1) substrate surface self transformation
载体表面自转晶
2) substrates self-transformation
载体自转晶
3) crystal surface
晶体表面
1.
In terms of distributions of macroscopic traces on crystal surfaces, a method was proposed for accurately determining the orientation of crystals for all systems and calculating trace distributions of slip planes and twin planes in both matrix and twin on three surfaces, which are normal to each other, in a single crystal.
从晶体表面宏观迹线配置,提出精确确定各种晶系晶体的取向、计算单晶3个相互垂直表面上基体和孪晶中滑移面和孪生面等边线分布的方法;作为应用实例,精确确定了一种四方点阵结构的Ti-56Al(原子分数,%)单晶的宏观取向,计算和拟合出试样3个不严格垂直表面的指数及其上全部边线分布。
5) body rotation
载体自转
1.
Since most gyroscope-free strapdown inertial navigation system (GFSINS) ignores the distance between the centric position of body and the centric position of accelerometer module, the basic equation of GFSINS faced to body rotation is deduced theoretically in this paper.
鉴于大多数无陀螺捷联惯导系统忽略载体质心位置和加速度计组件中心位置之间的距离,从理论上推导出了面向载体自转的无陀螺捷联惯导系统的基本方程,分析了载体自转对无陀螺捷联惯导系统性能的影响,为无陀螺捷联惯导系统进一步提高导航精度奠定基础。
6) surface crystallography
表面晶体学
补充资料:工业纯铝晶界间表面起泡缺陷
工业纯铝晶界间表面起泡缺陷
工业纯铝晶界间表面起泡缺陷
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