Thermal spreading and contact resistance fundamentals and applications / Yuri Muzychka, M. Michael Yovanovich.

Author/creator Muzychka, Yuri
Other author Yovanovich, M. Michael (Milan Michael)
Other author John Wiley & Sons.
Format Electronic
Publication InfoHoboken : Wiley, 2023.
Description1 online resource
Supplemental ContentFull text available from eBooks on EBSCOhost
Supplemental ContentFull text available from ASME eBooks
Subjects

Contents Fundamental Principles of Thermal Spreading Resistance -- Thermal Spreading in Isotropic Half-space Regions -- Circular Flux Tubes and Disks -- Rectangular Flux Channels -- Orthotropic Media -- Multi-source Analysis for Microelectronic Devices -- Transient Thermal Spreading Resistance -- Applications with Non-Uniform Conductance in the Sink Plane -- Further Applications of Spreading Resistance -- Introduction to Thermal Contact Resistance -- Conforming Rough Surface Models -- Contact of Non-conforming Smooth Solids.
Abstract "Thermal engineering applications involve the process of heat transfer, when energy either enters or leaves a system through a smaller area of contact that can be either perfect or imperfect. If it is perfect, thermal spreading (or constriction) occurs. If it is imperfect, the thermal transport occurs over a much smaller region of real contact within the apparent area of contact. This is contact resistance. It's a phenomenon that is important for engineers to understand for many industry applications in the fields of mechanical, aerospace, chemical, and nuclear engineering, with particularly critical applications in areas like electronics cooling, aerospace systems, and tribology"-- Provided by publisher.
General noteIncludes index.
Access restrictionAvailable only to authorized users.
Technical detailsMode of access: World Wide Web
Source of descriptionDescription based on print version record and CIP data provided by publisher; resource not viewed.
Issued in other formPrint version: Muzychka, Yuri. Thermal spreading and contact resistance Hoboken : Wiley, 2023 9781394187522
Genre/formElectronic books.
LCCN 2023014962
ISBN9781394187546 (epub)
ISBN9781394187553 (adobe pdf)
ISBN(hardback)

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