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Current State Art of Hot Thermocouple Technology - Novel Way for the Study of Mold Flux High-Temperature Properties

机译:电流热电偶技术艺术技术 - 模具助熔剂高温性能研究新方法

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Hot Thermocouple Technology has been developed and approved to be a novel method to study the high-temperature related properties of molten slag. In this study, it will first give the development of Hot Thermocouple Technology, and its typical application to the mold flux. One example of crystallization process of the mold flux for casting low carbon (LC flux) and medium carbon steels (MC flux) were investigated by using Double Hot Thermocouple Technology (DHTT). The results of LC flux showed that, the glass phase firstly formed at the low temperature side; then, the fine crystals precipitated at the liquid/glass interface and grew toward glass and later on to liquid phase. However, the crystals directly formed at the low temperature side when MC flux was under cooling process and grew toward the high temperature side; which indicated the crystallization ability of MC flux was stronger than LC flux. Another crystallization sample of CaO-SiO_2-B_2O_3 based fluoride-free mold flux (F-free flux) was studied by using Single Hot Thermocouple Technology (SHTT), and the results showed the crystals first precipitated in the middle of sample and moved toward the thermocouple side, then the precipitated crystals grew up and new crystals formed in the middle of sample and moved toward the side, until the crystallization was completed and reached a steady state; the crystallization mechanism of the F-free flux was 1-dimensional growth.
机译:已经开发出热热电偶技术并批准成为研究熔渣高温相关性能的新方法。在这项研究中,它将首先推进热热电偶技术的发展,并典型应用于模具通量。采用双热热电偶技术(DHTT)研究了用于浇铸低碳(LC焊剂)和介质碳钢(MC焊剂)的模焊剂的结晶过程的一个例子。 LC通量的结果表明,首先在低温侧形成的玻璃相;然后,在液体/玻璃界面沉淀的细晶体沉淀,并朝向玻璃增长,后来呈液相。然而,当MC通量在冷却过程下,在低温侧直接形成的晶体并朝向高温侧成长;表明MC通量的结晶能力比LC助焊剂更强。通过使用单热热电偶技术(SHTT)研究了CaO-SiO_2-B_2O_3的另一个结晶样品,通过单热热电偶技术(SHTT)研究了晶体,结果表明晶体在样品中间沉淀并朝向热电偶侧,沉淀的晶体在样品中间形成并朝向侧面形成的新晶体,直到结晶完成并达到稳定状态;无F-助熔剂的结晶机理为1维生长。

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