李卫,严世榕,张乐.表面喷丸强化处理对TC11钛合金疲劳性能的影响[J].表面技术,2017,46(3):172-176.
LI Wei,YAN Shi-rong,ZHANG Le.Effects of Surface Shot Peening Strengthening on Fatigue Property of TC11 Titanium Alloy[J].Surface Technology,2017,46(3):172-176
表面喷丸强化处理对TC11钛合金疲劳性能的影响
Effects of Surface Shot Peening Strengthening on Fatigue Property of TC11 Titanium Alloy
投稿时间:2016-10-17  修订日期:2017-03-20
DOI:10.16490/j.cnki.issn.1001-3660.2017.03.026
中文关键词:  钛合金  二次喷丸  表面粗糙度  残余应力  金相组织  疲劳强度
英文关键词:titanium alloy  second shot peening  surface roughness  residual stress  metallographic structure  fatigue strength
基金项目:湖南省教育厅研究课题(15C0977);湖南省科技厅研究课题(2013FJ3019)
作者单位
李卫 湖南信息职业技术学院,长沙 410200 
严世榕 福州大学,福州 350100 
张乐 湖南信息职业技术学院,长沙 410200 
AuthorInstitution
LI Wei Hunan College of Information, Changsha 410200, China 
YAN Shi-rong Fuzhou University, Fuzhou 350100, China 
ZHANG Le Hunan College of Information, Changsha 410200, China 
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中文摘要:
      目的 改善TC11钛合金的抗疲劳性能。方法 采用喷丸表面强化工艺对TC11钛合金进行了表面强化处理,研究了喷丸强化处理、喷丸+二次喷丸强化处理对TC11钛合金试样表面粗糙度、残余应力、显微组织及疲劳性能的影响。结果 喷丸处理能够在试样表层引入厚度约230 m的残余压应力场,但同时导致试样表面粗糙度值增加。喷丸后进行表面二次喷丸,试样表面残余压应力值和残余压应力峰值提高,但残余压应力峰值的位置和残余压应力层的厚度变化不大。二次喷丸对试样表面起到一定程度的修复作用,使试样表面粗糙度值降低。喷丸后试样表层组织发生明显的塑性变形,晶粒变细,而喷丸+二次喷丸处理可使试样表层组织得到进一步细化。喷丸处理后,试样的疲劳强度由480 MPa提高至540 MPa,提高了12.5%,二次喷丸使试样的疲劳强度提高至570 MPa,在喷丸的基础上继续提高了5.5%。结论 喷丸后对试样表面进行二次喷丸对表层残余应力场的影响不大,二次喷丸主要通过降低试样表面粗糙度值和细化试样表层组织,使试样的疲劳强度得到进一步提高。
英文摘要:
      The work aims to improve the fatigue resistance of titanium alloy. The surface strengthening process of shot peening was used for surface strengthening treatment of TC11 titanium alloy. Effects of shot peening strengthening, shot peening+second shot peening strengthening on surface roughness, residual stress, microstructure and fatigue resistance of TC11 titanium alloy sample were stu-died. The shot peening treatment could introduce nearly 230 m thick compressive residual stress field to the sample surface, but meanwhile increase the roughness value of sample surface. After second shot peening, both the surface residual compressive stress and peak residual compressive stress increased, while the location of peak compressive residual stress and thickness of compressive residual stress layer showed little change. The second shot peening had certain repair effect on the sample surface and decrease surface roughness value of the samples. The surface tissue was subject to obvious plastic deformation after shot peening, and the grain size was refined. Compared with the samples after shot peening, shot peening+second shot peening could further refine the sample surface organization. After shot peening, fatigue strength of the samples increased from 480 MPa to 540 MPa by 12.5%; after the second shot peening, the fatigue strength of the samples increased from 540 MPa to 570 MPa by 5.5%. The second shot peening has little influence on residual stress field of the surface, it improves the fatigue strength of titanium alloy mainly by reducing the surface roughness value and refining surface organization of the samples.
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