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Featured researches published by Mujian Xia.


Engineering | 2017

A Multiscale Understanding of the Thermodynamic and Kinetic Mechanisms of Laser Additive Manufacturing

Dongdong Gu; Chenglong Ma; Mujian Xia; Donghua Dai; Qimin Shi

Abstract Selective laser melting (SLM) additive manufacturing (AM) technology has become an important option for the precise manufacturing of complex-shaped metallic parts with high performance. The SLM AM process involves complicated physicochemical phenomena, thermodynamic behavior, and phase transformation as a high-energy laser beam melts loose powder particles. This paper provides multiscale modeling and coordinated control for the SLM of metallic materials including an aluminum (Al)-based alloy (AlSi10Mg), a nickel (Ni)-based super-alloy (Inconel 718), and ceramic particle-reinforced Al-based and Ni-based composites. The migration and distribution mechanisms of aluminium nitride (AlN) particles in SLM-processed Al-based nanocomposites and the in situ formation of a gradient interface between the reinforcement and the matrix in SLM-processed tungsten carbide (WC)/Inconel 718 composites were studied in the microscale. The laser absorption and melting/densification behaviors of AlSi10Mg and Inconel 718 alloy powder were disclosed in the mesoscale. Finally, the stress development during line-by-line localized laser scanning and the parameter-dependent control methods for the deformation of SLM-processed composites were proposed in the macroscale. Multiscale numerical simulation and experimental verification methods are beneficial in monitoring the complicated powder-laser interaction, heat and mass transfer behavior, and microstructural and mechanical properties development during the SLM AM process.


CrystEngComm | 2017

Thermodynamic behaviour and formation mechanism of novel titanium carbide dendritic crystals within a molten pool of selective laser melting TiC/Ti–Ni composites

Chenglong Ma; Dongdong Gu; Donghua Dai; Guanqun Yu; Mujian Xia; Hongyu Chen

Selective laser melting (SLM) was applied to prepare TiC/Ti–Ni composites by using a mixed powder composed of titanium powder, nickel powder and titanium carbide powder. The result indicated that fine TiC particles were transformed into in situ Ti6C3.75 dendrites based on the complete melting mechanism and coarse TiC particles just partly experienced melting to form epitaxial dendrites along the margin of the remaining TiC particles. Besides, laser scan speed was found to have a significant influence on Ti6C3.75 dendrite growth. To give a better insight into the thermodynamic behaviour of TiC within the mesoscopic molten pool which was difficult to be monitored by experimental methods, a numerical simulation method was used. Due to the existence of differences in thermal conductivity between TiC and the matrix, reverse thermal hysteresis within TiC particles was predicted, influencing the temperature and its gradient on the TiC particles. Furthermore, the melting mechanism of TiC particles and growth processes of Ti6C3.75 dendrites were discussed. Moreover, nanoindentation load–penetration depth curves were also measured, reaching a value of 6.84 GPa at the applied v of 350 mm s−1.


Journal of Manufacturing Science and Engineering-transactions of The Asme | 2018

The Role of Reinforcing Particle Size in Tailoring Interfacial Microstructure and Wear Performance of Selective Laser Melting WC/Inconel 718 Composites

Qimin Shi; Dongdong Gu; Kaijie Lin; Wenhua Chen; Mujian Xia; Donghua Dai

Dongdong Gu College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics (NUAA), Yudao Street 29, Nanjing 210016, China; Jiangsu Provincial Engineering Laboratory for Laser Additive Manufacturing of High-Performance Metallic Components, Nanjing University of Aeronautics and Astronautics (NUAA), Yudao Street 29, Nanjing 210016, China e-mail: [email protected]


Optics and Laser Technology | 2016

Effects of laser processing parameters on thermal behavior and melting/solidification mechanism during selective laser melting of TiC/Inconel 718 composites

Qimin Shi; Dongdong Gu; Mujian Xia; Sainan Cao; Ting Rong


Chinese Science Bulletin | 2016

Selective laser melting 3D printing of Ni-based superalloy: understanding thermodynamic mechanisms

Mujian Xia; Dongdong Gu; Guanqun Yu; Donghua Dai; Hongyu Chen; Qimin Shi


International Journal of Machine Tools & Manufacture | 2016

Influence of hatch spacing on heat and mass transfer, thermodynamics and laser processability during additive manufacturing of Inconel 718 alloy

Mujian Xia; Dongdong Gu; Guanqun Yu; Donghua Dai; Hongyu Chen; Qimin Shi


International Journal of Machine Tools & Manufacture | 2017

Porosity evolution and its thermodynamic mechanism of randomly packed powder-bed during selective laser melting of Inconel 718 alloy

Mujian Xia; Dongdong Gu; Guanqun Yu; Donghua Dai; Hongyu Chen; Qimin Shi


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2017

Microstructure and composition homogeneity, tensile property, and underlying thermal physical mechanism of selective laser melting tool steel parts

Hongyu Chen; Dongdong Gu; Donghua Dai; Chenglong Ma; Mujian Xia


Surface & Coatings Technology | 2016

Effects of tailored gradient interface on wear properties of WC/Inconel 718 composites using selective laser melting

Ting Rong; Dongdong Gu; Qimin Shi; Sainan Cao; Mujian Xia


Journal of Physics D | 2016

On the role of processing parameters in thermal behavior, surface morphology and accuracy during laser 3D printing of aluminum alloy

Guanqun Yu; Dongdong Gu; Donghua Dai; Mujian Xia; Chenglong Ma; Qimin Shi

Collaboration


Dive into the Mujian Xia's collaboration.

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Dongdong Gu

Nanjing University of Aeronautics and Astronautics

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Donghua Dai

Nanjing University of Aeronautics and Astronautics

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Chenglong Ma

Nanjing University of Aeronautics and Astronautics

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Hongyu Chen

Nanjing University of Aeronautics and Astronautics

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Qimin Shi

Nanjing University of Aeronautics and Astronautics

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Guanqun Yu

Nanjing University of Aeronautics and Astronautics

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Sainan Cao

Nanjing University of Aeronautics and Astronautics

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Ting Rong

Nanjing University of Aeronautics and Astronautics

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Hongmei Zhang

Nanjing University of Aeronautics and Astronautics

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Jiapeng Xiong

Nanjing University of Aeronautics and Astronautics

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