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Featured researches published by Jiaxing Shao.


Journal of Materials Science | 2018

Temperature dependent compressive yield strength model for short fiber reinforced magnesium alloy matrix composites

Jiaxing Shao; Weiguo Li; Ruzhuan Wang; Yong Tao; Haibo Kou; Yong Deng; Xianhe Zhang; Ying Li; Xiaorong Wang

In this paper, based on our previous study regarding the temperature-dependent yield strength for metallic materials and the existing strengthening theories, a physics-based temperature dependent compressive yield strength model for short fiber reinforced magnesium alloy matrix composites was developed. This model was verified by comparison with the experimental data of seven types of magnesium alloy matrix composites. Good agreement between the model predictions and the experimental data was obtained, which fully validates the reasonability of the present model. Moreover, based on the model and the existing material parameters, the influencing factor analysis for short fiber reinforced magnesium alloy matrix composites was systematically conducted. Some novel insights regarding the control mechanism of their temperature dependent compressive yield strengths were provided.


Journal of Materials Science | 2018

Temperature-dependent longitudinal tensile strength model for short-fiber-reinforced polymer composites considering fiber orientation and fiber length distribution

Ying Li; Weiguo Li; Yong Deng; Jiaxing Shao; Jianzuo Ma; Yong Tao; Haibo Kou; Xianhe Zhang; Xuyao Zhang; Liming Chen; Fanglan Peng

In this study, a temperature-dependent longitudinal tensile strength model for short-fiber-reinforced polymer composites (SFRPCs) is established based on the sensitivities of thermal-physical properties of polymer materials to temperature and our previous work. The effects of temperature, fiber orientation distribution, fiber length distribution and residual thermal stress are considered in this model. The theoretical model is verified by comparison with tensile strength of glass SFRPCs at different temperatures. Good agreement between the model predictions and experimental results is obtained, which indicates the reasonability of the proposed models. Furthermore, the comparisons between the present models and the classical models are discussed, and the influencing factors analysis for SFRPCs is also conducted in detail. This study can not only provide a potential convenient means for predicting the temperature-dependent tensile strength of SFRPCs, but also offer useful suggestions for the material evaluation, strengthening and design.


Philosophical Magazine | 2018

Temperature-dependent critical resolved shear stress model for (Cu–Au)–Co alloys in pure shear mode

Jianzuo Ma; Weiguo Li; Jiaxing Shao; Yong Deng; Xianhe Zhang; Haibo Kou; Peiji Geng; Xuyao Zhang; Ying Li

Abstract Based on a limited energy storage viewpoint proposed by our team, it is assumed that there is a maximum constant value for the maximum storage of energy per unit volume when dislocation slip starts in a metal. A temperature-dependent critical resolved shear stress (CRSS) model without any fitting parameters is developed for metals in a pure shear mode. The CRSSs of Cu, Cu–Au, Cu–Co and Cu–Au–Co in the pure shear mode are predicted, and are in excellent agreement with the experimental results. This work offers an approach to predict the temperature-dependent CRSS for metals in the pure shear mode.


Composite Structures | 2016

The temperature-dependent fracture models for fiber-reinforced ceramic matrix composites

Yong Deng; Weiguo Li; Ruzhuan Wang; Jiaxing Shao; Peiji Geng; Jianzuo Ma


Composite Structures | 2017

Theoretical models and influencing factor analysis for the temperature-dependent tensile strength of ceramic fibers and their unidirectional composites

Jiaxing Shao; Weiguo Li; Yong Deng; Jianzuo Ma; Xianhe Zhang; Peiji Geng; Haibo Kou; Liming Chen; Xiaozhi Wu


Journal of The European Ceramic Society | 2017

Temperature dependent first matrix cracking stress model for the unidirectional fiber reinforced ceramic composites

Yong Deng; Weiguo Li; Ruzhuan Wang; Jiaxing Shao; Peiji Geng; Haibo Kou; Xianhe Zhang; Jianzuo Ma


Computational Materials Science | 2017

A novel temperature dependent yield strength model for metals considering precipitation strengthening and strain rate

Xianhe Zhang; Weiguo Li; Jianzuo Ma; Peiji Geng; Jiaxing Shao; Xiaozhi Wu


Journal of Alloys and Compounds | 2018

Modeling the temperature-dependent non-steady state first matrix cracking stress for fiber ceramic matrix composites

Yong Deng; Weiguo Li; Jiaxing Shao; Xuyao Zhang; Haibo Kou; Jianzuo Ma; Yong Tao; Ruzhuan Wang


Construction and Building Materials | 2018

Modeling of temperature dependent yield strength for stainless steel considering nonlinear behavior and the effect of phase transition

Ying Li; Weiguo Li; Xianhe Zhang; Jianzuo Ma; Jiaxing Shao; Haibo Kou; Yong Deng


Journal of The European Ceramic Society | 2017

A novel theoretical model to predict the temperature-dependent fracture strength of ceramic materials

Yong Deng; Weiguo Li; Jiaxing Shao; Xianhe Zhang; Haibo Kou; Peiji Geng; Xuyao Zhang; Ying Li; Jianzuo Ma

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Ying Li

Chongqing University

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Yong Tao

Chongqing University

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