An Integrated Model for the Probabilistic Prediction of Yield Strength in Electron-Beam Additively Manufactured Ti-6Al-4V

T. Ales
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引用次数: 3

Abstract

A complete model for the prediction of the yield strength of Titanium 6Al-4V in an additively manufactured component is presented herein. A thermal model is presented utilizing the ABAQUS simulation software to provide the process leg of the materials tetrahedron. The thermal model is fed into an implementation of the Langmuir equation that has been adapted for use in the simulation of the Electron-Beam Additive Manufacturing (EBAM) process. The predicted chemistry provided by the Langmuir equation for the Ti-6Al-4V alloy is then used in a phenomenological equation for the prediction of yield strength; a design probability curve is generated through random sampling of the thermal model. Using Weibull probability distributions, the model is verified against a rich mechanical and chemical database built from an actual EBAM build used in previous research.
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电子束增材制造Ti-6Al-4V屈服强度概率预测集成模型
本文提出了一个完整的增材制造部件中6Al-4V钛合金屈服强度预测模型。利用ABAQUS仿真软件建立了材料四面体的热模型,给出了材料四面体的加工腿。热模型被输入到Langmuir方程的实现中,该方程已被用于电子束增材制造(EBAM)过程的模拟。然后用Langmuir方程预测Ti-6Al-4V合金的化学性质,用现象学方程预测屈服强度;通过对热模型的随机抽样,生成设计概率曲线。使用威布尔概率分布,该模型与先前研究中使用的实际EBAM构建的丰富的机械和化学数据库进行了验证。
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