Meng Fanbo, Huang Jin, Zhang Haitao, Zhao Pengbing, Li Peng, Wang Chao
Mechanical and Electrical Engineering, Xidian University, Xi'an 710071, China.
Materials (Basel). 2019 Apr 19;12(8):1289. doi: 10.3390/ma12081289.
The inkjet printing of nanoparticle inks to produce metal coatings is low in manufacturing cost and high in efficiency compared to conventional methods such as electroplating and etching. However, inkjet-printed metal coatings require sintering to provide better metal conductivity and adhesion. Traditional sintering methods require high processing temperatures that can easily damage the coating substrate. In this study, an enhanced overall conductivity is achieved by sintering a nanoparticle metal coating with intense pulsed light. Metal coatings sintered using different parameters were characterized by a profilometer and a four-probe tester, which showed that the surface topographies differed with different sintering degrees. The adhesion of the metal coating was proportional to the pre-sintering temperature within the allowable range of the substrate. Finally, the optimization of the sintering process according to the experimental results improved both the electrical conductivity and adhesion of the metal coating. The optimized parameters were used to fabricate a microstrip antenna and perform the return loss test and microwave darkroom test. The results matched the simulation results well.
与电镀和蚀刻等传统方法相比,通过喷墨打印纳米颗粒油墨来制备金属涂层的制造成本低且效率高。然而,喷墨打印的金属涂层需要烧结以提供更好的金属导电性和附着力。传统的烧结方法需要较高的加工温度,这很容易损坏涂层基板。在本研究中,通过用强脉冲光烧结纳米颗粒金属涂层实现了整体导电性的增强。使用轮廓仪和四探针测试仪对采用不同参数烧结的金属涂层进行了表征,结果表明不同烧结程度下表面形貌有所不同。在基板允许的范围内,金属涂层的附着力与预烧结温度成正比。最后,根据实验结果对烧结工艺进行优化,提高了金属涂层的导电性和附着力。利用优化后的参数制作了微带天线,并进行了回波损耗测试和微波暗室测试。结果与模拟结果吻合良好。