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首页> 外文期刊>International journal of automation technology >Low-Energy Injection Molding Process by a Mold with Permeability Fabricated by Additive Manufacturing
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Low-Energy Injection Molding Process by a Mold with Permeability Fabricated by Additive Manufacturing

机译:增材制造的具有渗透性的模具的低能注塑工艺

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This paper describes the improvement of flow length and realization of low-energy molding in the injection molding process, by focusing on the injection mold with permeability fabricated by additive manufacturing. The mold is equipped with a sintered body with permeability, which is used as a mold insert. The inside of the sintered mold insert is structured so that the permeability should not be degraded, even if the thickness is increased. With respect to the effect of the sintered mold insert with permeability, the flow length and low-energy molding are evaluated by the filling rate of a thin section of moldings, and the electric energy of the injection molding machine that drives the screw in the injection process. Through fundamental experiments, the mold using the sintered mold insert with permeability was found to improve the flow length. The electric energy of the injection molding machine in the injection process is reduced by 6%-13% compared with the sintered mold insert without permeability.
机译:本文重点介绍了通过增材制造制造的具有渗透性的注塑模具,从而改善了注塑过程中的流动长度并实现了低能耗模塑。模具配备有具有渗透性的烧结体,该烧结体用作模具嵌件。烧结模具插入物的内部被构造成即使增加厚度也不会降低渗透性。关于烧结模具嵌件的渗透性效果,通过薄型件的填充率以及驱动注射成型中螺杆的注射成型机的电能来评估流动长度和低能耗成型处理。通过基础实验,发现使用具有渗透性的烧结模具嵌件的模具可以改善流动长度。与没有渗透性的烧结模具嵌件相比,注射成型机在注射过程中的电能降低了6%-13%。

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