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Plastic Instability in Co-Cr-Ni-Mo alloy wires drawn with different drawing practices

机译:使用不同拉拔方法绘制的Co-Cr-Ni-Mo合金线的塑性不稳定性

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Plastic instability of Co-35Ni-20Cr-10Mo alloy was studied by inflicting the material to the different drawing process, namely Full Die Drawing (FDD) and Half Die Drawing (HDD). The wires were subjected to different plastic deformations, by varying the amount of cold work (CW) reduction, and the strain hardening exponent (gamma) and strain rate sensitivity (m) were determined from the logarithmic plots of the true stress and strain curves. The experimental results indicated that wires drawn with FDD practice, when compared with the HDD drawn wires, had a lower instability until 75% CW, after which it increased significantly when drawn to 95% CW. The lower instability in the FDD wires at 75% CW, was attributed to the smaller grain size, higher dislocation density and lower twin spacing which contributed to higher gamma and m. Plastic strain localization because of shear band formation was noticed in the FDD 95% CW wires, which contributed to lowered ductility and increased instability in the wire due to reduced gamma and m. This phenomenon was not observed in HDD wires. Therefore, the results illustrate that the drawing technique employed to process the material has a significant impact on the plastic instability of the material, with the FDD practice recommended for lower CW deformations and HDD for higher CW deformations.
机译:通过对材料进行全冲模(FDD)和半冲模(HDD)的拉拔处理,研究了Co-35Ni-20Cr-10Mo合金的塑性不稳定性。通过改变冷作功(CW)的减少量,使钢丝经受不同的塑性变形,并根据真实应力和应变曲线的对数图确定应变硬化指数(γ)和应变速率敏感性(m)。实验结果表明,与HDD拉伸线相比,采用FDD方式拉伸的线具有较低的不稳定性,直到75%CW,之后拉伸至95%CW时,其不稳定性显着增加。 FDD线在75%CW时的不稳定性较低,这归因于较小的晶粒尺寸,较高的位错密度和较低的孪晶间距,这导致较高的γ和m。在FDD 95%CW焊丝中发现了由于剪切带形成而引起的塑性应变局部化,这由于γ和m的减小而降低了延展性并增加了焊丝的不稳定性。在HDD电线中未观察到此现象。因此,结果表明,用于处理材料的拉伸技术对材料的塑性不稳定性具有显着影响,对于低CW变形,建议采用FDD做法;对于CW较高的变形,建议采用HDD。

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