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Stress and strain localization three-dimensional modeling for particle-reinforced metal matrix composites

机译:颗粒增强金属基复合材料的应力和应变局部化三维建模

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摘要

The ductility of particle-reinforced metal matrix composites (PR MMCs) is reduced by the localization of stress and strain, which is exacerbated by microstructural heterogeneity, especially particle clustering. Herein, the effect of particle distribution on the macroscopic and microscopic response has been studied using three distinct types of three-dimensional (3D) finite-element model: a repeating unit cell, a multiparticle model, and a clustered particle model. While the repeating unit cell model represents a cubic periodic array of particles, the multiparticle model represents a random distribution of particles contained in a cube of matrix material, and the clustered particle model represents an artificially clustered distribution of particles. These models were used to study the macroscopic tensile stress-strain response as well as the underlying stress and strain fields. The results indicate that a clustered microstructure leads to a stiffer response with more hardening than that of random and periodic microstructures. Plastic flow and hydrostatic stress localization in the matrix and maximum principal stress localization in the particles are significantly higher in the clustered microstructure. Damage is expected to initiate in the cluster regions leading to low ductility.
机译:应力和应变的局域性降低了颗粒增强金属基复合材料(PR MMC)的延展性,微观结构的异质性(尤其是颗粒簇化)加剧了延展性。本文中,已经使用三种不同类型的三维(3D)有限元模型研究了粒子分布对宏观和微观响应的影响:重复晶胞,多粒子模型和聚类粒子模型。重复单元像元模型表示粒子的立方周期性阵列,而多粒子模型表示包含在多维数据集基质材料中的粒子的随机分布,聚类粒子模型表示粒子的人工聚类分布。这些模型用于研究宏观拉伸应力-应变响应以及潜在的应力和应变场。结果表明,与随机和周期性的微观结构相比,簇状的微观结构导致更硬,更硬的响应。在簇状微结构中,基体中的塑性流动和静水应力局部化以及颗粒中的最大主应力局部化明显更高。预计会在群集区域中引发损坏,从而导致延展性降低。

著录项

  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第7期|1653-1660|共8页
  • 作者

    H. Shen; C. J. Lissenden;

  • 作者单位

    Dept. of Mechanical Engng Northwestern University 60208 Evanston IL;

    the Department of Engineering Science and Mechanics Pennsylvania State University 16802 University Park PA;

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  • 正文语种 eng
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