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DEVELOPMENT OF PROCESSING MAP FOR SUPERPLASTIC DEFORMATION OF Ti-6Al-4V ALLOY

机译:Ti-6AL-4V合金超塑性变形处理地图的开发

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A processing map plays a major role in indicating safe and failure regions of a process conducted in a hot working regime. It also shows the response of a material, by indicating changes in the microstructural evolution through temperature. In the present study, a processing map has been developed depending on the flow stress data of Ti-6Al-4V alloy sheet in a strain rate range of 10~(-2)/s to 10~(-4)/s and over a temperature range of 700°C to 900°C in order to identify the presence of superplasticity region. The flow stress data have been acquired on the basis of temperature, strain and strain rate by conducting hot uniaxial tensile tests. Based on this, a power dissipation map is obtained to show the percentage of efficiency, as it is directly related to the amount of internal entropy produced. In addition, an instability map is also obtained, as it identifies the flow instability that are to be avoided during hot working process. Finally, a processing map has been established by overlaying instability map on efficiency map. The results clearly reveal that the superplastic deformation occurs within a temperature range of 750°C to 900°C at a strain rate of 10~(-4)/s, without any flow instability in this region.
机译:处理地图在指示在热工作状态下进行的过程的安全和故障区域发挥着重要作用。它还通过指示通过温度的微观结构演化的变化来显示材料的响应。在本研究中,已经开发了一种处理图,根据Ti-6Al-4V合金片的流量应力数据在应变速率范围内为10〜(2)/ s至10〜(-4)/ s及过度温度范围为700℃至900℃,以识别超塑性区域的存在。通过进行热的单轴拉伸试验,基于温度,应变和应变速率获得流量应力数据。基于此,获得功率耗散图以显示效率的百分比,因为它与产生的内部熵量直接相关。另外,还获得了不稳定性图,因为它识别在热工作过程中要避免的流量不稳定性。最后,通过在效率图上重叠不稳定图来建立处理地图。结果清楚地揭示了超塑性变形在750℃至900℃的温度范围内,以10〜(4)/ s的应变速率,在该区域中没有任何流动不稳定性。

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