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Effect of crystallization behavior of mold flux on slab surface quality of a Ti-bearing Fe-Cr-Ni super alloy cast by means of continuous casting process

机译:连铸过程中保护渣的结晶行为对含Ti Fe-Cr-Ni超级合金板坯表面质量的影响

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摘要

A continuous casting technology of a Ti-bearing Fe-Cr-Ni super alloy (N08825) has been developed. Laboratory-scale experiments including thermal analysis, high-temperature tensile test, measurement of thermal properties and reaction between molten alloy and flux were first carried out to determine the basic casting conditions. Throughout the experiments, this alloy was found to have lower liquidus temperature than type 304 stainless steel and have relatively wide brittle range immediately after solidification was completed. Subsequently, 181 small-scale production tests were conducted setting up a mild cooling condition to prevent cracks. Two types of mold fluxes, which were crystalline and glassy ones, were compared. The test results revealed that crystallization behavior of the mold fluxes significantly affected the slab surface quality. Longitudinal cracks and depressions, which were partly accompanied with bleedings, were formed with the glassy type. On the other hand, sound surface quality with very few defects was obtained with the crystalline type. The appropriate flux was chosen through the small-scale tests followed by the successful practice in 601 full-scale mass production.
机译:已经开发了含Ti的Fe-Cr-Ni超级合金(N08825)的连续铸造技术。首先进行了实验室规模的实验,包括热分析,高温拉伸试验,热性能测量以及熔融合金与熔剂之间的反应,以确定基本的铸造条件。在整个实验过程中,发现该合金的液相线温度低于304型不锈钢,并且在凝固完成后立即具有较宽的脆性范围。随后,进行了181次小规模生产测试,设置了温和的冷却条件以防止出现裂纹。比较了两种结晶剂和玻璃态的保护渣。测试结果表明,保护渣的结晶行为显着影响了铸坯的表面质量。玻璃状形成了纵向裂缝和凹入,部分地伴随着渗出。另一方面,结晶型获得了具有很少缺陷的声音表面质量。通过小规模测试选择了合适的助焊剂,然后成功进行了601次大规模生产。

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