AASHTO T 332-2007 Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe《利用特定离子探针测定混凝土和混凝土材料中氯离子的标准试验方法》.pdf
《AASHTO T 332-2007 Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe《利用特定离子探针测定混凝土和混凝土材料中氯离子的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《AASHTO T 332-2007 Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe《利用特定离子探针测定混凝土和混凝土材料中氯离子的标准试验方法》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe AASHTO Designation: T 332-07 (2016)1 Release: Group 1 (April 2016) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.
2、C. 20001 TS-3c T 332-1 AASHTO Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe AASHTO Designation: T 332-07 (2016)1Release: Group 1 (April 2016) 1. SCOPE 1.1. This method covers the procedures for determining acid-soluble chloride ions in
3、 concrete and concrete mix ingredients. 1.2. The age of concrete, mortar, or hydrated portland cement at the time of sampling will have an effect on the acid-soluble chloride ion content. Therefore, unless early age studies are desired, it is recommended that the material be well cured and at least
4、28 days of age before sampling. 1.3. This standard may involve hazardous materials, operations, and equipment. This standard does not purport to address all of the safety concerns associated with its use. It is the responsibility of the user of this procedure to establish appropriate safety and heal
5、th practices and to determine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 92, Wire-Cloth Sieves for Testing Purposes M 231, Weighing Devices Used in the Testing of Materials T 260, Sampling and Testing for Chloride Ion in Concrete and Co
6、ncrete Raw Materials 2.2. ASTM Standards: D1193, Standard Specification for Reagent Water E1, Standard Specification for ASTM Liquid-in-Glass Thermometers 3. SUMMARY OF TEST METHOD 3.1. A 3.0-g drilled concrete powder sample is digested in 20 mL of an acid digestion solution and stabilized by the ad
7、dition of 80 mL of a stabilizing solution. Millivolt readings, taken for the sample solution using a specific chloride ion probe, are converted mathematically into equivalent total percent chloride content or chloride content in kg/m3(lb/yd3) of concrete. 4. INTERFERENCES 4.1. The operational respon
8、se of the specific ion electrode is subject to interference by the presence of OH, S2, Br, I, and CNin the measured solution and is based on the electrode manufacturers allowable chloride interference ratio. 2016 by the American Association of State Highway and Transportation Officials.All rights re
9、served. Duplication is a violation of applicable law.TS-3c T 332-2 AASHTO 4.2. Sulfides are known to interfere with the determination of chloride in solution. This test procedure is, therefore, unsuitable for determining the chloride content of concrete containing mineral aggregates containing signi
10、ficant quantities of pyrite. 5. SIGNIFICANCE AND USE 5.1. This method provides a rapid means of sampling and testing for total chloride ions in concrete in the field. 6. APPARATUS 6.1. Impact HammerA heavy-duty rotary impact hammer with a drilling stop gauge is used. See Figures 1 through 3. Figure
11、1Overall View of the Drilling Stop Gauge to Be Mounted on the Impact Hammer 2016 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 332-3 AASHTO Note: All dimensions shown in millimeters unless otherwise
12、 noted. Figure 2Details of the Split Ring Collar for the Drilling Stop Gauge Note: All dimensions shown in millimeters unless otherwise noted. Figure 3Details of the Depth Rods for the Drilling Stop Gauge 2016 by the American Association of State Highway and Transportation Officials.All rights reser
13、ved. Duplication is a violation of applicable law.TS-3c T 332-4 AASHTO 6.2. BitA vacuum bit with a diameter equivalent to 1.5 times the maximum aggregate size in the concrete is used. A 28-mm (1.25-in.) bit size is recommended for a maximum coarse aggregate size of 19 mm (0.75 in.). The bit grinds t
14、he concrete to a fineness of 99 percent passing the 850-m (No. 20) sieve conforming to M 92. The finely ground powder is drawn into the collection unit through a coaxial hole in the bit. 6.3. Sample Collection UnitA cylindrical polymethyl methacrylate vacuum chamber is connected to the carbide bit t
15、hrough a vacuum hose for sample collection. Vacuum is provided by a 2.25-HP wet/dry shop vacuum unit. Figures 4 through 8 present the details of the sample collection unit that is to be attached to the wet/dry shop vacuum unit. 6.4. FilterAn inexpensive coffee filter is adequate for collecting the p
16、owdered concrete samples in the polymethyl methacrylate chamber. 6.5. Plastic Bottles/ContainersWidemouth polypropylene bottles with screw caps in the following two sizes are needed: 6.5.1. For calibration solutions and for storing powdered concrete samples: 30 mL. 6.5.2. For digestion solution: 125
17、 mL. 6.6. Weighing Papers76 by 76 mm (3 by 3 in.) weighing papers are needed for determining the mass of the powdered concrete samples. 6.7. SpatulaA stainless steel small spoon spatula is needed for transferring small quantities of the powdered concrete samples from the plastic container for mass d
18、eterminations. 6.8. BalancesAn electronic balance sensitive to 0.1 g is needed to determine the mass of the specimens. An electronic balance sensitive to 0.0001 g is needed to determine the mass of sodium chloride for the calibration and stabilizing solutions. 2016 by the American Association of Sta
19、te Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 332-5 AASHTO Legend Name 1. Collection cylinder 2. Ring 3. Vacuum cylinder 4. Cap 5. Clamp Note: All dimensions shown in millimeters unless otherwise noted. Figure 4Sample Collection Uni
20、t 2016 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 332-6 AASHTO Details of Cap Name Required Material 1. Entry cylinder 1 Plexiglas 2. Cap base 1 Plexiglas Note: All dimensions shown in millimeter
21、s unless otherwise noted. Figure 5Sample Collection Unit (Details of Cap) Details of Ring Name Required Material 1. Ring 1 Plexiglas Note: All dimensions shown in millimeters unless otherwise noted. Figure 6Sample Collection Unit (Details of Ring) 2016 by the American Association of State Highway an
22、d Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 332-7 AASHTO Details of Collection Cylinder and Vacuum Cylinder Name Required Material 1. Collection cylinder 1 Plexiglas 2. Vacuum cylinder 1 Plexiglas Note: All dimensions shown in millimeters unle
23、ss otherwise noted. Figure 7Sample Collection Unit (Details of Collection Cylinder and Vacuum Cylinder) 2016 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 332-8 AASHTO Details of Clamp (2 required)
24、Name Required Material 1. Spacer 2 Rubber 2. Shaft 1 Steel 3. Nut 1 Steel 4. Spring pin 1 Steel Note: All dimensions shown in millimeters unless otherwise noted. Figure 8Sample Collection Unit (Details of Clamp) 6.9. Specific Chloride Ion ElectrodeThe specific ion electrode for measuring the chlorid
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