1) radial nanofretting

径向纳动
1.
Using a nanoindenter,the radial nanofretting behaviors of single crystal copper and Si(110) were studied under various peak indentation forces.
采用纳米压痕仪研究了单晶铜和单晶硅径向纳动的运行特点和损伤过程。
2.
The increase in both indentation force and the number of nanofretting cycles induced the radial nanofretting damage of samples.
采用纳米压痕仪和曲率半径为20μm的金刚石球形压头研究了40Cr基体和CrNx薄膜的径向纳动行为,并探讨其损伤机制。
3.
Radial nanofretting is the primary running mode of nanofretting, and it widely exists in structure beam, films, hinge, micro-bearing, micro-spring, and other main components of microelctromechanical systems (MEMS), may become a key tribolo.
而径向纳动是纳动的主要运行方式,广泛存在于微机电系统的结构梁、薄膜、铰链、微型轴承及微型弹簧等主要构件中。
2) radial run-out

径向跳动
1.
Main causes of leading roller winding,radial run-out,were discussed on both theoretical and practical bases.
从理论和实践两方面阐述了造成辊子弯曲即径向跳动的主要原因,从材料到辊子结构,多方面提出了最佳设计方案。
2.
This article introduces relation, substitution and implement of radial run-out tolerance and axiality tolerance with legend and production process.
径向跳动公差与同轴度公差是形位公差项目中常用的位置公差。
3) Horizontal variations

径向变动
4) radial flow

径向流动
1.
Because radial flow reactor has such merits as shorter flow path,lower resistance,smaller catalyst granularity and larger space velocity permitted,it has been abroad used in oil and chemical industry.
径向流动反应器具有流道短、阻力小、可使用小颗粒催化剂、空速大等优点 ,已在石油与化学工业中推广应用。
5) radial pulsation

径向跳动
1.
The reason of the radial pulsation of lathe spindle was analyzed.

分析了引起机床主轴径向跳动的原因,通过建立机床主轴径向跳动的数学表达式,研究了主轴径向跳动引起的回转误差在车削和镗削加工中对零件加工精度的影响。
2.
Taking lathe spindle rotary error as an example due to machine spindle pure radial pulsation and pure axial shifting geometric form error of workpiece cross section and the magnitude of subsequent machining error are analyzed.
以车床主轴的回转误差为例,分析了由于主轴的纯径向跳动和纯轴向窜动而造成被加工工件横截面的几何形状误差,以及由此产生的加工误差的大小,得出了这两种误差对加工精度影响的各种结果。
6) radial swing

径向摆动
1.
This article analyze the main reason of which outside diameter micrometer's radial swing and plane degree and parallel degree was in low veracity, and introduced the basic method of resolving the above problems.
文章分析了外径千分尺的径向摆动和平面度及平行度失准的主要原因 ,并介绍了修复以上问题的基本方法 ;之后详细叙述了解决以上问题的全新方案———外径千分尺自动研磨机的研制。
补充资料:因水火风动故地动
【因水火风动故地动】
经云:此阎浮提地,南北阔二万一千由旬,东西阔七千由旬,厚六万八千由旬。地下有水,厚八万四千由旬。水下有火,厚八万四千由旬。火下有风,厚六万八千由旬。风下有金刚轮,过去诸佛舍利,咸在其中。或有时大风忽动,火亦随动。火既动已,水复随动。水既动已,地即随动。故云因水火风动故地动。(梵语阎浮提,华言胜金洲。梵语由旬,华言限量,或四十里,或六十、八十里也。)
经云:此阎浮提地,南北阔二万一千由旬,东西阔七千由旬,厚六万八千由旬。地下有水,厚八万四千由旬。水下有火,厚八万四千由旬。火下有风,厚六万八千由旬。风下有金刚轮,过去诸佛舍利,咸在其中。或有时大风忽动,火亦随动。火既动已,水复随动。水既动已,地即随动。故云因水火风动故地动。(梵语阎浮提,华言胜金洲。梵语由旬,华言限量,或四十里,或六十、八十里也。)
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