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1)  'bamboo' shape variation error
"竹节"形误差
2)  bamboo-shaped structure
竹节形
1.
Experiment results showed that CNTs grown in NH_3 were bamboo-shaped structure at 800℃, containing about 3.
实验结果表明,以NH3为载气时,所制备的碳纳米管为竹节形结构,并且有一定量的N掺杂在其中,其质量含量大约在3。
3)  bamboo-like structure
竹节形貌
4)  slub shape
竹节形态
1.
Based on the better understanding of collecting and doubling mechanism of rotor spinning, the rotor slub shape is deeply analyzed by changing the feed roller speed three times in one slub circle.
从转杯纺的凝聚和并合机理出发,对三次喂给罗拉速度变化情况下转杯竹节纱竹节形态进行了深入分析。
5)  circular pitch error
周节误差
1.
To solve the problem of inline measuring hobs with bigger modulus in practice production,an inline measuring system for the circular pitch error of hobs is introduced.
为了解决实际生产中大模数滚刀的在线测量,提出一种滚刀容屑槽周节误差测量系统。
6)  base pitch error
基节误差
1.
Considering the randomicity of base pitch error,which is one of the main manufa.
基于其主要影响因素——基节误差的随机性,引入蒙特卡罗随机模拟方法,在一定的可靠度下定量地研究它对多齿弹性啮合效应的影响。
2.
From effects of base pitch error on radius of action, the formulas of the driven gear transient angular velocity and the impact energy are developed,which are helpful not only to analyse and calculate influence of base pitch error on the stationary and noise of mesh,but also to show clearly the changing process of driven gear angular velocity in the zone of crest action.
从基节误差对齿轮啮合作用半径变化的影响,推导出在顶刃啮合区内从动轮瞬时角速度及冲击能量的计算公式。
补充资料:竹节


竹节
stomach

  Zhujle竹节(s tomach)经浮动芯棒连轧管机(见连续轧管机轧韵乳制后出现在钢管头部(2一训和尾部(约4m)的壁厚增大现象。产生这一现象的原因同连轧管时芯棒的运动学特点有关,见连乳管变形原理。 (李冻诗、
  
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