中国塑料 ›› 2020, Vol. 34 ›› Issue (7): 97-103.DOI: 10.19491/j.issn.1001-9278.2020.07.016

• 机械与模具 • 上一篇    下一篇

微型离心泵泵叶三层式滑块机构三板模具设计

杨秋合, 杨安()   

  1. 杭职职业技术学院友嘉机电学院,杭州 310018
  • 收稿日期:2019-12-02 出版日期:2020-07-26 发布日期:2020-07-26

Design of Three⁃Plate Mold with Three⁃Layer Slider Mechanism for Micro Centrifugal Pump

Qiuhe YANG, An YANG()   

  1. Fair Friend Institute of Electromechanics, Hangzhou Vocational and Technical College, Hangzhou 310018, China
  • Received:2019-12-02 Online:2020-07-26 Published:2020-07-26
  • Contact: An YANG E-mail:438904172@qq.com

摘要:

针对微型离心泵泵叶塑件成型模具设计困难的问题,设计了一种改进型三板点浇口模以用于该泵叶塑件的成型。塑件的浇注成型应用3个点浇口来进行平衡注塑,以控制塑件成型变形。模腔布局为1模1腔。针对塑件叶槽区域脱模困难问题,设计了一种3层3次复合抽芯脱模用于难脱模叶槽部位特征的脱模,机构中,将叶槽部位特征的成型块分割成2层成型件后,机构的第一次抽芯动作由弹簧驱动上层滑块实施上层成型块的抽芯;机构的第二次抽芯由斜导柱驱动实施下层成型块的抽芯;最后,由弯销驱动基座滑块带动2个侧抽芯滑块向外抽芯,以让出塑件完全顶出脱模的运动空间。第二次抽芯、第三次抽芯的驱动动力分别由模架模板的第三次开模、第四次开模打开来进行驱动。塑件的最终脱模由油缸驱动顶针板及顶杆顶出而实现塑件的完全脱模。基于塑件、流道脱模及抽芯机构的动作需要,将典型三板点浇口模架改进为四板4次开模点浇口,从而能使塑件、流道废料及驱动滑块机构分次按序来实施抽芯脱模。模具脱模机构动作设置合理,机构结构设计巧妙,模具整体工作可靠,有较好的设计参考价值。

关键词: 多层式抽芯, 三板模, 结构改进, 机构设计, 注塑模具

Abstract:

In view of the difficulties in the design of the forming mold for the vane plastic part of the micro centrifugal pump, an improved three?plate point?gate mold was designed for the forming of the vane plastic part of the pump. In order to control the deformation of the plastic part, a three?point gate was adopted to balance the injection molding. The mold cavity was arranged in one mold and one cavity. In view of the difficulty of demolding in the groove area of plastic parts, a three?layer and three?time composite core pulling demolding system was designed to demold the characteristic module of the groove part. In this mechanism, after the forming block with the characteristic module of the groove part was divided into two layers of forming parts, the first core pulling action of the mechanism was driven by the spring and the upper slider to implement the core pulling of the upper forming block, and then the second core pulling action of the mechanism was driven by the inclined guide pillar. Finally, the two side core pulling sliders were driven by the base slide block driven by the bending pin to pull out the core so as to make the moving space of the plastic part completely ejected from the demolding. The driving forces of the second core pulling and the third core pulling were driven by the third and fourth mold opening of the mold base template, respectively. The final demolding of the plastic part was realized by the cylinder driving the ejector pin plate and the ejector rod. Based on the action needs of the plastic part, runner demolding and core pulling mechanism, the typical three?plate point?gate mold base was modified to a four?plate four?time opening point gate. In this case, the core pulling demolding could be carried out by the plastic part, runner waste and driving slider mechanism in sequence. The action setting of mold demolding mechanism is found to be reasonable, the design of mechanism structure is ingenious, and the overall work of mold is reliable, which can become a good reference for mold design.

Key words: multi layer core pulling, three plate mold, structure improvement, mechanism design, injection mold

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