PPI TR-47-2011 Pipe Stiffness and Flattening Tests in Coilable HDPE Conduit and Its Relationship to Burial Depth in Conduit Applications《盘绕式HDPE管的管刚度试验和压扁试验 及在管道应用中与埋藏深度的关系》.pdf
《PPI TR-47-2011 Pipe Stiffness and Flattening Tests in Coilable HDPE Conduit and Its Relationship to Burial Depth in Conduit Applications《盘绕式HDPE管的管刚度试验和压扁试验 及在管道应用中与埋藏深度的关系》.pdf》由会员分享,可在线阅读,更多相关《PPI TR-47-2011 Pipe Stiffness and Flattening Tests in Coilable HDPE Conduit and Its Relationship to Burial Depth in Conduit Applications《盘绕式HDPE管的管刚度试验和压扁试验 及在管道应用中与埋藏深度的关系》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、 Pipe Stiffness and Flattening Tests in Coilable HDPE Conduit; and Its Relationship to Burial Depth in Conduit Applications TR-47/2011 Prepared by: George Zagorski, PE for The Plastics Pipe Institute 2 FOREWORD Pipe Stiffness and Flattening Tests in Coilable HDPE Conduit; and Its Relationship to Bur
2、ial Depth in Conduit Applications This report was developed and published with the technical help of the members of the PPI (Plastics Pipe Institute, Inc.). The members have shown their interest in quality products by assisting independent standards-making and user organizations in the development o
3、f standards, and also by developing reports on an industry-wide basis to help engineers, code officials, specifying groups, and users. The purpose of this technical report is to provide important information available to PPI on design factors and design coefficients recommended for thermoplastic pre
4、ssure piping applications. These recommendations are based on discussions with several internationally recognized technical experts in the plastic pipe industry. More detailed information on its purpose and use is provided in the document itself. This report has been prepared by PPI as a service of
5、the industry. The information in this report is offered in good faith and believed to be accurate at the time of its preparation, but is offered without any warranty, expressed or implied, including WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. Consult the manufacturer for more
6、 detailed information about the particular joining procedures to be used with its piping products. Any reference to or testing of a particular proprietary product should not be construed as an endorsement by PPI, which does not endorse the proprietary products or processes of any manufacturer. The i
7、nformation in this report is offered for consideration by industry members in fulfilling their own compliance responsibilities. PPI assumes no responsibility for compliance with applicable laws and regulations. PPI intends to revise this report from time to time, in response to comments and suggesti
8、ons from users of the report. Please send suggestions of improvements to the address below. Information on other publications can be obtained by contacting PPI directly or visiting the web site. The Plastics Pipe Institute, Inc. http:/www.plasticpipe.org This Technical Report, TR-47, was first issue
9、d in May 2011. 3 Pipe Stiffness and Flattening Tests in Coilable HDPE Conduit; And Its Relationship to Burial Depth in Conduit Applications Introduction Continuous length, coilable HDPE conduit has enjoyed tremendous growth not only as a protection for electrical cable, but in large part due to the
10、huge expansion of the telecommunications industry in the US and abroad to protect fiber optic cable. Its availability in long lengths combined with HDPEs ductility, strength and durability make it ideally suitable for the “long haul” and trenchless installation technologies such as HDD (horizontal d
11、irectional drilling) installations in the power and telecom industries. Buried cables installed in conduit provide long term and improved protection from damage caused by storms and vandalism when compared to aerial cables. Conduit also extends the life and reliability of underground cables by provi
12、ding added protection from ground movement or poor soil conditions. These permanent raceways allow for easier and less costly future cable replacements. HDPE conduit has been used for decades with great success due to its low coefficient of friction, resistance to corrosion, excellent chemical resis
13、tance and ability to remain ductile (flexible) even at low temperatures. Because the properties of HDPE result in a wide range of flexibility, HDPE conduit can be provided on coils or on steel reels in long lengths specifically for trenchless or plowing technologies (i.e. a reel of 1 ” diameter HDPE
14、 conduit could hold as much as an 8,500 ft continuous length). Larger diameter HDPE conduit such as 8” or greater is available in sticks up to 50-ft. An alternative plastic used in the conduit industry is PVC where typical lengths are limited to 20-ft. When HDPE conduit is considered for underground
15、 installations, there have been cases where PS (pipe stiffness) and the term “Crush Strength” are used to determine strength relative to other materials regardless of their property differences. (In reality, “Crush Strength” is a term misapplied to thermoplastic, 4 flexible pipes (i.e. HDPE and PVC)
16、. Crush Strength implies a brittle failure, where flexible pipes can deflect in excess of 20% with no signs of wall buckling, cracking or splitting. Flattening is the correct and more appropriate engineering term to measure how much deflection a flexible pipe can take without damage.) When HDPE is c
17、ompared to PVC at similar diameters and wall thicknesses, PVC will inherently have a higher PS attributed to the modulus being more than twice that of standard HDPE conduit materials1. However, this in no way indicates how HDPE will ultimately perform compared to PVC conduit. PS has applicability in
18、 calculations of burial depth but it should not be used to compare dissimilar materials. Also, too often, engineers consider “Crush Strength” or Flattening to determine allowable burial depth. Flattening does not relate to burial depth and should be considered a quality control test. Finally, the na
19、tional specifications calculate PS inconsistently. This technical note provides the reader with detailed information showing that HDPE conduits PS is more than adequate at typical burial depths. Furthermore, because of the inconsistencies in the national specifications, PS and Flattening should be c
20、onsidered only as quality control tests. Specifications The inconsistencies of existing national specifications referencing stiffness and flattening have created confusion even for comparable materials. PS in ASTM D-2412 titled, “Determination of External Loading Characteristics of Plastic Pipe by P
21、arallel-Plate Loading”, is defined as the force per unit length of the test specimen, loaded at a prescribed loading rate, at a prescribed percentage deflection (0.5” per minute, typically 5% deflection). The test measures the conduits resistance to ring deflection as it is being compressed between
22、two steel plates. This parallel plate test empirically determines PS where as an alternative “calculated” method uses the materials modulus and SDR (dimension ratio). This shows the usefulness of PS as a Quality Control Test. Requirements referenced in several applicable national specifications are
23、as 5 follows where PS and Flattening are both used as quality assurance tests. Note: “Crush Strength” does not have a defined formula in the ASTM standards. 1. HDPE conduit for power and telecom applications is manufactured in accordance with standard ASTM F-2160, a standard written specifically for
24、 solid wall conduit based on controlled outside diameter. ASTM F-2160 specifies the material, dimensional, manufacturing, and quality assurance testing requirements for HDPE Conduit. 2. ASTM F-512 is the Standard Specification for PVC Conduit for Underground Installation. It uses PS as a quality con
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