首页> 外文期刊>International Journal of Solids and Structures >THE ROLE OF AUTOCATALYSIS AND TRANSFORMATION SHEAR IN CRACK TIP ZONE SHAPE AND TOUGHENING OF ZIRCONIA CERAMICS
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THE ROLE OF AUTOCATALYSIS AND TRANSFORMATION SHEAR IN CRACK TIP ZONE SHAPE AND TOUGHENING OF ZIRCONIA CERAMICS

机译:自催化转变剪切在裂纹尖端区形状中的作用及锆石陶瓷的增韧。

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摘要

The effect of autocatalysis and transformation induced shear strain on the stationary crack tip zone shape and toughening is studied by the finite element method. The numerical analysis is based on the micromechanics constitutive model of transformation plasticity proposed by Sun ct al. (J. Mech. Phys. Solids 39, 1991). This model is capable of describing the autocatalytic transformation and is used as the foundation for the theoretical and numerical study of the autocatalytic phenomenon during martensitic transformation in ceramics. The results demonstrate that autocatalysis and transformation shear strain play an important role in the anomalous crack tip zone morphology and transformation zone shielding. The ''negative shielding effect'' for the stationary mode I crack in plane stress is discovered and the narrow elongated track tip zone shape is first simulated by the constitutive model of Sun et al. (1991). (C) 1997 Elsevier Science Ltd. [References: 34]
机译:用有限元方法研究了自催化转变引起的剪切应变对固定裂纹尖端区形状和增韧的影响。数值分析基于Sun ct等人提出的转变塑性的微力学本构模型。 (J.Mech.Phys.Solids 39,1991)。该模型能够描述自催化转变,并为陶瓷马氏体转变过程中自催化现象的理论和数值研究奠定了基础。结果表明,自催化和转变剪切应变在异常的裂纹尖端区域形态和转变区域屏蔽中起重要作用。发现了平面应力中稳态模式I裂纹的“负屏蔽效应”,并且首先通过Sun等人的本构模型模拟了狭窄的细长轨道尖端区域形状。 (1991)。 (C)1997 Elsevier Science Ltd. [参考:34]

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