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    ASTM D3574-2016 Standard Test Methods for Flexible Cellular Materials&x2014 Slab Bonded and Molded Urethane Foams《挠性泡沫材料的标准试验方法 板条 粘合的和模制的聚氨酯泡沫》.pdf

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    ASTM D3574-2016 Standard Test Methods for Flexible Cellular Materials&x2014 Slab Bonded and Molded Urethane Foams《挠性泡沫材料的标准试验方法 板条 粘合的和模制的聚氨酯泡沫》.pdf

    1、Designation: D3574 11D3574 16Standard Test Methods forFlexible Cellular MaterialsSlab, Bonded, and MoldedUrethane Foams1This standard is issued under the fixed designation D3574; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the

    2、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.This standard has been approved for use by agencies of the U.S. Department of Defense.1. Scope*1.1 These test methods appl

    3、y to slab, bonded, and molded flexible cellular products known as urethane foams. Urethane foamis generally defined as an expanded cellular product produced by the interaction of active hydrogen compounds, water, andisocyanates.1.2 This standard does not purport to address all of the safety concerns

    4、, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use.1.3 The values stated in SI units are to be regarded as standard.NOTE 1There is no known

    5、ISO equivalent to this standard, however certain test methods in this standard have similar or equivalent ISO standardsand are listed in the scope of the individual test method sections.2. Referenced Documents2.1 ASTM Standards:2D412 Test Methods for Vulcanized Rubber and Thermoplastic ElastomersTen

    6、sionD624 Test Method for Tear Strength of Conventional Vulcanized Rubber and Thermoplastic ElastomersD737 Test Method for Air Permeability of Textile FabricsD3576 Test Method for Cell Size of Rigid Cellular PlasticsD3675 Test Method for Surface Flammability of Flexible Cellular Materials Using a Rad

    7、iant Heat Energy SourceE162 Test Method for Surface Flammability of Materials Using a Radiant Heat Energy SourceE662 Test Method for Specific Optical Density of Smoke Generated by Solid MaterialsE691 Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method3. Termi

    8、nology3.1 Definitions of Terms Specific to This Standard:3.1.1 bonded foama product produced by the adhesion of small pieces of urethane foam to each other with a suitable bondingagent.3.1.2 corethe internal portion of a molded part, free of skin.3.1.3 cored foama flexible cellular material containi

    9、ng a multiplicity of holes (usually, but not necessarily, cylindrical inshape), molded or cut into the material in some pattern, normally perpendicular to the foam rise direction, and extending part orall the way through the piece.3.1.4 convoluted foama flexible cellular material specially cut into

    10、sheets with “egg carton”-like dimples. The dimple peaksand bases can have varied shapes and dimensions.3.1.5 flexible cellular producta cellular organic polymeric material that will not rupture when a specimen 200 by 25 by 25mm is bent around a 25-mm diameter mandrel at a uniform rate of one lap in

    11、5 s at a temperature between 18 and 29C.1 These test methods are under the jurisdiction of ASTM Committee D20 on Plastics and are the direct responsibility of Subcommittee D20.22 on Cellular Materials -Plastics and Elastomers.Current edition approved Dec. 1, 2011Nov. 1, 2016. Published January 2012J

    12、anuary 2017. Originally approved in 1977. Last previous edition approved in 20082011 asD3574 08.D3574 11. DOI: 10.1520/D3574-11.10.1520/D3574-16.2 For referencedASTM standards, visit theASTM website, www.astm.org, or contactASTM Customer Service at serviceastm.org. For Annual Book of ASTM Standardsv

    13、olume information, refer to the standards Document Summary page on the ASTM website.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit may not be technically possible to ad

    14、equately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official document.*A Summary of Changes section appears at the end of this standardCopyright AST

    15、M International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.1.6 molded foama cellular product having the shape of the enclosed chamber in which it is produced by foaming.3.1.7 skinthe smooth surface layer of a molded foam product, formed by contact with the

    16、 mold or surfaces.3.1.8 slaba section of foam that is cut from the internal portion of a large bun.3.1.9 urethane foama flexible cellular product produced by the interaction of active hydrogen compounds, water, andisocyanates.3.1.10 viscoelastic foama specially formulated urethane foam characterized

    17、 by having slow recovery, low resilience, and highhysteresis loss.3.1.11 cell counta measurement used to characterize different types of foams based on the size of the individual cells in thefoam matrix, typically expressed as either average cell diameter or as the number of cells per linear distanc

    18、e. For measuring cellcounts, see Test Method D3576.3.1.12 clickabilitythe ability of a flexible cellular material to recover from the pinching effects of die cutting.4. Summary of Test Methods4.1 Unless otherwise specifically stated otherwise between the supplierand agreed upon by the purchaser and

    19、the purchaser,supplier, all tests shall be made in accordance with the methods specified in Sections 9 133150, which include test proceduresfor the following:Tests: SectionsTests: SectionsTest A Density Test 9 15Test B1 Indentation Force Deflection TestSpecifiedDeflection (IFD)16 22Test B2 Indentati

    20、on Residual Gauge Length TestSpecifiedForce (IRGL)23 29Test C Compression Force Deflection Test 30 36Test D Constant Deflection Compression Set Test 37 44Test E Tensile Test 45 52Test F Tear Resistance Test 53 60Test G Air Flow Test 61 67Test H Resilience (Ball Rebound) Test 68 75Test I1 Static Forc

    21、e Loss Test at Constant Deflection 77 85Test I2 Dynamic Fatigue Test, Roller Shear 86 94Test I2 Dynamic Fatigue Test by Roller Shear at Con-stant Force86 94Test I3 Dynamic Fatigue Test, Constant Force Pound-ing95 103Test I3 Dynamic Fatigue Test by Constant ForcePounding95 103Test I4 Dynamic Fatigue

    22、Test, Carpet Cushion 104 112Test I4 Dynamic Fatigue Test for Carpet Cushion 104 112Test I5 Dynamic Fatigue Test, Constant DeflectionPounding113121Test I5 Dynamic Fatigue Test by Constant DeflectionPounding113 121Aging Test J Steam Autoclave Aging 122 127Aging Test K Dry Heat Aging 128 133Aging Test

    23、L Wet Heat Aging 134 139Test M Recovery Time 140 145Test N Hysteresis Loss 146 150Appendixes:X1. Suggested Method for Specifying Flexible Urethane FoamsX2. Suggested Method of Construction for a Roller Shear Dynamic FlexFatigue ApparatusX3. Definitions of Terms Used to Describe the Force-Deflection

    24、Curve ofFlexible Urethane FoamX4. Suggested Tests for Determining Combustibility of Flexible UrethaneFoam. (The combustion tests are given for informational purposes onlyand are not part of the standard.)X5. Suggested Method for the Verification of an Inclined Oil ManometerX6. Suggested Method for M

    25、easuring Hysteresis Loss of Foams5. Significance and Use5.1 The test procedures provide a standard method of obtaining data for research and development, quality control, acceptanceand rejection under specifications, and special purposes.5.2 The data obtained by these test methods are applicable to

    26、the material under conditions of the particular test and are notnecessarily the same as obtained in other environments in use.D3574 1626. General Test Conditions6.1 Tests shall be conducted under known conditions of temperature and humidity or as entirely conducted at 23 6 2 C and50 6 10 % relative

    27、humidity, unless otherwise specified in the individual test procedure.method. The product shall be conditionedundeflected,conditioned, undeflected and undistorted at the temperature and humidity of test undistorted, at 23 6 2 C and 50 610 % relative humidity, for at least 12 h before being tested. I

    28、n cases of dispute, the tests shall be made at a temperature of 23 62C and in an atmosphere of 50 6 5 % relative humidity.tested, unless otherwise specified in the individual test method.6.2 It is recommended for referee purposes that all tests shall be performed 7seven days or more after the foam h

    29、as beenmanufactured.6.3 For mechanical tests, it is advisable to carefully select the proper load cell for each test. It is recommended that the expectedload for any individual test falls within 10-90 % of the load cell capacity.7. Sampling7.1 When possible, the completed manufactured product shall

    30、be used for the test specified. Representative samples of the lotbeing examined shall be selected at random, as required.7.2 When it is necessary or advisable to obtain specimens from the articles, as in those cases where the entire sample is notrequired or adaptable for testing, the method of cutti

    31、ng and the exact position from which specimens are to be taken shall bespecified. The density and the state of cure can vary in different parts of the finished product, especially if the article is ofcomplicated shape or of varying thickness, and these factors affect the physical properties of the s

    32、pecimens. Also, the density isaffected by the number of cut surfaces on the specimen. If a test specimen is die cut, ensure that the sides are not concavedconcaveand allow sufficient time for complete recovery of the thickness across the full width of the specimen before testing.7.3 When the finishe

    33、d molded product does not lend itself to testing or to the taking of specimens because of complicated shape,small size, metal or fabric inserts, adhesion to metal, or other reasons, molded test slabs, as agreed upon between thesupplierpurchaser and the purchasersupplier, shall be prepared.7.4 When d

    34、ifferences in test results arise due to the difficulty in obtaining suitable specimens from the finished parts, thesupplierpurchaser and the purchasersupplier shall agree upon an acceptable location from which to take the specimen.8. Measurement of Test Specimens8.1 Measure the length and width with

    35、 a scale, tape, or caliper gauge. Take care not to distort the foam.8.2 Measure thickness up to and including 25 mm using a height or electronic display gauge with a minimum foot area of 650mm2. Hold the pressure of the gauge foot to a maximum of 800 Pa (see Note 2). Thicknesses over 25 mm shall be

    36、measured witha height or electronic display gauge, a sliding caliper gauge, or as specified in 8.1. When a sliding caliper gauge is employed, makethe gauge setting with the gauge out of contact with the foam. Pass the specimen through the previously set gauge; the propersetting shall be the one when

    37、 the measuring faces of the gauge contact the surfaces of the specimen without compressing it.NOTE 2For soft foams having compression force deflection values less than 1.65 kPa, the pressure on the gauge or compression foot shall not exceed200 Pa.8.3 The scale, tape, or gauge shall be graduated so a

    38、s to permit measurements within 61 % of the dimensions to be measured.8.4 Unless otherwise specified, results shall be the mean of the measurements.TEST ADENSITY TEST9. Scope9.1 This test method covers determination of the density of uncored foam by calculation from the mass and volume of thespecime

    39、n. The density value thus obtained applies only to the immediate area from which the specimen has been taken. It doesnot necessarily relate to the bulk density of the entire molded pad.NOTE 3This standard is equivalent to ISO 845.10. Test Specimen10.1 Core DensityA representative specimen of regular

    40、 shape, circular or square without skins or densification lines, not lessthan 100010,000 mm3 (0.61 in.3) in volume, shall be cut from a portion free of voids and defects and as near as possible to thesection from which the tension and tear specimens were taken.10.2 Section DensityA representative sp

    41、ecimen with skins on the top and bottom surface measuring at least 0.1 m2 in area byfull-part thickness, shall be cut from an area free of voids and defects and as near as possible to the location from which the tensionand tear specimens were taken. When these dimensions are not possible, the larges

    42、t representative portion as agreed upon betweenthe supplierpurchaser and the purchasersupplier, shall be used.D3574 16311. Number of Specimens11.1 One specimen shall be tested, unless otherwise agreed upon by the supplierpurchaser and the purchaser.supplier.12. Procedure12.1 Determine the mass of th

    43、e specimen within 1 %.to a precision of 61 %.12.2 Determine the dimensions of the specimen in accordance with Section 8, and calculate the volume.13. Calculation13.1 Calculate the density in kilograms per cubic metre as follows:Density5M/V 3106 (1)where:M = mass of specimen, g, andV = volume of spec

    44、imen, mm3.14. Report14.1 Report the following information:14.1.1 Density to the nearest 0.1 kg/m3, and14.1.2 Type of specimen, core or section.15. Precision and Bias15.1 See Section 146151 for Precision and Bias statements.TEST B1 INDENTATION FORCE DEFLECTION TESTSPECIFIED DEFLECTION (IFD)16. Scope1

    45、6.1 This will be known as the indentation force deflection test and the results as the IFD values. This test consists of measuringthe force necessary to produce designated indentations in the foam product, for example, 25 and indentations at 25 and 65 %deflections. (See Appendix X3 for additional in

    46、formation).NOTE 4This standard and ISO 2439 address the same subject matter, but differ in technical content and results cannot be directly compared betweenthe two methods.17. Apparatus17.1 An apparatus having a flat circular indenter foot 200 +3/0 mm in diameter connected by means of a swivel joint

    47、 capableof accommodating the angle of the sample to a force-measuring device and mounted in such a manner that the product or specimencan be deflected at a speed of 50 to 250 mm/min. The apparatus shall be arranged to support the specimen on a level horizontalplate which is perforated with approxima

    48、tely 6.5-mm holes on approximately 20-mm centers to allow for rapid escape of air duringthe test. Special supportsupports for contoured molded pads shall be perforated in the same manner as the flat plate, unlessotherwise agreed upon between the supplierpurchaser and the purchaser.supplier. Pads lon

    49、ger than the base plate shall be supportedfrom distortion at the 4.5-N contact force.force (see 20.3).NOTE 5Equipment design and test fixturing can affect the results of this test.As an example, load cells placed below the support plate can experiencea bridging effect that likely does not occur in equipment which has the load cell mounted above the indenter foot.18. Test Specimen18.1 The test specimen shall consist of the entire product sample or a suitable portion of it, except that in no case shal


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