1)  Research of cracking mechanism
碎裂机理
2)  fragmentation
碎裂
1.
A better transition layer material was confirmed,which overcame the problem of fragmentation and lamination of PDC.
确定了一种效果较好的过渡层,较好地解决了金刚石/硬质合金复合片碎裂及分层的问题。
2.
The fragmentation influences the char combustion behavior in a fluidized bed combustor.
利用下行气流振动床代替流化床 ,研究了煤的碎裂特性 。
3.
Based on the perturbative QCD predictions of gluonic distributions and branch cross section of the J/(?) decay via hadronic, electromagnetic,and radiative channels, the strict solutions of LUND area law of string fragmentation had-ronization are used to treat nonperturbative hadronic production processes, a possible description and Monte Carlo packet for the J/(?) hadronic decay are obtained.
基于微扰QCD所预言的J/ψ衰变道胶子分布及其分支截面和LUND弦碎裂模型强子化面积定律的严格解,得到J/ψ所有衰变模式的微扰和非微扰过程的一种可能的描述,相应的Monte Carlo产生器LUARLW所作的初步模拟结果与BES获取的J/ψ数据的多种带电粒子谱分布和事例形状拓扑分布符合较好。
3)  Break
碎裂
1.
An Analysis on Break of Separating Ring for Horizontal Concasting and Improved Measures;
水平连铸分离环碎裂的分析和改进措施
4)  fracture
碎裂
1.
The results show that the fracture process of weathering is a fractal one.
因此,分形维至少有2个数值,一为结晶颗粒粒度分形维,一为碎裂颗粒粒度分形维。
2.
Failures of IC smart cards,caused by fracture of thin/ultra-thin Si chip,break of wire bonding or ESD etc.
分析研究了IC智能卡芯片碎裂、引线键合断裂、静电放电损伤等失效模式和失效机理,并结合IC卡制造工艺和失效IC卡的分析实例,对引起这些失效的根本原因作了深入探讨,就提升制造成品率、改善可靠性提出应对措施。
3.
The fracture of thin/ultra-thin silicon dies accounts for half of the failures of IC cards,and its failure modes and failure mechanism are not well understood then.
薄/超薄芯片的碎裂占据IC卡早期失效的一半以上,其失效模式、失效机理亟待深入研究。
5)  Cataclastic rock mass
碎裂岩体
1.
Based on the results of underground observations and model tests of simulated materials of immediate roof, it is expounded that fragmented roof belongs in cataclastic rock mass,and its caving characteristics is clarified in this paper too.
本文根据直接顶岩体冒顶现场实测和相似模拟实验结果,阐明综采面破碎顶板的碎裂岩体属性与冒顶特征,并建立碎裂岩体冒顶力学模型,深入研究冒顶本质原因和控制原理。
6)  breakage function
碎裂函数
参考词条
补充资料:碎裂岩
碎裂岩
cataclastic rock

   脆性破裂、剪切和研磨作用而产生的一种固结的细粒岩石。广泛分布于地壳浅层断层带内,由碎斑和基质组成。碎斑是原岩破裂的角砾或矿物的碎粒,基质主要是原岩的微细碎砾,又称碎基 ,其粒径小于2毫米 。碎斑的形状与断层带的力学性质以及原岩的物理性质有关。碎裂岩一般具有碎斑结构、碎粒结构,块状构造和带状构造,球对称组构或低密度的优选方位。按碎斑与基质的含量比例,可将碎裂岩分为初碎裂岩,基质占10%~50%;碎裂岩,基质占50%~90%,主要粒级在0.5~1.0毫米之间 ;超碎裂岩 ,基质为90%~100%,主要粒级小于0.1毫米。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。