CN221136741U - Semi-automatic steering wheel mould with improved exhaust groove structure - Google Patents

Semi-automatic steering wheel mould with improved exhaust groove structure Download PDF

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Publication number
CN221136741U
CN221136741U CN202323108041.6U CN202323108041U CN221136741U CN 221136741 U CN221136741 U CN 221136741U CN 202323108041 U CN202323108041 U CN 202323108041U CN 221136741 U CN221136741 U CN 221136741U
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template
positioning
mold plate
mold
movable
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CN202323108041.6U
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Chinese (zh)
Inventor
谢兵
季雄雄
邱福平
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Kunshan Mingbai Precision Molding Co ltd
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Kunshan Mingbai Precision Molding Co ltd
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Abstract

The utility model discloses a semi-automatic steering wheel mould for improving an exhaust groove structure, which comprises: the mold comprises a positioning template, a mold bottom plate, a cavity, an aluminum alloy framework insert and an exhaust hole; the bottom of the positioning template is connected with a first positioning gasket, and the bottom of the first positioning gasket is connected with a fixed die template; according to the utility model, liquid is input to a raw material sprue between the movable mold plate and the fixed mold plate by using the sprue runner system, and the raw material sprue is designed into a shape conforming to the flowing characteristic of the material liquid, so that the material liquid flows to the surfaces of the first glue inlet and the second glue inlet respectively and then flows into a cavity between the movable mold plate and the fixed mold plate, the material liquid firstly fills the bottom of the cavity, the material liquid gradually fills the cavity upwards, and air in the cavity naturally moves upwards, so that the air is discharged from an exhaust hole on the surface of the fixed mold plate, and waste products in the cavity are reduced.

Description

Semi-automatic steering wheel mould with improved exhaust groove structure
Technical Field
The utility model relates to the technical field of dies, in particular to a semi-automatic steering wheel die with an improved exhaust groove structure.
Background
The steering wheel is a key component for converting the force applied to the edge of the steering wheel by a driver into torque and transmitting the torque to the steering shaft. The earliest steering wheel is the metal, and present steering wheel is mostly wrapping material parcel skeleton, and steering wheel skeleton is mostly zinc alloy or aluminum alloy, from the angle of environmental protection, wrapping material can be made through the foaming machine by EPP to when handling the steering wheel, need use the steering wheel mould to process, thereby let steering wheel machine-shaping.
In the prior art, in the process of using the semi-automatic steering wheel mold, materials are poured into the semi-automatic steering wheel mold, so that a cavity in the semi-automatic steering wheel mold is processed into a required steering wheel, but as the parting surface structure of the raw material injection port of most of the semi-automatic steering wheel molds is designed along the shape of a product, after the materials enter the cavity through the parting surface structure of the raw material injection port, the materials enter the tail end of the cavity of the semi-automatic steering wheel mold, so that air in the cavity is not easily removed, air holes are easily formed in the surface of the product, and the processed steering wheel is formed into waste products, so that the product quality is inconvenient to use in the later period, and the product quality is reduced.
In view of this, we propose a semi-automatic steering wheel mold with an improved vent structure.
Disclosure of utility model
The utility model aims to provide a semi-automatic steering wheel mold with an improved exhaust groove structure, which solves the problems in the prior art.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a semi-automatic steering wheel mold for improved vent structure, comprising: the mold comprises a positioning template, a mold bottom plate, a cavity, an aluminum alloy framework insert and an exhaust hole;
The bottom of the positioning template is connected with a first positioning gasket, the bottom of the first positioning gasket is connected with a fixed die template, and the first positioning gasket is fixedly connected with the fixed die template;
The top of the die bottom plate is connected with a second positioning washer, the top of the second positioning washer is connected with a movable die template, and the movable die template is fixedly connected with the second positioning washer;
The cavity is respectively arranged in the movable mold template and the fixed mold template, the cavity, the movable mold template and the fixed mold template are integrally formed, one sides of the fixed mold template and the movable mold template are respectively connected with a cooling water pipe, and a water source in the cooling water pipe is convenient for cooling the fixed mold template and the movable mold template;
The aluminum alloy framework insert is arranged in the movable die template, the aluminum alloy framework insert is fixedly connected with the movable die template, a positioning column is arranged in the movable die template and positioned on one side of the aluminum alloy framework insert, and the positioning column can limit the position of the fixed die template;
The exhaust hole is formed in the fixed die template, and is integrally formed with the fixed die template;
one sides of the movable mold plate and the fixed mold plate are provided with feeding mechanisms, and liquid is discharged into the first glue inlet and the second glue inlet through the sprue runner system of the feeding mechanisms.
Preferably, the first glue inlet is formed in the surface of the movable mold plate, the first glue inlet and the movable mold plate are integrally formed, the second glue inlet is formed in the surface of the fixed mold plate, the second glue inlet and the fixed mold plate are integrally formed, one sides of the first glue inlet and the second glue inlet are respectively connected with a raw material injection port, the raw material injection port and the movable mold plate are integrally formed, the fixed mold plate are integrally formed, a sprue runner system is connected with the raw material injection port, material liquid flows through the surfaces of the first glue inlet and the second glue inlet through the raw material injection port, and finally flows into the cavity.
Preferably, the surface of movable mould template is connected with the guide pillar, the guide pin bushing that is used for pegging graft the guide pillar is seted up on the surface of cover half template, and the guide pillar inserts to the inside of guide pin bushing to carry out spacingly to the removal of movable mould template, surface one side of cover half template is connected with the waste material package, the internal connection of movable mould template has the material needle that draws that is used for drawing out the waste material package, draws the material needle and is convenient for draw out the waste material package that produces, thereby discharges the waste material package.
Preferably, the cavity of the movable mould plate is internally connected with a product body.
Preferably, a first magnet is connected to one side of the surface of the fixed die template, a second magnet corresponding to the first magnet is connected to the inside of the movable die template, and certain firmness can be increased between the movable die template and the fixed die template when the first magnet and the second magnet are attracted.
Preferably, the side of location template is connected with the installation locating piece, and the installation locating piece is convenient for fix the location template, the surface of mould bottom plate and location template is connected with the cooling water respectively and connects, the cooling water connects and links to each other with condenser tube, and the cooling water connects and is convenient for let the water source get into condenser tube's inside, cools down movable mould template and cover half template.
Compared with the prior art, the utility model has the beneficial effects that: according to the utility model, liquid is input to a raw material sprue between the movable mold plate and the fixed mold plate by using the sprue runner system, and the raw material sprue is designed into a shape conforming to the flowing characteristic of the material liquid, so that the material liquid flows to the surfaces of the first glue inlet and the second glue inlet respectively and then flows into a cavity between the movable mold plate and the fixed mold plate, the material liquid firstly fills the bottom of the cavity, and then the material liquid gradually fills upwards in the cavity, so that air in the cavity can naturally move upwards, and the air is discharged from an exhaust hole on the surface of the fixed mold plate, so that waste products in the cavity are reduced, and the quality of a product body is improved.
Drawings
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of the connection between the positioning template and the fixed mold template of the present utility model;
FIG. 3 is a schematic view of the connection between the bottom plate of the mold and the movable mold plate according to the present utility model.
In the figure: 1. positioning a template; 2. installing a positioning block; 3. a first positioning washer; 4. a fixed die template; 5. a movable mold plate; 6. a mold bottom plate; 7. a first magnet; 8. a cavity; 9. guide sleeve; 10. a waste bag; 11. a cooling water pipe; 12. a second glue inlet; 13. a material pulling needle; 14. a second positioning washer; 15. a cooling water joint; 16. a sprue runner system; 17. a first glue inlet; 18. a guide post; 19. an aluminum alloy skeleton insert; 20. a product body; 21. a second magnet; 22. positioning columns; 23. a raw material injection port; 24. and an exhaust hole.
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. 1-3, the present utility model provides a technical solution: a semi-automatic steering wheel mold for improved vent structure, comprising: the positioning device comprises a positioning template 1, wherein the bottom of the positioning template 1 is connected with a first positioning gasket 3, and the bottom of the first positioning gasket 3 is connected with a fixed die template 4;
The die bottom plate 6, the top of the die bottom plate 6 is connected with a second positioning washer 14, and the top of the second positioning washer 14 is connected with a movable die template 5;
The mold comprises a cavity 8, wherein the cavity 8 is respectively arranged in a movable mold plate 5 and a fixed mold plate 4, and one sides of the fixed mold plate 4 and the movable mold plate 5 are respectively connected with a cooling water pipe 11;
The aluminum alloy framework insert 19 is arranged in the movable die template 5, and a positioning column 22 is arranged on one side of the aluminum alloy framework insert 19 in the movable die template 5;
The exhaust hole 24 is formed in the fixed die template 4;
One side of the movable mold plate 5 and one side of the fixed mold plate 4 are provided with feeding mechanisms, and liquid is discharged into the first glue inlet 17 and the second glue inlet 12 through a sprue runner system 16 of the feeding mechanisms.
The first glue inlet 17 is formed in the surface of the movable mold plate 5, the second glue inlet 12 is formed in the surface of the fixed mold plate 4, one sides of the first glue inlet 17 and the second glue inlet 12 are respectively connected with a raw material sprue 23, and the sprue runner system 16 is connected with the raw material sprue 23.
The surface of movable mould template 5 is connected with guide pillar 18, guide pin bushing 9 that is used for pegging graft guide pillar 18 has been seted up to the surface of cover half template 4, and guide pillar 18 inserts to the inside of guide pin bushing 9 to spacing the removal of movable mould template 5, surface one side of cover half template 4 is connected with waste package 10, the internal connection of movable mould template 5 has and is used for the material needle 13 that draws out waste package 10, draws material needle 13 and is convenient for draw out the waste package 10 that produces, thereby discharges waste package 10.
The cavity 8 of the movable mould plate 5 is internally connected with a product body 20.
The surface one side of cover half template 4 is connected with first magnet 7, the internal connection of movable mould template 5 has the second magnet 21 corresponding with first magnet 7, and when first magnet 7 and second magnet 21 were mutually inhaled, alright let to increase certain fastness between movable mould template 5 and the cover half template 4.
The side of location template 1 is connected with installation locating piece 2, and installation locating piece 2 is convenient for fix a position template 1, the surface of mould bottom plate 6 and location template 1 is connected with cooling water joint 15 respectively, cooling water joint 15 links to each other with condenser tube 11, and cooling water joint 15 is convenient for let the water source get into the inside of condenser tube 11, cools down movable mould template 5 and cover half template 4.
Specifically, in use, the liquid is input to the raw material injection port 23 between the movable mold plate 5 and the fixed mold plate 4 by using the injection port runner system 16, and the raw material injection port 23 is designed to be in a shape conforming to the flowing characteristic of the material liquid, so that the material liquid flows to the surfaces of the first glue inlet 17 and the second glue inlet 12 respectively, then flows to the cavity 8 between the movable mold plate 5 and the fixed mold plate 4, the material liquid firstly fills the bottom of the cavity 8, then the material liquid gradually fills upwards in the cavity 8, and thus the air in the cavity 8 naturally moves upwards, and the air is discharged from the exhaust hole 24 on the surface of the fixed mold plate 4, so that waste products in the cavity 8 are reduced, and the quality of the product body 20 is improved.
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 therein 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. A semi-automatic steering wheel mold with improved vent structure, comprising:
The positioning device comprises a positioning template (1), wherein the bottom of the positioning template (1) is connected with a first positioning gasket (3), and the bottom of the first positioning gasket (3) is connected with a fixed die template (4);
The die comprises a die bottom plate (6), wherein the top of the die bottom plate (6) is connected with a second positioning gasket (14), and the top of the second positioning gasket (14) is connected with a movable die template (5);
The mold comprises a mold cavity (8), wherein the mold cavity (8) is respectively arranged in a movable mold plate (5) and a fixed mold plate (4), and one sides of the fixed mold plate (4) and the movable mold plate (5) are respectively connected with a cooling water pipe (11);
The aluminum alloy framework insert (19), the aluminum alloy framework insert (19) is arranged in the movable die template (5), and a positioning column (22) is arranged on one side of the aluminum alloy framework insert (19) in the movable die template (5);
The exhaust hole (24) is formed in the fixed die template (4);
One sides of the movable die template (5) and the fixed die template (4) are provided with feeding mechanisms, and liquid is discharged into the first glue inlet (17) and the second glue inlet (12) through the feeding mechanism sprue runner system (16).
2. The semi-automatic steering wheel mold with the improved exhaust groove structure according to claim 1, wherein the first glue inlet (17) is formed in the surface of the movable mold plate (5), the second glue inlet (12) is formed in the surface of the fixed mold plate (4), one sides of the first glue inlet (17) and the second glue inlet (12) are respectively connected with a raw material injection port (23), and the injection port runner system (16) is connected with the raw material injection port (23).
3. The semi-automatic steering wheel die with the improved exhaust groove structure according to claim 1, wherein a guide pillar (18) is connected to the surface of the movable die template (5), a guide sleeve (9) for inserting the guide pillar (18) is arranged on the surface of the fixed die template (4), a waste bag (10) is connected to one side of the surface of the fixed die template (4), and a material pulling needle (13) for pulling out the waste bag (10) is connected to the inner part of the movable die template (5).
4. A semi-automatic steering wheel mould with improved vent structure according to claim 1, wherein the cavity (8) of the movable mould plate (5) is internally connected with a product body (20).
5. The semi-automatic steering wheel mold with the improved exhaust groove structure according to claim 1, wherein a first magnet (7) is connected to one side of the surface of the fixed mold plate (4), and a second magnet (21) corresponding to the first magnet (7) is connected to the inside of the movable mold plate (5).
6. The semi-automatic steering wheel mold with the improved exhaust groove structure according to claim 1, wherein the side edge of the positioning mold plate (1) is connected with a mounting positioning block (2), the surfaces of the mold bottom plate (6) and the positioning mold plate (1) are respectively connected with a cooling water joint (15), and the cooling water joints (15) are connected with a cooling water pipe (11).
CN202323108041.6U 2023-11-17 2023-11-17 Semi-automatic steering wheel mould with improved exhaust groove structure Active CN221136741U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323108041.6U CN221136741U (en) 2023-11-17 2023-11-17 Semi-automatic steering wheel mould with improved exhaust groove structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323108041.6U CN221136741U (en) 2023-11-17 2023-11-17 Semi-automatic steering wheel mould with improved exhaust groove structure

Publications (1)

Publication Number Publication Date
CN221136741U true CN221136741U (en) 2024-06-14

Family

ID=91384072

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323108041.6U Active CN221136741U (en) 2023-11-17 2023-11-17 Semi-automatic steering wheel mould with improved exhaust groove structure

Country Status (1)

Country Link
CN (1) CN221136741U (en)

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