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作 者:况良杰 庞启龙 徐幼林[1] Kuang Liangjie;Pang Qilong;Xu Youlin
机构地区:[1]南京林业大学
出 处:《工具技术》2018年第10期62-66,共5页Tool Engineering
基 金:江苏省农机三新工程(NJ2014-11);江苏省科技支撑计划(BE2012383)
摘 要:采用功率谱密度(PSD)和连续小波方法(CWT)相结合的方法分析磷酸二氢钾(KDP)晶体超精加工表面形貌中的频率特征。采用PSD提取取样长度和周期范围内表面形貌上的所有频率特征,针对PSD得到的三个显著实际频率特征进行频率的提取,同时获得CWT的尺度因子a;用Mexican Hat小波函数实现连续小波变换还原实际频率形貌。结果表明:在采样域内,实际频率为0.0138μm^(-1)的表面形貌与原始表面极为接近,是KDP晶体超精加工表面形貌及影响表面粗造度的主要频率特征。To reconstruct the actual morphologies of the frequency characteristics on ultra-precision surface, and the relationship with machining process is analyzed. In the paper, Power Spectral Density method (PSD) and Continuous Wave- let Transform (CWT) are used to analyze the frequency characteristics of KDP crystal surface in ultra-precision machining. All the frequency characteristics of the sampling length and the surface morphology within the periodic range can be ob- tained by PSD. According to frequency analysis results obtained by PSD, the actual frequency characteristics can be extrac- ted and also achieve the scale of CWT. Realization of continuous wavelet transform with Mexican Hat wavelet function,final reduction of actual frequency morphology. The result shows that the surface morphology of the value is 0. 0138μm^-1 which is closest to the sample surface, and the main frequency characteristics of the affected roughness and KDP crystal surface in ultra-precision machining is considered.
分 类 号:TG356.28[金属学及工艺—金属压力加工] TH164[机械工程—机械制造及自动化]
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