Chapter 1 Introduction to Printed Electronics. Chapter 2 Which Printed Conductive Inks and Interconnects Survive High G and Thermal Cycling? Chapter 3 Additively Manufactured Antennas for Aerospace Harsh Environments Chapter 4 Printed Pressure Sensors for Extreme Environments Chapter 5 Metallization of 3D-Printed Devices Chapter 6 Printing Electrically Conductive Patterns on Polymeric and 3D-Printed Systems Chapter 7 Direct Write Printed Electronics and Materials Synthesis Using Non-equilibrium Plasma-Based Techniques Chapter 8 Additively Manufactured Ceramics with Embedded Conductors for High-Temperature Applications Chapter 9 Considerations for Design and Manufacturing of Flex Devices and Printed Conductive Elements Chapter 10 Three-Dimensional Functional RF Devices Enabled through Additive Manufacturing
Resilient and Survivable Hybrid Electronics
Dr. Amanda Schrand currently serves as a Senior Engineer and Group Leader for the development of resilient, hybrid additively manufactured electronics at the Munitions Directorate of the Air Force Research Laboratory (AFRL) at Eglin Air Force Base, Florida. She is the Principal Investigator for several Cross Service efforts on 3D printed conformal antennas, frequency selective surfaces, precision ellc4