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Moreover, wear behavior was studied on two types of tribometer, employing different contact regimes — a 'cylinder-on-disk' line-contact reciprocating-sliding regime and a 'ball-on-disk' point-contact rotating-sliding regime.
In this study, HDFs behavior was studied on modified and unmodified of PCL-based nano-fibrous mat spinning at three different collecting times.
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Their behavior is studied on a wide range of frequencies, and a model problem of a 1D flow with pulsating outlet pressure, which enables to prove their efficiency.
The wear behavior was studied by ball-on-plate sliding tests, followed by microscopic examination using scanning electron microscopy (SEM) and atomic force microscopy (AFM), and chemical study by site-specific micro-Raman spectroscopy.
Adhesive wear behavior was studied using the pin on disk tribometer as per ASTM G99-04 standard, using two level full factorial approachs.
The directional ablative behavior was studied using plasma arc testing on a Huels type arc-heater.
The effect of plating variables on deposition behavior was studied.
The influence of mean stress on fatigue behavior was studied using four different strain ratios, Rε.
The microstructure of a cross-woven CSiC composite and its effect on tensile behavior was studied in terms of damage and damage development.
A low carbon bainitic steel YP960 for construction machinery was designed by directly quenching and tempering (DQ&T), and the mechanism for tempering temperature on tensile behavior was studied.
Taking titanium low-cost metastable β alloy TIMETAL-LC B(Ti 1.5 wt.% Al 4.5Fe 6.8Mo) as a program material, the influence of grain size, size of secondary α-phase precipitates after aging, and strain rate (in the range of 1.6×10−4 7.3×10−2 s−1) on mechanical behavior was studied.
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