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1)  stress integral
应力积分
1.
In this paper, the stress of the vase-shape pier was analyzed with three-dimentional finite element method and a method of placing reinforcement in the top of the pier was proposed with the stress integral on the maximum stress section of the pier.
本文在用空间有限元法对花瓶式桥墩进行应力分析的基础上,对其顶部防裂问题提出了一种沿危险剖面进行应力积分的钢筋配置方法。
2)  stress-integration method
应力积分法
1.
Two approaches, the momentum-exchange method and the stress-integration method, for force evaluation based on the Lattice Boltzmann equation were investigated.
通过分析格子Boltzmann方法中边界受力的计算方法,研究了两种用LB方法计算边界受力的方法———动量转换法和应力积分法,其中动量转换法较为可靠、准确,且易于执行。
3)  stress integration algorithm
应力积分算法
1.
Based on the radial return method and backward Euler integration, a new implicit stress integration algorithm is proposed for the developed visco-plastic constitutive model by combining the successive substitution method.
在径向回退(RadialReturn)和向后欧拉积分方法的基础上,结合连续迭代(SuccessiveSubstitution)方法,推导并建立了针对循环粘塑性本构模型的、新的隐式应力积分算法。
4)  implicit stress integration algorithm
隐式应力积分
1.
Based on the implicit stress integration algorithm for isotropic hardening elastoplastic constitutive models in general three-dimensional stresses, the expression of stress-strain relationship which is consistent to the implicit stress integration algorithm is deduced.
基于一般三维应力状态下等向硬化类弹塑性本构模型的隐式应力积分算法,推导了与隐式应力积分算法相一致的应力应变关系表达式。
5)  elliptic integral/heat stress
椭圆积分/热应力
6)  boundary integral equation for analysis of stress
应力边界积分方程
补充资料:轧辊残余应力(见轧辊应力)


轧辊残余应力(见轧辊应力)
residual stresses in roll

zhagun eanyu yingli轧辊残余应力(residual stresses in roll)见礼辐应力。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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