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Titlebook: Mechanical Fatigue of Metals; Experimental and Sim José A.F.O. Correia,Abílio M.P. De Jesus,Rui Cal?a Conference proceedings 2019 Springer

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發(fā)表于 2025-3-21 19:05:39 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Mechanical Fatigue of Metals
副標題Experimental and Sim
編輯José A.F.O. Correia,Abílio M.P. De Jesus,Rui Cal?a
視頻videohttp://file.papertrans.cn/629/628305/628305.mp4
叢書名稱Structural Integrity
圖書封面Titlebook: Mechanical Fatigue of Metals; Experimental and Sim José A.F.O. Correia,Abílio M.P. De Jesus,Rui Cal?a Conference proceedings 2019 Springer
描述.This volume contains the proceedings of the XIX International Colloquium on Mechanical Fatigue of Metals, held at the Faculty of Engineering of the University of Porto, Portugal, 5-7 September 2018. This International Colloquium facilitated and encouraged the exchange of knowledge and experiences among the different communities involved in both basic and applied research in the field of the fatigue of metals, looking at the problem of fatigue exploring analytical and numerical simulative approaches. .Fatigue damage represents one of the most important types of damage to which structural materials are subjected in normal industrial services that can finally result in a sudden and unexpected abrupt fracture. Since metal alloys are still today the most used materials in designing the majority of components and structures able to carry the highest service loads, the study of the different aspects of metals fatigue attracts permanent attention of scientists, engineers and designers..
出版日期Conference proceedings 2019
關鍵詞Fatigue behaviour modelling and simulation; Damage evaluation and fatigue design; Fatigue crack growth
版次1
doihttps://doi.org/10.1007/978-3-030-13980-3
isbn_ebook978-3-030-13980-3Series ISSN 2522-560X Series E-ISSN 2522-5618
issn_series 2522-560X
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

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Springer Nature Switzerland AG 2019
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Microscopic Strain Localization of Ti-6Al-4V Alloy Under Uniaxial Tensile Loadingling by using a representative volume element has been adopted to investigate the tensile flow behavior of Ti-6Al-4V alloy. Voronoi tessellation model and actual microstructure model were developed to predict the macroscopic stress versus strain behavior. Kinematic hardening rule was used to simulat
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Characterization of the Fatigue and Damage Behavior of Extruded AW6060 Aluminum Chip Profilesive remelting process. The mechanical properties of cast-based and chip-based specimens of AW6060 aluminum alloy were characterized by means of mechanical quasi-static and cyclic experiments. The response of the material was followed by means of hysteresis, thermometric and resistometric measurement
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Micromagnetic-Based Fatigue Life Prediction of Single-Lip Deep Drilled AISI?4140ect and classify material parameters like hardness and residual stresses. High-strength steels, like AISI?4140 (42CrMo4?+?QT), are commonly used for highly dynamically loaded parts. Increasing requirements on weight, performance and efficiency of automotive industry claim increasing demands on mater
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Relationship Between Microstructural Features and Fatigue Behavior of Al-Based Alloy in Green Chemicness layer from the surface with no buckling and maintaining excellent dimensional tolerances. Comparison of the fatigue life of un-treated and chemically treated samples is performed, with the aim to determine how the above mentioned chemical treatment influences the fatigue resistance of the Al al
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Influence of Heat Treatment Process to the Fatigue Properties of High Strength Steel to select suitable materials for the power engineering. Analyzed materials had a practically identical chemical composition. The heat treatment process declared by the inspection certificate was very similar too. By the measurements of mechanical properties there were differences in static strength
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