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The effect of nitrogen on the cold forging properties of 1020 steel

机译:氮对1020钢冷锻性能的影响

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We have studied the effect of nitrogen on the cold forging properties of a low carbon steel as a function of temperature. Five AISI 1020 steels with nitrogen contents from 12 to180 ppm were examined by tensile testing from 25 to 371 deg C. Yield strength, tensile elongation (ductility), ultimate tensile strength (UTS), strain hardening exponents and strength coefficients were determined. The influence of nitrogen on the mechanical property behavior of this low carbon steel exhibits trends as expected-when nitrogen content increases, the strength of the steel increases and the ductility decreases. Likewise, as the temperature increases, the strength of the steel generally decreases; however, the ductility initially decreases, then exhibits an increasing trend. Additionally, there is an intermediate temperature range for these alloys where anomalous behavior is observed. Serrated stress-strain curves seen in this temperature range are indicative of dynamic strain aging. It is probable that this anomalous mechanical property trend is due to dynamic strain aging.
机译:我们研究了氮对低碳钢冷锻性能随温度的影响。通过在25至371摄氏度下进行拉伸测试,对五种氮含量为12至180 ppm的AISI 1020钢进行了测试。确定了屈服强度,拉伸伸长率(延展性),极限拉伸强度(UTS),应变硬化指数和强度系数。氮对这种低碳钢的机械性能的影响呈现出预期的趋势-当氮含量增加时,钢的强度增加,延性降低。同样,随着温度的升高,钢的强度通常会下降;然而,延展性最初降低,然后呈现出增加的趋势。另外,对于这些合金来说,存在中间温度范围,在该温度范围内观察到异常行为。在此温度范围内看到的锯齿状应力-应变曲线指示动态应变老化。这种异常的机械性能趋势可能是由于动态应变时效引起的。

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