A High Efficiency and Precision Smoothing Polishing Method for NiP Coating of Metal Mirror

Author:

Xu Chao,Peng Xiaoqiang,Liu Junfeng,Hu Hao,Lai Tao,Yang Qilin,Xiong Yupeng

Abstract

The NiP coating has excellent wear and corrosion resistance, and electroless nickel-phosphorus coating is one of the best measures for surface modification of metal optical devices. The NiP layer could be processed by single-point diamond turning (SPDT). However, the periodic marks on the surface of the NiP coating processed by SPDT will lead to diffraction and stray light, which will reduce the reflectivity and image quality of the mirror. This paper studied smoothing polishing based on chemical mechanical polishing to remove turning periodic marks efficiently. Firstly, we studied the chemical corrosion and mechanical removal mechanism of smoothing polishing of the NiP coating through theoretical analysis. Then, the influencing factors of processing the quality of smoothing polishing are analyzed, and the optimal machining parameters and polishing slurry formula are formulated. Finally, through the developed process, the surface roughness of Root Mean Square (RMS) 0.223 nm is realized on the NiP coating, and an ultra-smooth surface that can meet the service accuracy of a hard X-ray mirror is obtained. Our research simplifies the high-precision machining process of the NiP coating and improves the machining efficiency. Therefore, it can be used as a new high-precision manufacturing NiP coating method.

Funder

National Key Research and Development Program of China

Open Project of the State Key Laboratory of High-Performance Complex Manufacturing

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

Reference32 articles.

1. Basic Properties of Metal Optics

2. Metal mirrors with excellent figure and roughness;Steinkopf;Proceedings of the SPIE–Optical Fabrication, Testing, and Metrology III,2008

3. Development and fabrication of a hyperspectral, mirror based IR-telescope with ultra-precise manufacturing and mounting techniques for a snap-together system assembly;Risse;Proceedings of the SPIE–Sensors, Systems, and Next-Generation Satellites XV,2011

4. Ultra-precisely manufactured mirror assemblies with well-defined reference structures;Scheiding;Proceedings of the SPIE–Modern Technologies in Space and Ground-based Telescopes and Instrumentation,2010

5. A novel athermal approach for high-performance cryogenic metal optics;Rohloff;Proceedings of the SPIE–The International Society for Optical Engineering,2010

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