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首页> 外文期刊>Toyota Technical Review >Energy Conservation of a Continuous Gas Carburizing Furnace
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Energy Conservation of a Continuous Gas Carburizing Furnace

机译:连续式气体渗碳炉的节能

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摘要

Toyota Motor Corporation adopted the first continuous gas carburizing furnace that had advantages in mass production and labor efficiency in 1957 for treatment of automobile gears. Since then, Toyota has been installing additional furnaces as the output increased. Now, Toyota operates about 90 of these furnaces. After the adoption of the first furnace, we implemented conventional energy conservation based on cutting corners until we were struck by the oil crisis in 1970s. It gave rise to the energy conservation fever and we started developing energy conservation in view of making great strides in productivity, which has brought out the epoch-making furnace. This high efficiency continuous gas carburizing furnace was developed by redesigning the basic structure of the tray-pusher type furnace. This has made it possible to accomplish the lead time reduction, rapid heating, cutting down the use of atmospheric gas and downsizing, for the drastic cost reduction.
机译:丰田汽车公司于1957年采用了第一台具有大量生产和劳动效率优势的连续式气体渗碳炉,用于处理汽车齿轮。从那时起,丰田汽车就随着产量的增加安装了更多的熔炉。现在,丰田公司经营着约90座这种熔炉。在第一台熔炉被采用之后,我们在偷工减料的基础上实施了常规节能,直到我们在1970年代受到石油危机的打击。它引发了节能热,我们着眼于生产率的巨大进步而开始发展节能,这带来了划时代的熔炉。通过重新设计托盘推式炉的基本结构,开发了这种高效的连续式气体渗碳炉。这样就可以减少交货时间,快速加热,减少使用大气层的气体并减小尺寸,从而大大降低了成本。

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