BS 3800-3-1990 General tests for machine tools - Method of testing performance of machines operating under loaded conditions in respect of thermal distortion《机床一般试验 第3部分 机床在热畸变负载条件.pdf
《BS 3800-3-1990 General tests for machine tools - Method of testing performance of machines operating under loaded conditions in respect of thermal distortion《机床一般试验 第3部分 机床在热畸变负载条件.pdf》由会员分享,可在线阅读,更多相关《BS 3800-3-1990 General tests for machine tools - Method of testing performance of machines operating under loaded conditions in respect of thermal distortion《机床一般试验 第3部分 机床在热畸变负载条件.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS3800-3: 1990 General tests for machine tools Part 3: Method of testing performance of machines operating under loaded conditions in respect of thermal distortionBS3800-3:1990 This British Standard, having been prepared under the directionof the Machine, Engineers and Hand Tools St
2、andards Policy Committee, waspublished under the authorityof the Board of BSI andcomes into effect on 28 September1990 BSI03-1999 The following BSI references relate to work on this standard: Committee reference MTE/1 Draft for comment88/74114 DC ISBN 0 580 18141 3 Committees responsible for this Br
3、itish Standard The preparation of this British Standard was entrusted by the Machine, Engineers and Hand Tools Standards Policy Committee (MTE/-) to Technical Committee MTE/1, upon which the following bodies were represented: Advanced Manufacturing Technology Research Institute Cranfield Institute o
4、f Technology Department of Trade and Industry (Mechanical Engineering and Manufacturing Technology Division) Health and Safety Executive Machine Tool Trades Association Ministry of Defence Society of British Aerospace Companies Limited The following were also represented in the drafting of the stand
5、ard, through subcommittees and panels: Coopted members Amendments issued since publication Amd. No. Date of issue CommentsBS3800-3:1990 BSI 03-1999 i Contents Page Committees responsible Inside front cover Foreword ii 1 Scope 1 2 Test conditions 1 3 Thermal distortion of structure 1 4 Thermal drift
6、of axis drives 2 Figure 1 Typical set-up for measurement of thermal distortion of the structure of a vertical machining centre 4 Figure 2 Typical set-up for measurement of thermal distortion of the structure of a slant bed lathe 5 Figure 3 Temperature and deflection versus time for warm-up of the st
7、ructure of a machining centre, 4000 r/min spindle speed 6 Figure 4 Typical set-up for measurement of thermal drift of the x-axis drive of a machining centre 7 Figure 5 Typical set-up for measurement of thermal drift of the z-axis drive of a CNC lathe 7 Figure 6 Positional error plot (example 1) 8 Fi
8、gure 7 Positional error plot (example 2) 9 Figure 8 Drift of end point of axis during warm-up and cool-down for a typical CNC lathe 10 Figure 9 Positional error plot (example 3) 11 Figure 10 Positional error plot (example 4) 12 Publications referred to Inside back coverBS3800-3:1990 ii BSI 03-1999 F
9、oreword This Part of BS3800 has been prepared under the direction of the Machine, Engineers and Hand Tools Standards Policy Committee. It is based on a proposal from the Advanced Manufacturing and Technology Research Institute (AMTRI). This British Standard describes methods of testing machine tools
10、 to determine the influence of thermally induced error on workpiece accuracy. The objective of the test is to supplement the information obtained from tests for geometric accuracy in BS3800-1 and for positioning accuracy and repeatability in BS4656-16 (which will be revised and published as BS3800-2
11、). The tests specified are all instrumental tests and do not depend upon measurements of a machined workpiece. Instrumental tests have the ability to quantify the contribution made to the total machining accuracy from a particular source of error. Other Parts of BS3800 will deal with statistical met
12、hods, vibration and noise. 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 confer immunity from legal obligations. Summary of pag
13、es This document comprises a front cover, an inside front cover, pagesi andii, pages1 to12, 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 in the amendment table on theinside front cover.BS38
14、00-3:1990 BSI 03-1999 1 1 Scope This Part of BS3800 gives methods for assessing the contribution to workpiece inaccuracy arising from the thermal behaviour of the machine, due to internal heat sources, in respect of: a) distortion of the structure; and b) drift of the axis drives. The tests for ther
15、mal distortion of the structure are applicable to any machine which incorporates a rotating spindle or spindles supporting the tool or the workpiece. The tests are designed to establish the relative displacements occurring between the tool and workpiece sides of the structure as a result of thermal
16、expansion or contraction of key structural elements. The tests for thermal drift of the axis drives are applicable to numerically controlled (NC) machines only and are designed to quantify the effects on positioning accuracy and repeatability of thermal expansion and contraction of the axis drives.
17、2 Test conditions 2.1 Environment Where the temperature of the environment can be controlled, it shall be set to20 C. NOTEThe tests can be carried out at any other ambient temperature. The ambient temperature shall be continuously recorded during the test, the variation not exceeding2 C, although so
18、me machines may require closer tolerance. The machine including all of its services, e.g.hydraulics, shall be completely shut down before the start of the test. Both the machine and the measuring instruments shall have been in the test environment long enough, preferably overnight, to be in a therma
19、lly stable condition before testing. They shall be protected from draughts and external radiations such as those from overhead heaters, or sunlight, etc. If the measuring instrument incorporates compensations for environmental factors such as air temperature and pressure, then these shall be used. H
20、owever, compensations for machine or position feedback temperature shall not be used. If the measuring instrument incorporates facilities by which the measured data can be normalized to the case of that in which the machine or position feedback system is at20 C, then these facilities shall not be us
21、ed. 2.2 Machine to be tested The machine shall be completely assembled and fully operational in accordance with the manufacturers instructions. All necessary levelling operations, geometric alignment tests and functional checks shall be completed satisfactorily before starting the tests. All tests s
22、hall be carried out with the machine in the unloaded condition. Where a machine involves rotating both the workpiece and tool on separate spindles, the test shall be carried out for each spindle with respect to a common fixed point. Where the machine incorporates compensation for thermal errors, the
23、 machine compensation system shall be active. 2.3 Sequence of testing The order of carrying out the two types of test is not significant, provided that both tests commence with the machine thermally stable at a steady ambient temperature. 3 Thermal distortion of structure 3.1 Instrumentation and equ
24、ipment 3.1.1 Calibration. The calibration of all instrumentation used shall be traceable to a national reference standard. 3.1.2 Instrumentation. The following instrumentation shall be provided: a) non-contacting displacement transducer equipment, five channels minimum, with linear output proportion
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