Please wait a minute...
Acta Metall Sin  2004, Vol. 40 Issue (7): 677-682     DOI:
Research Articles Current Issue | Archive | Adv Search |
COMPOSITIONAL CHARACTERISTIC OF TERNARY QUASICRYSTALS IN Ti--Zr--Ni SYSTEM
QIANG Jianbing; HUANG Huogen; WANG Yingmin; JIANG Nan; DONG Chuang
Department of Materials Engineering; Dalian University of Technology; Dalian 116024
Cite this article: 

QIANG Jianbing; HUANG Huogen; WANG Yingmin; JIANG Nan; DONG Chuang. COMPOSITIONAL CHARACTERISTIC OF TERNARY QUASICRYSTALS IN Ti--Zr--Ni SYSTEM. Acta Metall Sin, 2004, 40(7): 677-682 .

Download:  PDF(220KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  Ti--Zr--Ni alloy rods along two e/a--constant lines (e/a=1.20, 1.25) were prepared by using suction--casting method, the systematic investigation on these as-cast alloys shows that Ti--Zr--Ni quasicrystals are formed over a large range of composition, (TixZr100-x)100-yNiy (43.75%
Key words:  quasicrystal      Ti--Zr--Ni alloy      electron concentration      
Received:  28 July 2003     
ZTFLH:  TG115.22  

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y2004/V40/I7/677

[1] Dong C, Perrot A, Dubois J M, Belin E. Mater Sci Forum,1994; 150/151: 403
[2] Dong C. Scr Mater, 1995; 33: 239
[3] Qiang J B, Wang D H, Bao C M, Wang Y M, Xu W P,Song M L, Dong C. J Mater Res, 2001; 16: 2653
[4] Qiang J B, Wang Y M, Chen W R, Dong C. J Mater ResSin, 2002; 16: 500(羌建兵,王英敏,陈伟荣,董闯.材料研究学报,2002;16:500)
[5] Wang Y M, Qiang J B, Wong C H, Shek C H, Dong C. J Mater Res, 2003; 18: 642
[6] Kelton K F, Kim W J, Stroud R M. Appl Phys Lett, 1997;70: 3230
[7] Viano A M, Maizoub E H, Stroud R M, Kramer M J, Mis-ture S T, Gibbons P C, Kelton K F. Philos Mag, 1998;A78: 131
[8] Sibirtsev S A, Chebotnikov V N, Molokanov V V, Kovner-istyi Y K. JETP Lett, 1988; 47: 744
[9] Molokanov V V, Chebotnikov V N. J Non-CrystallineSolids, 1990; 117/118: 789
[10] Yi S, Kim D H. J Mater Res, 2000; 15: 892
[11] Lee G W, Croat T K, Gangopadhyay A K, Kelton K F.Philos Mag Lett, 2002; 82: 199
[12] Cahn J W, Shechtman D, Gratias D. J Mater Res, 1986;1: 13
[13] Hennig R G, Majzoub E H, Carlsson A E, Kelton K F,Henley C L, Yelon W B, Misture S. Mater Sci Eng, 2000;A294-296: 361
[14] Belin-Ferre E, Hennig R G, Dankhazi Z, Sadoc A, Kim JY, Kelton K F. J Alloy Compds, 2002; 342: 337
[15] Zhang Z, Ye H Q, Kuo K H. Philos Mag, 1985; A52: L49
[16] Nagarajan R, Aoki K, Chattopadhyay K. Mater Sci Eng,1994; A179/180: 198
[17] Yang Q B. Philos Mag Lett, 1988; 57: 171
[18] Qiang J B, Wang Y M, Wang D H, Kramer M J, Dong C.J Non-Crystalline Solids, 2004; 334-335: 223e
[1] CHEN Yongjun, BAI Yan, DONG Chuang, XIE Zhiwen, YAN Feng, WU Di. Passivation Behavior on the Surface of Stainless Steel Reinforced by Quasicrystal-Abrasive via Finite Element Simulation[J]. 金属学报, 2020, 56(6): 909-918.
[2] Gaowu QIN, Hongbo XIE, Hucheng PAN, Yuping REN. A New Class of Ordered Structure Between Crystals and Quasicrystals[J]. 金属学报, 2018, 54(11): 1490-1502.
[3] Zhibin FAN, Xiaoping LIN, Yun DONG, Jie YE, Chan LI, Bo LI. AGE-HARDENING RESPONSE FOR Mg96.17Zn3.15Y0.5Zr0.18 SOLID SOLUTION ALLOY UNDER HIGH PRESSURE[J]. 金属学报, 2016, 52(12): 1491-1496.
[4] Yongjun CHEN, Xiaogang HU, Jianbing QIANG, Chuang DONG. QUASICRYSTAL ABRASIVE POLISHING ON SOFT METALS VIA A CHARACTERISTIC SMEARING WEAR MECHANISM FOR EFFICIENT SURFACE FLATTENING, HARDENING AND CORROSION ENHANCEMENT[J]. 金属学报, 2016, 52(10): 1353-1362.
[5] TONG Jian HUANG Hua YUAN Guangyin DING Wenjiang. HOT COMPRESSION DEFORMATION BEHAVIOR OF Mg–Zn–Al–(Y) ALLOYS REINFORCED WITH QUASICRYSTAL[J]. 金属学报, 2011, 47(12): 1520-1526.
[6] HUANG Huogen CHEN Liang LI Rong LUO Deli. THERMAL STABILITY AND DEUTERIUM ABSORPTION AT ROOM TEMPERATURE OF Ti36Zr40Ni20Pd4 QUASICRYSTAL[J]. 金属学报, 2010, 46(5): 629-633.
[7] HUANG Huogen JIA Jianping LI Rong. EFFECT OF Pd SUBSTITUTION ON THE STRUCTURES OF Ti-Zr-Ni QUASICRYSTALLINE ALLOYS[J]. 金属学报, 2009, 45(10): 1272-1276.
[8] . Quasicrystals in Al-Cu-Ni-Fe Quaternary System[J]. 金属学报, 2007, 43(4): 374-378 .
[9] DENG Binbin; GUO Kexin. Stability of the Ag42In42Ca16 Icosahedral Quasicrystal and Its 2/1 Cubic Approximant[J]. 金属学报, 2004, 40(2): 120-124 .
[10] QI Yuhong;ZHANG Zhanping;HEI Zukun (Institute of Metal and Technology; Dalian Maritime University; Dalian 116026)QUAN Mingliu (Institute of Metal Research; The Chinese Academy of Sciences; Shenyang 110015)DONG Chuang (Dalian University of Technology; 116024). DIFFUSION-CONTROLLED PHASE TRANSFORMATIONS OF Al_(65)Cu_(20)Cr_(15) QUASICRYSTALLINE PARTICLES/AI MATRIX COMPOSITES[J]. 金属学报, 1998, 34(1): 19-23.
[11] LU Bin; LI Dong; CUI Yuyou (Institute of Metal Research; Chinese Academy of SCIencase; Shengyang 110015)(Manuscript received: 1994-11-07; in revised form 1995-06-05). THE CALCULATION AND DETERMINATION FOR α_2 PHASE AND α_2/α_2+βPHASE BOUNDARY IN Ti_3AI BASED ALLOYS[J]. 金属学报, 1995, 31(21): 413-417.
[12] CHEN Lifan;CHEN Xichen;(Institute of physics;Chinese A cademy of Sciences;Beijing 100080)(Manuscript received 94-07-05). Al-Cu-Co-Ge SINGLE DECAGONAL QUASICRYSTALS GROWTH BY DIRECTIONAL SOLIDIFICATION[J]. 金属学报, 1995, 31(1): 1-6.
[13] GUAN Shaokang; TANG Yali; SHEN Ningfu(Zhengzhou Institute of Technology);HU Hanqi(University of Science and Technology Beijing)(Manuscript received 8 April; 1993; in revised form 14 June; 1993). FORMATION AND STABILITY OF QUASICRYSTALLINE PHASE IN RS Al-Fe BASED ALLOY RIBBON[J]. 金属学报, 1994, 30(4): 150-154.
[14] MENG Xiangmin;TONG Baiyun;W U Yukun(Laboratory of Atomic Imaging of Solids and Laboratory of Rapidly Solidified No-Equilibrium Alloys; Institute of Metal Research;The Chinese Academy of Sciences;Shenyang). MECHANICAL PROPERTIES OF A1_(65)Cu_(20)Co_(15) QUASICRYSTAL[J]. 金属学报, 1994, 30(2): 61-64.
[15] CUI Yuyou;LI Dong;WAN Xiaojing Institute of Metal Research; Academia Sinica; Shenyang. OMEGA PHASE FORMATION IN Ti ALLOYS[J]. 金属学报, 1993, 29(2): 13-19.
No Suggested Reading articles found!