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Bond role in strut-and-tie systems modelling reinforced-concrete members

机译:钢筋混凝土构件建模中的拉杆和拉杆系统中的粘结作用

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The unknown a priori position of bond-related joints in the strut-and-tie systems used in reinforced-concrete modelling is determined in this paper by developing a simple model concerning a single stiff and strong deformed bar (tie), that is embedded in a reinforced concrete member. The model takes into account the bonded length, the bond-stress profile and the nature of the bond along the tie (basically by interlock due to the formation of microcracks and microstruts, as well as by adhesion). The interaction between the position of the joint and the yielding of the reinforcement around the bonded tie, as well as the shares of the pull-out force resisted by interlock and by adhesion, are dealt with in detail, in order to maximize the bearing capacity of the tie within the static approach to limit analysis. Any tie, like those found in the strut-and-tie systems used in representing 2D regions, can be treated in accordance with the proposed model, provided that no direct confinement be applied by the supports or by the loads. The model may be a useful tool to evaluate the bearing capacity of reinforcedconcrete structural systems.
机译:本文通过开发涉及单个刚性和强力变形钢筋(扎带)的简单模型,确定了钢筋混凝土建模中使用的拉杆和扎带系统中与粘结有关的接头的未知先验位置。钢筋混凝土构件。该模型考虑了粘结长度,粘结应力分布以及沿粘结带的粘结性质(基本上是由于微裂纹和微支撑的形成,以及由于粘结而产生的互锁)。为了最大程度地发挥承重能力,将详细处理接头位置与绑扎带周围钢筋的屈服之间的相互作用,以及因互锁和粘附而抵抗的拉拔力的份额。限制方法的静态方法中的关系。任何领带,如在表示2D区域所使用的拉杆和领带系统中发现的领带,都可以根据建议的模型进行处理,只要支撑件或荷载不施加直接约束即可。该模型可能是评估钢筋混凝土结构系统承载能力的有用工具。

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