首页> 外文会议>International Symposium on Structural Engineering for Young Experts; 20060818-21; Fuzhou amp; Xiamen(CN) >Study on The Fracture and Damage Mechanism of Bond-Slip Behaviors between Shaped Steel and Concrete in SRC Structures
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Study on The Fracture and Damage Mechanism of Bond-Slip Behaviors between Shaped Steel and Concrete in SRC Structures

机译:SRC结构中型钢与混凝土粘结滑移的断裂与损伤机理研究

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摘要

The bond-slip behaviors between shaped steel and concrete are investigated using comparative tests of pull-out,push-out,pull-push cycle,short-column and pull-out of the flanges or/ and webs insulated. Based on the experimental results measured in macroscopic and microscopic way, the relationship between internal microphysical state change and macro-mechanical response of the interface of shaped steel and concrete is discovered. The damage concepts are extended to characterize the microphysical state evolution and resulting in the bond-slip failure of the bond interface of shaped steel and concrete. The mechanism of interfacial micro-crack process and bond-slip failure between steel and concrete are investigated in fracture and damage mechanics. A failure model of bond interface of steel and concrete is proposed. The calculating method of fracture toughness of bond interface is provided, and the main parameters significantly affecting the fracture toughness are discussed. The characteristics of bond interface of shaped steel and concrete are analyzed. The influence of interfacial micro-crack process on bond-slip fracture toughness is researched. The model of banded micro-crack fracture process zone of bond interface of steel and concrete is put forward,and the sizes of fracture process zone are obtained from the banded fracture process zone model. In the light of the load-strain curves obtained in the bond-slip tests,the influence of fracture process zone on the bond-slip fracture toughness is modified using the critical fracture toughness. All these may contribute to the further analysis of bond-slip behaviors and the improvement of calculating theories in steel reinforced concrete composite structures.
机译:通过对法兰或/和绝缘腹板的拉拔,推拉,推拉循环,短柱和拉拔的对比测试,研究了异型钢与混凝土之间的粘结滑移行为。根据宏观和微观方法的实验结果,发现了型钢与混凝土界面的内部微观物理状态变化与宏观力学响应之间的关系。损伤概念被扩展以表征微观物理状态的演变,并导致型钢和混凝土的粘结界面粘结滑移破坏。在断裂和损伤力学中研究了界面微裂纹过程和钢与混凝土之间粘结滑移破坏的机理。提出了钢与混凝土粘结界面的破坏模型。提供了粘结界面断裂韧性的计算方法,讨论了影响断裂韧性的主要参数。分析了异型钢与混凝土的粘结界面特性。研究了界面微裂纹工艺对粘滑断裂韧性的影响。提出了钢与混凝土粘结界面的带状微裂纹断裂过程区模型,并从带状断裂过程区模型中得出了断裂过程区的大小。根据结合滑动试验获得的载荷应变曲线,利用临界断裂韧性修正了断裂过程区对结合滑动断裂韧性的影响。这些都可能有助于进一步分析粘结-滑移行为,并改善钢-混凝土组合结构的计算理论。

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