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变形铝合金径向锻造工艺穿透性能的研究

Investigation of the Penetration Performance of the Radial Forging Process for Wrought Aluminium Alloy.

作者信息

Wang Yongfei, Xiong Linhua, Feng Dongxiao, Zhao Shengdun, Guo Yi

机构信息

School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

National Key Laboratory of Metal Forming Technology and Heavy Equipment, Xi'an 710049, China.

出版信息

Materials (Basel). 2024 Apr 27;17(9):2065. doi: 10.3390/ma17092065.

Abstract

With the wide application potential of wrought aluminium alloy in aerospace, automobile and electronic products, high-quality aluminium bars prepared by the radial forging (RF) process have received extensive attention. Penetration performance refers to the depth of radial plastic deformation of forgings, which is the key factor in determining the quality of forging. In this work, the penetration performance of the radial forging process for 6063 wrought aluminium bars is investigated by simulation using FORGE software. The minimum reduction amount of the hammer is calculated based on the forging penetration theory of forging. The influence of process parameters including forging ratio (FR) and billet temperature on the effective stress and hammer load in the RF process are investigated. The RF-deformed billet is then produced with the optimal process parameters obtained from the simulation results. The average grain size of aluminium alloy semi-solid spherical material is used to evaluate the forging penetration. Simulation results showed that the effective strain at the edge and the centre of the RF-deformed billet gradually increases, but the increasing speed of the effective strain at the edge becomes low. The hammer load first decreases quickly and then gradually maintains stability by increasing the FR. It is found that low billet temperature and high FR should be selected as appropriate process parameters under the allowable tonnage range of RF equipment. Under an isothermal temperature of 630 °C and a sustaining time of 10 min, the difference in the average grain dimension between the edge and the centre positions of the starting extruded blank is 186.43 μm, while the difference in the average grain dimension between the edge and the centre positions of the RF-deformed blank is 15.09 μm. The improvement ratio of penetration performance for the RF-deformed blank is obtained as 91.19%.

摘要

随着变形铝合金在航空航天、汽车及电子产品领域具有广泛的应用潜力,通过径向锻造(RF)工艺制备的高品质铝棒受到了广泛关注。穿透性能是指锻件径向塑性变形的深度,是决定锻造质量的关键因素。在这项工作中,利用FORGE软件通过模拟研究了6063变形铝棒径向锻造工艺的穿透性能。基于锻造的穿透理论计算了锤头的最小压下量。研究了锻造比(FR)和坯料温度等工艺参数对径向锻造过程中有效应力和锤头载荷的影响。然后采用模拟结果得到的最优工艺参数生产径向锻造变形坯料。用铝合金半固态球形材料的平均晶粒尺寸来评估锻造穿透情况。模拟结果表明,径向锻造变形坯料边缘和中心处的有效应变逐渐增大,但边缘处有效应变的增大速度变低。通过增加锻造比,锤头载荷先快速下降,然后逐渐保持稳定。发现在径向锻造设备允许的吨位范围内,应选择较低的坯料温度和较高的锻造比作为合适的工艺参数。在630℃等温温度和保温10分钟的条件下,起始挤压坯料边缘和中心位置的平均晶粒尺寸差值为186.43μm,而径向锻造变形坯料边缘和中心位置的平均晶粒尺寸差值为15.09μm。径向锻造变形坯料的穿透性能提高率为91.19%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b395/11084621/1295b8051646/materials-17-02065-g001.jpg

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