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ASTM D7702-11
Standard Guide for Considerations When Evaluating Direct Shear Results Involving Geosynthetics
11 стр.
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Печатное изданиеЭлектронный (pdf)
104.52 $ (включая НДС 20%)
Разработчик:
Зарубежные/ASTM
ICS:
59.080.70 Geotextiles. Including geosynthetics / Геотекстиль
Сборник (ASTM):
04.13 Geosynthetics / Геосинтетические материалы
Тематика:
Geotechnical Engineering
Описание
Значение и использование

The shear strength of soil-geosynthetic interfaces and geosynthetic-geosynthetic interfaces is a critical design parameter for waste containment systems, mining applications, dam designs involving geosynthetics, reinforced slopes, and liquid impoundments. Since geosynthetic interfaces often serve as a weak plane on which sliding may occur, shear strengths of these interfaces are needed to assess the stability of a waste mass or ore body over a lining system or the ability of a final cover to remain on a slope. Accordingly, project-specific shear testing using representative materials under conditions similar to those expected in the field is recommended for final design. Shear strengths of geosynthetic interfaces are obtained by either Test Methods (geosynthetics) or (geosynthetic clay liners). This guide touches upon some of the issues that should be considered when evaluating shear strength data. Because of the large number of potential conditions that could exist, there may be other conditions not identified in this guide that could affect interpretation of the results. The seemingly infinite combinations of soils, geosynthetics, hydration, and wetting conditions, normal load distributions, strain rates, creep, pore pressures, etc., will always require individual engineering evaluations by qualified practitioners. Along the same lines, the list of references provided in this standard is not exhaustive, nor are the findings and suggestions of any particular reference meant to be considered conclusive. The references and their related findings are presented herein only as examples available in the literature of the types of considerations that others have found useful when evaluating direct shear results.

The figures included in this guide are only examples intended to demonstrate selected concepts related to shear testing of geosynthetics. The values shown in the figures may not be representative and should not be used for design purposes. Site specific and material-specific tests should always be performed.

Область применения

1.1 This guide presents a summary of available information related to the evaluation of direct shear test results involving geosynthetic materials.

1.2 This guide is intended to assist designers and users of geosynthetics. This guide is not intended to replace education or experience and should only be used in conjunction with professional judgment. This guide is not intended to represent or replace the standard of care by which the adequacy of a given professional service must be judged, nor should this document be applied without consideration of a projects many unique aspects. Not all aspects of this practice may be applicable in all circumstances. The word Standard in the title of this document means only that the document has been approved through the ASTM consensus process.

1.3 This guide is applicable to soil-geosynthetic and geosynthetic-geosynthetic direct shear test results, obtained using either Test Method or

1.4 This guide does not address selection of peak or large-displacement shear strength values for design. References on this topic include Thiel (33), Gilbert (12), Koerner and Bowman (16), and Stark and Choi (31).

1.5 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

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.

Ключевые слова:
angle of friction; coefficient of friction; direct shear; GCL; interface shear resistance; performance test; secant friction angle; shear resistance; Mohr-Coulomb friction angle