Toughening and Embrittlening of Si-Mn-Mo-V Steels in Quenched and lowTemperature Tempered Condition
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摘要: 本文利用沖擊韌性試驗、掃描電鏡、離子探針及俄歇譜議等手段研究討論了合金元素Si和Mn對Si-Mn-Mo-V鋼在淬火和低溫回火狀態下韌性的影響規律。研究結果表明:當鋼中不含Si或含有少量Si面單獨加入Mn,則由于Mn-P在晶界共偏析的原因,使P在晶界的濃度大為增加,導致了鋼在淬火和低溫回火狀態下沿晶斷裂的發生,從而降低了鋼的韌性水平。在高Mn(2%Mn)鋼中加入Si,由于Si在晶界的富集及Si-P的相互排斥作用,使P在晶界的偏析濃度下降。從而在一定程度上抑制了晶界脆性的發展和晶界斷裂的發生,使鋼的韌性水平顯著提高。
本文還研究了Si和Mn對Si-Mn-Mo-V鋼低溫回火脆性(350℃脆性)的影響。實驗結果表明:低溫回火脆性既與雜質元素的晶界偏析有關,又與ε碳化物向滲碳體轉化及滲碳體沿原奧氏體晶界成薄片狀析出有關,由于Si和Mn既能影響雜質元素,特別是P在晶界的偏聚,又能影響ε碳化物向滲碳體轉化,故Si和Mn對Si-Mn-Mo-V鋼低溫回火脆性發生的溫度和強烈程度均有顯著的影響。Abstract: The influence of Si and Mn on the toughening and embrittlening of Si-Mn-Mo-V steels in the quenched and low temperature tempered condition has been studied in this paper. Experimental results indicate that the segregation of P at austenite grain boundaries is seriously promoted by the Mn addition in-the steel without Si. The segregation of P may be occured during the austeni tizing and subsequent cooling by the co-segregation of Mn and P.The steel at quenched and low temperature tempered condition is offen failed by intergran ular fracture, with low impact toughness because of P segregation.The segregation of P and Mn at the austenite grain boundaries is significantly decreased by the addition of Si in the steel which has been embrittled by Mn (about 2%).Auger Spectromicroscope analyses show there is an obvious segregation of Si at the austenite grain boundaries of the Si bearing steels.It is well known that Si and P have a nagative interaction coefficient,sip<0.For this reason,P was repelled away from the austenite grain boundaries where si has been alread segregated and then the concentration of P at the grain boundaries is decreased.For reasons given above,the grain boundar ombrittlernent and in-tsrgranular fracture are suppressed and then the impact touphnese is markedly increased.
The effects of si and Mn on low temperature tempered embrittlement(LT-TE), or 350℃-embrittlement as it called, of Si-Mn-Mo-V steels have been a-Iso studied in this work. Experimental results indicate that the LTTE is associated both with the impurities segregation at grain boundaries and with the transition of epsilon carbide to cementite which usually precipitated as thin film at the austenite grain boundaries. The segregation of impurities, especially P and the carnbide transition are both significantly influenced by si and Mn. Therefore, the temperature and the intensity of LTTE occured in these steels are also strongly influenced by si and Mn. -

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