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Anisotropy Influence on the Failure of Ti6A14V Sheets Deformed at Room and Elevated Temperature

机译:对Ti6a14V纸张变形失效的各向异性影响在室内和升高的温度下

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Ti6A14V sheets are usually difficult-to-form at room temperature as a consequence of their strong basal texture and hcp crystal lattice. The heating of the alloy below the beta transus temperature is recognized to enhance its formability, reducing the flow stress and increasing the ductility. However, the influence of the sheet anisotropy on the material failure hasn't been studied yet. To this aim, the paper presents the anisotropy influence on the failure characteristics of Ti6A14V titanium alloy sheets making use of tensile tests carried out at room temperature and 600°C on smooth, notched and shear samples in order to have various stress states. The fracture strain is measured and the effect of the sample orientation and stress state is identified. To determine the actual stress state for each sample geometry, a numerical model is set up and calibrated using elasto-plastic data from uni-axial tensile tests on smooth samples. Finally, the fracture surfaces are observed through SEM analysis to explain the failure characteristics.
机译:Ti6a14V板在室温下通常是难以形成的,因此其强大的基础纹理和HCP晶格。识别出低于β转换温度的合金的加热以提高其可成形性,降低流量应力并增加延展性。然而,尚未研究纸张各向异性对材料故障的影响。为此目的,本文提出了对Ti6a14V钛合金片材的失效特性的各向异性影响,在室温下在室温下进行的拉伸试验和600℃的光滑,切口和剪切样品进行了各种抗拉试验,以具有各种应力状态。测量断裂菌株并鉴定样品取向和应力状态的效果。为了确定每个样品几何形状的实际应力状态,使用来自单轴拉伸试验的弹性塑料数据来设置和校准数值模型。最后,通过SEM分析观察断裂表面来解释故障特征。

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