Hawryluk Marek, Janik Marta, Zwierzchowski Maciej, Lachowicz Marzena Małgorzata, Krawczyk Jakub
Department of Metal Forming, Welding and Metrology, Wroclaw University of Science and Technology, Lukasiewicza 5 Street, 50-370 Wroclaw, Poland.
MAHLE Polska, Mahle 6, 63-700 Krotoszyn, Poland.
Materials (Basel). 2024 Jan 10;17(2):346. doi: 10.3390/ma17020346.
This study refers to an analysis of the dies used in the first operation of producing a valve forging from chromium-nickel steel NC3015. The analyzed process of manufacturing forgings of exhaust valves is realized in the co-extrusion technology, followed by forging in closed dies. This type of technology is difficult to master, mainly due to the increased adhesion of the charge material to the tool substrate as well as the complex conditions of the tools' operations, which are caused by the cyclic thermo-mechanical loads and also the hard tribological conditions. The average durability of tools made from tool steel WLV (1.2365), subjected to thermal treatment and nitriding, equals about 1000 forgings. In order to perform an in-depth analysis, a complex analysis of the presently realized technology was conducted in combination with multi-variant numerical simulations. The obtained results showed numerous cracks on the tools, especially in the cross-section reduction area, as well as sticking of the forging material, which, with insufficient control of the tribological conditions, can cause premature wear of the dies. In order to increase the durability of forging dies, alternative materials made of hot work tool steels were used: QRO90 Supreme, W360, and Unimax. The preliminary tests showed that the best results were obtained for QRO90, as the average durability for the tools made of this steel equaled about 1200 forgings (with an increase in both the minimal and maximal values), with reference to the 1000 forgings for the material applied so far.
本研究涉及对用于由铬镍钢NC3015生产气门锻件的第一道工序中所使用模具的分析。所分析的排气门锻件制造工艺是在共挤压技术中实现的,随后是闭式模锻。这种技术难以掌握,主要是由于装料材料与工具基体之间的附着力增加,以及工具操作条件复杂,这些条件是由循环热机械载荷以及苛刻的摩擦学条件引起的。经过热处理和氮化处理的由工具钢WLV(1.2365)制成的工具的平均耐用性约为1000个锻件。为了进行深入分析,结合多变量数值模拟对当前实现的工艺进行了综合分析。所得结果表明,工具上出现了大量裂纹,尤其是在截面缩减区域,以及锻件材料的粘附现象,在摩擦学条件控制不足的情况下,这可能会导致模具过早磨损。为了提高锻造模具的耐用性,使用了由热作工具钢制成的替代材料:QRO90 Supreme、W360和Unimax。初步试验表明,QRO90取得了最佳效果,因为用这种钢制成的工具的平均耐用性约为1200个锻件(最小和最大值均有所增加),而迄今为止所应用材料的耐用性为1000个锻件。