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1)  ANSYS nonlinear finite element
ANSYS非线性有限元
2)  nonlinear finite element analysis (ANSYS)
非线性有限元分析(ANSYS)
3)  ANSYS finite element method
ANSYS有限元
1.
The self-lubricating composite was designed by using the ANSYS finite element method at high loads.
利用ANSYS有限元软件对重载自润滑复合材料进行设计,通过摩擦磨损实验测定了其摩擦磨损曲线。
2.
The paper is analyzed and simulated with the use of the ANSYS finite element methods,adopt solid 92 element,set up finite element model of the board,get the picture of stress distribution,receive the great deformation value and proved with the experiments.
通过ANSYS有限元进行模拟分析,采用Solid 92单元,建立大立板的有限元模型,从直观了解到大立板应力分布情况,并得到大立板的变形值。
4)  ANSYS finite element
ANSYS有限元
1.
The model was established by using the ANSYS finite element analysis software,and the alternation regularity between anodic resistance and its numbers of days was researched.
利用ANSYS有限元软件建立了模型,分析了阳极电阻随着天数增加的变化规律。
2.
With ANSYS finite element optimized analysis function, the structure of the cross rod has been optimized, which proves the feasibility by means of ANSYS optimized analysis function to realize the structure optimization analysis.
通过利用ANSYS有限元优化分析功能对十杆桁架结构进行了优化分析 ,证明了用ANSYS优化分析功能实现结构优化分析的可行性 ,从而为其它复杂结构的优化分析提供了新的方法和依据。
3.
Considering and un-considering the soil-structure interaction under seismic excitations are contrasted and analyzed by using 2-D elastic-plastic method with ANSYS finite element analysis software.
本文利用ANSYS有限元软件,对水平地震作用下考虑和不考虑土和结构相互作用的高层建筑进行弹塑性对比分析。
5)  ANSYS finite element method
ANSYS有限元法
1.
This paper has derived the identification model of dynamic load based on the generalized ortho-polynomial characteristic parameters,and verified the load identification method for complicated structure through the ANSYS finite element method.
推导了基于广义正交多项式的随机载荷识别模型,并且通过ANSYS有限元法对复杂结构的载荷识别进行了验证,为复杂结构动分布载荷识别提供了一种新的理论和方法。
6)  nonlinear finite element method
非线性有限元法
1.
The paper researched plastic straightening processing of axis parts by the nonlinear finite element method,brought forward a new straightening processing technology,and designed a prototype machine.
文章采用非线性有限元法研究了杆类零件的塑性矫直过程,在此基础上提出一种新型的矫直加工方法并设计了原理样机,机构运动由4个步进电机驱动,兼具工件尺寸检测和矫直加工功能。
2.
Taking into account the effect of temperature dependency of material properties, the transient thermal stresses in functionally gradient material (ZrO2 and Ti-6Al-4V)(FGM) plate under convective heat transfer boundary are analyzed by the nonlinear finite element method.
用非线性有限元法分析了由ZrO2和Ti-6Al-4V组成的变物性梯度功能材料板的对流换热瞬态热应力问题,与已有文献比较检验了方法的正确性,给出了该材料板在不同变形状态下的瞬态热应力分布,并与常物性时的结果进行了比较。
3.
The steady thermal stresses in functionally gradient material(ZrO_2 and Ti-6Al-4V)(FGM) plate with tempera-ture-dependent properties under differently mechanical boundary are analyzed by the nonlinear finite element method and the Sinpson method.
用非线性有限元法和辛普生法分析了由ZrO2和Ti-6Al-4V组成的变物性梯度功能材料板在不同力学边界条件下的稳态热应力问题。
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8

性质:暂无

制备方法:暂无

用途:用于轻、中度原发性高血压。

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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