Results 1 to 10 of about 13,215 (168)
The present work compares the contributions of mechanical bonding and chemical bonding to high-temperature hermeticity of glass-to-metal (GTM) compression seals and explores their temperature-dependent failure behaviors.
Kangjia Hu +7 more
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The strength and toughness of sealing glass are currently unable to meet increasingly severe application conditions, and composites are an effective way to solve this problem.
Yangyang Cai +3 more
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An extended computational approach for point-defect equilibria in semiconductor materials
Concentrations of intrinsic and extrinsic point defects in crystalline materials with a bandgap are typically calculated in a constant-μ approach from defect formation energies based on density functional theory. In this work, calculations of thermal and
Takafumi Ogawa +2 more
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Solid electrolytes, such as perovskite Li3xLa2/1−xTiO3, LixLa(1−x)/3NbO3 and garnet Li7La3Zr2O12 ceramic oxides, have attracted extensive attention in lithium-ion battery research due to their good chemical stability and the improvability of their ionic ...
Jinhua Hong +5 more
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Chemical doping is a normal strategy to tune thermal expansion coefficient (TEC) of ceramics in engineering applications, but the resultant TEC values usually follow Vegard’s law, as doping does not modify the nature of chemical bonding in ceramics and ...
Zesheng Yang +3 more
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In order to evaluate the influence of preform preparation processes on thermal cycle stability of glass-to-metal seals, this work embraced two different methods to produce the preform for seals.
Keqian Gong +3 more
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Quantitative prediction of grain boundary thermal conductivities from local atomic environments
Connecting grain boundary structures to macroscopic thermal behaviour is an important step in materials analysis and design. Here the authors develop a physical model combined with a machine-learning approach to accurately predict thermal conductivities ...
Susumu Fujii +4 more
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Ultra-dense dislocations stabilized in high entropy oxide ceramics
Dislocation engineering is important for designing structural materials. Here the authors demonstrate that a high-entropy oxide ceramic with a high density of edge dislocations can be stabilized by increasing the compositional complexity, resulting in ...
Yi Han +11 more
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Some polymers are flexible, foldable, and wearable. Structural—functional composite is fabricated by adding inorganic fillers with functional properties.
Yuxiu Hao +5 more
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Microscopic mechanism of biphasic interface relaxation in lithium iron phosphate after delithiation
Improving the performance of Li-ion batteries relies on understanding charging/discharging mechanisms. Here the authors visualize the interfacial structure and composition of a partially delithiated lithium iron phosphate single crystal as a function of ...
Shunsuke Kobayashi +4 more
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