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1.
The Crack-mending and Intensifying of Cantilevered End of Cantilever Hollow Pier
大悬臂空心墩悬臂端结构裂缝病害的加固处理
2.
Application for Pre-deviation Compensation for Cantilever End Displacement of Steel Truss Arch Bridge in Non-stress Closure Construction
预偏补偿悬臂端位移在钢桁架拱桥跨中无应力合龙施工中的应用
3.
A case study for Nanning Bridge, the first long span unsymmetrical extroversion arch bridge with curve beam in the world is given.
利用几何方法推导了空间钢箱拱肋节段拼装误差在拱肋最大悬臂端的累积规律。
4.
Remove rear lower suspension arm bolts.
拆卸后下端悬吊臂螺栓。
5.
Analytic Solution to Piezoelectric Cantilever Beam with Concentrated Force at Free End;
悬臂压电梁自由端受集中力的解析解
6.
DYNAMICAL BEHAVIORS OF RESTRAINED CANTILEVER PIPE CONVEYING FLUID
端部约束悬臂输流管道的动力学特性
7.
These capacity charts show the figures when handling load off main boom head sheaves in a case of mounting fly jib on top of main boom.
这些功能表显示了在主悬臂顶端安装飞臂情况下将负载操作离开主悬臂头滑轮时的数据。
8.
Remove the upper suspension arm nut and bolt at the axle bracket.
从车轴支架上拆去上端悬吊臂螺帽和螺栓。
9.
Remove the lower suspension arm nut and bolt from the axle bracket.
从车轴支架上拆去下端悬吊臂螺帽和螺栓。
10.
Position the lower suspension arm at the axle bracket and rear bracket.
把下端悬吊臂放在车轴支架和后侧支架上。
11.
Real Time Correction System of Probe Tip Shaking of Long Cantilever CMM
长悬臂三坐标测量机测端抖动实时修正系统
12.
Considering the difference of cantilever plate between the end and the middle of the concrete box bridge, the chief influence factor is studied.
考虑箱梁端部和跨中悬臂板根部的区别,研究了影响变厚度悬臂根部弯矩的主要因素。
13.
A projecting structure, such as a beam, that is supported at only one end.
悬臂仅在一端被支撑的一个突出结构,如一段横梁
14.
The Energy Decay of Cantilever Timoshenko Beam with Local Viscoelastic Damping on the Free End
自由端具有局部粘弹性阻尼的悬臂Timoshenko梁的能量衰减问题的研究
15.
"There are three types of coil-spring front suspension. In one, the coil spring is located between the upper and lower control arms, and the lower control arm has one point of attachment to the car frame."
有三种螺旋弹簧前悬挂结构:一,螺旋弹簧安装在上、下控制臂之间,下控制臂的一端与车架相连;
16.
To construct as or in the manner of a cantilever.
作为一条悬臂或以悬臂的方式建造.
17.
This paper reports on the experimental results of quadrantal circular beams with warious tip mass subjected to radial impact at the tips.
本文报导了具有不同端部质量的90°弧悬臂梁端部受冲击载荷的实验结果.
18.
More crest bone absorption were noticed at the implants near cantilevers.
非悬臂梁末端种植体齿槽骨吸收与前部种植体齿槽骨吸收比较差异无显著意义。