通过Bridgman定向凝固成功制备了成分为Zr58.8Ti14.3Nb5.2Cu6.1Ni4.9Be1.0的内生枝晶增塑的非晶复合材料.内生枝晶的尺寸和体积分数可以经抽拉速度的改变得以控制,进而实现了对其力学性能的调节.研究表明,枝晶的大小与抽拉速度呈线性关系,体现出定向凝同在制备非晶复合材料方面可调控析出相的优势.通过对实验参数抽拉速度的优化得出,当抽拉速度为1.0 mm/s时,最高压缩强度达到了1930 MPa,断裂塑性达到11.3%.
参考文献
[1] | Peker A,Johnson W L.Appl Phys Left,1993; 63:2342 |
[2] | Inoue A,Zhang T.Mater Trans JIM,1996; 37:185 |
[3] | Bian Z,Chen G L,He G,Hui X D.Mater Sci Eng,2001;A316:135 |
[4] | Liu Y H,Wang G,Wang R J,Zhao D Q,Pan M X,Wang W H.Science,2007; 315:1385 |
[5] | Wang G Y,Liaw P K,Yokoyama Y,Inoue A,Liu C T.Mater Sci Eng,2008; A494:314 |
[6] | Hays C C,Kim C P,Johnson W L.Phys Rev Left,2000;84:2901 |
[7] | Fan C,Ott R T,Hufnagel T C.Appl Phys Left,2002; 81:1020 |
[8] | Fan C,Li H Q,Kecskes L J,Tao K X,Choo H,Liaw P K,Liu C T.Phys Rev Left,2006; 96:145506 |
[9] | Tan H,Zhang Y,Li Y.Intermetallics,2002; 10:1203 |
[10] | Tan H,Zhang Y,Ma D,Feng Y P,Li Y.Acta Mater,2003;51:4551 |
[11] | Tan H,Zhang Y,Hu X,Feng Y P,Li Y.Mater Sci Eng,2004; A375-377:407 |
[12] | Zhang Y,Xu W,Tan H,Li Y.Acta Mater,2005; 53:2607 |
[13] | Sun G Y,Chert G,Chen G L.Acta Metall Sin,2006; 42:331(孙国元,陈光,陈国良.金属学报,2006;42:331) |
[14] | Hofmann D C,Suh J Y,Wiest A,Duan G,Lind M L,Demetriou M D,Johnson W L.Nature,2008; 451:1085 |
[15] | Fan C,Li C F,Inoue A.Phys Rev,2000; 61B:R3761 |
[16] | Lee M L,Li Y,Schuh C A.Acta Mater,2004; 52:4121 |
[17] | Song S X,Bei H,Wadsworth J,Nieh T G.Intermetalics,2008; 16:813 |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%