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Evaluation of the Thermal Stability and Surface Characteristics of Thermoplastic Polyurethane V-Belt

机译:热塑性聚氨酯V型带的热稳定性和表面特性评估

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摘要

This article proposes thermography as a non-contact diagnostic tool for assessing drive reliability. The application of this technique during the operation of the belt transmission with a heat-welded thermoplastic polyurethane V-belt was presented. The V-belt temperature changes depending on the braking torque load at different values of the rotational speed of the active pulley, which were adopted as diagnostic characteristics. In this paper, the surface morphology of the polyurethane (PU) belts was assessed on the basis of microscopic and hardness tests. A surface roughness tester was used to evaluate the surface wear. The surface morphology and topography of the materials was determined by scanning electron microscopy (SEM) and optical microscopy. It was found that the most favorable operating conditions occurred when the temperature values of active and passive connectors were similar and the temperature difference between them was small. The mechanical and structure results indicate that the wear of the PU belt was slight, which provided stability and operational reliability for V-belt transmission. The microscopic images lacked clear traces of cracks and scratches on the surface, which was confirmed by the SEM observations.
机译:本文提出了热成像作为评估驱动器可靠性的非接触式诊断工具。介绍了该技术在带热熔热塑性聚氨酯V带的传动带运行中的应用。在主动皮带轮转速不同的情况下,V型皮带温度随制动转矩负载而变化,这被用作诊断特性。在本文中,基于显微镜和硬度测试评估了聚氨酯(PU)带的表面形态。使用表面粗糙度测试仪评估表面磨损。通过扫描电子显微镜(SEM)和光学显微镜确定材料的表面形态和形貌。发现当主动和被动连接器的温度值相似且它们之间的温差较小时,会出现最有利的工作条件。力学和结构结果表明,PU皮带的磨损很小,这为三角皮带传动提供了稳定性和操作可靠性。显微图像在表面上没有清晰的裂纹和划痕痕迹,这通过SEM观察得到了证实。

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