TY - JOUR
T1 - Study on the Cold Atmospheric Plasma Process via Oxygen (O2) Fluid Flow Fabrication RB-SiC Ceramic
AU - Xu, Jiabin
AU - Zhang, Qiang
AU - Gu, Runrun
AU - Zhang, Xiangyu
AU - He, Qiongyi
AU - Liu, Xinhua
AU - Rao, Xiaoshuang
AU - Zhang, Long
AU - Zhang, Feihu
N1 - Publisher Copyright:
© 2023, The Author(s), under exclusive licence to Korean Society for Precision Engineering.
PY - 2023/8
Y1 - 2023/8
N2 - In large-scale aspheric precision grinding of the space optical mirror based on RB-SiC ceramic, precision grinding is the necessary process for obtain machined surface finish. To further obtain the minimum tolerances and morphological and planar changes of the workpiece, the resin-bond of the grain size 600# precision grinding diamond grinding wheel with the finish-surface precision grinding is generally used in the process. However, the technology to generate the precision grinding position via the point P(Ai, Aj) model analysis of the grinding wheel forms part of the as optical precision elements in surface modified layer of fundamental understanding and accurately control the actual mathematical calculation and a novel cold atmospheric plasma (CAP) process via oxygen (O2) design. In this paper, an aim need to pay closer attention to the mathematical model calculation method of cold atmospheric plasma process via oxygen, the surface modification region and the improvement of finish-surface of existing ceramic. As a summary, we provides a effective cold atmospheric plasma process via oxygen fluid flow-precision grinding via the experimental test and mechanism study of cold atmospheric plasma process via oxygen fluid flow precision grinding composite technology, the establishment of basic theory of mechanics-thermotics composite technology provides an important theoretical basis. The surface modification for RB-SiC hard-brittle ceramic process and about technical difficulties of the precision grinding at room temperature. The CAP process via oxygen (O2) surface modification process produce SiO2 or C layer, C–O, Si–C–O compound through mechanics-thermotics composite and physicochemical reaction at room temperature micro-grinding. Graphical Abstract: The schematic diagram of the cold atmospheric plasma process via oxygen fluid flow on the micro-grinding of RB-SiC ceramic: (a) The surface modification process via oxygen fluid flow; (b) Surface removal mechanism; (c) The real pictures of the plasma torch and micro-grinding wheel; (d) Grinding area removal function of the grinding depth ap. [Figure not available: see fulltext.].
AB - In large-scale aspheric precision grinding of the space optical mirror based on RB-SiC ceramic, precision grinding is the necessary process for obtain machined surface finish. To further obtain the minimum tolerances and morphological and planar changes of the workpiece, the resin-bond of the grain size 600# precision grinding diamond grinding wheel with the finish-surface precision grinding is generally used in the process. However, the technology to generate the precision grinding position via the point P(Ai, Aj) model analysis of the grinding wheel forms part of the as optical precision elements in surface modified layer of fundamental understanding and accurately control the actual mathematical calculation and a novel cold atmospheric plasma (CAP) process via oxygen (O2) design. In this paper, an aim need to pay closer attention to the mathematical model calculation method of cold atmospheric plasma process via oxygen, the surface modification region and the improvement of finish-surface of existing ceramic. As a summary, we provides a effective cold atmospheric plasma process via oxygen fluid flow-precision grinding via the experimental test and mechanism study of cold atmospheric plasma process via oxygen fluid flow precision grinding composite technology, the establishment of basic theory of mechanics-thermotics composite technology provides an important theoretical basis. The surface modification for RB-SiC hard-brittle ceramic process and about technical difficulties of the precision grinding at room temperature. The CAP process via oxygen (O2) surface modification process produce SiO2 or C layer, C–O, Si–C–O compound through mechanics-thermotics composite and physicochemical reaction at room temperature micro-grinding. Graphical Abstract: The schematic diagram of the cold atmospheric plasma process via oxygen fluid flow on the micro-grinding of RB-SiC ceramic: (a) The surface modification process via oxygen fluid flow; (b) Surface removal mechanism; (c) The real pictures of the plasma torch and micro-grinding wheel; (d) Grinding area removal function of the grinding depth ap. [Figure not available: see fulltext.].
KW - Cold atmospheric plasma
KW - Mechanics-thermotics composite
KW - Micro-grinding
KW - Surface modification
UR - https://www.scopus.com/pages/publications/85156249925
U2 - 10.1007/s12541-023-00823-6
DO - 10.1007/s12541-023-00823-6
M3 - 文章
AN - SCOPUS:85156249925
SN - 2234-7593
VL - 24
SP - 1319
EP - 1334
JO - International Journal of Precision Engineering and Manufacturing
JF - International Journal of Precision Engineering and Manufacturing
IS - 8
ER -