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硅錳合金電阻法定硅

Determination of silicon content in Si-Mn ferroalloys by measuring resistivity

  • 摘要: 根據準二元合金隨其中某種合金元素含量的不同,其合金電阻率發生單值變化的規律,提出了一項硅錳合金電阻法定硅的檢測技術.實驗結果表明,硅錳合金中硅含量與電阻率變化的關系可表示為Si%=-12.51+2×107ρ-4×1012ρ2,當合金中硅的質量分數小于6%時,合金中錳鐵比對其電阻率變化的影響不大,定硅誤差為0.005%~0.178%.用于電阻率測量的合金樣品適合的尺寸為φ6.00~6.50mm、長1cm左右,可以避免試樣中夾渣、裂隙等缺陷對電阻測量精度的影響.

     

    Abstract: Determining the content of silicon in Si-Mn ferroalloys was investigated by a novel resistivity measurement technique, which is based on the single-valued change of electrical resistivity with the content of one alloy element in a quasi-binary alloy. The relationship between silicon content and electrical resistivity in Si-Mn alloys was obtained by a series of experiments. It can be expressed as Si%=-12.51+2×107ρ-4×1012ρ2, When the content of silicon in Si-Mn alloys is less 6%, the ratio of Mn to Fe has little influence on the electrical resistivity. Furthermore, the error in determining the silicon content can be controlled within 0.005% to 0.178%. To avoid the effect of some factors including slag inclusions, voids and other defects on the measuring accuracy, samples applied to measure the electrical resistivity are 6.00 to 6.50 mm in diameter and about 1 cm in length.

     

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