首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Optimization of the Hot Forging Processing Parameters for Powder Metallurgy Fe-Cu-C Connecting Rods Based on Finite Element Simulation
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Optimization of the Hot Forging Processing Parameters for Powder Metallurgy Fe-Cu-C Connecting Rods Based on Finite Element Simulation

机译:基于有限元模拟的粉末冶金Fe-Cu-C连接杆的热锻造处理参数优化

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摘要

Powder forged connecting rods have the problem of non-uniform density distributions because of their complex geometric shape. The densification behaviors of powder metallurgy (PM) connecting rod preforms during hot forging processes play a significant role in optimizing the connecting rod quality. The deformation behaviors of a connecting rod preform, a Fe-3Cu-0.5C (wt pct) alloy compacted and sintered by the powder metallurgy route (PM Fe-Cu-C), were investigated using the finite element method, while damage and friction behaviors of the material were considered in the complicated forging process. The calculated results agree well with the experimental results. The relationship between the processing parameters of hot forging and the relative density of the connecting rod was revealed. The results showed that the relative density of the hot forged connecting rod at the central shank changed significantly compared with the relative density at the big end and at the small end. Moreover, the relative density of the connecting rod was sensitive to the processing parameters such as the forging velocity and the initial density of the preform. The optimum forging processing parameters were determined and presented by using an orthogonal design method. This work suggests that the processing parameters can be optimized to prepare a connecting rod with uniform density distribution and can help to better meet the requirements of the connecting rod industry. (C) The Minerals, Metals & Materials Society and ASM International 2017
机译:由于其复杂的几何形状,粉末锻造连杆具有非均匀密度分布的问题。在热锻过程中粉末冶金(PM)连杆预成型件的致密化行为在优化连接杆质量方面发挥了重要作用。使用有限元法研究了连杆预制件,用粉末冶金途径(PM Fe-Cu-C)烧结并烧结的Fe-3Cu-0.5C(WT PCT)合金的变形行为,损坏和摩擦在复杂的锻造过程中考虑了材料的行为。计算结果与实验结果很好。揭示了热锻造的处理参数与连杆的相对密度之间的关系。结果表明,中央柄处的热锻连杆的相对密度与大端和小端的相对密度相比变化显着。此外,连杆的相对密度对处理参数敏感,例如锻炼的锻炼速度和初始密度。通过使用正交设计方法确定和呈现最佳锻造处理参数。这项工作表明,可以优化处理参数,以制备具有均匀密度分布的连杆,并有助于更好地满足连杆行业的要求。 (c)2017年矿物质,金属和材料协会和ASM国际

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