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Ultimate Tensile Strength in Fused Deposition Modeling Considering Process Parameters of Flow Rate and Printing Head Speed

机译:考虑流量和打印头速度的工艺参数的熔融沉积建模中的极限拉伸强度

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Mechanical properties are important indexes to indicate quality of Fused Deposition Modeling (FDM) parts, and Ultimate Tensile Strength (UTS) is one of the frequently concerned mechanical properties. In the manufacturing process of FDM parts, UTS is affected by many controllable process parameters, such as raster orientation, fill rate, layer thickness, head speed, flow rate and so on. The effects of some parameters have been studied in detail but others have not. In this paper, the effects of flow rate and printing head speed on UTS are examined. An effective Design of Experiments (DOE) method is applied to determine the settings of parameters to obtain the optimal UTS. The two process parameters are set to twenty-four different combinations of six levels of printing head speed and four levels of flow rate in manufacturing process, and FDM specimens from Polylactic Acid (PLA) are manufactured according to the test standard. Five specimens are manufactured under each condition. UTS values of specimens are measured by experimental test of tensile properties. The response surface model and Signal-to-Noise Ratio (SNR) are applied to analyze these UTS data. As a result, flow rate has a significant effect on UTS but printing head speed does not show significant effect in this case, and optimal settings of flow rate and printing head speed are given.
机译:力学性能是指示熔融沉积建模(FDM)零件质量的重要指标,而极限拉伸强度(UTS)是经常关注的力学性能之一。在FDM零件的制造过程中,UTS受许多可控制的过程参数的影响,例如光栅方向,填充率,层厚,压头速度,流速等。一些参数的影响已被详细研究,而其他参数则没有。本文研究了流速和打印头速度对UTS的影响。应用有效的实验设计(DOE)方法来确定参数设置以获得最佳的UTS。在制造过程中,将两个过程参数设置为六个级别的打印头速度和四个级别的流速的二十四个不同组合,并根据测试标准制造来自聚乳酸(PLA)的FDM标本。在每种条件下制造五个样本。通过拉伸性能的实验测试来测量样品的UTS值。响应面模型和信噪比(SNR)用于分析这些UTS数据。结果,流速对UTS有显着影响,但在这种情况下打印头速度没有显着影响,并且给出了流速和打印头速度的最佳设置。

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