简介:High-strengthsteelshavebeenwidelyappliedtoautomotivechassisparts.Inordertoformcomplexshapes,highholeexpansionratesandhighformabilityarerequired.Dualphase(DP)steelhasagoodformability,butapoorholeexpansionrate.Inthiscircumstance,anotherkindofsteelwhichhasamicrostructureofferrite-bainite,ratherthanferrite-martensite,hasbeenfoundtobeanalternativesolution.ItiscalledFBsteel.ThissteelwithSi,CandMnadditionsareappliedinthisstudy.Atwo-stepcooling...
简介:Resultspresentedinthisstudycontributetoinvestigationofthemicrostructureandmechanicalpropertiesofthehot-rolledFe16Mn0.6Csteelplates.Thesteelplateshavebeenproducedbybeinghot-rolledattemperaturesrangingfrom1100℃to850℃insevenpassesto97.5%reductioninthicknessandthencooledinafurnaceof650℃.Someplateshavebeenannealedattemperaturesrangingfrom300℃to1100℃for5minto60min,andthenfollowedbywaterquenching.Thereareannealingtwinsinthehot-rolledFe16M...
简介:采用非水溶液溶胶-凝胶法,并结合高温碳热还原法制备锂离子电池用高可逆容量的Sn-C复合负极材料,通过调节Sn源与炭源的比例及碳热还原过程中的升温制度来控制金属Sn的粒度和Sn-C复合材料的结构形态。借助XRD、EDS、SEM、循环伏安及恒流充放电测试对材料的物化性能进行表征。结果表明,当Sn源与C源质量比为80:20、还原温度为800℃时,纳米级金属Sn均匀紧密地分布在无定形热解炭基体中,形成良好的纳/微复合结构,此时复合材料性能相对最优;该复合材料在电流密度为100mA/g,首次可逆比容量为637.9mAh/g,循环30次后充电容量保持在372.5mAh/g以上,第二次循环库伦效率达到97%以上。