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  1. Journal of Materials Engineering and Performance
  2. Journal of Materials Engineering and Performance : Volume 16
  3. Journal of Materials Engineering and Performance : Volume 16, Issue 6, December 2007
  4. Analysis of Materials Performance Efficiency
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Journal of Materials Engineering and Performance : Volume 26
Journal of Materials Engineering and Performance : Volume 25
Journal of Materials Engineering and Performance : Volume 24
Journal of Materials Engineering and Performance : Volume 23
Journal of Materials Engineering and Performance : Volume 22
Journal of Materials Engineering and Performance : Volume 21
Journal of Materials Engineering and Performance : Volume 20
Journal of Materials Engineering and Performance : Volume 19
Journal of Materials Engineering and Performance : Volume 18
Journal of Materials Engineering and Performance : Volume 17
Journal of Materials Engineering and Performance : Volume 16
Journal of Materials Engineering and Performance : Volume 16, Issue 6, December 2007
Laser Cutting of Multilayered Kevlar Plates
Modeling Microstructural Evolution During Dynamic Recrystallization of Alloy D9 Using Artificial Neural Network
Microstructures and Mechanical Properties Prediction for Ti-Based Alloys
Analysis of Materials Performance Efficiency
Constraints Based Modeling for Innovative Product & Process Designs
Artificial Neural Network Prediction of Fretting Wear Behavior of Structural Steel, En 24 Against Bearing Steel, En 31
Characterization of the Micro-Welding Process for Repair of Nickel Base Superalloys
Stress Corrosion Cracking of Cast 6063 and Deep Drawn 1017 Aluminum Utensils In Lycopersicum esculentum
Sintering Behavior of Elemental Powders with FeB Addition in the Composition of Martensitic Stainless steel
Effects of {VIM+EBCHR} Refining for IN-738 Alloy
Crevice Corrosion of Titanium in High Temperature-Concentrated Chloride Environments
An Evaluation of Fracture Toughness of Vinyl Ester Composites Cured under Microwave Conditions
Three-body Impact Corrosion-Abrasion: Studying for Low Carbon High Alloy Liner in Ore Grinder
Influence of Indium Trace Addition on the Precipitation Behavior in a 357 Cast Aluminum Alloy
An Investigation of Carbon Content and Consolidation Temperature on Microstructure and Properties of Hafnium Boride Ceramic
Stress Variation in Deep Drawn 1017 Aluminum Alloy
Preparation of Silicon Carbide Coatings from Liquid Carbosilanes by Chemical Vapor Deposition
Aqueous Corrosion Behavior of Iron aluminide Intermetallics
The Correlation of Machinability and Microstrutural Characteristics of Different Extruded Aluminum Alloys
Fiber Reinforced Polyester Resins Polymerized by Microwave Source
Study of Surface Morphology in Welds of Ti-5Ta-1.8Nb Alloy Exposed to 11.5 M Boiling Nitric Acid
Journal of Materials Engineering and Performance : Volume 16, Issue 5, October 2007
Journal of Materials Engineering and Performance : Volume 16, Issue 4, August 2007
Journal of Materials Engineering and Performance : Volume 16, Issue 3, June 2007
Journal of Materials Engineering and Performance : Volume 16, Issue 2, April 2007
Journal of Materials Engineering and Performance : Volume 16, Issue 1, February 2007
Journal of Materials Engineering and Performance : Volume 15
Journal of Materials Engineering and Performance : Volume 14
Journal of Materials Engineering and Performance : Volume 13
Journal of Materials Engineering and Performance : Volume 12
Journal of Materials Engineering and Performance : Volume 11
Journal of Materials Engineering and Performance : Volume 10
Journal of Materials Engineering and Performance : Volume 9
Journal of Materials Engineering and Performance : Volume 8
Journal of Materials Engineering and Performance : Volume 7
Journal of Materials Engineering and Performance : Volume 6

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Analysis of Materials Performance Efficiency

Content Provider Springer Nature Link
Author Raman, Aravamudhan
Copyright Year 2007
Abstract The Performance Efficiency of a Material (MPE) in a given engineering component is taken as the sum total of the performance indices of the material for various required properties and mandates of design. The performance index for a property is defined as the product of the weight (W) of the property among all the requirements (weight being distributed out of 100 total points among all of the required properties and factors) and satisfaction index (SI), a parameter ≤1.0 that defines how efficiently the property of the material satisfies the requirement imposed by design. New methods are given in this paper for estimating the weights and SIs of the various required properties and evaluating the MPE for a chosen material in an engineering application. The method is illustrated considering the steel in use in a low-pressure steam turbine rotor and its possible replacement with a lighter-titanium alloy.
Starting Page 685
Ending Page 693
Page Count 9
File Format PDF
ISSN 10599495
Journal Journal of Materials Engineering and Performance
Volume Number 16
Issue Number 6
e-ISSN 15441024
Language English
Publisher Springer US
Publisher Date 2007-07-12
Publisher Place Boston
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword material engineering index material selection materials performance efficiency mechanical design performance index property weight satisfaction index steam turbine rotor Engineering Design Quality Control, Reliability, Safety and Risk Tribology, Corrosion and Coatings Materials Science Characterization and Evaluation of Materials
Content Type Text
Resource Type Article
Subject Mechanics of Materials Materials Science Mechanical Engineering
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