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Online since: July 2015
Authors: A.K.M. Nurul Amin, Muammer Din Arif, Siti Aminatuzzuhriyah B. Haji Subir
Kaye et al. [4] used RSM to predict tool flank wear and its relation with spindle speed change.
El-Baradie, Tool-life prediction model by design of experiments for turning high strength steel (290 BHN), Journal of Mater.
El-Baradie, Tool-life prediction model by design of experiments for turning high strength steel (290 BHN), Journal of Mater.
Online since: August 2013
Authors: Rathanawan Magaraphan, S. Kamthai
Yew et al. [10] suggested that the filler-filler interaction became more pronounced than filler matrix interaction with increasing filler content that caused the low mechanical properties in the composites.
El-Sayed, K.H.Mahmouda, A.A.Fatah, A.Hassen, DSC, TGA and dielectric properties of carboxymethycellulose/polyvinyl alcohol blends.
El-Sayed, K.H.Mahmouda, A.A.Fatah, A.Hassen, DSC, TGA and dielectric properties of carboxymethycellulose/polyvinyl alcohol blends.
Online since: June 2008
Authors: Miloš Janeček, Lothar Wagner, Julia Müller
Experimental material and procedures
The material used in this work was wrought magnesium alloy AZ80 (Mg-8.6%Al-0.5%Mn-0.21%
Mn) which was received as chill cast material from Dead Sea Magnesium, Israel.
Tab. 1: Tensile properties of AZ80 AZ80 Grain size [µm] σ0.2 [MPa] UTS [MPa] El [%] EX 10 225 310 15 2x ECAP 3 220 305 9 4x ECAP 2 280 335 10 2x ECAP + SW 1.5 325 380 4 4x ECAP + SW 1 370 415 6 HCF performance.
Tab. 1: Tensile properties of AZ80 AZ80 Grain size [µm] σ0.2 [MPa] UTS [MPa] El [%] EX 10 225 310 15 2x ECAP 3 220 305 9 4x ECAP 2 280 335 10 2x ECAP + SW 1.5 325 380 4 4x ECAP + SW 1 370 415 6 HCF performance.
Online since: April 2004
Authors: S.W. Jung, C.K. Jung, S.I. Huh, Kyung Seop Han
Monsalve et al. [6] analytically and experimentally approached for full aperture Easy Open End
made of steel, and proposed the method to estimate the opening force of Easy Open End.
Material Properties E (MPa) YS (MPa) TS (MPa) EL. (%) Steel 223 425 550 25 Aluminum 75 300 436 11.5 Fig. 1 Shape of Single Score Punch Score width Score angle 3.2.
Material Properties E (MPa) YS (MPa) TS (MPa) EL. (%) Steel 223 425 550 25 Aluminum 75 300 436 11.5 Fig. 1 Shape of Single Score Punch Score width Score angle 3.2.
Online since: August 2011
Authors: Nadia Saidi-Amroun, Mohamed Saidi, Abdeselem Beldjilali
Analyses of under Pressure Polyacetylene Conductivity
Mohamed SAIDI,1,a Abdeselem BELDJILALI,1,b and Nadia SAIDI-AMROUN1,c
1 Material Physics Laboratory, Physics Faculty, University of Sciences and Technology (USTHB) BP 32 El-Alia, Bab-Ezzouar, Algiers 16111, Algeria
a saidimohamedster@gmail.com, b abdeslembeldjilali@gmail.com, c amnadster@gmail.com
or nsaidi@usthb.dz
Keywords: Polyacetylene, electro-active polymer, doping, electrical conductivity, hydrostatic pressure.
Baughmann et al., in R.
Baughmann et al., in R.