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The Effect of Cooling Conditions on Martensite Transformation Temperature and Hardness of 15 Cr Chromium Cast Iron

机译:冷却条件对15%Cr铬铸铁马氏体相变温度和硬度的影响

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摘要

The research reported in the paper concerned the conditions of cooling high-chromium cast iron with about 15% Cr content capable to ensure completeness of transformation of supercooled austenite into martensite in order to obtain high hardness value of the material and thus its high resistance to abrasive wear. For testing, castings were prepared with dimensions 120 mm × 100 mm × 15 mm cast in sand molds in which one of cavity surfaces was reproduced with chills. From the castings, specimens for dilatometric tests were taken with dimensions 4 mm × 4 mm × 16 mm and plates with dimensions 50 mm × 50 mm × 15 mm for heat treatment tests. The dilatometric specimens were cut out from areas subject to interaction with the chill. The austenitizing temperature and time were 1000 °C and 30 min, respectively. Dilatograms of specimens quenched in liquid nitrogen were used to determine martensite transformation start and finish temperatures T and T , whereas from dilatograms of specimens quenched in air and in water, only T was red out. To secure completeness of the course of transformation of supercooled austenite into martensite and reveal the transformation finish temperature, it was necessary to continue cooling of specimens in liquid nitrogen. It has been found that T depended strongly on the quenching method whereas T values were similar for each of the adopted cooling conditions. The examined cooling variants were used to develop a heat treatment process allowing to obtain hardness of 68 HRC.
机译:该论文报道的研究涉及冷却Cr含量约15%的高铬铸铁的条件,该条件能够确保过冷奥氏体向马氏体转变的完整性,从而获得该材料的高硬度值,从而具有很高的耐磨性。穿。为了进行测试,准备了尺寸为120 mm×100 mm×15 mm的铸件,这些铸件是在砂型中模制成的,其中的型腔表面是冷硬的。从铸件中取出尺寸为4 mm×4 mm×16 mm的用于膨胀测量的样品,并以尺寸为50 mm×50 mm×15 mm的板进行热处理测试。从易受寒冷影响的区域切出膨胀试样。奥氏体化温度和时间分别为1000℃和30分钟。用液氮淬火的试样的腹板图确定马氏体转变开始和结束温度T和T,而在空气和水中淬火的试样的腹板图上,只有T变红。为了确保过冷奥氏体向马氏体转变的过程的完整性并揭示转变结束温度,有必要在液氮中继续冷却试样。已经发现,T在很大程度上取决于淬灭方法,而对于所采用的每种冷却条件,T值是相似的。检查的冷却方案用于开发热处理工艺,从而获得68 HRC的硬度。

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