BS 1041-2 1-1985 Code for temperature measurement - Expansion thermometers - Guide to selection and use of liquid-in-glass thermometers《温度测量规则 膨胀式温度计 玻管液体温度计的选择和使用指南》.pdf
《BS 1041-2 1-1985 Code for temperature measurement - Expansion thermometers - Guide to selection and use of liquid-in-glass thermometers《温度测量规则 膨胀式温度计 玻管液体温度计的选择和使用指南》.pdf》由会员分享,可在线阅读,更多相关《BS 1041-2 1-1985 Code for temperature measurement - Expansion thermometers - Guide to selection and use of liquid-in-glass thermometers《温度测量规则 膨胀式温度计 玻管液体温度计的选择和使用指南》.pdf(24页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 1041-2.1: 1985 Temperature measurement Part 2: Expansion thermometers Section 2.1 Guide to selection and use of liquid-in-glass thermometersBS1041-2.1:1985 This British Standard, having been prepared under the directionof the Laboratory Apparatus Standards Committee,was published
2、 underthe authority of the BoardofBSI and comes into effect on 31 July 1985 BSI 01-2000 BS 1041 first published January1943 First published as BS 1041-2.1 January 1969 First revision July 1985 The following BSI references relate to the work on this standard: Committee reference LBC/4 Draft for comme
3、nt 84/52217 DC ISBN 0 580 14500 X Committees responsible for this British Standard The preparation of this British Standard was entrusted by the Laboratory Apparatus Standards Committee (LBC/-) to Technical Committee LBC/4 upon which the following bodies were represented: British Laboratory Ware Ass
4、ociation British Lampblown Scientific Glassware Manufacturers Association Ltd. British Medical Association Department of Health and Social Security Department of Trade and Industry (National Physical Laboratory) Institute of Petroleum Ministry of Defence Amendments issued since publication Amd. No.
5、Date of issue CommentsBS1041-2.1:1985 BSI 01-2000 i Contents Page Committees responsible Inside front cover Foreword ii 1 Scope 1 2 Principle of temperature measurement by liquid expansion 1 3 Materials 1 4 Construction and marking 4 5 Thermometer selection 6 6 Calibration 8 7 Conditions of use 10 8
6、 Maintenance 14 9 Working standard liquid-in-glass thermometers 16 Appendix A Calibration services 18 Appendix B The International Practical Temperature Scale of 1968 (IPTS-68) 18 Appendix C Procedure for ice point measurements 18 Figure 1 Emergent liquid column correction for partial immersion meas
7、urements 12 Figure 2 Error in reading a thermometer due to parallax 14 Table 1 Thermometric glasses approved by the National Physical Laboratory 2 Table 2 NPL measurement uncertainties of total immersion thermometers 7 Table 3 NPL measurement uncertainties of partial immersion thermometers 7 Table 4
8、 Values of k, the apparent cubic thermal expansion coefficient of thermometric liquids in glass 12 Publications referred to Inside back coverBS1041-2.1:1985 ii BSI 01-2000 Foreword This revision of this Section ofBS1041 has been prepared under the direction of the Laboratory Apparatus Standards Comm
9、ittee. It supersedes the 1969 edition ofBS1041-2.1, which is withdrawn. Previous editions (published in 1943 and1969) classified and reviewed liquid-in-glass thermometers under four main groups, broadly defined by their applications in meteorology, industry and the laboratory. In this revision, howe
10、ver, those classifications are discontinued since their meaning or relevance is considered obscure or out-dated and, in some cases, too specialized for a document intended to give guidance of a general nature. Paradoxically, the current diffusion of standardization and increasing demand for traceabi
11、lity 1)in measurement call for a degree of specialization weighted towards the use and maintenance of generally high quality thermometers, conveniently designated as “working standards”. Accordingly, this revision is intended to provide an essentially practical guide to the selection and use of ther
12、mometers wherever standardization, calibration and traceability are of concern and interest. Revisions ofBS1041-3 toBS1041-5andBS1041-7are in preparation. For the purposes of this Section ofBS1041, the terminology and conventions ofISO386 “Liquid-in-glass laboratory thermometers Principles of design
13、, construction and use” 2)have been adopted. Throughout this Section ofBS1041, the symbol “ C” is used to denote actual temperature, and the words “degree(s) Celsius” to denote temperature intervals. A British Standard does not purport to include all the necessary provisions of a contract. Users of
14、British Standards are responsible for their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages1 to 18, an inside back cover and a back
15、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. 1) Traceability is an accepted term and is, for the purposes of this Section ofBS1041, defined as the ability of a measurement
16、 result to be related to the current International Practical Temperature Scale through an unbroken chain of comparisons. 2) Published by the International Organization for Standardization (ISO).BS1041-2.1:1985 BSI 01-2000 1 1 Scope This Section ofBS1041 gives guidance on the selection and use of: a)
17、 hermetically-sealed glass thermometers in which a thick-walled capillary stem is fused to a reservoir or bulb containing a thermometric liquid and the temperature scale is engraved or permanently marked on the stem; NOTEThermometers of this type are commonly known as “solid-stem thermometers”. b) e
18、nclosed-scale liquid-in-glass thermometers, in which a comparatively thin-walled capillary together with a separate strip bearing the scale is enclosed in a hermetically-sealed glass sheath. Collectively, they span a temperature range from200 C to1050 C and are in some cases capable of measurement u
19、ncertainties of 0.005degrees Celsius (see5.2). Generally, but not without exception, they fall within the scope of the following British Standards: NOTE 1In this Section ofBS1041, temperatures below0 C are indicated with a minus sign; temperatures above0 C have no sign. NOTE 2The titles of the publi
20、cations referred to in this Section ofBS1041 are listed on the inside back cover. 2 Principle of temperature measurement by liquid expansion The apparent differential expansion of a liquid, in glass, provides a conveniently measurable parameter (length) to indicate a temperature along the scale asso
21、ciated with a capillary stem. This expansivity, defined in terms of the apparent cubic thermal expansion coefficient of the thermometric liquid concerned k (in C 1 ), is given by the following equation: where V is the liquid volume; is the rate of change of volume with temperature. Therefore, the sc
22、ale length, L, equivalent to a temperature interval t for a given capillary and liquid volume is given by the equation: where a is the cross-sectional area of the capillary. If k and a are constant, then L is, to first order accuracy, linearly dependent on temperature. Tapering or non-uniformity in
23、the bore and errors in marking and dividing in the graduation process lead to inherent errors in the reading of a thermometer and hence to the need for calibration of the complete instrument. Other potentially serious sources of error arise from both short-term and long-term glass instabilities, the
24、 characteristic behaviour of the liquid filling, conditions of immersion, pressure and anomalous effects, parallax and poor maintenance. All of these aspects of liquid-in-glass thermometry are normal and are discussed in this guide. 3 Materials 3.1 Glasses 3.1.1 General. Thermometric glasses are fus
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