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In this paper we present a method to determine the mechanical properties of polymer sphere particles under large deformation by using a flat punch test-soft elastic sphere against a rigid flat.
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Aluminum micropillars in the size range from ∼1 to ∼6 μm, with or without thin coating by tungsten deposition and pre-straining by 7%, were compressed using a flat-punch nanoindenter to study their plasticity behavior.
Single-crystalline HEA pillars in two orientations ([0 0 1] and [3 1 6]) and with diameters ranging from 2 μm to 200 nm were produced by focused ion beam milling and compressed using a flat-punch tip in a nanoindenter.
In the present work, an attempt has been made to study this earing problem in deep drawing of cylindrical cups using a flat bottom punch from extra-deep drawing steel sheets using a finite element method based software LSDYNA.
In this technique an elliptic-cup is produced by pushing a circular blank using a flat-headed elliptic punch through a conical die with an elliptic aperture in a single stroke.
Using a flat bobby pin helps.
Brush your hair using a flat brush.
Consider using a flat-iron.
The same setup with the aid of a flat punch tip was used to perform micropillar compression tests.
We use a focused ion beam machined micro-double shear specimen which we load with a flat punch indenter inside a scanning electron microscope.
By using this theory, we initially study the problem of the indentation of a deformable elastic half-plane by a flat punch, then by a cylindrical indentor, and finally by a shallow wedge indentor.
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