ASTM G76-2013 Standard Test Method for Conducting Erosion Tests by Solid Particle Impingement Using Gas Jets《通过用气体喷雾器的固体微粒冲击法实施侵蚀试验的标准试验方法》.pdf
《ASTM G76-2013 Standard Test Method for Conducting Erosion Tests by Solid Particle Impingement Using Gas Jets《通过用气体喷雾器的固体微粒冲击法实施侵蚀试验的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM G76-2013 Standard Test Method for Conducting Erosion Tests by Solid Particle Impingement Using Gas Jets《通过用气体喷雾器的固体微粒冲击法实施侵蚀试验的标准试验方法》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: G76 07G76 13Standard Test Method forConducting Erosion Tests by Solid Particle ImpingementUsing Gas Jets1This standard is issued under the fixed designation G76; the number immediately following the designation indicates the year of originaladoption or, in the case of revision, the year
2、 of last revision.Anumber in parentheses indicates the year of last reapproval.Asuperscriptepsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the determination of material loss by gas-entrained solid particle impingement erosion withjet
3、nozzle type erosion equipment. This test method may be used in the laboratory to measure the solid particle erosion of differentmaterials and has been used as a screening test for ranking solid particle erosion rates of materials in simulated serviceenvironments (1, 2).2 Actual erosion service invol
4、ves particle sizes, velocities, attack angles, environments, and so forth, that willvary over a wide range (3-5). Hence, any single laboratory test may not be sufficient to evaluate expected service performance.This test method describes one well characterized procedure for solid particle impingemen
5、t erosion measurement for whichinterlaboratory test results are available.1.2 UnitsThe values stated in SI units are to be regarded as standard. No other units of measurement are included in thisstandard (exceptions below).1.2.1 Exceptions: Table 1 uses HRB hardness. Footnote 7 and 11.2 use abrasive
6、 grit designations.1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to us
7、e.2. Referenced Documents2.1 ASTM Standards:3E122 Practice for Calculating Sample Size to Estimate, With Specified Precision, the Average for a Characteristic of a Lot orProcessG40 Terminology Relating to Wear and Erosion2.2 American National Standard:ANSI B74.10 Grading of Abrasive Microgrits43. Te
8、rminology3.1 Definitions:1 This test method is under the jurisdiction of ASTM Committee G02 on Wear and Erosion and is the direct responsibility of Subcommittee G02.10 on Erosion by Solidsand Liquids.Current edition approved July 1, 2007July 1, 2013. Published July 2007July 2013. Originally approved
9、 in 1983. Last previous edition approved in 20052007 asG7605.07. DOI: 10.1520/G0076-07.10.1520/G0076-13.2 The boldface numbers in parentheses refer to a list of references at the end of this standard.3 For referencedASTM standards, visit theASTM website, www.astm.org, or contactASTM Customer Service
10、 at serviceastm.org. For Annual Book of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.4 Available from American National Standards Institute (ANSI), 25 W. 43rd St., 4th Floor, New York, NY 10036.TABLE 1 Characteristics of Type 1020 Steel Reference
11、 MaterialAnnealed 15 min at 760C (1400F), air cooled.Annealed 900 s at 760C, air cooled.Hardness: HRB = 70 2.Chemical Composition:C = 0.20 0.01 wt %Mn = 0.45 0.10S = 0.03 0.01Si = 0.1 0.05P = 0.01 0.01This document is not an ASTM standard and is intended only to provide the user of an ASTM standard
12、an indication of what changes have been made to the previous version. Becauseit may not be technically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is
13、to be considered the official document.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.1.1 erosionprogressive loss of original material from a solid surface due to mechanical interaction between that surface anda fluid, a multicompo
14、nent fluid, or impinging liquid or solid particles.3.1.2 impingementa process resulting in a continuing succession of impacts between (liquid or solid) particles and a solidsurface.3.2 Definitions of Terms Specific to This Standard:3.2.1 erosion valuethe volume loss of specimen material divided by t
15、he total mass of abrasive particles that impacted thespecimen (mm3g1).3.2.2 Normalized Erosion Rateerosion value (mm3g1) of specimen material divided by erosion value (mm3g1) of referencematerial.4. Summary of Test Method4.1 This test method utilizes a repeated impact erosion approach involving a sm
16、all nozzle delivering a stream of gas containingabrasive particles which impacts the surface of a test specimen.Astandard set of test conditions is described. However, deviationsfrom some of the standard conditions are permitted if described thoroughly. This allows for laboratory scale erosion measu
17、rementsunder a range of conditions. Test methods are described for preparing the specimens, conducting the erosion exposure, andreporting the results.5. Significance and Use5.1 The significance of this test method in any overall measurements program to assess the erosion behavior of materials willde
18、pend on many factors concerning the conditions of service applications. The users of this test method should determine thedegree of correlation of the results obtained with those from field performance or results using other test systems and methods.This test method may be used to rank the erosion r
19、esistance of materials under the specified conditions of testing.6. Apparatus6.1 The apparatus is capable of eroding material from a test specimen under well controlled exposure conditions. A schematicdrawing of the exit nozzle and the particle-gas supply system is shown in Fig. 1. Deviations from t
20、his design are permitted;however, adequate system characterization and control of critical parameters are required. Deviations in nozzle design anddimensions must be documented. Nozzle length to diameter ratio should be 25:1 or greater in order to achieve an acceptableparticle velocity distribution
21、in the stream. The recommended nozzle5 consists of a tube about 1.5 mm inner diameter, 50 mm long,manufactured from an erosion resistant material such as WC, A12O3, and so forth. Erosion of the nozzle during service shall bemonitored and shall not exceed 10 % increase in the initial diameter.6.2 Nec
22、essary features of the apparatus shall include a means of controlling and adjusting the particle impact velocity, particleflux, and the specimen location and orientation relative to the impinging stream.6.3 Various means can be provided for introducing particles into the gas stream, including a vibr
23、ator-controlled hopper or ascrew-feed system. It is required that the system provide a uniform particle feed and that it be adjustable to accommodate desiredparticle flow values.5 The sole source of supply of the recommended nozzle (tungsten carbide) known to the committee at this time is Kennametal
24、 Inc., 1600 Technology Way, PO Box 231,Latrobe, PA 15650-0231. If you are aware of alternative suppliers, please provide this information to ASTM International Headquarters. Your comments will receive carefulconsideration at a meeting of the responsible technical committee,1 which you may attend.FIG
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