Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables Setting

The setting of cutting variables for precision milling of ceramics is important to both the machined surface quality and material removal rate (MRR). This work specifically aims at the performance of corner radius PCD (polycrystalline diamond) end mill in precision milling of zirconia ceramics with...

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Main Authors: Rong Bian, Wenzheng Ding, Shuqing Liu, Ning He
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Materials
Subjects:
PCD
Online Access:http://www.mdpi.com/1996-1944/12/1/122
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spelling doaj-66b6f862b8ef42aaa6d3c5a76d2c7e602020-11-24T22:18:00ZengMDPI AGMaterials1996-19442019-01-0112112210.3390/ma12010122ma12010122Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables SettingRong Bian0Wenzheng Ding1Shuqing Liu2Ning He3Industrial Center, Nanjing Institute of Technology; Nanjing 211167, ChinaIndustrial Center, Nanjing Institute of Technology; Nanjing 211167, ChinaIndustrial Center, Nanjing Institute of Technology; Nanjing 211167, ChinaJiangsu Key Laboratory of Precision and Micro-Manufacturing Technology, Nanjing University of Aeronautics & Astronautics; Nanjing 210016, ChinaThe setting of cutting variables for precision milling of ceramics is important to both the machined surface quality and material removal rate (MRR). This work specifically aims at the performance of corner radius PCD (polycrystalline diamond) end mill in precision milling of zirconia ceramics with relatively big cutting parameters. The characteristics of the cutting zone in precision milling ceramics with corner radius end mill are analyzed. The relationships between the maximum uncut chip thickness (hmax) and the milling parameters including feed per tooth (fz), axial depth of cut (ap) and tool corner radius (rε) are discussed. Precision milling experiments with exploratory milling parameters that cause uncut chip thickness larger than the critical value were carried out. The material removal mechanism was also analyzed. According to the results, it is advisable to increase fz appropriately during precision milling ZrO2 ceramics with corner radius end mill. There is still a chance to obtain ductile processed surface, as long as the brittle failure area is controlled within a certain range. The appropriate increasing of ap, not only can prevent the brittle damage from affecting the machined surface, but also could increase the MRR. The milling force increases with increasing MRR, but the surface roughness can still be stabilized within a certain range.http://www.mdpi.com/1996-1944/12/1/122millingceramicsductile machiningPCDcorner radiusmaterial removal rate
collection DOAJ
language English
format Article
sources DOAJ
author Rong Bian
Wenzheng Ding
Shuqing Liu
Ning He
spellingShingle Rong Bian
Wenzheng Ding
Shuqing Liu
Ning He
Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables Setting
Materials
milling
ceramics
ductile machining
PCD
corner radius
material removal rate
author_facet Rong Bian
Wenzheng Ding
Shuqing Liu
Ning He
author_sort Rong Bian
title Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables Setting
title_short Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables Setting
title_full Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables Setting
title_fullStr Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables Setting
title_full_unstemmed Research on High Performance Milling of Engineering Ceramics from the Perspective of Cutting Variables Setting
title_sort research on high performance milling of engineering ceramics from the perspective of cutting variables setting
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2019-01-01
description The setting of cutting variables for precision milling of ceramics is important to both the machined surface quality and material removal rate (MRR). This work specifically aims at the performance of corner radius PCD (polycrystalline diamond) end mill in precision milling of zirconia ceramics with relatively big cutting parameters. The characteristics of the cutting zone in precision milling ceramics with corner radius end mill are analyzed. The relationships between the maximum uncut chip thickness (hmax) and the milling parameters including feed per tooth (fz), axial depth of cut (ap) and tool corner radius (rε) are discussed. Precision milling experiments with exploratory milling parameters that cause uncut chip thickness larger than the critical value were carried out. The material removal mechanism was also analyzed. According to the results, it is advisable to increase fz appropriately during precision milling ZrO2 ceramics with corner radius end mill. There is still a chance to obtain ductile processed surface, as long as the brittle failure area is controlled within a certain range. The appropriate increasing of ap, not only can prevent the brittle damage from affecting the machined surface, but also could increase the MRR. The milling force increases with increasing MRR, but the surface roughness can still be stabilized within a certain range.
topic milling
ceramics
ductile machining
PCD
corner radius
material removal rate
url http://www.mdpi.com/1996-1944/12/1/122
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AT wenzhengding researchonhighperformancemillingofengineeringceramicsfromtheperspectiveofcuttingvariablessetting
AT shuqingliu researchonhighperformancemillingofengineeringceramicsfromtheperspectiveofcuttingvariablessetting
AT ninghe researchonhighperformancemillingofengineeringceramicsfromtheperspectiveofcuttingvariablessetting
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