Method and system for a hole opener
09988851 ยท 2018-06-05
Assignee
Inventors
Cpc classification
Y10T29/4973
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E21B10/26
FIXED CONSTRUCTIONS
E21B10/567
FIXED CONSTRUCTIONS
International classification
E21B10/26
FIXED CONSTRUCTIONS
E21B10/567
FIXED CONSTRUCTIONS
Abstract
A method and system for a hole opener are provided. The hole opener includes a shaft including a plurality of axial slots formed in an outer periphery and spaced circumferentially about the shaft, a plate coupled to the outer periphery between each pair of slots, the plate including fastening wings that extend radially outwardly from each circumferential end of the plate, and a blade extending radially outwardly from a respective one of the plurality of axial slots between a fastening wing of each of adjacent plates, the blade coupled to each fastening wing.
Claims
1. A hole opener comprising: a shaft comprising a plurality of axial slots formed in an outer periphery of said shaft and spaced circumferentially about said shaft, each axial slot of said plurality of axial slots comprising a pair of radially extending sidewalls spaced circumferentially apart; a plate coupled to said outer periphery between each pair of said plurality of axial slots, each plate comprising a single unitary body, said plate comprising fastening wings that extend outwardly from each circumferential end of said plate, said fastening wings each comprising an endwall radially aligned with the sidewall of an adjacent slot of said plurality of axial slots; and a blade extending radially outwardly from a bottom surface of each of said plurality of axial slots to an outer diameter of said hole opener, said blades comprising a surface in contact with said endwall and said sidewall, said blade coupled to each fastening wing.
2. The hole opener of claim 1, wherein said blades are removably coupled to said plates using mechanical fasteners.
3. The hole opener of claim 1, wherein a plurality of said blades comprises a set of blades, each set of blades comprising blades that are identically sized, a first set of blades comprising first blades having a first radial dimension to accommodate a first sized hole, a second set of blades comprising second blades having a second radial dimension to accommodate a second sized hole.
4. The hole opener of claim 1, wherein said blade comprises a plurality of teeth formed of polycrystalline diamond compact (PDC).
5. The hole opener of claim 1, wherein said blade comprises a plurality of teeth formed of a polycrystalline diamond layer and a tungsten carbide substrate.
6. The hole opener of claim 1, wherein said plates comprise a radially inwardly extending spine configured to engage an axial groove in said shaft spaced circumferentially between adjacent axial slots of said plurality of axial slots.
7. The hole opener of claim 1, further comprising a fastener cover configured to engage a surface of said fastening wings over a plurality of fasteners coupling said blade to said plate.
8. The hole opener of claim 1, wherein said plates are straight in an axial direction.
9. A method of assembling a hole opener, said method comprising: providing a shaft having a plurality of axially aligned slots spaced circumferentially about a radially outer periphery of the shaft; coupling a first plate to the radially outer periphery of the shaft between a first pair of adjacent slots of the plurality of axially aligned slots; sliding a blade radially inwardly into a respective one of the plurality of axially aligned slots; and coupling the blade to the plate.
10. The method of claim 9, further comprising: coupling a second plate to the radially outer periphery of the shaft adjacent to one of the first pair of adjacent slots of the plurality of axially aligned slots; and coupling the blade to the second plate using mechanical fasteners.
11. The method of claim 9, further comprising coupling a plurality of bit teeth to a radially outer edge of the plate.
12. A method of replacing a hole opener cutting blade, said method comprising: uncoupling the cutting blade from one or more adjacent plates; sliding the cutting blade radially outwardly between the one or more adjacent plates; sliding a replacement cutting blade radially inwardly between the one or more adjacent plates until the replacement cutting blade is seated in a respective slot in the hole opener; and coupling the cutting blade to the one or more adjacent plates.
13. The method of claim 12, wherein uncoupling the cutting blade from one or more adjacent plates comprises removing a fastener cover from a fastening wing of a respective one of the one or more adjacent plates.
14. The method of claim 12, wherein uncoupling the cutting blade from one or more adjacent plates comprises uncoupling the cutting blade from a fastening wing extending radially outwardly from a respective one of the one or more adjacent plates.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12) Although specific features of various embodiments may be shown in some drawings and not in others, this is for convenience only. Any feature of any drawing may be referenced and/or claimed in combination with any feature of any other drawing.
(13) Unless otherwise indicated, the drawings provided herein are meant to illustrate features of embodiments of the disclosure. These features are believed to be applicable in a wide variety of systems comprising one or more embodiments of the disclosure. As such, the drawings are not meant to include all conventional features known by those of ordinary skill in the art to be required for the practice of the embodiments disclosed herein.
DETAILED DESCRIPTION
(14) The following detailed description illustrates embodiments of the disclosure by way of example and not by way of limitation. It is contemplated that the disclosure has general application to embodiments of operating and assembling down hole tools including hole openers in industrial, commercial, and residential applications. Although referred to herein as a hole opener in a horizontal drilling environment, in various other embodiments, the hole opener described herein may also be referred to as a reamer in vertical drilling environments. Hole opener and reamer are used interchangeably herein.
(15) The following description refers to the accompanying drawings, in which, in the absence of a contrary representation, the same numbers in different drawings represent similar elements.
(16)
(17) In use, horizontal drilling machine 101 is used to drive drill string 108 into ground 102 as shown in
(18) After drill string 108 has been pushed from entry point 104 to exit point 106, the cutting tool is removed from the far end of drill string 108 and replaced with a hole opener 119. A utility 110 (i.e., a utility pipe) can be attached to hole opener 119 with a swivel 112 such that drill string 108 can rotate independent of utility 110. Once hole opener 119 and utility 110 have been attached to drill string 108, horizontal drilling machine 101 is used to withdraw drill string 108. As drill string 108 is withdrawn, drill string 108 is rotated causing hole opener 119 to enlarge the pilot bore. As drill string 108 is withdrawn, utility 110 is concurrently pulled into the opened bore. As shown in
(19)
(20) Blade 210 includes a pocket 216 along a radially inner edge 218 on both sides of blade 210. Slot 204 includes an axially extending narrow portion 220 between two axially extending wider portions 222 at either end of narrow portion 220. Narrow portion 220 and wider portions 222 are complementary to a shape of inner edge 218. During assembly, inner edge 218 fits securely into slot 204 including narrow portion 220 and wider portions 222.
(21) During use, plates 212 are coupled to sub shaft 202 between the plurality of axial slots 204. Blades 210 are slid radially inwardly between plates 212 and seated in a respective one of the plurality of axial slots 204. Blades 210 are then coupled to plates 212 to secure them in position.
(22)
(23)
(24) Blade assembly 816 includes a straight face 821 configured to engage one of the plurality of axial slots 814. Blade assembly 816 extends radially outwardly from an associated axial slot 814 between a pair of fastening wings 812 associated with axial slot 814. Blade assembly 816 includes a cutting edge 823 that is at least partially arcuate and configured to engage an inner surface of a bore hole. In various embodiments, blade assembly 816 is press fit between a respective pair of fastening wings 812 and/or in a respective axial slot 814. Blade assembly 816 and fastening wings 812 associated with blade assembly 816 include one or more apertures 818 aligned therethrough and configured to receive a mechanical fastener 820 that permits removably coupling blade assembly 816 to hole opener 800. Each blade assembly 816 is selectable from a plurality of blade assemblies 816 in a plurality of different sizes to permit hole opener 800 to form different size bore diameters based on a size of blade assemblies 816 selected. A diameter 824 of blade assembly 816 when fully installed extends beyond diameter 808 and diameter 810 by an amount dependent on the dimension of an installed blade assembly 816. For example, five sets of blade assemblies 816 permit 10-inch, 12-inch, 14-inch, 16-inch, and 18-inch hole sizes. In the example embodiment, one size blade assembly 816 is used for 10-inch diameter blade assemblies 816 and a second size blade assembly 816 is used for the 12-inch, 14-inch, 16-inch, and 18-inch diameter blade assemblies 816. Fastening wings 812 and axial slots 814 support blade assembly 816 when hole opener subassembly 800 is turning in a hole.
(25) Each blade assembly 816 includes a leading edge 826 in a direction 828 of rotation of blade assembly 816 in a bore hole during operation of hole opener 800. Leading edge 826 includes a plurality of teeth or cutting bits 827 coupled to leading edge 826 in at least one of direction 828 and a direction orthogonal to the direction of travel of blade assembly 816 during operation of hole opener 800.
(26) Cutting bits 827 are formed of a material having a hardness greater than a hardness of blade assembly 816 such as, but not limited to, polycrystalline diamond compact (PDC), which is a compact of a polycrystalline diamond layer and a tungsten carbide substrate. The polycrystalline diamond layer possesses extremely high hardness and abrasion resistance, whereas the tungsten carbide substrate greatly improves a toughness and weldability of the whole compact.
(27) During use, blade assemblies 816 are coupled to sub shaft 802 between the plurality of fastening wings 812 and at least partially inserted into slots 814. Blade assemblies 816 are slid radially inwardly between fastening wings 812 and seated in a respective one of the plurality of axial slots 814. Blade assemblies 816 are then coupled to fastening wings 812 to secure them in position.
(28)
(29) This written description uses examples to describe the disclosure, including the best mode, and also to enable any person skilled in the art to practice the disclosure, including making and using any devices or systems and performing any incorporated methods. The patentable scope of the disclosure is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal languages of the claims.