2021
DOI: 10.3390/pr9091547
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Feedback Control of Melt Pool Area in Selective Laser Melting Additive Manufacturing Process

Abstract: Selective laser melting (SLM), a metal powder fusion additive manufacturing process, has the potential to manufacture complex components for aerospace and biomedical implants. Large-scale adaptation of these technologies is hampered due to the presence of defects such as porosity and part distortion. Nonuniform melt pool size is a major cause of these defects. The melt pool size changes due to heat from the previous powder bed tracks. In this work, the effect of heat sourced from neighbouring tracks was modell… Show more

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Cited by 12 publications
(5 citation statements)
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“…The dynamic model of the transmission system was established, and the simulation results show that the dynamic model can better describe the dynamic characteristics of the system [46,47]. This result provides a theoretical basis for subsequent production and processing.…”
Section: Discussionmentioning
confidence: 97%
“…The dynamic model of the transmission system was established, and the simulation results show that the dynamic model can better describe the dynamic characteristics of the system [46,47]. This result provides a theoretical basis for subsequent production and processing.…”
Section: Discussionmentioning
confidence: 97%
“…[74,75] The printing orientation can influence the vibration characteristics of a material in AM. [22,23,76] For instance, Lesage et al analyzed the vibrational response of AlSi10Mg samples produced using conventional and AM methods. [21] The AM samples were printed in horizontal (flat), vertical (upright), and rotated orientations, with the build angle ranging from 0°to 90°.…”
Section: Effect Of Process Parameters On Vibrational Characteristics ...mentioning
confidence: 99%
“…This parameter exhibits associations with various factors, including powder density, material vapor pressure, and the enthalpy of material phase changes. P is laser power, W; and V ∆t,h pool represents the volume of the metal molten pool under the action of a high-energy laser, which can be calculated by laser scanning speed, time interval, hatch spacing, and layer thickness, m 3 .…”
Section: Heat Inputmentioning
confidence: 99%
“…In characterizing heat dissipation during the SLM process, it is postulated that the primary modes of heat dissipation for the top layer are thermal convection and thermal radiation, and these play a significant role in dissipating heat from the components during the printing process. Conversely, the heat exchange between the side of the component and the adjacent powder layer is approximated through thermal convection, and the heat dissipation can be expressed as shown in Equation (3). By combining Equation (2) and Equation (3), when the equivalent micro-zone heat source is applied to the component's surface area, the total heat comprises the sum of the heat input and heat dissipation.…”
Section: Heat Dissipationmentioning
confidence: 99%
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