FLOW STRESS BEHAVIOR AND MICROSTRUCTURE EVOLUTION OF AUSTENITIC STAINLESS STEEL WITH LOW COPPER CONTENT DURING HOT COMPRESSION DEFORMATION

Flow Stress Behavior and Microstructure Evolution of Austenitic Stainless Steel with Low Copper Content during Hot Compression Deformation

In order to study the microstructure evolution and Little Girls Woven Pants flow stress behavior of as cast antibacterial austenitic stainless steel containing 1.52 wt.% copper, Gleeble 3800 was used for thermal compression simulation test.Through OM and EBSD analysis, it is found that the dynamic recrystallization mechanism of thermal deformation

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Experimental increase in baseline corticosterone level reduces oxidative damage and enhances innate immune response.

Glucocorticoid (GC) hormones are significant regulators of homeostasis.The physiological effects of GCs critically depend on the time of exposure (short vs.long) as well as on their circulating levels (baseline vs.stress-induced).Previous experiments, in which chronic and high elevation of GC levels was induced, indicate that GCs impair both the ac

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