最终用脊髓灰质炎材料模拟TERM-MECHANICAL病毒,然后用脊髓灰质炎鱼进口方法

М. П. Рудь, Олександр Похил, С. В. Заболотній, Анатолій Солтус
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引用次数: 0

摘要

与传统技术相比,功能部件的3D打印具有显著优势,因为它能够制造具有复杂形状的零件,而无需生产专用设备。然而,有许多物体的几何形状,需要使用3D打印进行额外的研究。薄壁部件就是其中之一。本文建立了薄壁产品三维打印过程导热系数的数学模型,以确定最佳工艺参数,从而使产品的热变形最小,层间粘附力最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
КІНЦЕВОЕЛЕМЕНТНЕ МОДЕЛЮВАННЯ ТЕРМОМЕХАНІЧНОЇ ПОВЕДІНКИ ВИРОБІВ З ПОЛІМЕРНИХ МАТЕРІАЛІВ ПРИ ЇХ ВИГОТОВЛЕННІ МЕТОДОМ ПОШАРОВОГО НАПЛАВЛЕННЯ
The 3D printing of functional components has significant advantages over conventional technologies due to the ability to fabricate parts with complex shapes without the need to produce specialized equipment. However, there are a number of geometric forms of objects, which require extra research, using 3D printing. Thin-walled parts are one of these objects. In the paper the mathematical model of thermal conductivity of the process of 3D printing of thin-walled products is constructed in order to determine the optimal parameters of technological process, which provide the minimum thermal deformation of the product and the maximum adhesion of layers.
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