首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Oxygen Content Upon the Microstructural and Mechanical Properties of Type 316L Austenitic Stainless Steel Manufactured by Hot Isostatic Pressing
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Effect of Oxygen Content Upon the Microstructural and Mechanical Properties of Type 316L Austenitic Stainless Steel Manufactured by Hot Isostatic Pressing

机译:氧含量对热等静压制316L奥氏体不锈钢组织和力学性能的影响

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摘要

Although hot isostatic pressing (HIP) has been shown to demonstrate significant advances over more conventional manufacture routes, it is important to appreciate and quantify the detrimental effects of oxygen involvement during the HIP manufacture process on the microstructural and material properties of the resulting component. This paper quantifies the effects of oxygen content on the microstructure and Charpy impact properties of HIP'd austenitic stainless steel, through combination of detailed metallographic examination and mechanical testing on HIP'd Type 316L steel containing different concentrations (100 to 190 ppm) of oxygen. Micron-scale pores were visible in the microstructure of the HIP'd materials postmetallographic preparation, which result from the removal of nonmetallic oxide inclusions during metallographic preparation. The area fraction of the resulting pores is shown to correlate with the oxygen concentration which influences the Charpy impact toughness over the temperature range of 77 K to 573 K (-196 A degrees C to 300 A degrees C), and demonstrates the influence of oxygen involved during the HIP manufacture process on Charpy toughness. The same test procedures and microstructural analyses were performed on commercially available forged 316L. This showed comparatively fewer inclusions and exhibited higher Charpy impact toughness over the tested temperature range.
机译:尽管热等静压(HIP)已显示出比更常规的制造路线有显着进步,但重要的是要认识和量化HIP制造过程中氧气参与对所得部件的微观结构和材料特性的有害影响。本文通过结合详细的金相检验和对含氧浓度不同(100至190 ppm)的316L型HIP'd 316L钢的机械测试相结合,量化了氧含量对HIP'd奥氏体不锈钢的显微组织和夏比冲击性能的影响。在金相制备后,HIP材料的微观结构中可见微米级的孔,这是由于金相制备期间去除了非金属氧化物夹杂物所致。结果表明,在77 K至573 K(-196 A摄氏度至300 A摄氏度)的温度范围内,所得孔的面积分数与氧气浓度有关,该浓度会影响夏比冲击韧性,并证明了氧气的影响在HIP制造过程中涉及夏比韧性。对市售的锻造316L进行了相同的测试程序和微观结构分析。这表明相对较少的夹杂物,并且在测试温度范围内表现出更高的夏比冲击韧性。

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