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Evaluation of Thermal Shock Fracture Toughness for ATJ Graphite using Laser Irradiation Method

机译:激光辐照评价ATJ石墨的热冲击断裂韧性

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摘要

Graphite has been developed as heat resistant material. To apply a reliable structural design using graphite, it is very important to investigate thermal shock characteristics. The common experimental methods of thermal shock fracture toughness are quenching and arc discharging heating methods. This paper describes experimental technique to evaluate the thermal shock fracture toughness using laser irradiation and proposes that a critical value of laser power can be a measurement to evaluate heat resistant materials. The laser source is CO_2 laser having maximum power of 4.0kW. The range of laser beam is from 1.0 to 2.7 kW and the beam duration is fixed at 1 sec. K and C type thermocouples were used to measure the temperature distribution of a thermal shock fracture toughness specimen. In this study, the temperature distribution of specimen surfaces and critical laser power was investigated. After test, the surface phenomenon of specimen is examined using radiography and SEM. It is concluded that the critical laser power causing fracture can be the major factor of thermal shock fracture toughness of ATJ graphite.
机译:石墨已被开发为耐热材料。为了使用石墨应用可靠的结构设计,研究热冲击特性非常重要。热冲击断裂韧性的常用实验方法是淬火和电弧放电加热方法。本文介绍了使用激光辐照评估热冲击断裂韧性的实验技术,并提出激光功率的临界值可以作为评估耐热材料的量度。激光源是最大功率为4.0kW的CO_2激光器。激光束的范围是1.0到2.7 kW,光束持续时间固定为1秒。使用K型和C型热电偶来测量热冲击断裂韧性样品的温度分布。在这项研究中,研究了样品表面的温度分布和临界激光功率。测试后,使用射线照相和SEM检查样品的表面现象。结论是,导致断裂的临界激光功率可能是ATJ石墨热冲击断裂韧性的主要因素。

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