Precision Cutting of CVD-SiC Mold Inserts Using Polycrystalline Diamond Tool

The demand for glass lenses for smartphones, digital cameras, automobile sensors, medical micro-endoscopes, and optical communication equipment has increased, and their optical performance requires further improvement. To fabricate aspherical mold inserts of chemical vapor deposition (CVD) for smart...

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Published inInternational journal of automation technology Vol. 19; no. 5; pp. 820 - 826
Main Authors Suzuki, Hirofumi, Furuki Tatsuya, Suzuki, Akihiro, Mirai, Sakaida, Fukuda Tatsuya
Format Journal Article
LanguageEnglish
Published Tokyo Fuji Technology Press Co. Ltd 01.09.2025
Subjects
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ISSN1881-7629
1883-8022
DOI10.20965/ijat.2025.p0820

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Abstract The demand for glass lenses for smartphones, digital cameras, automobile sensors, medical micro-endoscopes, and optical communication equipment has increased, and their optical performance requires further improvement. To fabricate aspherical mold inserts of chemical vapor deposition (CVD) for smartphones and automobile sensors precisely and efficiently, a new fabrication process using the developed polycrystalline diamond (PCD) tools was proposed and tested. In the experiments, the effects of CVD-silicon carbide (SiC) grain size on machined surface roughness were tested using the developed PCD tool, and the cutting force and specific machining energy were evaluated in comparison with the conventional grinding wheel. Finally, a hollowing PCD tool was produced to hollow the CVD-SiC plate. From the experiments, it is evident that the aspherical CVD-SiC mold inserts can be manufactured precisely and efficiently using the developed process.
AbstractList The demand for glass lenses for smartphones, digital cameras, automobile sensors, medical micro-endoscopes, and optical communication equipment has increased, and their optical performance requires further improvement. To fabricate aspherical mold inserts of chemical vapor deposition (CVD) for smartphones and automobile sensors precisely and efficiently, a new fabrication process using the developed polycrystalline diamond (PCD) tools was proposed and tested. In the experiments, the effects of CVD-silicon carbide (SiC) grain size on machined surface roughness were tested using the developed PCD tool, and the cutting force and specific machining energy were evaluated in comparison with the conventional grinding wheel. Finally, a hollowing PCD tool was produced to hollow the CVD-SiC plate. From the experiments, it is evident that the aspherical CVD-SiC mold inserts can be manufactured precisely and efficiently using the developed process.
Author Suzuki, Hirofumi
Suzuki, Akihiro
Mirai, Sakaida
Furuki Tatsuya
Fukuda Tatsuya
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SubjectTerms Automobiles
Chemical vapor deposition
Communications equipment
Cutting force
Cutting parameters
Diamond machining
Diamond tools
Digital cameras
Grain size
Grinding wheels
Molds
Polycrystalline diamond
Polycrystals
Sensors
Silicon carbide
Surface roughness
Title Precision Cutting of CVD-SiC Mold Inserts Using Polycrystalline Diamond Tool
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