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1)  failure of peeling and shearing
剥离和剪切破坏
2)  debonding [di:'bɔndiŋ]
剥离破坏
1.
Calculation of shear capcaity is very little considered about debonding destruction.
加固梁抗剪承载力提高幅度的大小与其破坏形式密切相关,目前的加固梁抗剪承载力计算很少考虑剥离破坏对抗剪承载力的影响。
3)  debonding failure
剥离破坏
1.
Experimental study on debonding failure of steel beams strengthened with a CFRP plate;
CFRP板与钢梁粘结剥离破坏的试验研究
2.
Experimental investigation on flexural and flexural/shear crack induced debonding failure in FRP strengthened concrete beams;
FRP加固混凝土梁中弯曲和弯剪裂缝引起的FRP剥离破坏试验
3.
Study on Flexural Behavior and Debonding Failure of CFRP-strengthened RC Beams;
碳纤维片材加固钢筋混凝土梁抗弯性能与剥离破坏研究
4)  Shear failure
剪切破坏
1.
Anisotropy of shear strength of layered rocks and determination of shear failure plane;
层状岩体抗剪强度的方向性及剪切破坏面的确定
2.
Research on point safety factor of shear failure geomaterials
岩土材料剪切破坏点安全系数的研究
3.
Based upon shear strain gradient plastic theory of rock deformation localization, it is assumed that the failure pattern of rock in the shear band is shear failure.
假设剪切带内部的岩体为剪切破坏 ,利用剪切应变梯度塑性理论 ,解析得出了考虑围压和孔隙压力的岩石试件应力与应变的关系 ,解析解与众多的实验研究结果比较一致 ,围压效应和孔隙压力效应是局部化所致 ,这一研究结果对于自然灾害的防治有一定的理论和实际意
5)  debonding failure layer
剥离破坏层
1.
Trough the application of finite element software ABAQUS, FRP reinforced concrete beams, FRP reinforcement FRP sheets and FRP reinforcement AL plates are respectively studied to identify the location and size of debonding failure layer by the analysis the change law of strain curve of fiber-optic, providing the theoretical basis of this method for practical engineering applications.
因此,如何准确检测出剥离破坏层的位置和大小具有重要的工程意义。
6)  shear breakage
剪切破坏面
1.
Based on the fact that the shear breakage of the earthwork estimated on the basis of the theory(doesn t) agree with the actual shear breakage,there is no reasonable explanation.
理论判定的土体剪切破坏面与土体实际剪切破坏面不符,且无合理解释。
补充资料:铲运机剥离和采矿


铲运机剥离和采矿


铲运机剥离和采矿
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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