Results 231 to 240 of about 3,769,575 (399)
2197 Experimental Study on the Ultimate Shearing Strength of a Beam-to-Column Connection(Structures)
Koichi Minami
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This review highlights emerging bioengineering strategies for treating neointimal hyperplasia in the peripheral vasculature, focusing on approaches that promote re‐endothelialization, modulate smooth muscle cell phenotype, reduce inflammation, mitigate oxidative stress, and optimize biomechanical compliance.
Nikita Wilson John+5 more
wiley +1 more source
Calibration of Cone Factor in Cone Penetration Test for Evaluating the Undrained Shear Strength of Silty Clay. [PDF]
Wu C, Song Y, Dai J, Li L, Gu X.
europepmc +1 more source
2097) Study on Shear Strength of R.C. Beams : In Case of Specimens without Web Reinforcement
Fu Shing Lee
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Shear strength testing on a GCL
Study of the internal shear strength of geocomposite clay liner has been performed. Laboratory testing program consisted of several one-dimensional swelling and consolidation tests and five series of direct shear tests. Influence of the specimen hydration procedure and horizontal displacement rate on the shear test results has been determined.
Kovačić, Davorin+2 more
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The PVA‐GA hydrogel is formed through hydrogen bonding between PVA hydroxyl groups and GA galloyl units, enabling sustainable GA release and its extended biological activity. The hydrogel scavenges ROS to reduce oxidative stress, preventing mitochondrial damage from excessive ROS, mitigating hADSC senescence, and preserving VEGF secretion, offering a ...
Yiduo Zhou+11 more
wiley +1 more source
Influence of wetting-drying cycles on the shear strength behavior of electroosmotically treated soft clay. [PDF]
Sun Z, Wu C, Qing Y, Li S.
europepmc +1 more source
Improving interfacial shear strength of fique fibres using an acrylic coating. [PDF]
Vargas J, Jalalvand M, Meza JM.
europepmc +1 more source
2162) On the Shearing Strength of the Steel Pipe Filled with Concrete
Suguru Sakamoto
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This study investigates the role of triply periodic minimal structures in load bearing bone tissue engineering applications. Research uses a combination of mechanical testing, material characterization, and in vitro tests to study the impact of TPMS lattice structures (gyroid, lidinoid and split‐P).
Tejas M. Koushik+2 more
wiley +1 more source