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首页> 外文期刊>Journal of engineering materials and technology >Prediction of Asymmetric Yield Strengths of Polymeric Materials at Tension and Compression Using Spherical Indentation
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Prediction of Asymmetric Yield Strengths of Polymeric Materials at Tension and Compression Using Spherical Indentation

机译:使用球形压痕预测聚合物材料在拉伸和压缩时的不对称屈服强度

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摘要

Engineering polymers generally exhibit asymmetric yield strength in tension and compression due to different arrangements of molecular structures in response to external loadings. For the polymeric materials whose plastic behavior follows the Drucker-Prager yield criterion, the present study proposes a new method to predict both tensile and compressive yield strength utilizing instrumented spherical indentation. Our method is decomposed into two parts based on the depth of indentation, shallow indentation, and deep indentation. The shallow indentation is targeted to study elastic deformation of materials, and is used to estimate Young's modulus and yield strength in compression; the deep indentation is used to achieve full plastic deformation of materials and extract the parameters in Drucker-Prager yield criterion associated with both tensile and compressive yield strength. Extensive numerical computations via finite element method (FEM) are performed to build a dimension less function that can be employed to describe the quantitative relationship between indentation force-depth curves and material parameters of relevance to yield criterion. A reverse algorithm is developed to determine the material properties and its robustness is verified by performing both numerical and experimental analysis.
机译:由于响应于外部载荷的分子结构的不同排列,工程聚合物通常在拉伸和压缩方面表现出不对称的屈服强度。对于其塑性行为遵循Drucker-Prager屈服准则的聚合物材料,本研究提出了一种新的方法,该方法可以利用仪器化的球形压痕来预测拉伸和压缩屈服强度。根据压痕的深度,我们的方法可分为两部分:浅压痕和深压痕。浅压痕用于研究材料的弹性变形,并用于估计杨氏模量和压缩屈服强度。深压痕用于实现材料的完全塑性变形,并提取与拉伸和压缩屈服强度相关的Drucker-Prager屈服准则中的参数。通过有限元方法(FEM)进行了广泛的数值计算,以构建无量纲函数,该函数可用于描述压痕力-深度曲线与与屈服准则相关的材料参数之间的定量关系。开发了一种反向算法来确定材料属性,并通过执行数值和实验分析来验证其鲁棒性。

著录项

  • 来源
    《Journal of engineering materials and technology》 |2017年第2期|021002.1-021002.11|共11页
  • 作者单位

    Department of Precision Mechanics, Chuo University, 1-13-27 Kasuga, Bunkyo, Tokyo 112-8551,Japan;

    Department of Precision Mechanics, Chuo University, 1-13-27 Kasuga, Bunkyo, Tokyo 112-8551,Japan;

    Department of Precision Mechanics, Chuo University, 1-13-27 Kasuga, Bunkyo, Tokyo 112-8551,Japan;

    Department of Integrated Science and Engineering for Sustainable Society, Chuo University, 1-13-27 Kasuga, Bunkyo, Tokyo 112-8551, Japan;

    Department of Mechanical and Aerospace Engineering, University of Virginia, Charlottesville, VA 22904;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    yield strength; tension and compression; polymer materials; indentation; reverse analysis;

    机译:屈服强度张力和压缩;聚合物材料;缩进;逆向分析;

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