1.
Research on Optimal Design of Longitudinal Prestressed Reinforcement Layout for Long Span PC Beam Bridge
大跨径预应力混凝土梁桥纵向预应力筋优化布置研究
2.
The Stress Loss and Optimal Design in Longitudinal Prestress for Long Spans PC Continuous Rigid-Framed Bridge;
大跨径PC刚构桥纵向预应力损失及优化设计
3.
Research on the Optimal Design of Long Longitudinal Prestressed Reinforcement Layout for PC Bridge
PC梁桥长束纵向预应力筋优化布置研究
4.
The comparative Analysis between the beam strenghened by CFRP sheets prestressed by the breadthwise WSGG anchor and along the beam by the jack
纵向和横向预应力CFRP加固混凝土梁对比分析
5.
Eular crippling stress
(纵向弯曲)欧拉临界应力
6.
Prestressed Concrete Box Girder Segmental Anchoring Tensioned Floor Surface Analysis and Processing of Longitudinal Cracks
预应力砼箱梁节段张拉锚固面底板纵向裂缝分析与处理
7.
Analysis of Vertical and Horizontal Response of Pile to Impulse Force;
冲击荷载作用下桩的纵向和横向动力响应
8.
A Study on Longitudinal Dynamical Regulation of Anchor System with Small Strain;
锚杆锚固系统低应变纵向动力响应规律的研究
9.
Simulation on Dynamic Welding Longitudinal Stress-Strain Distribution
焊接纵向应力应变动态分布规律的数值模拟
10.
The Study of Preventing Longitudinal Cracks of Circular Prestressed Concrete Pole
环形预应力混凝土支柱的防纵裂技术研究
11.
Calculation of Protective Layer Thickness for Preventing Longitudinal Cracks of Prestressed Concrete T-Beam
预应力混凝土T梁防纵裂的保护层厚度计算
12.
Analysis of the Longitudinal Thermal Stress of the Lining Structure of Subway Tunnel during Traffic Operation
运营期间地铁隧道衬砌结构纵向温度应力分析
13.
The vertical tendon had to be prestressed twice to ensure effective prestressing.
竖向预应力应两次张拉以保证有效预应力。
14.
engine mud sill
钻机动力机下纵向底梁
15.
Application of Automatic Feeding Process of Aluminium Fluoride on Longitudinal Pre-Baking Aluminum Smelting Pots
氟化铝自动添加技术在纵向预焙铝电解槽上的应用
16.
New method for landslide forecast and its application based on longitudinal data and catastrophic theory
基于纵向数据与突变理论的边坡滑坡预测新方法及其应用
17.
Research on the Prestress Losses in the Vertical Pre-stressed of PC Concrete Box Girder Bridge;
预应力混凝土箱梁桥竖向预应力损失的研究
18.
The stress distribution and shear lag coefficients can be concluded from the results of finite element calculation.
由模型计算可得到沿桥纵向的应力分布,求得剪力滞系数。