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1)  microyield
微屈服
1.
In the case of a lower σ_a,the PMC had no effect on macroyield strength(YS) of the composite,but could raise its microyield streng.
对退火态复合材料,预力学循环对塑性变形抗力的影响主要取决于力学循环应力幅度σa:在较低σa条件下,宏观屈服强度无明显变化,而少数几个循环即可提高微屈服强度,但循环次数再增多,微屈服强度也基本不变;随σa的升高,宏观及微屈服强度均有较明显的增高;但当σa过高时,将会因微结构损伤造成宏观屈服强度和微屈服强度急剧下降,即存在一个最佳的σa,使各级塑性变形抗力达到最高。
2.
The effect of matrix,volume and dimension of reinforced particulate and heat treatment processes on microyielding behavior of the composites was studied.
采用无压渗透法制备碳化硅颗粒增强铝基复合材料,探讨了基体材料、增强相尺寸、增强相体积分数、热处理工艺等对其微屈服行为的影响。
3.
The particle reinforced MMC's microyield behavior is computed by micromechanics model.
本文采用细观力学模型 ,计算了颗粒增强金属基复合材料的微屈服行为规律。
2)  Micro-yield Strength
微屈服强度
1.
Through comparison between the micro-yield strength value of and the corresponding yield strength value of more than 130 samples, it is shown that the tedious micro-yield tests can be replaced by common and simple yield tests.
通过130多个铍试样的微屈服强度与屈服强度的比较试验证明,用常规简单的屈服强度试验代替冗长的微屈服强度试验是可能的。
2.
We research the micro-yield strength of 1Cr18Ni9Ti steel under the high temperature aging treatment,provide mechanical parameters for mechanical engineering.
测试1Cr18Ni9Ti合金钢高温时效处理状态下的微屈服强度,为工程实际提供力学参数。
3.
Dimensional stability of sub-micron Al2O3 /2024Al composites was studied by means of micro-yield strength measurement and TEM analysis.
本文利用微屈服强度测试和透射电镜分析,研究了亚微米级Al_2O_3颗粒增强2024Al复合材料的尺寸稳定性。
3)  microyield strength
微屈服强度
1.
The influence of electric filed intensity during the process of aging in electric field on the microyield strength and micro\|plastic deformation behavior of 2024 aluminum alloy was studied.
研究了电场时效处理中电场强度对 2 0 2 4铝合金的微屈服强度和微变形行为的影响。
2.
The measuring method of the microyield strength has studied with the INSTRON testing equipment.
利用INSTRON试验机研究了微屈服强度的测试方法。
4)  microyield stress
微屈服应力
5)  microyield behavior
微屈服行为
1.
The microyield behavior of the composite was investigated,and the effect of different thermal cycling treatment on the microyield behaviors of the composite was studied.
采用微屈服强度测试、透射电镜和高分辨透射电镜分析,对经过不同冷热循环工艺处理后的SiCp/6061复合材料的微屈服行为进行了研究。
6)  preyield microplasticity
屈服前微塑性
补充资料:寄微之 时微之为虢州长史。
【诗文】:
高天默默物茫茫,各有来由致损伤。
鹦为能言长剪翅,龟缘难死久搘床。
莫嫌冷落抛闲地,犹胜炎蒸卧瘴乡。
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