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Predicting Delta Ferrite Content in Stainless Steel Castings

机译:预测不锈钢铸件中的δ铁素体含量

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The distribution of delta ferrite fraction was measured with the magnetic method in specimens of different stainless steel compositions cast by the investment casting (lost wax) process. Ferrite fraction measurements published in the literature for stainless steel cast samples were added to the present work data, enabling an extensive analysis about practical methods to calculate delta ferrite fractions in stainless steel castings. Nineteen different versions of practical methods were formed using Schaeffler, DeLong, and Siewert diagrams and the nickel and chromium equivalent indexes suggested by several authors. These methods were evaluated by a detailed statistical analysis, showing that the Siewert diagram, including its equivalent indexes and iso-ferrite lines, gives the lowest relative errors between calculated and measured delta ferrite fractions. Although originally created for stainless steel welds, this diagram gives relative errors lower than those for the current ASTM standard method (800/A 800M-01), developed to predict ferrite fractions in stainless steel castings. Practical methods originated from a combination of different chromiumickel equivalent indexes and the iso-ferrite lines from Schaeffler diagram give the lowest relative errors when compared with combinations using other iso-ferrite line diagrams. For the samples cast in the present work, an increase in cooling rate from 0.78 to 2.7 K/s caused a decrease in the delta ferrite fraction, but a statistical hypothesis test revealed that this effect is significant in only 50% of the samples that have ferrite in their microstructures.
机译:用磁性方法在熔模铸造(失蜡)工艺铸造的不同不锈钢成分的试样中,测量了δ铁素体含量的分布。文献中针对不锈钢铸件样本发布的铁素体分数测量值被添加到当前工作数据中,从而能够对计算不锈钢铸件中δ铁素体分数的实用方法进行广泛的分析。使用Schaeffler,DeLong和Siewert图以及几位作者提出的镍和铬当量指数,形成了十九种不同版本的实用方法。通过详细的统计分析对这些方法进行了评估,结果表明,Siewert图(包括其等效指数和等铁氧体线)在计算出的和测量的δ铁素体含量之间给出了最低的相对误差。尽管此图最初是为不锈钢焊缝创建的,但该图的相对误差低于当前ASTM标准方法(800 / A 800M-01)的相对误差,该方法是为预测不锈钢铸件中的铁素体含量而开发的。与使用其他等铁素体折线图的组合相比,源自不同铬/镍当量指数的组合和舍弗勒图中的等铁氧体线的实用方法给出的相对误差最低。对于本工作中铸造的样品,冷却速度从0.78提高到2.7 K / s导致δ铁素体分数降低,但统计假设检验表明,只有50%的样品具有这种效果铁素体的微观结构。

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