Sentence examples for compressible rubber from inspiring English sources

Exact(2)

The critical values of stress and deformation are given for a foam rubber, slightly compressible rubber and a nearly incompressible rubber.

The loading and unloading stress strain relationships for any given cycle can be fully described by applying Ogden's modified model for compressible rubber.

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With this non-update, SpaceJam.com reaffirms our commitment to never sell your data to nefarious foreign agents attempting to sway an election, nor will SpaceJam.com ever show you an ad for one of the over two hundred mattress-in-a-box companies that are, let's face it, really digital-marketing companies all hocking the same compressible foam rubber.

A popular model for the finite element simulation of slightly compressible solid rubber-like materials assumes that the strain-energy function can be additively decomposed into a volumetric part and a deviatoric part.

Use of compressible flooring, such as rubber, has increased on dairy farms.

This paper contains data from a series of large-scale laboratory tests containing geosynthetic elements of a multilayered lining system exposed to downdrag forces from a compressible synthetic waste material (rubber crumb).

For an isotropic compressible (J ≠ 1) rubber-like material, the strain energy (W) can be written in terms of the first invariant of the principal deviatoric strain ratios (λ1, λ2, λ3) and the volume ratio (J) as W=frac{1}{2} Gleft({lambda}_1^2+{lambda}_2^2+{lambda}_3^2-3right)+frac{1}{2} K{left( J-1right)}^2 (5).

Calculations have been conducted with two flexible shells or with one replaced by an identical rigid cylinder, with inner or annular flow, or both, mainly with incompressible flows but also with compressible ones; with steel or rubber shells conveying either water or air.

Predictions based on the proposed strain energy density are compared with experimental results including incompressible rubber-like materials under homogeneous strain, compressible materials under high hydrostatic compression, and measured volume changes in rubber and foam under large deformation uniaxial tension.

The strain energy density proposed is used to investigate problems involving incompressible isotropic materials such as rubber under homogeneous strain, compressible isotropic materials under high hydrostatic pressure and volume change under uniaxial tension.

Numerical examples including the optimal design problems of compressible and incompressible materials as well as the rubber mounts containing incompressible solid and fluid are presented.

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