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Research on effects of injection process parameters on the molding process for ultra-thin wall plastic parts

机译:注塑工艺参数对超薄壁塑料零件成型工艺影响的研究

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摘要

Thin-wall injection molding has a lot of obvious advantages such as saving materials, reducing production costs, weights and shape sizes, etc., and accelerates the rapid development of electronic productions (mobile phones, for instance). Especially ultra-thin wall plastic parts have great application potentialities on MEMS. However, the injection molding process becomes more difficult and complicated with the reducing of the part thickness, systematic investigation is lacking in molding characteristics for ultra-thin wall plastic parts. An injection mold in which ultra-thin wall plastic parts can be molded is designed and manufactured. Using the orthogonal experiment method (Taguchi method) and numerical simulation, the influence of different process parameters (injection rate, injection pressure, melt temperature, metering size and part thickness) on the molding process for ultra-thin wall plastic parts is discussed. The results show that part thickness is the decisive parameter to the molding, metering size and injection rate are the principal factors in molding process, accelerating injection rate can bring a great increase in the filling ratio. Melt temperature and injection pressure are the secondary factors, but higher melt temperature and injection pressure are also necessary in molding process.
机译:薄壁注塑成型具有许多明显的优势,例如节省材料,降低生产成本,减轻重量和形状尺寸等,并加速了电子产品(例如手机)的快速发展。尤其是超薄壁塑料零件在MEMS上具有巨大的应用潜力。但是,随着零件厚度的减小,注射成型工艺变得更加困难和复杂,对于超薄壁塑料零件的成型特性缺乏系统的研究。设计并制造可以在其中模制超薄壁塑料部件的注塑模具。利用正交试验法(田口法)和数值模拟,讨论了不同工艺参数(注射速率,注射压力,熔体温度,计量尺寸和零件厚度)对超薄壁塑料零件成型过程的影响。结果表明,零件厚度是成型的决定性参数,计量尺寸和注射速率是成型工艺的主要因素,加快注射速率可以极大地提高填充率。熔体温度和注射压力是次要因素,但是在成型过程中也需要更高的熔体温度和注射压力。

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