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An undesirable phenomenon referred to as the Portevin Le Chatelier (PLC) effect always appears in Ni-based superalloys deformed within specific ranges of strain rate and temperature.
Following a period of enhanced mechanical loading, tendon stiffness may increase [23-26] [23-26]toin physiological ranges of strain during locomaintainsince the ultimate tendon strain is more or less constant [27].
A comprehensive study on the large uniaxial deformation responses of two elastomers, Hydrogenated Nitrile Butadiene Rubbers (HNBR A and HNBR B), over wide ranges of strain rates (10−4⩽˙ε⩽5×103s−1) and temperatures (348 ⩽ T ⩽ 450 K) are presented.
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The ranges of strain-rate and temperature encompassed were 0.2 16 s−1 and 81 116 °C.
The branches corresponding to the association with a large range of Sinorhizobium meliloti and medicae strains (branch 2), and to specializations to limited ranges of strains (branches 1 and 3) show very small and non-significant variations of ω.
Servo-hydraulic machines are usually used at this range of strain rates.
Thus, in nature, a wide range of strain rates can be possible at various rock scales into which water diffuses.
Table 1 shows the range of strain rates addressed in this review, along with the corresponding techniques.
Here, we named the divided range of strain rates as insensitive area (I), transitional area (II), and sensitive area (III).
After the first yielding point, a stress hardening over a relatively wide range of strain can be observed.
Polymer matrix syntactic foams demonstrate strain rate sensitivity in compressive strength over a wide range of strain rates.
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