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1)  metallic rod
细杆
1.
Moreover,transfering vibration function of bending metallic rod was very good by experiment and model analysis.
通过均匀细杆纵振动理论,模拟分析和实验测量研究了部分弯曲细杆的纵振动固有频率。
2)  little plastic pin
塑料细杆
3)  slender rod
细长杆
1.
Dynamics Analyzing on Slender Rod Machining by Axial Turn-milling
轴向车铣细长杆的动力学分析
2.
The experiment on finish machining the slender rod with weak rigidity by the orthogonal turn milling and the turning were done respectively.
分别采用正交车铣和车削对弱刚度细长杆类零件进行了精加工试验研究,试验结果表明,对弱刚度细长杆采用正交车铣加工比传统车削加工能够得到更小的表面粗糙度值和更高的加工精
3.
According to horizontal vibration theory of beam of u- niform section,the kinetic model of the orthogonal turn-milling slender rod is presented,and according to the peculiarity of the turn-milling cutting force,the simplify cutting force model is presented.
根据等截面梁横向振动理论,建立了正交车铣加工细长杆的动力学模型,并根据车铣切削力的特点,建立了切削力的简化模型。
4)  the slender hammering stem
细锤杆
1.
The structure of the slender hammering stem with elastic supporting device isdesigned in this paper,a multiple degree of freedom vibration dynamic model is set up.
在设计出带弹性支承装置细锤杆锻锤的基础上,将其简化为一多自由度振动力学模型,并以被改造的2T气液锤锤头为例,对该模型进行了理论分析与计算。
5)  Rod [英][rɔd]  [美][rɑd]
视杆细胞
1.
Recording Rod ON and OFF Responses in ERG and Multifocal ERG;
视网膜电图和多焦视网膜电图视杆细胞ON和OFF反应记录研究
2.
The recording conditions and sensitivity of rod multifocal electroretinograms;
视杆细胞多焦视网膜电图记录条件及其敏感性研究
6)  slender compressive rod
细长压杆
1.
The curvature formula of tiny curved rod,together with the vector method of area,is applied to inference for Euler formula about critical load of slender compressive rod which one end is fixed and another is free.
利用杆件微弯的曲率公式和面积向量法,求得一端固定、一端自由压杆的临界压力欧拉公式,为该约束条件下细长压杆的临界压力公式推导提供了另一种方法。
2.
The equilibrium condition of slender compressive rod with tiny curvature,together with the curvature formula,is applied to inference for the equations both of slope and deflection,which apply to all kinds of slender compressive rod.
利用细长压杆微小弯曲的平衡条件和曲率计算公式,得到了统一的压杆转角方程和挠曲线方程,并将其用于几种常见支承条件的细长压杆,方便地求得了相应压杆的临界压力欧拉公式。
补充资料:染料细粉及超细粉
分子式:
CAS号:

性质:非水溶性染料或不易溶染料常采用的剂型。如分散染料、还原染料等对粒度及粒度分布均有一定要求,要求相对集中,过细、过粗,均对使用有不良影响。染料生产企业对本企业的产品均作了规定。这些染料产品一般多在2μm到上到4μm范围内,如对某些分散染料要求控制在1μm左右,分散性能4~5级,还原染料也与分散染料近似,故有超细粉之称。为使染料产品达到上述细度,常采用万能粉碎机或砂磨、球磨等进行粉碎。

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