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The effect of Si and microstructure evolution on the thermal expansion properties of Fe–42Ni–Si alloy strips

机译:硅和组织演变对Fe–42Ni–Si合金带材热膨胀性能的影响

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摘要

An alloying element of 0–1.5 wt.% Si was added to an Fe–42%Ni system, and alloy strips were fabricated using a melt drag casting process. The effects of the Si and annealing treatments on the thermal expansion properties of Fe–42Ni alloy were investigated. The addition of Si enlarged the coexisting temperature region of the solid–liquid phase and reduced the melting point, which improved the formability of the alloy strip. An alloy containing 0.6 wt.% Si had a lower thermal expansion coefficient than any other alloy in the temperature range from 20 to 350 °C. The grain size increased with the rolling reduction ratio and annealing temperature, which caused an increase in magnetostriction and consequently a decrease in the thermal expansion coefficient of the strip. The alloy strip containing 1.5 wt.% Si had a higher thermal expansion coefficient than the alloy containing 0.6 wt.% Si because of grain refining caused by the precipitation of Ni3Fe.
机译:将0-1.5%(重量)的Si合金元素添加到Fe-42%(镍)体系中,并使用熔体拖铸工艺制造合金带。研究了硅和退火处理对Fe–42Ni合金热膨胀性能的影响。硅的添加扩大了固液相共存的温度范围并降低了熔点,从而改善了合金带的可成形性。含有0.6 wt。%Si的合金在20至350°C的温度范围内具有比其他任何合金低的热膨胀系数。晶粒尺寸随着压下率和退火温度的增加而增加,这引起磁致伸缩的增加,并因此导致带材的热膨胀系数降低。含有1.5wt。%的Si的合金带材比含有0.6wt。%的Si的合金具有更高的热膨胀系数,这是由于Ni 3 Fe的沉淀引起的晶粒细化。

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