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149篇 您的检索式:作者名="BATHIAS C"
    题名 作者 年代 出处 被引量
1拉压、扭转载荷下铸铝合金的亿周疲劳性能研究(英文)显示文摘应用超声疲劳试验机对铸铝合金2-AS5U3G-Y35在扭转和拉压循环载荷下进行了超高周疲劳性能测试。介绍了超声扭转疲劳试验装置的设计。应用35Hz常规疲劳试验机和20kHz的超声疲劳试验机完成应力比R=-1的拉压、扭转疲劳试验,进而研究不同载荷条件、加载频率对铸铝合金超高周疲劳性能的影响。S-N曲线显示,铝合金在105~1010疲劳周次间仍发生疲劳断裂,不存在疲劳极限。断口分析表明,在超高周循环拉压载荷下,疲劳裂纹常萌生于试样次表面材料内部缩孔。与循环拉压载荷下的疲劳断裂机理不同,在循环扭转载荷下疲劳裂纹主要萌生于试样表面,疲劳断裂面为一种典型的沿试样轴向45°的螺旋面,即沿最大主应力平面断裂。扭转疲劳断面清晰的剪切条带表明扭转疲劳断裂实质上是剪切断裂。薛红前 吴铁鹰 Bathias C 2011Transactions of Nanjing University of Aeronautics and Astronautics2011,28,1:3
2High-cycle fatigue crack initiation and propagation behaviour of high strength spring steel wires 显示文摘 Berard J Y Bathias C 1999Fatigue and Fracture of Engineering Materials and Structures1999,22,:1
3How and why the fatigue SN curve does not approach a horizontal asymp- tote显示文摘Bathias C Drouillac L Francois L P 2001Intemational Journal of Fatigue2001,,23:1
4An understanding of very high cycle fatigue of metals显示文摘Marines I Bathias X C 2003International Journal of Fatigue2003,25,91011:1
5Effect of inclusion on subsurface crack initiation and gigacycle fatigue strength显示文摘WANG Q Y BATHIAS C KAWAGOISHI N 2002International Journal of Fatigue2002,24,12:1
6Effect of carburizing treatment on the 'fish eye' crack growth for a low alloyed chromium steel in very high cycle fatigue显示文摘HUANG Z Y WAGNER D WANG Q Y BATHIAS C 2013Materials Science and Engineering A2013,559,:1
7Hihg-cycle fatigue crack initiation and propagation behavior of high-strength spring stell wires 显示文摘Wang Q Y Berard J Y Bathias C 1999Fatigue Fraet Engng Mater Struct1999,22,8:1
8An understanding of very high cycle fatigue of metals显示文摘Marines I Bin X Bathias C 2003International Journal of Fatigue2003,25,:1
9Effect of inclusion on subsurface crack initiation and gigacycle fatigue strength显示文摘Wang Q Y Bathias C Kawagoishi N Chen Q 2002International Journal of Fatigue2002,24,:1
10Etude expérimentale du Fretting-fatigue a tres haute frequence 显示文摘 Bathias C 1996Science et Génie des Matériaux Rev de Métallurgie1996,93,:1
11Heat treatment, surface roughness and corrosion effects on the damage mechanism of mechanical components in the very high cycle fatigue regime 显示文摘Bayraktar E Mora R Garcia I M Bathias C 2009International Journal of Fatigue2009,31,10:1
12Failure mechanisms of automotive metallic alloy in very high cycle fatigue range 显示文摘Bayraktar E Garcias I M Bathias C 2006International Journal of Fatigue2006,28,:1
13Effect in squeeze-cast Al2O3/Al alloy composite and their effect on mechanical properties显示文摘Liu X Bathias C 1993Composites Science and Technology1993,46,:1
14Effect of Inclusion on Subsurface Crack Initiation and Gigacyde Fatigue Strength显示文摘WANG Q Y Bathias C Kawagoishi N 2002International Journal of Fatigue2002,24,12:1
15Fatigue crack initiation detection by an infrared thermography method 显示文摘Wagner D Ranc N Bathias C 2010Fatigue & Fracture of Engineering Materials & Structures2010,33,1:1
16Effect of inclusion on subsurface crack initiation and gigacycle fatigue strength 显示文摘Wang QY Bathias C Kawagoishi N Chen Q 2002International Journal of Fatigue2002,24,12:1
17How and why the fa tigue S-N curve does not approach a horizontal asymptote显示文摘Bathias C Drouillac L le Francois P 2001International Journal of Fatigue2001,23,:1
18Gigacycle fatigue of ferrous alloys显示文摘Wang Q Y Berard J Y Bathias C 1999Fatigue Fract Engng Mater Struct1999,22,8:1
19Fatigue initiation and propagation in natural and synthetic rubbers显示文摘Legorju-jago K Bathias C 2002International Journal of Fatigue2002,24,24:1
20New developments in non-destructive controls of the composite materials and ap- plications in manufacturing engineering显示文摘Bayraktar E Antolovich S D Bathias C 2008Journal of Materials Processing Technology2008,206,:1
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