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Models of grinding-induced surface and subsurface damages in fused silica considering strain rate and micro shape/geometry of abrasive
Huapan Xiao
, Shenxin Yin
, Hairong Wang
, Yuhu Liu
, Heng Wu
,
Rongguang Liang
, Huajun Cao
Optical Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
56
Scopus citations
Overview
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Dive into the research topics of 'Models of grinding-induced surface and subsurface damages in fused silica considering strain rate and micro shape/geometry of abrasive'. Together they form a unique fingerprint.
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Engineering
Subsurface
100%
Grinding (Machining)
100%
Fused Silica
100%
Strain Rate
100%
Induced Surface
100%
Damage Surface
71%
Brittle Material
28%
Crack Depth
14%
Experimental Result
14%
Fracture Mechanics
14%
Indentation
14%
Nanoindentation Test
14%
Tip Diameter
14%
Strain Rate Effect
14%
Feed Speed
14%
Keyphrases
Micro Shape
100%
Abrasive Grit
50%
Indentation Fracture Mechanics
16%
Conical Indenter
16%
Tip Extraction
16%
Grinding Parameters
16%
Scratch Depth
16%
Grinding Depth
16%
Spherical Indenter
16%
Material Science
Strain Rate Effect
20%