BS 1902-5 14-1992 Methods of testing refractory materials - Refractory and thermal properties - Determination of thermal expansion (temperatures up to 1500 C) (methods 1902-5 14)《耐.pdf
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1、| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | BRITISH STANDARD BS 1902 : Section 5.14 :
2、1992 Incorporating Amendment No. 1 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW Methods of testing Refractory materials Part 5. Refractory and thermal properties Section 5.14 Determination of thermal expansion (temperatures up to 1500 C) (methods 1902-514)BS 1902 : Section
3、5.14 : 1992 Issue 2, January 1998 This British Standard, having been prepared under the direction of the Refractory Products Standards Policy Committee, was published under the authority of the Standards Board and comes into effect on 15 June 1992 BSI 1998 The following BSI references relate to the
4、work on this standard: Committee reference RPM/1 Draft for comment 90/47759 DC ISBN 0 580 20668 8 Amendments issued since publication Amd. No. Date Text affected 8740 January 1998 Indicated by a sideline in the margin Committees responsible for this British Standard The preparation of this British S
5、tandard was entrusted by the Refractory Products Standards Policy Committee (RPM/-) to Technical Committee RPM/1, upon which the following bodies were represented: British Ceramic Research Ltd. British Industrial Ceramic Manufacturers Association British Steel Industry Refractories Association of Gr
6、eat Britain Refractory Contractors Association Society of Glass TechnologyIssue 1, January 1998 BS 1902 : Section 5.14 : 1992 BSI 1998 a Summary of pages The following table identifies the current issue of each page. Issue 1 indicates that a page has been introduced for the first time by amendment.
7、Subsequent issue numbers indicate an updated page. Vertical sidelining on replacement pages indicates the most recent changes (amendment, addition, deletion). Page Issue Page Issue Front cover Inside front cover a b 1 2 3 4 2 2 1 blank 2 original 2 original 5 6 7 8 9 10 Inside back cover Back cover
8、original original original 2 1 1 original 2b blankIssue 2, January 1998 BS 1902 : Section 5.14 : 1992 BSI 1998 1 | | | | Contents Page Committees responsible Inside front cover Foreword 2 Methods 1 Scope 3 2 Designation 3 3 Definitions 3 4 Principle 3 5 Apparatus 3 6 Test pieces 6 7 Calibration 6 8
9、Procedure 6 9 Calculation and expression of results 7 10 Test report 7 Appendices A Requirement for accuracy 8 B Methods for testing investment casting shell moulds 8 Table 1 Thermal expansion reference data for polycrystalline alumina relative to 20 C 5 Figures 1 Horizontal dilatometer 3 2 Vertical
10、 dilatometer 4 B.1 Apparatus for testing investment casting shell moulds 92 BS 1902 : Section 5.14 : 1992 Foreword This Section of BS 1902 : Part 5 has been prepared under the direction of the Refractory Products Standards Policy Committee. The horizontal method given provides an increase in the tem
11、perature of use from 1100 C to 1500 C, when compared with that given in BS 1902 : Section 5.3 : 1990. The vertical method is essentially a scaled-down version of BS 1902 : Section 5.4 : 1989. NOTE. This Section is to be read in conjunction with BS 1902 : Section 5.0 Introduction and BS 1902 : Sectio
12、n 3.1 Guidance on sampling. Section 5.0 sets out the general arrangement of BS 1902 and lists the Sections of Part 5. Compliance with a British Standard does not of itself confer immunity from legal obligations. BSI 1998 3 Issue 2, January 1998 BS 1902 : Section 5.14 : 1992 Figure 1. Horizontal dila
13、tometer Methods | | | | | | 1 Scope This Section of BS 1902 : Part 5 describes two methods for determining the thermal expansion of refractory materials. The methods are applicable to products which have been fired to a temperature equal to or greater than the upper limit of intended testing, and ma
14、y also be used with oxidizable materials if the equipment is fitted with means to produce a reducing atmosphere. The maximum temperature for testing is 1500 C. NOTE 1. The methods may be used to determine the dimensional changes occurring during heating of unfired materials, which is not usually des
15、cribed as thermal expansion. NOTE 2. The titles of the publications referred to in this standard are listed on the inside back cover. Appendix B gives the method for testing investment casting shell moulds. This method is for determination of both thermal expansion and contraction as a function of t
16、emperature and time, and is applicable to all shell mould test pieces whether in a green or fired condition. 2 Designation The methods described in this Section may be referred to by the following designations: horizontal: method 1902 - 514/1 vertical: method 1902 - 514/2 3 Definitions For the purpo
17、ses of this Section of BS 1902 : Part 5, the following definitions apply. 3.1 thermal expansion The proportional extension which occurs when a material is heated. 3.2 thermal expansion coefficient The proportional extension which occurs when a material is heated over a temperature interval of 1 K. 3
18、.3 mean thermal expansion coefficient The average value of thermal expansion coefficient over a temperature range T 1 to T 2 . 4 Principle A test piece is heated at a specified, uniform rate and its change in length and temperature measured either continuously or at regular and frequent intervals du
19、ring the heating. The thermal expansion, relative to ambient temperature, is calculated for the temperature of the test piece and the results either plotted as a graph or expressed as a mean coefficient of expansion for a given temperature range. In the horizontal method, the test piece is a bar or
20、cylinder with the temperature being measured at the mid-point of the upper surface. In the vertical method, the test piece is a vertically mounted hollow cylinder with the temperature being measured at its geometric centre. 5 Apparatus 5.1 Furnace, capable of heating the test piece evenly such that
21、the temperature variation along the length of the test piece is not greater than 5 K. The assembly of test piece and measuring device for the horizontal method is illustrated diagrammatically in figure 1. NOTE. Equipment is available which performs the horizontal method in a vertical mode, which is
22、outside the scope of this standard. The assembly of the test piece and measuring device for the vertical method is illustrated diagrammatically in figure 2.4 BS 1902 : Section 5.14 : 1992 Figure 2. Vertical dilatometer5 BS 1902 : Section 5.14 : 1992 For both methods, the construction materials for t
23、he test piece holder, push rod and measuring tubes shall be an alumina ceramic of at least 99.8 % Al 2 O 3 content and with a minimum density of 3.70 g/cm 3 . For the vertical method only, such a material shall also be used for the spacers and restraint shown in figure 2. The upper end of the inner
24、sensing tube is restrained by means of a cylinder of alumina, 35 mm in diameter and 17 mm to 50 mm in height, placed on top of the upper spacer. The height of the restraint, and hence its mass, is determined by the strength of the spring in the measuring device (5.2). The expansion of the alumina tu
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