Skip Nav Destination
Close Modal
Update search
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
Filter
- Title
- Authors
- Author Affiliations
- Full Text
- Abstract
- Keywords
- DOI
- ISBN
- EISBN
- Issue
- ISSN
- EISSN
- Volume
- References
NARROW
Format
Topics
Journal
Article Type
Date
Availability
1-2 of 2
Metallic foams
Close
Follow your search
Access your saved searches in your account
Would you like to receive an alert when new items match your search?
Sort by
Journal Articles
Nanoporous Metal Foam: Efficient and Reusable Submicron Filtration Media
Available to Purchase
AM&P Technical Articles (2021) 179 (6): 28–31.
Published: 01 September 2021
Abstract
View articletitled, Nanoporous Metal Foam: Efficient and Reusable Submicron Filtration Media
View
PDF
for article titled, Nanoporous Metal Foam: Efficient and Reusable Submicron Filtration Media
A new type of material based on nanoporous copper foams using metallic nanowires as building blocks has promising applications in filtration media, smart masks, and air cleaners.
Journal Articles
Fine-Gate Acoustic Imaging of Metal Foam
Available to Purchase
AM&P Technical Articles (2012) 170 (10): 23–25.
Published: 01 October 2012
Abstract
View articletitled, Fine-Gate Acoustic Imaging of Metal Foam
View
PDF
for article titled, Fine-Gate Acoustic Imaging of Metal Foam
A new acoustic imaging technique provides a precise, nondestructive view of structural features in the interface region between an aluminum substrate and an open-cell metal foam. It also provides insight into the dynamics of the bonding process and the formation of voids.