[1]陈 忠. 网带炉的使用和维护方法[J]. 金属材料与冶金工程, 2008, 36(6): 54-57. Chen Zhong. The use and maintenance method of mesh belt furnace[J]. Metal Materials and Metallurgy Engineering, 2008, 36(6): 54-57. [2]揭晓华. 齿轮渗碳层深不均匀性分析及防止措施[J]. 汽车技术, 1994(7): 44-46. Jie Xiaohua. Analysis and prevention of nonuniformity of carburized layer thickness in gears[J]. Automobile Technology, 1994(7): 44-46. [3]马立康, 暨勇策, 沈国清, 等. 超声空化现象影响因素的实验研究[J]. 应用声学, 2019, 38(6): 999-1003. Ma Likang, Ji Yongce, Shen Guoqing, et al. Experimental study on the influencing factors of ultrasonic cavitation[J]. Journal of Applied Acoustics, 2019, 38(6): 999-1003. [4]程效锐, 张舒研, 房 宁. 超声空化技术在化工领域的应用研究进展[J]. 应用化工, 2018, 47(8): 1753-1757. Cheng Xiaorui, Zhang Shuyan, Fang Ning. Research progress and application situation of the ultrasonic cavitation technology in chemical industry field[J]. Applied Chemical Industry, 2018, 47(8): 1753-1757. [5]程 欣. 超声波清洗技术发展研究[J]. 中国市场, 2016, 49(4): 79-80. [6]李 旗, 逯力红, 丁鏖举. 基于超声波的清洗机设计及清洗效果研究[J]. 大学物理实验, 2017, 30(5): 31-35. Li Qi, Lu Lihong, Ding Aoju. Design of cleaning machine and cleaning effect research based on ultrasonic[J]. Physical Experiment of College, 2017, 30(5): 31-35. [7]李 惠, 崔洪波, 郭 倩. 微波组件芯片超声清洗工艺[J]. 电子工艺技术, 2016, 37(4): 217-219, 238. Li Hui, Cui Hongbo, Guo Qian. Ultrasonic cleaning process for microwave multi-chip module[J]. Electronics Process Technology, 2016, 37(4): 217-219, 238. [8]黄志超, 涂林鹏, 刘举平, 等. 超声波清洗技术及设备研究进展[J]. 华东交通大学学报, 2020, 37(3): 1-9. Huang Zhichao, Tu Linpeng, Liu Juping, et al. Review of ultrasonic cleaning technology and equipment[J]. Journal of East China Jiaotong University, 2020, 37(3): 1-9. [9]胡 涛, 傅 波, 魏周玲, 等. 换能器布阵型式对超声清洗效果影响的研究[J]. 机械制造, 2020, 58(10): 38-41. [10]庞昊斐, 祝锡晶, 王 璟, 等. 温度对超声清洗中空化泡动力学特性的影响[J]. 表面技术, 2016, 45(8): 150-155. Pang Haofei, Zhu Xijing, Wang Jing, et al. Effect of temperature on the dynamics of cavitation bubble on ultrasonic cleaning[J]. Surface Technology, 2016, 45(8): 150-155. |