Engineering

Engineering

ISSN Print: 1947-3931
ISSN Online: 1947-394X
www.scirp.org/journal/eng
E-mail: eng@scirp.org
"Surface Roughness Evaluation in Dry-Cutting of Magnesium Alloy by Air Pressure Coolant"
written by Jeong-Du Kim, Keon-Beom Lee,
published by Engineering, Vol.2 No.10, 2010
has been cited by the following article(s):
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[1] Research, Modelling and Prediction of the Influence of Technological Parameters on the Selected 3D Roughness Parameters, as Well as Temperature, Shape and …
Materials, 2022
[2] The Influence of Milling Parameters on Surface Properties in Milled AZ91C Magnesium Alloy
2021
[3] Effect of Surface Roughness Induced by Milling Operation on the Corrosion Behavior of Magnesium Alloys
2021
[4] Effect of Milling Technology on Selected Surface Layer Properties
2019
[5] Surface quality simulation with neural networks in AZ91D Mg alloy milling
2019
[6] Magnezyum Alaşımının DLC Kesici Takımlarla Frezelenmesi
2019
[7] Application of neural network in determination of parameters for milling AZ91HP magnesium alloy with surface roughness constraint
2019
[8] Surface Quality in Milling of AZ91D Magnesium Alloy
2019
[9] Influence of Water Cooling on Orthogonal Cutting Process of Ti-6Al-4V Using Smooth-Particle Hydrodynamics Method
2019
[10] Optimization of surface roughness in turning Mg2Si particle reinforced magnesium
2018
[11] Measurement and optimization of performance characteristics in turning of Mg alloy under dry and MQL conditions
Measurement, 2018
[12] Mg2Si partikül takviyeli magnezyum alaşımlarının tornalanmasında yüzey pürüzlülüğünün optimizasyonu
Politeknik Dergisi, 2018
[13] Computational And Artificial Intelligence
ITM Web of Conferences, 2017
[14] Artificial neural network modelling of cutting force components in milling
2017
[15] Surface roughness of magnesium alloy AZ91D in high speed milling
2016
[16] Measurement and optimization of surface roughness and tool wear via grey relational analysis, TOPSIS and RSA techniques
Measurement, 2016
[17] Döküm Yöntemiyle Üretilmiş AZ91 Magnezyum Alaşımının İşlenebilirliğinin Yüzey Pürüzlülüğü Açısından Değerlendirilmesi/Evaluation of machinability of cast az91 magnesium alloys in terms of surface roughness
Erciyes Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 2016
[18] Artificial neural network modelling of cutting force components during AZ91HP alloy milling
Applied Computer Science, 2016
[19] A statistical analysis applied for optimal cooling system selection and for a superior surface quality of machined magnesium alloy parts
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2015
[20] Influence of Inserts Number on Surface Quality in Milling
Applied Mechanics and Materials, 2015
[21] Surface quality assessment following high performance cutting of AZ91HP magnesium alloy
Management and Production Engineering Review, 2015
[22] THE EFFECT OF AGING AND CUTTING PARAMETERS ON SURFACE ROUGHNESS OF AZ91 MAGNESIUM ALLOYS
Conference: 53th International Foundry Conference Portorož, 2015
[23] ANALIZA WPŁYWU WARUNKÓW TOCZENIA WZDŁUŻNEGO NA CHROPOWATOŚĆ POWIERZCHNI I POSTAĆ WIÓRÓW STOPU MAGNEZU AM 60
2015
[24] Döküm yöntemiyle üretilmiş az91 magnezyum alaşımının işlenebilirliğinin yüzey pürüzlülüğü açısından değerlendirilmesi
2014
[25] Badania wpływu warunków toczenia stopu magnezu AZ 91 na chropowatość powierzchni i postać wiórów
Mechanik, 2014
[26] A statistical analysis applied for optimal cooling system selection and for a superior surface quality of machined magnesium all
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2014
[27] Analysis of Surface Roughness for High Speed Milling of a Magnesium Alloy Part
2014
[28] Badania chropowato?ci po frezowaniu stopów magnezu AZ31 i AZ91HP
Mechanik, 2012
[29] Magnesium and Aluminum Alloys in Automotive Industry
Journal of Applied Sciences Research, 2012
[30] Badania masy, temperatury zap?onu oraz temperatury wiórów podczas skrawania wybranych stopów magnezu
Mechanik, 2012
[31] MACHINING OF WIDELY USED LIGHT WEIGHT ALLOYS AND COMPOSITES FOR AEROSPACE APPLICATIONS
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