ASTM E967-2003 Standard Practice for Temperature Calibration of Differential Scanning Calorimeters and Differential Thermal Analyzers《差示扫描量热仪与差热分析仪温度校准的标准实施规范》.pdf
《ASTM E967-2003 Standard Practice for Temperature Calibration of Differential Scanning Calorimeters and Differential Thermal Analyzers《差示扫描量热仪与差热分析仪温度校准的标准实施规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM E967-2003 Standard Practice for Temperature Calibration of Differential Scanning Calorimeters and Differential Thermal Analyzers《差示扫描量热仪与差热分析仪温度校准的标准实施规范》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 967 03Standard Test Method forTemperature Calibration of Differential ScanningCalorimeters and Differential Thermal Analyzers1This standard is issued under the fixed designation E 967; the number immediately following the designation indicates the year oforiginal adoption or, in the c
2、ase of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method describes the temperature calibrationof differential thermal analyzers
3、and differential scanningcalorimeters over the temperature range from 40 to +2500C.1.2 Computer or electronic based instruments, techniques,or data manipulation equivalent to this test method may also beused.1.3 SI units are the standard.1.4 This test method is similar to ISO standard 113571.1.5 Thi
4、s 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. Specific precau-tiona
5、ry statements are given in Section 7.2. Referenced Documents2.1 ASTM Standards:E 473 Terminology Relating to Thermal Analysis2E 968 Practice for Heat Flow Calibration of DifferentialScanning Calorimeters2E 1142 Terminology Relating to Thermophysical Proper-ties2E 1953 Practice for Description of The
6、rmal Analysis Appa-ratus32.2 ISO Standard:113571 Plastics-Differential Scanning Calorimetry (DSC)-Part 1: General Principles3. Terminology3.1 Specific technical terms used in this test method aredefined in Terminologies E 473 and E 1142.4. Summary of Test Method4.1 This test method consists of heati
7、ng the calibrationmaterials at a controlled rate in a controlled atmospherethrough a region of known thermal transition. The heat flowinto the calibration material or the difference of temperaturebetween the calibration material and a reference sample and areference material is monitored and continu
8、ously recorded. Atransition is marked by the absorption of energy by thespecimen resulting in a corresponding endothermic peak in theheating curve.NOTE 1Heat flow calibrations are sometimes determined in conjunc-tion with temperature calibration. Some differential scanning calorimeterspermit both he
9、at flow and temperature calibrations to be obtained from thesame experimental procedure.5. Significance and Use5.1 Differential scanning calorimeters and differential ther-mal analyzers are used to determine the transition temperaturesof materials. For this information to be meaningful in anabsolute
10、 sense, temperature calibration of the apparatus orcomparison of the resulting data to that of known standardmaterials is required.5.2 This test method is useful in calibrating the temperatureaxis of differential scanning calorimeters and differential ther-mal analyzers.6. Apparatus6.1 Apparatus sha
11、ll be of either type listed below:6.1.1 Differential Scanning Calorimeter (DSC), capable ofheating a test specimen and a reference material at a controlledrate and of automatically recording the differential heat flowbetween the sample and the reference material to the requiredsensitivity and precis
12、ion.6.1.1.1 A Furnace(s), to provide uniform controlled heatingor cooling of a specimen and reference to a constant tempera-ture or at a constant rate within the applicable temperaturerange of this test method.6.1.1.2 A Temperature Sensor, to provide an indication ofthe specimen temperature.1This te
13、st method is under the jurisdiction of ASTM Committee E37 on ThermalMeasurements and is the direct responsibility of Subcommittee E 37.01 on TestMethods and Practices.Current edition approved March 10, 2003. Published April 20038. Originallyap-proved in 1983. Last previous edition approved in 1997 a
14、s E 967 97.2Annual Book of ASTM Standards, Vol 14.02.3Available form American National Standards Institute, 11 W. 42nd St., 13thFloor, New York, NY 100361Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.6.1.1.3 Differential sensors, to
15、 detect a heat flow (power)difference between the specimen and reference.6.1.1.4 Test Chamber Environmenta means of sustaininga test chamber environment of nitrogen or other inert purge gasat a purge rate of 10 to 50 mL/min.6.1.1.5 A Temperature Controllercapable of executing aspecific temperature p
16、rogram by operating the furnace(s)between selected temperature limits at a rate of temperaturechange of 10K/min.6.1.1.6 A Recording Devicecapable of recording and dis-playing on the Y-axis and fraction of the heat flow signal (DSCcurve) including the signal noise as a function of any fractionof the
17、temperature (or time) signal on the X-axis including thesignal noise.6.1.2 Differential Thermal Analyzer (DTA), capable of heat-ing a test specimen and reference material at a controlled rateand of automatically recording the differential temperaturebetween sample and reference material both to the
18、requiredsensitivity and precision.6.2 Containers (pans, crucibles, vials, lids, closures, seals,etc.), that are inert to the specimen and reference materials andthat are of suitable structural shape and integrity to contain thespecimen and reference in accordance with the specific require-ments of t
19、his test methd.6.3 Nitrogen, or other inert purge gas supply.6.4 A Balance, to wiegh specimens or containers (pans,crucibles, vials, etc.), or both to 6 0.1 mg. The blance shouldhave a capacity greater than 20 mg.7. Precautions7.1 Toxic or corrosive effluents, or both, may be releasedwhen heating so
20、me material and could be harmful to personneland to apparatus.7.2 This test method assumes linear temperature indication.Care must be taken in the application of this test method toensure that calibration points are taken sufficiently closetogether so that linear temperature indication may be approx
21、i-mated. Linear temperature inications means that there exists alinear, or first order, dependence on the temperature determinedby the instruments temperature sensor on the true temperatureof the sample material in its container and that this relation isadequately expressed by Eq. 1.8. Calibration M
22、aterials8.1 For the temperature range covered by many applica-tions, the melting transition of 99.99 % pure materials inTable 1 may be used for calibration.9. Procedure9.1 Two Point Calibration:9.1.1 Select two calibration materials from Table 1, withmelting temperatures one above and one below the
23、temperaturerange of interest. The calibration materials should be as closeto the temperature range of interest as practical.9.1.2 Determine the apparent transition temperature foreach calibration material.9.1.2.1 Into a clean specimen holder, placea5to15-mgweighed amount of calibration material. Oth
24、er specimenmasses may be used but must be indicated in the report.9.1.2.2 Load the specimen into the instrument chamber,purge the chamber with dry nitrogen (or other inert gas) at aflow rate of 10 to 50 cm3/min throughout the experiment.9.1.2.3 Heat (or cool) the calibration material rapidly to30C b
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