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Nonlocal anisotropic damage model and related computational aspects for quasi-brittle materials

机译:准脆性材料的非局部各向异性损伤模型及相关计算方面

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摘要

A three-dimensional damage model with induced damage anisotropy is proposed for quasi-brittle materials such as concrete. The thermodynamics framework is used, considering then a single second-order tensorial damage variable whatever the intensity and the sign of the loading. The quasi-unilateral conditions of micro-cracks closure are written on the hydrostatic stress only. Altogether with the consideration of damage laws ensuring a damage rate proportional to the positive part of the strain tensor this is sufficient to model a strongly different behavior due to damage in tension and in compression. A proof of the positivity of the intrinsic dissipation due to such an induced anisotropic damage is given. An efficient scheme for the implementation of the damage model in commercial Finite Element codes is then detailed and numerical examples of structural failures are given. Plain concrete, reinforced and pre-stressed concrete structures are computed up to high damage level inducing yielding of the reinforcement steels. Local and nonlocal computations are performed. A procedure for the control of rupture is proposed. It is a key point making the computations with anisotropic damage truly efficient.
机译:针对混凝土等准脆性材料,提出了具有诱导损伤各向异性的三维损伤模型。使用热力学框架,然后考虑单个二阶张量损伤变量,而不考虑载荷的强度和符号。微裂纹闭合的准单边条件仅写在静水应力上。总的来说,考虑到破坏定律,要确保破坏率与应变张量的正部成比例,这足以模拟由于拉伸和压缩破坏而产生的截然不同的行为。给出了由这种诱发的各向异性破坏引起的固有耗散的正性的证明。然后详细描述了在商业有限元代码中实施损伤模型的有效方案,并给出了结构破坏的数值示例。计算普通混凝土,钢筋混凝土和预应力混凝土结构的破坏程度高,从而导致钢筋屈服。执行本地和非本地计算。提出了控制破裂的程序。这是使各向异性损伤计算真正有效的关键。

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