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Description of ASTM-D5195 2008ASTM D5195 - 08Standard Test Method for Density of Soil and Rock In-Place at Depths Below Surface by Nuclear MethodsActive Standard ASTM D5195 | Developed by Subcommittee: D18.08 Book of Standards Volume: 04.08 ASTM D5195Significance and Use This test method is useful as a rapid, nondestructive technique for the calculation of the in-place density of soil and rock at desired depths below the surface as opposed to surface measurements in accordance with Test Method D6938 . This test method is useful for informational and research purposes. It should only be used for quality control and acceptance testing when correlated to other accepted methods such as Test Method D2937 . The non-destructive nature of the test method allows repetitive measurements to be made at a single test location for statistical analysis and to monitor changes over time. The fundamental assumptions inherent in this test method are that Compton scattering and photoelectric absorption are the dominant interactions of the gamma rays with the material under test. Note 1The quality of the result produced by this standard test method is dependent on the competence of the personnel performing it, and the suitability of the equipment and facilities used. Agencies that meet the criteria of Practice D3740 are generally considered capable of competent and objective testing/sampling/inspection, and the like. Users of this test method are cautioned that compliance with Practice D3740 does not in itself assure reliable results. Reliable results depend on many factors; Practice D3740 provides a means of evaluating some of those factors. 1. Scope 1.1 This test method covers the calculation of the density of soil and rock by the attenuation of gamma radiation, where the gamma source and the gamma detector are placed at the desired depth in a bored hole lined by an access tube. 1.1.1 For limitations see Section 5 on Interference. 1.2 The density, in mass per unit volume of the material under test, is calculated by comparing the detected rate of gamma radiation with previously established calibration data (see Annex A1). 1.3 A precision statement has not been developed for this standard at this time. Therefore, this standard should not be used for acceptance or rejection of a material for purchasign purposes unless correlated to other accepted ASTM standards. 1.4 The values stated in SI units are regarded as the standard. The inch-pound units given in parentheses are for information only and may be approximate. 1.5 All observed and calculated values shall conform to the guide for significant digits and rounding established in Practice D6026 . 1.5.1 The procedures used to specify how data are collected, recorded, and calculated in this standard are regarded as the industry standard. In addition, they are representative of the significant digits that should generally be retained. The procedures used do not consider material variation, purpose for obtaining the data, special purpose studies, or any considerations for the user s objectives; and it is common practice to increase or reduce significant digits of reported data to be commensurate with these considerations. It is beyond the scope of this standard to consider significant digits used in analysis methods for engineering design. 1.6 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. Specific precautionary statements are given in Section 7, Hazards.
ASTM Standards D653 Terminology Relating to Soil, Rock, and Contained Fluids D1452 Practice for Soil Exploration and Sampling by Auger Borings D1587 Practice for Thin-Walled Tube Sampling of Soils for Geotechnical Purposes D2113 Practice for Rock Core Drilling and Sampling of Rock for Site Investigation D2216 Test Methods for Laboratory Determination of Water (Moisture) Content of Soil and Rock by Mass D2937 Test Method for Density of Soil in Place by the Drive-Cylinder Method D3740 Practice for Minimum Requirements for Agencies Engaged in Testing and/or Inspection of Soil and Rock as Used in Engineering Design and Construction D4428/D4428M Test Methods for Crosshole Seismic Testing D5220 Test Method for Water Mass per Unit Volume of Soil and Rock In-Place by the Neutron Depth Probe Method D6026 Practice for Using Significant Digits in Geotechnical Data D6938 Test Method for In-Place Density and Water Content of Soil and Soil-Aggregate by Nuclear Methods (Shallow Depth) Keywords depth probe; in-place density; in situ density; nuclear methods; Attenuation (of gamma radiation); Calibration--soil/rock analysis instrumentation; Density--soil/rock/related materials; Depth profiling; Gamma radiation--soil/rock; In-place density (of soil); In-situ soil/rock testing/analysis; Nondestructive evaluation (NDE)--soil/rock/related materials; Nuclear methods; Probe methods; Subsurface investigation--soil/rock; ICS Code ICS Number Code 93.020 (Earth works. Excavations. Foundation construction. Underground works) DOI: 10.1520/D5195-08 ASTM International is a member of CrossRef. ASTM D5195The following editions for this book are also available...This book also exists in the following packages...Subscription InformationMADCAD.com ASTM Standards subscriptions are annual and access is unlimited concurrency based (number of people that can access the subscription at any given time) from single office location. For pricing on multiple office location ASTM Standards Subscriptions, please contact us at info@madcad.com or +1 800.798.9296.
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About ASTMASTM International, formerly known as the American Society for Testing and Materials (ASTM), is a globally recognized leader in the development and delivery of international voluntary consensus standards. Today, some 12,000 ASTM standards are used around the world to improve product quality, enhance safety, facilitate market access and trade, and build consumer confidence. ASTM’s leadership in international standards development is driven by the contributions of its members: more than 30,000 of the world’s top technical experts and business professionals representing 150 countries. Working in an open and transparent process and using ASTM’s advanced electronic infrastructure, ASTM members deliver the test methods, specifications, guides, and practices that support industries and governments worldwide. |
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