Formation mechanism of surface cracks and subsurface cracks in SAE1548: Medium carbon sulfur-containing V-N micro-alloyed bloom - ScienceDirect

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PDF) Role of Microstructural Constituents on Surface Crack Formation During Hot Rolling of Standard and Low Nickel Austenitic Stainless Steels

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a) An overall view of fracture surfaces for as-built SLM 17-4 PH SS at

Formation mechanism of surface cracks and subsurface cracks in SAE1548: Medium carbon sulfur-containing V-N micro-alloyed bloom - ScienceDirect

Hot ductility behavior of medium carbon sulfur-containing alloy steel - ScienceDirect

PDF) Effects of Sulfur on the Surface Crack in Medium Carbon Bloom

Surface cracking mechanisms of low carbon low alloy steel slabs: High Temperature Technology: Vol 4, No 1

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PDF) Role of Microstructural Constituents on Surface Crack Formation During Hot Rolling of Standard and Low Nickel Austenitic Stainless Steels

Formation of subsurface cracks in silicon wafers by grinding - ScienceDirect

Formation mechanism of surface cracks and subsurface cracks in SAE1548: Medium carbon sulfur-containing V-N micro-alloyed bloom - ScienceDirect

A study of the development of micro-cracks in surface/near surface of aluminum–manganese alloys during hot rolling - ScienceDirect

Investigation of Cracking Behavior of Fe–6.7 Wt Pct Si Manufactured Using Laser Powder Bed Fusion

Investigation of Cracking Behavior of Fe–6.7 Wt Pct Si Manufactured Using Laser Powder Bed Fusion

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