期刊文献+

Damage Mechanism of Al_2O_3 Ceramic Coatings Irradiated by CO_2 CW Laser 被引量:2

Damage Mechanism of Al_2O_3 Ceramic Coatings Irradiated by CO_2 CW Laser
下载PDF
导出
摘要 Rules and mechanism of damage in Al2O3 coatings irradiated by CO2 CW laser are studied in order to improve the ability of parts of equipment standing against the high power laser.Al2O3 coatings were sprayed by air plasma spray(APS)on the 45# steel substrate,and then were irradiated by CO2 CW laser from 795 W/cm2 to 31 830 W/cm2.As the output power of the laser is increasing,its porosity is increasing and cracks are appearing and spreading quickly.And also the phase will transform from γ-Al2O3 to α-Al2O3 in the damaged areas.When the energy density is 17 507 W/cm2,the coatings are destroyed completely.The thermal infection field on substrate is rather small.The laser energy is depleted by the phase transformation and cracks in Al2O3 coatings during the laser thermal shock. Rules and mechanism of damage in Al2O3 coatings irradiated by CO2 CW laser are studied in order to improve the ability of parts of equipment standing against the high power laser. Al2O3 coatings were sprayed by air plasma spray(APS) on the 45^# steel substrate, and then were irradiated by CO2 CW laser from 795 W/cm^2 to 31 830 W/cm^2. As the output power of the laser is increasing, its porosity is increasing and cracks are appearing and spreading quickly, And also the phase will transform from γ-Al2O3 to a-Al2O3 in the damaged areas. When the energy density is 17 507 W/cm^2, the coatings are destroyed completely. The thermal infection field on substrate is rather small. The laser energy is depleted by the phase transformation and cracks in Al2O3 coatings during the laser thermal shock.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2008年第2期227-231,共5页 北京理工大学学报(英文版)
基金 the Ministerial Level Advanced Research Foundation (1040020440703)
关键词 CW激光器 等离子喷雾 三氧化铝覆层 损害原理 CW laser plasma spray Al2O3 coatings demolishment
  • 相关文献

参考文献10

二级参考文献25

  • 1范群波.功能梯度材料等离子喷涂过程中的数值模拟[D].北京:北京理工大学机械工程与自动化学院,2001.
  • 2王照斌 张德雄.激光反导于固体火箭发动机壳体的抗激光加固[A]..2001年航天工艺航天材料及其应用学术研讨会论文集[C].[出版者不详],2001 9.359~363.
  • 3Ballantyne A.Modeling of the Interaction of 10.6 μm Laser Radiation with Reinforced Plastics[J].AIAA Journal,1981,19:731-731.
  • 4[1]D M Ferreira, F C Marcell. Naval high energy laser weapon system. Naval Engineers Journal, 1993, 105(3): 105~117
  • 5[2]J R Cook, J R Albertine. The navy's high energy laser weapon system. SPIE, 1997, 2988:264~270
  • 6Harlow F H, Shannon J P. The splash of a liquid drop[J]. J Appl Phy, 1967,38(10):3855--3866.
  • 7Trapaga G, Szekely J. Mathematical modelling of the isothermal impingement of liquid droplets in spraying processes [J]. Metallurgical Transactions B. 1991,22B: 901--913.
  • 8Liu H, Lavernia E J, Rangel R H. Numerical simulation of impingement of molten Ti, Ni and W droplets on a flat substrate [J]. J Therm Spray Tech,1993, 2(4):369--378.
  • 9Feng Zhigang, Domaszewski M. Influence of the spray parameters on the transient pressure within a molten particle impacting onto a flat substrate [A].Berndt C C. Thermal Spray: A United Forum for Scientific and Technological Advances [ C ].Indianapolis : ASM International, 1997 : 627-- 633.
  • 10Livermore Software Technology Gorp. Ansys element reference [M]. Canonsburg PA: Ansys Inc. , 2000.

共引文献56

同被引文献49

引证文献2

二级引证文献4

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