Journal of Surface Engineered Materials and Advanced Technology

Journal of Surface Engineered Materials and Advanced Technology

ISSN Print: 2161-4881
ISSN Online: 2161-489X
www.scirp.org/journal/jsemat
E-mail: jsemat@scirp.org
"Evaluate the Effects of Various Surface Roughness on the Tribological Characteristics under Dry and Lubricated Conditions for Al-Si Alloy"
written by Riyadh A. Al-Samarai, Haftirman  , Khairel Rafezi Ahmad, Y. Al-Douri,
published by Journal of Surface Engineered Materials and Advanced Technology, Vol.2 No.3, 2012
has been cited by the following article(s):
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[12] Microstructure, Hardness, and Wear Assessment of Spark-Plasma-Sintered Ti-xAl-1Mo Alloy
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[14] Effect of self-developed graphene lubricant on tribological behaviour of silicon carbide/silicon nitride interface
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[16] Investigation of operating parameters on high-velocity oxyfuel thermal spray coating quality for aerospace applications
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[17] Effect of steel family fibers on friction and stiction behavior of brake pads
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[18] Investigation of tribological behaviour of DLC coating on hyper-eutectic Al-Si alloys, a review
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[19] Modified from a paper published in Tribology International Sougata Roy, Jingnan Zhao, Pranav Shrotriya, Sriram Sundararajan
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[20] Effects of initial surface topography and contact regimes on tribological behavior of AISI-52100/AA5083 materials' pair when reciprocating sliding
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[21] The effect of contact stress on the sliding wear behaviour of Zn-Ni electrodeposited coatings
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[23] Non-Contact Roughness Investigation of Ball-Cratered Molybdenum Thermal Spray Coatings.
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[25] Effect of laser treatment parameters on surface modification and tribological behavior of AISI 8620 steel
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[26] Non-Contact Roughness Investigation of Ball-Cratered Molybdenum Thermal Spray Coatings
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[27] Sliding wear and fretting behaviour of electrodeposited γ-phase zinc-nickel coatings as a replacement for electrodeposited cadmium coatings
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[28] Optimisation of process parameters for minimum volumetric wear rate on AA7075-TiC metal matrix composite.
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[29] In-Process Surface Roughness Estimation Model for Compliant Abrasive Belt Machining Process
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[30] A numerical framework for discrete modelling of friction and wear using Voronoi polyhedrons
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