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        <dc:title>Advanced thermomechanical flow forming: A novel approach to α’-martensite control for enhanced material properties</dc:title>
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        <bibo:abstract>&lt;jats:p&gt;Abstract. Flow forming is recognized for its precision in producing rotationally symmetric components, but the use of metastable austenitic stainless steel (AISI 304L) introduces challenges due to uncontrolled strain-induced α’ martensite formation. Variations in factors such as eccentricity and batch inconsistencies lead to unpredictable microstructural profiles, limiting reproducibility [1,2]. This study addresses these issues by incorporating thermal actuators for cryogenic cooling and induction heating to regulate forming temperatures, enabling control of the α’-martensite content. Experimental investigations demonstrate that local tempering during thermomechanical reverse flow forming produces discernible variations in microstructure, affecting mechanical and magnetic properties [3]. Controlled local adjustments of α’-martensite content allow for customization of properties in seamless tubes, advancing manufacturing capabilities for complex, defect-free components. The results presented demonstrate promising strategies for implementation within the context of closed-loop property control in flow forming.&lt;/jats:p&gt;</bibo:abstract>
        <bibo:volume>54</bibo:volume>
        <dc:publisher>Materials Research Forum LLC</dc:publisher>
        <bibo:doi rdf:resource="10.21741/9781644903599-127" />
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