Anchor post
Provided herein are methods, devices and systems comprising an anchor post that has a shaft, at least one stabilizing element attached to the anchor post configured to resist movement of the anchor post, and at least one alignment element.
1. An anchor post comprising:
(a) a shaft having a head end and a closed end, the shaft having a cavity configured to receive a drive rod within said shaft, the shaft configured to connect to a load post;
(b) at least one stabilizing element attached to the anchor post and configured to resist movement of the anchor post; and
(c) at least one alignment element that is connected to the head end of the shaft and that is configured to connect to at least one load post.
2. The anchor post of claim 1 , wherein the at least one alignment element is configured to connect to the at least one load post without inserting a substantial portion of the load post into the anchor post.
3. The anchor post of claim 1 , wherein the at least one stabilizing element is a geometric shape comprising a prism, trapezoidal prism, rectangular prism, triangular prism, a cube, a pyramid, a hemisphere, a barb, or a fin.
4. The anchor post of claim 1 , wherein the anchor post is manufactured of a versatile material capable to withstand using a driving force from a hand-held device or a bottom-driven device or a percussion-driven device used for installation of the anchor post into said displaceable ground material.
5. The anchor post of claim 1 , wherein the at least one stabilizing element is at least about 2000 mm 2 to at least about 150,000 mm 2 .
6. The anchor post of claim 1 , comprising at least two stabilizing elements.
7. The anchor post of claim 6 , wherein each of the at least two stabilizing elements is attached to the shaft between about 1 millimeter and about 500 millimeters measured from the head end or the closed end of the anchor post.
8. The anchor post of claim 1 , wherein the shaft having the closed end comprises a cross-configuration configured to provide control and direction during installation into said displaceable ground material.
9. The anchor post of claim 1 , wherein the at least one alignment element is convex.
10. The anchor post of claim 1 , wherein the at least one alignment element is concave.
11. The anchor post of claim 1 , wherein the at least one alignment element comprises a hole, slot or aperture.
12. The anchor post of claim 1 , wherein the anchor post is configured for installation into a displaceable ground material that comprises chalk, gravel, limestone, sand, silt, clay, marl, ballast, soil, fractured sandstone, peat, ash, alluvium, glacial till, miscellaneous fill, or a combination thereof.
13. The anchor post of claim 4 , wherein the bottom-driven or the hand-held device is an anti-vibrational hammer.
14. The anchor post of claim 13 , wherein the anchor post comprises a versatile material that comprises steel, recycled steel, stainless steel, cast iron, graphite iron, glass reinforced fiber, extruded resin plastics, pulltruded plastic, molded plastic, or any combination thereof.
15. The anchor post of claim 1 , wherein the shaft is at least about 5 millimeters in diameter.
16. A method of installing the anchor post of claim 1 , comprising driving the anchor post into a displaceable ground material, applying at least about 3 kN of force to the head end of the anchor post.
17. The method of claim 16 , wherein the anchor post is configured for installation into a displaceable ground material at a drive-rate of at least about 5 millimeters of anchor post per second.
18. The method of claim 16 , wherein the anchor post is configured for installation into the ground at a drive-rate of at least about 20 millimeters of anchor post per second.
19. The method of claim 16 , wherein the anchor post is configured for installation into the ground at a drive-rate of at least about 25 millimeters of anchor post per second.
20. The method of claim 16 , wherein a hand-held device is used to drive the anchor post into the displaceable ground material.