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The test of isometric knee extension peak force with an isokinetic dynamometer machine has excellent reliability with ICCs > 0.99 [ 19].
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Reliability and validity of isokinetic dynamometer machines have been reported in several studies [ 36– 36].
Reliability and validity of isokinetic dynamometer machines have been reported in several studies, with coefficients of variation below 10% [ 53- 55].
Tool geometry optimization, workpiece material characterization, process monitoring and optimization are based on the measurement of cutting forces by using machining dynamometers.
Stress-strain measurements were performed on a tensile test machine (Instron 3366 dynamometer, Norwood, MA, USA) at 23°C.
Turning experiments under dry cutting conditions were performed on a heavy duty lathe machine equipped with a dynamometer using both coated and uncoated cutting tools.
The building holds a custom machine shop and a chassis dynamometer for testing horsepower.
Data from a pilot study demonstrated excellent criterion validity for the computerized leg press machine to a digital force dynamometer with a Pearson correlation coefficient of 0.99.
On the other hand, a specially designed 3-Component Cutting-Force-Dynamometer was installed to an industrial broaching machine tool manufacturing slots in a nickel-based alloy.
Vertical and draft calibrations of the DEOR dynamometer were done in a laboratory universal testing machine.
The KISTLER dynamometer mounted on the worktable of the milling machine allowed three dynamic forces to be measured.
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