ASTM A796 A796M-2006 Standard Practice for Structural Design of Corrugated Steel Pipe Pipe-Arches and Arches for Storm and Sanitary Sewers and Other Buried Applications《雨水管和生活污水管以及.pdf
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1、Designation: A 796/A 796M 06Standard Practice forStructural Design of Corrugated Steel Pipe, Pipe-Arches,and Arches for Storm and Sanitary Sewers and OtherBuried Applications1This standard is issued under the fixed designationA 796/A 796M; the number immediately following the designation indicates t
2、he yearof original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval.A superscript epsilon (e) indicates an editorial change since the last revision or reapproval.This standard has been approved for use by agencies of the D
3、epartment of Defense.1. Scope*1.1 This practice covers the structural design of corrugatedsteel pipe and pipe-arches, ribbed and composite ribbed steelpipe, ribbed pipe with metallic-coated inserts, closed rib steelpipe, composite corrugated steel pipe, and steel structural platepipe, pipe-arches, a
4、nd underpasses for use as storm sewers andsanitary sewers, and other buried applications. Ribbed andcomposite ribbed steel pipe, ribbed pipe with metallic-coatedinserts, closed rib steel pipe, and composite corrugated steelpipe shall be of helical fabrication having a continuouslockseam. This practi
5、ce is for pipe installed in a trench orembankment and subjected to earth loads and live loads. Itmust be recognized that a buried corrugated steel pipe is acomposite structure made up of the steel ring and the soilenvelope, and both elements play a vital part in the structuraldesign of this type of
6、structure. This practice applies tostructures installed in accordance with Practice A 798/A 798Mor A 807/A 807M.1.2 Corrugated steel pipe and pipe-arches shall be of annu-lar fabrication using riveted or spot-welded seams, or of helicalfabrication having a continuous lockseam or welded seam.1.3 Stru
7、ctural plate pipe, pipe-arches, underpasses, andarches are fabricated in separate plates that, when assembled atthe job site by bolting, form the required shape.1.4 This specification is applicable to design in inch-poundunits as A 796 or in SI units as A 796M. Inch-pound units andSI units are not n
8、ecessarily equivalent. SI units are shown inbrackets in the text for clarity, but they are the applicablevalues when the design is done per A 796M.1.5 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this sta
9、ndard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2A 760/A 760M Specification for Corrugated Steel Pipe,Metallic-Coated for Sewers and DrainsA 761/A 761M Specification for Corr
10、ugated Steel Struc-tural Plate, Zinc-Coated, for Field-Bolted Pipe, Pipe-Arches, and ArchesA 762/A 762M Specification for Corrugated Steel Pipe,Polymer Precoated for Sewers and DrainsA 798/A 798M Practice for Installing Factory-Made Corru-gated Steel Pipe for Sewers and Other ApplicationsA 807/A 807
11、M Practice for Installing Corrugated SteelStructural Plate Pipe for Sewers and Other ApplicationsA 902 Terminology Relating to Metallic-Coated Steel Prod-uctsA 978/A 978M Specification for Composite Ribbed SteelPipe, Precoated and Polyethylene-Lined for Gravity FlowSanitary Sewers, Storm Sewers, and
12、 Other Special Appli-cationsA 1019/A 1019M Specification for Closed Rib Steel Pipewith a Diameter of 36 in. 900 mm or Less, PolymerPrecoated for Sewers and DrainsA 1042/A 1042M Specification for Composite CorrugatedSteel Pipe for Sewer and DrainsD 698 Test Method for Laboratory Compaction Character-
13、istics of Soil Using Standard Effort (12 400 ft-lbf/ft3600kNm/m3)D 1556 Test Method for Density and Unit Weight of Soil inPlace by the Sand-Cone MethodD 2167 Test Method for Density and Unit Weight of Soil inPlace by the Rubber Balloon MethodD 2487 Classification of Soils for Engineering Purposes(Un
14、ified Soil Classification System)D 2922 Test Methods for Density of Soil and Soil-Aggregate in Place by Nuclear Methods (Shallow Depth)1This practice is under the jurisdiction of ASTM Committee A05 on Metallic-Coated Iron and Steel Products and is the direct responsibility of SubcommitteeA05.17 on C
15、orrugated Steel Pipe Specifications.Current edition approved May 1, 2006. Published June 2006. Originallyapproved in 1982. Last previous edition approved in 2004 as A 796/A 796M-04a.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.o
16、rg. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United State
17、s.D 2937 Test Method for Density of Soil in Place by theDrive-Cylinder Method2.2 AASHTO Standard:Standard Specifications for Highway Bridges32.3 FAA Standard:AC No. 150/53205B Advisory Circular, “Airport Drain-age,” Department of Transportation, Federal AviationAdministration, 197043. Terminology3.1
18、 General DefinitionsFor definitions of general termsused in this practice, refer to Terminology A 902. For defini-tions of terms specific to this standard, refer to 3.2.3.2 Definitions of Terms Specific to This Standard:3.2.1 bedding, nthe earth or other material on which thepipe is laid, consisting
19、 of a thin layer of imported material ontop of the in situ foundation.3.2.2 haunch, nthe portion of the pipe cross sectionbetween the maximum horizontal dimension and the top of thebedding.3.2.3 invert, nthe lowest portion of the pipe cross section;also, the bottom portion of the pipe.3.2.4 pipe, na
20、 conduit having a full circular shape, or in ageneral context, all structure shapes covered by this practice.3.2.5 pipe-arch, na pipe shape consisting of an approxi-mate semi-circular top portion, small radius corners, and largeradius invert.3.2.6 arch, na pipe shape that is supported on footingsand
21、 does not have a full metal invert.4. Symbols4.1 The symbols used in this practice have the followingsignificance:A = required wall area, in.2/ft mm2/mm(AL) = maximum highway design axle load, lbf NCl= longitudinal live load distribution factor for pipearchesd = depth of corrugation, in. mmE = modul
22、us of elasticity = 29 by 106lbf/in.2200 by103MPa(EL) = earth load, lbf/ft2kPa(FF) = flexibility factor, in./lbf mm/Nfy= specified minimum yield strengthFor 6 by 2in. 150 by 50mm corrugationType 33 = 33 000 lbf/in.2225 MPaType 38 = 38 000 lbf/in.2260 MPaFor 15 by 512 in. 380 by 140mm and 16 by 6in. 4
23、00 by150mm corrugations = 44 000 lbf/in.2300 MPaFor all other corrugations = 33 000 lbf/in.2225 MPafu= specified minimum tensile strengthFor 6 by 2in. 150 by 50mm corrugationType 33 = 45 000 lbf/in.2310 MPaType 38 = 48 000 lbf/in.2330 MPaFor 15 by 1512 in. 380 by 140mm and16 by 6in. 400 by 150mm cor
24、rugations= 55 000 lbf/in.2380 MPaFor all other corrugations = 45 000 lbf/in.2310 MPafc= critical buckling stress, lbf/in.2MPah = height of cover, in. mm determined as fol-lows: (1) highwaysfrom top of pipe to topof rigid pavement, or to top of subgrade forflexible pavement; (2) railwaystop of pipeto
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