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An experimental study of high-permeability nickel-iron alloys

机译:高磁导率镍铁合金的实验研究

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Because the properties of commercial alloys are inconsistent, designers of electrical equipment normally assume properties greatly inferior to those usually quoted. Further, very thin strips or sheets have losses greater than those predicted by simple theory. Factors which might influence either the ultimate performance or the consistency of the metals have therefore been studied, with particular reference to the 77/14/5/4 nickel-iron-copper-molybdenum alloy, using samples made by powder-metallurgy. If high permeabilities are to be attained the permissible tolerance on composition is very small, the limit for iron and nickel being only ???????±0.2%; further, any introduction of silicon makes the alloy susceptible to damage by water vapour in the annealing atmosphere. Using conventional melting techniques it is difficult to hold such tolerances and to avoid contamination by silicon. The types of low-permeability layer which have been previously reported are not intrinsic and are probably due to impure metal which has been unsatisfactorily or incompletely annealed. Although metal having a permeability of 30000 can be consistently made by strict control of composition and annealing, there is an unexpected component of a.c. loss which becomes serious at thicknesses less than about 30 microns. Spiral cores, if free from strain, can have properties almost as good as those of the strip they are made from.
机译:由于商用合金的性能不一致,因此电气设备的设计人员通常认为其性能大大低于通常引用的性能。此外,非常薄的条或片的损失大于简单理论所预测的损失。因此,使用粉末冶金制的样品,研究了可能影响金属最终性能或一致性的因素,特别是参考77/14/5/4镍-铁-铜-钼合金。如果要达到高的磁导率,则允许的组成公差很小,铁和镍的极限仅为±0.2%。此外,任何引入的硅都使合金易于在退火气氛中被水蒸气损坏。使用常规的熔化技术,难以保持这样的公差并避免被硅污染。先前已经报道过的低渗透层的类型不是固有的,并且可能是由于不令人满意的或不完全退火的不纯金属引起的。尽管可以通过严格控制组成和退火来一致地制造具有30000导磁率的金属,但仍有意想不到的交流电成分。厚度小于约30微米时,损耗变得严重。螺旋形铁心,如果没有应变,其性能几乎与制造它们的钢带一样好。

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