Effect of tempering temperature on the microstructure and mechanical properties of AISI 6150 steel was investigated. All samples were austenitized at 870 ℃ for 45 min followed by oil quenching, and then tempered at t...Effect of tempering temperature on the microstructure and mechanical properties of AISI 6150 steel was investigated. All samples were austenitized at 870 ℃ for 45 min followed by oil quenching, and then tempered at temperatures between 200 and 600 ℃ for 60 min. The results show that the microstructure of tempered sample at 200 ℃ mainly consists of tempered martensite. With increasing the tempered temperature, the martensite transforms to the ferrite and carbides. The ultimate tensile strength, the hardness and the retained austenite decrease with increasing tempered temperature, and 0.2% yield strength increases when the temperature increases from 200 to 300 ℃ and then decreases with increasing the temperature, but the elongation and impact energy increase with increasing the tempering temperature.展开更多
为了研究UP6150阴树脂粉末对阀冷系统6063铝合金腐蚀的影响,在(50±1)℃下通电(10 m A直流电流)与不通电情况下进行了6063铝合金浸泡腐蚀试验,200 m L去离子水中加0,6,10 g阴树脂粉末,将6063铝合金浸泡不同天数测定试样腐蚀速率,分...为了研究UP6150阴树脂粉末对阀冷系统6063铝合金腐蚀的影响,在(50±1)℃下通电(10 m A直流电流)与不通电情况下进行了6063铝合金浸泡腐蚀试验,200 m L去离子水中加0,6,10 g阴树脂粉末,将6063铝合金浸泡不同天数测定试样腐蚀速率,分析了表面形貌及溶液中离子含量,并进行相关的电化学测试。结果表明:在通电与不通电的情况下,阴树脂粉末均加速6063铝合金腐蚀,阴树脂粉末浓度越大,腐蚀越严重; 50℃时阴树脂粉末分解,生成腐蚀性离子,加速了铝合金的腐蚀;腐蚀产物中含有大量的C、O、Al,还含有少量的N,表明阴树脂分解产物参与腐蚀过程,生成Al N(Al N-R),对铝合金造成腐蚀; 6063铝合金在阴树脂粉末溶液中自腐蚀电位负移,自腐蚀电流密度增大。展开更多
基金Project(2011BAE13B03) supported by the National Key Technology R&D Program of China
文摘Effect of tempering temperature on the microstructure and mechanical properties of AISI 6150 steel was investigated. All samples were austenitized at 870 ℃ for 45 min followed by oil quenching, and then tempered at temperatures between 200 and 600 ℃ for 60 min. The results show that the microstructure of tempered sample at 200 ℃ mainly consists of tempered martensite. With increasing the tempered temperature, the martensite transforms to the ferrite and carbides. The ultimate tensile strength, the hardness and the retained austenite decrease with increasing tempered temperature, and 0.2% yield strength increases when the temperature increases from 200 to 300 ℃ and then decreases with increasing the temperature, but the elongation and impact energy increase with increasing the tempering temperature.
文摘为了研究UP6150阴树脂粉末对阀冷系统6063铝合金腐蚀的影响,在(50±1)℃下通电(10 m A直流电流)与不通电情况下进行了6063铝合金浸泡腐蚀试验,200 m L去离子水中加0,6,10 g阴树脂粉末,将6063铝合金浸泡不同天数测定试样腐蚀速率,分析了表面形貌及溶液中离子含量,并进行相关的电化学测试。结果表明:在通电与不通电的情况下,阴树脂粉末均加速6063铝合金腐蚀,阴树脂粉末浓度越大,腐蚀越严重; 50℃时阴树脂粉末分解,生成腐蚀性离子,加速了铝合金的腐蚀;腐蚀产物中含有大量的C、O、Al,还含有少量的N,表明阴树脂分解产物参与腐蚀过程,生成Al N(Al N-R),对铝合金造成腐蚀; 6063铝合金在阴树脂粉末溶液中自腐蚀电位负移,自腐蚀电流密度增大。