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High-temperature internal oxidation behavior of surface cracks in low alloy steel bloom - ScienceDirect
Microstructure and mechanical behavior of carbon fiber reinforced carbon, silicon carbide, and copper alloy hybrid composite fabricated by Cu-Si alloy melt infiltration
Formation mechanism of surface cracks and subsurface cracks in SAE1548: Medium carbon sulfur-containing V-N micro-alloyed bloom - ScienceDirect
High-temperature internal oxidation behavior of surface cracks in low alloy steel bloom - ScienceDirect
High-temperature internal oxidation behavior of surface cracks in low alloy steel bloom - ScienceDirect
High-temperature internal oxidation behavior of surface cracks in low alloy steel bloom - ScienceDirect
Formation mechanism of surface cracks and subsurface cracks in SAE1548: Medium carbon sulfur-containing V-N micro-alloyed bloom - ScienceDirect
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High-temperature internal oxidation behavior of surface cracks in low alloy steel bloom - ScienceDirect
Analysis of Cold Forming Surface Crack of High-Strength Low-Alloyed Steel Produced by TSCR Process
JMMP, Free Full-Text