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Thermophysical properties of bearing steel GCr15SiMn

机译:轴承钢GCr15SiMn的热物理性质

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摘要

The specific heat capacity, thermal expansion coefficient and latent heat of phase change in bearing steel GCr15SiMn in the spheroidized annealed state from room temperature to 1273 K were measured, and the effect of the heating rate on the thermal expansion coefficient curve was studied. The results indicate that the specific heat capacity and thermal expansion coefficient follow a linear relationship with the temperature. Good agreement (with an accuracy much closer to 1 in the square correlation factor of the linear third-order regression equation) between experimental and calculated values was found. The rising heating rates can delay the occurrence of phase change and enlarge the temperature range of phase change. The measured stable thermal expansion coefficient of the investigated steel GCr15SiMn has a higher value than that of steel GCr15 reported by previous work due to the higher content of Si and Mn. Furthermore, the latent heat of the spheroidized structure to austenite phase change is determined by the DSC heating curve as 15.04 J/g.
机译:测量了从室温到1273 K的球化退火状态下轴承钢GCr15SiMn的比热容,热膨胀系数和相变潜热,并研究了升温速率对热膨胀系数曲线的影响。结果表明,比热容和热膨胀系数与温度呈线性关系。实验值和计算值之间具有很好的一致性(在线性三阶回归方程的平方相关因子中,精度接近1)。升高的加热速率可以延迟相变的发生并扩大相变的温度范围。由于Si和Mn含量较高,所研究的钢GCr15SiMn的测得的稳定热膨胀系数具有比先前工作报道的GCr15钢更高的值。此外,通过DSC加热曲线将球状组织对奥氏体相变的潜热确定为15.04J / g。

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