比较了热等静压前后MIM418合金组织与致密度的变化,研究了不同淬火(水冷和空冷)、时效工艺对热等静压后固溶态MIM418合金微观组织及各种析出相的影响,利用扫描电镜、透射电镜、能谱分析等手段分析了合金中主要强化相γ'和碳化物二者的形态、大小和分布的规律.结果表明,热等静压可明显提高MIM418合金的致密度,但对显微组织影响不大,“固溶+中温时效”可以获得较好的硬化效果,主要析出强化相y'和二次碳化物的析出受固溶冷却方式的影响较大,γ'相纳米化和二次碳化物的析出或将有益于MIM418硬度的大幅度提高.
参考文献
[1] | Hikaru I;Takanori I;Toshiko O et al.Application of MIM process for nickel base superalloy[J].Journal of the Japan Society of Powder and Powder Metallurgy,2011,58(1):33-37. |
[2] | Gérard R;Jean-Yves G;Didier G et al.Production of net-shape static parts by direct HIPing of nickel base superalloy prealloyed powders[J].Advanced Materials Research,2011,278:277-282. |
[3] | Heather J S;Ashok S .Effect of microstructure on high-temperature mechanical behavior of nickel-base superalloys for turbine disc applications[J].Advanced Materials Research,2011,278:259-264. |
[4] | Hikaru I;Toshiko O;Hyung-Goo K et al.Fatigue failure properties of injection molded superalloy compacts[J].Journal of the Japan Society of Powder and Powder Metallurgy,2011,58(11):679-685. |
[5] | Natalie Salk .Metal injection moulding of Inconel 713C for turbocharger applications[J].Powder Injection Moulding International,2011(3):61-64. |
[6] | Spirko J .Injection molding of Inconel718 aerospace components[J].Metal Powder Report,1998,53(1):40-41. |
[7] | Bernardo N. Nobrega;Tiago Eberle;Waldyr Ristow Jr. .Mechanical Properties of Two MIM Processed Nickel-based Superalloys[J].Materials Science Forum,2008(0):252-257. |
[8] | Schmees R M;Valencia J J.Mechanical properties of powder injection molded Inconel 718[J].Advances in Powder Metallurgy & Particulate Materials,1998(5):107-118. |
[9] | Kl(o)den B;Jehring U;WeiBg(a)rber T et al.High-temperature properties of MIM-processed superalloys[J].PIM International,2010(4):63-67. |
[10] | Manufacturers mull prospects of turbo boost for gasoline[J].Metal Powder Report,2011(2):22-26. |
[11] | 赵军普,陶宇,袁守谦,贾建,韩寿波.粉末冶金高温合金中的原始颗粒边界(PPB)问题[J].粉末冶金工业,2010(04):43-49. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%