The cavity magnetron is the most compact, efficient source of high-power microwave (HPM) radiation. The imprint that the magnetron has had on the world is comparable to the …
The fabrication of high purity copper using additive manufacturing has proven difficult because of oxidation of the powder feedstock. Here, we present work on the hydrogen heat …
AB de Alleluia, AF Abdelshafy, P Ragulis… - … on Plasma Science, 2020 - ieeexplore.ieee.org
A high-power-microwave (HPM) source consisting of a backward wave oscillator (BWO) based on a metamaterial slow wave structure (MTM SWS) is investigated and tested. The …
J Dong, H Ding, Q Wang, L Wang - Polymers, 2024 - mdpi.com
The treatment of bone defects has always posed challenges in the field of orthopedics. Scaffolds, as a vital component of bone tissue engineering, offer significant advantages in …
Purpose In radiation therapy, x‐ray dose must be precisely sculpted to the tumor, while simultaneously avoiding surrounding organs at risk. This requires modulation of x‐ray …
G Mu, Y Zhang, W Qu, H Zhuang - Welding in the World, 2022 - Springer
Intergranular penetration (IGP) of liquid filler metal (FM) into oxygen-free copper (OFC) occurred when OFC and Ni-plated materials were brazed with AgCu28 filler. In order to …
T Bera - Advanced Materials & Sustainable Manufacturing, 2024 - sciepublish.com
The rapid development of manufacturing sector has created a platform for implementing novel technologies such as additive manufacturing (AM). AM or 3D printing, has generated a …
A Cook, C Joye, R Jaynes, B Albright… - 2022 23rd …, 2022 - ieeexplore.ieee.org
We discuss progress on additive manufacturing (AM) methods for the fabrication of millimeter-wave (mmW) vacuum electronic (VE) devices. Polymer 3D printing is discussed …
Additive manufacturing of pure copper has gained traction recently with the possibility of utilizing the numerous benefits including geometrical complexity. However, issues with high …