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首页> 外文期刊>Journal of Mechanical Science and Technology >Creep modeling in functionally graded rotating disc of variable thickness
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Creep modeling in functionally graded rotating disc of variable thickness

机译:可变厚度的功能梯度转盘中的蠕变建模

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摘要

Creep behavior of rotating discs made of functionally graded materials with linearly varying thickness has been investigated. The discs under investigation are made of composite containing silicon carbide particles in a matrix of pure aluminum. The creep behavior of the composite has been described by threshold stress based creep law by assuming a stress exponent of 5. The effect of imposing linear particle gradient on the distribution of stresses and strain rates in the composite disc has been investigated. The study indicates that with increase in particle gradient in the disc, the radial stress increases throughout the disc, whereas the tangential and effective stresses increase near the inner radius but decrease near the outer radius. The steady state strain rates in the composite disc, having gradient in the distribution of reinforcement, are significantly lower than that observed in a disc having uniform distribution of reinforcement.
机译:已经研究了由具有线性变化厚度的功能梯度材料制成的转盘的蠕变行为。所研究的光盘是由在纯铝基质中包含碳化硅颗粒的复合材料制成的。假定应力指数为5,通过基于阈值应力的蠕变定律描述了复合材料的蠕变行为。研究了在复合材料圆盘中施加线性颗粒梯度对应力分布和应变率的影响。研究表明,随着圆盘中颗粒梯度的增加,径向应力在整个圆盘中都增加,而切向应力和有效应力在内半径附近增大,而在外半径附近减小。具有增强分布的梯度的复合盘中的稳态应变率明显低于具有增强分布均匀的盘中的稳态应变率。

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