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Furnace Charging Comprehensive Optimization Technology of the Bell-type Annealing Process

机译:钟罩式退火炉炉料综合优化技术

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Sticking defect in the bell-type annealing process is closely related to furnace charging technology. Unsuitable furnace charging technology increases the additional radial pressure of some coils in the furnace and leads to sticking defect. A suitable furnace charging comprehensive optimization technology of the bell-type annealing process is introduced, which aims at sticking prevention. This technology was developed after field experiments and theoretical analyses based on defining the concept of sticking index, considering the influences of coiling technology, coil size, product specifications, and annealing technology on the steel internal stress. The coil work-base quantity was as close as possible to the theoretical minimum value, and the average and peak sticking index value of the same batch of coils as the target were minimized, balanced with production efficiency and defect prevention. This technology was applied to the production practice of a cold-rolled sheet plant, achieving good using effect with furnace charging efficiency. Production increased, and sticking defect decreased. Considerable economic benefit for the enterprise was created with further popularization and application values.
机译:钟罩式退火工艺中的粘附缺陷与炉料技术密切相关。不合适的熔炉装料技术会增加熔炉中某些线圈的额外径向压力,并导致粘结缺陷。介绍了一种适用于钟形退火工艺的炉料综合优化技术,旨在防止粘结。该技术是在现场试验和理论分析的基础上开发的,该技术基于定义粘着指数的概念,并考虑了卷取技术,卷取尺寸,产品规格和退火技术对钢内应力的影响。卷材的基料量尽可能接近理论最小值,与目标相同的同一批卷材的平均粘着指数和峰值粘着指数值降至最低,同时兼顾了生产效率和缺陷预防。该技术被应用于冷轧薄板设备的生产实践中,在炉装效率方面达到了良好的使用效果。产量增加,粘着缺陷减少。随着进一步的普及和应用价值,为企业创造了可观的经济效益。

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