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1)  Centering pressing
对心受压
2)  eccentric compression symmetric eccentric compression column
偏心受压对称配筋柱
1.
specimen of eccentric compression symmetric eccentric compression column strengthening by double encircling;
偏心受压对称配筋柱用双面围套补强实例
3)  axial compression
轴心受压
1.
Force analysis and calculation method of composite columns with core high-strength concrete filled steel tube under axial compression;
核心高强钢管混凝土柱轴心受压的机理及计算
2.
Research into reinforced concrete column with axial compression strengthened by carbon fiber clothes;
碳纤维布加固轴心受压钢筋混凝土圆柱的研究
3.
Introduction to the Japan CFST design method for axial compression members;
日本钢管砼轴心受压构件设计方法介绍
4)  eccentric compression
偏心受压
1.
Study on eccentric compression of rapidwall with concrete filled every one or more holes;
纤维增强石膏板隔孔灌注混凝土偏心受压性能研究
2.
Experimental study on deformation performance of median long columns with Yellow River silt cellular bricking structures subjected to eccentric compression;
黄河淤泥多孔砖砌体中长柱偏心受压变形性能试验研究
3.
Study of stress-strain relation of concrete filled steel tubular eccentric compression column;
钢管混凝土偏心受压应力-应变关系模型研究
5)  Eccentric pressure
偏心受压
1.
Using the real stress\|strain relation of concrete material,a method to determine the ultimate load of concrete circular\|section column under eccentric pressure is discussed,and an ultimate load versus eccentricity curve is obtained.
采用规范规定的混凝土应力 -应变关系 ,对圆形截面混凝土偏心受压构件的极限承载力作了理论分析和计算 ,得到极限承载力 -荷载偏心距曲
6)  shear center compression
剪心受压
补充资料:受压容器
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性质:又称受压容器。所有承受压力的密闭容器。压力容器形式繁多,若按压力的高低,可分低压、中压、高压、超高压容器;按承压方式可分为内压和外压容器;按设计温度高低可分低温、常温、高温容器;按安全技术管理分有固定式和移动式容器;按生产工艺、作用原理分有反应、换热、分离和贮运容器;按《压力容器安全监察规程》分有一类、二类、三类容器;按壳体几何形状分有球形、圆筒形、圆锥形容器;按制造方法分有单层、多层、锻造、绕带、绕板等容器;按使用材质分有钢制、铸铁、有色金属、非金属容器等。

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