Pile coupling for helical pile/torqued in pile
10669686 ยท 2020-06-02
Inventors
Cpc classification
E02D5/46
FIXED CONSTRUCTIONS
E02D5/52
FIXED CONSTRUCTIONS
E02D5/34
FIXED CONSTRUCTIONS
E02D5/808
FIXED CONSTRUCTIONS
E02D11/00
FIXED CONSTRUCTIONS
E02D5/285
FIXED CONSTRUCTIONS
International classification
E02D11/00
FIXED CONSTRUCTIONS
E02D5/34
FIXED CONSTRUCTIONS
E02D5/46
FIXED CONSTRUCTIONS
E02D5/36
FIXED CONSTRUCTIONS
Abstract
A pile includes a first pile section having a first end that engages a supporting medium and an opposing second end. A first end of a second pile section is engageable with the second end of the first pile section, each of the first and second pile sections having mating end fittings that create an interlocking fit. A sleeve overlays the first and second engaged ends of the first and second pile sections. At least one through hole aligned with at least one corresponding through hole of the first pile section is sized for receiving a fastener for securing the sleeve to the first pile section. In another version, the ends of the pile section are engaged in contact while the overlaying sleeve has a pair of interlocking sleeve or coupler portions that are configured to provide torsional resistance. Additional pile sections can be sequentially attached to the second pile section.
Claims
1. A pile comprising: a first pile section having a first end configured to engage a supporting medium, said first pile section having an opposing second end, said opposing second end having an integral mating end fitting having multiple projections and multiple recesses, each projection and recess of said integral mating end fitting of said opposing second end of said first pile section having a parallelogram shape to enable transfer of a torsion load, said first pile section having opposing first pile section through holes at said opposing second end; a second pile section having a first end configured to engage said opposing second end of said first pile section, said second pile section having an opposing second end, said first end of said second pile section having an integral mating end fittings having multiple projections and multiple recesses, each projection and recess of said integral mating end fitting of said first end of said second pile section having a parallelogram shape to enable transfer of a torsion load, said multiple projections of said mating end fitting of said opposing second end of said first pile section engaging said multiple recesses of said first end of said second pile section and said multiple recesses of said mating end fitting of said opposing second end of said first pile section engaging said multiple projections of said first end of said second pile section to create an interlocking fit; a first sleeve sized to overlay said opposing second end of said first pile section, said first sleeve having projections, said projections overlaying said opposing second end of said first pile section; a second sleeve sized to overlay said first end of said second pile section and sized to overlay said opposing second end of said first pile section; and a fastener; said second sleeve having projections, said projections of said second sleeve overlaying said opposing second end of said first pile section; said first sleeve having recesses to engage said projections of said second sleeve; said second sleeve having recesses to engage said projections of said first sleeve; said first sleeve and said second sleeve creating an interlocking fit to enable transfer of a torsion load; said second sleeve having opposing second sleeve through holes; said first sleeve having no opposing through holes therein; said opposing second sleeve through holes being alignable with said opposing first pile section through holes; said fastener passing through said opposing second sleeve through holes and said opposing first pile section through holes to secure said second sleeve to said opposing second end of said first pile section.
2. The pile as recited in claim 1, wherein said first end of said first pile section includes a driving tip.
3. The pile as recited in claim 1, wherein said first end of said first pile section includes helical flighting.
4. The pile as recited in claim 1, further comprising: a third pile section having a first end and an opposing second end; said opposing second end of said second pile section having an integral mating end fitting having projections and recesses, said projections and recesses of said integral mating end fitting of said opposing second end of said second pile section being shaped to enable transfer of a torsion load; said first end of said third pile section having an integral mating end fitting having projections and recesses, said projections and recesses of said integral mating end fitting of said first end of said third pile section being shaped to enable transfer of a torsion load; said projections of said mating end fitting of said opposing second end of said second pile section engaging said recesses of said first end of said third pile section; said recesses of said opposing second end of said second pile section engaging said projections of said mating end fitting of said first end of said third pile section to create an interlocking fit.
5. The pile as recited in claim 4, further comprising: a third sleeve sized to overlay said opposing second end of said second pile section, said third sleeve having projections, said projections overlaying said opposing second end of said second pile section; a fourth sleeve sized to overlay said first end of said third pile section and sized to overlay said opposing second end of said second pile section; and a second fastener; said fourth sleeve having projections, said projections of said fourth sleeve overlaying said opposing second end of said second pile section; said third sleeve having recesses to engage said projections of said fourth sleeve; said fourth sleeve having recesses to engage said projections of said third sleeve; said third sleeve and said fourth sleeve creating an interlocking fit to enable transfer of a torsion load; said second end of said second pile section having opposing through holes; said fourth sleeve having opposing fourth sleeve through holes; said opposing fourth sleeve through holes of said fourth sleeve being alignable with said opposing through holes of said second pile section; said second fastener passing through said opposing fourth sleeve through holes of said fourth sleeve and said opposing through holes of said second pile section to secure said fourth sleeve to said opposing second end of said second pile section.
6. The pile as recited in claim 1, wherein said projections and recesses are angled relative to a primary axis of a corresponding pile section.
7. A pile comprising: a first pile section having a first end configured to engage a supporting medium, said first pile section having an opposing second end, said opposing second end of said first pile section having opposing first pile section through holes; a second pile section having a first end and a second opposing end; a first sleeve sized to overlay said opposing second end of said first pile section, said first sleeve having projections, said projections overlaying said opposing second end of said first pile section; a second sleeve sized to overlay said first end of said second pile section and sized to overlay said opposing second end of said first pile section; and a fastener; said second sleeve having projections, said projections of said second sleeve overlaying said opposing second end of said first pile section; said first sleeve having recesses to engage said projections of said second sleeve; said second sleeve having recesses to engage said projections of said first sleeve; said first sleeve and said second sleeve creating an interlocking fit to enable transfer of a torsion load; said second sleeve having opposing through holes; said opposing through holes of said second sleeve being alignable with said opposing first pile section through holes; said fastener passing through said opposing through holes of said second sleeve and said opposing first pile section through holes to secure said second sleeve to said opposing second end of said first pile section.
8. The pile as recited in claim 7, wherein said projections and recesses of said first sleeve are defined by irregular cuts and said projections and recesses of said second sleeve are defined by irregular cuts such that said irregular cuts of said first sleeve match said irregular cuts of said second sleeve to enable transfer of the torsion load.
9. The pile as recited in claim 7, wherein said first sleeve is secured to said first pile section and said second sleeve is secured to said second pile section.
10. The pile as recited in claim 7, wherein said first end of said first pile section includes a driving tip.
11. The pile as recited in claim 7, wherein said first end of said first pile section includes helical flighting.
12. The pile as recited in claim 7, wherein said projections and recesses are angled relative to a primary axis of a corresponding pile section when attached thereto.
13. The pile as recited in claim 7, wherein said projections have a shape in the form of a parallelogram with the exception of a distal end having a laterally extending feature; said recesses being shaped to receive said projections having the shape in the form of a parallelogram including the laterally extending feature.
14. The pile as recited in claim 7, further comprising: a third pile section having a first end and an opposing second end; a third sleeve sized to overlay said first end of said third pile section, said third sleeve having projections, said projections of said third sleeve overlaying said first end of said third pile section; a fourth sleeve sized to overlay said opposing second end of said second pile section and to overlay said first end of said third pile section, said fourth sleeve having projections, said projections of said fourth sleeve overlaying said opposing second end of said second pile section; and a second fastener; said opposing second end of said second pile section having opposing second pile section through holes; said third sleeve having recesses to engage said projections of said fourth sleeve; said fourth sleeve having recesses to engage said projections of said third sleeve; said third sleeve and said fourth sleeve creating an interlocking fit to enable transfer of a torsion load; said fourth sleeve having opposing through holes; said opposing through holes of said fourth sleeve being alignable with said opposing second pile section through holes; said second fastener passing through said opposing through holes of said fourth sleeve and said opposing second pile section through holes to secure said fourth sleeve to said opposing second end of said second pile section.
15. The pile as recited in claim 14, wherein said opposing second end of said second pile section having an integral mating end fitting having projections and recesses, said projections and recesses of said integral mating end fitting of said opposing second end of said second pile section being shaped to enable transfer of a torsion load; said first end of said third pile section being configured to engage said opposing second end of said second pile section, said first end of said third pile sections having an integral mating end fitting having projections and recesses, said projections and recesses of said integral mating end fitting of said first end of said third pile section being shaped to enable transfer of a torsion load; said projections of said mating end fitting of said opposing second end of said second pile section engaging said recesses of said first end of said third pile section and said recesses of said mating end fitting of said opposing second end of said second pile section engaging said projections of said first end of said third pile section to create an interlocking fit.
16. The pile as recited in claim 7, wherein said opposing second end of said first pile section having an integral mating end fitting having projections and recesses, said projections and recesses of said integral mating end fitting of said opposing second end of said first pile section being shaped to enable transfer of a torsion load; said first end of said second pile section being configured to engage said opposing second end of said first pile section, said first end of said second pile sections having an integral mating end fitting having projections and recesses, said projections and recesses of said integral mating end fitting of said first end of said second pile section being shaped to enable transfer of a torsion load; said projections of said mating end fitting of said opposing second end of said first pile section engaging said recesses of said first end of said second pile section and said recesses of said mating end fitting of said opposing second end of said first pile section engaging said projections of said first end of said second pile section to create an interlocking fit.
17. A pile assembly comprising: a first pile section having a first end configured to engage a supporting medium, said first pile section having an opposing second end, said opposing second end having an integral mating end fitting having multiple irregularly shaped projections and multiple irregularly shaped recesses, each irregularly shaped projection and irregularly shaped recess of said integral mating end fitting of said opposing second end of said first pile section being shaped to enable transfer of a torsion load, said first pile section having opposing first pile section through holes at said opposing second end; a second pile section having a first end configured to engage said opposing second end of said first pile section, said second pile section having an opposing second end, said first end of said second pile section having an integral mating end fittings having multiple irregularly shaped projections and multiple irregularly shaped recesses, each irregularly shaped projection and irregularly shaped recess of said integral mating end fitting of said first end of said second pile section being shaped to enable transfer of a torsion load, said multiple irregularly shaped projections of said mating end fitting of said opposing second end of said first pile section engaging said multiple irregularly shaped recesses of said first end of said second pile section and said multiple irregularly shaped recesses of said mating end fitting of said opposing second end of said first pile section engaging said multiple irregularly shaped projections of said first end of said second pile section to create an interlocking fit; a first sleeve sized to overlay said opposing second end of said first pile section, said first sleeve having projections, said projections overlaying said opposing second end of said first pile section; a second sleeve sized to overlay said first end of said second pile section and sized to overlay said opposing second end of said first pile section; and a fastener; said second sleeve having projections, said projections of said second sleeve overlaying said opposing second end of said first pile section; said first sleeve having recesses to engage said projections of said second sleeve; said second sleeve having recesses to engage said projections of said first sleeve; said first sleeve and said second sleeve creating an interlocking fit to enable transfer of a torsion load; said second sleeve having opposing second sleeve through holes; said first sleeve having no opposing through holes therein; said opposing second sleeve through holes being alignable with said opposing first pile section through holes; said fastener passing through said opposing second sleeve through holes and said opposing first pile section through holes to secure said second sleeve to said opposing second end of said first pile section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention is disclosed with reference to the accompanying drawings, wherein:
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(25) Corresponding reference characters indicate corresponding parts throughout the several views. The examples set out herein illustrate several embodiments of the invention but should not be construed as limiting the scope of the invention in any manner.
DETAILED DESCRIPTION
(26) Referring to
(27)
(28) In the embodiment shown in
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(30) As shown in
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(32) The blade 112 has a helical configuration with a handedness that moves soil away from the point 118 and toward the top section where it contacts the lateral compaction element 200. The auger 110, however, has a helical configuration with a handedness opposite that of the blades 112. The handedness of the auger helix pushes the grout that is extruded from the trailing edge 116 toward the bottom section. In one embodiment, the auger 110 has a pitch of from about 1.5 to 2.0 times the pitch of the blade 112. The blade 112 may have any suitable pitch known in the art. For example, the blade 112 may have a pitch of about three inches. In another embodiment, the blade 112 may have a pitch of about six inches.
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(35) Referring again to
(36) Referring to
(37) The flanges 804a and 804b each include a number of clearance holes 1000 spaced apart on the flanges such that the holes 1000 line up when the flame 804a is abutted against the flange 804b. The abutting flanges 804a and 804b are secured by fasteners 806, such as the bolts shown in
(38) In another embodiment, the flanges 804a, 804b are in each in a plane that is substantially transverse to the longitudinal axis of the pile sections 802a, 802b. Particularly, at least one surface, such as the interface surface 900 (
(39) The vertical orientation of the fasteners allows the pile sections 802a, 802b to be assembled without vertical slop or lateral deflection. Thus the assembled pile sections 802a, 802b support the weight of a structure as well as upward and horizontal forces, such as those caused by the structure moving in the wind or due to an earthquake. Further, because the fasteners 806 are vertically oriented, an upward force is applied along the axis of the fasteners 806. Fasteners tend to be stronger along the axis than under shear stress.
(40) In a particular embodiment, the pile sections 802a acid 802b are about 3 inches in diameter or greater such that the piles support themselves without the need for grout reinforcement, though grout or another material may be used for added support as desired. Since the flanges 804a, 804b may cause a gap to form between the walls of the pile sections 802a, 802b and the soil as the pile sections 802a, 802b are driven into the soil, one may want to increase the skin friction between the pile sections 802a, 802b and the soil for additional support capacity for the pile assembly 800 by adding a filler material 808 to fill the voids between the piles and the soil. The material 808 may also prevent corrosion. The material 808 may be any grout, a polymer coating, a flowable fill, or the like. Alternatively, the assembly 800 may be used with smaller piles, such as 1.5 inch diameter pile sections, which may be reinforced with grout. The pile sections 802a, 802b may be made from any substantially rigid material, such as steel or aluminum. One or more of the pile sections in the assembly 800 may be helical piles.
(41) In a particular embodiment, the pile sections 802a, 802b are tubes having a circular cross-section, though any cross-sectional shape may be used, such as rectangles and other polygons. A particular advantage of the present invention over conventional pile couplings is that the couplings in the assembly 800 do not pass the fasteners 806 through the interior of the pile tube. This leaves the interior of the assembled pile sections open so that grout or concrete may be easily introduced to the pile tube along the length of all the assembled pile sections. Further, a reinforcing structure, such as a rebar cage that may be dropped into the pile tube, may be used with the internal concrete
(42) In a further particular embodiment, the invention is used in conjunction with a rock socket. As shown in
(43) In an alternative configuration of the pile assembly 800, the flanges 804a, 804b are welded to or formed in the outer surface of the respective pile sections 802a, 802b as shown in
(44) A pile assembly 1500 having an alternative coupling is shown in
(45) With reference to
(46) The first pile section 2202 according to this embodiment includes a driving tip 2204 formed at a distal end 2206 that is configured to be driven into a supporting surface (not shown) such as soil, rocks, etc. An opposing proximal end 2208 of the first pile section 2202 includes a first mated fitting 2210 that is monolithically formed in a circumference of the proximal end 2208. In the example of
(47) According to this embodiment, the proximal end 2208 further comprises at least one through hole 2216 that extends through the diameter of the first pile section 2202. More specifically and according to this embodiment, two sets of through-holes 2216 are present in spaced relation proximate the proximal end 2208 of the first pile section 2202.
(48) As shown in
(49) In operation and when a torque is applied to the coupled pile assembly 2200, the torsional load is adequately supported by the bolt(s), the weld(s) 2304, as well as the mated pile sections 2202, 2214 due to the inclusion of the sleeve 2300 and the interlocking fit created by the mated fittings 2210, 2212.
(50) The interlocking configuration between the first and second pile sections 2202, 2214 provides additional strength and enables better distribution of torsional loads during the pile installation, as shown in the end view of
(51) Other embodiments that embody the inventive concepts are possible. A second embodiment is described with reference to
(52) The second sleeve portion 2406 has a corresponding mated fitting 2408 that engages the mated fitting 2404 defined on the engaged end of the first sleeve portion 2401 and creates an interlocking fit therebetween, in a manner akin to that between the first and second pile sections 2202, 2214 of the prior embodiment. Preferably, the mated fittings 2404, 2408 are defined by precision cuts monolithically made in the circumference at the engaged ends of each sleeve portion 2401, 2406. In terms of the cuts made, the shape of irregularity of the mated fittings 2404, 2408 may be varied, with the intent of the formed connection being to transfer torque and relieve the fasteners of the majority of the stress created during installation of the pile as a result of the interlocking fit. The second and first sleeve portions 2406, 2401 are attached to the first pile section 2202 and second pile section 2214, respectively, by welds. In operation, the interlocking sleeve portions 2401, 2406 act to better distribute the torsional load applied to the pile sections 2202, 2214.
(53) In a further alternative embodiment shown in
(54) It will be readily apparent that the interlocking fit of either the sleeve portions or the pile sections a suitable pile coupling as described by the preceding embodiments can assume a number of configurations as further shown, for example, in
(55) Another exemplary embodiment is illustrated in
(56) According to yet another variation shown in
(57) In each of the above examples as well as those previously discussed, the sleeve portions can be attached to the pile shaft using any known attachment technique, including but not limited to welding, epoxying and fasteners.
(58) It should be noted that the manifold connections in the above-described embodiments each provide a continuous plane along the length of the assembled pile sections allowing for neither lateral deflection nor vertical compression or tension loads. It should be further noted that features of the above-described embodiments may be combined in part or in total to form additional configurations and embodiments within the scope of the invention.
(59) Referring now to
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(62) The embodiment of
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PARTS LIST FOR FIGS. 1-26(c)
(64) 100 auger grouted displacement pile 102 elongated tubular pipe 104 top section 106 bottom section 108 soil displacement head 110 auger 112 blade 114 leading edge 116 trailing edge 120 deformation structure 200 lateral compaction element 202 width 204 height 206 end 208 end 300 hollow central chamber 302 means for extruding grout 304a-304e elongated openings 306 walls 308 walls 310 distal wall 312 channels 314 width, trailing edge 316 width 318 thickness 320 thickness, trailing edge 402 grooves 500 pile 502 auger section 504 pile 506 surface 600 mixing fins 700 coupling pile 702 coupling pile 704 coupling pile 800 pile assembly 802a pile section 802b pile section 804a flange 804b flange 806 fasteners 808 material 900 interface surface 1000 clearance holes 1100 cage 1102 internal grout 1200 rock socket 1202 bedrock 1204 concrete 1400 alignment sleeve 1500 pile assembly 1502a pile section 1502b pile section 1504a flange, filleted 1504b flange, filleted 1505a fillet 1505b fillet 1600 pile assembly 1602a pile section 1602b pile section 1604a teeth 1604b teeth 1606a flange 1606b flange 1802 shaft 1804 top section 1806 bottom section 1810 auger, helical 1814 leading edge 1816 trailing, edge 1818 projection 1820 deformation structure 2000 leading helix 2100 deformation structure 2200 pile assembly 2202 first pile section 2204 driving tip 2206 distal end 2208 proximal end 2210 first mated fitting 2212 second mated fitting 2213 projections, axial 2214 second pile section 2216 holes 2217 distal end, second pile section 2300 sleeve 2302 holes 2304 weld 2400 sleeve 2401 first sleeve portion 2402 holes 2406 second sleeve portion 2604 first pile or sleeve portion 2608 second pile or sleeve portion 2612 axial projections or teeth 2616 recesses 2704 first pile or sleeve portion 2708 second pile or sleeve portion 2712 axial projections or teeth 2715 lateral end feature 2716 recesses 2804 first pile or sleeve portion 2808 second pile sleeve portion 2812 axial projections or teeth (angled) 2816 recesses (angled)
(65) While the invention has been described with reference to preferred embodiments, it will be understood by those stilled in the art that various changes may be made and equivalents may be substituted for elements thereof to adapt to particular situations without departing from the scope of the invention. Therefore, it is intended that the invention not be limited to the particular embodiments disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all embodiments falling within the scope and spirit of the appended claims.
(66) It will be readily apparent that other variations and modifications are possible within the inventive ambits of the present invention, and in accordance with the following claims. For example, the pile sections of the first embodiment could be used in concert with the interlocking sleeve portions according to the embodiment according to