1) inter-particle rupture
颗粒间断裂
1.
The "black powder" could be found in Ni-based superalloy powder produced by plasma rotation electrode process(PREP),The effects of "black powder" on formation of previous particle boundary(PPB),inter-particle rupture and mechanical properies of PM superalloy were studied.
研究了用等离子旋转电极(PREP)工艺生产的镍基高温合金粉末中发现的“黑粉”及其对PM合金中形成原始颗粒边界(PPB)等异常组织,并在力学试验中造成颗粒间断裂和对性能的影响。
2.
The result shows that,the PPB is a direct factor to form inter-particle rupture.
通过对直接热等静压成形的粉末冶金高温合金力学试验断口的观察分析,阐述了粉末颗粒间断裂的形貌特征及对力学性能的影响。
2) particle fracture
颗粒断裂
1.
Influences of the reinforcement particle fracture and interface between matrix and particle debond on the strength of SiCp/Al composites were investigated.
建立复合材料屈服强度综合模型用于分析研究增强颗粒断裂和基体与颗粒的界面脱粘对SiCp/Al复合材料强度的影响;用Eshelby等效夹杂理论分析SiCp/Al复合材料受载时作用在SiC颗粒上的应力,并假设SiC颗粒失效符合Weibull分布,在综合考虑复合材料各种强化机制的基础上引入颗粒断裂和界面脱粘对材料屈服强度的影响,建立SiCp/Al复合材料的屈服强度模型并对模型进行解析。
3) intergranular fracture
粒间断裂
4) intercrystalline rupture
(晶)粒间断裂
5) interparticle spacing
颗粒间距
6) interparticle boundary
颗粒间界
补充资料:晶间断裂
intergranularfracture:沿着晶粒界间发生的断裂。
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