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首页> 外文期刊>International Journal of Fracture >A nonlocal damage model for plain concrete consistent with cohesive fracture
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A nonlocal damage model for plain concrete consistent with cohesive fracture

机译:一种与粘性骨折的普通混凝土的非局部损伤模型

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摘要

A rate-independent damage constitutive law is proposed to describe the fracture of plain concrete under tensile loading. Here, the target scale is the individual crack. In order to deal with localised damage, the model is inherently nonlocal: the gradient of the damage field is explicitly involved in the constitutive equations; it is parameterised by a nonlocal length scale which is interpreted as the width of the process zone. The model is defined so that its predictions are close to those of a cohesive law for vanishing nonlocal length scales. Therefore, the current model is plainly consistent with cohesive zone model analyses: the nonlocal length scale appears as a small parameter which does not need any specific identification. And four parameters-among which the tensile strength and the fracture energy-enable to adjust the softening cohesive response. Besides, a special attention has been paid to the shape of the initial damage surface and to the relation between damage and stiffness. The damage surface takes into account not only the contrast between tensile and compressive strengths but also experimental evidences regarding its shape in multiaxial tension. And the damage-stiffness relation is defined so as to describe important phenomena such as the stiffness recovery with crack closure and the sustainability of compressive loads by damaged structures. Finally, several comparisons with experimental data (global force/opening responses, size dependency, curved crack paths, crack opening profiles) enable to validate qualitatively and quantitatively the pertinence of the constitutive law in 2D and 3D.
机译:提出了一个速率无关的损伤本构法,以描述拉伸载荷下普通混凝土的骨折。这里,目标尺度是单独的裂缝。为了处理局部损坏,该模型本质上是非本地的:损伤场的梯度明确涉及组成方程;它由非识别长度刻度参数化,该非识别长度刻度被解释为过程区域的宽度。定义了该模型,以使其预测靠近那些用于消失非局部长度尺度的凝聚率法。因此,当前模型与凝聚区模型分析明显一致:非识别量长度表显示为不需要任何特定识别的小参数。四个参数 - 其中拉伸强度和断裂能量 - 使得调节软化的内聚反应。此外,特别注意初始伤害表面的形状和损坏和刚度之间的关系。损伤表面不仅考虑了拉伸和抗压强度之间的对比,而且还考虑了对多轴张力形状的实验证据。并且限定了损伤刚度关系,以描述通过受损结构的裂纹闭合和压缩载荷的可持续性等重要现象。最后,具有实验数据的几种比较(全局力/开度响应,尺寸依赖性,弯曲的裂纹路径,裂缝开口曲线)使能定性和定量地验证2D和3D的本构规性。

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