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Commercial NiTi wires (0.15 mm diameter) are tested under constant-stress, constant-strain and constant stress with limited maximum strain conditions using a custom machine and the disclosed results are critically discussed.
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The one-parameter analysis showed that maximum stress existed in zone 1 due to the effects of boundary conditions while maximum strain was found in zone 2 because of the high temperature.
For the strain-controlled mode, it was observed that the most severe damage and shortest fatigue life occurred under the fully reversible condition when compared on the maximum strain basis.
Previous theoretical work has shown that frictionless dies can be designed to produce maximum efficiency in the reduction of isotropic rigid perfectly plastic strip under plane strain conditions.
Four characteristic test conditions are envisioned, covering most of the actual situations occurring inpractice: constant-stress, constant-strain, constant-stress with controlled maximum strain and cyclic-stress with controlled maximum strain.
The relationship between fatigue life and maximum engineering stress, maximum strain and strain energy density were studied.
Results showed that the maximum strain and the overall strain profile differed between the 2 stems.
The maximum contact force, maximum strain, and the absorbed energy were evaluated in each test.
For all experimental conditions in Figs. 8 and 9, except Figs. 8 e and 9 c (0.25h clearance and one clamp for both material strength levels), the position of the maximum strain fell, approximately, on the line between the tool edges along where strains were evaluated.
The maximum strain increased with increasing loading frequency and increasing loading magnitude (loading strain).
But the cumulative maximum strains decreased.
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CEO of Professional Science Editing for Scientists @ prosciediting.com