欢迎登录材料期刊网

材料期刊网

高级检索

利用分离式Hopkinson压杆实验装置(SHPB)研究Zr38Ti17Cu10.5Co12Be22.5大块非晶合金的室温动态压缩断裂行为,应变率控制在~102 s-1.该大块非晶在动态压缩条件下表现出完全弹性变形,在断裂之前没有明显的塑性变形.试样沿与加载方向成~42°的方向剪切断裂,剪切面非常粗糙.利用扫描电子显微镜(SEM)研究剪切带的形核和扩展.高倍下在剪切面上观察到明显的微剪切带和微裂纹,表明在动态加载条件下,剪切带形核之后立即促发形成微剪切带或者微裂纹.此外,在剪切面观察到的熔融带表明在动态断裂过程中,绝热也起到了很重要的作用.

参考文献

[1] Ashby M F;Greer A L .Metallic glasses as structural materials[J].Scripta Materialia,2006,54:321-326.
[2] Bruck H A;Christman T;Rosakis A J et al.Quasi-static constitutive behacior of Zr38Ti17Cu10.5Co12Be22.5 bulk amorphous alloys[J].Scripta Metallurgica et Materialia,1994,30:429-434.
[3] Conner R D;Rosakis A J;Johnson W L et al.Fracture tonghness deformation for a beryllium-bearing bulk metallic glass[J].Scripta Materialia,1997,37(09):1373-1378.
[4] Gilbert CJ;Ritchie RO;Johnson WL .Fracture toughness and fatigue-crack propagation in a Zr-Ti-Ni-Cu-Be bulk metallic glass[J].Applied physics letters,1997(4):476-478.
[5] Otsubo F;Shimoda A;Era H.Corrosion resistance of FeCr-Mo-(C,B,P) amorphous coatings thermal sprayed by HVOF and APS processes[A].Osaka,Japan,2004:439-441.
[6] J. Jayaraj;D. J. Sordelet;D. H. Kim;Y. C. Kim;E. Fleury .Corrosion behaviour of Ni-Zr-Ti-Si-Sn amorphous plasma spray coating[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2006(4):950-964.
[7] Dmitri V. Louzguine;Hidemi Kato;Akihisa Inoue .High-strength Cu-based crystal-glassy composite with enhanced ductility[J].Applied physics letters,2004(7):1088-1089.
[8] A.Inoue .Stabilization of metallic supercooled liquid and bulk amorphous alloys[J].Acta materialia,2000(1):279-306.
[9] Xing LQ.;Ramesh KT.;Li J.;Hufnagel TC.;Li Y. .Enhanced plastic strain in Zr-based bulk amorphous alloys - art. no. 180201[J].Physical Review.B.Condensed Matter,2001(18):0201-0.
[10] H. CHOI-YIM;R. BUSCH;U. KOSTFR;W. L. JOHNSON .SYNTHESIS AND CHARACTERIZATION OF PARTICULATE REINFORCED Zr57Nb5Al10Cu15.4Ni12.6 BULK METALLIC GLASS COMPOSITES[J].Acta materialia,1999(8):2455-2462.
[11] Bruck H.A.;Rosakis A.J. .The dynamic compressive behavior of beryllium bearing bulk metallic glasses[J].Journal of Materials Research,1996(2):503-511.
[12] Follansbee P S.Metals handbook[M].American Society of Metals,Metals Park,OH,1985:198-203.
[13] T.C. Hufnagel;T. Jiao;Y. Li .Deformation and failure of Zr_(57)Ti_5Cu_(20)Ni_8Al_(10) bulk metallic glass under quasi-static and dynamic compression[J].Journal of Materials Research,2002(6):1441-1445.
[14] L.F. Liu;L.H. Dai;Y.L. Bai .Strain rate-dependent compressive deformation behavior of Nd-based bulk metallic glass[J].Intermetallics,2005(8):827-832.
[15] Toshiji Mukai;T.G. Nieh;Yoshihito Kawamura .Effect of strain rate on compressive behavior of a Pd_(40)Ni_(40)P_(20) bulk metallic glass[J].Intermetallics,2002(11/12):1071-1077.
[16] Z.F. Zhang;J. Eckert;L. Schultz .Difference in compressive and tensile fracture mechanisms of Zr_(59)Cu_(20)Al_(10)Ni_8Ti_3 bulk metallic glass[J].Acta materialia,2003(4):1167-1179.
[17] X.D. Hui;H.C. Kou;J.P. He .Preparation, microstructure and mechanical properties of Zr-based bulk amorphous alloys containing tungsten[J].Intermetallics,2002(11/12):1065-1069.
[18] Jiao T;Fan C;Kecskes L J et al.Effect of loading rate on failure in bulk metallic glasses[J].Materials Research Society Symposium Proceedings,2003,754:243-248.
[19] Subhash G.;Dowding RJ.;Kecskes LJ. .Characterization of uniaxial compressive response of bulk amorphous Zr-Ti-Cu-Ni-Be alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):33-40.
[20] Spaepen F .A microscopic mechanism for steady state inhomogeneous flow in metallic glasses[J].Acta Metallurgica,1977,25:407-415.
[21] Li J.;Spaepen F.;Hufnagel TC. .Nanometre-scale defects in shear bands in a metallic glass[J].Philosophical Magazine.A.Physics of condensed matter, defects and mechanical properties,2002(13):2623-2630.
[22] Dai LH;Yan M;Liu LF;Bai YL .Adiabatic shear banding instability in bulk metallic glasses[J].Applied physics letters,2005(14):1916-1-1916-3-0.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%