CN209666158U - The small line position guiding mechanism of injection mold - Google Patents

The small line position guiding mechanism of injection mold Download PDF

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Publication number
CN209666158U
CN209666158U CN201920244343.0U CN201920244343U CN209666158U CN 209666158 U CN209666158 U CN 209666158U CN 201920244343 U CN201920244343 U CN 201920244343U CN 209666158 U CN209666158 U CN 209666158U
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CN
China
Prior art keywords
sliding block
cover half
dynamic model
block
fuse
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Active
Application number
CN201920244343.0U
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Chinese (zh)
Inventor
谢陈树
李永博
戴志生
陈进财
陈旭阳
李凡承
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xiamen xinshangyou Technology Co., Ltd
Original Assignee
Xiamen Association Mould Co Ltd
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Priority to CN201920244343.0U priority Critical patent/CN209666158U/en
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  • Moulds For Moulding Plastics Or The Like (AREA)
  • Injection Moulding Of Plastics Or The Like (AREA)

Abstract

The utility model discloses a kind of small line position guiding mechanisms of injection mold, including solid plate, moving template, sliding block cylinder, cover half sliding block, dynamic model sliding block, link block, cover half brake shoes, dynamic model brake shoes, cover half pushing block, dynamic model pushing block, sliding block fuse, air cylinder for core;The piston rod rod end of the air cylinder for core is connect with the outer end of sliding block fuse; the piston rod rod end of sliding block cylinder is connect with cover half sliding block; cover half sliding block is connect by link block with dynamic model sliding block; the inner end of fixed and moving mode slider is connect with fixed and moving mould brake shoes respectively; fixed and moving mould pushing block is slipped respectively in the oblique sliding slot of fixed and moving mould brake shoes, two kinds of stations that the lower end of fixed and moving mould pushing block stretches to type chamber and can be formed against or be detached from sliding block fuse.Due to the utility model using sliding block cylinder straight line core pulling push pushing block move, efficiently solve the problems, such as because sliding block fuse it is too long it is meticulous caused by product concentricity deviation and wall unevenness.

Description

The small line position guiding mechanism of injection mold
Technical field
The utility model relates to a kind of injection molds, more particularly to a kind of small line position guiding mechanism of injection mold.
Background technique
Plastics injection mould is the tool for producing plastic products, very widely used.In plastic products injection molding, certain There is deep hole in the inside of a little plastic products, needs to carry out core pulling, since the sliding block fuse for forming deep hole is too long meticulous, is easy to lead Product Concentricity tolerance is caused, product causes the unevenness of wall thickness.
Utility model content
The purpose of this utility model is to provide a kind of small line position guiding mechanisms of injection mold that product concentricity is high.
To achieve the above object, the technical solution of the utility model is:
The utility model is a kind of small line position guiding mechanism of injection mold, including solid plate, moving template, sliding block cylinder, fixed Mode slider, dynamic model sliding block, link block, cover half brake shoes, dynamic model brake shoes, cover half pushing block, dynamic model pushing block, sliding block fuse, fuse Cylinder;
The solid plate is opposite with moving template and sets;The cylinder body of the air cylinder for core is fixed on the right side of moving template, The piston rod rod end of air cylinder for core is connect with the outer end of sliding block fuse, and type chamber is protruded into the inner end of sliding block fuse;The sliding block gas The cylinder body of cylinder is fixed on the left side of solid plate, and the piston rod rod end of sliding block cylinder is connect with the outer end of cover half sliding block, cover half sliding block It slips on solid plate and the inner end of cover half sliding block is connect with cover half brake shoes, the upper end of cover half pushing block is slipped in cover half brake shoes Oblique sliding slot in, the lower end of cover half pushing block stretch to type chamber and can with sliding block fuse formed against or be detached from two kinds of stations;Institute The cover half sliding block stated is connect by link block with the outer end of dynamic model sliding block, and dynamic model sliding block slips on moving template and dynamic model sliding block Inner end is connect with dynamic model brake shoes, and the lower end of dynamic model pushing block is slipped in the oblique sliding slot of dynamic model brake shoes, dynamic model pushing block it is upper Two kinds of stations that end stretches to type chamber and can be formed against or be detached from sliding block fuse.
After adopting the above scheme, since the utility model includes solid plate, moving template, sliding block cylinder, cover half sliding block, dynamic model Sliding block, link block, cover half brake shoes, dynamic model brake shoes, cover half pushing block, dynamic model pushing block, sliding block fuse, air cylinder for core;It is molding When injection molding, when plastic cement is flowed to close to cover half pushing block and dynamic model pushing block position, the push-and-pull action for passing through sliding block cylinder is generated Power come band active and inactive mold pushing block and dynamic model pushing block move, thus make originally embrace sliding block fuse cover half pushing block and dynamic model pushing block fortune Move to connect efficiently solve along product surface because sliding block fuse it is too long it is meticulous caused by the deviation of product concentricity, wall thickness Uneven problem.
The utility model is further described in the following with reference to the drawings and specific embodiments.
Detailed description of the invention
Fig. 1 is molding cross-sectional view of the utility model pushing block against sliding block fuse;
Fig. 2 is the molding cross-sectional view that the utility model pushing block is detached from sliding block fuse;
Fig. 3 is the die sinking cross-sectional view of the utility model.
Specific embodiment
As shown in Figure 1-Figure 3, the utility model is a kind of small line position guiding mechanism of injection mold, including solid plate 1, dynamic model Plate 2, sliding block cylinder 3, cover half sliding block 4, dynamic model sliding block 5, link block 6, cover half brake shoes 7, dynamic model brake shoes 8, cover half pushing block 9, Dynamic model pushing block 10, sliding block fuse 20, air cylinder for core 30.
The solid plate 1 is opposite with moving template 2 and sets;The cylinder body of the air cylinder for core 30 is fixed on moving template 2 The piston rod rod end on right side, air cylinder for core 30 is connect with the outer end of sliding block fuse 20, and type chamber is protruded into the inner end of sliding block fuse 20.
The cylinder body of the sliding block cylinder 3 is fixed on the left side of solid plate 1, the piston rod rod end and cover half of sliding block cylinder 3 The outer end of sliding block 4 connects, and cover half sliding block 4 slips on solid plate 1 and the inner end of cover half sliding block 4 is connect with cover half brake shoes 7, fixed The upper end of mould pushing block 9 is slipped in the oblique sliding slot 71 of cover half brake shoes 7, and the lower end of cover half pushing block 9 stretches to type chamber and can be with cunning Block fuse 20 forms against (as shown in Figure 1) or is detached from two kinds of stations of (as shown in Figure 2).
The cover half sliding block 4 is connect by link block 6 with the outer end of dynamic model sliding block 5, and dynamic model sliding block 5 is slipped in moving template On the 2 and inner end of dynamic model sliding block 5 is connect with dynamic model brake shoes 8, and the lower end of dynamic model pushing block 10 is slipped in the oblique of dynamic model brake shoes 8 In sliding slot 81, the upper end of dynamic model pushing block 10 stretches to type chamber and can be formed with sliding block fuse 20 against (as shown in Figure 1) or be detached from (such as Shown in Fig. 2) two kinds of stations.
Working principle of the utility model is:
In mold-closing injection, when plastic cement is flowed to close to cover half pushing block 9 and dynamic model 10 position of pushing block, pass through sliding block gas The power that the push-and-pull action of cylinder 3 generates carrys out band active and inactive mold pushing block 9 and dynamic model pushing block 10 moves, to make to embrace sliding block fuse 20 originally Cover half pushing block 9 and dynamic model pushing block 10 move to and connect along product surface.
The above, only the utility model preferred embodiment, therefore the utility model implementation cannot be limited with this Range should still belong to this reality that is, according to equivalent changes and modifications made by present utility model application the scope of the patents and description In the range of being covered with new patent.

Claims (1)

1. a kind of small line position guiding mechanism of injection mold characterized by comprising solid plate, moving template, sliding block cylinder, cover half Sliding block, dynamic model sliding block, link block, cover half brake shoes, dynamic model brake shoes, cover half pushing block, dynamic model pushing block, sliding block fuse, fuse gas Cylinder;
The solid plate is opposite with moving template and sets;The cylinder body of the air cylinder for core is fixed on the right side of moving template, fuse The piston rod rod end of cylinder is connect with the outer end of sliding block fuse, and type chamber is protruded into the inner end of sliding block fuse;The sliding block cylinder Cylinder body is fixed on the left side of solid plate, and the piston rod rod end of sliding block cylinder is connect with the outer end of cover half sliding block, and cover half sliding block is sliding On solid plate and the inner end of cover half sliding block is connect with cover half brake shoes, and the upper end of cover half pushing block is slipped in the oblique of cover half brake shoes Into sliding slot, the lower end of cover half pushing block stretch to type chamber and can with sliding block fuse formed against or be detached from two kinds of stations;Described Cover half sliding block is connect by link block with the outer end of dynamic model sliding block, and dynamic model sliding block slips on moving template and the inner end of dynamic model sliding block It is connect with dynamic model brake shoes, the lower end of dynamic model pushing block is slipped in the oblique sliding slot of dynamic model brake shoes, and the upper end of dynamic model pushing block is stretched To type chamber and can with sliding block fuse formed against or be detached from two kinds of stations.
CN201920244343.0U 2019-02-26 2019-02-26 The small line position guiding mechanism of injection mold Active CN209666158U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920244343.0U CN209666158U (en) 2019-02-26 2019-02-26 The small line position guiding mechanism of injection mold

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920244343.0U CN209666158U (en) 2019-02-26 2019-02-26 The small line position guiding mechanism of injection mold

Publications (1)

Publication Number Publication Date
CN209666158U true CN209666158U (en) 2019-11-22

Family

ID=68569811

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920244343.0U Active CN209666158U (en) 2019-02-26 2019-02-26 The small line position guiding mechanism of injection mold

Country Status (1)

Country Link
CN (1) CN209666158U (en)

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Effective date of registration: 20200312

Address after: 361000 unit 203, No.22, Xianghong Road, industrial zone, torch high tech Zone (Xiang'an), Xiamen City, Fujian Province

Patentee after: Xiamen xinshangyou Technology Co., Ltd

Address before: 361000 Xiamen, Fujian torch high tech Zone (Xiangan) Industrial Zone, No. 22, No. 1-4, Southeast of Xiang Hong Road.

Patentee before: Xiamen Association mould Co., Ltd.