核工程結構完整性技術(英文版)

核工程結構完整性技術(英文版)

《核工程結構完整性技術(英文版)》是2011年華東理工大學出版社出版的圖書,作者是塗善東。

基本介紹

  • 書名:核工程結構完整性技術(英文版)
  • 作者:塗善東
  • ISBN:9787562831532
  • 頁數:393頁
  • 定價:180元
  • 出版社:華東理工大學出版社
  • 出版時間:2011年10月
  • 裝幀:精裝
  • 開本:16開
內容簡介,圖書目錄,

內容簡介

《核工程結構完整性技術(英文版)》收集最新論文100多篇。主要內容包括:Margin between safety and disaster concerned with nuclear power generation ntities、Basic modelling of creep deformation、Defect-based structural integrity in nuclear plants、Facilities and research activities for nuclear engineering in radiation等。

圖書目錄

Preface
Margin between safety and disaster concerned with nuclear power generation entities
Basic modelling of creep deformation
Defect-based structural integrity in nuclear plants
Facilities and research activities for nuclear engineering in radiation research center of Osaka Prefecture University
Structural integrity issues in nuclear engineering
Flaw-to-surface proximity rules and fatigue crack growth behavior for transformed surface flaws
Ductile crack growth simulation of full-scale cracked pipes
Review and perspective on fracture toughness testing for pressure vessel steels
Finite element analysis on ratcheting strain distribution for pressurized 90-elbows under cyclic bending
Some considerations when conducting nuclear power plant structural integrity assessments in the UK
Fatigue crack initiation and propagation in stainless steel bars under combined cyclic torsion and tension
In-situ observations on local fracture behavior in a dissimilar metal weld joint of nuclear power plant
Nanoindention on proton irradiated A508-3 steel
Effect of high temperature on integrity of pressure vessels of nuclear power plant in case of severe unusual accident
Statistic characteristics of fatigue limit in steels and magnesium alloys
A numerical fracture mechanics tool to help assess the structural integrity of nuclear power plant
components
Finite element analysis and experimental study on drop process of steel containers
An energy approach to estimate yield strength by small punch testing
Damage evaluation for an aged turbine rotor material using creep crack growth tests
An energy-based model for prediction of fracture toughness using Charpy size 'surveillance specimens'in nuclear power plant
The exploration of strain aging embrittlement evaluation in metallic materials using indentation test
Fracture toughness and impact strength of SUS630 stainless steel
Creep behavior and microstructural evolution of P92 steel used in ultra supercritical plants
Finite element modeling of creep behavior of porous nickel alloys at the operating
conditions of molten carbonate fuel cell
Prediction of creep rupture property using MHZ constant for 25Cr35N1 steel
Tensile behavior of a TiAI inter metallic alloy at 7500C based on in-situ observational tests
Prediction methodology of creep performance from stress relaxation measurements
Corrosion fatigue of tail shaft material in seawater
The unified model of fatigue crack growth from micro- to macro-scale and its engineering application
Quantitative inspection of iron contamination on 304 Austenitic stainless steel
……

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