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氮化物弥散强化铁基合金的显微组织和力学性能研究 被引量:3

Microstructure and mechanical properties of nitride dispersion strengthened ferrite-based alloy
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摘要 本实验向雾化Fe-12.8Cr-3.4W铁基粉末中引入氮化物粉末进行球磨,然后对球磨粉末进行热挤压和热轧制制备得到合金样品。对雾化粉末和球磨粉末的形貌和成分、各组成形合金的显微组织、各组成形合金的力学性能以及断口形貌进行了研究。实验结果表明,球磨对粉末晶粒起到了细化作用,同时球磨后粉末与空气接触会引入少量的氧,YN(氮化钇)的引入起到了细化球磨粉末的作用;在氮化物弥散强化合金中检测到了尺寸小于100 nm的Ti N和TiO_2的复合弥散颗粒,少量弥散颗粒与合金中的Cr、W、Y和O元素结合长大形成大于100 nm的复杂化合物颗粒。采用氮化钇制备的合金抗拉强度与氧化钇合金基本相同,延伸率增加,同时显微硬度提高;采用氮化钛和氮化钇进行制备的合金显微硬度进一步增加。 Nitride powders were introduced into Fe-12. 8Cr-3. 4W ferrite-based alloy powders during the procedure of ball milling,then ball-milled powders were molded by hot extrusion and hot rolling in sequence to produce samples.Morphology and element content of ball-milled powders,microstructure of alloy samples,mechanical properties of alloy samples and fracture morphology of alloy samples were investigated. The results show that ball milling procedure refine grain size of powder and cause microscale introduction of oxygen in powders with contact of air; introduction of YN resulte in smaller ball-milled powders Dispersed compound particles of TiN and TiO_2 smaller than 100 nm are observed and a little amount of these particles coarsen because of comnbination with Cr,W,Y and O. Alloy with the addition of yttrium nitride has nearly equal tensile properties with ODS steel and has higher elongation rate as well as microhardness. The addition of yttrium nitride and titanium nitride result in further increase of microhardness.
作者 郭旸 刘祖铭 苏鹏飞 麻梦梅 段然曦 王帅 Guo Yang Liu Zuming Su Pengfei Ma Mengmei Duan Ranxi Wang Shuai(State Key Lab of Powder Metallurgy, Central South University, 410083)
出处 《粉末冶金技术》 CAS CSCD 北大核心 2016年第5期361-367,共7页 Powder Metallurgy Technology
基金 国家高技术研究发展计划(863计划)项目(2009AA032526) 国家自然科学基金项目(50634060)
关键词 弥散强化 机械合金化 抗拉强度 显微硬度 dispersion strengthened mechanical alloying tensile properties microhardness
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  • 1姚焕.国际合力攻关超临界水冷堆技术中材料和传热流动两大难题[J].中国核工业,2007(4):24-26. 被引量:9
  • 2Miao P, Odette G R, Yamamoto T, et al. Effects of consolidation temperature, strength and microstructure on fracture toughness of nanostructured ferritic alloys [J]. Journal of Nuclear Materials, 2007, 367-370: 208-212.
  • 3Ortega Y, Monge M A, De Castro V, et al. Void formation in ODS EUROFER produced by hot isostatic pressing [ J]. Journal of Nuclear Materials, 2009, 386-388: 462-465.
  • 4Saito J, Suda T, Yamashita S, et al. Void formation and microstructural development in oxide dispersion strengthened ferritie steels during electron- irradiation [J]. Journal of Nuclear Materials, 1998, 258-263 : 1264-1268.
  • 5ChenY L, Jones A R. Reduction of porosity in oxide dispersion-strengthened alloys produced by powder metallurgy [J]. Metallurgical and Materials Transactions A, 2001, 32 (8) : 2077-2085.
  • 6Chen Y L, Jones A R, Miller U. Origin of porosity in oxide-dispersion-strengthened alloys produced by mechanical alloying [J]. Metallurgical and Materials Transactions A, 2002, 33(8): 2713-2718.
  • 7Turker M. Formation of porosity in ferritic ODS alloys on high temperature exposure [J]. Journal of Materials Science, 2005, 40(5): 1201-1208.
  • 8Schneibei J H, Liu C T, Hoelzer D T, et al. Development of porosity in an oxide dispersion - strengthened ferritic alloy containing nanoscale oxide particles [J]. Seripta Materialia, 2007, 57(11): 1040-1043.
  • 9YamashitaS, Watanabe S, Ohnuki S, et al. Effect of mechanical alloying parameters on irradiation damage in oxide dispersion strengthened ferritic steels [J]. Journal of Nuclear Materials, 2000, 283-287: 847-651.
  • 10Verhiest K, Almazouzi A, De Wispelaere N, et al. Development of oxides dispersion strengthened steels for high temperature nuclear reactor applications [ J ]. Journal of Nuclear Materials, 2009, 385(2): 308-311.

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