BS 5944-6-1992 Measurement of airborne noise from hydraulic fluid power systems and components - Method of test for pumps using a parallelepiped microphone array《液压动力系统和部件气动噪声测量 第6.pdf
《BS 5944-6-1992 Measurement of airborne noise from hydraulic fluid power systems and components - Method of test for pumps using a parallelepiped microphone array《液压动力系统和部件气动噪声测量 第6.pdf》由会员分享,可在线阅读,更多相关《BS 5944-6-1992 Measurement of airborne noise from hydraulic fluid power systems and components - Method of test for pumps using a parallelepiped microphone array《液压动力系统和部件气动噪声测量 第6.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS5944-6: 1992 ISO4412-3: 1991 Measurement of airborne noise from hydraulic fluid power systems and components Part6: Method of test for pumps using a parallelepiped microphone array UDC 621.65:534.6BS5944-6:1992 This British Standard, having been prepared under the directionof the
2、Machinery andComponents Standards PolicyCommittee, was publishedunder the authorityofthe Standards Boardand comes into effect on 15 December1992 BSI 10-1999 The following BSI references relate to the work on this standard: Committee reference MCE/18 Draft for comment 89/78174DC ISBN 0 580 21395 1 Co
3、mmittees responsible for this British Standard The preparation of this British Standard was entrusted by the Machinery and Components Standards Policy Committee(MCE/-) to Technical Committee MCE/18, upon which the following bodies were represented: Advanced Manufacturing Technology Research Institut
4、e Association of British Mining Equipment Companies Bath University British Compressed Air Society British Fluid Power Association British Steel Industry Department of Trade and Industry(National Engineering Laboratory) Ministry of Defence The following bodies were also represented in the drafting o
5、f the standard, through subcommittees and panels: British Hydromechanics Research Association British Railways Board Society of Motor Manufacturers and Traders Ltd. Amendments issued since publication Amd. No. Date CommentsBS5944-6:1992 BSI 10-1999 i Contents Page Committees responsible Inside front
6、 cover National foreword ii Introduction 1 1 Scope 1 2 Normative references 1 3 Definitions 1 4 Measurement uncertainty 2 5 Test environment 2 6 Instrumentation 2 7 Installation conditions 2 8 Operating conditions 3 9 Location and number of sound measurement points 3 10 Test procedure 3 11 Calculati
7、on of surface sound pressure levels and sound power levels 5 12 Information to be recorded 5 13 Test report 6 14 Identification statement 6 Annex A (normative) Errors and classes of measurement 7 Annex B (informative) Bibliography 7 Figure 1 Microphone array on rectangular parallelepiped measuring s
8、urface 4 Table 1 Standard deviation of sound power level determinations 2 Table 2 Allowable variations of mean indicated values of controlled parameters 3 Table 3 Coordinates of microphone locations shown in Figure 1 3 Table A.1 Permissible systematic errors of measuring instruments as determined du
9、ring calibration 7 List of references Inside back coverBS5944-6:1992 ii BSI 10-1999 National foreword This Part of BS5944 has been prepared under the direction of the Machinery and Components Standards Policy Committee. It is identical with ISO4412-3:1991 Hydraulic fluid power Test code for determin
10、ation of airborne noise levels Part3: Pumps Method using a parallelepiped microphone array, published by the International Organization for Standardization(ISO). BS5944 comprises the following Parts. Part1: Method of test for pumps; Part2: Method of test for motors; Part3: Withdrawn; Part4: Method o
11、f determining sound power levels from valves controlling flow and pressure; Part5: Simplified method of determining sound power levels from pumps using an anechoic chamber; Part6: Method of test for pumps using parallelepiped microphone array. For the purposes of the British Standard the identificat
12、ion statement required by clause14 may be replaced by the following: “Airborne noise levels determined in accordance with BS5944-6” The Technical Committee has reviewed the provisions of ISO5598:1985 to which reference is made in the text and has decided that they are acceptable for use in conjuncti
13、on with this standard. There are no corresponding British Standards for ISO5598. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not of itself
14、confer immunity from legal obligations. Cross-references International Standard Corresponding British Standard ISO3448:1975 BS4231:1982 Classification for viscosity grades of industrial liquid lubricants (Identical) ISO3744:1981 BS4196 Sound power levels of noise sources Part4:1981 Engineering metho
15、ds for determination of sound power levels for sources in free-field conditions over a reflecting plane (Identical) ISO6743-4:1982 BS6413 Lubricants, industrial oils and related products(Class L) Part4:1983 Classification for family II (hydraulicsystems) (Identical) IEC651:1979 BS5969:1981 Specifica
16、tion for sound level meters (Identical) Summary of pages This document comprises a front cover, an inside front cover, pagesi andii, pages1 to8, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated
17、 in the amendment table on the inside front cover.BS5944-6:1992 BSI 10-1999 1 Introduction In hydraulic fluid power systems, power is transmitted and controlled through a liquid under pressure in a closed circuit. Pumps are components which convert rotary mechanical power into fluid power. During th
18、e process of converting mechanical power into hydraulic fluid power, airborne noise, fluid-borne vibrations and structure-borne vibrations are radiated from the pump. The airborne noise level of a hydraulic fluid power pump is an important consideration in component selection. The noise measurement
19、technique should, therefore, be such as to yield accurate appraisals of these airborne noise levels. The determination of noise levels is complicated by the interactions which occur during noise measurements. The fluid-borne and structure-borne vibrations from the pump can be transmitted to the circ
20、uit and ultimately give rise to background airborne noise levels which could affect the determination of the pump airborne noise levels. The procedures described in this part of ISO4412 are intended to measure only the airborne noise radiated directly from the pump under test. This part of ISO4412 c
21、losely follows the methods described in the two other parts, but allows the use of alternative pump mounting and drive configurations which are simpler and cheaper to implement in an anechoic chamber. Much of the guidance given in ISO4412-1:1991, Annex C, is equally applicable to this part of ISO441
22、2. The data obtained have been shown to be sufficiently accurate in engineering terms for A-weighted and one-third octave noise measurements, in decibels. This part of ISO4412 may also be applied to the testing of motors. 1 Scope This part of ISO4412 describes procedures for the determination of the
23、 sound power levels of a hydraulic fluid power pump, under controlled conditions of installation and operation, suitable for providing a basis for comparing the noise levels of pumps in terms of A-weighted sound power level; one-third octave band power level. From these sound power levels, if requir
24、ed, reference sound pressure levels may be calculated for reporting purposes(seeclause11). For general purposes, the frequency range of interest includes the one-third octave bands with centre frequencies between100Hz and10000Hz 1) . This part of ISO4412 is applicable to all types of hydraulic fluid
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