BS 7275-3-1995 Determination of hydraulic fluid power motor characteristics Method at constant flow and at constant torque《液压流体动力马达特性的测定 第3部分 恒定流和恒定扭矩法》.pdf
《BS 7275-3-1995 Determination of hydraulic fluid power motor characteristics Method at constant flow and at constant torque《液压流体动力马达特性的测定 第3部分 恒定流和恒定扭矩法》.pdf》由会员分享,可在线阅读,更多相关《BS 7275-3-1995 Determination of hydraulic fluid power motor characteristics Method at constant flow and at constant torque《液压流体动力马达特性的测定 第3部分 恒定流和恒定扭矩法》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 7275-3: 1995 ISO 4392-3: 1993 Determination of hydraulic fluid powermotor characteristics Part 3: Method at constant flow and at constant torque UDC 621.8.032:621.225.4BS7275-3:1995 This British Standard, having been prepared under the direction of the Engineering Sector Board (E
2、/-), was publishedunder the authority ofthe Standards Board and comes into effect on 15March1995 BSI 10-1999 The following BSI references relate to the work on this standard: Committee reference MCE/18 Draft for comment 92/78189 DC ISBN 0 580 23859 8 Committees responsible for this British Standard
3、The preparation of this British Standard was entrusted to Technical Committee MCE/18, Fluid power systems and components, upon which the following bodies were represented: Association of British Mining Equipment Companies British Compressed Air Society British Fluid Power Association British Hydrome
4、chanics Research Association British Steel Industry Department of Trade and Industry (National Engineering Laboratory) Ministry of Defence University of Bath Amendments issued since publication Amd. No. Date CommentsBS7275-3:1995 BSI 10-1999 i Contents Page Committees responsible Inside front cover
5、National foreword ii Introduction 1 1 Scope 1 2 Normative references 1 3 Definitions 1 4 Symbols 1 5 Test installation 2 6 Pretest data 4 7 Test conditions 4 8 Test procedure 5 9 Expression of results 5 10 Test report 7 Annex A (normative) Classes of measurement accuracy 8 Annex B (normative) Use of
6、 practical units 8 Figure 1 Typical hydraulic test circuit 3 Table 1 Symbols and units 2 Table A.1 Permissible systematic errors of measuring instruments asdetermined during calibration 8 Table B.1 Practical units 8 List of references Inside back coverBS7275-3:1995 ii BSI 10-1999 National foreword T
7、his Part of BS 7275 has been prepared by Technical Committee MCE/18. It is identical with ISO 4392-3:1993 Hydraulic fluid power Determination of characteristics of motors Part 3: At constant flow and at constant torque, published by the International Organization for Standardization (ISO). The Techn
8、ical Committee has reviewed the provisions of ISO 4391:1983 and ISO5598:1985 to which normative reference is made in the text, and has decided that they are acceptable for use. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are r
9、esponsible for their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Cross-references International Standard Corresponding British Standard ISO 1219-1:1991 BS 2917 Graphic symbols and circuit diagrams for fluid power systems and comp
10、onents Part 1:1993 Specification for graphic symbols (Identical) ISO 3448:1992 BS 4231:1992 Classification for viscosity grades of industrial liquid lubricants (Identical) ISO 4409:1986 BS 4617:1983 Methods for determining the performance of pumps and motors for hydraulic fluid power transmission (T
11、echnically equivalent) ISO 8426:1988 BS 7250:1989 Methods for determining the derived capacity of hydraulic fluid power positive displacement pumps and motors (Identical) Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages1 to 8, an inside back cover
12、and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on the inside front cover.BS7275-3:1995 BSI 10-1999 1 Introduction In hydraulic fluid power systems, power is transmitted and controlled throu
13、gh a fluid under pressure within an enclosed circuit. Hydraulic motors are units which transform hydraulic energy into mechanical energy, usually with a rotary output. 1 Scope This part of ISO 4392 describes a method of determining the low-speed characteristics of positive-displacement rotary fluid
14、power motors under constant flow and constant torque conditions. Motors may be of either the fixed or variable-displacement type. The method involves testing at slow speeds, which may generate frequencies having a significant influence upon the steady continuous torque output of the motor and affect
15、 the system to which the motor would be connected. The accuracy of measurement is divided into three classes, A, B and C, which are explained in Annex A. 2 Normative references The following standards contain provisions which, through reference in this text, constitute provisions of this part of ISO
16、 4392. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this part of ISO 4392 are encouraged to investigate the possibility of applying the most recent editions of the standards indicated below. Members of IEC an
17、d ISO maintain registers of currently valid International Standards. ISO 1219-1:1991, Fluid power systems and components Graphic symbols and circuit diagrams Part 1: Graphic symbols. ISO 3448:1992, Industrial liquid lubricants ISO viscosity classification. ISO 4391:1983, Hydraulic fluid power Pumps,
18、 motors and integral transmissions Parameter definitions and letter symbols. ISO 4409:1986, Hydraulic fluid power Positive displacement pumps, motors and integral transmissions Determination of steady-state performance. ISO 5598:1985, Fluid power systems and components Vocabulary. ISO 8426:1988, Hyd
19、raulic fluid power Positive displacement pumps and motors Determination of derived capacity. 3 Definitions For the purposes of this part of ISO 4392, the definitions given in ISO 4391 and ISO 5598 and the following definition apply. 3.1 complete motor cycle the total angular movement of the motor ou
20、tput shaft needed to achieve a repetitive leakage and/or torque recording. In most motors this will be 360; however, in some, such as gear motors, it may be several shaft revolutions 4 Symbols 4.1 The physical quantity letter symbols and their suffixes used in this part of ISO 4392 are in accordance
21、 with ISO 4391. Units are given in Table 1. 4.2 The graphical symbols used in Figure 1 are in accordance with ISO 1219-1.BS7275-3:1995 2 BSI 10-1999 Table 1 Symbols and units 5 Test installation 5.1 Hydraulic test circuit 5.1.1 A hydraulic test circuit similar to that shown in Figure 1 shall be used
22、. WARNING The basic circuit shown in Figure 1 does not incorporate all the safety devices necessary to protect against damage in the event of component failure. It is important that those responsible for carrying out these tests give due consideration to safeguarding both staff and equipment. 5.1.2
23、A fluid-conditioning circuit (Figure 1) together with shut-off valve 5 and relief valve 7 shall be installed. Valve 5 may be opened to facilitate operation at high speed in order to reach the test operating temperature rapidly (see 8.2). Valve 5 shall be closed during the test. 5.1.3 A fluid-conditi
24、oning circuit shall be installed which provides the filtration necessary to protect the test motor and the other circuit components and which will maintain the fluid temperatures specified in clause 7. 5.1.4 A constant motor supply flowrate is obtained by a flow control valve with viscosity and pres
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