
【国外标准】 Standard Test Method for Triaxial Shear Strength and Cohesion of Equine Sports Surfaces
本网站 发布时间:
2024-02-28
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
5.1 To test the shear strength of a materials describing how the material resists sliding of surface layers. Data from these tests are used to calculate the friction angle and cohesion of a surface sample. This test can be used to help determine if a material falls within a suitable for equine sports surfaces.1.1 This adapted test method covers the determination of strength and stress-strain relationships of a cylindrical specimen of a compacted, drained cohesive natural or synthetic soil surface used in equine sports surfaces. Specimens are isotropically consolidated and sheared in compression at a constant rate of axial deformation (strain controlled).1.2 The shear strength of an equine sports surface material describes the resistance of the material to sliding of the surface layers. Shear strength influences both slide and penetration of the hoof in the track surface. It is generally accepted that a small amount of slide on impact is desirable (1-3).2 However, the surface must have sufficient shear strength to support the horse during propulsion (1-5). Thus, an optimal shear strength would be expected for an equestrian surface.1.3 To determine the shear strength of an equine sports surface, a representative dirt or synthetic sample is placed into a cylindrical cell and a vertical load is applied. Shear strength is measured as per the procedures outlined in Test Method D4767 for lab-consolidated samples. This ASTM standard was adapted by Racing Surfaces Testing Laboratory for the drained condition to more accurately model the conditions of an equestrian surface.1.4 Dirt samples are tested over a range of forming moisture contents to determine the maximum bulk density and optimal forming moisture content for a given energy input. The dirt samples are then compacted at this optimal moisture content. The maximum stress failure criteria is assumed and results are presented as the failure stress at 15 psi confining pressure versus sample forming moisture content, along with friction angle and cohesion.1.5 Synthetic samples with good drainage are tested at a 4% forming moisture content, and over a specified range of temperatures. The temperature is controlled using a heated/refrigerated water bath with a triaxial cell cap fitted with a copper coil. Failure criteria is assumed under similar conditions for the dirt surfaces, and results are presented as the failure stress at 15 psi confining pressure versus sample temperature, along with friction angle and cohesion.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, health, and environmental practices and determine the applicability of regulatory limitations prior to use.1.7 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
标准号:
ASTM F3415-20
标准名称:
Standard Test Method for Triaxial Shear Strength and Cohesion of Equine Sports Surfaces
英文名称:
Standard Test Method for Triaxial Shear Strength and Cohesion of Equine Sports Surfaces标准状态:
Active-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- ASTM D4619-12(2018) Standard Practice for Inspection of Linings in Operating Flue Gas Desulfurization Systems
- ASTM D4623-16 Standard Test Method for Determination of In Situ Stress in Rock Mass by Overcoring Method—Three Component Borehole Deformation Gauge
- ASTM D4625-21 Standard Test Method for Middle Distillate Fuel Storage Stability at 43 °C (110 °F)
- ASTM D4626-23 Standard Practice for Calculation of Gas Chromatographic Response Factors
- ASTM D4630-19 Standard Test Method for Determining Transmissivity and Storage Coefficient of Low-Permeability Rocks by In Situ Measurements Using the Constant Head Injection Test
- ASTM D4631-18 Standard Test Method for Determining Transmissivity and Storativity of Low Permeability Rocks by In Situ Measurements Using Pressure Pulse Technique
- ASTM D4634-16(2022) Standard Classification System and Basis for Specification for Styrene-Maleic Anhydride Molding and Extrusion Materials (S/MA)
- ASTM D4636-17 Standard Test Method for Corrosiveness and Oxidation Stability of Hydraulic Oils, Aircraft Turbine Engine Lubricants, and Other Highly Refined Oils
- ASTM D4637/D4637M-15(2021)e1 Standard Specification for EPDM Sheet Used in Single-Ply Roof Membrane
- ASTM D4638-16(2023) Standard Guide for Preparation of Biological Samples for Inorganic Chemical Analysis
- ASTM D464-15(2020) Standard Test Methods for Saponification Number of Pine Chemical Products Including Tall Oil and Other Related Products
- ASTM D4647/D4647M-13(2020) Standard Test Methods for Identification and Classification of Dispersive Clay Soils by the Pinhole Test
- ASTM D465-15(2020) Standard Test Methods for Acid Number of Pine Chemical Products Including Tall Oil and Other Related Products
- ASTM D4651-14(2020) Standard Specification for Isobutane Thermophysical Property Tables
- ASTM D4653-87(2020) Standard Test Method for Total Chlorides in Leather