CN201881523U - Plastic injection mold in structure including child mold and parent mold - Google Patents
Plastic injection mold in structure including child mold and parent mold Download PDFInfo
- Publication number
- CN201881523U CN201881523U CN2010206923690U CN201020692369U CN201881523U CN 201881523 U CN201881523 U CN 201881523U CN 2010206923690 U CN2010206923690 U CN 2010206923690U CN 201020692369 U CN201020692369 U CN 201020692369U CN 201881523 U CN201881523 U CN 201881523U
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- mold
- master mold
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- die cavity
- top board
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Abstract
The utility model relates to a plastic injection mold in the structure including a child mold and a parent mold, and belongs to the field of plastic injection molds. The plastic injection mold product in the prior art has high processing cost and long mounting, debugging and production cycles of the mold. The plastic injection mold in the structure including a child mold and a parent mold comprises a fixed mold part of the child mold and a movable mold part of the child mold; and the fixed mold part of the parent mold comprises a fixed mold plate of the parent mold, a fixed mold cavity of the parent mold and an A inclined wedge for enabling the fixed mold cavity of the parent mold to assist a child mold cavity in positioning, the movable mold part of the parent mold comprises a movable mold cavity of the parent mold, a cushion block of the parent mold, a top plate fixing plate of the parent mold, a top plate of the parent mold, a movable mold plate of the parent mold, a B inclined wedge for enabling the movable mold cavity of the parent mold to assist the child mold cavity in positioning, a connecting rod for connecting the top plate fixing plate of the parent mold with the top plate of the child mold and a dead locking long pin, the fixed mold part of the child mold comprises the child mold cavity, and the movable mold part of the child mold comprises the child mold cavity, a top plate guide column of the child mold, the top plate fixing plate of the child mold and the top plate of the child mold. The plastic injection mold in the structure including the child mold and the parent mold is used for plastic injection products.
Description
Technical field
The utility model relates to plastic cement injection forming mold field, particularly relates to a kind of primary and secondary mode structure injection mould.
Background technology
The plastic cement injection forming mold of prior art, its solid plate and die cavity are formed the cover half part, and moving platen and core, ejecting mechanism etc. are formed the dynamic model part.Core, die cavity can be overall structures, also can be combining structures.But when changing the plastic cement injection molding product, no matter the shape of plastic cement injection molding product and size how, all need to change whole dynamic model part and cover half part.The processing of solid plate and moving platen has increased the processing cost of product, and mould is reinstalled needs the debugging die trial, has increased the production cycle of product.Change the product processing cost that mould brings in order to reduce, shorten the cycle of mould Installation and Debugging and production, people urgently wish only need to change when changing product with less submodule tool part, the master tooling of product related volume and still are retained in a kind of primary and secondary mode structure injection mould appearance on the injection machine.
Summary of the invention
Technical problem to be solved in the utility model is, overcome the plastic cement injection forming mold product processing cost height of prior art, the defective that the cycle of mould Installation and Debugging and production is long, satisfy people's the hope and the market demand of plastic cement injection forming mold, a kind of primary and secondary mode structure injection mould is provided, this primary and secondary mode structure injection mould only need be changed the submodule tool part less with the product related volume when changing product, master tooling still is retained on the injection machine, contour shape is corresponding with submodule tool outline in the master tooling, rely on the oblique mechanism of wedge, quick locator mould, submodule tool processing capacity is little, the location is installed easily, change the product processing cost that mould brings thereby reduced, shortened the cycle of mould Installation and Debugging and production.
The technical scheme that its technical problem that solves the utility model adopts is: primary and secondary mode structure injection mould, to form by master tooling and submodule tool, and master tooling comprises master mold cover half part and master mold dynamic model part, the submodule tool comprises submodule cover half part and submodule dynamic model part;
The master mold cover half partly comprises the A wedge of master mold solid plate, master mold cover half die cavity and master mold cover half die cavity assist location submodule die cavity, and master mold solid plate and master mold cover half die cavity are assembled together;
The master mold dynamic model comprises that partly the connecting rod and the locked of connecting rod of B wedge, master mold top board fixed head and the submodule top board of master mold dynamic model die cavity, master mold cushion block, master mold top board fixed head, master mold top board, master mold moving platen, master mold dynamic model die cavity assist location submodule core have strong market potential, master mold dynamic model die cavity, master mold cushion block, master mold top board fixed head, master mold top board and master mold moving platen are assembled together from top to bottom in regular turn, under the B wedge effect on the master mold dynamic model die cavity, the submodule core is near the datum level location of master mold dynamic model die cavity;
The submodule cover half partly comprises the submodule die cavity, and under the A wedge effect on the master mold cover half die cavity, the submodule die cavity is near the datum level location of master mold cover half die cavity;
The submodule dynamic model partly comprises submodule core, submodule top board lead, submodule push rod fixed head and submodule top board, submodule core, submodule top board lead, submodule push rod fixed head and submodule top board are assembled together from top to bottom in regular turn, and the submodule top board is limited on the master mold top board fixed head by connecting rod, locked having strong market potential.
The beneficial effects of the utility model are: this primary and secondary mode structure injection mould is when injection moulding shape and the big or small product that has nothing in common with each other, can shared master mold, only need to change and the less submodule tool part of product related volume, master tooling still is retained on the injection machine, contour shape is corresponding with submodule tool outline in the master tooling, rely on the oblique mechanism of wedge, quick locator mould, submodule tool processing capacity is little, the location is installed easily, changes the product processing cost that mould brings thereby reduced, shortened the cycle of mould Installation and Debugging and production, reduced the Mould Machining amount, shortened the fabrication cycle of mould, the wedge assist location has shortened mould Installation and Debugging process, saving of work and time, reduce production cost, improved product quantity and operating efficiency, improved the economic benefit of manufacturing enterprise.
Description of drawings
Below in conjunction with the drawings and specific embodiments the utility model is described in further detail.
Fig. 1 is the structural representation front view behind the utility model matched moulds;
Fig. 2 is the structural representation rearview behind the utility model matched moulds.
Among the figure, 1, the master mold solid plate; 2, master mold cover half die cavity; 3, submodule die cavity; 4, submodule core; 5, master mold dynamic model die cavity; 6, submodule top board lead; 7, submodule push rod fixed head; 8, master mold cushion block; 9, master mold top board fixed head; 10, master mold top board; 11, master mold moving platen; 12, A wedge; 13, B wedge; 14, connecting rod; 15, submodule top board; 16, locked having strong market potential.
The specific embodiment
Referring to Fig. 1 and Fig. 2, the described a kind of primary and secondary mode structure injection mould of present embodiment is made up of master tooling and submodule tool, and master tooling comprises master mold cover half part and master mold dynamic model part, and the submodule tool comprises submodule cover half part and submodule dynamic model part;
The master mold cover half partly comprises the A wedge 12 of master mold solid plate 1, master mold cover half die cavity 2 and master mold cover half die cavity 2 assist location submodule die cavities 3, and master mold solid plate 1 and master mold cover half die cavity 2 are assembled together;
The master mold dynamic model partly comprises master mold dynamic model die cavity 5, master mold cushion block 8, master mold top board fixed head 9, master mold top board 10, master mold moving platen 11, the B wedge 13 of master mold dynamic model die cavity 5 assist location submodule cores 4, master mold top board fixed head 9 has strong market potential 16 with the connecting rod 14 and the locked of connecting rod 14 of submodule top board 15, master mold dynamic model die cavity 5, master mold cushion block 8, master mold top board fixed head 9, master mold top board 10 and master mold moving platen 11 are assembled together from top to bottom in regular turn, under 13 effects of the B wedge on the master mold dynamic model die cavity 5, submodule core 4 is near the datum level location of master mold dynamic model die cavity 5;
The submodule cover half partly comprises submodule die cavity 3, and under 12 effects of the A wedge on the master mold cover half die cavity 2, submodule die cavity 3 is near the datum level location of master mold cover half die cavity 2;
The submodule dynamic model partly comprises submodule core 4, submodule top board lead 6, submodule push rod fixed head 7 and submodule top board 15, submodule core 4, submodule top board lead 6, submodule push rod fixed head 7 and submodule top board 15 are assembled together from top to bottom in regular turn, and submodule top board 15 16 is limited on the master mold top board fixed head 9 by connecting rod 14, locked having strong market potential.
The location of submodule in master mold: submodule die cavity 3 is located near the datum level of master mold cover half die cavity 2 under 12 effects of the A wedge on the master mold cover half die cavity 2; Submodule core 4 is located near the datum level of master mold dynamic model die cavity 5 under 13 effects of the B wedge on the master mold dynamic model die cavity 5; Submodule top board 15 16 is limited on the master mold top board fixed head 9 by connecting rod 14, locked having strong market potential.
Change submodule: unclamp and lockedly have strong market potential 16, unclamp A wedge 12 and B wedge 13, unclamp being threaded of submodule die cavity 3 and master mold cover half die cavity 2, unclamp being threaded of submodule core 4 and master mold dynamic model die cavity 5, whole submodule can withdraw from master mold together with connecting rod 14.Installation process in contrast.
Primary and secondary mould injection moulding process is similar to conventional injection mould.
The above only is a preferred embodiment of the present utility model, is not to be used for limiting the utility model, and all its similar embodiment and approximate structure should be covered by the protection domain of the utility model patent.
Claims (1)
1. primary and secondary mode structure injection mould is made up of master tooling and submodule tool, and master tooling comprises master mold cover half part and master mold dynamic model part, and the submodule tool comprises submodule cover half part and submodule dynamic model part, it is characterized in that:
The master mold cover half partly comprises the A wedge of master mold solid plate, master mold cover half die cavity and master mold cover half die cavity assist location submodule die cavity, and master mold solid plate and master mold cover half die cavity are assembled together;
The master mold dynamic model comprises that partly the connecting rod and the locked of connecting rod of B wedge, master mold top board fixed head and the submodule top board of master mold dynamic model die cavity, master mold cushion block, master mold top board fixed head, master mold top board, master mold moving platen, master mold dynamic model die cavity assist location submodule core have strong market potential, master mold dynamic model die cavity, master mold cushion block, master mold top board fixed head, master mold top board and master mold moving platen are assembled together from top to bottom in regular turn, under the B wedge effect on the master mold dynamic model die cavity, the submodule core is near the datum level location of master mold dynamic model die cavity;
The submodule cover half partly comprises the submodule die cavity, and under the A wedge effect on the master mold cover half die cavity, the submodule die cavity is near the datum level location of master mold cover half die cavity;
The submodule dynamic model partly comprises submodule core, submodule top board lead, submodule push rod fixed head and submodule top board, submodule core, submodule top board lead, submodule push rod fixed head and submodule top board are assembled together from top to bottom in regular turn, and the submodule top board is limited on the master mold top board fixed head by connecting rod, locked having strong market potential.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010206923690U CN201881523U (en) | 2010-12-31 | 2010-12-31 | Plastic injection mold in structure including child mold and parent mold |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010206923690U CN201881523U (en) | 2010-12-31 | 2010-12-31 | Plastic injection mold in structure including child mold and parent mold |
Publications (1)
Publication Number | Publication Date |
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CN201881523U true CN201881523U (en) | 2011-06-29 |
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CN2010206923690U Expired - Fee Related CN201881523U (en) | 2010-12-31 | 2010-12-31 | Plastic injection mold in structure including child mold and parent mold |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107511966A (en) * | 2017-09-06 | 2017-12-26 | 奥克斯空调股份有限公司 | Die arrangement device and shaped device |
CN110090899A (en) * | 2019-04-22 | 2019-08-06 | 安徽康尼精密机械有限公司 | The method of the ejection position-limit mechanism and primary and secondary mould bases and mould bases primary and secondary of primary and secondary mould bases |
-
2010
- 2010-12-31 CN CN2010206923690U patent/CN201881523U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107511966A (en) * | 2017-09-06 | 2017-12-26 | 奥克斯空调股份有限公司 | Die arrangement device and shaped device |
CN110090899A (en) * | 2019-04-22 | 2019-08-06 | 安徽康尼精密机械有限公司 | The method of the ejection position-limit mechanism and primary and secondary mould bases and mould bases primary and secondary of primary and secondary mould bases |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20110629 Termination date: 20141231 |
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EXPY | Termination of patent right or utility model |