1)  Ramets-generated shrub
萌生灌丛
2)  Initiation
萌生
1.
Initiation and Early Propagation of Short Fatigue Cracks on Weld Metal of 1Cr18Ni9Ti Pipes;
1Cr18Ni9Ti管道焊缝金属疲劳短裂纹萌生与早期扩展
2.
Molecular dynamics simulation of bending crack initiation and growth of single crystal Cu;
单晶铜弯曲裂纹萌生和扩展的分子动力学模拟
3.
Developments of molecular dynamics simulation of crack initiation and growth;
分子动力学模拟在裂纹萌生和扩展中的研究进展
3)  sprouting
萌生
1.
Research advances in regeneration of woody plants by sprouting;
木本植物萌生更新研究进展
2.
The progress in the studies of the seed rain and its dispersal dynamic,the fate of post-dispersal seeds,seed germination,seedling establishment,the adaptation of seedling regeneration to predation and sprouting characteristics is briefly summarized,and the prospectivs studies in the future were also discussed.
就辽东栎的种子雨及其传播动力、种子传播后的命运、种子萌发、幼苗建立、实生更新对动物捕食的适应和萌生特性等方面进行了简要综述,并对未来研究的发展方向进行了展望。
4)  crack initiation
裂纹萌生
1.
Simulating the drill string s crack initiation and propagation which is based on ABAQUS;
基于ABAQUS模拟钻柱裂纹萌生和扩展
2.
It has been observed that one types of crack initiation mechanism at the edge of surface small hole are possible.
研究了压力容器用钢16MnR在低周疲劳下微孔(40~200μm)的裂纹萌生与扩展规律。
3.
The results show that the fatigue crack initiation is frequently associated with the slip bands and the carbides at the specimen surfaces.
研究了K40S钴基高温合金在700℃和900℃温度条件下由应变控制的高温低周疲劳行为,对疲劳断口形貌进行观察,结果表明:在高温低周疲劳加载条件下,K40S合金疲劳裂纹萌生机制为表面滑移带开裂与表面碳化物相界面开裂的综合作用;疲劳裂纹萌生与扩展方式为穿晶型,瞬断区呈现枝晶断裂特征;碳化物可作为障碍,阻碍疲劳裂纹的扩展,且为主要的二次裂纹策源地;K40S合金高温低周疲劳断裂为机械疲劳与高温环境氧化共同作用的结果。
5)  nucleation stress
萌生应力
6)  cavitation
空穴萌生
1.
In this paper, the catastrophe of a spherical cavity and the cavitation of a spherical cavity for Hooke's material with 1/2 Poisson's ratio are studied.
研究Poisson比为1/2的Hooke材料中,空穴的突变和萌生现象·求解一个球对称几何非线性弹性力学的移动边界(movingboundary)问题,空穴为球形,远离空穴处为三向均匀拉伸应力状态,在当前构形上列控制方程;在当前构形边界上列边界条件·找到了这个自由边界问题的封闭解并得到空穴半径趋于零时的叉型分岔解·计算结果显示,在位移_载荷曲线上存在一个切分岔型分岔点(或鞍结点型分岔点、极值型分岔点),这个分岔点说明在外力作用下空穴会发生突变,即突然“长大”;当球腔半径趋于零时,这个切分岔转化为叉型分岔(或分枝型分岔),这个叉型分岔可以解释实心球中的空穴萌生现
参考词条
补充资料:丛灌
1.丛生的灌木。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。