CN214521587U - Automobile instrument framework forming die frame - Google Patents
Automobile instrument framework forming die frame Download PDFInfo
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- CN214521587U CN214521587U CN202022042665.2U CN202022042665U CN214521587U CN 214521587 U CN214521587 U CN 214521587U CN 202022042665 U CN202022042665 U CN 202022042665U CN 214521587 U CN214521587 U CN 214521587U
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Abstract
The utility model discloses an motormeter skeleton shaping die carrier, including the die carrier body, the die carrier body is equipped with feeding subassembly and ejecting subassembly, the die carrier body is including last mould profiled sheeting and the lower mould profiled sheeting that is upper and lower coincide and connects, it is equipped with the terrace die that is used for shaping instrument skeleton internal surface to go up the mould profiled sheeting, the lower mould profiled sheeting is equipped with the die that is used for shaping instrument skeleton surface, the terrace die combines and reserves the shaping die cavity that accords with instrument skeleton shape with the die adaptability between the two with the die, feeding subassembly is located last mould profiled sheeting top and is connected with the shaping die cavity, ejecting subassembly is located lower mould profiled sheeting below and is connected with the shaping die cavity. The utility model discloses simple structure, easily manufacturing are applicable to the shaping of instrument skeleton.
Description
Technical Field
The utility model relates to an auto-parts makes the field, especially relates to an motormeter skeleton forming die carrier.
Background
The automobile instrument framework is a part in an automobile instrument assembly, and is made of plastic, so that the manufacturing is completed through an injection mold, and therefore, the injection mold for manufacturing the automobile instrument framework needs to be designed and developed. The die frame is a semi-finished product of the die and consists of various steel plates matched with parts, so to speak, the framework of the whole die. A mould frame is designed in the process of designing and developing an instrument framework injection mould.
In view of this, the utility model discloses the designer goes into the discussion deeply to the problem to rely on the research and development and the manufacturing experience that are engaged in relevant industry for many years, developed the utility model discloses motormeter skeleton die carrier for in motormeter skeleton's injection mold.
Disclosure of Invention
An object of the utility model is to provide an automobile instrument skeleton forming die frame to in the injection mold who is used for automobile instrument skeleton.
In order to achieve the above purpose, the utility model adopts the technical scheme that: motormeter skeleton shaping die carrier, including the die carrier body, the die carrier body is equipped with feeding subassembly and ejecting subassembly, the die carrier body is including last mould profiled sheeting and the lower mould profiled sheeting that is upper and lower coincide and connect, it is equipped with the terrace die that is used for shaping instrument skeleton internal surface to go up the profiled sheeting, lower mould profiled sheeting is equipped with the die that is used for shaping instrument skeleton surface, the terrace die combines and reserves the shaping die cavity that accords with instrument skeleton shape between the two with die adaptability, feeding subassembly is located last mould profiled sheeting top and is connected with the shaping die cavity, ejecting subassembly is located lower mould profiled sheeting below and is connected with the shaping die cavity.
Preferably, the die carrier body comprises an upper die frame and a lower die frame which are connected in an up-down overlapping mode, the upper die forming plate is fixedly connected into the upper die frame, and the lower die forming plate is fixedly connected into the lower die frame.
Preferably, the die carrier body comprises at least one side core-pulling mechanism, the side core-pulling mechanism comprises a sliding block movably arranged between an upper die frame and a lower die frame, the sliding block comprises a forming end movably arranged between an upper die forming plate and a lower die forming plate, and the forming end comprises a forming surface connected with a female die.
As a preferred, feeding subassembly is including the material mouth, hot runner, the material that are linked together way, the material is said and is communicated with the shaping die cavity, the die carrier body is including the cope match-plate pattern that is located the cope match-plate pattern top, the cope match-plate pattern is located to the material mouth, the hot runner is located between cope match-plate pattern and the cope match-plate pattern, it all is equipped with to go up the die shaping board, go up the die match-plate pattern the material is said.
Preferably, the die carrier body comprises a top plate which can move upwards and is positioned below the lower die frame, the ejection assembly comprises an ejector rod and an ejector block connected with the female die, the upper end of the ejector rod is inserted into the lower die forming plate and is connected with the ejector block, and the lower end of the ejector rod is connected with the top plate.
Compared with the prior art, the beneficial effects of the utility model reside in that: (1) the die carrier has simple structure and is easy to process and manufacture; (2) the upper die forming plate and the lower die forming plate are respectively provided with a female die and a male die, and the female die and the male die are combined to form an equal-forming die cavity which can be suitable for forming the instrument framework; (3) and the ejection assembly arranged in the die carrier body is used for ejecting the molded instrument framework from the molding die cavity.
Drawings
FIG. 1 is a first schematic structural diagram of the present invention;
fig. 2 is a schematic structural diagram of the present invention.
In the figure: 1. forming a plate by an upper die; 2. forming a plate on the lower die; 3. a male die; 4. a female die; 5. molding a mold cavity; 6. putting a mold frame; 7. a lower mold frame; 8. a slider; 9. a forming end; 10. a material port; 11. a hot runner; 12. a material channel; 13. mounting a template; 14. a top plate; 15. a top rod; 16. and (7) a top block.
Detailed Description
The present invention will be further described with reference to the following detailed description, and it should be noted that, in the premise of no conflict, the embodiments or technical features described below can be arbitrarily combined to form a new embodiment.
In the description of the present invention, it should be noted that, for the orientation words, there are terms such as "center", "lateral", "longitudinal", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like indicating the orientation and positional relationship based on the orientation or positional relationship shown in the drawings, which are only for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and cannot be construed as limiting the specific scope of the present invention.
It is noted that the terms first, second and the like in the description and in the claims of the present invention are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order.
The terms "comprises," "comprising," and "having," and any variations thereof, in the description and claims of the present invention, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements expressly listed, but may include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus.
As shown in fig. 1-2, motormeter skeleton shaping die carrier, including the die carrier body, the die carrier body is equipped with feeding subassembly and ejecting subassembly, the die carrier body is including last mould formed plate 1 and lower mould formed plate 2 that are upper and lower coincide and connect, it is equipped with terrace die 3 that is used for shaping instrument skeleton internal surface to go up mould formed plate 1, lower mould formed plate 2 is equipped with die 4 that is used for shaping instrument skeleton surface, terrace die 3 combines and reserves the shaping die cavity 5 that accords with instrument skeleton shape with the adaptability of die 4 between the two, feeding subassembly is located and is gone up mould formed plate 1 top and be connected with shaping die cavity 5, ejecting subassembly is located lower mould formed plate 2 below and is connected with shaping die cavity 5.
The upper die forming plate 1 and the lower die forming plate 2 are respectively provided with a female die 4 and a male die 3, and the female die 4 and the male die 3 are combined to form an equal-forming die cavity 5 which is suitable for forming the instrument framework; and the ejection assembly arranged in the die carrier body is used for ejecting the molded instrument framework from the molding die cavity 5.
As a preferred embodiment, the die carrier body comprises an upper die frame 6 and a lower die frame 7 which are connected in an up-down overlapping manner, the upper die forming plate 1 is fixedly connected in the upper die frame 6, and the lower die forming plate 2 is fixedly connected in the lower die frame 7. The upper mold frame 6 and the lower mold frame 7 are indispensable components of the instrument framework forming mold base.
As a preferred embodiment, the die carrier body includes at least one side core-pulling mechanism, the side core-pulling mechanism includes a slider 8 movably disposed between the upper die frame 6 and the lower die frame 7, the slider 8 includes a forming end 9 movably disposed between the upper die forming plate 1 and the lower die forming plate 2, and the forming end 9 includes a forming surface connected with the female die 4. The molding surface on the slider 8 is used for molding the outer surface of the instrument framework with a more complex shape.
As a preferred embodiment, the feeding assembly includes a material port 10, a hot runner 11, and a material channel 12 that are communicated, the material channel 12 is communicated with the molding cavity 5, the mold base body includes an upper mold plate 13 located above the upper mold frame 6, the material port 10 is disposed on the upper mold plate 13, the hot runner 11 is located between the upper mold plate 13 and the upper mold frame 6, and both the upper mold molding plate 1 and the upper mold frame 6 are provided with the material channel 12.
As a preferred embodiment, the die carrier body comprises a top plate 14 which can move upwards and is positioned below the lower die frame 7, the ejection assembly comprises an ejector rod 15 and an ejector block 16 connected with the female die 4, the upper end of the ejector rod 15 is inserted into the lower die forming plate 2 and is connected with the ejector block 16, and the lower end of the ejector rod 15 is connected with the top plate 14.
The basic principles, main features and advantages of the present invention have been described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the principles of the present invention may be applied to any other embodiment without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (3)
1. Motormeter skeleton shaping die carrier, including the die carrier body, the die carrier body is equipped with feeding subassembly and ejecting subassembly, the die carrier body is including last mould profiled sheeting and the lower mould profiled sheeting that is upper and lower coincide and connect, its characterized in that: the upper die forming plate is provided with a male die for forming the inner surface of the instrument framework, the lower die forming plate is provided with a female die for forming the outer surface of the instrument framework, the male die is adaptively combined with the female die, a forming die cavity in accordance with the shape of the instrument framework is reserved between the male die and the female die, the feeding assembly is arranged above the upper die forming plate and is connected with the forming die cavity, and the ejection assembly is arranged below the lower die forming plate and is connected with the forming die cavity; the die carrier body comprises an upper die frame and a lower die frame which are connected in an up-down overlapping mode, an upper die forming plate is fixedly connected in the upper die frame, and a lower die forming plate is fixedly connected in the lower die frame; the die carrier body comprises at least one side core-pulling mechanism, the side core-pulling mechanism comprises a sliding block which is movably arranged between an upper die frame and a lower die frame, the sliding block comprises a forming end which is movably arranged between an upper die forming plate and a lower die forming plate, and the forming end comprises a forming surface connected with a female die.
2. The automobile instrument framework molding die carrier of claim 1, characterized in that: the feeding assembly comprises a material port, a hot runner and a material channel which are communicated, the material channel is communicated with the forming die cavity, the die carrier body comprises an upper die plate located above an upper die frame, the material port is arranged on the upper die plate, the hot runner is located between the upper die plate and the upper die frame, and the upper die forming plate and the upper die frame are both provided with the material channel.
3. The automobile instrument framework molding die carrier of claim 2, characterized in that: the die carrier body comprises a top plate which can move upwards and is located below the lower die frame, the ejection assembly comprises an ejector rod and an ejector block connected with the female die, the upper end of the ejector rod is inserted into the lower die forming plate and is connected with the ejector block, and the lower end of the ejector rod is connected with the top plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022042665.2U CN214521587U (en) | 2020-09-17 | 2020-09-17 | Automobile instrument framework forming die frame |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022042665.2U CN214521587U (en) | 2020-09-17 | 2020-09-17 | Automobile instrument framework forming die frame |
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CN214521587U true CN214521587U (en) | 2021-10-29 |
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CN202022042665.2U Active CN214521587U (en) | 2020-09-17 | 2020-09-17 | Automobile instrument framework forming die frame |
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CN (1) | CN214521587U (en) |
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2020
- 2020-09-17 CN CN202022042665.2U patent/CN214521587U/en active Active
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