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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Continuous Galvanizing Heat Treatments on the Microstructure and Mechanical Properties of High Al-Low Si Transformation Induced Plasticity Steels
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Effect of Continuous Galvanizing Heat Treatments on the Microstructure and Mechanical Properties of High Al-Low Si Transformation Induced Plasticity Steels

机译:连续镀锌热处理对高Al-低Si相变诱发塑性钢组织和力学性能的影响

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Heat treatments were performed using an isothermal bainitic transformation (IBT) temperature compatible with continuous hot-dip galvanizing on two high Al-low Si transformation induced plasticity (TRIP)-assisted steels. Both steels had 0.2 wt pct C and 1.5 wt pct Mn; one had 1.5 wt pct Al and the other had 1 wt pct Al and 0.5 wt pct Si. Two different intercritical annealing (IA) temperatures were used, resulting in intercritical microstructures of 50 pct ferrite (á)-50 pct austenite (?) and 65 pct á-35 pct ?. Using the IBT temperature of 465 °C, five IBT times were tested: 4, 30, 60, 90, and 120 seconds. Increasing the IBT time resulted in a decrease in the ultimate tensile strength (UTS) and an increase in the uniform elongation, yield strength, and yield point elongation. The uniform elongation was higher when using the 50 pct á-50 pct ? IA temperature when compared to the 65 pct a-35 pct y IA temperature. The best combinations of strength and ductility and their corresponding heat treatments were as follows: a tensile strength of 895 MPa and uniform elongation of 0.26 for the 1.5 pct Al TRIP steel at the 50 pct ? IA temperature and 90-second IBT time; a tensile strength of 880 MPa and uniform elongation of 0.27 for the 1.5 pct Al TRIP steel at the 50 pct y IA temperature and 120-second IBT time; and a tensile strength of 1009 MPa and uniform elongation of 0.22 for the 1 pct Al-0.5 pct Si TRIP steel at the 50 pct y IA temperature and 120-second IBT time.
机译:使用与两种高Al-Si转变诱导塑性(TRIP)辅助钢进行连续热浸镀锌的等​​温贝氏体转变(IBT)温度进行热处理。两种钢均具有0.2重量%的C和1.5重量%的Mn。一个具有1.5wt%的Al,另一个具有1wt%的Al和0.5wt%的Si。使用了两个不同的临界间退火(IA)温度,从而产生了50 pct铁素体(á)-50 pct奥氏体(?)和65pctá-35pct?的临界组织。使用465°C的IBT温度,测试了五个IBT时间:4、30、60、90和120秒。增加IBT时间会导致极限抗拉强度(UTS)降低,并且均匀伸长率,屈服强度和屈服点伸长率也会增加。使用50 pctá-50pct?时,均匀伸长率更高。与65 pct a-35 pct y IA温度相比的IA温度。强度和延展性及其相应的热处理的最佳组合如下:1.5 pct的Al TRIP钢在50 pct的拉伸强度为895 MPa,均匀伸长率为0.26。 IA温度和IBT时间90秒; 1.5 pct y IA温度和120秒IBT时间下1.5 pct的Al TRIP钢的抗拉强度为880 MPa,均匀伸长率为0.27; 1 pct Al-0.5 pct Si TRIP钢在50 pct y IA温度和120秒IBT时间下的抗拉强度为1009 MPa,均匀伸长率为0.22。

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