Ziesing Ulf, Lentz Jonathan, Röttger Arne, Theisen Werner, Weber Sebastian
Chair of Materials Technology, Institute for Materials, Ruhr-Universität Bochum, Universitässtraße 150, 44801 Bochum, Germany.
Chair of New Manufacturing Technologies and Materials, Bergische Universität Wuppertal, Bahnhofstraße 15, 42651 Solingen, Germany.
Materials (Basel). 2022 Oct 22;15(21):7408. doi: 10.3390/ma15217408.
This work investigates the processability of hot-work tool steels by wire-arc additive manufacturing (DED-Arc) from metal-cored wires. The investigations were carried out with the hot-work tool steel X36CrMoWVTi10-3-2. It is shown that a crack-free processing from metal-cored wire is possible, resulting from a low martensite start (M) temperature, high amounts of retained austenite (RA) in combination with increased interpass temperatures during deposition. Overall mechanical properties are similar over the built-up height of 110 mm. High alloying leads to pronounced segregation during processing by DED-Arc, achieving a shift of the secondary hardness maximum towards higher temperatures and higher hardness in as-built + tempered condition in contrast to hardened + tempered condition, which appears to be beneficial for applications of DED-Arc processed material at elevated temperatures.
这项工作研究了采用金属芯焊丝通过电弧增材制造(DED-Arc)对热作模具钢的加工性能。研究使用了热作模具钢X36CrMoWVTi10-3-2。结果表明,由于马氏体开始转变(M)温度较低、残余奥氏体(RA)含量较高以及沉积过程中层间温度升高,采用金属芯焊丝进行无裂纹加工是可行的。在110毫米的堆积高度范围内,整体力学性能相似。高合金化导致在DED-Arc加工过程中出现明显的偏析,与淬火+回火状态相比,在焊态+回火状态下二次硬度最大值向更高温度和更高硬度偏移,这似乎有利于DED-Arc加工材料在高温下的应用。