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The objective of the present work is to understand the effects of speed, load, distance and temperature on the dry sliding wear behavior of Al/B4C, Al/B4C/MoS2 nanocomposites and the Al alloy.
"You can see the coaches with laptops in the stands; they have a constant live feed on each player, their fatigue index, collision load, distance covered et cetera," says Mr Byrne.
StatSport's Apex Pro and Apex Athlete series are a pod and vest system that can track the position of the players in real-time, as well as derive secondary quantities such as total distance, speed, high metabolic load distance, accelerations, fatigue index, dynamic stress load, step balance and collisions.
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Table 4 Rutting test parameters Test parameters Value Molding method Wheel molding Specimen size 300 × 300 × 50 mm Test temperature 60 ± 1 °C Pressure 0.7 ± 0.05 MPa Loading distance 230 ± 10 mm Loading speed 42 ± 1 times min−1.
In 4-point bending test, a maximum of 300 N was loaded at a rate of 5 N/s with 4 cm loading distance and 12 cm pivot distance.
The control factors were the applied load, sliding distance and weight% of TiC reinforcement in the metal matrix.
The parameters which influence dry sliding wear rate are applied load, sliding distance, sliding velocity and reinforcement.
A Mathematical model was developed to determine the effects of load, sliding distance and sliding speed on wear loss.
The abrasive wear of the composite and its alloy matrix was developed in terms of the applied load, sliding distance and particle size using factorial design.
SEM analysis has been made to identify the phenomenon of wear as a function of applied load, sliding distance and sliding velocity.
During the experiment applied load, sliding distance and weight percentage of reinforcement considered as input variables and weight loss and coefficient of friction as responses.
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