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作 者:屈朝霞[1] 田志凌[2] 杜则裕[1] 何长红[2] 张晓牧[2] 杨柏[2]
机构地区:[1]天津大学,天津300072 [2]钢铁研究总院,北京100081
出 处:《焊接学报》2000年第4期9-12,共4页Transactions of The China Welding Institution
基 金:国家重点基础研究发展规划资助项目!(G1998061500)
摘 要:研究了低碳钢、普通市售X65钢和高洁净度X65钢三种超细晶粒钢焊接HAZ的晶粒长大倾向。试验结果表明,这些超细晶粒钢都具有严重的晶粒长大倾向;低碳超细晶粒钢比X65$细晶粒钢有更为严重的晶粒长大,这是因为前者不含有能阻碍晶粒长大的稳定碳、氮化物形成元素Nb和Ti,而后者中含有这些元素;高洁净度X65超细晶粒钢的HAZ晶粒长大倾向小于普通市售X65超细晶粒钢。这是因为钢中杂质元素含量越多,α→γ转变温度越低,即Ac3点越低,在同样的焊接热循环条件下,普通市售X65超细晶粒钢中的γ晶粒在高温停留时间就越长,晶粒长大的程度也就越大。In this paper,the grain growth in the HAZ of three kinds of ultra - fine grain steels such as low carbon steel,commercial X65 steel and high purity X65 steel were evaluated. Experimental results show that these ultra -- fine grain steels are prone to serious grain coarsening. The low carbon ultra -- fine grain steel has more serious grain growth in its HAZ than the ultra - fine grain X65 steels. It is because that the low carbon ultra -- fine grain steel doesnt contain niobium and titanium, while ultra -- fine grain X65 steels contain these elements. The high purity ultra - fine X65 steel has less grain growth tan commercial ultra -- fine grain X65 steel. It is because that the higher the ultra -- fine gain X65 steel's purity is,the higher the phase transformation temperature from a to r i,,that is to say, the lower Ac3 is. As a result, under the same condition, the shorter the time of the r phase in the commercial X65 steel staying in high temperature is,the bigger the grain growth in its HAZ is.
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