the flat through grooves, and two ends of the flat belt are fixed on the lower surface of the upper template; the upper cutting die is also provided with a needle hole for the punch needle to pass through; the upper surface of the lower template is also provided with a lower cutting die positioning column, and the lower cutting die is provided with a corresponding lower positioning hole.
2. The die carrier structure suitable for quick switching of light die cutting dies according to claim 1, wherein: the flat belt is a single-sided adhesive tape, and two ends of the single-sided adhesive tape are adhered to the lower surface of the upper cutting die.
3. The die carrier structure suitable for quick switching of light die cutting dies according to claim 1, wherein: the flat belt is an elastic belt, and two ends of the elastic belt are provided with hanging holes; two groups of hooks are respectively arranged at the opposite positions of the lower surface of the upper template and the two ends of the flat through groove of the upper cutting die through screws, and the hanging holes of the elastic belts are connected with the hooks.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022025063.6U CN212978628U (en) | 2020-09-15 | 2020-09-15 | Die carrier structure suitable for quick switching of light die cutting die |
Applications Claiming Priority (1)
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CN202022025063.6U CN212978628U (en) | 2020-09-15 | 2020-09-15 | Die carrier structure suitable for quick switching of light die cutting die |
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CN212978628U true CN212978628U (en) | 2021-04-16 |
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CN202022025063.6U Active CN212978628U (en) | 2020-09-15 | 2020-09-15 | Die carrier structure suitable for quick switching of light die cutting die |
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2020
- 2020-09-15 CN CN202022025063.6U patent/CN212978628U/en active Active
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