Analysis of crack initiation load and stress field in double scratching of single crystal gallium nitride
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Title
Analysis of crack initiation load and stress field in double scratching of single crystal gallium nitride
Authors
Keywords
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Journal
ENGINEERING FRACTURE MECHANICS
Volume 274, Issue -, Pages 108732
Publisher
Elsevier BV
Online
2022-09-11
DOI
10.1016/j.engfracmech.2022.108732
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Related references
Note: Only part of the references are listed.- Research on material removal mechanism and radial cracks during scribing single crystal gallium nitride
- (2021) Qianqing Jiang et al. CERAMICS INTERNATIONAL
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- (2020) Junyuan Feng et al. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY
- An analytical model for estimation of the stress field and cracks caused by scratching anisotropic single crystal gallium nitride
- (2020) Qianqing Jiang et al. MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING
- Nucleation location and propagation direction of radial and median cracks for brittle material in scratching
- (2019) Xinying Li et al. CERAMICS INTERNATIONAL
- Nanotribological Properties of Ga- and N-Faced Bulk Gallium Nitride Surfaces Determined by Nanoscratch Experiments
- (2019) Jian Guo et al. Materials
- Study on nucleation and propagation of median cracks generated by scratching single crystal silicon
- (2019) Longxu Yao et al. MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING
- Interaction of lateral cracks in double scratching of single-crystal silicon carbide
- (2019) Peizhi Wang et al. THEORETICAL AND APPLIED FRACTURE MECHANICS
- Simulation and experiment of double grits interacting scratch for optical glass BK7
- (2018) Feihu Zhang et al. JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY-MATERIALS SCIENCE EDITION
- Material removal mechanism and crack propagation in single scratch and double scratch tests of single-crystal silicon carbide by abrasives on wire saw
- (2018) Peizhi Wang et al. CERAMICS INTERNATIONAL
- Analysis of grit interference mechanisms for the double scratching of monocrystalline silicon carbide by coupling the FEM and SPH
- (2017) Nian Duan et al. INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE
- Influence of double-tip scratch and single-tip scratch on nano-scratching process via molecular dynamics simulation
- (2013) Peng Zhang et al. APPLIED SURFACE SCIENCE
- Evaluation of subsurface damage in GaN substrate induced by mechanical polishing with diamond abrasives
- (2013) Hideo Aida et al. APPLIED SURFACE SCIENCE
- Grain size dependence of scratch-induced damage in alumina ceramics
- (2008) Michael Klecka et al. WEAR
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