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首页> 外文期刊>International Journal of Damage Mechanics >On the Identification and Validation of an Anisotropic Damage Model Using Full-field Measurements
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On the Identification and Validation of an Anisotropic Damage Model Using Full-field Measurements

机译:基于全场测量的各向异性损伤模型的识别与验证

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摘要

Two different mechanical tests are performed on a laminated composite coupon to induce an anisotropic damage affecting essentially shear modulus softening. The first test is a uniaxial tension loading on a straight coupon, which is used to evaluate the damage law using a conventional approach, while the second contains a notch that enhances dramatically the strain (and hence damage) heterogeneity. A global digital image correlation approach is used to quantify the kinematic fields all along the loading path of the second experiment. Displacement fields are hence evaluated based on a finite element type discretization. A further exploitation based on the reconditioned equilibrium gap method (and without any further information) gives access to a quantitative measurement of the damage law. The latter approach makes use of a finite element model based on the very same mesh and element shape function. This full-field-based identification method compares very well with traditional techniques, up to the stage where macroscopic localization prevents their subsequent exploitations. Moreover, it is shown that neither the type of mechanical test, nor the discretization of the displacement field, affects the identification of the damage law.
机译:对层压复合材料试件进行两次不同的机械测试,以引起各向异性的破坏,从而影响剪切模量的软化。第一个测试是在笔直试样上的单轴拉伸载荷,该测试用于使用常规方法评估损伤定律,而第二个测试则包含一个缺口,该缺口可显着提高应变(从而损坏)的异质性。全局数字图像相关方法用于量化沿第二个实验的加载路径的运动场。因此,基于有限元类型离散化来评估位移场。基于修复的平衡间隙方法(无需任何其他信息)的进一步开发可提供对破坏定律的定量测量。后一种方法利用基于非常相同的网格和元素形状函数的有限元模型。这种基于全场的识别方法与传统技术相比非常好,直到宏观定位阻止其后续开发的阶段。此外,结果表明,机械测试的类型和位移场的离散化都不会影响损伤定律的识别。

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