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1)  poleless transposition
无杆交叉
2)  Cross-legged [英][,krɔs 'leɡd]  [美]['krɔs 'lɛgd; 'lɛgɪd]
交叉杆
1.
Study on the Dynamic Properties of Cross-legged Parallel Machine Tool;
交叉杆型并联机床的动力学性能研究
2.
Geometrical error models of a parallel kinematics machine tool(PKM) on the basis of structural character of cross-legged are built by the differential vector method.
基于交叉杆型并联机床的并联机构特点,利用空间矢量法建立了几何误差的数学模型,由此得出了动平台中心点位姿误差与铰链点位置误差和驱动杆长度误差的关系表达式。
3)  crossing bar
交叉杆
1.
The code of the responsible unit to assemble the crossing bar is recorded through adding the seal lock, so as to have the inspection and repair unit pay atten- tion to the inspection and repair quality of the cross- ing bars.
通过增加施封锁来记录交叉杆组装责任单位的代号,促使检修单位重视交叉杆的检修质量。
2.
The dynamic force of the crossing bar of the K6 Bogie used in the 20,000 ton heavy-duty train in Da-Qin Railroad is identified in two methods:the material mechanic method and the quasi-static method.
用材料力学方法和准静态法,对大秦线2万t重载列车用转K6转向架交叉杆所受的动态载荷进行了识别,并分别编制了轴力谱、横向力谱和垂向力谱,进行了两种方法的载荷极值比较和误差分析。
4)  Crossing bar
交叉拉杆
1.
By the computer simulation and numerical calculation, not only have the free vibrating modals of the crossing bar been obtained, but also the dynamic characteristics of the crossing bar have been recognized while the car negotiates on curves and runs on straight railway with stochastic excitation.
结合交叉拉杆有限元分析,建立了完整的转K2货车动力学模型;通过数值计算,得到了交叉拉杆的各阶自由振动模态以及理想曲线通过和随机激扰下的振动与受力特性,为研究交叉拉杆结构的疲劳寿命奠定了基础。
5)  cross rod
交叉连杆
1.
By analyzing the wiper of the Benz E320 Car, in designing the drive of the wiper, use of the cross rod should provide for angles designed for the wiper advance and return movement, use of the crank rod should be increased for scouring the field of view by keeping dimensions of the brush.
在雨刮器传动机构设计中,利用交叉连杆机构能解决雨刮器往复运动中摆角的设计问题,利用曲柄连杆机构可实现在不增大雨刮器尺寸的前提下增大雨刮器擦拭视角。
6)  frame brace
交叉杆
1.
A new type of speed-up wagons equipped with type K2 bogie and 8G bogie developed and manufactured by QRRS were found to some extent, collapsing and cracks due to the quality issues on some of the frame braced devices of both two types of bogies during the fatigue test of the complete car and actual operating.
提出产生失效原因是:交叉杆纵向焊缝的裂纹主要产生在焊接接头断部焊趾处,以及焊接时流淌在钢管与扣板间隙中的小熔滴处,向钢管内部扩展;环行焊缝对接接头的裂纹主要产生于焊缝内侧凸台与钢管的未熔合边缘,并沿径向和圆周方向扩展。
补充资料:交叉
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性质:来自两个不同个体的配子结合,或为该过程的结束生成重组体。

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