Sentence examples for cracking evolution from inspiring English sources

Exact(1)

The model is applied to a glass epoxy [0/602/0/−602]s laminate in which cracking evolution of the four −60° plies in the middle of the laminate is examined.

Similar(59)

"We live in a zoologically impoverished world from which all the hugest, and fiercest, and strangest forms have recently disappeared," wrote Alfred Russel Wallace, the man who cracked evolution at the same time as Darwin.There were clues to the reasons for their disappearance.

The fatigue life and cracks evolution pattern from the numerical and experimental results were corroborated.

The model can be invoked to efficiently predict ply crack evolution in laminates, and when combined with a suitable delamination model may be used as a design tool to assess the long-term durability of critical load-bearing structures.

The programme "Bill Bailey's Jungle Hero" where Bill Bailey revealed how Wallace cracked evolution by revisiting some places where Wallace discovered exotic species was first broadcast on Sunday 21 April 2013 at 8pm on BBC Two and BBC Two HD.

As a result, the crack evolution mechanism and cracking type in sandstone containing a single oval flaw under uniaxial compression are revealed.

A novel elliptical ring test method has been proposed to replace the traditional circular ring test method for the purpose of shortening test duration for assessing cracking tendency of concrete and more conveniently examining crack evolution in concrete rings.

The comparisons indicate that the model can elaborately simulate the crack width, crack distribution, crack evolution, and crack-load response of both the single cracking section and overall component, which offers a reliable and efficient tool for the whole-process crack width prediction in nonlinear FEA of RC structures.

This paper presents some relevant experimental investigations and their numerical modeling using the variational multiscale cohesive method developed by Rudraraju et al. [21] which is an effective framework for simulating cohesive crack evolution and thereby predicting the residual strength of cracked composite panels.

Several interesting thermal shock crack evolution phenomena were found.

Fatigue-crack evolution further reduces the cross-sectional area of steel rebar, thus increasing steel stress.

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