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Integral Foam Molding of Light Metals: Technology, Foam Physics and Foam Simulat

US $24.99
ApproximatelyAU $38.52
Condition:
Brand new
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Located in: Murfreesboro, Tennessee, United States
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eBay item number:195502729883

Item specifics

Condition
Brand new: A new, unread, unused book in perfect condition with no missing or damaged pages. See the ...
Book Title
See pictures
ISBN-13
9783642088407
Genre
Physics
Topic
Technology
ISBN
9783642088407

About this product

Product Identifiers

Publisher
Springer Berlin / Heidelberg
ISBN-10
3642088406
ISBN-13
9783642088407
eBay Product ID (ePID)
109108170

Product Key Features

Number of Pages
Xii, 224 Pages
Language
English
Publication Name
Integral Foam Molding of Light Metals : Technology, Foam Physics and Foam Simulation
Publication Year
2010
Subject
Materials Science / General, Materials Science / Metals & Alloys, Mechanical, Metallurgy
Type
Textbook
Author
Carolin Körner
Subject Area
Technology & Engineering
Series
Engineering Materials Ser.
Format
Trade Paperback

Dimensions

Item Weight
16 Oz
Item Length
9.3 in
Item Width
6.1 in

Additional Product Features

Intended Audience
Scholarly & Professional
Dewey Edition
22
Number of Volumes
1 vol.
Illustrated
Yes
Dewey Decimal
660.2844
Table Of Content
Technology.- Integral Foam Molding Of Metals.- Structure and Properties.- Physics.- Physics of Foaming.- Evolution Laws.- Endogenous Stabilization.- Numerical Simulation.- Theoretical Approach.- Lattice Boltzmann Model for Free Surface Flow.- Lattice Boltzmann Model for Foam Evolution.
Synopsis
This book shows in three parts the technology, the fundamentals and the simulation models for the integral foam molding of light metals. It makes accessible the numerical simulation of foam evolution starting from nucleation until decay., A person with a new idea is a crank until the idea succeeds. Mark Twain Metal foams show outstanding properties: Low weight, high rigidity, high energy absorption capacity, high damping capacity, etc. They have attracted strong - dustrial and scienti?c interest during the last decade. A variety of methods has been developed to produce foams and the development of new, more sophisticated methods is still going on. On the one hand, there are only very few applications where metal foams can be directly employed without further processing. On the other hand, established metal foam production methods have one feature in common, they produce foam and not metal parts containing metal foam. In the majority of cases additional shaping and joining steps are necessary to transform the metal foam into a working functional element. In addition, the cellular structure demands for appropriate joining technologies which are often not yet available or expensive. As a result, the whole processing sequence is in general long and expensive. The logical consequence of the requirement to develop cost-e?ective techniques to produce metal parts with integrated cellular structure is the newly developed process of integral foam molding. Integral foam consists of a solid skin and a c- lular core. This is the fundamental construction principle which is ubiquitous in biological systems, e. g. the human skull, as well as in technical solutions, e. g. sa- wich constructions. The concentration of the material within the skin optimizes the moment of inertia and thus sti?ness and strength., A person with a new idea is a crank until the idea succeeds. Mark Twain Metal foams show outstanding properties: Low weight, high rigidity, high energy absorption capacity, high damping capacity, etc. They have attracted strong - dustrial and scienti'c interest during the last decade. A variety of methods has been developed to produce foams and the development of new, more sophisticated methods is still going on. On the one hand, there are only very few applications where metal foams can be directly employed without further processing. On the other hand, established metal foam production methods have one feature in common, they produce foam and not metal parts containing metal foam. In the majority of cases additional shaping and joining steps are necessary to transform the metal foam into a working functional element. In addition, the cellular structure demands for appropriate joining technologies which are often not yet available or expensive. As a result, the whole processing sequence is in general long and expensive. The logical consequence of the requirement to develop cost-e'ective techniques to produce metal parts with integrated cellular structure is the newly developed process of integral foam molding. Integral foam consists of a solid skin and a c- lular core. This is the fundamental construction principle which is ubiquitous in biological systems, e. g. the human skull, as well as in technical solutions, e. g. sa- wich constructions. The concentration of the material within the skin optimizes the moment of inertia and thus sti'ness and strength.
LC Classification Number
TA401-492

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