AASHTO R 69-2015 Standard Practice for Determination of Long-Term Strength for Geosynthetic Reinforcement.pdf
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1、Standard Practice for Determination of Long-Term Strength for Geosynthetic Reinforcement AASHTO Designation: R 69-151American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-4e R 69-1 AASHTO Standard Practice for Determinat
2、ion of Long-Term Strength for Geosynthetic Reinforcement AASHTO Designation: R 69-151INTRODUCTION Through this protocol, the long-term strength and stiffness of geosynthetic reinforcements can be determined. This protocol contains test and evaluation procedures to determine reduction factors for ins
3、tallation damage, creep, and chemical/biological durability, as well as the method to combine these factors to determine the long-term strength. The long-term strength and stiffness values determined from this protocol can be used as input values for geosynthetic structure designs conducted in accor
4、dance with AASHTO LRFD Bridge Design Specifications and related Federal Highway Administration (FHWA) design guidelines. The long-term strength and stiffness values determined from this protocol can also be compared to the required design strength and stiffness values provided in the contract for th
5、e geosynthetic structure(s) in question to determine whether the selected product meets the contract requirements. This protocol can be used for product qualification or acceptance (e.g., for inclusion in a Qualified Products List), or for verification to facilitate periodic review of products for w
6、hich the long-term strength has been previously determined using this standard practice. 1. SCOPE 1.1. This protocol has been developed to address polypropylene (PP), polyethylene (PE or HDPE), and polyester (PET) geosynthetics (i.e., geotextiles and geogrids). For other geosynthetic polymers (e.g.,
7、 polyamide (PA) or polyvinyl alcohol (PVA), the installation damage and creep protocols provided herein are directly applicable. While the chemical and biological durability procedures and criteria provided herein may also be applicable to other polymers (for example, hydrolysis testing as described
8、 in Annex C is likely applicable to PA and PVA geosynthetics), additional investigation will be required to establish a detailed protocol and acceptance criteria for these other polymers. These other polymers may be considered for evaluation using this protocol once modifications to the chemical/bio
9、logical durability aspects of this protocol have been developed and are agreed upon by the approval authority. 1.2. The values stated in SI units are to be regarded as the standard. 1.3. This standard may involve hazardous materials, operations, and equipment. This standard does not propose to addre
10、ss all safety problems associated with its usage. It is the duty and responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. 2015 by the American Association of State Highway and Transpor
11、tation Officials.All rights reserved. Duplication is a violation of applicable law.TS-4e R 69-2 AASHTO 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards and Specifications: T 96, Resistance to Degradation of Small-Size Coarse Aggregate by Abrasion and Impact in the Los Angeles Machine AASHTO LRFD Bridge
12、 Design Specifications Standard Specifications for Highway Bridges, 17th Edition 2.2. ASTM Standards: D1248, Standard Specification for Polyethylene Plastics Extrusion Materials for Wire and Cable D2488, Standard Practice for Description and Identification of Soils (Visual-Manual Procedure) D2837, S
13、tandard Test Method for Obtaining Hydrostatic Design Basis for Thermoplastic Pipe Materials or Pressure Design Basis for Thermoplastic Pipe Products D3045, Standard Practice for Heat Aging of Plastics Without Load D3083-89, Specification for Flexible Poly (Vinyl Chloride) Plastic Sheeting for Pond,
14、Canal, and Reservoir Lining (Withdrawn 1998) D3895, Standard Test Method for Oxidative-Induction Time of Polyolefins by Differential Scanning Calorimetry D4101, Standard Specification for Polypropylene Injection and Extrusion Materials D4355/D4355M, Standard Test Method for Deterioration of Geotexti
15、les by Exposure to Light, Moisture and Heat in a Xenon Arc Type Apparatus D4595, Standard Test Method for Tensile Properties of Geotextiles by the Wide-Width Strip Method D4603, Standard Test Method for Determining Inherent Viscosity of Poly(Ethylene Terephthalate) (PET) by Glass Capillary Viscomete
16、r D5261, Standard Test Method for Measuring Mass per Unit Area of Geotextiles D5262, Standard Test Method for Evaluating the Unconfined Tension Creep and Creep Rupture Behavior of Geosynthetics D5322, Standard Practice for Immersion Procedures for Evaluating the Chemical Resistance of Geosynthetics
17、to Liquids D5818, Standard Practice for Exposure and Retrieval of Samples to Evaluate Installation Damage of Geosynthetics D5885, Standard Test Method for Oxidative Induction Time of Polyolefin Geosynthetics by High-Pressure Differential Scanning Calorimetry D6637, Standard Test Method for Determini
18、ng Tensile Properties of Geogrids by the Single or Multi-Rib Tensile Method D6992, Standard Test Method for Accelerated Tensile Creep and Creep-Rupture of Geosynthetic Materials Based on Time-Temperature Superposition Using the Stepped Isothermal Method D7409, Standard Test Method for Carboxyl End G
19、roup Content of Polyethylene Terephthalate (PET) Yarns 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-4e R 69-3 AASHTO 2.3. Other Standards: ISO 13438:2004(en), Geotextiles and geotextile-related pro
20、ductsScreening test method for determining the resistance to oxidation GRI-GG8, Determination of the Number Average Molecular Weight of PET Yarns Based on a Relative Viscosity Value ISO 10319:2008, GeosyntheticsWide-width tensile test ISO/DIS 10722:2007, GeosyntheticsIndex test procedure for sthe ev
21、aluation of mechanical damage under repeated loading. Part 1: Installation in granular materials ISO/FDIS 9080:2012, Plastic piping and ducting systemsDetermination of long-term hydrostatic strength of thermoplastics materials in pipe form by extrapolation 3. TERMINOLOGY 3.1. aperturesthe open space
22、s formed between the interconnected network of longitudinal and transverse ribs of a geogrid. 3.2. d50 the grain size at 50 percent passing by weight for the backfill. 3.3. effective design temperaturethe temperature that is halfway between the average yearly air temperature and the normal daily air
23、 temperature for the warmest month at the geosynthetic structure site. 3.4. HDPEhigh-density polyethylene. 3.5. hydrolysisthe reaction of water molecules with the polymer material, resulting in polymer chain scission, reduced molecular weight, and strength loss. 3.6. in-isolation testinggeosynthetic
24、 testing in which the specimen is surrounded by air or a fluid (not soil). 3.7. installation damagedamage to the geosynthetic, such as cuts, holes (geotextiles only), abrasion, fraying, etc., created during installation of the geosynthetic in the backfill soil. 3.8. load levelfor creep or creep-rupt
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