Advanced materials and additive manufacturing for phase change thermal energy storage and management: a review

TB Freeman, KEO Foster, CJ Troxler… - Advanced Energy …, 2023 - Wiley Online Library
Phase change materials (PCMs) can enhance the performance of energy systems by time
shifting or reducing peak thermal loads. The effectiveness of a PCM is defined by its energy …

[HTML][HTML] The utilization of selective laser melting technology on heat transfer devices for thermal energy conversion applications: A review

D Jafari, WW Wits - Renewable and sustainable energy reviews, 2018 - Elsevier
This paper reviews advanced heat transfer devices utilizing advanced manufacturing
technologies, including well-established thermal management applications. Several factors …

Inconel 625 lattice structures manufactured by selective laser melting (SLM): Mechanical properties, deformation and failure modes

M Leary, M Mazur, H Williams, E Yang, A Alghamdi… - Materials & Design, 2018 - Elsevier
Additive Manufacture (AM) enables the fabrication of highly complex lattice structures with
exceptional engineering properties. Inconel is a technically useful material in that it provides …

Numerical modeling of heat-transfer and the influence of process parameters on tailoring the grain morphology of IN718 in electron beam additive manufacturing

N Raghavan, R Dehoff, S Pannala, S Simunovic… - Acta Materialia, 2016 - Elsevier
The fabrication of 3-D parts from CAD models by additive manufacturing (AM) is a disruptive
technology that is transforming the metal manufacturing industry. The correlation between …

Selective laser melting (SLM) of AlSi12Mg lattice structures

M Leary, M Mazur, J Elambasseril, M McMillan… - Materials & Design, 2016 - Elsevier
Additive manufacture (AM) enables innovative structural design, including the fabrication of
complex lattice structures with unique engineering characteristics. In particular, selective …

Application of finite element, phase-field, and CALPHAD-based methods to additive manufacturing of Ni-based superalloys

T Keller, G Lindwall, S Ghosh, L Ma, BM Lane, F Zhang… - Acta materialia, 2017 - Elsevier
Numerical simulations are used in this work to investigate aspects of microstructure and
microsegregation during rapid solidification of a Ni-based superalloy in a laser powder bed …

Quantification and characterisation of porosity in selectively laser melted Al–Si10–Mg using X-ray computed tomography

I Maskery, NT Aboulkhair, MR Corfield, C Tuck… - Materials …, 2016 - Elsevier
We used X-ray computed tomography (CT), microscopy and hardness measurements to
study Al–Si10–Mg produced by selective laser melting (SLM). Specimens were subject to a …

Turbomachinery component manufacture by application of electrochemical, electro-physical and photonic processes

F Klocke, A Klink, D Veselovac, DK Aspinwall, SL Soo… - CIRP annals, 2014 - Elsevier
This paper presents an overview of the current technological and economical capabilities of
electrochemical (ECM-based), electro-physical (EDM-based) and photonic (Laser-/EBM …

[HTML][HTML] Intensive processing optimization for achieving strong and ductile Al-Mn-Mg-Sc-Zr alloy produced by selective laser melting

D Bayoumy, D Schliephake, S Dietrich, XH Wu… - Materials & Design, 2021 - Elsevier
Abstract The Sc-containing Alsingle bondMn alloy system produced by additive
manufacturing (AM) has recently presented exciting new opportunities to achieve a step …

A review of metal fabricated with laser‐and powder‐bed based additive manufacturing techniques: process, nomenclature, materials, achievable properties, and its …

L Hitzler, M Merkel, W Hall… - Advanced Engineering …, 2018 - Wiley Online Library
Additive manufacturing has multiple advantages over conventional fabrication techniques,
such as the geometrical freedom and, to a great extent, the omission of tooling equipment …