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首页> 外文期刊>Journal of Materials Engineering and Performance >A New Method for Controlling Billet Temperature During Isothermal Die Forging of a Complex Superalloy Casing
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A New Method for Controlling Billet Temperature During Isothermal Die Forging of a Complex Superalloy Casing

机译:控制复杂高温合金外壳等温模锻过程中坯料温度的新方法

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摘要

Isothermal die forging is one of near net-shape metal-forming technologies. Strict control of billet temperature during isothermal die forging is a guarantee for the excellent properties of final product. In this study, a new method is proposed to accurately control the billet temperature of complex superalloy casing, based on the finite element simulation and response surface methodology (RSM). The proposed method is accomplished by the following two steps. Firstly, the thermal compensation process is designed and optimized to overcome the inevitable heat loss of dies during hot forging. i.e., the layout and opening time of heaters assembled on die sleeves are optimized. Then, the effects of forging speed (the pressing velocity of hydraulic machine) and its changing time on the maximum billet temperature are discussed. Furthermore, the optimized forging speed and its changing time are obtained by RSM. Comparisons between the optimized and conventional die forging processes indicate that the proposed method can effectively control the billet temperature within the optimal forming temperature range. So, the optimized die forging processes can guarantee the high volume fraction of dynamic recrystallization, and restrict the rapid growth of grains in the forged superalloy casing.
机译:等温压铸是近净形金属成型技术之一。在等温模锻过程中严格控制坯料温度是最终产品优异性能的保证。在研究中,基于有限元模拟和响应面法,提出了一种精确控制复杂高温合金套管坯温度的新方法。所提出的方法通过以下两个步骤完成。首先,设计和优化热补偿工艺,以克服热锻过程中模具不可避免的热损失。即,组装在模具套筒上的加热器的布局和打开时间被优化。然后,讨论了锻造速度(液压机的压制速度)及其变化时间对最高坯料温度的影响。此外,通过RSM获得了最佳的锻造速度及其变化时间。优化和常规模锻工艺之间的比较表明,该方法可以有效地将坯料温度控制在最佳成形温度范围内。因此,优化的模锻工艺可以保证高的动态再结晶体积分数,并限制了锻造高温合金外壳中晶粒的快速生长。

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