Naeem Samia, Mehmood Tahir, Wu K M, Khan Babar Shahzad, Majid Abdul, Siraj Khurrum, Mukhtar Aiman, Saeed Adnan, Riaz Saira
Department of Physics, Government College Women University, Sialkot 51310, Pakistan.
The State Key Laboratory of Refractories and Metallurgy, International Research Institute for Steel Technology, Wuhan University of Science and Technology, Wuhan 430081, China.
Materials (Basel). 2019 Aug 19;12(16):2632. doi: 10.3390/ma12162632.
The effect of laser irradiation with different numbers of laser shots on the microstructure, the surface, and the hardness of gun metal alloy was studied by a KrF pulsed excimer laser system, X-ray diffraction, Raman spectroscopy, scanning electron microscopy, and Vickers hardness test. The influence of 100-500 laser shots was irradiated on the surface hardness profile and on the microstructure of gunmetal alloy. XRD results showed the maximum 2θ shift, the maximum full width of half maximum FWHM, the maximum dislocation density, and the minimum crystallite size for the sample irradiated with 300 laser shots. The hardness was measured in three different regions at the laser irradiated spot, and it was found that maximum hardness was present at the heat affected zone for all samples. The hardness value of the un-irradiated sample of gun metal was 180, and the value increased up to 237 by raising the number of laser shots up to 300. The peak value of surface hardness of the laser treated sample was 32% higher than the un-irradiated sample. The Raman shift of the un-exposed sample was 605 cm and shifted to a higher value of wave number at 635 cm at 300 laser shots. The hardness value was decreased by further increasing the number of laser shots up to 500. The samples irradiated with 400 and 500 laser shots exhibited smaller hardness and dislocation defect density, which was assigned to possible annealing caused by irradiation.
采用KrF脉冲准分子激光系统、X射线衍射、拉曼光谱、扫描电子显微镜和维氏硬度测试等方法,研究了不同激光脉冲次数的激光辐照对炮铜合金微观结构、表面及硬度的影响。对炮铜合金表面硬度分布和微观结构进行了100 - 500次激光脉冲的辐照影响研究。X射线衍射结果表明,300次激光脉冲辐照的样品具有最大的2θ位移、最大的半高宽、最大的位错密度和最小的晶粒尺寸。在激光辐照点的三个不同区域测量了硬度,发现所有样品在热影响区硬度最大。未辐照的炮铜样品硬度值为180,随着激光脉冲次数增加到300次,硬度值增加到237。激光处理样品的表面硬度峰值比未辐照样品高32%。未曝光样品的拉曼位移为605 cm,在300次激光脉冲时位移到更高的波数635 cm。进一步将激光脉冲次数增加到500次时,硬度值降低。400次和500次激光脉冲辐照的样品硬度和位错缺陷密度较小,这归因于辐照可能导致的退火。