基于测试和评估标准提高感应电机的性能和安全性

Nkosinathi S. Khumalo;Ntombizotwa P. Memane;Udochukwu B. Akuru
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引用次数: 0

摘要

感应电机可将电能转化为机械能,已被公认为工业化的基石。感应电机的转子可以是鼠笼式转子,也可以是绕线式转子,两者都是无磁拓扑结构。三相鼠笼式感应电机因其可靠、启动转矩大、自启动和经济实惠等优点,经常用于工业驱动装置中。另一方面,单相感应电机通常用于小型负载,如家用电器中的小风扇、水泵和电动工具。在南非,由于感应电动机没有经过彻底测试,或在额定值、电气安全和性能方面标注错误,导致火灾和爆炸,造成人员伤亡和财产损失的报道屡见不鲜。本研究的目标是根据标准(IEC 和 SANS)的测试和评估结果,对本地制造/进口的感应电动机进行评估,从而防止不符合标准的感应电动机导致最终用户受伤和故障。这项研究是在南非标准局 (SABS) 的防爆技术和旋转机械(EPT 和 RM)实验室采用实验程序进行的。研究的主要发现表明,各种感应电机的铭牌特性存在差异,这可能会对其最终使用行业的后期生产和运行停机造成不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance and Safety Improvement of Induction Motors Based on Testing and Evaluation Standards
The induction motor, which converts electrical energy into mechanical energy, has been recognized as the cornerstone of industrialization. The rotor of an induction motor can be either a squirrel cage rotor or a wound-type rotor, both existing as magnetless topologies. Three-phase squirrel cage induction motors are frequently utilized in industrial drives because they are dependable, have high starting torque, are self-starting and affordable. Single-phase induction motors, on the other hand, are commonly used for small loads such as domestic appliances in form of modest fans, pumps and electric power tools. In South Africa, there have been reports of fires and explosions resulting in live and property loss because of induction motors that have not been thoroughly tested or are incorrectly labelled in terms of ratings, electrical safety and performance. The goal of this study is targeted at preventing end-user injuries and failures caused by non-compliant induction motors, by evaluating locally manufactured/imported induction motors based on tests and evaluation from standards (IEC and SANS). The study is conducted using experimental procedures at the Explosion Prevention Technology and Rotating Machines (EPT and RM) laboratory, South African Bureau of Standards (SABS), South Africa. The main finding from the study shows differences in the nameplate characteristics of various induction motors which could have detrimental effects such as production and operational downtime in their end-use industries, at later stages.
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