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Titlebook: Laser Additive Manufacturing of High-Performance Materials; Dongdong Gu Book 2015 Springer-Verlag Berlin Heidelberg 2015 Additive manufact

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Dongdong Gumith 2009), or even MTV television (Think MTV 2009), sends the message that the world is deeply concerned with social and ecological issues. Topics range from CO. emissions, water rights, and de-forestation, to child labour, peace, and social equity. The needs of society and the environment present
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Laser Additive Manufacturing (AM): Classification, Processing Philosophy, and Metallurgical Mechaniufacturing (AM) processes. Laser-based AM processes generally have a complex nonequilibrium physical and chemical metallurgical nature, which is material- and process-dependant. The influence of material characteristics and processing conditions on the metallurgical mechanisms and resultant microstr
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,, Ti–Si Intermetallic-Based Composites by Selective Laser Melting (SLM) Additive Manufacturing (AM) TiN/Ti.Si. composite parts were produced by selective laser melting (SLM) additive manufacturing (AM) process, starting from the high-energy ball-milled SiC/Ti and Si.N./Ti powder systems. The influence of the applied laser energy density on the densification behavior, microstructural features, mic
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Nanoscale TiC Particle-Reinforced AlSi10Mg Bulk-Form Nanocomposites by Selective Laser Melting (SLMially the “linear laser energy density” (LED), on densification behavior, microstructural evolution, and mechanical properties of SLM-processed nanocomposites were studied. Using an insufficient LED lowered the SLM densification due to the balling effect and the formation of residual pores. The nano
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Novel Aluminum Based Composites by Selective Laser Melting (SLM) Additive Manufacturing (AM): Tailoe influence of the SLM processing parameters on the constitutional phases, microstructural features, and mechanical performance of the SLM-processed Al-based composites was studied. The reinforcing phases in the SLM-processed Al-based composites included the unmelted micron-sized SiC particles, the
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Particle-Reinforced Cu Matrix Composites by Direct Metal Laser Sintering (DMLS) Additive Manufacturosite parts were performed. By means of the addition of WC reinforcing particles in the form of WC–Co composite powder, the design strategy and formation mechanism of the graded interface during DMLS were investigated to improve the interfacial bonding and material integrity between the WC reinforce
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