1) loading rate effect
加载速率效应
1.
It is suggested that not taking into account the loading rate effect of steel should be the major reason.
分析了目前钢结构防断选材中应用的脆性转变温度方法的局限性,扼要介绍了材料断裂韧度的温度效应和加载速率效应。
2) effect of loading rate
加载率效应
1.
Six problems, such as the macro-response of rock and soil material’s micro-parameters, inner scale ratio, size effect, effect of loading rate, engineering characteristics of material affected by particle size and the rupture process of rock w.
在此基础上,针对岩土材料细观参数的宏观响应、岩土材料内尺度比、尺寸效应、加载率效应、颗粒大小对材料工程性质的影响和岩石材料破裂过程及其分形特性等六个问题设计了专门的数值虚拟试验,分析所得主要结论如下: 1、一个简单的颗粒间力学关系可以反映一个复杂的力学过程。
3) stress loading rate
应力加载速率
1.
In order to acquire the yield law of gelled waxy crude oil and quantitatively establish the relationship between stress loading rate and yield time,the yielding property of three types of gelled waxy crude oil,i.
针对胶凝含蜡原油的屈服规律问题,定量描述了应力加载速率与屈服时间之间的关系。
4) Rate summation effect
速率累加效应
1.
Rate summation effect on mean daily development rates in development process of insect;
昆虫发育过程中的速率累加效应对其日均发育率的影响
5) loading rate
加载速率
1.
Molecular-dynamics simulation of influence of loading rate and defects on crack growth;
加载速率和点缺陷对裂纹扩展影响的原子级模拟
2.
Effect of loading rate on fracture toughn ess of a ship-building steel;
加载速率对船用钢断裂韧性的影响
3.
Influence of loading rate on stress and strain distribution a notchs in front of in notched specimen;
加载速率对缺口前应力、应变分布的影响
6) loading rates
加载速率
1.
Experimental analysis on mechanical effects of loading rates on limestone;
加载速率对石灰岩力学效应的试验研究
2.
Both stress-strain relation curve and rupture condition of the rubber were attained under different temperatures and different loading rates.
得到了不同温度和不同加载速率条件下材料的应力-应变关系曲线和材料的破坏条件,由此分析了高温和低温的温度变化条件及加载速率对材料力学性能的影响,得出天然橡胶材料在大变形条件下的温度和加载速率敏感特性。
3.
The compressive tests of 63 concrete specimens under four lateral stress levels and four loading rates were completed using the static-dynamic triaxial test system for concrete in Dalian University of Technology.
本文利用大连理工大学的大型混凝土静、动三轴试验系统,完成了4种侧应力等级和4个数量级加载速率的混凝土受压试验试件共63个。
补充资料:加和效应
分子式:
CAS号:
性质:两个具有时间关联特性的入射粒子在探测器中被作为一次事件记录的现象。在能谱上观察到的峰称为加和峰,其能量为两个粒子的能量之和。总的结果是使计数丢失。可通过调节放射源与探测器的距离减小或增强该效应。
CAS号:
性质:两个具有时间关联特性的入射粒子在探测器中被作为一次事件记录的现象。在能谱上观察到的峰称为加和峰,其能量为两个粒子的能量之和。总的结果是使计数丢失。可通过调节放射源与探测器的距离减小或增强该效应。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条