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Titlebook: Magnesium Technology 2011; Wim H. Sillekens (Senior Scientist),Sean R. Agnew Book 2016 The Minerals, Metals, and Materials Society 2016 m

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Experiments and Modeling of Fatigue Damage in Extruded Mg AZ61 Alloyperiments were conducted in the extruded and transverse orientations under low and high cycle conditions. The cyclic behavior of this alloy displayed varying degrees of cyclic hardening depending on the strain amplitude and the specimen orientation. The fracture surfaces of the fatigued specimens we
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Low-Cycle Fatigue Behavior of Die-Cast Mg Alloy AZ91acuum die-cast (SVDC) AZ91. Fatigue lifetimes were determined from total strain-controlled fatigue tests for strain amplitudes of 0.2%, 0.4% and 0.6%, under fully reversed loading at a frequency of 5 Hz. Cyclic stress-strain behavior was determined using incremental step test (IST) methods. Two loca
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Compressive Creep Behaviour of Extruded Mg Alloys at 150 °Ceight is of concern. The operating temperature of these components is typically limited to below 100°C, since appreciable creep relaxation of the wrought alloys takes place above this temperature..The objective of this study was to investigate the high temperature creep performance of two wrought ma
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2367-1181 rosion and surface finishing; ecology; and structural applications. In addition, you‘ll find coverage of new and emerging applications in such areas as biomedicine and hydrogen storage.978-3-319-48223-1Series ISSN 2367-1181 Series E-ISSN 2367-1696
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Magnesium in North America: A Changing Landscapeese factors on the supply/demand dynamics of the North American magnesium market in both the short and long-term will be reviewed. The influence of new applications, products, and legislative changes are considered in the equation.
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