AASHTO M 170-2015 Standard Specification for Reinforced Concrete Culvert Storm Drain and Sewer Pipe.pdf
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1、Standard Specification for Reinforced Concrete Culvert, Storm Drain, and Sewer Pipe AASHTO Designation: M 170-151ASTM Designation: C76-14 American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-4a M 170-1 AASHTO Standard S
2、pecification for Reinforced Concrete Culvert, Storm Drain, and Sewer Pipe AASHTO Designation: M 170-151ASTM Designation: C76-14 1. SCOPE 1.1. This specification covers reinforced concrete pipe intended to be used for the conveyance of sewage, industrial wastes, and storm water, and for the construct
3、ion of culverts. 1.2. A complete metric companion to M 170 has been developedM 170M; therefore, no metric equivalents are presented in this specification. Note 1This specification is a manufacturing and purchase specification only, and does not include requirements for bedding, backfill, or the rela
4、tionship between field load condition and the strength classification of pipe. However, experience has shown that the successful performance of this product depends upon the proper selection of the class of pipe, type of bedding and backfill, and care that installation conforms to the construction s
5、pecifications. Owners of the reinforced concrete pipe specified herein are cautioned that they must correlate the field requirements with the class of pipe specified and provide inspection at the construction site. Note 2Attention is called to the specification for reinforced concrete D-load culvert
6、, storm drain, and sewer pipe (M 242M/M 242). 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 6, Fine Aggregate for Hydraulic Cement Concrete M 31M/M 31, Deformed and Plain Carbon-Steel Bars for Concrete Reinforcement M 32M/M 32, Steel Wire, Plain, for Concrete Reinforcement M 55M/M 55, Steel Welde
7、d Wire Reinforcement, Plain, for Concrete M 80, Coarse Aggregate for Hydraulic Cement Concrete M 85, Portland Cement M 86M/M 86, Nonreinforced Concrete Sewer, Storm Drain, and Culvert Pipe M 154M/M 154, Air-Entraining Admixtures for Concrete M 170M, Reinforced Concrete Culvert, Storm Drain, and Sewe
8、r Pipe Metric M 194M/M 194, Chemical Admixtures for Concrete M 221M/M 221, Steel Welded Wire Reinforcement, Deformed, for Concrete M 225M/M 225, Steel Wire, Deformed, for Concrete Reinforcement M 240M/M 240, Blended Hydraulic Cement M 242M/M 242, Reinforced Concrete D-Load Culvert, Storm Drain, and
9、Sewer Pipe M 262, Concrete Pipe and Related Products M 295, Coal Fly Ash and Raw or Calcined Natural Pozzolan for Use in Concrete 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-4a M 170-2 AASHTO M 30
10、2, Slag Cement for Use in Concrete and Mortars T 280, Concrete Pipe, Manhole Sections, or Tile 2.2. ASTM Standards: A36/A36M, Standard Specification for Carbon Structural Steel A706/A706M, Standard Specification for Deformed and Plain Low-Alloy Steel Bars for Concrete Reinforcement C309-03, Standard
11、 Specification for Liquid Membrane-Forming Compounds for Curing Concrete C1017/C1017M, Standard Specification for Chemical Admixtures for Use in Producing Flowing Concrete C1116/C1116M, Standard Specification for Fiber-Reinforced Concrete 3. TERMINOLOGY 3.1. DefinitionsFor definitions of terms relat
12、ing to concrete pipe, see M 262. 4. CLASSIFICATION 4.1. Pipe manufactured in accordance with this specification shall be of five classes identified as Class I, Class II, Class III, Class IV, and Class V. The corresponding strength requirements are prescribed in Tables 1 to 5. 2015 by the American As
13、sociation of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.Table 1Design Requirements for Class I Reinforced Concrete PipeaInternal Designated Diameter, in. Reinforcement, in.2/Linear ft of Pipe Wall Wall A Wall B Concrete Strength, 4000
14、 psi Concrete Strength, 4000 psi Wall Thickness, in. Circular ReinforcementbElliptical ReinforcementcWall Thickness, in. Circular ReinforcementbElliptical ReinforcementcInner Cage Outer Cage Inner Cage Outer Cage 60 5 0.25 0.15 0.28 6 0.21 0.13 0.23 66 51/20.30 0.18 0.33 61/20.25 0.15 0.28 72 6 0.35
15、 0.21 0.39 7 0.29 0.17 0.32 78 61/20.40 0.24 0.44 71/20.32 0.19 0.36 84 7 0.45 0.27 0.50 8 0.37 0.22 0.41 90 71/20.49 0.29 0.54 81/20.41 0.25 0.46 96 8 0.54 0.32 0.60 9 0.46 0.28 0.51 Concrete Strength, 5000 psi Concrete Strength, 5000 psi 102 81/20.63 0.38 Inner Circular Plus Elliptical 0.25 0.38 9
16、1/20.54 0.32 Inner Circular Plus Elliptical 0.22 0.32 108 9 0.68 0.41 Inner Circular Plus Elliptical 0.27 0.41 10 0.61 0.37 Inner Circular Plus Elliptical 0.24 0.37 114 a a 120 a a 126 a a 132 a a 138 a a 144 a a aFor modified or special designs, see Section 7.2 or, with the permission of the owner,
17、 use the provision of M 242M/M 242. Steel areas may be interpolated between those shown for variations in diameter, loading, or wall thickness. Pipe more than 96 in. in diameter shall have two circular cages or an inner circular cage plus one elliptical cage. bAs an alternative to design requiring b
18、oth inner and outer circular cages, the reinforcement may be positioned and proportioned in one of the following manners: (1) an inner circular cage plus an elliptical cage such that the area of the elliptical cage shall not be less than that specified for the outer cage in the table, and the total
19、area of the inner circular cage plus the elliptical cage shall not be less than that specified for the inner cage in the table; (2) an inner and outer cage plus quadrant mats in accordance with Figure 1; or (3) an inner and outer cage plus an elliptical cage in accordance with Figure 2. cElliptical
20、and quadrant steel must be held in place by means of holding rods, chairs, or other positive means throughout the entire casting operation. Note: See Section 5 for basis of acceptance specified by the owner. The strength test requirements in pounds-force per linear foot of pipe under the three-edge-
21、bearing method are listed below as the D-load (test load expressed in pounds-force per linear foot per foot of diameter) to produce a 0.01-in. crack and the ultimate load multiplied by the internal diameter of the pipe in feet. For acceptance testing requirements, see Section 11.3.1. D-load to produ
22、ce a 0.01-in. crack 800 D-load to produce the ultimate load 1200 TS-4aM 170-3AASHTO 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.Table 2Design Requirements for Class II Reinforced Concrete Pipea Inter
23、nal Designated Diameter, in. Reinforcement, in.2/Linear ft of Pipe Wall Wall A Wall B Wall C Concrete Strength, 4000 psi Concrete Strength, 4000 psi Concrete Strength, 4000 psi Wall Thickness, in. Circular ReinforcementbElliptical ReinforcementcWall Thickness, in. Circular ReinforcementbElliptical R
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