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Static assessment of notched additively manufactured acrylonitrile butadiene styrene (ABS)

机译:缺口加工丙烯腈丁二烯苯乙烯(ABS)的静态评估

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The present paper tackles the problem of performing the static assessment of notched additively manufactured (AM) acrylonitrile butadiene styrene (ABS) components. A large number of ABS specimens containing different notch profiles and sharpness were manufactured (flat on build plate) by varying the printing angles to simulate the stress concentration phenomena. These specimens were tested under tension and three-point bending to generate a large amount of experimental data. From the experimental results, it is evident that the AM ABS materials can simply be modelled as an elastic, brittle, homogenous and isotropic material. This simplification allowed the application of the Theory of Critical Distances (TCD) to become a viable static assessment tool for the AM ABS components. As a result, it was proven that the TCD is an accurate and valid static assessment tool for the AM ABS components with estimations mainly falling within an error interval of about ±20%. This result is certainly rewarding from an engineering application perspective as the TCD successfully enables engineers to assess the static strength of additively manufactured engineering components that contain intricate geometrical features accurately, rapidly, and economically.
机译:本文解决了对丙烯腈丁二烯苯乙烯(ABS)组分的含有薄膜增生的静态评估的问题。通过改变印刷角度来模拟应力浓度现象来制造(平坦的构建板上的含有不同槽廓和锐度的大量ABS样本。在张紧和三点弯曲下测试这些样品以产生大量的实验数据。从实验结果中,显而易见的是,AM ABS材料可以简单地建模为弹性,脆性,均匀和各向同性材料。这种简化允许应用临界距离(TCD)理论成为AM ABS组件的可行静态评估工具。因此,证明TCD是AM ABS组件的准确和有效的静态评估工具,其估计主要落在约±20%的误差间隔内。由于TCD成功地使工程师能够评估含有复杂的几何特征的静态强度,因此TCD精确,快速,经济地提供复杂的几何特征的稳定强度,因此从工程应用程序视角肯定是奖励。

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