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DESTABILIZATION OF RETAINED AUSTENITE DURING MULTIPLE TEMPERING OF HIGH-SPEED W-Mo-V STEEL

机译:高速W-MO-V钢多次回火期间保留奥氏体的稳定化

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Constant demands for quality improvement of high-speed steels have contributed to the prolonged importance of tests, such as test in structural changes and properties derived from the applied heat treatment. Generally, tools from high-speed steel are treated by multiple tempering after quenching in order to reduce amount of retained austenite and value of internal stresses to the lowest level. A review of literature shows that processes taking place during the first tempering have been studied comprehensively and in great detail while very little attention has been paid to testing structural changes in the succeeding tempering cycles. Having this in mind, the differential dilatometric method has been used to test the influences of quenching temperature (1170-1230°C), tempering temperature (540-605°C), and the number (1 to 5) and tempering time, on the process of destabilization of retained austenite at circumstances of multiple continuous tempering of quenched W-Mo-V high-speed steel. The acquired results have contributed to the conviction that the customary regime of tempering for this type of high-speed steel could be rationally modified. We emphasize that the change in tendency of the dilatometric cooling curve in the austenitic-martensitic transformation region is the result of self-tempering of secondary martensite. The explanation proposed in literature for this dilatometric effect is from our point of view totally incorrect.
机译:持续对高速钢质量改善的需求有助于延长测试的重要性,例如结构变化的试验和来自应用热处理的性质。一般地,从高速钢工具由多个回火,以便减少残留奥氏体和内部应力的值的量的最低水平淬火后处理。文献综述表明,在第一浇水期间进行的过程全面地进行了全面,并详细地研究了对后续的回火循环中的结构变化进行了很少的关注。考虑到这一点,差动膨胀测定方法已被用于测试淬火温度(一一七○年至1230年℃),回火温度(540-605℃)的影响,和数字(1至5)和回火时间,上淬火W-Mo-V高速钢多次连续回火的情况下残留奥氏体的破坏过程。获得的结果有助于定罪,即这种类型的高速钢的常规调火制度可能是合理的修饰。我们强调,奥氏体 - 马氏体转化区中膨胀测量冷却曲线的趋势变化是次级马氏体的自回火的结果。在这种膨胀效应中提出的文献中提出的解释是从我们的观点完全不正确。

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