ASTM C948-1981(2001) Standard Test Method for Dry and Wet Bulk Density Water Absorption and Apparent Porosity of Thin Sections of Glass-Fiber Reinforced Concrete《玻璃纤维增强混凝土薄片的干和湿体密度.pdf
《ASTM C948-1981(2001) Standard Test Method for Dry and Wet Bulk Density Water Absorption and Apparent Porosity of Thin Sections of Glass-Fiber Reinforced Concrete《玻璃纤维增强混凝土薄片的干和湿体密度.pdf》由会员分享,可在线阅读,更多相关《ASTM C948-1981(2001) Standard Test Method for Dry and Wet Bulk Density Water Absorption and Apparent Porosity of Thin Sections of Glass-Fiber Reinforced Concrete《玻璃纤维增强混凝土薄片的干和湿体密度.pdf(2页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C 948 81 (Reapproved 2001)Standard Test Method forDry and Wet Bulk Density, Water Absorption, and ApparentPorosity of Thin Sections of Glass-Fiber ReinforcedConcrete1This standard is issued under the fixed designation C 948; the number immediately following the designation indicates the
2、 year oforiginal adoption or, in the case 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 covers the determinations of dry
3、andwet bulk density, water absorption, and apparent porosity ofthin sections of glass-fiber reinforced concrete.NOTE 1This test method does not involve a determination of absolutespecific gravity. Therefore, such pore space as may be present in thespecimen that is not emptied during the specified dr
4、ying or is not filledwith water during the specified immersion is considered “impermeable”and is not differentiated from the solid portion of the specimen for thecalculations, especially those for percent voids.Depending upon the pore size distribution and the pore entry radii of thespecimen and on
5、the purposes for which the test results are desired, theprocedures of this method may be adequate, or they may be insufficientlyrigorous. In the event that it is desired to fill more of the pores than willbe filled by immersion, various techniques involving the use of vacuumtreatment or increased pr
6、essure may be used. If a rigorous measure of totalpore space is desired, this can only be obtained by determining absolutespecific gravity by first reducing the sample to discrete particles, each ofwhich is sufficiently small so that no impermeable space can exist withinany of the particles.1.2 This
7、 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.2. Significance and Use
8、2.1 Material properties determined by this test method areuseful for quality control of glass-fiber reinforced concrete,ascertaining compliance with governing specifications, andresearch and development.3. Apparatus3.1 Balance, sensitive to 0.025 % of the mass of thespecimen, suitable for determinin
9、g the mass of the specimen inwater as well as in air.3.2 Container, suitable for immersing the specimen andsuitable wire for suspending the specimen in water.4. Sampling4.1 Sampling method shall be in accordance with govern-ing specifications.5. Test Specimen5.1 Whenever possible, the sample shall c
10、onsist of indi-vidual portions of glass-fiber reinforced concrete, each to betested separately. The individual portions may be pieces of anydesired shape or size, except that the volume of each portionshall be not less than 25 cm3(or 50 g nominal mass glass-fiberreinforced concrete, approximately 1.
11、7 oz, and shall not begreater than 650 cm3or 1300 g nominal glass-fiber reinforcedconcrete, approximately 46 oz); and each portion shall be freeof observable cracks, fissures, or shattered edges.6. Procedure6.1 Immersed Mass and Saturated SurfaceDry Mass AfterImmersion:6.1.1 Immerse the specimen in
12、water at approximately 21C(70F) for not less than 24 h and until two successivedeterminations of mass of the surface-dried specimens atintervals of 2 h show an increase in mass of less than 0.5 % ofthe heavier mass. Determine the mass of the specimen sus-pended in water to the nearest 0.01 g (0.0003
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