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首页> 外文期刊>Journal of Applied Polymer Science >Parametric study for tensile properties of molded high-density polyethylene for applications in additive manufacturing and sustainable designs
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Parametric study for tensile properties of molded high-density polyethylene for applications in additive manufacturing and sustainable designs

机译:添加剂制造和可持续设计中模塑高密度聚乙烯的拉伸性能参数研究

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摘要

Test specimens following ASTM D638 standards are frequently used to measure the tensile properties of reinforced and unreinforced polymers machined with traditional machining and emerging manufacturing methods (additive manufacturing/3D printing). However, designs of large engineering structures may rely on mechanical properties based on ASTM D3039 for fiber-reinforced polymer composites. This parametric study examines the scaling effects present in uniaxial tensile test specimens of molded high-density polyethylene (HDPE), with geometries ranging from Types I to IV of ASTM D638 to ASTM D3039. HDPE is a thermoplastic polymer that is recyclable, can be 3D-printed, and has a wide range of engineering applications, from bottles to pipes to radiation protection shielding. The mechanical properties test results for the molded HDPE samples are validated using a Monte Carlo simulation to estimate uncertainties for the probability distribution of maximum stress at the yield point. A Finite Element study based on the empirical model shows how the proposed approach can be adopted for design purposes. The results of this work are a useful tool to enhance confidence in the tensile mechanical properties of ASTM D638 Types II and IV geometries as statistically similar to those of ASTM D3039 samples, impacting engineering designs with traditional and emerging manufacturing methods.
机译:ASTM D638标准之后的试样经常用于测量用传统加工和新兴制造方法加工的增强和未粘合的聚合物的拉伸性能(添加制造/ 3D打印)。然而,大型工程结构的设计可以基于ASTM D3039用于纤维增强聚合物复合材料的机械性能。该参数研究检查了模塑高密度聚乙烯(HDPE)的单轴拉伸试样中存在的缩放效果,几何形状范围为ASTM D638至ASTM D3039。 HDPE是一种热塑性聚合物,可回收,可以采用3D印刷,具有广泛的工程应用,从瓶子到管道到辐射防护屏蔽。使用蒙特卡罗模拟验证模塑HDPE样品的机械性能测试结果,以估计屈服点处的最大应力的概率分布的不确定性。基于实证模型的有限元研究表明,如何采用设计目的的方法。该工作的结果是一种有用的工具,可以增强ASTM D638类型II和IV几何形状的抗拉机械性能的置信度,与ASTM D3039样品的统计学类似,影响工程设计与传统和新兴的制造方法。

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