Optimization of machining parameters in the abrasive waterjet turning of alumina ceramic based on the response surface methodology

被引:1
|
作者
Zhongbo Yue
Chuanzhen Huang
Hongtao Zhu
Jun Wang
Peng Yao
ZengWen Liu
机构
[1] Shandong University,Key Laboratory of High
来源
The International Journal of Advanced Manufacturing Technology | 2014年 / 71卷
关键词
Response surface methodology (RSM); Abrasive waterjet (AWJ); Turning; Material removal rate (MRR); Ceramic materials;
D O I
暂无
中图分类号
学科分类号
摘要
A study on the radial-mode abrasive waterjet turning (AWJT) of 96 % alumina ceramic is presented and discussed. An experimental investigation is carried out to explore the influence of process parameters (including water pressure, jet feed speed, abrasive mass flow rate, surface speed, and nozzle tilted angle) on the material removal rate (MRR) when turning 96 % alumina ceramic. The experiments are conducted on the basis of response surface methodology (RSM) and sequential approach using face-centered central composite design. The quadratic model of RSM associated with the sequential approximation optimization (SAO) method is used to find optimum values of process parameters in terms of surface roughness and MRR. The results show that the MRR is influenced principally by the water pressure P and the next is abrasive mass flow rate ma. The optimization results show that the MRR can be improved without increasing the surface roughness when machining 96 % alumina ceramic in the radial-mode abrasive waterjet turning process.
引用
收藏
页码:2107 / 2114
页数:7
相关论文
共 50 条
  • [41] Optimisation of Machining Parameters in Hard Turning by Desirability Function Analysis Using Response Surface Methodology
    Kribes, Nabil
    Hessainia, Zahia
    Yallese, Mohamed Athmane
    Design and Modeling of Mechanical Systems - II, 2015, : 73 - 81
  • [42] Exploration on Kerf-angle and Surface Roughness in Abrasive Waterjet Machining using Response Surface Method
    Babu M.N.
    Muthukrishnan N.
    Babu, Munuswamy Naresh (narsavi@gmail.com), 2018, Springer (99) : 645 - 656
  • [43] Optimization of Abrasive Water Jet Machining Parameters for α-β brass using Taguchi Methodology
    Marichamy, S.
    Ravichandran, M.
    Stalin, B.
    Babu, B. Sridhar
    FME TRANSACTIONS, 2019, 47 (01): : 116 - 121
  • [44] Analysis and optimization of abrasive waterjet dressing parameters for surface texturing of diamond grinding wheels
    Zhang, Shibo
    Zhang, Zhenzhong
    Xing, Hongyu
    Hao, Guangchao
    Liang, Xiaoliang
    DIAMOND AND RELATED MATERIALS, 2024, 149
  • [46] Simultaneous optimization of multiple responses in abrasive waterjet machining of borosilicate glass
    Aich, Ushasta
    Rahaman, Hasibur
    Nihar, Suman
    Basu, Jisnu
    SADHANA-ACADEMY PROCEEDINGS IN ENGINEERING SCIENCES, 2024, 49 (03):
  • [47] Optimization of machining parameters using response surface methodology with desirability function in turning duplex stainless steel UNS S32760
    Cardoso, Luiz G.
    Madeira, Deise S.
    Ricomini, Thulio E. P. A.
    Miranda, Ruben A.
    Brito, Tarcisio G.
    Paiva, Emerson J.
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2021, 117 (5-6): : 1633 - 1644
  • [48] A Visualization Study of the Radial-Mode Abrasive Waterjet Turning Process for Alumina Ceramics
    Ali, Mirza Ahmed
    Fan, Jingming
    Zhu, Hongtao
    Wang, Jun
    ADVANCES IN ABRASIVE TECHNOLOGY XVI, 2013, 797 : 9 - +
  • [49] Optimization of machining parameters using response surface methodology with desirability function in turning duplex stainless steel UNS S32760
    Luiz G. Cardoso
    Deise S. Madeira
    Thulio E. P. A. Ricomini
    Rubén A. Miranda
    Tarcísio G. Brito
    Emerson J. Paiva
    The International Journal of Advanced Manufacturing Technology, 2021, 117 : 1633 - 1644
  • [50] OPTIMIZATION OF PROCESSING PARAMETERS IN ELECTROCHEMICAL MACHINING OF AISI 202 USING RESPONSE SURFACE METHODOLOGY
    Sathiyamoorthy, V.
    Sekar, T.
    Suresh, P.
    Vijayan, R.
    Elango, N.
    JOURNAL OF ENGINEERING SCIENCE AND TECHNOLOGY, 2015, 10 (06) : 780 - 789