Results 21 to 30 of about 49,671 (256)
Brittle materials are widely used for producing important components in the industry of optics, optoelectronics, and semiconductors. Ultraprecision machining of brittle materials with high surface quality and surface integrity helps improve the ...
Weihai Huang, Jiwang Yan
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The thermal-controlled fracture method has been increasingly focused upon in the high-quality splitting of advanced brittle materials due to its excellent characteristics related to the fact that it does not remove material. For opaque, brittle materials,
Xiaoliang Cheng +3 more
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A Multi-Objective Identification of DEM Microparameters for Brittle Materials
The discrete element method (DEM) [...]
Rui Chen +5 more
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MEMS Reliability: On-Chip Testing for the Characterization of the Out-of-Plane Polysilicon Strength
Polycrystalline silicon is a brittle material, and its strength results are stochastically linked to microscale (or even nanoscale) defects, possibly dependent on the grain size and morphology. In this paper, we focus on the out-of-plane tensile strength
Tiago Vicentini Ferreira do Valle +6 more
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Crack Initiation in Brittle Materials [PDF]
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Antonin Chambolle +2 more
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Fatigue of Brittle Materials [PDF]
The quest for structural materials that can operate at higher and higher temperatures remains a persistent challenge in materials science. To achieve major increases in service temperatures, e.g., for aerospace propulsion systems, ceramic- and intermetallic-matrix composites offer perhaps the best prospects, although their cost is often prohibitive for
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Synthetic diamond is an important carbonous material that has widespread applications ranging from machine tools to the next-generation wafer of powder devices.
Xinjiang Liao +4 more
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Construction of stess-strain curves for brittle materials by indentation in a wide temperature range [PDF]
A test method procedure for constructing stress-strain curves by indentation of brittle and low plastic materials under temperature ranging from 20 to 900°C was developed recently by Yu. Milman, B. Galanov et al.
Milman Yu.V. +2 more
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Nanoscale removal mechanisms in abrasive machining of brittle solids
Brittle solids with dominant covalent-ionic bonding, including single crystals, polycrystals, and optical glass, are core materials for modern microelectronic and optoelectronic devices that are widely used in energy, communication, transportation, and ...
Shuiquan HUANG +3 more
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Surrogate Models for Estimating Failure in Brittle and Quasi-Brittle Materials
In brittle fracture applications, failure paths, regions where the failure occurs and damage statistics, are some of the key quantities of interest (QoI).
Maruti Kumar Mudunuru +7 more
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