首页> 外文OA文献 >Experimental Investigation on Thermal Diffusivity of PM Steels
【2h】

Experimental Investigation on Thermal Diffusivity of PM Steels

机译:永磁钢热扩散率的实验研究

摘要

The scanty literature data on thermal diffusivity of P/M steels seems contradictory, if the cooling speed on quenching is the evaluation parameter. Due to the basic importance of diffusivity on the response of P/M steels to heat-treating, an experimental survey has been carried out, to collect data on various P/M steels, based on prealloyed, or diffusion-bonded, or admixed powders. The study has also covered the influence of processing parameters, such as compaction pressure and sintering temperature. The flash method has been used to measure the thermal diffusivity of P/M steels. This method directly measures the thermal diffusivity of a sample in slab shape. A plane-parallel sample is inserted in the test apparatus and then a short light pulse, produced by a laser or a flash lamp, heats the front surface of the sample. The heat diffuses through the sample, leading to a temperature rise on the sample rear surface. An infrared detector measures this temperature rise, versus time, and thermal diffusivity is derived from the least square regression on the whole temperature trend, using the analytical solution of heat conduction. The results show that thermal diffusivity increases as density increases. This achievement can be justified by a simple theoretical analysis of the thermal conductivity on thermal diffusivity. The collected data also enable us to ascertain the influence of sintered material composition and carbon content on thermal diffusivity. The results should contribute to clarify some uncertainties and perplexities on the behavior of properly elaborated P/M steels, to be hardened by heat treatment, conventional – such as oil quenching – or innovative, such as sinter -hardening.
机译:如果将淬火时的冷却速度作为评估参数,则有关P / M钢热扩散率的文献资料很少。由于扩散率对P / M钢对热处理的响应至关重要,因此进行了一项实验调查,以基于预合金或扩散结合或混合粉末的形式收集各种P / M钢的数据。 。该研究还涵盖了加工参数的影响,例如压实压力和烧结温度。闪蒸法已用于测量P / M钢的热扩散率。该方法直接测量板状样品的热扩散率。将平行于平面的样品插入测试设备,然后由激光或闪光灯产生的短光脉冲加热样品的前表面。热量通过样品扩散,导致样品背面温度升高。红外探测器测量随时间变化的温度升高,并使用热传导的解析解从整个温度趋势的最小二乘回归得出热扩散率。结果表明,热扩散率随着密度的增加而增加。可以通过对热导率对热扩散率进行简单的理论分析来证明这一成就。收集的数据还使我们能够确定烧结材料的成分和碳含量对热扩散率的影响。结果应有助于澄清某些经过精心加工的P / M钢的性能的不确定性和困惑,这些P / M钢可以通过传统的热处理(如油淬火)或创新性的(如烧结淬火)进行硬化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号