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Tensile failure strength and separation angle of FDM 3D printing PLA material: Experimental and theoretical analyses

机译:FDM 3D打印PLA材料的拉伸破坏强度和分离角:实验和理论分析

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摘要

It is discovered in this investigation that there exist two different failure modes and a special separation angle which is the demarcation point of the two different failure modes when FDM (Fused Deposition Modelling) 3D printing materials fail under a tensile load. In order to further understand the mechanical properties of FDM 3D printing materials and promote the use of FDM 3D printing materials, their tensile failure strengths at different printing angles and separation angles are measured and analysed theoretically. A new separate-modes of transversely isotropic theoretical failure model is established to predict the tensile failure strength and separation angle of FDM 3D printing PLA (polylactic acid) material based on the hypothesis of transverse isotropy and the classical separate-modes failure criterion. During this research, the tensile specimens designed according to the current test standard ISO (527-2-2012) for plastic-multi-purpose specimens are fabricated in 7 different printing angles (0 degrees, 15 degrees, 30 degrees, 45 degrees, 60 degrees, 75 degrees, 90 degrees) and three levels of printing layer thickness (0.1 mm, 0.2 mm, 0.3 mm). Experimental results show that the tensile failure strength increases with the increase of the printing angle or the decrease of the layer thickness. Meanwhile, inter-layer failure tends to occur when the printing angle is small and in-layer failure tends to occur when the printing angle is big. In comparison with the results predicted by the established theoretical model, all values of the Generalized-Relative-Root-Mean-Square Error are close to zero and the experimental separation angles are also between 45 degrees and 60 degrees. So the predictive capacity of the theoretical model is affirmed by experimental results.
机译:在这项调查中发现,当FDM(熔融沉积建模)3D打印材料在拉伸载荷下失效时,存在两种不同的失效模式和特殊的分离角,这是两种不同失效模式的分界点。为了进一步了解FDM 3D打印材料的机械性能并促进FDM 3D打印材料的使用,从理论上测量和分析了它们在不同打印角度和分离角度下的拉伸破坏强度。基于横向各向同性假设和经典的分离模式破坏准则,建立了一种新的横向各向同性理论破坏模型,以预测FDM 3D打印PLA(聚乳酸)材料的拉伸破坏强度和分离角。在此研究过程中,按照当前测试标准ISO(527-2-2012)为塑料多功能标本设计的拉伸标本以7个不同的印刷角度(0度,15度,30度,45度,60度)制作度,75度,90度)和三个级别的打印层厚度(0.1毫米,0.2毫米,0.3毫米)。实验结果表明,拉伸破坏强度随着印刷角度的增加或层厚度的减小而增加。同时,当印刷角度小时,倾向于发生层间故障,而当印刷角度大时,倾向于发生层内故障。与建立的理论模型预测的结果相比,广义相对根均方误差的所有值都接近于零,并且实验分离角也在45度和60度之间。因此,实验结果证实了理论模型的预测能力。

著录项

  • 来源
    《Composites》 |2020年第may1期|107894.1-107894.13|共13页
  • 作者

  • 作者单位

    Northwestern Polytech Univ Sch Mech Civil Engn & Architecture Xian 710072 Peoples R China|Northwestern Polytech Univ MIIT Key Lab Dynam & Control Complex Syst Xian 710072 Peoples R China;

    Univ Liverpool Sch Engn Liverpool L69 3GH Merseyside England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3D printing; Tensile failure strength; Separation angle; Failure criterion; Printing angle; Layer thickness;

    机译:3D打印拉伸破坏强度;分离角失效标准;印刷角度层厚;

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