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增材制造Ti-6Al-4V合金断裂行为与应力三轴度关系研究

Relationship of fracture behavior and stress triaxiality of additive manufactured Ti-6Al-4V
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摘要 研究应力三轴度与增材制造钛合金材料断裂行为的相关性,对分析增材制造钛合金的断裂失效过程有着重要的作用和意义。对光滑圆棒和缺口圆棒试件在准静态下进行单轴拉伸试验,结合数值仿真分析得到试件的应力三轴度分布和断裂应变,研究了增材制造钛合金在不同应力三轴度下的韧性断裂行为。通过扫描电子显微镜观察试件断口表面的形貌,分析不同应力三轴度下增材制造钛合金的断裂机理。研究发现,在中高应力三轴度范围内,增材制造钛合金的断裂应变随应力三轴度的升高而降低;缺口圆棒试件的起裂位置随缺口半径的减小从最小截面中心处逐渐转移至边缘处。 It is significant to study the relationship between the stress triaxiality and the fracture behavior for analyzing the failure process of additive manufactured titanium alloy. This paper combined the tensile test of smooth round bar specimens and notched round bar specimens with the numerical simulation to obtain the stress triaxiality distribution and fracture strain in order to study fracture behavior of additive manufactured titanium under different stress triaxiality. Fracture analysis was proceeded by using scanning electronic microscope to analyze the correlation between the stress triaxiality and the fracture behavior. Results show that the fracture strain decreases while the stress triaxiality increases and the location of the crack initiation moves from the center to the edge of the minimum cross-section while the radius of the notch decrease.
作者 高柏森 黄玮 王生楠 张霜银 陈先民 GAO Baisen;HUANG Wei;WANG Shengnan;ZHANG Shuangyin;CHEN Xianmin(School of Aeronautics,Northwestern Polytechnical University,Xi′an 710072,China;Scientific Research Management Department,Aircraft Strength Research Institute,Xi′an 710065,China)
出处 《西北工业大学学报》 EI CAS CSCD 北大核心 2022年第5期962-969,共8页 Journal of Northwestern Polytechnical University
基金 国家自然科学基金(12172292)资助。
关键词 增材制造钛合金 韧性断裂 应力三轴度 缺口圆棒试件 断口分析 additive manufacturing titanium alloy ductile fracture stress triaxiality notched bar specimen fracture analysis
作者简介 高柏森(1997-),西北工业大学博士研究生,主要从事结构断裂行为研究;通信作者:黄玮(1979-),西北工业大学副教授,主要从事航空结构疲劳、断裂行为研究。e⁃mail:huangwei@nwpu.edu.cn。
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  • 1颜敏,张述泉,王华明.激光熔化沉积AerMet 100耐蚀超高强度钢的凝固组织及力学性能[J].金属学报,2007,43(5):472-476. 被引量:15
  • 2朱浩,朱亮,陈剑虹.应力三轴度和应变率对6063铝合金力学性能的影响及材料表征[J].材料科学与工程学报,2007,25(3):358-362. 被引量:42
  • 3Arcella F G,Froes F H.Producing titanium aerospace components from powder using laser forming[J].JOM,2000,52(5):28-30.
  • 4Breinan E M,Kear B H.Rapid solidification laser processing at high power density[J].Materials ProcessingTheory and Practices,1983,3:235-295.
  • 5US National Science and Technology Council.National network for manufacturing innovation:a preliminary design[EB/OL].(2013-01-10)[2014-07-22].http://www.whitehouse.gov / sites/ default/ files/ microsites/ ostp/ nste _nnmi_prelim_design_ final.pdf.
  • 6Gamann M,Bezencon C,Canalis P,et al.Single-crystal laser deposition of super-alloys:processing-microstructure maps[J].Acta Materialia,2001,49(6):1051-1062.
  • 7Dinda G P,Dasgupta A K,Mazumder J.Laser aided direct metal deposition of Inconel 625 superalloy:Microstructural evolution and thermal stability[J].Materials Science and Engineering:A,2009,509(1-2):98-104.
  • 8Hussein N I S,Segal J,McCartney D G,et al.Microstructure formation in Waspaloy multilayer builds following direct metal deposition with laser and wire[J].Materials Science and Engineering:A,2008,497 (1-2):260-269.
  • 9Moata R J,Pinkerton A J,Li L,et al.Residual stresses in laser direct metal deposited Waspaloy[J].Materials Science and Engineering:A,2011,528(6):2288-2298.
  • 10Susana D,Puskar J D,Brooks J A,et al.Quantitative characterization of porosity in stainless steel LENS powders and deposits[J].Materials Characterization,2006,57(1):36-43.

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