Effect of Quick-Point Grinding Technological Parameters on Grinding Vibration Frequency
SHAN Quan1, PAN Shuai1, YU Xue-qiao1, MA Lian-jie2
1. School of Control Engineering, Northeastern University at Qinhuangdao, Qinhuangdao 066004, China; 2. School of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819, China.
[1]Ma L J,Gong Y D,Chen X.Study on surface roughness model and surface forming mechanism of ceramics in quick point grinding[J].International Journal of Machine Tools and Manufacture,2014,77:82-92. [2]Tnissen S,Klocke F,Feldhaus B,et al.Residual stress prediction in quick point grinding[J].Production Engineering,2012,6(3):243-249. [3]Thomas M,Beauchamp Y,Youssef A Y,et al.Effect of tool vibrations on surface roughness during lathe dry turning process[J].Computers & Industrial Engineering,1996,31(3):637-644. [4]Li J,Wang C.Effect of the feed rate on three-dimensional topography of Ti-6Al-4V based on dynamic mechanical model analysis in cutting process[J].The International Journal of Advanced Manufacturing Technology,2019,105:1539-1547. [5]Hessainia Z,Belbah A,Yallese M A,et al.On the prediction of surface roughness in the hard turning based on cutting parameters and tool vibrations[J].Measurement,2013,46(5):1671-1681. [6]Upadhyay V,Jain P K,Mehta N K.In-process prediction of surface roughness in turning of Ti-6Al-4V alloy using cutting parameters and vibration signals[J].Measurement,2013,46(1):154-160. [7]Kim D,Chang I,Kim S.Microscopic topographical analysis of tool vibration effects on diamond turned optical surfaces[J].Precision Engineering,2002,26(2):168-174. [8]Elango M,Annamalai A,Praveen Raju A.Production of cutting tool vibration in turning using artificial neural network[J].IOP Conference Series:Materials Science and Engineering,2021,1013(1):12003. [9]马廉洁.工程陶瓷点磨削表面质量建模及其演化机理的研究[D].沈阳:东北大学,2014.(Ma Lian-jie.Research on modeling and evolution mechanism of surface quality of engineering ceramics in point grinding[D].Shenyang:Northeastern University,2014.) [10]马廉洁,曹小兵,巩亚东,等.基于遗传算法与BP神经网络的微晶玻璃点磨削工艺参数优化[J].中国机械工程,2015,26(1):102-106.(Ma Lian-jie,Cao Xiao-bing,Gong Ya-dong,et al.Optimization of glass-ceramic spot grinding process parameters based on genetic algorithm and BP neural network[J].China Mechanical Engineering,2015,26(1):102-106.) [11]马廉洁,陈杰,巩亚东,等.基于PSO算法改进BP神经网络的氟金云母点磨削工艺参数优化[J].中国机械工程,2016,27(6):761-766.(Ma Lian-jie,Chen Jie,Gong Ya-dong,et al.Optimization of fluoride mica spot grinding process parameters based on PSO algorithm to improve BP neural network[J].China Mechanical Engineering,2016,27(6):761-766.) [12]周培培,李金泉,许立福,等.TA15钛合金切削振动与表面质量关系研究[J].工具技术,2016,50(5):21-25.(Zhou Pei-pei,Li Jin-quan,Xu Li-fu,et al.Study on the relationship between cutting vibration and surface quality of TA15 titanium alloy[J].Tool Engineering,2016,50(5):21-25.) [13]Ma L,Yu A,Gu L,et al.Mechanism of compound fracture and removal in grinding process for low-expansion glass ceramics[J].The International Journal of Advanced Manufacturing Technology,2017,91:2303-2313. [14]Asiltürk I·,Akkus, H.Determining the effect of cutting parameters on surface roughness in hard turning using the Taguchi method[J].Measurement,2011,44(9):1697-1704.(上接第529页) [9]Khorshidi Z N,Tan X,Liu Q,et al.Effect of inorganic salt contaminants on the dissolution of kaolinite basal surfaces in alkali media:a molecular dynamics study [J].The Journal of Physical Chemistry C Nanomaterials & Interfaces,2018,122(9):4937-4944. [10]Khorshidi Z N,Tan X,Liu Q,et al.Molecular dynamics study of the dissolution mechanism of kaolinite basal surfaces in alkali media [J].Applied Clay Science,2018,152(2):29-37. [11]Cui S W,Wei J A,Liu W W,et al.Approximate expression of Young’s equation and molecular dynamics simulation for its applicability [J].Chinese Physics B,2019,28(1):527-531. [12]Chen L Z,She C C,Pan H X,et al.Habit prediction of 3,4,5-trinitro-1 H-pyrazole in four solvent mediums using a molecular dynamics simulation [J].Journal of Crystal Growth,2018,7:58-64. [13]Chen H,Duan S,Sun Y,et al.Molecular dynamics simulations of solvent effects on the crystal morphology of lithium carbonate [J].RSC Advances,2020,10(10):5604-5609. [14]Sharma S.Molecular dynamics simulation of nanocomposites using BIOVIA Materials studio,Lammps and Gromacs[M].New Delhi:Elsevier,2019. [15]Ren X T,Ye D Y,Ding N,et al.A molecular dynamics simulation of solvent effects on the crystal morphology of FOX-7 [J].Acta Armamentarii,2015,36(2):272-278. [16]Yoreo J D,Gilbert P U,Sommerdijk N A,et al.Crystallization by particle attachment in synthetic,biogenic,and geologic environments [J].Science,2015,349(6247):498-508.