Innovative Wire Conveyor Drive System in Industrial Infrared Furnaces

Alper Keleşoğlu, Esra Bayır
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Abstract

The main heat transfer mechanism in industrial infrared furnaces is the radiation. Thus, the view factor between the thermal power source infrared resistance and the material exposed to heat treatment is important. In traditional infrared furnaces wire mesh conveyors are preferred, but because the wire mesh conveyor is very frequent, heating can only be applied towards one surface of the material. For this reason, the conveyor speed is slowed down or the useful length of the furnace is increased in order to achieve temperature homogeneity and the desired capacity, especially on thick-section materials. With the innovative independent driven wire conveyor system developed within the scope of the study, different from traditional furnaces, heating can be applied bidirectionally, and thus, it has become possible to manufacture more compact furnaces. In addition, with the spare wires included in the conveyor system, in case of a possible malfunction or breakage, wire replacement is facilitated and maintenance times are reduced to a minimum. The aforementioned wire conveyor system has been protected by a patent application.
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创新的工业红外炉线输送驱动系统
工业红外加热炉的主要传热机制是辐射。因此,热电源的红外电阻与热处理材料之间的视因子是重要的。在传统的红外炉中,首选钢丝网输送机,但由于钢丝网输送机非常频繁,只能对材料的一个表面施加加热。因此,为了达到温度均匀性和所需的容量,特别是在厚截面材料上,减慢输送机速度或增加炉膛的有效长度。在研究范围内开发的创新的独立驱动线输送系统,与传统的加热炉不同,可以双向加热,从而使制造更紧凑的加热炉成为可能。此外,由于输送系统中包含备用电线,在可能发生故障或断裂的情况下,可以方便地更换电线,并将维护时间减少到最低限度。上述线输送系统已被专利申请保护。
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