AASHTO MP 35-2018 Standard Specification for Thin Overlay Treatments Using a Binder Resin System and Aggregate for Concrete Surfaces.pdf
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1、Standard Specification for Thin Overlay Treatments Using a Binder Resin System and Aggregate for Concrete Surfaces AASHTO Designation: MP 35-181Technical Section: 5b, Bridge and Pavement Preservation Release: Group 1 (April) American Association of State Highway and Transportation Officials 444 Nort
2、h Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-5b MP 35-1 AASHTO Standard Specification for Thin Overlay Treatments Using a Binder Resin System and Aggregate for Concrete Surfaces AASHTO Designation: MP 35-181Technical Section: 5b, Bridge and Pavement Preservation Release: Group 1 (April
3、) 1. SCOPE 1.1. This specification describes the materials for thin overlay treatments using a binder resin system and aggregates for concrete surfaces. The application of the thin overlay is comprised of a minimum of two layers using a binder resin system and surface-applied aggregate. 1.2. Use the
4、 thin overlay in a double lift application (binder resin system and aggregate) for above-grade concrete surfaces (such as bridges, ramps, overpasses, directional flyovers, stacked interchanges, and viaducts). 1.3. Binder resin systems include low modulus epoxy, methyl methacrylate, and polyester res
5、ins. 1.4. 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 standard to establish appropriate safety and health practices and determine t
6、he applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 235M/M 235, Epoxy Resin Adhesives T 27, Sieve Analysis of Fine and Coarse Aggregates T 96, Resistance to Degradation of Small-Size Coarse Aggregate by Abrasion and Impact in the Los Angeles Mach
7、ine T 242, Frictional Properties of Paved Surfaces Using a Full-Scale Tire T 255, Total Evaporable Moisture Content of Aggregate by Drying 2.2. ASTM Standards: C579, Standard Test Methods for Compressive Strength of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes C77
8、8, Standard Specification for Standard Sand C881/C881M, Standard Specification for Epoxy-Resin-Base Bonding Systems for Concrete C884/C884M, Standard Test Method for Thermal Compatibility Between Concrete and an Epoxy-Resin Overlay 2018 by the American Association of State Highway and Transportation
9、 Officials. All rights reserved. Duplication is a violation of applicable law.TS-5b MP 35-2 AASHTO D570, Standard Test Method for Water Absorption of Plastics D618, Standard Practice for Conditioning Plastics for Testing D638, Standard Test Method for Tensile Properties of Plastics D695, Standard Te
10、st Method for Compressive Properties of Rigid Plastics D2240, Standard Test Method for Rubber PropertyDurometer Hardness D2471-99, Standard Test Method for Gel Time and Peak Exothermic Temperature of Reacting Thermosetting Resins (withdrawn 2008) D2556, Standard Test Method for Apparent Viscosity of
11、 Adhesives Having Shear-Rate- Dependent Flow Properties Using Rotational Viscometry D3278, Standard Test Methods for Flash Point of Liquids by Small Scale Closed-Cup Apparatus E573, Standard Practices for Internal Reflection Spectroscopy 3. TERMINOLOGY 3.1. binder resin systema polymeric resin used
12、to bond a surface-applied aggregate to a concrete pavement and concrete structure. 3.2. prime coata polymeric resin that is used to fill cracks and voids in existing concrete surfaces that is compatible with the binder resin system. 3.3. thin overlay treatmenta binder resin system and surface-applie
13、d aggregate utilized to preserve concrete against chloride intrusion and provide a wearing surface. 4. SUMMARY 4.1. This specification describes furnishing a thin overlay material for concrete above-grade surfaces. 4.2. The thin overlay is comprised of a double layer using a binder resin system that
14、 holds a surface applied aggregate firmly in place. 4.3. The thin overlay may be applied by either mechanical or manual techniques. 5. SIGNIFICANCE AND USE 5.1. The thin overlay is used primarily for preserving a concrete structure from deterioration by providing a wearing surface and a barrier agai
15、nst chloride intrusion. 5.2. Typically, recommended locations for thin overlay installations include concrete surfaces above grade (such as bridges, ramps, overpasses, directional flyovers, stacked interchanges, and viaducts) and other identified structures where preservation of existing concrete is
16、 required. 5.3. Thin overlay can provide improved friction on a concrete structure by utilizing a high friction aggregate. However, this specification is not intended to address these high friction surface treatments. 6. MATERIALS 6.1. Binder Resin Systems: 2018 by the American Association of State
17、Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-5b MP 35-3 AASHTO 6.1.1. Binder Resin SystemBinder resin systems shall be recommended by the manufacturer as suitable for use on the intended pavement surface and for the potential range of atm
18、ospheric exposure. 6.1.2. Prime CoatA primer shall be used before application of the binder resin system when recommended by the manufacturer. 6.1.3. The properly proportioned and mixed binder shall conform to the requirements of Table 1, Low Modulus Epoxy; Table 2, Methyl Methacrylate (MMA); and Ta
19、ble 3, Polyester Resins. See Section 7 for sample preparation and testing procedures. Table 1Physical Requirements for Low Modulus Epoxy Property Test Method Requirements Viscosity ASTM D2556 1000 Centipoise minimumaFlash Point ASTM D3278 (see Note 3 of D3278) See safety data sheet (SDS) Gel Time AS
20、TM C881/C881M /AASHTO M 235M/M 235 10 minutes minimum Compressive Modulus: ASTM D695 7 days 130,000 psi maximum Compressive Strength: ASTM C579 Test Method B 3 hours 1000 psi minimum 24 hours 3000 psi minimum Tensile Strength: ASTM D638 Type I 7 days 20005000 psi Tensile Elongation ASTM D638 Type I
21、30% minimum Absorption ASTM D570 1.0% maximum Type D Hardness ASTM D2240 6080 Thermal Compatibility ASTM C884/C884M PASS Infrared Spectrum ASTM E573 Combined and ComponentsbaEpoxies with low viscosities may be unsuitable for some heated mechanical applications. bMethodologies for comparisons should
22、be similar. Table 2Physical Requirements for Methyl Methacrylate (MMA) Property Test Method Requirements Viscosity ASTM D2556 15002500 Centipoise minimum Flash Point ASTM D3278 (see Note 3 of D3278) See SDS Gel Time ASTM D2471 (60 g) 15 minutes minimum Compressive Modulus: ASTM D695 7 days 130,000 p
23、si maximum Compressive Strength: ASTM D695 7 days 15003000 psi Tensile Strength: ASTM D638 Type I 7 days 5001000 psi Tensile Elongation ASTM D638 Type I 50% minimum Absorption ASTM D570 1.0% maximum Type D Hardness ASTM D2240 Cure specimen for 7 days 5060 Infrared Spectrum ASTM E573 Combined and Com
24、ponentsaaMethodologies for comparisons should be similar. 2018 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-5b MP 35-4 AASHTO Table 3Physical Requirements for Polyester Resins Property Test Method Requ
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