AASHTO M 294-2018 Standard Specification for Corrugated Polyethylene Pipe 300- to 1500-mm (12- to 60-in.) Diameter.pdf
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1、Standard Specification for Corrugated Polyethylene Pipe, 300- to 1500-mm (12- to 60-in.) Diameter AASHTO Designation: M 294-18 Technical Section: 4b, Flexible and Metallic Pipe Release: Group 2 (June) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., S
2、uite 249 Washington, D.C. 20001TS-4b M 294-1 AASHTO Standard Specification for Corrugated Polyethylene Pipe, 300- to 1500-mm (12- to 60-in.) Diameter AASHTO Designation: M 294-18 Technical Section: 4b, Flexible and Metallic Pipe Release: Group 2 (June) 1. SCOPE 1.1. This specification covers the req
3、uirements and methods of tests for corrugated polyethylene (PE) pipe, couplings, and fittings for use in surface and subsurface drainage applications. 1.1.1. Nominal sizes of 300 to 1500 mm (12 to 60 in.) are included. 1.1.2. Materials, workmanship, dimensions, pipe stiffness, slow-crack-growth resi
4、stance, joining systems, brittleness, perforations, and form of markings are specified. 1.2. Corrugated PE pipe is intended for surface and subsurface drainage applications where soil provides support to its flexible walls. Its major use is to collect or convey drainage water by open gravity flow, a
5、s culverts, storm drains, etc. Note 1When PE pipe is to be used in locations where the ends may be exposed, consideration should be given to protection of the exposed portions due to combustibility of the PE and the deteriorating effects of prolonged exposure to ultraviolet radiation. 1.3. UnitsThe
6、values stated in SI units are to be regarded as standard. Within the text, the U.S. Customary units are shown in parentheses, and may not be exact equivalents. 1.4. This specification does not include requirements for bedding, backfill, or earth cover load. Successful performance of this product dep
7、ends on proper type of bedding and backfill, and care in installation. The structural design of corrugated PE pipe and the proper installation procedures are given in AASHTO LRFD Bridge Design Specifications, Section 12, and LFRD Bridge Construction Specifications, Section 30, respectively. Upon req
8、uest of the user or engineer, the manufacturer shall provide profile wall section detail required for a full engineering evaluation. 1.5. The following precautionary caveat pertains only to the test method portion, Section 9.4, of this specification. This standard does not purport to address all of
9、the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: T 341, Determination
10、 of Compression Capacity for Profile Wall Plastic Pipe by Stub Compression Loading AASHTO LRFD Bridge Construction Specifications 2018 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-4b M 294-2 AASHTO AAS
11、HTO LRFD Bridge Design Specifications 2.2. ASTM Standards: D618, Standard Practice for Conditioning Plastics for Testing D638, Standard Test Method for Tensile Properties of Plastics D883, Standard Terminology Relating to Plastics D2122, Standard Test Method for Determining Dimensions of Thermoplast
12、ic Pipe and Fittings D2412, Standard Test Method for Determination of External Loading Characteristics of Plastic Pipe by Parallel-Plate Loading D2444, Standard Test Method for Determination of the Impact Resistance of Thermoplastic Pipe and Fittings by Means of a Tup (Falling Weight) D3212, Standar
13、d Specification for Joints for Drain and Sewer Plastic Pipes Using Flexible Elastomeric Seals D3350, Standard Specification for Polyethylene Plastics Pipe and Fittings Materials D3895, Standard Test Method for Oxidative-Induction Time of Polyolefins by Differential Scanning Calorimetry D4218, Standa
14、rd Test Method for Determination of Carbon Black Content in Polyethylene Compounds by the Muffle-Furnace Technique D4703, Standard Practice for Compression Molding Thermoplastic Materials into Test Specimens, Plaques, or Sheets D4883, Standard Test Method for Density of Polyethylene by the Ultrasoun
15、d Technique (withdrawn 2017) F412, Standard Terminology Relating to Plastic Piping Systems F477, Standard Specification for Elastomeric Seals (Gaskets) for Joining Plastic Pipe F2136, Standard Test Method for Notched, Constant Ligament-Stress (NCLS) Test to Determine Slow-Crack-Growth Resistance of
16、HDPE Resins or HDPE Corrugated Pipe F3181, Standard Test Method for The Un-notched, Constant Ligament Stress Crack Test (UCLS) for HDPE Materials Containing Post-Consumer Recycled HDPE 2.3. Federal Standard: Fed. Std. No. 29, CFR 1910.1200 OSHA Hazard Communication Standard; see also Permissible Exp
17、osure LimitsAnnotated Tables, available at https:/www.osha.gov/dsg/annotated-pels 2.4. Other: Pluimer, Michael L. (2016). Evaluation of Corrugated HDPE Pipes Manufactured with Recycled Materials in Commuter Railroad Applications (Doctoral dissertation). Proquest Publishing, Villanova University. Plu
18、imer, Michael, Joel Sprague, Richard Thomas, Leslie McCarthy, Andrea Welker, Shad Sargand, Ehab Shaheen, and Kevin White. National Cooperative Highway Research Report 870: Field Performance of Corrugated Pipe Manufactured with Recycled Polyethylene Content. NCHRP, Transportation Research Board, Wash
19、ington, DC, 2018. See Appendix L, AASHTOs proposed Standard Practice for Service Life Determination of Corrugated HDPE Pipes Manufactured with Recycled Materials. Available online at http:/www.trb.org/NCHRP/Blurbs/176741.aspx 2018 by the American Association of State Highway and Transportation Offic
20、ials. All rights reserved. Duplication is a violation of applicable law.TS-4b M 294-3 AASHTO 3. TERMINOLOGY 3.1. The terminology used in this standard is in accordance with the definitions given in ASTM D883 and ASTM F412 unless otherwise specified. 3.2. bucklingDuring pipe flattening testing, any d
21、ecrease or downward devia tion in the pipe load-deflection test curve at or below the calculated buckling deflection limit shall be considered a buckling point. 3.3. contaminantinorganic particulate matter or other non-HDPE organic material that creates inclusions or stress risers in the crystalline
22、 structure of HDPE. 3.4. crackany break or split that extends through the wall or liner. 3.5. crack initiationthe portion of the slow-crack- growth mechanism associated with the initial development of a craze zone and micro-cracks around a contaminant, void, or discontinuity; also referred to as slo
23、w-crack-growth initiation or stress-crack initiation. 3.6. crack propagationthe portion of the slow-crack-g rowth mechanism associated with successive yielding of HDPE material ahead of a crack tip; also referred to as slow-crack-growth propagation or stress-crack propagation. 3.7. creasea visible i
24、rrecoverable indentation. 3.8. buckling deflection limitthe percentage reduction of the inside diameter of the pipe for the extreme fiber of the wall profile to reach the factored combined compressive strain limit of 6.15 percent for HDPE pipe per AASHTO LRFD Bridge Design Specifications, Section 12
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