Numerical process design for the production of a hybrid die made of tool steel X38CrMoV5.3 and inconel 718

Janina Siring
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Abstract

Abstract. Dies used in hot forging are subjected to high cyclic thermo-mechanical loads, which lead to die failure. There are various options for increasing the service life of these dies, for example coatings or heat treatments. Another possibility is to adapt the choice of material, which is the focus of this work. For example, the nickel-based alloy Inconel has a higher strength at elevated temperatures compared to tool steel. However, Inconel is difficult to manufacture and has higher material costs. For this reason, a new process design for the production of a hybrid die consisting of Inconel 718 and tool steel X38CrMoV5.3 is presented within this work. To produce the hybrid dies, the two materials are first friction welded and then formed using hot forging. In addition to the numerical process design, experimental tests are also carried out to manufacture such hybrid dies. Furthermore, a numerical parameter study is done to determine the influence of the forging temperature, the forging speed and the initial Inconel thickness on the process parameters. It can be shown that the production of hybrid dies is possible by using the Tailored Forming process chain. The influencing factors investigated change the required press force and also the material distribution of the Inconel in the hybrid die produced. In the future, further experimental tests will be carried out to determine the service life of the hybrid dies.
生产由工具钢 X38CrMoV5.3 和 inconel 718 制成的混合模具的数值工艺设计
摘要。热锻中使用的模具承受着很大的循环热机械载荷,这会导致模具失效。提高模具使用寿命有多种选择,例如涂层或热处理。另一种方法是调整材料的选择,这也是本次研究的重点。例如,与工具钢相比,镍基合金铬镍铁合金在高温下具有更高的强度。然而,铬镍铁合金难以制造,材料成本较高。因此,本研究提出了一种新的工艺设计,用于生产由铬镍铁合金 718 和工具钢 X38CrMoV5.3 组成的混合模具。为了生产混合模具,首先对两种材料进行摩擦焊接,然后使用热锻成型。除了数值工艺设计外,还进行了制造这种混合模具的实验测试。此外,还进行了数值参数研究,以确定锻造温度、锻造速度和初始铬镍铁合金厚度对工艺参数的影响。结果表明,使用定制成形工艺链可以生产混合模具。所研究的影响因素改变了所需的压力,也改变了混合模具中铬镍铁合金的材料分布。今后将进行进一步的实验测试,以确定混合模具的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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