首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Understanding the Role of Inclusions on the Dynamic Fracture Toughness of High Strength Lightweight FeMnAl Steels
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Understanding the Role of Inclusions on the Dynamic Fracture Toughness of High Strength Lightweight FeMnAl Steels

机译:了解夹杂物对高强度轻质幻线钢的动态断裂韧性的作用

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High manganese lightweight steel alloys in the Fe-Mn-Al-C system are promising alternatives to quenched and tempered Cr and Mo steels for transportation and military applications. The understanding of nonmetallic inclusion formation and their effect on the mechanical properties is of extreme importance for further alloy development. Sharp and brittle AlN forms prior to the liquidus and has been shown to decrease notch toughness. Controlled additions of sulfur may promote soft and globular MnS that precipitates around AlN during solidification, thus mitigating their detrimental effect. The effect of controlled sulfur additions from 0.004 to 0.042%S was studied in a Fe-30%Mn-9%Al-1%Si-(0.9-1.2)%C-0.5%Mo steel. The main inclusions observed were AlN, MnS, and AlN-cored MnS. Charpy impact toughness was evaluated in the solution treated condition and in specimens aged to 329-340 HBN. Toughness is a function of the overall inclusion population. In aged specimens, same was true only for steels with 0.9% carbon; above 1%C the toughness was below 15J for any sulfur content.
机译:Fe-Mn-Al-C系统中的高锰轻质钢合金是淬火和淬火CR和MO​​钢的替代品,用于运输和军用应用。对非金属包涵体形成的理解及其对机械性能的影响对于进一步的合金发育是极端重要的。在液体之前夏普和脆性ALN形式,并且已被证明可以降低凹口韧性。硫的控制添加可以促进凝固过程中沉淀的软和球状MN,从而减轻了它们的有害作用。在Fe-30%Mn-9%Al-1%Si-(0.9-1.2)%C-0.5%Mo钢中,研究了0.004至0.042%S.004%至0.042%的受控硫的效果。观察到的主要内含物是ALN,MNS和ALN-CORED MNS。在溶液处理条件下评价夏比冲击韧性,并在为329-340 hbN的标本中评价。韧性是整体包涵体的函数。在老化的标本中,对于0.9%碳的钢,同样是正确的;对于任何硫含量,韧性低于15J的韧性低于15J。

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