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Temperature stress for bending beam with different moduli under different constraints

机译:不同约束条件下不同模量弯曲梁的温度应力

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Purpose - The purpose of this paper is to solve temperature stress for bending beam with different moduli under different constraints subject to nonlinear temperature. Design/methodology/approach - The equations of neutral axis position, normal stress, and displacement of bending beam with different moduli subjected to nonlinear temperature were derived based on different moduli elasticity theory. Meanwhile, iterative procedure was programmed to solve the nonlinear equations. The analytical solution can return back into the result of the same modulus theory, and the analytical solution was compared with finite element numerical solution. It shows that the analytical model proposed in this paper is reliable to use. Furthermore, the influence of different moduli characteristics on the temperature stress and deformation is discussed. Findings - The mechanical behavior of the bending beam with different moduli subject to nonlinear temperature is quite different from the one that is subjected to force. The bending beam maybe exist two neutral axis, and the reasonable selection of tension modulus and compression modulus can improve the distribution of the normal stress and reduce the maximum tensile stress or the maximum compressive stress. Originality/value - The crack produced by temperature stress will affect the integrity and the durability of the structure. The solution for temperature problem with different moduli theory is rarely reported at home and board. In view of this, this paper will do some exploratory research-temperature stress for bending beam with different moduli.
机译:目的-本文的目的是解决在非线性温度下不同约束条件下不同模量的弯曲梁的温度应力。设计/方法/方法-基于不同的模态弹性理论,推导了中性轴位置,法向应力和在非线性温度下具有不同模量的弯曲梁的位移方程。同时,编程了迭代程序来求解非线性方程。解析解可以返回到相同模量理论的结果,并将解析解与有限元数值解进行比较。表明本文提出的分析模型是可靠的。此外,讨论了不同模量特性对温度应力和变形的影响。研究结果-非线性温度下具有不同模量的弯曲梁的机械性能与受力的弯曲性能有很大不同。弯曲梁可能存在两个中性轴,合理选择拉伸模量和压缩模量可以改善法向应力的分布,减小最大拉伸应力或最大压缩应力。原创性/价值-温度应力产生的裂纹将影响结构的完整性和耐久性。国内外很少有采用不同模量理论解决温度问题的方法。有鉴于此,本文将对不同模量的弯曲梁进行一些探索性的温度应力研究。

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