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Experimental and numerical study of heat transfer through a synchronous belt transmission type AT10

机译:通过同步带传动AT10进行传热的实验和数值研究

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摘要

In most industrial applications, the re-use of belts in power transmissions continues to increase and invade the market especially in automobiles where various types of belts are used. For this purpose, the belt manufacturers are aware of the importance and the valuable advantages of this transmission member and put all their efforts to develop and improve its geometrical and mechanical characteristics in order to achieve an optimal service life. Indeed, this article is devoted to an experimental and numerical thermal study of a toothed belt transmission type AT10. The tests were carried out on an original derrick of test for the purpose of measuring belt and pulley temperatures, detector devices and data acquisitions will also be described. Further, we have developed a model that calculates the heat flux through our pulley-belt transmission. The results will be synthesized to make a comparison between two thermal fluxes. The first is determined from our mathematical model and the second is calculated using the thermal simulation of this belt pulley transmission. Finally, a discussion of the results, which will allow us to fully understand this thermal phenomenon.
机译:在大多数工业应用中,皮带在动力传动装置中的重复使用不断增加,并侵入了市场,尤其是在使用各种类型皮带的汽车中。为此,皮带制造商意识到这种传动构件的重要性和宝贵的优势,并全力开发和改善其几何和机械特性,以达到最佳的使用寿命。实际上,本文致力于AT10型齿形带传动的实验和数值热研究。为了测量皮带和皮带轮的温度,在原始的井架上进行了测试,还将介绍检测器设备和数据采集。此外,我们开发了一个模型,该模型可计算通过皮带轮传动装置的热通量。将合成结果以比较两个热通量。第一个是根据我们的数学模型确定的,第二个是使用该皮带轮传动装置的热仿真计算的。最后,对结果进行讨论,这将使我们能够充分理解这种热现象。

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