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    ASTM C1185-2008(2012) Standard Test Methods for Sampling and Testing Non-Asbestos Fiber-Cement Flat Sheet Roofing and Siding Shingles and Clapboards《无石棉纤维水泥平面薄板、屋面板、侧墙面板和护墙板取样和试验用标.pdf

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    ASTM C1185-2008(2012) Standard Test Methods for Sampling and Testing Non-Asbestos Fiber-Cement Flat Sheet Roofing and Siding Shingles and Clapboards《无石棉纤维水泥平面薄板、屋面板、侧墙面板和护墙板取样和试验用标.pdf

    1、Designation: C1185 08 (Reapproved 2012)Standard Test Methods forSampling and Testing Non-Asbestos Fiber-Cement FlatSheet, Roofing and Siding Shingles, and Clapboards1This standard is issued under the fixed designation C1185; the number immediately following the designation indicates the year oforigi

    2、nal adoption or, in the case of 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. Scope1.1 These test methods cover sampling and testing ofnon-asbestos fib

    3、er-cement flat sheets, roofing shingles, sidingshingles, and clapboards. These products may be smooth orsurface textured. These test methods are utilized in evaluatingproducts cited in Specifications C1186, C1225, C1288, andC1325.1.2 The values stated in inch-pound units are to be regardedas standar

    4、d. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered standard.1.3 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 stand

    5、ard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2C20 Test Methods for Apparent Porosity, Water Absorption,Apparent Specific Gravity, and Bulk Density of BurnedRefractory Brick

    6、and Shapes by Boiling WaterC1154 Terminology for Non-Asbestos Fiber-Reinforced Ce-ment ProductsC1186 Specification for Flat Fiber-Cement SheetsC1225 Specification for Fiber-Cement Roofing Shingles,Shakes, and SlatesC1288 Specification for Discrete Non-Asbestos Fiber-Cement Interior Substrate SheetsC

    7、1325 Specification for Non-Asbestos Fiber-Mat Rein-forced Cementitious Backer Units2.2 ISO Standards:ISO 390 Product in Fiber Reinforced Cement Sampling andInspection3ISO 2859-0 Sampling Procedures for Inspection byAttributesPart 0: Introduction to the ISO 2859AttributeSampling System3ISO 2859-1 Sam

    8、pling Procedures for Inspection byAttributesPart 1: Sampling Schemes Indexed byAccep-tance Quality Limit (AQL) for Lot-by-Lot Inspection3ISO 3951 Sampling Procedures and Charts for Inspection byVariables for Percent Nonconforming33. Terminology3.1 Definitions:3.1.1 Refer to Terminology C1154.3.1.2 d

    9、ensitythe mass per unit volume expressed inpounds per cubic foot (lb/ft3) or kilograms per cubic metre(kg/m3).3.1.3 flexural strengththe average flexural strength is theaverage of two perpendicular breaks expressed in pound-forceper square inch (megapascals) as calculated from the averagebreaking lo

    10、ad of wet or equilibrium test specimens, loaded assimple beams, with the load applied at the center.3.1.4 heat-rain sheetsfixed to a building frame in accor-dance with the manufacturers recommended installation prac-tices. The sheeted frame is then subjected to alternate wettingand heating cycles an

    11、d any structural alteration of the sheetcaused by the test is reported.3.2 Definitions of Terms Specific to This Standard:3.2.1 dimensionsfor the purpose of these test methods, thelength, width and thickness of fiber-cement flat sheets, roofingshingles, siding shingles, and clapboard are measured un

    12、derspecified conditions.3.2.2 moisture contentfor the purpose of these testmethods, the percentage of moisture content of the fiber-cement product when conditioned at 50 6 5 % relativehumidity and a temperature of 73 6 4F (23 6 2C).1These test methods are under the jurisdiction of ASTM Committee C17

    13、 onFiber-Reinforced Cement Productsand are the direct responsibility of SubcommitteeC17.02 on Non-Asbestos Fiber Cement Products.Current edition approved Nov. 1, 2012. Published November 2012. Originallyapproved in 1991. Last previous edition approved in 2008 as C1185 08. DOI:10.1520/C1185-08R12.2Fo

    14、r 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.3Available from American National Standards Institute (ANSI), 25

    15、 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.2.3 moisture movementin these test methods, the linearvariation in length and width of test specimen, with change inmoist

    16、ure content.3.2.4 water absorptionfor the purpose of these testmethods, the increase in mass of the test specimen expressed asa percentage of its dry mass after immersion in water for aspecified period of time as prescribed.4. Sampling and Inspection4.1 Employ sampling procedures providing an accept

    17、ablequality level (AQL) of 4 % at a 90 % confidence level with asample size given by special inspection level S3, except wherespecific sampling is required by particular test procedures.4.2 Acceptable Quality Level (AQL)The acceptable qual-ity level (AQL) may be defined as follows:4.2.1 The maximum

    18、percent nonconforming that, for pur-poses of sampling inspection, can be considered satisfactory asa process or long-term average, and4.2.2 A quality level which corresponds to relatively highprobability (commonly 90 %) of acceptance.4.3 Sample SizeThe sample size is determined accordingto the inspe

    19、ction lot size by the special inspection level S3 ofISO 2589-1 where the inspection is by attributes or specialinspection level S3 of ISO 3951 where the inspection is byvariables.NOTE 1When a manufacturers process satisfies a sampling schemewith an AQL of 4 % then this indicates that better than 96

    20、% of theinspected production exceeds the specifications. Under this type ofspecification the consumer is provided the protection and confidence of aclearly defined lower boundary. This would not be true if acceptance werebased solely on the average value of the measured property. Examples ofsampling

    21、 schemes which may be used can be found in documents such asISO 390, ISO 2859-1, or ISO 3951. Other sampling schemes may be used.Inspection by attributes is a method which consists of determining, forevery item of a sample, the presence or absence of a certain qualitativecharacteristic (attribute) w

    22、ith respect to the applicable specification. It is,in essence, a pass-fail inspection which determines the number of items ina sample that do conform to the specification and the number of those thatdo not conform. An attribute could be a dimensional measurement, or aflexural strength value, or othe

    23、rs that are described in these test methods.Inspection by variable is a method which consists of measuring aquantitative characteristic for each item in a sample. Conformance withthe applicable specification is determined from the mean values of themeasured properties and the statistical variations

    24、of these values aboveand below the mean. These procedures detail sampling plans to suit allcommon sampling situations. The sampling plans specify the number ofspecimens to be taken from each batch and the acceptance/rejectioncriteria. The specified inspection levels have been selected to suitfiber-c

    25、ement products, to balance the cost of assessment against confi-dence in results commensurate with this industry.5. Flexural Strength (Modulus of Rupture)5.1 Significance and UseThis is a routine test measuring aprimary product characteristic used for product grading.5.2 Procedure:5.2.1 Preparation

    26、of Test Specimens, (Flat Sheets)Cut apair of specimens, each 6 6116 in. (152 6 1.6 mm) in widthand 12 6116 in. (305 6 1.6 mm) in length, from the interiorarea of each sample sheet in such a manner that no edge ofspecimen is less that 3 in. (76 mm) from the original edges ofthe sheet. The longer dime

    27、nsion of one of the specimens ofeach pair shall be parallel to the length of the sheet (that is,parallel with the fiber lay), and the other shall be at right anglesto it.5.2.2 Preparation of Test Specimens, (Roofing Shingles,Siding Shingles, and Clapboards)Cut a single specimen 6 6116 in. (1526 1.6

    28、mm) in width and 12 6116 in. (305 6 1.6mm) in length from each unit. Cut one half of the specimens insuch a manner that the 12-in. (305-mm) dimension of eachspecimen is parallel to one edge of the shingle or clapboardunit; cut one half of the specimens at right angles thereto.NOTE 2Alternate test sp

    29、ecimen dimensions and span may be usedprovided that the ratio of the test span to specimen thickness is not lessthan 18, and that the actual span used be reported.5.2.3 Conditioning:5.2.3.1 Equilibrium ConditioningPlace the testspecimens, for at least four days thickness19.4 ft2(1.8 m2) for 2 specim

    30、ens,(2) Area per sheet 19.4 ft2(1.8 m2) or a sufficient numberof specimens to cover an area of 37.7 ft2(3.5 m2), and(3) If the combined area of the sheets exceeds 37.7 ft2(3.5m2) the sheet lengths may be reduced to provide a test area notless than 37.5 ft2(3.5 m2).14.3.1.5 Avoid any significant exte

    31、rnal air flow during thetest period.14.3.2 Fix the sample sheets to the test frame, observing allmanufacturers recommendations. The edge fixing distanceshall be the minimum allowed. The center distance betweenfixing shall be the maximum allowed. Include all weather-proofing and other attachments nor

    32、mally specified in theassembly. Where sheets are recommended to have overlappingjoints, assemble the test frame accordingly. Set the sheeted testframe in a vertical position. Provide a water spray station towet one surface, along with a heating station, to provideuniform radiant heat. Subject the sh

    33、eeted test frame to thenumber of cycles specified in the applicable standard specifi-cation meeting the following requirements.14.3.3 Water spray at a rate of 1 gal/min for a period of 2 h,55 min, water temperature not to exceed 86F (30C),14.3.4 Pause for a period of 5 min,14.3.5 Radiant heat to giv

    34、e a measurement plate (1) tem-perature across the complete test frame surface of 140 6 9F(60 6 5C) for a period of 2 h, 55 min, and14.3.6 Pause for a period of 5 min.NOTE 6A measurement plate is defined as an aluminum plate 2 by 2in. (50 by 50 mm) of 0.040-in. (1-mm) thickness having a black mattefi

    35、nish. A suggested method for obtaining a black matte finish is tocompletely blacken the measurement plate with soot from a burningcandle. The measurement plate shall have a thermal couple or similardevice attached to the surface of the plate.14.4 ReportOn completion of the final test cycle, inspectt

    36、he sheets with the unaided eye and report any damage orstructural alteration caused by the test.14.5 Precision and BiasNo statement is made about eitherthe precision or bias of Test Methods C1185 for heat/rainwall structures, since the result merely states whether there isconformance to the criteria

    37、 for success specified in the proce-dure.15. Heat/RainRoof Structures15.1 Significance and UseThis test is used to assess theinstalled performance of fiber cement roofing products undercyclic changes in moisture content.15.2 Fiber cement roofing materials are fastened to a roofingframe in accordance

    38、 with the manufacturers recommendedinstallation practices. The assembled frame is then subjected toalternate wetting and heating cycles, and any structural altera-tion of the roofing materials caused by the test is reported.15.3 Test Specimens Fiber cement roofing product speci-mens used for the tes

    39、t shall be drawn at random from the stockof finished products. The number of specimens required willdepend upon the manufacturers installation recommendationsand the size of the assembly to be tested.15.4 Procedure:15.4.1 Assemble a roof test frame according to the manu-facturers recommendations tha

    40、t simulates the rigidity of thefield installation. The construction of the frame should be aminimum of 47.7 ft2(4.5 m2).15.4.1.1 Avoid any significant external air flow during thetest period.15.4.2 Fix the roofing materials to the test frame, observingall manufacturers recommendations. The head lapp

    41、ing dis-tance shall be the minimum allowed. All weatherproofing andother attachments normally specified shall be included in theassembly.The assembled test frame may be set in a plane downto a minimum slope of one in four, or alternatively may be setin a vertical position. A water spray station is p

    42、rovided to wetthe top weather surface, along with a heating station to provideuniform radiant heat. The sheeted test frame should be sub-jected to the number of cycles specified in the applicablestandard specification meeting the following requirements.15.4.2.1 Water spray at a rate of 1 gal/min (4

    43、L/min) for aperiod of 2 h, 55 min, with a water temperature not to exceed86F (40C).15.4.2.2 Pause for a period of 5 min.15.4.2.3 Radiant heat to give a measurement plate (1)temperature across the complete test frame surface of 140 69F (60 6 5C) for a period of 2 h and 55 min.15.4.2.4 Pause for a per

    44、iod of 5 min.NOTE 7A measurement plate is defined as an aluminum plate 2 by 2in. (50 by 50 mm) of 0.040-in. (1-mm) thickness having a black mattefinish. A suggested method for obtaining a black matte finish is tocompletely blacken the measurement plate with soot from a burningcandle. The measurement

    45、 plate shall have a thermal couple or similardevice attached to the surface of the plate.15.5 ReportOn completion of the final test cycle, inspectthe roofing products with the unaided eye and report anydamage or structural alteration caused by the test.C1185 08 (2012)715.6 Precision and BiasNo state

    46、ment is made about eitherthe precision or bias of Test Methods C1185 for heat/rainroof structures, since the result merely states whether there isconformance to the criteria for success specified in the proce-dure.16. Freeze/ThawRoofing Products16.1 Significance and UseThis test investigates the deg

    47、-radation of the product due to exposure to repeated freeze-thawcycles. This test is a comparative one based on the percentageof strength reduction after a specified number of cycles.16.2 Test SpecimensTwenty test specimens shall be cutfrom ten separate pieces of product. Product to be tested shallb

    48、e conditioned for 28 days at 73 6 4F (23 6 2C) and arelative humidity of 50 6 5 %. The specimens shall be 12 in.(305 mm) long and 6 in. (152 mm) wide or one-half the widthof an individual piece, if the piece is less than 12 in. wide. Cuttwo specimens from each piece of product, so that at least 50%

    49、of the top surface area will come form the area of the piecethat would normally be exposed, as specified in the manufac-turers installation instructions. There shall be at least one cutedge of 12 in. that exposes the substrate on each specimen.Label each piece to identify which two pieces were cut from aspecific sample.16.3 Procedure:16.3.1 Divide the test specimens from each piece to formtwo sets of ten specimens each. One set is for control and oneis for freeze/thaw testing. Control specimens shall be retainedin a freezer at


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