首页> 外文会议>Industry Applications Conference, 1996. Thirty-First IAS Annual Meeting, IAS '96., Conference Record of the 1996 IEEE >Development of a new current limiting technique by 3D nonlinear analysis of magnetic fields in arc chambers and its application to LV circuit breakers
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Development of a new current limiting technique by 3D nonlinear analysis of magnetic fields in arc chambers and its application to LV circuit breakers

机译:通过电弧室磁场的3D非线性分析开发一种新的电流限制技术及其在低压断路器中的应用

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A new current limiting technique called "ISTAC" (impulsive slot type accelerator) has been developed for MCCBs (low-voltage molded case circuit breakers). The ISTAC is a technique where the magnetic flux density around the fixed contact in an arc chamber is enhanced using a new fixed conductor which is formed in a J-shape. This increases the arc driving force and the opening torque of the movable conductor at the beginning of the current-breaking motion. During this development, the magnetic fields in arc chambers were analyzed by 3-dimensional nonlinear numerical analysis and the usefulness of the analysis was confirmed by measurement. A new arc chamber configuration was designed and optimized using this analysis. It became clear that at the beginning of the current-breaking motion the magnetic arc driving force and the opening torque of the movable conductor in the new arc chamber with the J-shaped conductor were larger than those in old arc chambers with a U-shaped fixed conductor. In a high current-breaking test, an experimental MCCB with the new arc chamber showed 1.6 times the rising rate of arc voltage of the old one. By use of the ISTAC, a new type of MCCB has been developed, having a high level of current limiting performance in spite of its small external dimensions. Moreover, free spaces in the MCCB due to the reduction in size of the arc chamber could be used for supplementary functions.
机译:已经为MCCB(低压塑壳断路器)开发了一种新的限流技术,称为“ ISTAC”(脉冲槽式加速器)。 ISTAC是一种使用形成为J形的新型固定导体来增强电弧室中固定触点周围的磁通密度的技术。这在电流断开运动开始时增加了电弧驱动力和可动导体的断开扭矩。在此开发过程中,通过三维非线性数值分析法分析了电弧室中的磁场,并通过测量证实了该分析法的有用性。使用此分析设计并优化了新的电弧室配置。很明显,在断流运动开始时,带有J形导体的新电弧室中的可动导体的电弧驱动力和可动导体的打开扭矩要比带有U形的旧电弧室中的大。固定导体。在高电流断开测试中,带有新电弧室的实验性MCCB显示出旧电弧室上升电压的1.6倍。通过使用ISTAC,已开发出一种新型的MCCB,尽管其外形尺寸很小,但仍具有很高的限流性能。此外,由于电弧室尺寸的减小,MCCB中的自由空间可用于补充功能。

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