The Use of 3D Printed Sand Molds and Cores in the Castings Production

Dawid Halejcio, K. Major-Gabryś
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Abstract

As a part of this work, an analysis of the current state of knowledge regarding the use of additive technology - binder jetting in the production of castings was made. The binder jetting (so-called 3D printing) has become the leading method of sand mold and core production. Within this paper types of molding and core sands with organic and inorganic binders that are and can be used in technology were analyzed. The need to carry out works aimed at developing pro-ecological molding / core sands with inorganic binders and organic binders with reduced harmfulness to the environment dedicated to binder jetting technology was noticed. The influence of technology parameters on the properties of molding / core sands and the properties of cast components was analyzed. It was shown that thanks to the unlimited shapes of the systems obtained with the use of additive technologies, it is possible to influence the rate of heat dissipation through the mold, which positively effects the process of solidification and crystallization of the castings.
在铸件生产中使用 3D 打印砂模和型芯
作为这项工作的一部分,我们分析了有关在铸件生产中使用添加剂技术--粘合剂喷射的知识现状。粘合剂喷射(所谓的 3D 打印)已成为砂型和型芯生产的主要方法。本文分析了技术中使用和可以使用的带有有机和无机粘结剂的造型砂和芯砂类型。我们注意到,有必要开展工作,开发使用无机粘结剂和有机粘结剂的有利于生态的造型砂/芯砂,减少粘结剂喷射技术对环境的危害。分析了技术参数对造型/芯砂性能和铸件性能的影响。结果表明,由于使用添加剂技术获得的系统形状不受限制,因此有可能影响模具的散热速度,从而对铸件的凝固和结晶过程产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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