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基于Box-Behnken方法的GH4169铣削力试验研究 被引量:9

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摘要 为优化GH4169高温合金铣削参数,采用Box-Behnken响应曲面法设计实验,建立了GH4169的切削力二阶响应曲面法模型。利用方差分析法,对预测模型和模型系数进行了显著性验证,对切削参数影响铣削力的线性项、交互项的显著性进行了比较,并分析了各切削参数的影响规律。试验结果表明:采用Box-Behnken响应曲面法所建立的铣削力预测模型回归显著,置信度高;预测模型中的交互项对铣削力有显著的影响。
出处 《机械制造》 2011年第8期88-92,共5页 Machinery
基金 国家重大科技专项(编号:2009ZX04014-053) 西北工业大学研究生创新实验中心项目(编号:10019)
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  • 1Rahman M, Seah W K H, Teo T T. The Machinability of Inconel 718 [J]. Journal of Materials Processing Technology, 1997, 63: 199-204.
  • 2Dudzinski D, Devillez A, Moufki A, et al. A Review of Developments towards Dry and High Speed Machining of Inconel 718 Alloy[J]. International Journal of Machine Tools & Manufacture, 2004, 44: 439-456.
  • 3Ezugwu E O, Wang Z M, Machado A R. The Machinability of Nickel-based Alloys: a Review [J]. Journal of Materials Processing Technology, 1999, 86:1 - 16.
  • 4Ezugwu EO. Key Improvements in the Machining of Diffcult- to-cut Aerospace SuperaUoys [J]. International Journal of Machine Tools & Manufacture, 2005,45: 1353-1367.
  • 5Liao YS, Lin HM, Wang JH. Behaviors of End Milling Inconel 718 Superalloy by Cemented Carbide Tools [J]. Journal of Materials Processing Technology, 2008, 201:460 - 465.
  • 6Pawade R S, Joshi S S, Brahmanka P K, et al. An Investigation of Cutting Forces and Surface Damage in High- speed Turning of Inconel 718 [J]. Journal of Materials Processing Technology, 2007,192 - 193:139 - 146.
  • 7Devillez A, Schneider F, Dominiak S. Cutting Forces and Wear in Dry Machining of Inconel 718 with Coated Carbide Tools[J]. Wear, 2007, 262:931 - 942.
  • 8Alauddin M, El Baradi M A, Hashmi M S J. Modelling of Cutting Force in End Mlling Inconel 718 [J]. Journal of Materials Processing Technology, 1996, 58: 100-108.
  • 9钱子亮,贾艳丽.高温合金材料冷加工技术[J].航空制造技术,2004,47(3):92-93. 被引量:9
  • 10石文天,王西彬,刘玉德,刘志兵.基于响应曲面法的微细铣削表面粗糙度预报模型与试验研究[J].中国机械工程,2009(20):2399-2402. 被引量:35

二级参考文献14

共引文献70

同被引文献60

  • 1武文革,刘丽娟,范鹏,李波.基于响应曲面法的高速铣削Ti6Al4V表面粗糙度的预测模型与优化[J].制造技术与机床,2014(1):39-43. 被引量:10
  • 2张为民,赫明辉,沈英莹,赵新,易克平.铝衬微波印制板高速铣削的切削力实验研究[J].机电一体化,2004,10(4):15-18. 被引量:6
  • 3辛民,王西彬,康运江,杨洪建.铁基粉末冶金材料的高速干切削试验研究[J].工具技术,2006,40(7):17-20. 被引量:8
  • 4何为.薛卫东.唐斌.优化试验设计方法及数据分析[M].北京:化学工业出版社,2012:99-102,170-176.
  • 5Aized T, Shirinzadeh B. Robotic fiber placement process analysis and optimization using response surface method[J]. The Internation- al Journal of Advanced Manufacturing Technology, 2011 , 55 ( 1 ) : 393404.
  • 6Olsen HB, Craig JJ. Automated composite tape lay-up using robotic devices[ C. 1993. 291-297.
  • 7Ahn KJ, Seferis JC, Pehon T et al. Analysis and characterization of prepreg tack [ J ]. Polymer Composites, 1992,13 ( 3 ) : 197-206.
  • 8M Subramanian, M Sakthivel, K Sooryaprakash, et al. Opti- mization of Cutting Parameters for Cutting Force in Shoulder Milling of AI7075-T6 Using Response Surface Methodology and Genetic Algorithm [J]. Proeedia Engineering, 2012, 64:690 - 700.
  • 9R Suresh, S Basavarajappa, G L Samuel. Predictive Model- ing of Cutting Forces and Tool Wear in Hard Turning using Response Surface Methodology [J]. Procedia Engineering, 2012, 38 -73 -81.
  • 10K A Abou-E1-Hossein, K Kadirgama, M Hamdi, et al. Pre- diction of cutting force in end-milling operation of modifiedAISI P20 tool steel [J]. Journal of Materials Processing Technology, 2007, 182 : 241 - 247.

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