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Standard Guide for Calculating In Situ Equivalent Elastic Moduli of Pavement Materials Using Layered Elastic Theory (Includes all amendments And changes 8/16/2017).
Automatically translated name:
Standard Guide for Calculating In Situ Equivalent Elastic Moduli of Pavement Materials Using Layered Elastic Theory
STANDARD published on 13.10.1998
Designation standards: ASTM D5858-96e1
Note: WITHDRAWN
Publication date standards: 13.10.1998
SKU: NS-32828
The number of pages: 7
Approximate weight : 21 g (0.05 lbs)
Country: American technical standard
Category: Technical standards ASTM
Keywords:
Back calculation, Deflection basin, Elastic modulus, In-situ test, Layered elastic theory, NDT (nondestructive deflection testing), Nondestructive evaluation (NDE),emconcrete/masonry, Pavement moduli, Pavement surfaces, pavement materials,emcalculating in-situ equivalent elastic moduli,, using layered elastic theory, guide,,Order Form, ICS Number Code 93.080.20 (Road construction materials)
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1.1 This guide covers the concepts for calculating the in situ equivalent layer elastic moduli can be used for pavement evaluation, rehabilitation and overlay design. The resulting equivalent elastic moduli calculated from the deflection data are method-dependent and represent the stiffnesses of the layers under a specific nondestructive deflection testing (NDT) device at that particular test load and frequency, temperature, and other environmental and site-specific conditions. Adjustments for design load, reference temperature, and other design-related factors are not covered in this guide. The intent of this guide is not to recommend one specific method, but to outline the general approach for estimating the in situ elastic moduli of pavement layers. 1.2 This guide is applicable to flexible pavements and in some cases, rigid pavements (that is, interior slab loading), but is restricted to the use of layered elastic theory as the analysis method. It should be noted that the various available layered elastic computer modeling techniques use different assumptions and algorithms and that results may vary significantly. Other analysis procedures, such as finite element modeling, may be used, but modifications to the procedure are required. Note 1-If other analysis methods are desired, the report listed in Footnote 3 can provide some guidance.1.3 The values stated in inch-pound units are to be regarded as the standard. The SI units given in parentheses are for information only. 1.4 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 applicability of regulatory limitations prior to use. |
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