首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >EFFECT OF THE SILICON-CARBIDE MICRO- AND NANOPARTICLE SIZE ON THE THERMO-ELASTIC AND TIME-DEPENDENT CREEP RESPONSE OF A ROTATING Al-SiC COMPOSITE CYLINDER
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EFFECT OF THE SILICON-CARBIDE MICRO- AND NANOPARTICLE SIZE ON THE THERMO-ELASTIC AND TIME-DEPENDENT CREEP RESPONSE OF A ROTATING Al-SiC COMPOSITE CYLINDER

机译:碳化硅微颗粒和纳米颗粒尺寸对旋转Al-SiC复合材料圆柱体的热弹性和时变蠕变响应的影响

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摘要

The history of stresses and creep strains of a rotating composite cylinder made of an aluminum matrix reinforced by silicon carbide particles is investigated. The effect of uniformly distributed SiC micro- and nanoparticles on the initial thermo-elastic and time-dependent creep deformation is studied. The material creep behavior is described by Sherby's constitutive model where the creep parameters are functions of temperature and the particle sizes vary from 50 nm to 45.9 mu m. Loading is composed of a temperature field due to outward steady-state heat conduction and an inertia body force due to cylinder rotation. Based on the equilibrium equation and also stress-strain and strain-displacement relations, a constitutive second-order differential equation for displacements with variable and time-dependent coefficients is obtained. By solving this differential equation together with the Prandtl-Reuss relation and the material creep constitutive model, the history of stresses and creep strains is obtained. It is found that the minimum effective stresses are reached in a material reinforced by uniformly distributed SiC particles with the volume fraction of 20% and particle size of 50 nm. It is also found that the effective and tangential stresses increase with time at the inner surface of the composite cylinder; however, their variation at the outer surface is insignificant.
机译:研究了由碳化硅颗粒增强的铝基材料制成的旋转复合材料圆柱体的应力和蠕变应变的历史。研究了均匀分布的SiC微粒和纳米颗粒对初始热弹性和时变蠕变的影响。材料的蠕变行为由Sherby本构模型描述,其中蠕变参数是温度的函数,粒径从50 nm到45.9μm不等。载荷由向外稳态热传导引起的温度场和气缸旋转引起的惯性力组成。基于平衡方程以及应力-应变和应变-位移关系,获得了具有可变和时变系数的位移本构二阶微分方程。通过将该微分方程与Prandtl-Reuss关系和材料蠕变本构模型一起求解,可以获得应力和蠕变应变的历史。发现在由均匀分布的SiC颗粒增强的材料中达到了最小有效应力,该SiC颗粒的体积分数为20%,粒径为50 nm。还发现,在复合圆柱体的内表面,有效应力和切向应力会随着时间而增加。但是,它们在外表面的变化很小。

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