2016
DOI: 10.1016/j.optlastec.2016.04.009
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Effects of laser processing parameters on thermal behavior and melting/solidification mechanism during selective laser melting of TiC/Inconel 718 composites

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Cited by 225 publications
(79 citation statements)
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“…With the above advantages, SLM has been widely employed in the manufacture of metallic parts for the aerospace and automobile industries. 12,[14][15][16] If one could use SLM in the parallel production of pand n-type TE legs, as well as in rapid joining of TE legs to electrodes and insulating substrates, the fabrication of TE modules would be carried out in just one integrated step with much improved efficiency and reduced cost. The key element in the SLM-based technique of TE module manufacturing is the fabrication of TE legs with good control over their chemical composition, phase, microstructure and TE performance.…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…With the above advantages, SLM has been widely employed in the manufacture of metallic parts for the aerospace and automobile industries. 12,[14][15][16] If one could use SLM in the parallel production of pand n-type TE legs, as well as in rapid joining of TE legs to electrodes and insulating substrates, the fabrication of TE modules would be carried out in just one integrated step with much improved efficiency and reduced cost. The key element in the SLM-based technique of TE module manufacturing is the fabrication of TE legs with good control over their chemical composition, phase, microstructure and TE performance.…”
Section: Introductionmentioning
confidence: 99%
“…[16][17][18][19] Moreover, physical properties of structural materials are mainly affected by the microstructure and the forming quality. In contrast, thermoelectric materials are semiconductors that usually possess a lower melting point, lower thermal conductivity, poor ductility and weak thermal shock resistance.…”
Section: Introductionmentioning
confidence: 99%
“…The main reason behind the limitation in the range of processable materials is linked to the elevated thermal gradients and cooling rates that are experienced locally during the fusion process and are intrinsic to the technology due to the concentrated energy beam required to melt the powder bed. Cooling velocities greater than 10 6 K s −1 have been measured experimentally by Scipioni et al [2] while Shi et al estimate thermal gradients above 10 4 K mm −1 [3]. As clearly explained by Hagedorn et al these values are critical when processing metallic powders due to the elevated stress concentrations which are generated [4].…”
Section: Introductionmentioning
confidence: 92%
“…The same steps followed for the fabrication of the dummy prototype have been applied for the fabrication of the final prototype. Literature studies [26,27] on the effect of the DMLS settings and on the positioning of the part have been taken into account to maximize the desired mechanical and geometrical properties.…”
Section: Modementioning
confidence: 99%