Main background

Newly released

This book is new and will be uploaded as soon as it becomes available to us and if we secure the necessary publishing rights.

Book cover of Corrosion of High-Performance Ceramics by Yury Georgievich Gogotsi

Corrosion of High-Performance Ceramics

(0)

Number Of Reads:

45

Language:

English

Pages:

191

Quality:

excellent

Views:

617

Quate

Review

Save

Share

New

Book Description

"Corrosion of High-Performance Ceramics" is a comprehensive survey of the state of the art of this new field of research. It presents the first generalized description of the corrosion of engineering ceramics and its effect on their mechanical properties (based on Si3N4, SiC, AlN, B4C, BN, Al2O3, ZrO2). Researchers, engineers and graduate students are provided with a guide to the performance of non-oxide and oxide ceramicsin corrosive environments. Keywords: high-temperature oxidation; hot corrosion; corrosion in acids, alkalis and molten salts; effects of corrosion on the physico-mechanical properties of ceramics; stress corrosion; corrosion protection; development of oxidation-resistant ceramics; role of purity, donations and microstructure.
Author portrait of Yury Georgievich Gogotsi

Yury Georgievich Gogotsi

Yury Georgievich Gogotsi (born December 16, 1961, Kyiv, Ukrainian SSR) is a Ukrainian scientist in the field of material chemistry, professor at Drexel University, Philadelphia, PA since the year 2000 in the fields of Materials Science and Engineering and Nanotechnology. Distinguished University and Trustee Chair professor of materials science at Drexel University — director of the A.J. Drexel Nanotechnology Institute (since 2014 - A.J. Drexel Nanomaterials Institute). Gogotsi works on synthesis and surface modification of inorganic nanomaterials, such as nanodiamond, carbide-derived carbons, nanotubes, and two-dimensional carbides and nitrides (MXenes). His group also explores energy related and other applications of materials discovered and developed in Gogotsi Lab. His work on carbon and carbide nanomaterials with tunable structure and porosity had a major impact on the field of capacitive energy storage.
Read More

Book Currently Unavailable

This book is currently unavailable for publication. We obtained it under a Creative Commons license, but the author or publisher has not granted permission to publish it.

Rate Now

5 Stars

4 Stars

3 Stars

2 Stars

1 Stars

Comments

User Avatar
img

Be the first to leave a comment and earn 5 points

instead of 3

Quotes

Top Rated

Latest

Quate

img

Be the first to leave a quote and earn 10 points

instead of 3