AASHTO MP 20-2013 Standard Specification for Steel-Reinforced Polyethylene (PE) Ribbed Pipe 300- to 1500-mm (12- to 60-in.) Diameter.pdf
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1、Standard Specification for Steel-Reinforced Polyethylene (PE) Ribbed Pipe, 300- to 1500-mm (12- to 60-in.) Diameter AASHTO Designation: MP 20-13 (2014) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-4b MP 20-1 AAS
2、HTO Standard Specification for Steel-Reinforced Polyethylene (PE) Ribbed Pipe, 300- to 1500-mm (12- to 60-in.) Diameter AASHTO Designation: MP 20-13 (2014) 1. SCOPE 1.1. This specification covers the requirements and methods of tests for steel-reinforced polyethylene (PE) ribbed pipe, couplings, and
3、 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, impact resistance, tensile strength of seams, shape stability, joining systems, and form of markings are s
4、pecified. 1.2. Steel-reinforced PE ribbed 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 as culverts, storm drains, etc. Note 1When PE pipe is to be used in
5、 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 effects of prolonged exposure to ultraviolet radiation. 1.3. This specification only deals with this pipes materials requirements. The structural desi
6、gn of steel reinforced thermoplastic culverts and the proper installation procedures are given in the AASHTO LRFD Bridge Design Specifications, Section 12, and AASHTO LRFD Bridge Construction Specifications, Section 26, respectively. Upon request of the user or engineer, the manufacturer shall provi
7、de profile wall section detail required for a full engineering evaluation. 1.4. UnitsThe 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. 1.5. The following precautionary caveat pertains onl
8、y to the test method portion, Section 9, of this specification. This standard does not purport to address all of 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 applicab
9、ility of regulatory limitations prior to use. 2014 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-4b MP 20-2 AASHTO 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 288, Geotextile Specification for Highw
10、ay Applications T 341, Determination of Compression Capacity for Profile Wall Plastic Pipe by Stub Compression Loading AASHTO LRFD Bridge Design Specifications, Section 12 AASHTO LRFD Bridge Construction Specifications, Section 26 2.2. ASTM Standards: A 653/A 653M-11, Standard Specification for Stee
11、l Sheet, Zinc-Coated (Galvanized) or Zinc-Iron Alloy-Coated (Galvannealed) by the Hot-Dip Process D 618, Standard Practice for Conditioning Plastics for Testing D 638, Standard Test Method for Tensile Properties of Plastics D 883, Standard Terminology Relating to Plastics D 2122, Standard Test Metho
12、d for Determining Dimensions of Thermoplastic Pipe and Fittings D 2412, Standard Test Method for Determination of External Loading Characteristics of Plastic Pipe by Parallel-Plate Loading D 2444, Standard Test Method for Determination of the Impact Resistance of Thermoplastic Pipe and Fittings by M
13、eans of a Tup (Falling Weight) D 3212, Standard Specification for Joints for Drain and Sewer Plastic Pipes Using Flexible Elastomeric Seals D 3350, Standard Specification for Polyethylene Plastics Pipe and Fittings Materials F 412, Standard Terminology Relating to Plastic Piping Systems F 477, Stand
14、ard Specification for Elastomeric Seals (Gaskets) for Joining Plastic Pipe F 2136, Standard Test Method for Notched, Constant Ligament-Stress (NCLS) Test to Determine Slow-Crack-Growth Resistance of HDPE Resins or HDPE Corrugated Pipe 3. TERMINOLOGY 3.1. The terminology used in this standard is in a
15、ccordance with the definitions given in ASTM D 883 and ASTM F 412 unless otherwise specified. 3.2. crackany break or split that extends through the wall. 3.3. creasean irrecoverable indentation, generally associated with a loss in shape stability. 3.4. delaminationa gap extending through the welded
16、lap seam between two adjacent wrap widths. 3.5. encapsulation thicknessesthe thicknesses of the high density polyethylene (HDPE) covering on both sides of the steel reinforcement as well as the thickness of the closure at the top (outside) of the rib and the thickness of the profile directly under (
17、inside) the reinforcement (see Figure 2). 3.6. gravity flowa condition in which liquid flow through a piping system results from a downward pipeline slope, but flow is less than full, except during conditions when the system may become temporarily surcharged, in which case the system is subject to t
18、emporary internal hydrostatic pressure that is limited to 74 kPa. 2014 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-4b MP 20-3 AASHTO 3.7. polyethylene (PE) plasticsplastics based on polymers made with
19、ethylene as essentially the sole monomer (ASTM D 883). 3.8. reworked plastica plastic from a processors own production that has been reground, pelletized, or solvated after having been previously processed by molding, extrusion, etc. (ASTM D 883). 3.9. seamthe portion of the helically wrapped strip
20、that overlaps and is fused to adjacent helically wrapped strips (see Figure 1). Figure 1Cross Section of Profile 3.10. shape stabilityA general measure of the pipes ability to maintain geometric and structural stability while deflected and carrying a load equal to or greater than 75 percent of its p
21、eak load-carrying capability. Peak load-carrying capability is identified as the maximum load in the load/deflection curve as measured during the flattening test as described in Section 9.2. 3.11. steel-reinforced thermoplastic pipeRibbed thermoplastic pipe with steel reinforcing strips encapsulated
22、 within the ribs (see Figure 1). 3.12. slow crack growthA phenomenon by which a stress crack may form. A stress crack is an external or internal crack in plastic caused by tensile stresses less than its short-term mechanical strength. 3.13. virgin polyethylene materialPE plastic material in the form
23、 of pellets, granules, powder, floc, or liquid that has not been subject to use or processing other than required for initial manufacture. 3.14. wrap widthThe width the helically wrapped strip covers when measured across the strip, perpendicular to the ribs (see Figure 1). 3.15. waterway wallThe min
24、imum wall thickness separating the inner and outer surfaces of the pipe wall, which is measured between pipe ribs (see Figure 2). 4. CLASSIFICATION 4.1. The steel-reinforced PE ribbed pipe covered by this specification is classified as follows: 4.1.1. Type SThis pipe shall have a full circular cross
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