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The development of the skin in HPDC Mg–Al alloys
Materials Science and Engineering: A, 2013Cross sectional microhardness mappings were produced for cast-to-shape tensile specimens of seven high pressure die cast binary Mg-Al alloys, with Al content ranging from 0.47 to 11.6 mass%. A softer, well differentiated core region, became apparent as a result of the presence of large externally solidified grains (ESGs) only for concentrations above ...
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Divorced eutectic in a HPDC magnesium–aluminum alloy
Journal of Alloys and Compounds, 2004The morphology of the eutectic in a thin-wall high pressure die cast (HPDC) U-shape AM60 magnesium box was investigated by light microscope, SEM, TEM and EPMA. The extremely fast cooling rate taking place in the solidification process produces a highly segregated zone near the boundaries of small grains and a fine distribution of β particles, which is ...
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Energy Absorption Capacity for HPDC Components
SAE Technical Paper Series, 2004<div class="htmlview paragraph">The long-term objective of this work is to develop design and modeling tools that allow the structural behavior of thin-walled cast components to be predicted when subjected to static and dynamic loads such as in crash situations.
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Abstract The hydrothermal synthesis and structure of a coordination polymer Zn(Hpdc)2(H2O)2]·2H2O were reported. The Zn2+ center was coordinated by two waters and two chelated Hpdc− to form units [Zn(Hpdc)2 (H2O)2] and the units were connected by hydrogen bonds to engender one-dimensional channels through the c axis.
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