ASTM D4273-2011 Standard Test Method for Polyurethane Raw Materials Determination of Primary Hydroxyl Content of Polyether Polyols《聚氨酯原料的标准试验方法 聚醚多元醇的原羟基含量的测定》.pdf
《ASTM D4273-2011 Standard Test Method for Polyurethane Raw Materials Determination of Primary Hydroxyl Content of Polyether Polyols《聚氨酯原料的标准试验方法 聚醚多元醇的原羟基含量的测定》.pdf》由会员分享,可在线阅读,更多相关《ASTM D4273-2011 Standard Test Method for Polyurethane Raw Materials Determination of Primary Hydroxyl Content of Polyether Polyols《聚氨酯原料的标准试验方法 聚醚多元醇的原羟基含量的测定》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D4273 11Standard Test Method forPolyurethane Raw Materials: Determination of PrimaryHydroxyl Content of Polyether Polyols1This standard is issued under the fixed designation D4273; the number immediately following the designation indicates the year oforiginal adoption or, in the case of
2、 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. Scope*1.1 Carbon-13 Nuclear Magnetic ResonanceSpectroscopy (carbon-13 NMR), measures the primary hy-drox
3、yl content of ethylene oxide-propylene oxide polyethersused in preparing flexible foams. It is best suited for polyetherswith primary hydroxyl contents of 10 to 90 %.1.2 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.3 This s
4、tandard 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.NOTE 1There is no known I
5、SO equivalent to this standard.2. Referenced Documents2.1 ASTM Standards:2D883 Terminology Relating to PlasticsE180 Practice for Determining the Precision of ASTMMethods for Analysis and Testing of Industrial and Spe-cialty Chemicals3E386 Practice for Data Presentation Relating to High-Resolution Nu
6、clear Magnetic Resonance (NMR) Spectros-copyE691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test Method3. Terminology3.1 The terminology in this test method follows the standardterminology defined in Practice E386 and in TerminologyD883.4. Summary of Test Method4
7、.1 The resonance peaks of the primary and secondaryhydroxyl carbons of the polyethers used in flexible urethanefoams are well-resolved in high-resolution carbon-13 NMRspectra. The peak areas are measured by the spectrometersintegration system, and the relative primary hydroxyl content isdetermined f
8、rom the ratio of the primary hydroxyl area to thetotal area of the primary and secondary hydroxyl resonancepeaks.5. Significance and Use5.1 Measurements of primary hydroxyl content are usefulfor providing information regarding the relative reactivities ofpolyols.6. Interferences6.1 Any primary hydro
9、xyl propoxylate carbons present(where the methylene carbon is next to the hydroxyl group andthe methine carbon is next to the ether oxygen) are integratedwith the secondary hydroxyl carbons and are therefore notincluded in the primary hydroxyl content as measured by thismethod.7. Equipment7.1 Pulse
10、Fourier-Transform NMR (FT-NMR) Spectrom-eter, with carbon-13 capability and a carbon-13 resonancefrequency of 15 MHz (proton resonance frequency of 60 MHz)or higher. The spectrometer is to have a minimum signal-to-noise ratio of 70:1, based on the largest aromatic peak of 90 %ethylbenzene sample tha
11、t has been pulsed one time using a 90pulse.7.2 NMR Sample Tubes, with outer diameters of 5 mm ormore.8. Reagents8.1 All reagents are to be NMR-grade, deuterated solvents.8.2 Deuterated Chloroform or Deuterated Acetone, contain-ing tetramethylsilane (TMS) as an internal standard.9. Standards9.1 This
12、test method does not require standards. To evaluatethe test method, standards can be prepared by mixing insolution commercially available poly(propylene oxide) and1This test method is under the jurisdiction of ASTM Committee D20 on Plasticsand is the direct responsibility of Subcommittee D20.22 on C
13、ellular Materials -Plastics and Elastomers.Current edition approved April 1, 2011. Published April 2011. Originallyapproved in 1983. Last previous edition approved in 2005 as D4273 - 05. DOI:10.1520/D4273-11.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Custome
14、r Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Withdrawn. The last approved version of this historical standard is referencedon www.astm.org.1*A Summary of Changes section appears at the end of this
15、standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.poly(ethylene oxide) diols. The molecular weight of thestandard would ideally be 300 or more since lower-molecular-weight polyols can contain structural configurations that aren
16、ot typical of polyethers used in flexible urethane foams.10. Preparation of Sample10.1 Mix 3 mL of polyol with 1.5 to 2 mL of deuteratedchloroform or deuterated acetone. Transfer an appropriateamount to the NMR tube.11. Instrument Preparation11.1 Prepare a decoupled carbon-13 NMR experiment, se-lect
17、ing appropriate parameters to obtain quantitative integra-tion of the peaks in the 67-60 ppm region.11.2 The settings presented here are examples that apply toa Bruker WP-80 spectrometer and a Varian AC 300 spectrom-eter. Instrument settings for other spectrometers vary. Consultthe manufacturers ope
18、rating manual.11.2.1 Typical Bruker WP-80 spectrometer parameters areas follows:Nucleus observed Carbon-13Spectral width 3000 HzPulse angle 30Data points 8KAcquisition time 1.36 sDelay between pulses 0.0 s1H decoupler Broadband11.2.2 Typical Varian AC 300 spectrometer parameters areas follows:Nucleu
19、s observed Carbon-13Spectral width 100 ppmPulse angle 90Data points 32KAcquisition time 2 sPulse delay 5 s1H decoupler on, or gated decoupling12. NMR Analysis12.1 Place the NMR tube containing the sample solutioninto the spectrometer probe. After a stable lock is obtained,optimize the field homogene
20、ity. Collect a sufficient number ofrepetitive scans for the analysis. The number required dependson the spectrometer, the molecular weight of the polyol, andthe functionality of the polyol. Some samples will requirerepetitive scanning for 30 min or less, while some will requirean hour or more. After
21、 scanning, transform the free inductiondecay (FID) to the frequency-domain spectrum. The primaryhydroxyl peaks at about 61 ppm and the secondary hydroxylpeaks at about 66 ppm are then expanded, amplified, andintegrated (the chemical shifts are based on TMS set at 0.0ppm). See Figs. 1-4 for examples
22、of spectra obtained for twodifferent polyols.13. Calculation13.1 Determine the areas of the primary and secondarypeaks from the integration curves. Calculate the mole percentprimary hydroxyl from the following equation:Primary hydroxyl, % 5ApAp 1 As3 100 (1)where:Ap = area of primary hydroxyl peaks,
23、 andAs = area of secondary hydroxyl peaks.The area of each peak type is in accordance with Fig. 1 andFig. 2.14. Report14.1 Report results to the nearest percent primary hydroxyl.FIG. 1 Primary Hydroxyl Carbon Peaks of 3500 MW Triol (52 % Primary)D4273 112FIG. 2 Secondary Hydroxyl Carbon Peaks of 350
24、0 MW Triol (52 % Primary)FIG. 3 Primary Hydroxyl Carbon Peaks of 5500 MW Triol (78 % Primary)FIG. 4 Secondary Hydroxyl Carbon Peaks of 5500 MW Triol (78 % Primary)D4273 11315. Precision and Bias415.1 Table 1 is based on a round robin conducted in 1979 inaccordance with Practice E691, involving six p
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