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1.
A Surface Rolling Device which Prevents the Slender Shaft from Bending Deformation
一种防止细长轴变形的表面滚压装置
2.
Experimental Study on Ultrasonically Assisted Turning Slender Shaft
细长轴超声波辅助振动车削试验研究
3.
Study on Machining Accuracy of Slender Shaft with Over-positioning
过定位对细长轴加工精度的影响研究
4.
The Way of Improving Chopping and Dawdling Processing Quality of the Thin and Long Stainless Steel Axis(Pipe);
提高不锈钢细长轴(管)磨削加工质量的方法
5.
On-line Compensation of Slender Shaft Diameter Error by Measuring Cutting Force
基于切削力测量的细长轴加工误差在线补偿
6.
Elaboration of processing methods of slender axle-like parts on center lathe
细长轴类零件在普通车床上的加工方法
7.
Improvement Measures of Precision Turning of Slender Shafts on lathe
在普通车床上精密车削细长轴的改进措施
8.
In addition, author tested cylidrical error and surface roug hness of long and thin cylidricity turned in technology system with the magnetic field.
此外也进行了带磁车削细长轴时圆柱度和加工表面粗糙度的研究。
9.
Spindly Shaft Rolling Machining Finite Element Analysis and Technical Parameter Designation;
细长轴表面滚压加工有限元分析及工艺参数研究
10.
Research on Lateral Vibration for Slightness Shafting with Elastic Base on the Hovercraft;
具有弹性基础的气垫船细长轴系横向振动特性研究
11.
Study on Improving Turning Accuracy of Slender Shaft by Using Error Compensation
用误差补偿法提高细长轴车削加工精度的试验研究
12.
Numerical Study on Unseparated Flow for Slender Axisymmetric Body;
轴对称细长体无分离流动的数值模拟
13.
Precision round hole and cylindrical grinding: ultra-long and ultra-thin axis grinding, with precision to2μ, coaxial jumping within2μ.
★ 精密内、园磨削:超长、细轴磨削,尺寸精度达到2μ,同轴跳动2μ以内.
14.
Precision cylindrical grinding: ultra-long and ultra-thin axis grinding, with precision to2μ, coaxial jumping within2μ.
★ 精密外园磨削:超长、细轴磨削,尺寸精度达到2μ,同轴跳动2μ以内.
15.
semimajor axis of ellipsoid
椭球长半轴,地球长半轴
16.
At the onset of germination, the hypocotyl elongates rapidly by cell enlargement.
萌发开始时,下胚轴依靠细胞增大而迅速伸长。
17.
papillary cells existed in adaxial petal epidermis and stigmas.
在花瓣的近轴面和柱头表面有长乳突状细胞。
18.
Relationships between the minor axis semidiameter and major axis semidiameter have been empirically determined for different structural detail geometries.
对于不同结构细节的几何形状,已经确定了短轴和长轴半径之间的关系。