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The two-tester condition yielded a precision of 7.5, 7.6 and 6.5 mm (SEM) with reliability (G-coeff) of 0.92, 0.86 and 0.83, respectively.
No increases were observed with any of the remaining tester strain/activation condition combinations.
Tribological tests were performed on a commercial ball-on-disc wear tester under conditions of technically dry friction, at a load of 10 N.
The experiments were conducted by using a dry sliding wear tester at room condition.
Additionally, wear performance was characterized by a ball-on-disk wear tester in dry condition.
The microhardness of machined surface is measured using CLEMEX microhardness tester under a condition of 25-g load and 15-s dwell time.
Besides, the influence of the anodizing time on the wear resistance of the oxide films was evaluated using a ball-on-disc rotating wear tester under unlubricated condition at room temperature.
Wear tests were carried out on a block-on-ring wear tester under unlubricated conditions.
The tribological properties of these materials were evaluated using a block-on-ring wear tester under nonlubricated conditions against commercially available silicon nitride materials, and were related to the effect of surface modification by these ion beam techniques.
Influence of nanometer lanthanum fluoride (nano-LaF3) on the friction and wear behavior of bonded molybdenum disulfide (MoS2) solid lubricating film was investigated using an oscillating friction-wear tester under dry friction condition.
In the subtraction, conditioned culture non-SP single clone cells were used as a tester and non-conditioned culture single clone cells were used as a driver.
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