BS 1902-10 2-1994 Methods of testing refractory materials - Investment casting shell mould systems - Determination of permeability and standard air flow capacity at elevated temper.pdf
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1、BRITISH STANDARD BS 1902-10.2: 1994 Incorporating Technical Corrigendum No. 1 Methods of testing Refractory materials Part 10: Investment casting shell mould systems Section 10.2: Determination of permeability and standard air flow capacity at elevated temperatures UDC 666.76.017:539.217:621.744.56
2、BS 1902-10.2:1994 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 March 1994 BSI 15 July 2003 The following BSI references relate to the work on
3、 this standard: Committee reference RPM/1 Draft for comment 93/301276 DC ISBN 0 580 22773 1 Committees responsible 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 t
4、he following bodies were represented: British Ceramic Research Ltd. British Industrial Ceramic Manufacturers Association British Steel Industry Refractories Association of Great Britain Refractory Contractors Association Society of Glass Technology The following bodies were also represented in the d
5、rafting of the standard, through subcommittees and panels: British Investment Casting Trade Association Department of Trade and Industry (National Engineering Laboratory) Institute of British Foundrymen Amendments issued since publication Amd. No. Date Comments 14426 Technical Corrigendum No. 1 15 J
6、uly 2003 Change to Clause 10.1BS 1902-10.2:1994 BSI 15 July 2003 i Contents Page Committees responsible Inside front cover Foreword ii 1S c o p e 1 2 Definitions 1 3 Principle 1 4 Apparatus 1 5 Number and form of test pieces 6 6 Test procedure 7 7 Shell characterization: procedure A 7 8 Production/q
7、uality control procedure on a fired shell: procedure B 9 9 Production/quality control procedure on an unfired shell: procedure C 9 10 Calculation of results 10 11 Test report 11 Annex A (informative) Alternative calculation methods 12 Annex B (informative) Convention for tabular presentation of resu
8、lts 12 Annex C (informative) Convention of graphical presentation 13 Figure 1 Configuration of test equipment 2 Figure 2 Pressure-tight thermocouple/T-piece adaptor for thermocouple entry into air-stream 3 Figure 3 Detail of T-piece 4 Figure 4 Location of test piece 5 Figure 5 Sample former 7 Figure
9、 6 Four sample diameter measurement points 8 Figure C.1 Example of graphical presentation 14 Table 1 Test procedure: possible options 7 Table B.1 Temperature ramp phase 12 Table B.2 Temperature dwell phase at 1 200 C1 3BS 1902-10.2:1994 ii BSI 15 July 2003 Foreword This Section of BS 1902-10 has bee
10、n prepared under the direction of the Refractory Products Standards Policy Committee. It is one of two Sections covering the testing of investment casting shell mould systems, as follows. Section 10.1: Determination of resistance to deformation at elevated temperatures; Section 10.2: Determination o
11、f permeability and standard air flow capacity at elevated temperatures. To ensure the quality of castings manufactured by the investment casting process, the moulds used should have sufficient air flow capacity to obtain complete mould fill during casting. As the metal is poured into the mould, entr
12、apped air will be expelled through the mould walls to be replaced by the molten metal. Low air flow capacity will restrict this action and may result in incomplete filling of the mould. The significance of the values of standard air flow capacity (which is dependent on mould thickness) and permeabil
13、ity (which is independent of mould thickness) on the quality of the final casting will vary depending on, for example, the geometry of the mould, the temperature of the metal, the metalostatic head and the alloy to be cast. Generally speaking, the higher the standard air flow capacity and permeabili
14、ty the better, as long as other mould properties such as resistance to deformation are not adversely affected. This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. Compliance with a British Standard does not of it
15、self confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages 1 to 14, an inside back cover and a back cover. The BSI copyright notice displayed in this document indicates when the document was last issued.BS 1902-10
16、.2:1994 BSI 15 July 2003 1 1 Scope This Section of BS 1902-10 describes a method for determining the standard air flow capacity of investment casting shell moulds, and the inherent permeability of the shell material, at elevated temperatures. 2 Definitions For the purposes of this Section of BS 1902
17、-10 the following definitions apply. 2.1 permeability a measure of the ability of a material to allow air to pass through it which is the ratio of volumetric flowrate to the pressure gradient causing flow, at a given temperature NOTE 1 The value calculated is corrected for the viscosity of air and t
18、he geometry of the test piece. NOTE 2 This definition of permeability covers any fluid, but it is assumed that, in the context of investment casting, this fluid will predominantly be air. 2.2 air flow capacity a measure of the volumetric flowrate of air passing through a given shell mould at a given
19、 temperature 2.3 standard air flow capacity (SAF) a measure of the volumetric flowrate of air passing through a standard shell mould at a fixed gauge pressure of 10 kN/m 2(1.45 psig) at a given temperature 3 Principle The apparatus records the flow of air through a shell mould sample of known dimens
20、ions under a known pressure difference and at a given temperature. This information is used to calculate the permeability and the standard air flow capacity of the shell mould in question. 4 Apparatus 4.1 Test equipment, as shown in outline in Figure 1. NOTE If the pressure drop across the flow sens
21、or is very low the pressure regulator may be mounted before the flow sensor. This reconfiguration is acceptable because it does not have a significant effect on the regulation of air pressure at the test piece. 4.2 Air supply, which shall be clean and dry. The length of the pipework between the pres
22、sure regulator and the test piece shall be no more than 1 m, and the pipework shall have a bore of no less than 4 mm. NOTE This will minimize any drop in the regulated pressure up to the test piece. 4.3 Pressure regulator, capable of supplying regulated pressures in the range of 6.9 kN/m 2to 34.5 kN
23、/m 2 . The regulator shall be capable of maintaining a selected pressure to 3.5 kN/m 2throughout the period of the test. NOTE Pressure regulators are normally supplied in the UK with measuring scales graduated in pounds per square inch (psi). 1 psi = 6.9 kN/m 2 . 4.4 Thermal mass flow sensor, coveri
24、ng the range 0 ml/min to 2 000 ml/min. The sensor shall be accurate to 1 % of full scale deflection but shall not be used in any part of the range where the accuracy is less than 5 % of the true reading (this may prohibit the use of the sensor near the bottom of its range). NOTE 1 Certain materials
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