Chinese Journal of Lasers, Volume. 47, Issue 8, 802008(2020)

Elevated-Temperature Tensile Properties and Fracture Behavior of GH3536 Alloy Formed via Selective Laser Melting

Zheng Yinlan, He Yanli, Chen Xiaohui, and Lei Liming*
Author Affiliations
  • Research Center for Processing, AECC Shanghai Commercial Aircraft Engine Manufacturing Co., Ltd., Shanghai 201306, China
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    References(18)

    [1] Editorial Committee of China Aviation Materials Manual,[M]. China aviation materials manual, 224-225(2002).

    [2] Zhao Z G, Bai L, Li L et al[J]. Status and progress of selective laser melting forming technology Aeronautical Manufacturing Technology, 2014, 46-49.

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    [10] Tomus D, Jarvis T, Wu X et al. Controlling the microstructure of Hastelloy-X components manufactured by selective laser melting[J]. Physics Procedia, 41, 823-827(2013).

    [11] Tomus D, Tian Y, Rometsch P A et al. Influence of post heat treatments on anisotropy of mechanical behaviour and microstructure of Hastelloy-X parts produced by selective laser melting[J]. Materials Science and Engineering: A, 667, 42-53(2016).

    [12] ASTM International. Standard test methods for tension tests of metallic materials: ASTM E8-13a[S]. West Conshohocken, United States: ASTM International(2009).

    [13] ASTM International. Standard test methods for elevated temperature tension tests of metallic materials: ASTM E21-09[S]. West Conshohocken, United States: ASTM International(2009).

    [14] Tomus D, Rometsch P A, Heilmaier M et al. Effect of minor alloying elements on crack-formation characteristics of Hastelloy-X manufactured by selective laser melting[J]. Additive Manufacturing, 16, 65-72(2017).

    [15] Zhao J C, Larsen M, Ravikumar V. Phase precipitation and time-temperature-transformation diagram of Hastelloy X[J]. Materials Science and Engineering: A, 293, 112-119(2000).

    [16] Liao W J, Fan E X, Fu C. Microstructure and tensile properties of Hastelloy-X alloy prepared by selective laser melting[J]. Materials for Mechanical Engineering, 42, 16-22, 27(2018).

    [17] Wang F D. Mechanical property study on rapid additive layer manufacture Hastelloy ® X alloy by selective laser melting technology[J]. The International Journal of Advanced Manufacturing Technology, 58, 545-551(2012).

    [18] Superalloys Branch of China Metal Society,[M]. China superalloys handbook, 162-163(2012).

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    Zheng Yinlan, He Yanli, Chen Xiaohui, Lei Liming. Elevated-Temperature Tensile Properties and Fracture Behavior of GH3536 Alloy Formed via Selective Laser Melting[J]. Chinese Journal of Lasers, 2020, 47(8): 802008

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    Paper Information

    Category: laser manufacturing

    Received: Mar. 4, 2020

    Accepted: --

    Published Online: Aug. 17, 2020

    The Author Email: Liming Lei (biamfirst@126.com)

    DOI:10.3788/CJL202047.0802008

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