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首页> 外文期刊>Journal of Materials Research and Technology >Construction of processing maps combined with deformation mechanism maps using creep deformation equations
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Construction of processing maps combined with deformation mechanism maps using creep deformation equations

机译:使用蠕变变形方程的处理地图的结构与变形机制图相结合

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摘要

In this study, the construction of processing maps was attempted using the constitutive creep equations for various high-temperature deformation mechanisms to predict the effect of processing parameters (temperature and strain rate), the material constant and grain size on the power dissipation efficiency and the onset condition for flow instability. The developed processing maps were compared with the processing maps constructed using a conventional method, and the usefulness and limitations of the proposed method are discussed. The power dissipation map was constructed by considering the contributions of the creep mechanisms competing with one another. A flow instability map was constructed by observing that the onset of flow instability occurs near the transition from lattice diffusion controlled dislocation climb creep (or other creep deformation mechanisms) to pipe diffusion controlled dislocation climb creep. Following the proposed approach, processing maps and deformation mechanism maps could be incorporated into single maps in 2D or 3D.
机译:在本研究中,尝试使用各种高温变形机制的组成蠕变方程来建造处理地图,以预测处理参数(温度和应变率),材料恒定和晶粒尺寸对功耗效率的影响流动不稳定的发病条件。将开发的处理地图与使用传统方法构建的处理图进行了比较,并且讨论了所提出的方法的用处理和限制。通过考虑蠕变机制彼此竞争的贡献来构建功率耗散图。通过观察到流动不稳定性的开始,从格子扩散控制位错(或其他蠕变变形机构)附近发生的流动不稳定性发生到管道扩散控制位错爬蠕变来构建流量不稳定性图。通过所提出的方法,可以将处理映射和变形机制图纳入2D或3D中的单个映射。

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