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"Detailed analysis of nucleation and subsequent δ to γ phase transforma" by Tong Wang, Dominic Phelan et al.

Super austenitic stainless steel (SASS) is widely used in extreme environments due to its excellent corrosion resistance and mechanical properties, and a feature of this grade is its relatively high nitrogen content. As valuable tools to study the solidification process and phase transformation, high temperature confocal microscopy (HTCM) and thermal analysis methods, such as differential thermal analysis (DTA) and differential scanning calorimetry (DSC), have been widely reported in the investigation of SASS. However, the inherent limitations of these two techniques make it difficult to explain the complex solidification behaviors of SASS, which involves multiple phases. Here, a unique design of HTCM-DTA was employed to investigate the nucleation and subsequent phase transformation of SASS. This in-house build apparatus enables contemporaneous in-situ observation of the surface and thermal analysis of the bulk thermal events. Using the novel HTCM-DTA device, we systematically revealed ....

High Nitrogen Alloys , In Situ Observation , Phase Transformation , Shielding Gas , Olidification Behaviors , Thermal Analysis ,

Thermal Analysis in Battery Research

Thermal analysis of battery components is crucial for developing effective battery thermal management strategies that improve the performance of batteries, extend their operational life, and prevent thermal runaway, which is essential to build inherently safer batteries. ....

Samudrapom Damfeb , Semiconductors Industry , Thermal Analysis , Industry Focus , Thermogravimetric Analysis , Power Sources , Materials Science , New European Driving Cycle , Lithium Ion Battery Pack , Parameter Estimation , Battery Research , Thermal Analysis Of Batteries ,