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Pressure and Microstructural Change with Web to Flange ratio and Die Land length in Cold Extrusion of I-shaped Lead Alloy

机译:用纤维网与I形铅合金冷挤出的压力和微观结构变化。

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Plastic deformation process resulting in ultra fine grained materials which are rapidly grasping applications due to their superior mechanical properties remain an area of continued research interest. Generally, the influence of die land length and web to flange ratio in grain refinement subsequent to plastic deformation process have not being adequately exploited especially in complex die opening geometries. In the present study, the effect of these parameters on extrusion pressure and morphological change in I-shaped die opening geometry is investigated and reported. A forward extrusion rig is designed and manufactured for the purpose of experimental investigation. The upper bound analysis shows that increasing die land length leads to increasing relative extrusion pressure. Optimum web to flange ratio of 0.45 is numerically simulated and recommended to extrude I-shaped lead alloy with minimum load requirement. The experimental results reveal that increasing area ratio leads to quasi-sinusoidal pattern in surface hardness of I-shaped section irrespective of strain rate value. Increasing web to flange ratio, therefore, leads to increasing anisotropy of the I-shaped lead alloy. The extruded sections were examined with optical metallurgical microscope, and it is observed that increasing strain rate results in profound refinement of grain and inclusions in lead alloy even at room temperature.
机译:由于其优越的机械性能而迅速抓握应用的塑性变形过程仍然是持续的研究兴趣的面积。通常,在塑性变形过程之后的晶粒细化中的模具长度和幅材对法兰比的影响没有特别地在复杂的模具开口几何形状中被充分利用。在本研究中,研究了这些参数对I形模具开口几何形状的挤出压力和形态变化的影响。为实验调查设计和制造前挤压钻机。上界分析表明,增加模具长度导致增加相对挤出压力。最佳纤维纤维法兰比为0.45的数值模拟,并建议挤出具有最小负载要求的I形铅合金。实验结果表明,由于应变率值,增加的面积比在I形截面的表面硬度中导致准正弦图案。因此,增加腹板到法兰比导致I形铅合金的各向异性增加。用光学冶金显微镜检查挤出部分,观察到,即使在室温下也导致铅合金中的晶粒和夹杂物的深度细化。

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