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首页> 外文期刊>Journal of the European Ceramic Society >Experimental analysis of the evolution of thermal shock damage using transit time measurement of ultrasonic waves
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Experimental analysis of the evolution of thermal shock damage using transit time measurement of ultrasonic waves

机译:用超声波传播时间测量热冲击损伤演变的实验分析

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Thermal shock is a principal cause of catastrophic wear of the refractory lining of high temperature installations in metal making processes. To investigate thermal shock experimentally with realistic and reproducible heat transfer conditions, chamotte and corund refractory samples of ambient temperature were subjected to surface contact with molten aluminium followed by passive cooling in ambient air. The evolution of damage was characterized by measuring the transit time of ultrasonic longitudinal waves at various sample locations after each test cycle. The mechanical validity of transit time measurement was confirmed in independent experiments. The single test cycle performed with chamotte material indicated the reproducibility and reliability of the experimental set-up and damage characterization method. Multiple test cycles performed with corund material yielded a reliable set of data, to be used for model validation purposes. Both non-uniform damage due to temperature gradients as well as uniform damage due to exposure to a uniform temperature were determined experimentally. The interaction between both damage mechanisms requires further investigation as well as the possible shielding of heat transport by damage.
机译:热冲击是金属制造过程中高温设备的耐火衬里灾难性磨损的主要原因。为了在现实和可复制的传热条件下实验研究热冲击,将环境温度的硬质合金和刚玉耐火材料样品与熔融铝表面接触,然后在环境空气中进行被动冷却。在每个测试周期后,通过测量超声纵波在各个样品位置的传播时间来表征损伤的演变。在独立实验中证实了渡越时间测量的机械有效性。用黏土材料进行的单个测试循环表明了实验装置和损伤表征方法的可重复性和可靠性。用刚玉材料进行的多个测试循环产生了一组可靠的数据,可用于模型验证。实验确定了由于温度梯度引起的非均匀损伤以及由于暴露于均匀温度引起的均匀损伤。两种损坏机制之间的相互作用还需要进一步研究,以及可能通过损坏屏蔽热传递。

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