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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Numerical, experimental, nondestructive, and image analyses of damage progression in cast A356 aluminum notch tensile bars
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Numerical, experimental, nondestructive, and image analyses of damage progression in cast A356 aluminum notch tensile bars

机译:铸造的A356铝制缺口拉杆的损伤进程的数值,实验,无损和图像分析

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摘要

Void nucleation, growth, and coalescence in A356 aluminum notch specimens was determined from a combination of experiments, finite element analysis, nondestructive analysis, and image analysis. Notch Bridgman tension experiments were performed on specimens to failure and then other specimens were tested to 90%, 95%, and 98% of the failure load. The specimens were evaluated with nondestructive X-ray tomography and optical image analysis. Finite element simulations of the notch tests were performed with an elastic-plastic internal state variable material model that incorporated the pertinent microstructures (silicon particle volume fraction and size distribution and porosity volume fraction and size distribution). Parametric finite element simulations were performed to give insight into various initial conditions and responses of the notch tensile bars. The various methods all corroborated the same damage progression. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 62]
机译:通过实验,有限元分析,无损分析和图像分析相结合,确定了A356铝缺口样品中的空核,长大和聚结。在试样上进行Notch Bridgman拉伸试验,直至破坏,然后对其他试样进行90%,95%和98%的破坏载荷测试。使用无损X射线断层扫描和光学图像分析对标本进行评估。缺口测试的有限元模拟是使用一种包含相关微结构(硅颗粒体积分数和尺寸分布以及孔隙率体积分数和尺寸分布)的弹塑性内部状态可变材料模型进行的。进行了参数化有限元模拟,以深入了解缺口拉伸杆的各种初始条件和响应。各种方法都证实了相同的破坏进程。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:62]

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