Abstract
AbstractThe paper describes the pack siliconizing optimization procedure for AISI D2 tool steel. Pack siliconizing was performed by employing different treating temperatures (falling in the range 650–950 °C) and times (falling in the range 2–4 h). The siliconizing atmosphere was obtained through silicon (at 12 wt.%) with the addition of different percentages of NH4Cl (falling in the range 0.5–1 wt.%), Al2O3 was used as halide activator. The coatings’ phases evolution was analyzed through X-ray diffraction; the coatings’ thickness was measured through scanning electron microscopy observations of the cross section of the samples; the mechanical properties were evaluated through micro hardness measurements. The results showed that the coatings’ thickness and hardness increase as the treating time and temperature as well as the halide activator percentage increase. The coating procedure optimization was performed by employing the response surface methodology based on Box-Behnken method. The results of the optimization procedure led to the of the optimal combination of processing parameters: 1 wt.% of halide activator, 3.575 holding time, 950 °C in temperature.
Publisher
Springer Science and Business Media LLC
Subject
Electronic, Optical and Magnetic Materials
Reference25 articles.
1. Wills WH (1935) Practical observations on high-carbon high-chromium tool steels. Trans ASM 23:469
2. Gobbi SJ, Gobbi VJ, Reinke G, Muterlle PV, Rosa DM (2019) Ultra-low-temperature process effects on microscale abrasion of tool steel AISI D2 mater. Sci Technol 35(11):1355–1364
3. Khan AM, Jamil M, Ul Haq A, Hussain S, Meng L, He N (2019) Sustainable machining Modeling and optimization of temperature and surface roughness in the milling of AISI D2 steel. Ind Lubr Tribol 71(2):267–277
4. Bombač D, Terčelj M, Kugler G, Peruš I (2014) Amelioration of surface cracking during hot rolling of AISI D2 tool steel. Mater Sci Technol 34(14):1723–1736
5. Sun Y, Dong J, Zhao P, Dou B (2017) Formation and phase transformation of aluminide coating prepared by low- temperature aluminizing process. Surf Coat Technol 330:234–240
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