Sentence examples for modes of stress from inspiring English sources

Exact(5)

In particular, the silk fibroin / collagen hydrogels are highly elastic, exhibiting excellent resistance to permanent deformation under different modes of stress; without being collapsed or water-squeezed out (vs. not possible in individual proteins) – which results from the mechanical synergism of interpenetrating networks of both proteins.

However, as the performances of SSALT and RCSMT are sometimes superior to that of CSALT [80, 82, 83, 108], at least in theory, it is possible that the modes of stress loading can still be optimized, but no theoretical research on this topic has been produced.

Such factors would introduce different modes of stress application (e.g., compressive, tensile, or shear) to the cancer cells, which may or may not cause cancer cell death.

Focusing on transcriptional regulation observed within the ovary, LH receptor and P450 enzyme up-regulation and down-regulation of inhibin transcription in vivo are possible modes of stress compensation.

Squeezing out of water through channels in compressed biofilms may also constitute the reason as to why biofilm elasticity and viscosity vary when derived in different modes of stress application.

Similar(55)

These velocity variations are defined by difference in effective parameters of forming microfractures, whose geometry is distinguished at different modes of stress-state.

The Australian-born engineer Anthony George Maldon Michell developed a mode of stress analysis for bones in 1908.

The physical and mechanical properties of fibres/polymer composites depend primarily on the properties of the combined materials, the surface of the fibres, the interface between the two components as well as the mode of stress transfer at the interface.

Fibers with dense hierarchical microtwin structures having spatial dimensions of ∼10 nm showed an additional mode of stress accommodation as evidenced by a larger strain accumulation and greater anelastic response relative to fibers with conventional twin structures consisting primarily of 90° and 180° tetragonal ferroelectric ferroelastic domains.

The maximum strain energy theory of failure of an elastic material under this mode of stress is used to set up a relationship between the stable length of hyphae and some of the physical parameters affecting it, including the mean energy dissipation rate in the bioreactor.

The mode of stress applied is flexure, and the fixture configuration is a single cantilever beam.

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