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Calculation of Thermobimetallic Releases of Circuit Breakers with Indirect Heating for Currents from 63 to 250 A

机译:间接加热电流63至250 A时断路器的热双金属释放量的计算

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摘要

Thermal releases based on thermobimetallic elements (TBEs) form the current-dependent part of the protective characteristic of a circuit breaker. The design of a mechanism of free releasing and the characteristics of a thermobimetallic element are analyzed. The operating condition for the thermal release is formulated, which is based on comparison of the mechanical characteristics of an actuator and thermomechanical characteristic of TBEs. Experimental studies of thermobimetallic releases, which are analogues of the breakers to be developed, were carried out. Taking into account the results of these experiments, a design procedure of thermobimetallic release was developed, which is applicable for all types of TBE heating (direct, indirect, combined). The procedure makes it possible to determine the geometrical dimensions of a TBE and the methods of its heating, as well as the operating temperature of release depending on the rated current of the breaker. It has been noted that, to provide the possibility of operating current adjusting, as well as for reliable operation of circuit breakers under vibration and shock conditions, it is necessary to provide for the free running of TBE during design. Comparison of design and experimental data showed the accuracy of procedure, which is acceptable for practical calculations.
机译:基于热双金属元素(TBE)的热释放构成了断路器保护特性中电流相关的部分。分析了自由释放机理的设计和热双金属元素的特性。通过比较执行器的机械特性和TBE的热机械特性,制定了热释放的工作条件。进行了热双金属释放的实验研究,该热双金属释放是要开发的断路器的类似物。考虑到这些实验的结果,开发了一种热双金属释放的设计程序,该程序适用于所有类型的TBE加热(直接,间接,组合)。该程序可以根据断路器的额定电流来确定TBE的几何尺寸及其加热方法以及脱扣器的工作温度。已经注意到,为了提供工作电流调节的可能性,以及为了使断路器在振动和冲击条件下可靠地工作,有必要在设计期间提供TBE的自由运行。设计和实验数据的比较表明了该程序的准确性,这对于实际计算是可以接受的。

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