ImageVerifierCode 换一换
格式:PDF , 页数:4 ,大小:76.12KB ,
资源ID:463611      下载积分:10000 积分
快捷下载
登录下载
邮箱/手机:
温馨提示:
如需开发票,请勿充值!快捷下载时,用户名和密码都是您填写的邮箱或者手机号,方便查询和重复下载(系统自动生成)。
如填写123,账号就是123,密码也是123。
特别说明:
请自助下载,系统不会自动发送文件的哦; 如果您已付费,想二次下载,请登录后访问:我的下载记录
支付方式: 支付宝扫码支付 微信扫码支付   
注意:如需开发票,请勿充值!
验证码:   换一换

加入VIP,免费下载
 

温馨提示:由于个人手机设置不同,如果发现不能下载,请复制以下地址【http://www.mydoc123.com/d-463611.html】到电脑端继续下载(重复下载不扣费)。

已注册用户请登录:
账号:
密码:
验证码:   换一换
  忘记密码?
三方登录: 微信登录  

下载须知

1: 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。
2: 试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。
3: 文件的所有权益归上传用户所有。
4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
5. 本站仅提供交流平台,并不能对任何下载内容负责。
6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。

版权提示 | 免责声明

本文(ASTM C1171-2005(2011) Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories《耐火材料热冲击效应和热循环效应定量测量的标准试验方法》.pdf)为本站会员(diecharacter305)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ASTM C1171-2005(2011) Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories《耐火材料热冲击效应和热循环效应定量测量的标准试验方法》.pdf

1、Designation: C1171 05 (Reapproved 2011)Standard Test Method forQuantitatively Measuring the Effect of Thermal Shock andThermal Cycling on Refractories1This standard is issued under the fixed designation C1171; the number immediately following the designation indicates the year oforiginal adoption or

2、, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method is used for determining the strengthloss or reduction in conti

3、nuity, or both, of prism-shapedspecimens which are cut from refractory brick or shapes andsubjected to thermal cycling.1.2 The strength loss is measured by the difference inmodulus of rupture (MOR) between uncycled specimens andthe specimens subjected to thermal cycling.1.3 The reduction in structur

4、al continuity is estimated by thedifference in sonic velocity before and after thermal cycling.1.4 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered

5、 standard.1.5 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Re

6、ferenced Documents2.1 ASTM Standards:2C133 Test Methods for Cold Crushing Strength and Modu-lus of Rupture of RefractoriesC607 Practice for Coking Large Shapes of Carbon-BearingMaterialsC1419 Test Method for Sonic Velocity in Refractory Mate-rials at Room Temperature and Its Use in Obtaining anAppro

7、ximate Youngs ModulusE4 Practices for Force Verification of Testing MachinesE691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test Method3. Significance and Use3.1 This test method indicates the ability of a refractoryproduct to withstand the stress generated by su

8、dden changes intemperature.3.2 Because the recommended furnace temperature of thiscycling test is 1200C (2190F), this test method may notindicate the ability of a refractory product to withstand cyclingat higher or lower temperatures, especially if the existingmorphology of the refractory product ch

9、anges.3.3 This test method is useful for research and development,as well as for comparing refractory products. The precisionshould be considered when using this test for specificationpurposes.3.4 Ruggedness tests found the following variables to berugged:temperature +5Chot spacing12 to34 in. (12.77

10、 to 19 mm)cold spacing12 to34 in. (12.77 to 19 mm)center vs. end gripping of the barshotholdtime 10to15mincoldholdtime 10to15minoperator air speed 0 to 2 mi/h (0 to 3.2 km/h)initially cold or heated sampleslast in, first out (LIFO); or first in, first out (FIFO)removal from the furnacesawed or origi

11、nal surface as tensile face during MOR testingbar thickness 0.96 to 1.04 in. (24.5 to 26.4 mm)4. Apparatus4.1 Furnace, capable of maintaining 1200C (2190F) withrecovery rate of less than 5 min to temperature.4.2 Abrasive Saw, to cut the test specimens.1This test method is under the jurisdiction of A

12、STM Committee C08 onRefractories and is the direct responsibility of Subcommittee C08.02 on ThermalProperties.Current edition approved March 1, 2011. Published May 2011. Originallyapproved in 1991 as C1171 91. Last previous edition approved in 2005 asC1171 05. DOI: 10.1520/C1171-05R11.2For reference

13、d ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Con

14、shohocken, PA 19428-2959, United States.4.3 Dryer, capable of operating at 105C to 110C (220F to230F).4.4 Tongs or Fork, for handling hot specimens.4.5 Safety Equipment, such as gloves, face shields, andtinted safety glasses.4.6 Alumina Setter Brick, 90 %, placed 5 in. (127 mm) apartin and outside t

15、he furnace.4.7 Strength Testing MachineAny form of standard me-chanical or hydraulic compression testing machine that con-forms to the requirements of Practices E4 may be used.4.8 Sonic Velocity MachineTest apparatus3conforming tothe section on Test Apparatus of Test Method C1419.5. Sampling5.1 The

16、sampling shall consist of at least two bricks orshapes, or test samples made from monolithic refractories. Atleast ten test specimens shall be used. An equal number ofspecimens shall be taken from each of the bricks or shapes.5.2 Samples should be prefired to a temperature at least ashigh as the tes

17、t temperatures.6. Test Specimens6.1 Test specimens shall be 1 6132 in. by 1 6132 in. byapproximately 6 in. (25 6 0.8 by 25 6 0.8 by approximately152 mm). Note in the report if other specimen sizes are used.Specimens cut from brick shall have at least one original bricksurface. If cut shapes, the spe

18、cimens shall be taken parallel tothe longest dimension. For irregular shapes, all four longsurfaces of the specimens may be cut faces. Note this in thereport.6.2 Opposite faces of the specimen shall be approximatelyparallel, and adjacent faces shall be approximately perpendicu-lar.6.3 Measure the wi

19、dth and depth of the test specimen atmid-span to the nearest 0.01 in. (0.3 mm).6.4 Specimens should be visually crack- and flaw-free.6.5 Dry specimens to constant weight at 105 to 110C (220to 230F).6.6 Carbon-containing samples must be coked according toPractice C607 and must be wrapped in foil4duri

20、ng the cyclingprocedure. See Fig. 1 for the wrapping technique.7. Procedure7.1 Measure the sonic velocity along the length of each testspecimen according to Test Method C1419 and divide thespecimens into two equal groups on the basis of similardistributions of velocity measurements.7.2 Determine the

21、 cold modulus of rupture (using TestMethods C133) on one group, using three point loading with a5-in. (127-mm) span and a loading rate of 175 lbf/min (778N/mm).7.3 Preheat the test furnace to the test temperature of 12006 15C (2190 6 25F); preheating is usually done the nightprior to testing. Use of

22、 other test temperatures is allowed andmust be included as a deviation in the report.7.4 Place the test specimens from the remaining group intothe furnace spanning the setter brick and allow them to remainthere for 10 to 15 min. Then, remove the specimens from thefurnace and allow them to cool for 1

23、0 to 15 min while spanningthe setter brick in ambient air. This is considered one full cycle.Keep the specimens12 to34 in. (12.77 to 19 mm) apart duringeach 10 to 15 min interval. Repeat for a total of five full cycles.Cycle time in the furnace starts after recovery.7.5 Measure the sonic velocity (u

24、sing Test Method C1419)along the length of each cycled test specimen.7.6 Determine the cold modulus of rupture (using TestMethods C133) of each cycled test specimen from the secondgroup, using three point loading with a 5-in. (127-mm) spanand a loading rate of 175 lbf/min (778 N/mm) or 0.05 in./min(

25、1.27 mm/min).8. Calculation8.1 Calculate the percent sonic velocity loss of each speci-men as follows:V02 VFV03 100where:V0= original sonic velocity of each specimen, ft/s (m/s),andVF= sonic velocity of each specimen after testing, ft/s(m/s).8.2 Calculate the percent modulus of rupture strength loss

26、 ofeach specimen as follows:M02 MfM03 100where:M0= average modulus of rupture strength of the un-shocked specimens from the first group after testing,psi (MPa), and3A commercially available instrument, such as a James V-Meter, Pundit, orequivalent, is an acceptable test apparatus.4The sole source of

27、 supply of the Rao-Foil heat resistant foil (item number RAAMS 5592, 24-in. (610-mm) wide, 0.002-in. (0.05-mm) thick), known to thecommittee at this time is Rolled Alloys, 125 West Sterns Rd., Temperance, MI. Ifyou are aware of alternative suppliers, please provide this information to ASTMInternatio

28、nal Headquarters. Your comments will receive careful consideration at ameeting of the responsible technical committee1, which you may attend.FIG. 1 Foil Wrapping for Prism Shock Test (Not to Scale)C1171 05 (2011)2Mf= modulus of rupture strength of each specimen for thesecond group after testing, psi

29、 (MPa).9. Report9.1 Report the individual sonic velocity, modulus of rupture,percent sonic velocity loss, and percent modulus of rupturestrength loss values, as well as the average percent sonicvelocity loss, the average percent modulus of rupture loss, andthe furnace temperature. Report the number

30、of test specimensincluded in any modulus of rupture calculation. The reportshall also list any deviations from standard test requirements.10. Precision and Bias10.1 Interlaboratory Test DataAn interlaboratory round-robin test was conducted in 1988 among six laboratories onthree different types of re

31、fractory products. Each laboratorytested two specimens from each of five samples of each ofthree different types. Each laboratory determined sonic veloc-ity and modulus of rupture strength after cycling to 1200C.The components of variance from this study expressed asstandard deviation and relative s

32、tandard deviation are given inTable 1. Refer to Practice E691 for calculation of componentsof variance.10.2 PrecisionThe results of the interlaboratory study areshown in Table 1. The precision was found to vary based on thetype of material tested. A test result should be consideredsignificantly diff

33、erent at a confidence level of 95 % if therepeatability or reproducibility, or both, exceeds the precisiondata listed in Table 1.10.3 BiasNo justifiable statement of bias is possible sincetrue variables cannot be established by an acceptable referencemethod.11. Keywords11.1 modulus of rupture; refra

34、ctories; sonic velocity; ther-mal cyclingC1171 05 (2011)3ASTM International takes no position respecting the validity of any patent rights asserted in connection with any item mentionedin this standard. Users of this standard are expressly advised that determination of the validity of any such paten

35、t rights, and the riskof infringement of such rights, are entirely their own responsibility.This standard is subject to revision at any time by the responsible technical committee and must be reviewed every five years andif not revised, either reapproved or withdrawn. Your comments are invited eithe

36、r for revision of this standard or for additional standardsand should be addressed to ASTM International Headquarters. Your comments will receive careful consideration at a meeting of theresponsible technical committee, which you may attend. If you feel that your comments have not received a fair he

37、aring you shouldmake your views known to the ASTM Committee on Standards, at the address shown below.This standard is copyrighted by ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959,United States. Individual reprints (single or multiple copies) of this standar

38、d may be obtained by contacting ASTM at the aboveaddress or at 610-832-9585 (phone), 610-832-9555 (fax), or serviceastm.org (e-mail); or through the ASTM website(www.astm.org). Permission rights to photocopy the standard may also be secured from the ASTM website (www.astm.org/COPYRIGHT/).TABLE 1 Rel

39、ative PrecisionModulus of RuptureBrick Type MOR Lost, % CoefficientWithin Lab, %VariationBetween Labs, %RepeatabilityInterval, Percentof AverageReproducibilityInterval, Percentof Average70 % Alumina:Specimen 1Specimen 220.6819.4459.4353.0965.3366.51166.40148.64182.92186.2360 % MgO DB:Specimen 1Speci

40、men 259.4855.5225.7419.9229.3622.1872.0755.7882.2162.10MgOC:Specimen 1Specimen 223.5831.4946.1074.3196.8283.01129.08208.07271.09232.42Sonic VelocityBrick TypeSonic VelocityLost, %Coefficient WithinLab,%VariationBetween Labs, %RepeatabilityInterval, Percentof AverageReproducibilityInterval, Percentof Average70 % Alumina:Specimen 1Specimen 214.0313.7911.6217.3721.7423.3732.5348.6360.8766.9660 % MgO DB:Specimen 1Specimen 242.4144.1914.157.9819.1413.8539.6132.3553.5838.78MgOC:Specimen 1Specimen 222.6423.756.0838.6978.9094.7617.03108.33220.92265.33C1171 05 (2011)4

copyright@ 2008-2019 麦多课文库(www.mydoc123.com)网站版权所有
备案/许可证编号:苏ICP备17064731号-1