BS 1902-5 5-1991 Methods of testing refractory materials - Refractory and thermal properties - Determination of thermal conductivity (panel calorimeter method) (method 1902-505)《耐火.pdf
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1、BRITISH STANDARD BS1902-5.5: 1991 Methods of testing Refractory materials Part 5: Refractory and thermal properties Section 5.5 Determination of thermal conductivity (panel/calorimeter method) (method1902-505)BS1902-5.5:1991 This British Standard, having been prepared under the directionof the Refra
2、ctory Products Standards Policy Committee, was published underthe authority of the Standards Board and comesintoeffect on 30August1991 BSI08-1999 The following BSI references relate to the work on this standard: Committee referenceRPM/1 Draft for comment89/41860DC ISBN 0 580 19640 2 Committees respo
3、nsible for this British Standard The preparation of this British Standard 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 Steel Industry Engineering Equip
4、ment and Materials Users Association Refractories Association of Great Britain Refractory Contractors Association Society of Glass Technology Amendments issued since publication Amd. No. Date CommentsBS1902-5.5:1991 BSI 08-1999 i Contents Page Committees responsible Inside front cover Foreword ii 1
5、Scope 1 2 Designation 1 3 Definition 1 4 Principle 1 5 Apparatus 1 6 Test panel 6 7 Procedure 7 8 Calculation of thermal conductivity 9 9 Test report 10 Figure 1 Vertical section through thermal conductivity apparatus 3 Figure 2 Horizontal section, showing arrangement of heaters 3 Figure 3 Basic cir
6、cuit for heater control system 4 Figure 4 Design of calorimeter and guard ring 5 Figure 5 Arrangements for measurements in different dimensions 7 Figure 6 Corresponding positions of thermocouples for arrangements in Figure 5 8 Table 1 Resistance wire for heaters 4 Table 2 Specific heat capacity of w
7、ater 10 Publication(s) referred to Inside back coverBS1902-5.5:1991 ii BSI 08-1999 Foreword This Section of BS1902-5 has been prepared under the direction of the Refractory Products Standards Policy Committee. The method described in this Section is one of three methods for the determination of ther
8、mal conductivity included in BS1902-5, as follows. Section5.5: Determination of thermal conductivity (panel/calorimeter method) (method1902-505); Section5.6: Determination of thermal conductivity (hot wire method) (method1902-506); Section5.8: Determination of thermal conductivity (split column meth
9、od) (method1902-508) 1) . This Section of BS1902 is a revision of the method previously included in BS1902-1A:1966 (obsolescent), which is withdrawn. NOTEThis Section is to be read in conjunction with BS1902-5.0 “Introduction” and BS1902-3.1 “Guidance on sampling”. Section5.0sets out the general arr
10、angement of BS1902 and lists the Sections of Part5. 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 ob
11、ligations. Summary of pages This document comprises a front cover, an inside front cover, pagesi andii, pages1 to10, 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 t
12、he inside front cover. 1) In preparation.BS1902-5.5:1991 BSI 08-1999 1 1 Scope This Section of BS1902-5describes the panel method for determining the thermal conductivity of dense shaped and shaped insulating refractory products by a continuous flow calorimeter method. The panel/calorimeter method m
13、ay be used for preformed unshaped products and for ceramic fibre products. NOTE 1For details of the adaptations needed for ceramic fibre products, see BS1902-6. The panel/calorimeter method is intended for materials having a thermal conductivity in the range0.5W/(mK) to20W/(mK) and hot face temperat
14、ures in the range300 C to1400 C. For thermal conductivities below0.5W/(mK) seeBS1902-5.6. NOTE 2The titles of the publications referred to in this standard are listed on the inside back cover. 2 Designation The method of determining thermal conductivity by the panel/calorimeter method described in t
15、his Section is referred to by the designation: Method1902-505 3 Definition For the purposes of this Section of BS1902, the following definition applies. thermal conductivity (coefficient of thermal conductivity), 2, (in W/(mK) the rate of linear heat flow, under steady state temperature conditions,
16、through unit area of a test piece, per unit temperature gradient in a direction perpendicular to the area 4 Principle The quantity of heat flow unidirectionally through a test panel, heated on one face under controlled temperature conditions, is measured using a continuous flow water calorimeter. 5
17、Apparatus 5.1 General The apparatus consists of a furnace in which a system of heaters is used to induce a uniform, unidirectional heat flow through a test panel under stable temperature gradient conditions. A continuous flow water calorimeter with guard ring is used to measure the rate of flow of h
18、eat through the test panel. 5.2 Furnace, comprising a chamber, which accommodates a test panel230mm 230mm 76 (or64)mm deep, and a heater well nominally214mm 214mm 58mm deep formed from shaped insulating refractory (see Figure 1). The walls and floor of the heater well are formed of25mm thick insulat
19、ing refractory, of class150, complying with BS7225-1.1. The walls of the heater well are lined with8mm thick,50mm deep alumino-silicate refractory plates (60% to65% Al 2 O 3 ) which stand on a230mm square,8mm thick base of the same material. The wall plates which act as a support for the test panel
20、are pierced with16mm holes at25mm centres to accommodate the end of the main and side heater elements. Behind the walls a narrow chamber, which accommodates the outer heater and lower peripheral heater, is formed on the inside from8mm thick alumino-silicate refractory(60%to65%Al 2 O 3 ) and on the o
21、utside from25mm thick insulating refractory of class150, complying with BS7225-1.1. The remainder of the brickwork surrounding the heater well and test panel chamber is made of insulating refractory of class130, complying with BS7225-1.1, with a final76mm thickness of lower temperature insulation, e
22、.g.diatomite brick, to give overall furnace dimensions of690mm 690mm 380mm height. The furnace is encased in sheet metal, and supported in a steel frame, e.g.angle iron. NOTEAlternate holes may be extended into vertical grooves to facilitate the removal of the heaters, as shown in Figure 2. The uppe
23、r and middle peripheral heaters and a supplementary heater, consisting of coiled electrical resistance wire(see5.3), are laid in grooves cut in the insulating refractory. The upper and middle peripheral heaters are positioned12mm and38mm below the top level of brickwork and33mm behind the wall of th
24、e test panel chamber on all four sides. The supplementary heater is50mm below the base of the heater well and laid in a continuous groove having the form of a parallel-sided spiral covering an area of approximately310mm 310mm.BS1902-5.5:1991 2 BSI 08-1999 5.3 Heaters, in which the elements of the ma
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