Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

您目前所在的位置:首頁 - 期刊簡介 - 詳細頁面

中國有色金屬學報(英文版)

Transactions of Nonferrous Metals Society of China

Vol. 18    No. 3    June 2008

[PDF Download]        

    

Effect of stress ratio on long life fatigue behavior of Ti-Al alloy under flexural loading
XUE Hong-qian(薛紅前)1, TAO Hua(陶 華)1, SHAO Ren-ping(邵忍平)1, B. CLAUDE2

1. School of Electromechanics, Northwestern Polytechnical University, Xi’an 710072, China;2. Department of Mechanical Engineering, CNAM/ITMA, 2 rue Conte, Paris 75003, France

Abstract:A new ultrasonic three-point bending fatigue test device was introduced to investigate fatigue life ranging up to 1010 cycles and associated fracture behavior of Ti-Al alloy. Tests were performed at a frequency of 20 kHz with stress ratio R=0.5 and R=0.7 at ambient temperature in air. Three groups of specimens with different surface roughness were applied to investigate the effect of surface roughness on fatigue life. Furthermore, optical microscopy(OM) and scanning electron microscopy(SEM) were used for microstructure characteristic and fracture surface analysis. The S—N curves obtained show that fatigue failure occurs in the range of 105 −1010 cycles, and the asymptote of S—N curve inclines slightly in very high cycle regime, but is not horizontal for R=0.5. Fatigue limit appears after 108 cycles for R=0.7. Surface roughness (the maximum roughness is no more than 3 μm) has no influence on the fatigue properties in the high cycle regime. A detailed investigation on fatigue fracture surface shows that the Ti-Al alloy studied here is a binary alloy in the microstructure composed of α2-Ti3Al and γ-Ti-Al with fully lamellar microstructure. Fractography shows that fatigue failures are mostly initiated on the surface of specimens, also, in very high cycle regime, subsurface fatigue crack initiation can be found. Interlamellar fatigue crack initiation is predominant in the Ti-Al alloy with fully lamellar structure. Fatigue crack growth is mainly in transgranular mode.

 

Key words: bending fatigue; cycles fatigue; S—N curve; Ti-Al alloy; surface roughness

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

主管:中國科學技術(shù)協(xié)會 主辦:中國有色金屬學會 承辦:中南大學
湘ICP備09001153號 版權(quán)所有:《中國有色金屬學報》編輯部
------------------------------------------------------------------------------------------
地 址:湖南省長沙市岳麓山中南大學內(nèi) 郵編:410083
電 話:0731-88876765,88877197,88830410   傳真:0731-88877197   電子郵箱:f_ysxb@163.com  
鄂托克旗| 文成县| 肃南| 崇义县| 黑山县| 浪卡子县| 岳普湖县| 永济市| 镇安县| 鸡泽县| 新竹县| 射洪县| 运城市| 奎屯市| 米易县| 左权县| 余干县| 东乡族自治县| 玉树县| 寿阳县| 宣恩县| 铜梁县| 沈阳市| 苍梧县| 包头市| 合水县| 开远市| 新闻| 广丰县| 丰原市| 文安县| 荣昌县| 南川市| 安远县| 宁远县| 遵义市| 时尚| 荥经县| 临桂县| 深圳市| 宁化县|