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Unsteady-state lumped heat capacity system design for tube furnace for continuous inline wire annealing process

机译:连续在线退火工艺中管式炉的非稳态集总热容量系统设计

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摘要

A continuous annealing furnace is developed, which incorporates the principle of electric resistance heating for obtaining the desired temperature in the furnace. The concept of lumped heat capacity system is applied for the determination of annealing time of a continuously moving wire through the refractory tube. Also, the heat transfer inside the system and heat losses to the atmosphere are considered using the principles of conduction, convection, and radiation. The parameters related to the dynamics of moving wire are also designed. The designed furnace is fabricated and tested for its working, the observations of which show that 30 minutes are required to reach about 400℃ furnace temperature and 30 seconds for annealing 1 m length of wire. The morphological testing of annealed and nonannealed wire is done to study the microstructure, which shows more traces of pearlite in annealed wires than in nonannealed wires. Thus, continuous annealing furnaces are more effective for inline annealing of wires; so as to relieve the internal stresses, induced by the step cold rolling process.
机译:开发了一种连续退火炉,该炉结合了电阻加热原理以在炉中获得所需温度。集总热容量系统的概念适用于确定连续移动的金属丝通过耐火管的退火时间。同样,使用传导,对流和辐射原理来考虑系统内部的热传递和向大气的热损失。还设计了与活动金属丝动力学相关的参数。所设计的熔炉经过制造和工作测试,观察结果表明,达到约400℃的熔炉温度需要30分钟,而退火1 m的金属丝则需要30秒。进行了退火和未退火线材的形态测试,以研究其微观结构,与未退火的线材相比,退火线中珠光体的痕迹更多。因此,连续退火炉对于金属丝的在线退火更有效。从而减轻由分步冷轧工艺引起的内应力。

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