1.
Calculation and Analysis of the Critical Buckling Pressure of PE Pipes with Surface Crack
含表面裂纹PE管道临界失稳压力的计算与分析
2.
Research on Assessment and Regulation Methods for Power System Voltage Instability Risk;
电力系统电压失稳风险评估及调控方法研究
3.
Study on pressure drop of non-stationary filtration with fiber media
纤维过滤介质非稳态过滤压力损失的研究
4.
The Interactive Buckling of T-Section Columns with Axial Compress;
T形截面轴心受压压杆的局部失稳与整体失稳
5.
Improving buckling critical stress of sheet with the elastic pressure on the surfaces of sheet and it's application
板面弹性压板力对提升板料失稳临界应力的作用及其应用
6.
Experimental Study of Compressive Buckling for an Axial Compressible Rod
轴向可压缩压杆的压缩失稳实验研究
7.
Air system vaives world famous prodution. High efficiency and reliability.
先进的气阀,进气调整范围0-100%压力损失小,动作稳定,寿命长。
8.
Analysis of Elastic-Plastic Buckling of Member with Residual Stresses Wrapped by Carbon Fibre under the Axial Compressive Load and Bending Moment;
碳纤维增强有残余应力压弯构件弹塑性失稳分析
9.
pseudo steady-state pressure distribution
拟稳定状态压力分布
10.
The stresses and strarns of cylindrical spherical and paraboloid shells can be solved when the drawing unsteadiness happen.
文中就圆柱壳形、圆球壳形、抛物线壳形封头等压力容器的失稳状态,分别求出它们的应力和应变。
11.
Analysis the development of test equipment of testing buckling column's critical load based on the definition of the compressive column's stability
基于压杆失稳定义的稳定试验装置研制过程
12.
Computation of Controlling Unstable Equilibrium Point Corresponding to Instability Mode of Transient Voltage
暂态电压失稳模式的主导不稳定平衡点计算
13.
Failure Detection Experimental System of DC Stabilized Power Supply;
直流稳压电源失效机理及实验的研究
14.
The Analysis of "Plastic Instability" Phenomenon of the Equal-thickness Spherical Shell under Uniform Intrinsic Pressure;
均布内压等厚球壳局部塑性失稳研究
15.
Analysis of Elastic-Plastic Buckling of Component under the Axial Compressive Load and Bending Moment
基于ANSYS压弯构件弹塑性失稳分析
16.
Study on the Buckling of Non-uniform Cross-section Slender Compressive Bar with Centrally Load
变截面细长压杆失稳基本理论的研究
17.
A deformed-status distinguish method for in-plane buckling of symmetrical press-bending arches
对称弯压拱面内失稳类型的变形判断
18.
It can not require a pressure loss.
它不会造成压力损失。