Manufacturing method for coarse-grain austenitic heat-resistance steel material
An austenitic heat-resistant steel and a manufacturing method technology, applied in the field of heat-resistant steel, can solve the problems of high energy consumption, cumbersome heat treatment process, and long production cycle, and achieve high energy consumption, shortened production cycle, and long production cycle. Effect
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Embodiment 1
[0024] The material in this example is austenitic heat-resistant steel S31042, which adopts the processing route of vacuum smelting and casting → billet opening → boring → heating → extrusion → heat preservation or heating → water cooling, and the extrusion deformation is 75%. The extruding temperature is 1180°C, rapidly raised to 1230°C and kept for 5 minutes, then quenched and cooled immediately to obtain a complete austenite structure with a grain size of 0-1.
Embodiment 2
[0026] The material in this example is austenitic heat-resistant steel S31025, which adopts the processing route of vacuum melting and casting → billet opening → boring → heating → extrusion → heat preservation or heating → water cooling, the cumulative extrusion deformation is 60%, and the final The extruding temperature is 1200°C, moved to a heat treatment furnace and raised to 1220°C for 10 minutes, then quenched and cooled immediately to obtain a complete austenite structure with a first-grade grain size.
Embodiment 3
[0028] The material in this example is Sanicro25 (22Cr25NiWCoCu), which adopts the processing method of vacuum casting → billet opening → heating → forging → heat preservation or heating → water cooling, the cumulative deformation is 30%, the final forging temperature is 1100 °C, and the temperature is quickly moved to 1200 °C In the heat treatment furnace, keep warm for 15 minutes and quench water to obtain an austenite structure with a 4-grade grain size.
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