首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Measurement of transformation temperatures and specific heat capacity of tungsten added reduced activation ferritic-martensitic steel
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Measurement of transformation temperatures and specific heat capacity of tungsten added reduced activation ferritic-martensitic steel

机译:钨还原还原活化铁素体-马氏体钢的相变温度和比热容的测量

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The on-heating phase transformation temperatures up to the melting regime and the specific heat capac ity of a reduced activation ferritic-martensitic steel (RAFM) with a nominal composition (wt%): 9Cr 0.09C-0.56Mn-0.23V-1W-0.063Ta-0.02N, have been measured using high temperature differential scanning calorimetry. The a-ferrite + carbides_úγ-austenite transformation start and finish tempera tures, namely Ac_1, and Ac_3, are found to be 1104 and 1144 K, respectively for a typical normalized and tempered microstructure. It is also observed that the martensite start (M_s) and finish (M_f) temperatures are sensitive to the austenitising conditions. Typical M_s and M_f values for the 1273 K normalized and 1033 K tempered samples are of the order 714 and 614 K, respectively. The heat capacity C_p of the RAFM steel has been measured in the temperature range 473-1273 K, for different normalized and tempered samples. In essence, it is found that the C_p of the fully martensitic microstructure is found to be lower than that of its tempered counterpart, and this difference begins to increase in an appreciable manner from about 800 K. The heat capacity of the normalized microstructure is found to vary from 480 to 500 J kg~(-1) K~(-1) at 500 K, where as that of the tempered steel is found to be higher by about, 150 J kg~(-1) K~(-1).
机译:标称成分(wt%)的还原活化铁素体-马氏体钢(RAFM)的最高熔化相转变温度和比热容的加热时相变温度:9Cr 0.09C-0.56Mn-0.23V-1W-使用高温差示扫描量热法测量了0.063Ta-0.02N。对于典型的正火和回火组织,α-铁素体+碳化物_α-奥氏体转变的起始和结束温度,即Ac_1和Ac_3,分别为1104和1144K。还可以观察到,马氏体开始温度(M_s)和结束温度(M_f)对奥氏体化条件敏感。 1273 K归一化样本和1033 K回火样本的典型M_s和M_f值分别为714和614K。对于不同的正火和回火样品,已经在473-1273 K的温度范围内测量了RAFM钢的热容C_p。从本质上讲,已发现完全马氏体组织的C_p低于其回火组织的C_p,并且这种差异从大约800 K开始以明显的方式增加。发现归一化组织的热容量在500 K时变化范围从480到500 J kg〜(-1)K〜(-1),其中发现回火钢的高约150 J kg〜(-1)K〜(- 1)。

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