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Experimental characterization of 3D printed thermoplastic plates subjected to low velocity impact

机译:低速冲击3D印刷热塑性板的实验表征

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摘要

3D printed parts made from Polylactic acid (PLA) have a brittle nature when subjected to out-of-plane loading, e.g., impact. In this paper, we report the use of a pendulum impact test apparatus along with a high-speed camera and an Infrared (IR) thermography system to investigate impact damage characteristics of PLA 3D printed plates. The effects of impact energy levels, impact locations, and changes in layer thickness were examined for a clamped plate with a raster angle of 0 degrees and a nominal thickness of 2.52 mm. The upper impact energy level (3 J) showed higher absorbed energy percentage than the lower impact energy level (1 J) for two impact locations, namely, central and off-center. For the 3 J impact energy, the maximum absorbed energy percentage for central loading was observed for specimens with 0.16 mm in layer thickness, while this occurred at 0.14 mm layer thickness for the off-center impact. For almost all layer thicknesses, the off-center loading resulted in a higher absorbed energy percentage compared with the central impact.
机译:3D当受到面外负载时,由聚乳酸(PLA)制成的印刷部件具有脆性性质,例如冲击。在本文中,我们报告了摆锤冲击试验装置以及高速相机和红外线(IR)热成像系统,以研究PLA 3D印刷板的冲击损伤特性。检查冲击能级,冲击位置和层厚度的变化的影响,用于夹紧板,光栅角为0度,标称厚度为2.52mm。上部冲击能级(3J)显示出比两个冲击位置的下冲击能级(1 J)更高的吸收能量百分比,即中央和偏离中心。对于3 J碰撞能量,对于层厚度为0.16mm的试样,观察到中央载荷的最大吸收能量百分比,而这在0.14mm层厚度下发生偏心冲击。对于几乎所有层厚度,与中央撞击相比,偏离中心负载导致更高的吸收能量百分比。

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