Polymer locking spacer system
09732884 · 2017-08-15
Inventors
Cpc classification
E21B19/15
FIXED CONSTRUCTIONS
F16L55/035
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65D19/44
PERFORMING OPERATIONS; TRANSPORTING
F16L3/2235
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Improvements for tube separation assemblies currently used in oil field applications include tube assemblies for maintaining tube separation using a fastening system comprising preferably non-metallic tube spacers and a preferably locking mechanism on the fastening system. The present invention allows all parts of the system to be more easily visually inspected than prior systems known to the inventor.
Claims
1. A tube support apparatus, comprising: a plurality of tubes, each of the plurality of tubes being a cylindrical tube, having a cylindrical wall surrounding a bore, and having an outer diameter; a first tube support assembly, and a second tube support assembly spaced apart from the first tube support assembly, each of the first and second tube support assemblies comprising: a plurality of retaining blocks at spaced apart positions, the retaining blocks including at least an upper block and a lower block, the upper block having a base and a lowermost end distal from the base of the upper block, and the lower block having a base and an apex distal from the base of the lower block; a plurality of elongated transverse members, the elongated transverse members including at least an upper elongated transverse member and a lower elongated transverse member, the upper elongated transverse member placed directly above the base of the upper block, the base of the lower block placed directly above the lower elongated transverse member; a plurality of projections, the projections extending directly from the lower elongated transverse member, each projection having a cylindrical portion, an enlarged end portion, and a height, and wherein a spacing is between every two immediately adjacent enlarged end portions of the plurality of projections; each of the plurality of tubes placed between two of said plurality of projections; each of the plurality of tubes sandwiched between the upper block and the lower block, each of the plurality of tubes contacting the upper block only at the lowermost end of the upper block, each of the plurality of tubes contacting the lower block only at the apex of the lower block; wherein the spacing between every two immediately adjacent enlarged end portions is smaller than the outer diameter of each of said plurality of tubes; and wherein the height of each projection is greater than the outer diameter of each of said plurality of tubes.
2. The tube support apparatus of claim 1, wherein the retaining blocks of each tube support assembly comprise a polymeric material.
3. The tube support apparatus of claim 1, wherein the plurality of projections of each tube support assembly is made of a resin material.
4. The tube support apparatus of claim 1, wherein said enlarged end portions of each tube support assembly are rounded.
5. The tube support apparatus of claim 1, wherein the elongated transverse members of each tube support assembly are plates having one or more flat surfaces.
6. The tube support apparatus of claim 1, wherein the outer diameter of each of the plurality of tubes is between ¼″ and 1″.
7. The tube support apparatus of claim 1, wherein each of said retaining blocks of each tube support assembly has a generally triangularly shaped cross section in an end view thereof.
8. The tube support apparatus of claim 1, wherein each of said retaining blocks of each tube support assembly has a generally semi-circular shaped cross section in an end view thereof.
9. A tubing support apparatus comprising: a plurality of polymeric retaining blocks, the polymeric retaining blocks including a first polymeric retaining block and a second polymeric retaining block positioned in vicinity of the first polymeric retaining block, the first polymeric retaining block having a base and a lowermost end distal from the base of the first polymeric retaining block, the second polymeric retaining block having a base and an apex distal from the base of the second polymeric retaining block; a plurality of spaced apart transverse members, the spaced apart transverse members including a first transverse member and a second transverse member, the first transverse member placed in direct contact with the base of the first polymeric retaining block, the second transverse member placed in direct contact with the base of the second polymeric retaining block; a plurality of posts extending directly from the second transverse member, each post having a cylindrical portion and an enlarged end portion spaced away from the second transverse member, the enlarged end portions of every two immediately adjacent posts of the plurality of posts being spaced apart from one another at a spacing distance; a plurality of tubing sections, each tubing section positioned between the posts and having an outer diameter, each tubing section being sandwiched between the first polymeric retaining block and the second polymeric retaining block, the spacing distance between the enlarged end portions of every two immediately adjacent posts of the plurality of posts being smaller than the outer diameter of each tubing section; and fasteners securing the first polymeric retaining block and the second polymeric retaining block to the tubing sections, the tubing sections contacting the first polymeric retaining block only at the lowermost end of the first polymeric retaining block, the tubing sections contacting the second polymeric retaining block only at the apex of the second polymeric retaining block.
10. The tubing support apparatus of claim 9, wherein the posts are made of a resin material.
11. The tubing support apparatus of claim 10, wherein the resin material is an ultraviolet light stabilized homopolymer resin material.
12. The tubing support apparatus of claim 9, wherein said enlarged end portions are rounded.
13. The tubing support apparatus of claim 9, wherein the outer diameter of each of the plurality of tubing sections is between ¼″ and 1″.
14. The tubing support apparatus of claim 9, wherein each of said polymeric retaining blocks has a generally triangularly shaped cross section in an end view thereof.
15. The tubing support apparatus of claim 9, wherein each of said polymeric retaining blocks has a generally semi-circular shaped cross section in an end view thereof.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) For a further understanding of the nature, objects, and advantages of the present invention, reference should be had to the following detailed description, read in conjunction with the following drawings, wherein like reference numerals denote like elements and wherein:
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DETAILED DESCRIPTION OF THE INVENTION
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(16) Interior 15 carries a plurality of spaced apart bottom or lower retainers 16. The retainers 16 are secured to web 12 of frame 11. Plates 17 having tube spacer posts 19 can be mounted to frame 11. In one embodiment, the plates 17 with spacer posts 19 is mounted to web 12. The details of the plate 17 and tube spacer post 19 can be seen in
(17) Fasteners such as bolted connections can be used to secure the upper and lower retainers to the frame 11. Such bolted connections typically include a bolt 25, nut 26 and one or more washers. In order to fasten the retainers (or retaining blocks) 16, 23 to the frame 11, openings are provided in the thermoplastic blocks 29 and plates 24 that are a part of the retainers 16, 23. The plate 17 and its tube spacer posts 19 can be clamped to the surface 18 of web 12 in between the plate 24 of lower retainer 16 and web 12. In order to accept bolts 25, both the plates 24 and thermoplastic blocks 129 have bolt receptive openings. Flat washer 37 may be between bolt 25 and a plate 24. Each block has openings 27, 28 (see
(18) Caps 38 shown in
(19) Double sided foam tape, for example polyethylene double coated foam tape, may be between plates 24 and blocks 29 as part of the assembly. Foam tape may also be between lower retainer 16 and plate 17, and between plate 17 and frame or channel 11.
(20) Each tube spacer post 19 (
(21) As can be seen in
(22) The apparatus 10 of the present invention is designed to support a plurality of cylindrically shaped tubes 22 (or sections of tubing) as seen in
(23) Plates 17 with posts 19 are affixed to frame 11 at web 12. The posts 19 have a spacing that provides clearance at 33 (see
(24) Plates 17 with posts 19 are positioned at intervals along frame 11 (such as between about 8 inches and 3 feet apart).
(25) Bolts 25 and nuts 26 fasten together the assembly of frame, plate 17 with posts 19, lower retainer 16 (plate 24 and block 29) upper retainer (plate 24 and block 29). The edge 30 of block 29 engages or abuts the tubes 22. By tightening the bolts/nuts 25, 26, a clamping grip is made upon the tubes 22 by the retainers 16, 23.
(26) Blocks 29 are preferably of a thermoplastic material. Plate 17, posts 19 and enlarged ends 20 can be a one piece injection molded part of any injection moldable material such as delrin, nylon or polyvinyl chloride, as examples. Plates 24 can be metallic such as stainless steel.
(27) The present invention includes a tube support apparatus (see
(28) a multiple tube assembly having a plurality of tubes 22, each of the plurality of tubes 22 being a cylindrical tube and having a cylindrical wall surrounding a bore and having an outer diameter 35 (see
(29) retaining blocks 129 (
(30) a plurality of elongated transverse members 17, the base 131, 133 of the third block 29, 129 placed directly on top of a first corresponding elongated transverse member 17 (see
(31) a plurality of projections 19 extending directly from each elongated transverse member 17;
(32) each projection 19 having a cylindrical portion, an enlarged end portion 20, and a height, and wherein a spacing is between every two immediately adjacent enlarged end portions 20 of the plurality of projections 19 extending directly from each elongated transverse member 17;
(33) each of said plurality of tubes 22 placed between two of said plurality of projections 19;
(34) each of said plurality of tubes 22 placed between the first block 29, 129 and the third block 29, 129 and between the second block 29, 129 and the fourth block 29, 129, each of the tubes 22 contacting the blocks only at the apex 130, 132 of the blocks 29, 129 (see
(35) wherein the spacing between every two immediately adjacent enlarged end portions 20 is smaller than the outer diameter 35 of each of said plurality of tubes 22 as seen in
(36) wherein the height of each projection is greater than the outer diameter 35 (see
(37) Attached to my U.S. Provisional Patent Application Ser. No. 61/878,222, filed Sep. 16, 2013, and incorporated herein by reference is a brochure with more information about the present invention.
(38) As can be seen in
(39) Likewise, as can be seen in
(40) The following is a list of parts and materials suitable for use in the present invention.
PARTS LIST
(41) PART NUMBER DESCRIPTION 10 tubing spacer apparatus 11 frame/channel 12 web 13 flange 14 flange 15 interior 16 lower retainer/spacer assembly 17 plate 18 web inner surface 19 tube spacer post 20 spherical end/enlarged diameter portion 21 frusto-conical transition section 22 tube/tubing section 23 upper retainer 24 plate (preferably stainless steel) 25 bolt 26 nut 27 opening 28 opening 29 thermoplastic triangular block/member 30 edge 31 plate opening 32 plate opening 33 clearance distance 34 clearance distance 35 outer diameter 37 flat washer 38 cap 129 thermoplastic semi-circular block/member 130 apex of block 29 131 base of block 29 132 apex of block 129 133 base of block 129
(42) All measurements disclosed herein are at standard temperature and pressure, at sea level on Earth, unless indicated otherwise. All materials used or intended to be used in a human being are biocompatible, unless indicated otherwise.
(43) The foregoing embodiments are presented by way of example only; the scope of the present invention is to be limited only by the following claims.