变压器负载中电流变化时,铁芯中的磁通是怎样变化的?

2025-03-15 21:10:24
推荐回答(2个)
回答1:

两种说法都是错误的。变压器空载时,在初级电压的作用下,变压器初级有空载电流通过,这个电流就是励磁电流,励磁电流使变压器铁心产生一个固定的磁通,因此在变压器的次级绕组中便感应出相应的电压(也叫电动势)。当给变压器次级加上负载,便有负载电流通过次级线圈,这个电流产生的磁势会削弱原有的励磁磁通,因此会使变压器初级的自感电势下降,在电源电压的作用下,变压器初级的电流会同时增大,以维持变压器铁心的原有磁通量不变(符合电磁感应定理)。所以,变压器工作时,不管负载轻重,他的磁通密度是不会变化的。那么,负载变化变压器内部到底发生了什么变化呢?变压器初级和次级线圈的磁势发生了变化,负载越重,磁动势越大,但初级和次级线圈产生的磁势始终是相等的,他们的大小相等但相位相反,这就是变压器的磁势平衡原理,平衡方程即是I1*N1-I2*N2=0。

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回答2:

只要端电压保持恒定,负载变化引起的磁通变化可以忽略。

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