Reprint

Microstructure, Characterization and Mechanical Properties of Coal and Coal-Like Materials

Edited by
May 2023
234 pages
  • ISBN978-3-0365-7551-3 (Hardback)
  • ISBN978-3-0365-7550-6 (PDF)

This book is a reprint of the Special Issue Microstructure, Characterization and Mechanical Properties of Coal and Coal-Like Materials that was published in

Chemistry & Materials Science
Engineering
Physical Sciences
Summary

In view of the general trend that the development of the global energy industry is oriented toward green, low-carbon, and efficient utilization, scientific research teams in various fields dominated by the coal industry have conducted much research on coal and coal-like materials by borrowing the technologies and concepts of modern materials science and rock mass mechanics, hoping to explore new directions for the high value-added utilization of structural coal resources and the development of new coal-like materials. On behalf of Materials, we invited you to contribute an original research article to a Special Issue on the microstructure, characterization, and mechanical properties of coal and coal-like materials. This Special Issue aimed to showcase the latest scientific and technological achievements and cutting-edge test technologies in the study of coal and coal-like materials, with exploration of their structural change characteristics and mechanical properties under various influencing factors. Hot topics to be covered include: Analysis of mechanical properties of coal and coal-like materials;Multiscale characterization of coal and coal-like materials;Development and utilization of coal resources with high added value;Void structure and seepage characteristics of coal and coal-like materials;Establishment of constitutive relationships.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
coal and gangue; impact contact; response differences; equivalent stiffness; rigid–flexible coupling; different parts; rock mechanics; compression test; acoustic emission; ambient pressure effect; rupture precursor; rock; Young’s modulus; Poisson’s ratio; parameters field; inversion method; gob-side entry retaining; cyclical loading; back-filling concrete; damage evolution; energy dissipation; rock mechanics; rock discontinuity; energy evolution; energy dissipation ratio; coal and gas outburst; gas-containing coal; complete stress–strain process; permeability; solid-gas coupling; anchored bedding rock material; impact loading; instability mechanism; complex stress environment; shear failure; deep mining; mining roadway; surrounding rock; numerical analysis; multi-level support; coal tar pitch; additives; co-carbonization; co-pyrolysis; interaction; super-thick nappe; roadway-concentrated areas; influencing factors; ground pressure behavior; numerical simulation; computed tomography; F–T action; microstructure; dynamic mechanics; damage evolution; rock mechanics; microcrack evolution; defects angles; failure modes; multi-scale characterization; particle flow code; rock fractures; mechanical aperture; contact area; digital analysis; pressure film; n/a