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Titlebook: Characterization of Minerals, Metals, and Materials 2024; Process–Structure–Pr Zhiwei Peng,Mingming Zhang,Shadia Ikhmayies Conference proce

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Characterization of Minerals, Metals, and Materials 2024978-3-031-50304-7Series ISSN 2367-1181 Series E-ISSN 2367-1696
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In Situ Method to Study the Dissolution of Ti(C,N) Inclusion in Molten Mold Flux
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Characterization of Minerals, Metals, and Materials 2024Process–Structure–Pr
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Pragmatic Inversion of Geophysical Datasing Confocal microscopy. An increase in the cementite with an accompanied decrease in the martensitic fraction was determined by the quantitative analysis of the X-ray diffractograms. The saturation magnetisation (M.) of the samples witnessed a gradual decrease with increase in the Si content. Sili
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https://doi.org/10.1007/BFb0011079ting cycle shortened by 1.8 min, power consumption decreased by 37.3 kWh/t, power reduced by 0.4 MW, slag composition improved, metal recovery rate enhanced, and improvements in both energy efficiency and chemical energy efficiency were achieved.
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Informatives and / or Directives?,hnique, showing accurate estimation of frequency-dependent moduli with < 3% maximum error. This non-destructive and cost-effective approach enables improved material selection, design optimization, and enhanced performance in various engineering applications.
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Conference proceedings 2024icro- and nano- scales. ..·       Characterization of extraction and processing including process development and analysis. ..·       Advances in instrument developments for microstructure analysis and performance evaluation of materials, such as computer tomography (CT), X-ray and neutron diffracti
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