中国稀土学报
中國稀土學報
중국희토학보
JOURNAL OF THE CHINESE RARE EARTH SOCIETY
2009年
6期
822-828
,共7页
彭志江%李志军%侯介山%满延林%郭建亭%周兰章
彭誌江%李誌軍%侯介山%滿延林%郭建亭%週蘭章
팽지강%리지군%후개산%만연림%곽건정%주란장
钇%铈%高温合金%返回料%组织%力学性能%稀土
釔%鈰%高溫閤金%返迴料%組織%力學性能%稀土
을%시%고온합금%반회료%조직%역학성능%희토
yttrium%cerium%superalloy%revert alloy%microstructure%mechanical property%rare earths
研究了Y,Ce对含铪(Hf)镍基铸造高温合金K444返回料(添加50%返回料)合金的力学性能和组织的影响.研究结果表明:适量Y,Ce(Y<0.03%,Ce<0.015%(质量分数))添加到返回料合金后,一方面,Y,Ce具有去除N,O等有害杂质的作用,使O含量由15×10~(-6)降低到8×10~(-6),N含量由35×10~(-6)降低到18×10~(-6),从而使返回料合金得到净化.另一方面,Y,Ce细化了枝晶组织,减少了共晶和大块状碳化物数量,并且强化了晶界.和未加Y,Ce的返回料合金相比.添加Y,Ce使返回料合金室温拉伸强度提高约100 MPa,塑性提高近一倍;使900℃的高温瞬时拉伸性能波动较为平稳,塑性提高近一倍.添加Y,Ce还可以提高返回合金900℃/274 MPa条件下的持久性能,达到新料水平;可以明显延长K444返回合金900℃/274 MPa条件下的蠕变第二阶段,提高蠕变寿命.
研究瞭Y,Ce對含鉿(Hf)鎳基鑄造高溫閤金K444返迴料(添加50%返迴料)閤金的力學性能和組織的影響.研究結果錶明:適量Y,Ce(Y<0.03%,Ce<0.015%(質量分數))添加到返迴料閤金後,一方麵,Y,Ce具有去除N,O等有害雜質的作用,使O含量由15×10~(-6)降低到8×10~(-6),N含量由35×10~(-6)降低到18×10~(-6),從而使返迴料閤金得到淨化.另一方麵,Y,Ce細化瞭枝晶組織,減少瞭共晶和大塊狀碳化物數量,併且彊化瞭晶界.和未加Y,Ce的返迴料閤金相比.添加Y,Ce使返迴料閤金室溫拉伸彊度提高約100 MPa,塑性提高近一倍;使900℃的高溫瞬時拉伸性能波動較為平穩,塑性提高近一倍.添加Y,Ce還可以提高返迴閤金900℃/274 MPa條件下的持久性能,達到新料水平;可以明顯延長K444返迴閤金900℃/274 MPa條件下的蠕變第二階段,提高蠕變壽命.
연구료Y,Ce대함협(Hf)얼기주조고온합금K444반회료(첨가50%반회료)합금적역학성능화조직적영향.연구결과표명:괄량Y,Ce(Y<0.03%,Ce<0.015%(질량분수))첨가도반회료합금후,일방면,Y,Ce구유거제N,O등유해잡질적작용,사O함량유15×10~(-6)강저도8×10~(-6),N함량유35×10~(-6)강저도18×10~(-6),종이사반회료합금득도정화.령일방면,Y,Ce세화료지정조직,감소료공정화대괴상탄화물수량,병차강화료정계.화미가Y,Ce적반회료합금상비.첨가Y,Ce사반회료합금실온랍신강도제고약100 MPa,소성제고근일배;사900℃적고온순시랍신성능파동교위평은,소성제고근일배.첨가Y,Ce환가이제고반회합금900℃/274 MPa조건하적지구성능,체도신료수평;가이명현연장K444반회합금900℃/274 MPa조건하적연변제이계단,제고연변수명.
The effects of Y and Ce doping on the mi-crostructure and mechanical properties of a revert Hf contained nickel base superalloy K444 (with 50% re-vert alloy) were investigated. The results showed that an appropriate addition of Y and Ce (Y < 0. 03%, Ce <0. 015%) in the revert alloy could reduce the harmful impurity O from 15×10~(-6) to 8×10~(-6) and N from 35×10~(-6) to 18×10~(-6), and consequently purify the revert alloy. On the other hand, Y and Ce led to fine dendrites, decreased eutectics and block car-bides, and strengthened grain boundary. Compared with the revert alloy without Y and Ce, the Y and Ce doped alloy possessed 100 MPa higher tensile strength and double tensile ductility at room temperature.While at 900℃ the variation of tensile ductility of the Y and Ce doped revert alloy was slighter, and the ten-sile ductility doubled that of the revert alloy without Y and Ce. With Y and Ce doping, the stress-rupture life of the revert alloy at 900℃/274 MPa was prolonged and approached to that of virgin alloy. In addition, the secondary stage during creep at 900℃/274 MPa was prolonged and thus the creep rupture was im-proved.