期刊文献+

K4169合金铸件的常温疲劳断裂行为 被引量:9

Fatigue Fracture Behavior of K4169 Alloy Casting at Room Temperature
下载PDF
导出
摘要 通过在某K4169合金精密大型熔模铸件本体典型承力结构处取样而进行常温疲劳试验,并结合疲劳断口的分析与凝固过程的温度场模拟,对其疲劳断裂机制进行探讨.结果表明,不同结构试样的疲劳寿命差异显著,其疲劳失效与微观疏松缺陷及其分布有关.早期的疲劳失效试样中存在大量的疏松缺陷,而疲劳性能较好的试样的疏松缺陷很少.当疏松缺陷较少时,疲劳裂纹主要沿晶间Laves相和碳化物扩展;当疏松缺陷较多时,裂纹主要经疏松缺陷而加速扩展并导致试样的早期失效. The fatigue properties of the specimens cutting from the characteristic structure of the K4169 heavy investment casting were tested at room temperature. The mechanism of fatigue fracture was studied by combinational fracture analysis and temperature field simulation of solidification process. The results reveal that the structure of the casting has significant influence on the fatigue life. The fatigue failure of specimens is related to the content and distribution of the microporosity. A less microporosity leads to a well fatigue performance, and vice versa. The fatigue crack propagates along the interdentric Laves phase and carbide with low content of microporosity. However, the crack mainly accelerates through microporos ity capturing with high content of microporosity, which leads to earlier failure of the specimen.
出处 《上海交通大学学报》 EI CAS CSCD 北大核心 2012年第9期1461-1465,共5页 Journal of Shanghai Jiaotong University
关键词 K4169合金 疲劳断裂 疏松缺陷 模拟 K4169 alloy fatigue fracture microporosity defect simulation
  • 相关文献

参考文献8

  • 1Prakash Leo D G,Walsh M J,Maclachlan D,et al. Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue,creep and oxidation [J].International Journal of Fatigue,2009,31(11-12):1966-1977.
  • 2Kawagoishi N,Chen Q,Yan N,et al.Fracture mechanism in fatigue of Nickel-based superalloy inconel 718 at elevated temperatures [J].Journal of Solid Mechanics and Materials Engineering,2007,1(6):734-743.
  • 3侯善芹,许金泉.基于疲劳特征长度概念的一种新疲劳理论[J].上海交通大学学报,2010,44(10):1444-1449. 被引量:4
  • 4Li P,Lee P D,Maijer D M,et al.Quantification of the interaction within defect populations on fatigue behavior in an aluminum alloy [J].Acta Materialia,2009,57(12):3539-3548.
  • 5Ferrié E,Buffière J Y,Ludwig W,et al.Fatigue crack propagation:In situ visualization using X-ray microtomography and 3D simulation using the extended finite element method [J].Acta Materialia,2006,54(4):1111-1122.
  • 6肖骥,Etienne Pessard,王敏,Daniel Cuillerier.7475铝合金板材的各向异性疲劳性能[J].上海交通大学学报,2011,45(11):1678-1683. 被引量:10
  • 7汤鑫,曹腊梅,盖其东,薛明,张勇.K4169合金整体导向环精铸技术及热处理工艺研究[J].宇航材料工艺,2007,37(6):82-86. 被引量:12
  • 8姚俊,郭建亭,袁超,李志军.铸造镍基高温合金K52的低周疲劳行为[J].金属学报,2005,41(4):357-362. 被引量:19

二级参考文献46

  • 1Atzori B, Lazzarin P, Meneghetti G. Fracture mechanics and notch sensitivity[J]. Fatigue and Fracture of Engineering Material and Structures, 2003, 26 (3) : 257-267.
  • 2Verreman Y, Limodin N. Fatigue notch factor and short crack propagation[J]. Engineering Fracture Mechanics, 2008, 75(6) : 1320-1335.
  • 3Atzori B, Meneghetti G, Susmel L. Fatigue behaviour AA356-T6 cast aluminium alloy weakened by cracks and notches[J]. Engineering Fracture Mechanics, 2004, 71(4-6): 759-768.
  • 4Frost N E. A relation between the critical alternating propagation stress and crack length for mild steel[J]. Proceeding Institute of Mechanical Engineering, 1959, 173(35) : 811-827.
  • 5小林,中浞.疲れき裂の発生,進展ぉょび停留にぉょほす切欠きの深さの影窖[J].日本機械学會論文集,1969,35(277):1856-1863.
  • 6村上.金属疲労--微小欠陥と在物の影響[M].東京:養賢堂,1993.
  • 7村上,遠藤.疲労強度に及ほす微小欠陥の影響の評価法[J].日本機械学會論文集A,1983,49(438):127-136.
  • 8村上,松田.下限界応力拡大係数△Kthに及ほすき裂寸法と材質影響[J].日本機械学會論文集A,1986,52(478):1492-1499.
  • 9Tanaka K, Nakai Y, Yamashita M. Fatigue growth threshold of small cracks[J]. International Journal of Fracture, 1981, 17(5):519-533.
  • 10中原一郎.応用弾性学[M].東京:実教出版社,1977.

共引文献41

同被引文献121

引证文献9

二级引证文献44

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部