Design, Manufacturing and Properties of Refractory Materials
Materialtyp:
ArtikelUtgivningsinformation: MDPI - Multidisciplinary Digital Publishing Institute 2024Beskrivning: 1 electronic resource (312 p.)Innehållstyp: - text
- computer
- online resource
- 9783725810895
- 9783725810901
- Technology, Engineering, Agriculture, Industrial processes
- Technology: general issues
- Engineering: general
- (Al1?xCrx)2O3
- ANN
- Al2O3-CaO-Cr2O3-O2 system
- Al2O3-SiC-C castables
- Bayesian statistics
- CA6
- Ca(Al12?xCrx)O19
- Cr(VI) compounds
- Cr2O3
- Cu
- EDS
- MgO
- MgO-C
- SEM
- Ti-bearing compounds
- X-ray computed tomography
- XRD
- aggregate synthesis
- alginate gelation
- alumina-spinel
- antioxidation
- artificial neural networks
- bauxite aggregate
- biomass
- blast furnace
- carbon refractories
- castable
- castables
- ceramic
- computed tomography
- computer analysis
- copper
- corrosion
- corrosion resistance
- digital image
- discrete element method (DEM)
- dynamic loading
- fly ash
- forsterite
- fracture
- hollow corundum microspheres
- hot modulus of rupture
- inorganic chemical binders
- ladle
- leaching test
- machine learning
- mesoscale computer simulation
- metal-ceramic composites
- metallurgical slag
- micronized andalusite
- modelling
- molten metal infiltration
- neural networks
- niobium
- oxygen converter
- phosphates
- raw materials
- refractories
- refractory
- refractory castable
- refractory ceramics
- refractory composite
- refractory material
- refractory metals
- slag
- sol-gel
- spinel
- steel
- stereology
- the
Open Access Unrestricted online access star
This reprint aims to immerse the reader into the latest developments in the technology of refractory materials. From the application of Artificial Intelligence and computer-aided methods, like machine learning or image analysis and the simulation of refractories' properties and corrosion phenomena, to tailoring the properties of refractories to be more environmentally friendly, we aim to elucidate the current global trends and progress being made in refractories technology. This reprint has been created by world-recognized researchers, representing both academia and industry, striving jointly to make refractories safer and working for longer periods of time. Through this reprint, we demonstrate our major collaborative efforts to shift the technology to be more effective for the producers of refractory materials, more efficient for end-users, and, primarily, more sustainable in the interest of protecting our most precious shared asset—the safe planet Earth.
Creative Commons Licence cc by-nc-nd cc https://creativecommons.org/licenses/by-nc-nd/4.0/
eng
Freely available e-book