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Loading of the double-staple constructs resulted in material shearing failure in two out of six samples during mechanical testing.
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The medium strength material sheared at 0.05h clearance with two clamps showed large strains in an area about halfway between the lower and upper tool edges (Fig. 10 b).
Pre-loaded and over-compacted materials sheared at reduced normal stress gave peak coefficients as high as 0.80.
In that model, the force can be computed provided the materials shear yield stress, work hardening index, and fracture toughness in the plane of cut are known.
The objective of the proposed testing method is to determine both the material shear stiffness and its non-linear stress strain response up to ultimate stress.
Grain-scale stress generation within the mass occurs on a shorter time scale, H/ gL 1/2, which is inversely proportional to the depth-averaged material shear rate.
The inelastic buckling strength is determined from buckling curves based on the proposed shear buckling parameter, which is a function of the elastic shear buckling strength of steel web and the material shear yielding strength.
The influence of the type of connection between the members and of the material shear deformability on the buckling behavior of the columns is also investigated.
First, a draping knowledge database is generated in which combinations of seed points and reference angles are evaluated in terms of fiber angle deviation, scrap, ultrasonic cuts and material shear.
The progressive damage and failure model available in ABAQUS/Explicit has been utilized in the present numerical models to account for material shear and tensile tearing failure under impact.
The ROE TTP precision is jitter dependent; material shear moduli can be reconstructed within <0.5 kPa.
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