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1)  adiusting screw in rolling mill
压下丝杠
2)  aerostatic lead screw
气体静压丝杠
1.
The relationship between error balance on aerostatic lead screw and effective length of nut, the error cycle of screw was analyzed.
建立了丝杠螺母副的传动误差计算模型,并在此基础上分析了气体静压丝杠的误差均化作用与螺母有效长度、丝杠误差周期的关系,为气体静压丝杠螺母副的设计加工提供了必要的基础。
3)  lead screw
丝杠
1.
Based on the analysis of the pitch error measure theorem for screw,the dynamic measure system of pitch error for lead screw constituted by single-chip microcomputer is discussed.
在分析丝杠螺距误差测量基本原理的基础上,简述了由单片微机组成的滚珠丝杠螺距误差动态测试系统,并开发了计算机辅助自动分析测控软件。
2.
The reason of different surface quality between two sides of groove while whirlwind milling the lead screw is analyzed, and the special facing cutter for milling the lead screw is designed.
分析了旋风铣削丝杠螺纹时牙槽两侧表面质量差异的原因 ,设计了加工丝杠螺纹的专用铣刀
3.
This paper has a study on error compensation theory of lead screw transmission and discuss the method to measure the screw error and establish the error compensation table.
研究了数控机床丝杠传动误差补偿原理 ,探讨了丝杠误差测量及制订误差补偿表的方法 ,实现了数控机床丝杠误差正反双向补偿功能 ,提高了机床定位精
4)  Screw [英][skru:]  [美][skru]
丝杠
1.
Conditions of Effect of Screw Torsion Deformation to Transmission Rigidity;
丝杠扭转变形对传动刚度影响的条件
2.
Influence of Torsion Deformation of the Screw on Electromechanical Rigidity;
滚珠丝杠扭转变形对机电综合传动刚度的影响
5)  feed screw
丝杠
1.
The automatic demolding mechanism with feed screw of ball bearing and gear with cavity is used in the mould, and through disconnecting the plastics from cavity smoothly by rotation of the cavity with screw, the question of demolding is resolved.
该模具采用滚珠丝杠、型腔齿轮自动脱模机构,通过螺纹型腔旋转使注塑件顺利脱离型腔,解决了螺纹脱模问题。
6)  leadscrew
丝杠
1.
Improvement of adjust leadscrew of four-roll crusher used in sinter plant;
烧结厂破碎机调整丝杠的改进
2.
The force-induced deformation of a precision long leadscrew during grinding is theoretically analyzed, and according to the grinding complex usually adopted in practice, computer simulation of force-induced deformation is carried out.
对精密长丝杠磨削过程中的力变形进行了理论分析,根据实际加工中经常采用的磨削工艺系统对磨削过程进行了力变形仿真,并提出了利用力变形仿真对中心架的数量与位置进行优化的方法。
补充资料:冲击波超压与动压

[解释]:  核爆炸产生的高温、高压火球膨胀,在周围介质中形成连续向外传播的压力脉冲(或冲击波),冲击波阵面传播到空间某点时,超过周围环境大器的压力称超压;空气粒子高速随波阵面运动产生的冲击压力称动压。超压和动压都以帕斯卡(Pa)为主单位。超压随时间的变化取决于爆炸威力、距爆点的距离和爆心周围的介质情况。特定地点的峰值超压一般出现在冲击波阵面到达该点的瞬间,超压在该点的持续时间称为正压作用时间。尔后,该点的压力下降到低于周围压力,称为负压,再逐渐回升到周围压力值。对人员的直接冲击伤,超压为20—29千帕可引器轻度伤;29—59千帕可导致中度伤;59—98千帕可造成重度伤;大于98千帕可造成极重度伤。动压为10—20千帕可造成中度伤;20—39千帕可造成重度伤;大于39千帕可造成极重度伤。动压的推动、抛掷和超压的挤压会造成物体变形和毁坏。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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