ASTM E1970-2011 Standard Practice for Statistical Treatment of Thermoanalytical Data《热分析数据统计处理标准规程》.pdf
《ASTM E1970-2011 Standard Practice for Statistical Treatment of Thermoanalytical Data《热分析数据统计处理标准规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1970-2011 Standard Practice for Statistical Treatment of Thermoanalytical Data《热分析数据统计处理标准规程》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E1970 11Standard Practice forStatistical Treatment of Thermoanalytical Data1This standard is issued under the fixed designation E1970; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number
2、 in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice details the statistical data treatment used insome thermal analysis methods.1.2 The method describes the commonly encountered s
3、ta-tistical tools of the mean, standard derivation, relative standarddeviation, pooled standard deviation, pooled relative standarddeviation and the best fit to a straight line, all calculationsencountered in thermal analysis methods.1.3 Some thermal analysis methods derive the analyticalvalue from
4、the slope or intercept of a best fit straight lineassigned to three or more sets of data pairs. Such methods mayrequire an estimation of the precision in the determined slopeor intercept. The determination of this precision is not acommon statistical tool. This practice details the process forobtain
5、ing such information about precision.1.4 There are no ISO methods equivalent to this practice.2. Referenced Documents2.1 ASTM Standards:2E177 Practice for Use of the Terms Precision and Bias inASTM Test MethodsE456 Terminology Relating to Quality and StatisticsE691 Practice for Conducting an Interla
6、boratory Study toDetermine the Precision of a Test MethodE2161 Terminology Relating to Performance Validation inThermal AnalysisF1469 Guide for Conducting a Repeatability and Reproduc-ibility Study on Test Equipment for Nondestructive Testing3. Terminology3.1 DefinitionsThe technical terms used in t
7、his practiceare defined in Practice E177 and Terminologies E456 andE2161 including precision, relative standard deviation, repeat-ability, reproducibility, slope, standard deviation, thermoana-lytical, and variance.3.2 Symbols:3m = slopeb = interceptn = number of data sets (that is, xi,yi)xi= an ind
8、ividual independent variable observationyi= an individual dependent variable observationS = mathematical operation which means “the sumof all” for the term(s) following the operatorX = mean values = standard deviationspooled= pooled standard deviationsb= standard deviation of the line interceptsm= s
9、tandard deviation of the slope of a linesy= standard deviation of Y valuesRSD = relative standard deviationdyi= variance in y parameterr = correlation coefficientR = gage reproducibility and repeatability (see GuideF1469) an estimation of the combined variationof repeatability and reproducibility4sr
10、= within laboratory repeatability standard devia-tion (see Practice E691)sR= between laboratory repeatability standard devia-tion (see Practice E691)4. Summary of Practice4.1 The result of a series of replicate measurements of avalue are typically reported as the mean value plus someestimation of th
11、e precision in the mean value. The standarddeviation is the most commonly encountered tool for estimat-ing precision, but other tools, such as relative standard devia-tion or pooled standard deviation, also may be encountered inspecific thermoanalytical test methods. This practice describesthe mathe
12、matical process of achieving mean value, standarddeviation, relative standard deviation and pooled standarddeviation.4.2 In some thermal analysis experiments, a linear or astraight line, response is assumed and desired values areobtained from the slope or intercept of the straight line through1This
13、practice is under the jurisdiction of ASTM Committee E37 on ThermalMeasurements and is the direct responsibility of Subcommittee E37.10 on Funda-mental, Statistical and Mechanical Properties.Current edition approved Aug. 1, 2011. Published August 2011. Originallyapproved in 1998. Last previous editi
14、on approved in 2006 as E1970 06. DOI:10.1520/E1970-11.2For referenced 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.3Taylor
15、, J.K., Handbook for SRM Users, Publication 260-100, NationalInstitute of Standards and Technology, Gaithersburg, MD, 1993.4Measurement System Analysis, third edition, Automotive Industry ActionGroup, Southfield, MI, 2003, pp. 55, 177184.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C
16、700, West Conshohocken, PA 19428-2959, United States.the experimental data. In any practical experiment, however,there will be some uncertainty in the data so that results arescattered about such a straight line. The least squares method isan objective tool for determining the “best fit” straight li
17、nedrawn through a set of experimental results and for obtaininginformation concerning the precision of determined values.4.2.1 For the purposes of this practice, it is assumed that thephysical behavior, which the experimental results approximate,are linear with respect to the controlled value, and m
18、ay berepresented by the algebraic function:y 5 mx 1 b (1)4.2.2 Experimental results are gathered in pairs, that is, forevery corresponding xi(controlled) value, there is a corre-sponding yi(response) value.4.2.3 The best fit approach assumes that all xivalues areexact and the yivalues (only) are sub
19、ject to uncertainty.NOTE 1In experimental practice, both x and y values are subject touncertainty. If the uncertainty in xiand yiare of the same relative order ofmagnitude, other more elaborate fitting methods should be considered. Formany sets of data, however, the results obtained by use of the as
20、sumptionof exact values for the xidata constitute such a close approximation tothose obtained by the more elaborate methods that the extra work andadditional complexity of the latter is hardly justified.5,44.2.4 The best fit approach seeks a straight line, whichminimizes the uncertainty in the yival
21、ue.5. Significance and Use5.1 The standard deviation, or one of its derivatives, such asrelative standard deviation or pooled standard deviation, de-rived from this practice, provides an estimate of precision in ameasured value. Such results are ordinarily expressed as themean value 6 the standard d
22、eviation, that is, X 6 s.5.2 If the measured values are, in the statistical sense,“normally” distributed about their mean, then the meaning ofthe standard deviation is that there is a 67 % chance, that is 2in 3, that a given value will lie within the range of 6 onestandard deviation of the mean valu
23、e. Similarly, there is a 95 %chance, that is 19 in 20, that a given value will lie within therange of 6 two standard deviations of the mean. The twostandard deviation range is sometimes used as a test foroutlying measurements.5.3 The calculation of precision in the slope and intercept ofa line, deri
24、ved from experimental data, commonly is requiredin the determination of kinetic parameters, vapor pressure orenthalpy of vaporization. This practice describes how to obtainthese and other statistically derived values associated withmeasurements by thermal analysis.6. Calculation6.1 Commonly encounte
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
5000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ASTME19702011STANDARDPRACTICEFORSTATISTICALTREATMENTOFTHERMOANALYTICALDATA 分析 数据 统计 处理 标准 规程 PDF

链接地址:http://www.mydoc123.com/p-529951.html