ASTM E1877-2015 Standard Practice for Calculating Thermal Endurance of Materials from Thermogravimetric Decomposition Data《计算自热解重量分解数据所得材料耐热性的标准实践规程》.pdf
《ASTM E1877-2015 Standard Practice for Calculating Thermal Endurance of Materials from Thermogravimetric Decomposition Data《计算自热解重量分解数据所得材料耐热性的标准实践规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1877-2015 Standard Practice for Calculating Thermal Endurance of Materials from Thermogravimetric Decomposition Data《计算自热解重量分解数据所得材料耐热性的标准实践规程》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E1877 15Standard Practice forCalculating Thermal Endurance of Materials fromThermogravimetric Decomposition Data1This standard is issued under the fixed designation E1877; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision
2、, 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 practice describes the determination of thermalendurance, thermal index, and relative thermal index
3、 fororganic materials using the Arrhenius activation energy gener-ated by thermogravimetry.1.2 This practice is generally applicable to materials with awell-defined thermal decomposition profile, namely a smooth,continuous mass change.1.3 The values stated in SI units are to be regarded asstandard.
4、No other units of measurement are included in thisstandard.1.4 There is no ISO standard equivalent to this practice.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
5、 safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E1641 Test Method for Decomposition Kinetics by Thermo-gravimetry Using the Ozawa/Flynn/Wall MethodE2550 Test Method for Thermal Stability by Thermogravi-me
6、tryE2958 Test Methods for Kinetic Parameters by Factor Jump/Modulated Thermogravimetry3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 failure, nchange in some chemical, physical,mechanical, electrical or other property of sufficient magnitudeto make it unsuitable for a particu
7、lar use.3.1.2 failure temperature (Tf), nthe temperature at which amaterial fails after a selected time.3.1.3 thermal index (TI), nthe temperature correspondingto a selected time-to-failure.3.1.4 relative thermal index (RTI), nthe temperature cor-responding to a selected time-to-failure when compare
8、d withthat of a control with proven thermal endurance characteristics.3.1.4.1 DiscussionThe TI and RTI are considered to be themaximum temperature below which the material resistschanges in its properties over a selected period of time. In theabsence of comparison data for a control material, a ther
9、malendurance (time-to-failure) of 60 000 h has been arbitrarilyselected for measuring TI and RTI.3.1.5 thermal endurance, nthe time-to-failure correspond-ing to a selected temperature. Also known as thermal lifetimeor time-to-failure.4. Summary of Practice4.1 The Arrhenius activation energy obtained
10、 from otherTest Methods (such as Test Methods E1641 and E2958, etc.) isused to construct the thermal endurance curve of an organicmaterial from which an estimate of lifetime at selected tem-peratures may be obtained.5. Significance and Use5.1 Thermogravimetry provides a rapid method for thedetermina
11、tion of the temperature-decomposition profile of amaterial.5.2 This practice is useful for quality control, specificationacceptance, and research.5.3 This test method is intended to provide an acceleratedthermal endurance estimation in a fraction of the time requirefor oven-aging tests. The primary
12、product of this test method isthe thermal index (temperature) for a selected estimatedthermal endurance (time) as derived from material decompo-sition.5.4 Alternatively, the estimated thermal endurance (time) ofa material may be estimated from a selected thermal index(temperature).5.5 Additionally,
13、the estimated thermal endurance of amaterial at selected failure time and temperature may be1This practice is under the jurisdiction of Committee E37 on Thermal Measure-ments and is the direct responsibility of Subcommittee E37.10 on Fundamental,Statistical and Mechanical Properties.Current edition
14、approved March 1, 2015. Published March 2015. Originallyapproved in 1997. Last previous edition approved in 2013 as E1877 13. DOI:10.1520/E1877-15.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandard
15、s volume information, refer to the standards Document Summary page onthe ASTM website.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1estimated when compared to a reference value for thermalendurance and thermal index obtained from el
16、ectrical ormechanical oven aging tests.5.6 This practice shall not be used for product lifetimepredications unless a correlation between test results and actuallifetime has been demonstrated. In many cases, multiplemechanisms occur during the decomposition of a material,with one mechanism dominating
17、 over one temperature range,and a different mechanism dominating in a different tempera-ture range. Users of this practice are cautioned to demonstratefor their system that any temperature extrapolations are tech-nically sound.6. Calculation6.1 The following values are used to calculate thermalendur
18、ance, estimated thermal life and failure temperature.6.1.1 The following definitions apply to 6.1 6.4:6.1.1.1 E = Arrhenius activation energy (J/mol),NOTE 1E may be obtained from another methods (such as TestMethods E1641 and E2958, etc.).6.1.1.2 R = universal gas constant (= 8.31451 J/(mol K),6.1.1
19、.3 = heating rate (K/min),NOTE 2 may obtained from Test Method E2550 and is typically 5K/min.6.1.1.4 TI = thermal index (K),6.1.1.5 a = Doyle approximation integral (taken from Table1),6.1.1.6 = constant conversion failure criterion,6.1.1.7 tf= estimated thermal endurance (thermal life) for aconstan
20、t conversion () taken as the failure criterion (min),6.1.1.8 Tc= failure temperature taken as temperature for thepoint of constant conversion for (K) obtained from TestMethod E2550,6.1.1.9 RTI = Relative Thermal Index (K),6.1.1.10 = standard deviation in activation energy (J/mol)obtained from Test M
21、ethods E1641 and E2958, etc.,NOTE 3The precision of the calculation in this practice are exponen-tially dependent on the uncertainty of activation energy value used. Careshould be taken to use only the most precise values of E.6.1.1.11 TI = thermal index (K),6.1.1.12 TI = standard deviation of the t
22、hermal index (K),6.1.1.13 RTI = standard deviation of the relative thermalindex (K),6.1.1.14 tf= standard deviation of the thermal endurance(min),6.1.1.15 tr= reference value for thermal endurance (min),and6.1.1.16 Tr= reference value for thermal index (K).6.2 Method 1 Thermal Index:6.2.1 Using the
23、activation energy (E) and failure tempera-ture (Tc), determine the value for E/RTc.6.2.2 Using the value of E/RTc, determine the value for theDoyle approximation intergral (a) by interpolation in Table 1.6.2.3 Select the thermal endurance (tf) and calculate itslogarithm.6.2.4 Substitute the values f
24、or E, R, log(tf), log(E/RTc) anda into Eq 1 to obtain the thermal index (TI) (3).3TI 5 E2.303 R log tf! 2 log$E R % 1a#! (1)6.2.5 Determine the relative standard deviation (TI/TI)using Eq 2.TITI1.2EE (2)6.2.6 Report the thermal index (TI) and its relative standarddeviation (TI/TI) along with the the
- 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:
- ASTME18772015STANDARDPRACTICEFORCALCULATINGTHERMALENDURANCEOFMATERIALSFROMTHERMOGRAVIMETRICDECOMPOSITIONDATA

链接地址:http://www.mydoc123.com/p-529704.html