NSF P171-1999 Chlorine Resistance of Plastic Piping Materials《塑料管道材料的抗氯气性能[代替 NSF SEPT]》.pdf
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1、September IO, 1999 NSF Protocol PI71 Chlorine Resistance of Plastic Piping Materials September 1 O, 1999 NSF International, an independent, not-for-profit organization, is dedicated to public health safety and protection of the environment by developing standards, by providing education and by provi
2、ding superior third-party conformity assessment services while representing the interest of all stakeholders. This Protocol is subject to revision. Contact NSF to confirm this revision is current. Users of this Protocol may request clarifications and interpretations, or propose revisions by contacti
3、ng: NSF International Engineering T =temperature in Rankin (Kelvin) a = a constant b = a constant Pressure may be used in place of hoop stress for products of complex geometries that do not permit the calculation of hoop stress. The data shall have a R2 value greater than 0.8 to be considered accept
4、able for use with this protocol. 5.7.3 Pressure Linearity Confirmation For the data generated at the same temperature at three different hoop stresses (pressures), perform regression analysis based on hoop stress according to the equation: log (ft) = a + b log (S) where: ft S a = a constant b = a co
5、nstant = time to failure in hours; = hoop stress, MPa (psi) as given by the IS0 equation below Pressure may be used in place of hoop stress for products of complex geometries that do not permit the calculation of hoop stress. The data shall have a R2 value greater than 0.8 to be considered acceptabl
6、e for use with this protocol. 5.7.4 Regression Analysis Perform a multiple variable linear regression on the failure data in accordance with the three coefficient rate process model (or model Q of IS0 9080 (see Appendix A). Data shall be analyzed based on hoop stress as calculated by the IS0 equatio
7、n: S = P (D - t)/2t where: S P D t = hoop stress, MPa (psi) = internal pressure, MPag (psig), and = average outside diameter, mm (inches) = minimum wall thickness, mm (inches) Pressure may be used in place of hoop stress for products of complex geometries that to not permit the calculation of hoop s
8、tress. September 1 O, 1999 Copyright O 1999 NSF International Page 8 of 12 The data shall have a R2 value greater than 0.8 to be considered acceptable for use with this protocol. Product Type Domestic Continuous Re-circulation Traditional Domestic Note: The three coefficient rate process model and m
9、odel Q of IS0 9080 are identical. Any statistical analysis program capable of multiple linear regression analysis is suitable for analysis. Extrapolation Extrapolation Service Pressure Time Temperature 100% 60C (1 40 OF) 25% 60C (140 OF) 75% 23C (73 OF) 0.55 MPa (80 psi) 0.55 MPa (80 psi) 5.7.5 Test
10、 Lifetime Extrapolation Extrapolate the test lifetime based on the relevant conditions in Table 2. For estimation of test lifetimes under variable temperatures apply Miners Rule (ISO/DIS 13760) (see Appendix B). The resulting value is the Extrapolated Test Lifetime. Apply a 0.5 design factor to the
11、Extrapolated Test Lifetime. The resulting value is the Estimated Minimum Chlorine Resistance Service Lifetime of the tested material exposed to typical chlorinated potable water. The Estimated Minimum Chlorine Resistance Service Lifetime shall be greater than 40 years. The Extrapolated Test Lifetime
12、 and Estimated Minimum Chlorine Resistance Service Lifetime provided by this protocol are for conditions equivalent to those under which the test data were obtained and do not take into account other environmental factors that may lead to a reduction in lifetime for the evaluated material. Table 2.
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