The effects of layers orientation on impact energy evaluation of FDM printed specimens

Iulian-Ionut Ailinei, Sergiu Valentin Galatanu, Liviu Marsavina
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引用次数: 4

Abstract

This paper investigates the effects of layers orientation on impact energy absorbed by acrylonitrile butadiene styrene (ABS) test specimens, obtained by additive manufacturing (AM), having three in-plane deposition directions (0°, 45°, and 90°). The specimens were tested with instrumented Charpy hammer, CEAST 9050 Pendulum Impact System, according to standard ISO179-1. Unnotched specimens were tested in edgewise direction based on measured velocity and impact force; absorbed energy was computed. The average energy obtained during impact tests for specimens with the orientation of the layers at 45° was about 0.39 J. For those with layer orientation at 0° and 90°, respectively, it was 0.63 and 0.81 J. A hinge break failure mode was observed for 0° and 90° specimens, and brittle fracture for 45° specimens.

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层向对FDM打印试件冲击能评价的影响
本文研究了增材制造(AM)获得的具有3个面内沉积方向(0°、45°和90°)的丙烯腈-丁二烯-苯乙烯(ABS)试样的层向对冲击能吸收的影响。根据ISO179-1标准,用仪表夏比锤,CEAST 9050摆锤冲击系统进行测试。根据测得的速度和冲击力,沿沿方向对未缺口试件进行测试;计算吸收能量。当层向为45°时,试样的平均能量约为0.39 J。当层向为0°和90°时,分别为0.63和0.81 J。0°和90°试样呈铰链断裂破坏模式,45°试样呈脆性断裂模式。
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