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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Modelling of the temperature and residual stress fields during 3D printing of polymer composites
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Modelling of the temperature and residual stress fields during 3D printing of polymer composites

机译:聚合物复合材料三维印刷期间温度和残余应力场的建模

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摘要

Fused deposition modeling (FDM) based 3D printing) technique involves the fabrication of polymer parts using a thermal process which may induce residual stress, stress concentration, distortion, and the delamination between layers. This paper aims to investigate this defect on ASTM D638 polymer composite specimens. For that purpose, a 3D thermo-mechanical model that simulates the process of FDM capable of calculating stresses and temperature gradients during the additive manufacturing of polymer composites was developed. The 3D model considers the temperature-dependent physical properties of composites which consist of density, thermal conductivity, thermal expansion coefficient, yield stress, and Young's modulus. The simulated process includes the heating, solidification, and cooling phases. Different printed parts were analyzed and compared. The stresses vary continuously because of the temperature gradient occurring through the composite thickness. It appears that the concentration of stresses is higher if the temperatures during printing vary rapidly. Those stresses can favor the delamination between the layers of the printed part and the residual thermal stresses can cause an offset to the failure envelope.
机译:熔融沉积成型(FDM)基于3D印刷)技术涉及的使用热方法,该方法可引起残余应力,应力集中,变形,和层间剥离聚合物部件的制造。本文旨在研究ASTM D638聚合物复合标本对该缺陷。为此目的,开发了一种三维热机械模型,其模拟能够在聚合物复合材料的添加剂制造期间计算能够计算应力和温度梯度的FDM的过程。 3D模型考虑复合材料的温度依赖性物理性质,其由密度,导热性,热膨胀系数,屈服应力和杨氏模量组成。模拟过程包括加热,凝固和冷却阶段。分析并比较了不同的印刷部件。由于通过复合厚度发生的温度梯度,应力随着温度梯度而变化。如果印刷过程中的温度迅速变化,则似乎应力的浓度更高。那些应力可以赞成印刷部分的层之间的分层,并且残余热应力会导致失效包膜的偏移。

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