论文:2021,Vol:39,Issue(6):1281-1288
引用本文:
朱洁旻, 赵懿, 杨振, 程功, 罗楚养. 陶瓷抗激光涂层对钛合金焊缝及凹槽区域的防护效果研究[J]. 西北工业大学学报
ZHU Jiemin, ZHAO Yi, YANG Zhen, CHENG Gong, LUO Chuyang. The damage effect of weld seam and groove area of titanium alloy with ceramic laser resistant coating[J]. Northwestern polytechnical university

陶瓷抗激光涂层对钛合金焊缝及凹槽区域的防护效果研究
朱洁旻1, 赵懿1, 杨振2, 程功3, 罗楚养1,3
1. 东华大学 民用航空复合材料协同创新中心, 上海 201620;
2. 哈尔滨工业大学 航天学院, 黑龙江 哈尔滨 150001;
3. 中国空空导弹研究院, 河南 洛阳 471009
摘要:
为探究焊缝区域以及凹槽结构对钛合金基材激光毁伤效果以及陶瓷涂层抗激光效果的影响,采用对比实验法研究了钛合金表面存在和不存在陶瓷抗激光涂层2种情况下,连续激光对钛合金焊缝区域以及凹槽区域的毁伤效果,结果表明,陶瓷涂层能够有效减轻钛合金基底的激光毁伤效果。焊缝区域陶瓷涂层抗激光性能减弱,但仍能进行有效抗激光防护。凹槽结构的棱部、角部的激光毁伤效果随激光功率密度的增加而加重,在相同激光功率密度条件下,凹槽结构内部毁伤效果明显较外部毁伤效果小,角部结构毁伤效果较棱部结构小。高反射型陶瓷涂层在反射部分激光能量后,会吸收大量由激光辐照产生的热能,发生烧结作用导致内部结构变化,从而对钛合金基底起到保护作用。
关键词:    激光毁伤    陶瓷涂层    焊缝区域    凹槽结构    钛合金   
The damage effect of weld seam and groove area of titanium alloy with ceramic laser resistant coating
ZHU Jiemin1, ZHAO Yi1, YANG Zhen2, CHENG Gong3, LUO Chuyang1,3
1. Center for Civil Aviation Composites, Donghua University, Shanghai 201620, China;
2. School of Astronautics, Harbin Institute of Technology, Harbin 150001, China;
3. China Airborne Missile Academy, Luoyang 471009, China
Abstract:
In order to explore the effect of weld area and groove structure on the damage effect of laser irradiation on titanium alloy and ceramic coating, the experiment of continuous laser irradiation on welding seam and groove area of titanium alloy was studied, while the surfaces of the specimens were coated with or without anti-laser ceramic material. The following conclusions were obtained:the ceramic coating can protect the titanium alloy substrate from the damage of high power laser effectively; the laser resistance of ceramic coating on the welding seam area is weakened, but it still protects the titanium alloy effectively; the damage of laser on the edge and the corner structure of titanium alloy with groove structure is aggravated with the increasing of laser power density, and under the same laser density, the damage inside the groove is less than that outside, while that of corner is less than edge. Micromorphology results show that the ceramic coating undergoes a series of physical and chemical changes and phase transformation to absorb a large amount of thermal energy converted from luminous energy, which has a protective effect on the titanium alloy.
Key words:    laser damage    ceramic coating    welded seam    groove structure    titanium alloy   
收稿日期: 2021-03-20     修回日期:
DOI: 10.1051/jnwpu/20213961281
基金项目: 航空科学基金(20180112008)、青年人才托举工程(2016QNRC001)、东华大学青年教师科研启动基金与上海市科技创新行动计划(19DZ1100300)资助
通讯作者: 罗楚养(1984-),东华大学高级工程师,主要从事复合材料结构设计与分析研究。e-mail:cyluo@dhu.edu.cn     Email:cyluo@dhu.edu.cn
作者简介: 朱洁旻(1999-),东华大学本科生,主要从事激光与材料相互作用研究。
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参考文献:
[1] 高鹏, 田伟. 反激光武器技术探索[J]. 光电技术应用, 2020, 35(5):29-33 GAO Peng,TIAN Wei. Anti-laser weapons technology exploration[J]. Electro-Optic Technology Application, 2020, 35(5):29-33(in Chinese)
[2] 李航航, 高宏建. 先进战斗机结构选材与制造工艺需求分析[J]. 航空制造技术, 2004(增1):35-38 LI Hanghang, GAO Hongjian. Structural material selection and manufacturing requirement analysis for advanced fighter[J]. Aeronautical Manufacturing Technology, 2004(suppl 1):35-38(in Chinese)
[3] 李兆岩, 孙明营, 郝艳飞, 等. 工程陶瓷表面抗激光损伤能力研究[J]. 光子学报, 2017, 46(10):21-28 LI Zhaoyan, SUN Mingying, HAO Yanfei, et al. Laser damage resistance of engineering ceramics[J]. Acta Photonica Sinica, 2017, 46(10):21-28(in Chinese)
[4] XU W Y, GAO L H, MA C, et al. Design and preparation of composite coatings with increased reflectivity under high-energy continuous wave laser ablation[J]. Ceramics International, 2020, 46(15):23457-23462
[5] VLASOVA M, KAKAZEY M, COETO B S, et al. Laser synthesis of Al2TiO5 and Y3Al5O12 ceramics from powder mixtures Al2O3-TiO2 and Al2O3-Y2O3[J]. Science of Sintering, 2012, 44(1):17-24
[6] VLASOVA M, AGUILAR P A M, KAKAZEY M, et al. Modification of a SiC-Cr5Si3 ceramic surface by laser irradiation[J]. Ceramics International, 2007, 33(3):433-437
[7] VLASOVA M, AGUILAR P A M, RESENDIZ-GONZALEZ M C, et al. Laser irradiation of α-SiC ceramics[J]. Ceramics International, 2009, 35(6):2503-2508
[8] AGUILAR P A M, VLASOVA M, RESENDIZ-GONZALEZ M C, et al. Laser irradiation of SiC-MoSi2 composite ceramics[J]. Science of Sintering, 2008, 40(3):271-281
[9] CHEN J X, QIN J B, LU L H, et al. Study on laser-stricken damage to alumina ceramic layer of different surface roughness[J]. Results in Physics, 2019, 15:1-9
[10] 蔡鹏程, 李霜, 蔡红星, 等. 脉冲激光辐照氮化硅陶瓷损伤阈值的光谱测量[J]. 光谱学与光谱分析, 2019, 39(11):3433-3437 CAI Pengcheng, LI Shuang, CAI Hongxing, et al. Study on measurement of the damage threshold of silicon nitride ceramics under pulsed laser irradiation by spectroscopy[J]. Spectroscopy and Spectral Analysis, 2019, 39(11):3433-3437(in Chinese)
[11] CHEN J, LIN H, HAO D M, et al. Exaggerated grain growth caused by ZrO2-doping and its effect on the optical properties of Tb3Al5O12 ceramics[J]. Scripta Materialia, 2019, 162:82-85
[12] 叶莹. 激光辐照复合陶瓷的偏振光谱成像探测研究[D]. 长春:长春理工大学, 2019 YE Ying. Polarization spectral imaging detection of laser irradiated composite ceramics[D]. Changchun:Changchun University of Science and Technology, 2019(in Chinese)
[13] WU J M, LI M, LIU S S, et al. Preparation of porous Al2O3 ceramics with enhanced properties by SLS using Al2O3 poly-hollow microspheres(PHMs) coated with CaSiO3 sintering additive[J]. Ceramics International, 2020, 46(17):26888-26894
[14] ARTHANARI S, LI Y H, NIE L, et al. Microstructural evolution and properties analysis of laser surface melted and Al/SiC cladded magnesium-rare earth alloys[J]. Journal of Alloys and Compounds, 2020, 48:156598
[15] ZHAO Y T, LU M Y, FAN Z Q, et al. Laser deposition of wear-resistant titanium oxynitride/titanium composite coatings on Ti-6Al-4V alloy[J]. Applied Surface Science, 2020(531):147212
[16] CHEN G, LIU R Z, QIU Y D, et al. Effect of laser parameters on microstructure and phase evolution of Ti-Si-C composites prepared by selective laser melting[J]. Materials Today Communications, 2020, 24:101114
[17] LIU T, NIU Y R, PAN X H, et al. Laser ablation behaviors of vacuum plasma sprayed ZrC-based coatings[J]. Journal of the American Ceramic Society, 2019, 102(7):4247-4258
[18] 杨振, 郭鑫民, 张建隆, 等. 陶瓷涂层对中红外探测器抗激光性能的影响[J]. 红外技术, 2019, 41(10):935-940 YANG Zhen, GUO Xinmin, ZHANG Jianlong, et al. Effect of ceramic coating on laser irradiation resistance for mid wave infrared detector[J]. Infrared Technology, 2019, 41(10):935-940(in Chinese)
[19] 孔静, 马壮, 高丽红, 等. La(1-x)SrxTiO(3+δ)陶瓷涂层抗激光烧蚀性能研究[J]. 现代技术陶瓷, 2018, 39(2):115-121 KONG Jing, MA Zhuang, GAO Lihong, et al. Anti-laser ablation property of La(1-x)Sr<i>xTiO(3+δ) ceramic coating[J]. Advanced Ceramics, 2018, 39(2):115-121(in Chinese)
[20] 张天宇, 孔斌, 陈敏孙, 等. 陶瓷涂层加固铝合金薄板的抗激光性能测试[J]. 红外与激光工程, 2017, 46(6):50-55 ZHANG Tianyu, KONG Bin, CHEN Minsun, et al. Anti-laser performance test of aluminum alloy plates reinforced by ceramic coating[J]. Infrared and Laser Engineering, 2017, 46(6):50-55(in Chinese)
[21] 张翔宇, 陈敏孙, 孔斌, 等. YSZ全陶瓷涂层加固薄板在激光辐照下的热响应[J]. 激光与红外, 2017, 47(2):144-149 ZHANG Xiangyu, CHEN Minsun, KONG Bin, et al. Thermal response of YSZ ceramic coating of reinforced plates under laser irradiation[J]. Laser and Infrared, 2017, 47(2):144-149(in Chinese)
[22] DANG X L, YIN X W, FAN X M, et al. Microstructural evolution of carbon fiber reinforced SiC-based matrix composites during laser ablation process[J]. Journal of Materials, 2019, 35(12):2919-2925
[23] CHENG S, GENG L, LIU X C, et al. Laser ablation behavior and mechanism of C/SiC coated with ZrB2-MoSi2-SiC/Mo prepared by HVOF[J]. Ceramics International, 2020, 46(11):17752-17762
[24] 杨振, 郭鑫民, 张黎黎, 等. 钛合金表面抗激光涂层损伤特性及热效应影响研究[J]. 飞控与探测, 2020, 3(5):85-96 YANG Zhen, GUO Xinmin, ZHANG Lili, et al. Investigation on damage properties and thermal effect of laser resistance coating on titanium alloy surface[J]. Flight Control & Detection, 2020, 3(5):85-96(in Chinese)
[25] 黄建涛. 面向太阳能应用的黑色氧化钛制备及光热研究[D]. 上海:中国科学院大学, 2020 HUANG Jiantao. Preparation and photothermal study of black titania for solar energy applications[D]. Shanghai:University of Chinese Academy of Sciences, 2020(in Chinese)
[26] 贾立红, 王春华, 杨铁男. 选择性激光烧结陶瓷粉末机理初探[J]. 装备制造技术, 2006(2):34-36 JIA Lihong, WANG Chunhua, YANG Tienan. Investigation on the mechanism of selective laser sintering of ceramic powders[J]. Equipment Manufacturing Technology, 2006(2):34-36(in Chinese)