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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >FKM GUIDELINE 'FRACTURE MECHANICS PROOF OF STRENGTH FOR ENGINEERING COMPONENTS' - OVERVIEW AND EXTENSION TOPICS
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FKM GUIDELINE 'FRACTURE MECHANICS PROOF OF STRENGTH FOR ENGINEERING COMPONENTS' - OVERVIEW AND EXTENSION TOPICS

机译:FKM准则“工程组件的断裂力学强度证明”-概述和扩展主题

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The German guideline "Fracture Mechanics Proof of Strength for Engineering Components" has been released in 2001 as a result of activities sponsored by the Research Committee on Mechanical Engineering (FKM), task group "Component Strength". The guideline describes basics for the integrity assessment of cracked components subjected to static or cyclic loading and provides a step-by-step computational procedure for the use in engineering practice. The guideline was formulated based on a number of national and international reference documents, in particular SINTAP, R6, BS 7910 and DVS-2401, recent research results and some own key aspects. Since 2004 it is also available in English. The procedures and solutions of the guideline are implemented in the computer program FracSafe. The latest 3rd edition of the guideline (2005) includes several new topics. These allow for the consideration of special effects at cyclic loading, mixed mode loading, dynamic (impact) loading, stress corrosion cracking, probabilistic aspects in fracture mechanics calculations. In addition, the compendium of the stress intensity factor and limit load solutions is extended and adjusted according to the state-of-the-art. Some new examples and case studies are included to demonstrate the application of the procedure to engineering problems. This paper gives an overview of the guideline and describes new features available since its 1st edition.
机译:由于机械工程研究委员会(FKM)的“构件强度”任务组的赞助,德国的“工程构件的断裂力学强度证明”指南于2001年发布。该指南介绍了对承受静态或循环载荷的裂纹组件进行完整性评估的基础知识,并提供了逐步的计算程序,可供工程实践使用。该指南是根据许多国家和国际参考文件制定的,特别是SINTAP,R6,BS 7910和DVS-2401,最新研究结果和一些关键方面。自2004年以来,它也以英语提供。该准则的步骤和解决方案在计算机程序FracSafe中实现。该指南的最新第三版(2005年)包括几个新主题。这些考虑了在循环载荷,混合载荷,动态(冲击)载荷,应力腐蚀开裂,断裂力学计算中的概率方面的特殊影响。此外,应力强度因子和极限载荷解决方案的纲要根据最新技术进行了扩展和调整。包括一些新的示例和案例研究,以说明该程序在工程问题中的应用。本文概述了该指南,并介绍了自第1版以来的可用新功能。

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