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The Effect of Tempering Treatment on Mechanical Properties and Microstructure for Armored Lateritic Steel

机译:回火处理对铠装外钢机械性能和微观结构的影响

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High demand of armor material impacts on the use of lateritic steel as alternative armored material, therefore an increase of its mechanical properties is necessary. Quenching and tempering process can be used to increase the mechanical properties of the lateritic steel. The variables that used in this research are variation in media quench (water, oil, and air) and variation in tempering temperatures (0, 100, and 200 °C). The results show that specimen with water quenchant tempered at 100 °C have the highest average on hardness (59.1 HRC) and tensile strength. Specimen with oil quenchant tempered at 100 °C has the highest impact toughness (52 J). Secondary hardening and tempered martensite embrittlement phenomenon is found in some specimens where its hardness increased and its impact toughness decreased after the tempering process. Micro structures which formed in this process are martensite and retained austenite phase with fracture types are brittle.
机译:铠装材料的高需求对横向钢的使用作为替代铠装材料,因此需要增加其机械性能。 淬火和回火过程可用于增加外晶钢的机械性能。 本研究中使用的变量是介质骤冷(水,油,空气)的变化,以及回火温度(0,100和200℃)的变化。 结果表明,在100℃下回火的水猝灭剂的样品具有最高的硬度(59.1hrc)和拉伸强度。 用油淬火剂在100℃下回火的样品具有最高的冲击韧性(52 j)。 在一些标本中发现二次硬化和钢制马氏体脆化现象,其硬度增加,并且在回火过程后其冲击韧性降低。 在该方法中形成的微结构是马氏体,并且具有裂缝类型的保留奥氏体相是脆性的。

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