CN217704430U - Slider combined type injection molding structure - Google Patents
Slider combined type injection molding structure Download PDFInfo
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- CN217704430U CN217704430U CN202122320312.9U CN202122320312U CN217704430U CN 217704430 U CN217704430 U CN 217704430U CN 202122320312 U CN202122320312 U CN 202122320312U CN 217704430 U CN217704430 U CN 217704430U
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Abstract
The utility model discloses a slider combined type injection molding structure, which comprises a substrate, a spiral part corresponding block arranged on the substrate, an accommodating cavity corresponding block arranged on the substrate, a cavity outer shell part corresponding block arranged on the spiral part corresponding block, and a bottom corresponding body arranged on the cavity outer shell part corresponding block and matched with the cavity outer shell part corresponding block to form the bottom of a main body; the spiral part corresponding block is formed by splicing a plurality of splicing blocks, an external thread corresponding part is arranged on each splicing block, and the splicing of the external thread corresponding parts forms a complete spiral part corresponding shell to form a sliding block splicing die cavity structure.
Description
Technical Field
The utility model relates to an injection moulding production technology, it is specific, its show a slider combination formula injection moulding structure.
Background
The product 100 shown in fig. 2 comprises a main body 101, wherein the main body 101 is a cylindrical container with a bamboo hat-shaped container bottom, an external thread part 102 for fixing is arranged on the top of the main body 101, and an insertion block part is arranged above the external thread part 102;
the preparation of product 100 presents the following difficulties:
1) The number of the external thread parts 102 is set by adopting a stripping structure, and a column with a large counterweight is required to perform slotting and rotation setting, so that the overall structure of the die is large, and the production cost is high;
2) The inner accommodating space of the main body 101 is long and thin, the bottom of the main body is in a bamboo hat shape, and after a subsequent product is formed, manual assistance is needed for demoulding, so that production resources are seriously occupied;
the design of a molding mode set by the combination of the sliding block and the external thread part can effectively meet the requirement of the preparation of the product 100.
Therefore, it is necessary to provide a slider-combined injection molding structure to achieve the above objects.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a slider combination formula injection moulding structure.
The technical scheme is as follows:
a slider combined injection molding structure comprises a substrate, a spiral part corresponding block arranged on the substrate, a cavity shell part corresponding block arranged on the spiral part corresponding block, and a bottom corresponding body which is arranged on the cavity shell part corresponding block and is matched with the cavity shell part corresponding block to form the bottom of a main body;
the spiral part corresponding block is formed by splicing a plurality of splicing blocks, an external thread corresponding part is arranged on each splicing block, and the plurality of external thread corresponding parts are spliced to form a complete spiral part corresponding shell to form a sliding block splicing die cavity structure.
Furthermore, the number of the splicing blocks is two.
Furthermore, a fixing block is arranged on the outer side of each splicing block, one side of each fixing block correspondingly supports the splicing blocks in a propping mode, and the other side of each fixing block is an inclined pressing slope matched with the die carrier for use.
Furthermore, the fixed block is fixedly connected with the die carrier through an oblique fixed rod.
Furthermore, the corresponding block of the containing cavity is provided with a corresponding groove of the containing cavity shell corresponding to the outer wall of the main body.
Furthermore, the corresponding groove of the outer shell of the containing cavity, the corresponding outer shell of the whole spiral part and the corresponding body at the bottom are matched to form a complete die cavity, so that a spliced combined die cavity structure is formed.
Furthermore, a lifting driving device is further arranged on the base plate, and the driving device is connected with a cavity column corresponding to the containing cavity, which is matched with a corresponding groove of the shell of the containing cavity, a corresponding shell of the whole spiral part and a corresponding body at the bottom for use.
Further, the lifting driving device is composed of a cylinder.
Furthermore, a plurality of corresponding grooves for the cavity shells are uniformly arranged on the corresponding block of each cavity shell part.
Compared with the prior art, the utility model discloses a plurality of external screw threads correspond the concatenation of portion and form complete helical portion and correspond the shell, form slider concatenation die cavity structure, simple structure reduces the production resources who rotates the deciduate formula structure and occupies, guarantees product preparation efficiency and optimizes product manufacturing cost.
Drawings
Fig. 1 is one of the schematic structural diagrams of the present invention.
Fig. 2 is a second schematic structural diagram of the present invention.
Fig. 3 is a third schematic structural diagram of the present invention.
Detailed Description
Example (b):
referring to fig. 1-3, this embodiment shows a slider-combined injection molding structure, which includes a substrate 1, a spiral part corresponding block 2 disposed on the substrate 1, a cavity corresponding block 3 disposed on the substrate 1, a cavity housing part corresponding block 4 disposed on the spiral part corresponding block 2, and a bottom corresponding body 5 disposed on the cavity housing part corresponding block 4 and cooperating with the cavity housing part corresponding block 4 to form the bottom of a main body 101;
the spiral part corresponding block 2 is formed by splicing a plurality of splicing blocks 21, an external thread corresponding part 22 is arranged on each splicing block 21, and the plurality of external thread corresponding parts 22 are spliced to form a complete spiral part 102 corresponding shell to form a sliding block splicing die cavity structure.
The number of the tiles 21 is two.
The outside of the splicing block 21 is provided with a fixing block 6, one side of the fixing block 6 correspondingly supports the splicing block 21, and the other side of the fixing block is an oblique pressing slope 61 matched with the die carrier for use.
The fixed block 6 is also fixedly connected with the die carrier through an oblique fixed rod 7.
The corresponding block 3 of the containing cavity is provided with a corresponding groove of the shell of the containing cavity corresponding to the outer wall of the main body.
The corresponding groove of the outer shell of the containing cavity, the corresponding outer shell of the whole spiral part and the corresponding body of the bottom are matched to form a complete die cavity, so that a spliced combined die cavity structure is formed.
Still be provided with lift drive 8 on the base plate 1, lift drive 8 connects and holds chamber corresponding block 3, holds chamber corresponding block 3 and includes and corresponds the groove, whole spiral portion with holding chamber shell and correspond the shell and hold the chamber corresponding cavity post 31 that the body cooperation was used is corresponded to in the bottom.
The lifting drive device 8 is constituted by a cylinder.
A plurality of corresponding grooves for the cavity shell are uniformly arranged on each corresponding block 4 for the cavity shell.
Compared with the prior art, the utility model discloses a plurality of external screw threads correspond the concatenation of portion and form complete helical portion and correspond the shell, form slider concatenation die cavity structure, simple structure reduces the production resources who rotates the deciduate formula structure and occupies, guarantees product preparation efficiency and optimizes product manufacturing cost.
What has been described above is merely some embodiments of the present invention. For those skilled in the art, without departing from the inventive concept, several modifications and improvements can be made, which are within the scope of the invention.
Claims (9)
1. The utility model provides a modular injection moulding structure of slider which characterized in that: the bottom corresponding body is arranged on the corresponding block of the cavity shell part and matched with the corresponding block of the cavity shell part to form the bottom of the main body;
the spiral part corresponding block is formed by splicing a plurality of splicing blocks, an external thread corresponding part is arranged on each splicing block, and the splicing of the external thread corresponding parts forms a complete spiral part corresponding shell to form a sliding block splicing die cavity structure.
2. The slider combined injection molding structure of claim 1, wherein: the number of the splicing blocks is two.
3. The slider combined injection molding structure of claim 2, wherein: the splice block outside is provided with the fixed block, and splice block is held in the corresponding top of fixed block one side, and the slope is held for the slant pressure of using with the die carrier cooperation to the opposite side.
4. The slider combined injection molding structure of claim 3, wherein: the fixed block is also fixedly connected with the die carrier through an oblique fixed rod.
5. The slider combined injection molding structure of claim 4, wherein: the corresponding block of the containing cavity is provided with a corresponding groove of the containing cavity shell corresponding to the outer wall of the main body.
6. The slider combined injection molding structure of claim 5, wherein: the corresponding groove of the outer shell of the containing cavity, the corresponding outer shell of the whole spiral part and the corresponding body of the bottom are matched to form a complete die cavity, so that a spliced combined die cavity structure is formed.
7. The slider combined injection molding structure of claim 6, wherein: the base plate is also provided with a lifting driving device, and the driving device is connected with a cavity column corresponding to the holding cavity, which is matched with the corresponding groove of the outer shell of the holding cavity, the corresponding outer shell of the whole spiral part and the corresponding body at the bottom for use.
8. The slider combined injection molding structure of claim 7, wherein: the lifting driving device is composed of a cylinder.
9. The slider combined injection molding structure of claim 8, wherein: a plurality of corresponding grooves for the cavity shell are uniformly arranged on the corresponding block of the shell part of each cavity.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122320312.9U CN217704430U (en) | 2021-09-24 | 2021-09-24 | Slider combined type injection molding structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122320312.9U CN217704430U (en) | 2021-09-24 | 2021-09-24 | Slider combined type injection molding structure |
Publications (1)
Publication Number | Publication Date |
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CN217704430U true CN217704430U (en) | 2022-11-01 |
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Family Applications (1)
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CN202122320312.9U Active CN217704430U (en) | 2021-09-24 | 2021-09-24 | Slider combined type injection molding structure |
Country Status (1)
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CN (1) | CN217704430U (en) |
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2021
- 2021-09-24 CN CN202122320312.9U patent/CN217704430U/en active Active
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