Results 181 to 190 of about 3,769,575 (399)
OLIVINE SHEAR STRENGTH AT HIGH PRESSURE AND ROOM TEMPERATURE
R. E. SEIFERT, K. E. RIECKER
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Discussion: Shear Strength of Montmorillonite [PDF]
Gholamreza Mesri, Roy E. Olson
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The PDEM‐based SIGPE provides a dynamic nanophase from Li+‐bridged molecular self‐association, enhancing electrochemical stability and facilitating uniform Li+ ion flux at the interface. This unique solvation structure results in a hetero species‐driven inorganic‐rich SEI and long‐term cycle stability, suggesting that a PFAS‐free Li+‐containing monomer
Susung Yun+5 more
wiley +1 more source
Discussion of “The Shear Strength of Reinforced Concrete Members” [PDF]
David Haldane
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Correlation times of velocity and kinetic helicity fluctuations in nonhelical hydrodynamic turbulence [PDF]
Nonhelical turbulence within a linear shear flow has demonstrated efficient amplification of large-scale magnetic fields in numerical simulations, but its precise mechanism remains elusive. The incoherent $\alpha$ mechanism proposes that a zero-mean fluctuating transport coefficient $\alpha$ (linked to kinetic helicity) in the shear flow is a candidate
arxiv
A Study of Shunting Current and its Effect on Tensile Shear Strength in Series Spot Welding
Kohei Ando, Jun Nishikawa, Takio Okuda
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Biofabrication aims at providing innovative technologies and tools for the fabrication of tissue‐like constructs for tissue engineering and regenerative medicine applications. By integrating multiple biofabrication technologies, such as 3D (bio) printing with fiber fabrication methods, it would be more realistic to reconstruct native tissue's ...
Waseem Kitana+2 more
wiley +1 more source
Influence of interfacial shear strength on the mechanical properties of SiC fiber reinforced reaction-bonded silicon nitride matrix composites [PDF]
The influence of fiber/matrix interface microstructure and interfacial shear strength on the mechanical properties of a fiber-reinforced ceramic composite was evaluated.
Bhatt, Ramakrishna T.
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Studies of the Shear and Diagonal Tension Strength of Simply Supported Reinforced Concrete Beams
William J. Krefeld, Charles W. Thurston
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