Study of viscoelastic properties of parts manufactured, using 3D-printing methods with various hardening methods of structure

I. Dolgolenko, I. S. Nefyolov, A. Konoplin
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Abstract

When manufacturing parts, it is important to consider the conditions in which they will operate and the loads that will effect on them. The study of the impact strength of parts with a cellular structure, manufactured, using a 3D-printer, and strengthened by the introduction of reinforcing components (component strengthening) into them is discussed. A comparison of the results obtained with different types of a filler, as well as an investigation of the dependence of the impact strength on the type of a filler and the percentage of filling with the main material are presented.
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研究使用 3D 打印方法和各种硬化结构方法制造的部件的粘弹性能
在制造零件时,必须考虑到零件的工作条件和对其产生的载荷。本文讨论了对使用 3D 打印机制造的蜂窝结构零件的冲击强度研究,以及通过引入增强部件(部件增强)对其进行强化的情况。报告比较了使用不同类型填充物获得的结果,并研究了冲击强度与填充物类型和主要材料填充比例的关系。
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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Prospects for use of dispersed-filled composites in field repair of body parts of ground transportation and technological facilities (Review) Technological features of manufacture of parts with threaded surfaces by 3D-printing methods for operation under various climatic conditions Study of viscoelastic properties of parts manufactured, using 3D-printing methods with various hardening methods of structure Determination of effect of metal surface preparation on resistance of epoxy-sand coating to aggressive media Investigation of ways to strengthen filling structure of parts printed by 3D-printing methods
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