Cargando…

Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability

The addition of CaF(2)@SiO(2) and SiC whiskers to ceramic tools can improve their flexural strength and fracture toughness, reduce surface damage, and improve their cutting performance. The cutting experiments showed that under the same cutting conditions, the surface roughness of the workpiece proc...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Wenhao, Chen, Zhaoqiang, Tian, Congfeng, Wu, Jun, Xiao, Guangchun, Guo, Niansheng, Yi, Mingdong, Zhang, Jingjie, Xu, Chonghai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369910/
https://www.ncbi.nlm.nih.gov/pubmed/35955365
http://dx.doi.org/10.3390/ma15155430
_version_ 1784766623265062912
author Zhang, Wenhao
Chen, Zhaoqiang
Tian, Congfeng
Wu, Jun
Xiao, Guangchun
Guo, Niansheng
Yi, Mingdong
Zhang, Jingjie
Xu, Chonghai
author_facet Zhang, Wenhao
Chen, Zhaoqiang
Tian, Congfeng
Wu, Jun
Xiao, Guangchun
Guo, Niansheng
Yi, Mingdong
Zhang, Jingjie
Xu, Chonghai
author_sort Zhang, Wenhao
collection PubMed
description The addition of CaF(2)@SiO(2) and SiC whiskers to ceramic tools can improve their flexural strength and fracture toughness, reduce surface damage, and improve their cutting performance. The cutting experiments showed that under the same cutting conditions, the surface roughness of the workpiece processed with the Al(2)O(3)/TiC/SiC/CaF(2)@SiO(2) (ATSC10) tool was significantly lower than that of the workpiece processed with the Al(2)O(3)/TiC/ SiC (ATS) tool. Additionally, the main cutting force and cutting temperature when cutting with the ATSC10 tool were lower by 30 and 31.7%, respectively. These results were attributed to the precipitation of CaF(2) from the nanocoated particles during cutting and the formation of a uniform and continuous lubricating film on the surface of the tool. The wear on the front surface of the ATS tool was mainly adhesive, and that on the back tool surface was mainly abrasive. For ATSC10, the main forms of wear on the tool front surface were adhesive and abrasive, whereas the main form of wear on the tool back surface was abrasive with slight adhesive wear. The addition of nano-coated particles and whiskers improved the mechanical properties of the cutting tool while maintaining good cutting performance.
format Online
Article
Text
id pubmed-9369910
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93699102022-08-12 Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability Zhang, Wenhao Chen, Zhaoqiang Tian, Congfeng Wu, Jun Xiao, Guangchun Guo, Niansheng Yi, Mingdong Zhang, Jingjie Xu, Chonghai Materials (Basel) Article The addition of CaF(2)@SiO(2) and SiC whiskers to ceramic tools can improve their flexural strength and fracture toughness, reduce surface damage, and improve their cutting performance. The cutting experiments showed that under the same cutting conditions, the surface roughness of the workpiece processed with the Al(2)O(3)/TiC/SiC/CaF(2)@SiO(2) (ATSC10) tool was significantly lower than that of the workpiece processed with the Al(2)O(3)/TiC/ SiC (ATS) tool. Additionally, the main cutting force and cutting temperature when cutting with the ATSC10 tool were lower by 30 and 31.7%, respectively. These results were attributed to the precipitation of CaF(2) from the nanocoated particles during cutting and the formation of a uniform and continuous lubricating film on the surface of the tool. The wear on the front surface of the ATS tool was mainly adhesive, and that on the back tool surface was mainly abrasive. For ATSC10, the main forms of wear on the tool front surface were adhesive and abrasive, whereas the main form of wear on the tool back surface was abrasive with slight adhesive wear. The addition of nano-coated particles and whiskers improved the mechanical properties of the cutting tool while maintaining good cutting performance. MDPI 2022-08-07 /pmc/articles/PMC9369910/ /pubmed/35955365 http://dx.doi.org/10.3390/ma15155430 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Wenhao
Chen, Zhaoqiang
Tian, Congfeng
Wu, Jun
Xiao, Guangchun
Guo, Niansheng
Yi, Mingdong
Zhang, Jingjie
Xu, Chonghai
Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability
title Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability
title_full Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability
title_fullStr Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability
title_full_unstemmed Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability
title_short Addition of Nano CaF(2)@SiO(2) and SiC Whiskers in Ceramic Tools for Wear Reduction and Improved Machinability
title_sort addition of nano caf(2)@sio(2) and sic whiskers in ceramic tools for wear reduction and improved machinability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369910/
https://www.ncbi.nlm.nih.gov/pubmed/35955365
http://dx.doi.org/10.3390/ma15155430
work_keys_str_mv AT zhangwenhao additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT chenzhaoqiang additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT tiancongfeng additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT wujun additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT xiaoguangchun additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT guoniansheng additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT yimingdong additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT zhangjingjie additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability
AT xuchonghai additionofnanocaf2sio2andsicwhiskersinceramictoolsforwearreductionandimprovedmachinability