Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond Films

The distribution of substrate temperature plays a decisive role on the uniformity of polycrystalline diamond films on cemented carbide tools with a long flute, prepared by a hot filament chemical vapor deposition (HFCVD). In this work, the heat dissipation mode at the bottom of tools is a focal poin...

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Main Authors: Tao Zhang, Yizheng Qian, Shu Wang, Guodong Huang, Lijun Zhang, Zhe Xue
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Crystals
Subjects:
Online Access:https://www.mdpi.com/2073-4352/9/8/394
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spelling doaj-8e9769656f0f42d5bde26f1bfdfbe05e2020-11-24T21:24:16ZengMDPI AGCrystals2073-43522019-07-019839410.3390/cryst9080394cryst9080394Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond FilmsTao Zhang0Yizheng Qian1Shu Wang2Guodong Huang3Lijun Zhang4Zhe Xue5Mechanical Institute of Technology, Wuxi Institute of Technology, Wuxi 214121, ChinaMechanical Institute of Technology, Wuxi Institute of Technology, Wuxi 214121, ChinaMechanical Institute of Technology, Wuxi Institute of Technology, Wuxi 214121, ChinaMechanical Institute of Technology, Wuxi Institute of Technology, Wuxi 214121, ChinaSchool of Engineering Science and Technology, Shanghai Ocean University, Shanghai 200240, ChinaZhangjiagang Weina New Materials Technology Co., Ltd., Suzhou 201316, ChinaThe distribution of substrate temperature plays a decisive role on the uniformity of polycrystalline diamond films on cemented carbide tools with a long flute, prepared by a hot filament chemical vapor deposition (HFCVD). In this work, the heat dissipation mode at the bottom of tools is a focal point, and the finite volume method (FVM) is conducted to simulate and predict the temperature field of tools, with the various materials of the holder placed under the tools. The simulation results show that the thermal conductivity of the holder affects the temperature difference of the individual tools greatly, but only affects the temperature of different tools at the same XY plane slightly. Moreover, the ceramic holder can reduce the difference in temperature of an individual tool by 54%, compared to a copper one. Afterwards, the experiments of the deposition of diamond films is performed using the preferred ceramic holder. The diamond coatings on the different positions present a highly uniform distribution on their grain size, thickness, and quality.https://www.mdpi.com/2073-4352/9/8/394HFCVD diamond filmmilling toolssimulationtemperature distribution
collection DOAJ
language English
format Article
sources DOAJ
author Tao Zhang
Yizheng Qian
Shu Wang
Guodong Huang
Lijun Zhang
Zhe Xue
spellingShingle Tao Zhang
Yizheng Qian
Shu Wang
Guodong Huang
Lijun Zhang
Zhe Xue
Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond Films
Crystals
HFCVD diamond film
milling tools
simulation
temperature distribution
author_facet Tao Zhang
Yizheng Qian
Shu Wang
Guodong Huang
Lijun Zhang
Zhe Xue
author_sort Tao Zhang
title Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond Films
title_short Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond Films
title_full Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond Films
title_fullStr Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond Films
title_full_unstemmed Influence of the Heat Dissipation Mode of Long-Flute Cutting Tools on Temperature Distribution during HFCVD Diamond Films
title_sort influence of the heat dissipation mode of long-flute cutting tools on temperature distribution during hfcvd diamond films
publisher MDPI AG
series Crystals
issn 2073-4352
publishDate 2019-07-01
description The distribution of substrate temperature plays a decisive role on the uniformity of polycrystalline diamond films on cemented carbide tools with a long flute, prepared by a hot filament chemical vapor deposition (HFCVD). In this work, the heat dissipation mode at the bottom of tools is a focal point, and the finite volume method (FVM) is conducted to simulate and predict the temperature field of tools, with the various materials of the holder placed under the tools. The simulation results show that the thermal conductivity of the holder affects the temperature difference of the individual tools greatly, but only affects the temperature of different tools at the same XY plane slightly. Moreover, the ceramic holder can reduce the difference in temperature of an individual tool by 54%, compared to a copper one. Afterwards, the experiments of the deposition of diamond films is performed using the preferred ceramic holder. The diamond coatings on the different positions present a highly uniform distribution on their grain size, thickness, and quality.
topic HFCVD diamond film
milling tools
simulation
temperature distribution
url https://www.mdpi.com/2073-4352/9/8/394
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