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Strengthening mechanism of load sharing of particulate reinforcements in a metal matrix composite

机译:金属基复合材料中颗粒增强剂的负荷分担强化机理

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摘要

A 15 v% SiC particle reinforced Al-2618 matrix composite was selected to study strengthening mechanisms under different heat treatments to produce specimens in hard or soft matrices. The investigation showed that the conventional micro-mechanism models play a minor role in strengthening the composite by further addition of the SiC particles. A load sharing mechanism of the particulate reinforcements is suggested to explain the experimental yield strength increase. An analytical model based on Eshelby equivalent inclusion approach and Mori–Tanaka mean field extension was established by introducing numerical matrix and composite secant moduli to simulate the stress–strain curve of the composite. The same modeling work was also carried out by FEM analysis based on the unit cell model using a commercial ANSYS code. The modeling results by both models on evolution of the load carried by the SiC particles during straining provide strong evidences to back up the strengthening mechanism of the load sharing. However, the modeling work exposes that the load transfer mechanism plays a dominant role only for the composite with hard matrix and the reason for load transfer is mainly the mismatch strain between particulate reinforcement and matrix rather than commonly believed friction at their interfaces. Nevertheless, an experiment was used to estimate average stress level in the SiC particles by observation of the numbers of broken particles in the composite with different strains, which also offers a good support to the modeling work.
机译:选择一种15 v%SiC颗粒增强的Al-2618基复合材料来研究在不同热处理条件下产生硬质或软质样品的强化机理。研究表明,常规的微机械模型在通过进一步添加SiC颗粒来增强复合材料方面起着较小的作用。建议使用颗粒增强材料的负荷分担机制来解释实验屈服强度的增加。通过引入数值矩阵和复合割线模量来模拟复合材料的应力-应变曲线,建立了基于埃舍尔比等效包含法和Mori-Tanaka平均场扩展的分析模型。通过使用商业ANSYS代码基于晶胞模型的FEM分析,也进行了相同的建模工作。两种模型对SiC颗粒在拉伸过程中所承受的载荷演变的建模结果均提供了有力的证据来支持载荷分担的强化机制。但是,建模工作表明,载荷传递机制仅对具有硬质基体的复合材料起着主导作用,载荷传递的原因主要是颗粒增强剂和基体之间的失配应变,而不是通常认为的界面处的摩擦。然而,通过观察不同应变的复合材料中破碎颗粒的数量,可以通过实验估算SiC颗粒的平均应力水平,这也为建模工作提供了良好的支持。

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  • 来源
    《Journal of Materials Science》 |2007年第12期|4215-4226|共12页
  • 作者单位

    Department of Materials Science and Engineering Northeastern University Shenyang 110004 China;

    Department of Materials Science and Engineering Northeastern University Shenyang 110004 China;

    Department of Materials Science and Engineering Northeastern University Shenyang 110004 China;

    Department of Materials Science and Engineering Northeastern University Shenyang 110004 China;

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