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BS ISO 10767-1:1996 - Hydraulic fluid power. Determination of pressure ripple levels generated in systems and components - Precision method for pumps

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This part of ISO 10767 specifies a procedure for the determination of a rating of the source flow ripple, source impedance and pressure ripple levels generated by positive-displacement hydraulic pumps. Ratings are obtained as the following: a) the source flow ripple amplitude, in litres per second, over ten individual harmonics of pumping frequency; b) the source impedance amplitude, in newton seconds per metre to the power of five [(N·s)/m5], and phase, in degrees, over ten individual harmonics of pumping frequency; c) the anechoic pressure ripple amplitude, in bars1), over ten harmonics of pumping frequency; d) the overall r.m.s. anechoic pressure ripple, in bars; e) the blocked acoustic pressure ripple amplitude, in bars, over ten harmonics of pumping frequency; f) the overall r.m.s. blocked acoustic pressure ripple, in bars. This part of ISO 10767 is applicable to all types of positive-displacement pump operating under steady-state conditions, irrespective of size, provided that the pumping frequency is in the range from 50 Hz to 400 Hz.
Contributor(s):
NAAR - Data Entry Person
Primary Item Type:
British Standard
Identifiers:
ICS 23.100.10 Pumps and motors
ISBN 0580260488
Language:
English
Subject Keywords:
Calibration; Interpolation; Accuracy; Pressure equipment; Hydraulic equipment; Power transmission systems; Fluid pressure; Frequencies; Test equipment; Installation; Pressure measurement (fluids); Flow measurement
First presented to the public:
1/3/2024
Original Publication Date:
9/15/1996
Previously Published By:
British Standards Institution
Place Of Publication:
London, United Kingdom
Citation:
Extents:
Number of Pages - 22
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2024-01-03 12:15:58.164
Submitter:
Nurul Aini Abdul Rahman

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BS ISO 10767-1:1996 - Hydraulic fluid power. Determination of pressure ripple levels generated in systems and components - Precision method for pumps1 2024-01-03 12:15:58.164