Research Progress on Preparation of Metallic Materials by Selective Laser Melting

2019 ◽  
Vol 56 (10) ◽  
pp. 100003
Author(s):  
张家莲 Zhang Jialian ◽  
李发亮 Li Faliang ◽  
张海军 Zhang Haijun
2019 ◽  
Vol 31 (3) ◽  
pp. 031201 ◽  
Author(s):  
Xing Zhang ◽  
Christopher J. Yocom ◽  
Bo Mao ◽  
Yiliang Liao

2014 ◽  
Vol 891-892 ◽  
pp. 1519-1524 ◽  
Author(s):  
Qian Chu Liu ◽  
Joe Elambasseril ◽  
Shou Jin Sun ◽  
Martin Leary ◽  
Milan Brandt ◽  
...  

Additive Manufacturing (AM) technologies are considered revolutionary because they could fundamentally change the way products are designed. Selective Laser Melting (SLM) is a metal based AM process with significant and growing potential for the manufacture of aerospace components. Traditionally a material needs to be listed in the Metallic Materials Properties Development and Standardization (MMPDS) handbook if it is to be considered certified. However, this requires a considerable amount of test data to be generated on the materials mechanical properties. Therefore, the MMPDS certification process does not lend itself easily to the certification of AM components as the final component can have similar mechanical properties to wrought alloys combined with the defects associated with traditional casting and welding technologies. These defects can substantially decrease the fatigue life of a fabricated component. The primary purpose of this investigation was to study the fatigue behaviour of as-built Ti-6Al-4V (Ti64) samples. Fatigue tests were performed on the Ti-6Al-4V specimens built using SLM with a variety of layer thicknesses and build (vertical or horizontal) directions. Fractography revealed the presence of a range of manufacturing defects located at or near the surface of the specimens. The experimental results indicated that Lack-of-Fusion (LOF) defects were primarily responsible for fatigue crack initiation. The reduction in fatigue life appeared to be affected by the location, size and shape of the LOF defect.


2018 ◽  
Vol 779 ◽  
pp. 165-173
Author(s):  
Michaela Fousova ◽  
Drahomír Dvorský ◽  
Pavel Lejček ◽  
Dalibor Vojtěch

This paper shows part orientation issue in the process of Selective Laser Melting (SLM) at four examples of metallic materials (Fe, stainless steel 316L, TiAl6V4 alloy and AlSi11Mg alloy). Horizontally and vertically oriented samples differ in their mechanical properties, especially in plasticity. The causes of these differences are related to a thermal history, microstructural features and porosity. Depending on a particular material, individual effects are manifested under different extents.


Author(s):  
Jinqiang Ning ◽  
Steven Y. Liang

Selective laser melting (SLM) is one of the widely used techniques in metallic additive manufacturing, in which high-density laser powder is utilized to selectively melting layers of powders to create geometrically complex parts. Temperature distribution and molten pool geometry directly determine the balling effect, and concentrated balling phenomenon significantly deteriorates surface integrity and mechanical properties of the part. Finite element models have been developed to predict temperature distribution and molten pool geometry, but they were computationally expensive. In this paper, the three-dimensional temperature distributions are predicted by analytical models using point moving heat source and semi-ellipsoidal moving source respectively. The molten pool dimensions under various process conditions are obtained from the three-dimensional temperature predictions and experimentally validated. Ti-6Al-4V alloy is chosen for the investigation. Good agreements between the predictions and the measurements are observed. The presented models are also suitable for other metallic materials in the SLM process.


2020 ◽  
Vol 47 (12) ◽  
pp. 1202005
Author(s):  
胡泽华 Hu Zehua ◽  
宋长辉 Song Changhui ◽  
刘林青 Liu Linqing ◽  
杨永强 Yang Yongqiang ◽  
胡平 Hu Ping

2018 ◽  
Vol 55 (1) ◽  
pp. 011403
Author(s):  
李俊峰 Li Junfeng ◽  
魏正英 Wei Zhengying ◽  
卢秉恒 Lu Bingheng

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