AASHTO T 225-2016 Standard Method of Test for Diamond Core Drilling for Site Investigation.pdf
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1、Standard Method of Test for Diamond Core Drilling for Site Investigation AASHTO Designation: T 225-16 Release: Group 3 (August 2016) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-1b T 225-1 AASHTO Standard Method
2、 of Test for Diamond Core Drilling for Site Investigation AASHTO Designation: T 225-16 Release: Group 3 (August 2016) 1. SCOPE 1.1. This method covers a procedure for diamond core drilling designed to secure intact samples of rock and some soils that are too hard to sample by soil sampling methods.
3、This method is primarily for obtaining data for foundation and slope design and similar civil engineering purposes, rather than for mineral development and mining. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: T 206, Penetration Test and Split-Barrel Sampling of Soils T 207, Thin-Walled Tube Sampli
4、ng of Soils 2.2. ASTM Standard: D5079, Standard Practices for Preserving and Transporting Rock Core Samples 3. EQUIPMENT 3.1. A Rotary Drilling Machinecapable of providing a rotary motion and hydraulically, or mechanically, actuated feed or thrust. 3.2. A Water or Drilling Mud Pumpor air compressor
5、capable of delivering sufficient drilling fluid volume and pressure for the size of the hole to be drilled. 3.3. Core Barrelsas required. 3.3.1. A Single-Tube core barrelconsisting of a hollow tube with a threaded head at the upper end to fit the drill rod. The lower end of the barrel is fitted with
6、 a blank or set reaming shell, a core lifter, and a core bit. 3.3.2. A Double-Tube core barrel (swivel-type)having a swiveling inner barrel that is contained in the core barrel suspended on a bearing hanger. Drilling fluid is routed between the inner and outer barrels. This method improves core reco
7、very. More sophisticated double tubes are available having an inner tube that extends into the core bit, and the core lifter mounted inside the inner tube to protect cores of a soft or friable formation. 3.3.3. Single-Tube Type, WG Designconsisting of a hollow steel tube, with a head at one end thre
8、aded for drill rod, and a threaded connection for a reaming shell and core bit at the other end. A core 2016 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-1b T 225-2 AASHTO lifter, or retainer located w
9、ithin the core bit, is normal but may be omitted at the discretion of the geologist or engineer. 3.3.4. Double-Tube, Swivel-Type, WG DesignAn assembly of two concentric steel tubes joined and supported at the upper end by means of a ball or roller-bearing swivel arranged to permit rotation of the ou
10、ter tube without causing rotation of the inner tube. The upper end of the outer tube, or removable head, is threaded for drill rod. A threaded connection is provided on the lower end of the outer tube for a reaming shell and core bit. A core lifter located within the core bit is normal but may be om
11、itted at the discretion of the geologist or engineer. 3.3.5. Double-Tube, Swivel-Type, WT Designis essentially the same as the double tube, swivel-type, WG design, except that the WT design has thinner tube walls, a reduced annular area between the tubes, and takes a larger core from the same diamet
12、er bore hole. The core lifter is located within the core bit. 3.3.6. Double-Tube, Swivel-Type, WM Designis similar to the double tube, swivel-type, WG design, except that the inner tube is threaded at its lower end to receive a core lifter case that effectively extends the inner tube well into the c
13、ore bit, thus minimizing exposure of the core to the drilling fluid. A core lifter is contained within the core lifter case on the inner tube. 3.3.7. Double-Tube, Swivel-Type, Large-Diameter Designis similar to the double tube, swivel-type, WM design, with the addition of a ball valve to control flu
14、id flow in all three available sizes and the addition of a sludge barrel to catch heavy cuttings on the two larger sizes. The large-diameter design double-tube, swivel-type core barrels are available in three-core-per-hole sizes as follows: 23/4in. (69.85 mm) by 37/8in. (98.43 mm), 4 in. (101.6 mm)
15、by 51/2in. (139.7 mm), and 6 in. (152.4 mm) by 73/4in. (196.85 mm). Their use is generally reserved for very detailed investigative work or where other methods do not yield adequate recovery. 3.3.8. Double-Tube, Swivel-Type, Retrievable Inner-Tube Methodin which the core-laden inner-tube assembly is
16、 retrieved to the surface and an empty inner-tube assembly returned to the face of the borehole through the matching, large-bore drill rods without need for withdrawal and replacement of the drill rods in the borehole. This system is also known as the wire-line method. The inner-tube assembly consis
17、ts of an inner tube with removable core lifter case and core lifter at one end and a removable inner-tube head, swivel bearing, suspension adjustment, and latching device with release mechanism on the opposite end. The inner-tube latching device locks into a complementary recess in the wall of the o
18、uter tube such that the outer tube may be rotated without causing rotation of the inner tube and such that the latch may be actuated and the inner-tube assembly transported by appropriate surface control. The outer tube is threaded for the matching, large-bore drill rod and internally configured to
19、receive the inner-tube latching device at one end and threaded for a reaming shell and bit, or bit only, at the other end. 3.3.9. Triple-Tube, Swivel-Typeis similar to the double tube, swivel-type, WM design, with an inner liner into which the core is directly housed. The inner liner is commonly mad
20、e of a split steel tube, but split stainless steel tube liners and whole acrylic tube liners are also available. The inner liner is extruded hydraulically from the inner tube. Triple-tube barrel systems are available for conventional or wireline methods. Triple-tube core barrels are available with r
21、eaming shell sizes A, B, N, and larger. Set bit core diameters are slightly smaller compared to WM set bit core diameter sizes to account for the inner liner thickness. 3.3.10. Longitudinally Split Inner TubesAs opposed to conventional cylindrical inner tubes, these allow inspection of, and access t
22、o, the core by simply removing one of the two halves. They are not standardized but are available for most core barrels, including many of the retrievable inner-tube types. 2016 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation
23、 of applicable law.TS-1b T 225-3 AASHTO 3.3.11. The size and design nomenclature shall be in accordance with the standards adopted by the Diamond Core Drill Manufacturers Association. 3.4. Core BitsThe core bits shall be set with diamonds, tungsten carbide, or similar hard materials appropriate to t
24、he hardness of the materials being drilled and shall be furnished in X- or M-design or equivalent as required. The sizes of the core barrels and bits shall be as given in Table 1. Table 1Sizes of Core Barrelsa Hole, Diameter Core, Diameter Size in. mm in. mm EWX, EWM 1.5 38.1 0.812 20.6 AWX, AWM 1.9
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