intensity factor信息详情
强度因子;[土壤]强度因素
intensity───n.强度;强烈;[电子]亮度;紧张
factor───vt.把…作为因素计入;代理经营;把…分解成;n.(Factor)人名;(英)法克特;vi.做代理商;n.因素;要素;[物]因数;代理人
intensity of───……的强度;紧张
high intensity───[医]高强度;n.高强度;adj.高强度的
normalized intensity───[化] 归一化强度;[分化]归一化强度
intensity score───强度评分
varying intensity───强度变化
intensity level───强度位准;亮度级;辉度水平;强度级; 场强电平; 亮度电平; 亮度级
intensity units───强度单位
We study stress intensity factor of thick wall cylinder with cracks under dynamic load.───研究了动载荷作用下带裂纹厚壁筒的应力强度因子。
The intensity factor decreases with the propagation of cracks.───应力强度因子随着裂纹的扩展而下降。
acoustic emission also shows a decreasing rate, following the drop in stress-intensity factor.───随着应力强度因子的下降,声发射也随着减少。
Presents a method that can be conveniently used to calculate the stress intensity factor for the edge crack of a cold expanded hole.───对于残余应力场已知的冷胀孔,用本文方法求孔单边穿透裂纹的应力强度因子是简单和准确的。
An analytical solution for the mode I stress intensity factor at the crack tip of a symmetric parabolic crack is thus obtained.───得到了含轴对称抛物线曲裂纹平面弹性问题的曲裂纹尖端I型应力强度因子的解析表达式。
The boundary integral method is applied to the analysis of opening displacement and stress intensity factor of surface crack.───用边界积分方法,分析表面裂纹的张开位移和应力强度因子。
The boundary collocation method is used to calculate the relationship between the stress intensity factor and section geometry.───最后用边界配置法求解了应力强度因子与截面几何尺寸之间的关系。
stress and stress intensity factor near the tip of mode I V-notch added coating are analyzed numerically.───基于有限元法,对添加涂层后的I型V形切口尖端附近的最大周向应力和应力强度因子进行了数值分析。
Moreover, the influences of varied cooling rate and amplitude on the stress intensity factor (DSIF) of crack tip are also discussed.───又探讨不同降温速度,降温幅度对裂纹尖端应力强度因子的影响。
The result shows that stress intensity factor of calculated of thickness of welding seam.
The task of determining the stress intensity factor is by no means a simple one.
The relationship between crack length and stress intensity factor or crack opening displacement is also given.
We study stress intensity factor of thick wall cylinder with cracks under dynamic load.
The applied stress intensity factor range is divided into two parts: one is the effective value responsible for crack growth and the other is the shielding value dissolved by crack surfaces contact.
A general solution and the stress intensity factor are obtained in term of series expansion, which satisfies both Laplace equation and the permeable boundary condition.
But the value of the critical stress intensity factor must be measured firstly.
A synthetic method to calculate stress intensity factor KI by use of the data obtained in the experiment of three dimensional photoelasticity is developed in this paper.
Meanwhile, we find the dynamical stress intensity factor is bigger than the statical stress intensity factor under the same conditions.
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