矫直船轴实验样品加热炉的计算和设计

Vitaliy Valer'evich Vyazankin, V. Mamontov, Sergey Vladimirovich Vinogradov, Semen Vital'evich Vyazankin
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摘要

在运行过程中,对纵轴出现弯曲且不允许继续运行的专用轴进行加热校正。我们考虑了以下几种加热方法:使用气体燃烧器、感应加热以及管式电阻炉。使用气体燃烧器会给加热过程的控制带来困难,并且由于加热不均匀而出现缺陷。使用燃气燃烧器加热轴的装置示意图如图所示。考虑了轴部分的感应加热方案。在感应加热过程中,必须使用特殊设备。建议在实验研究中使用管状电阻炉。考虑了对加热元件材料的要求。选用铬镍合金镍铬 H20N80 线材作为加热元件。设计了管式电阻炉的布局并选择了材料。介绍了绝缘绕组电阻炉的设计。对加热元件的长度、直径和匝数进行了计算。制造完成后,对样品进行了试加热。结论是炉子功率足以将样品加热到所需的 650 °C 温度,持续时间为三小时。
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Calculation and design of the heating furnace for straightening experimental samples of ship shafts
During operation the shafts of responsible purpose, which have received a curvature of the longitudinal axis and are not allowed for further operation, are subjected to correction with heating. The following heating methods are considered: with the use of a gas burner, induction heating, as well as tubular resistance furnaces. The use of a gas burner causes difficulties in the heating process controlling and the appearance of defects due to uneven heating afterwards. The diagram of the device for heating the shaft with a gas burner is illustrated. The scheme of induction heating of the shaft section is considered. During induction heating, it is necessary to use special equipment. It is proposed to use a tubular resistance furnace in an experimental study. The requirements for the material of the heating element are considered. A wire made of chromium-nickel alloy nichrome H20N80 for the heating element was selected. The layout of the tubular resistance furnace was made and materials were selected. The design of a resistance furnace for insulated windings is presented. Calculations of the length, diameter and number of turns of the heating element are performed. After manufacturing, a test heating of the sample was carried out. It is concluded that the furnace power was sufficient to warm up the sample to the required temperature of 650 °C for three hours.
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