Analysis of plastically deformed functionally graded pressurized thick cylinder

M. Belhaou, N. Laghzale, H. Bouzid
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Abstract

Abstract An analytical solution for stresses in a plastically deformed cylinder made of a functionally graded material (FGM) under internal pressure is provided. The cylindrical material is composed of two metal powder particles manufactured using centrifugal casting. While Poisson’s ratio is assumed constant, Young’s modulus is a power function of the radius. The von Mises yield criterion is used under the plane-strain condition. The constitutive material model obeys the Ludwik power law, with the yield strength and work-hardening coefficient as functions of the radius. The stress distributions along the radial direction for the elastic, elasto–plastic field and beyond plastic collapse cases were analyzed. To study the effect on the plastic zone in FGM, in addition to pressure, the gradient index was made to vary from −2 to 2 and different cylinder aspect ratios ranging from 1 up to 3 are considered. A finite-element simulation was run for comparison and validation of the analytical solution. The results showed a good agreement between the two methods.
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功能梯度增压厚筒塑性变形分析
摘要给出了由功能梯度材料(FGM)制成的塑性变形圆柱体在内压作用下的应力解析解。圆柱形材料由两个使用离心铸造制造的金属粉末颗粒组成。泊松比假定为常数,杨氏模量是半径的幂函数。平面应变条件下采用冯-米塞斯屈服准则。材料本构模型遵循Ludwik幂律,屈服强度和加工硬化系数是半径的函数。分析了弹性、弹塑性场和塑性坍塌以外情况下沿径向的应力分布。为了研究对FGM塑性区的影响,除了压力外,还使梯度指数在−2到2之间变化,并考虑了从1到3的不同圆柱体纵横比。对分析解进行了有限元模拟比较和验证。结果表明,这两种方法有很好的一致性。
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来源期刊
Arab Journal of Basic and Applied Sciences
Arab Journal of Basic and Applied Sciences Mathematics-Mathematics (all)
CiteScore
5.80
自引率
0.00%
发文量
31
审稿时长
36 weeks
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