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ECF15 THE TRANSFERABILTY OF MICRO-MECHANICAL DAMAGE PARAMERTS IN MODERN LINE PIPE STEEL S. H. Hashemi, I. C. Howard, J. R. Yates and R. M. Andrews* The University of Sheffield, Department of Mechanical Engineering, Shef
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Document Date: 2009-10-23 06:25:08


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City

Rothwell / Sheffield / Calgary / Graville / West Consohocken / Sydney / Loughborough / /

Company

Hillenbrand / BP / 83J / Gas Pipelines / Advantica Technologies Ltd / /

Country

Canada / Australia / United Kingdom / /

Currency

pence / /

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Event

Business Partnership / /

Facility

R. M. Andrews* The University of Sheffield / /

IndustryTerm

measured energy / energy drop / absorbed energy / fracture energy / energy balance / steel mechanical properties / linepipe steel / chemical composition / maximum impact energy / high-toughness gas pipeline steel / high initiation energy / impact energy / slant fracture energy / gas pipeline steels / gas line pipes / non-fracture energy / energy transfer model / test and simulation / aerospace aluminium alloy specimens / upper shelf energy / less energy-demanding / test and simulation response / overall absorbed fracture energy / 72J slant fracture energy / grade gas pipe / overall fracture energy / gas linepipes / energy / steel / all been calibrated using the total energy / /

Organization

American Society for Testing and Materials / University of Sheffield / Department of Mechanical Engineering / /

Position

finite element damage model for flat fracture / /

Product

Franklin / /

ProvinceOrState

Alberta / Pennsylvania / A. B. / /

Technology

API / simulation / /

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