The present invention relates to pipe end fittings, and more particularly to a pipe end fitting for use with pipes having an external jacket for capturing any leaked liquid or gas.
There are several disadvantages of the illustrated conventional end fitting 1. Because of the length and width of the end fitting 1, machining the end fitting 1 from a single piece of stock material is costly, time consuming, and wasteful of stock material. In addition, the vent port 24 formed in the jacket 20 can be deformed during the swage process used to mount the pipe assembly 18 to the end fitting 1, which can cause the vent port 24 to leak.
There is a need for an improved end fitting that addresses the above mentioned issues.
The aforementioned problems and needs are addressed by a pipe end fitting assembly that includes an outer body having an outer surface, an inner surface defining a first bore, and an end surface extending between the inner and outer surfaces. An inner body has an inner surface defining a second bore and an outer surface, wherein a first portion of the inner body outer surface is secured to the outer body inner surface. A passage is formed in the outer body extending from the end surface to the outer surface of the outer body, wherein the passage includes a first portion extending from the end surface and parallel to the first bore, and a second portion extending from the outer surface of the outer body to the first portion of the passage, wherein the first and second portions of the passage are in fluid communication with each other.
In another aspect of the invention, a pipe assembly includes an outer body having an outer surface, an inner surface defining a first bore, and an end surface extending between the inner and outer surfaces. An inner body has an inner surface defining a second bore and an outer surface, wherein a first portion of the inner body outer surface is secured to the outer body inner surface. A passage is formed in the outer body extending from the end surface to the outer surface of the outer body, wherein the passage includes a first portion extending from the end surface and parallel to the first bore, and a second portion extending from the outer surface of the outer body to the first portion of the passage. A pipe has an end disposed around and secured to a second portion of the inner body outer surface. A jacket disposed around the pipe and having an end secured to the outer body outer surface. The first and second portions of the passage are in fluid communication with each other and with a space extending between the jacket and the pipe.
In yet another aspect of the invention, a method of forming a pipe assembly includes forming an outer body having an outer surface, an inner surface defining a first bore, and an end surface extending between the inner and outer surfaces, forming a passage in the outer body extending from the end surface to the outer surface of the outer body, wherein the passage includes a first portion extending from the end surface and parallel to the first bore, and a second portion extending from the outer surface of the outer body to the first portion of the passage, forming an inner body having an inner surface defining a second bore and an outer surface, securing a first portion of the inner body outer surface to the outer body inner surface, securing an end of a pipe around and to a second portion of the inner body outer surface, and securing an end of a jacket to the outer body outer surface, wherein the jacket is disposed around the pipe. The first and second portions of the passage are in fluid communication with each other and with a space extending between the jacket and the pipe.
Other objects and features of the present invention will become apparent by a review of the specification, claims and appended figures.
The present invention is pipe end fitting assembly 30, which is illustrated in
The outer body 32 is generally cylindrically shaped having an inner surface 32a that defines a bore 36 extending longitudinally through the outer body. A connector notch 38 is formed on the outer surface 32b of outer body 32 (to facilitate connection to its destination). The inner body 34 is generally cylindrically shaped with an inner surface 34a that defines a bore 40 extending longitudinally through the inner body 34. One end of the inner body 34 has serrations on the outer surface 34b of the inner body 34, forming a serrated pipe connector 42 (for receiving and securing a pipe end). The other end of the inner body 34 is disposed in bore 36 and mounted to the outer body 32. Specifically, the outer surface 34b of inner body 34 is secured to the inner surface 32a of the outer body 32, preferably with a press-fit (i.e. shear force between the inner surface 32a of outer body 32 and the outer surface 34b of inner body 34, creating an interference fit therebetween). The interference fit can optionally be temperature enhanced, where one of the inner/outer bodies is heated and the other is cooled before being fitted together so additional compressive forces are generated after being fitted together as they equalize in temperature. Optional welds 44 can be formed at the edges of the inner/outer bodies 32/34, which constitute a redundant seal to contain pressurized liquids/gasses. Serrations or threads could additionally or alternatively be used to secure the outer and inner bodies 32/34 together for enhanced tensile capacity.
A pipe assembly 46 connects to the pipe end fitting 30. Pipe assembly 46 includes an inner pipe 48 and a jacket 50 surrounding the inner pipe 48. The end of the inner pipe 48 slides over and engages the serrated pipe connector 42. The end of the jacket 50 is secured to the outer body 32 by a weld 52. Any liquids or gasses that leak out of pipe 48 and into the space 53 between pipe 48 and jacket 50 are captured by jacket 50 and guided to the end fitting assembly 30.
A vent passage 54 is formed through the outer body 32, providing venting for space 53. Preferably, passage 54 includes a first passage portion 54a extending longitudinally within the outer body 32 (parallel to bore 36), and a second passage portion 54b extending outwardly from the first passage portion 54a to the outer surface 32b of outer body 32 (i.e. first and second passage portions 54a/54b are orthogonal to each other). The formation of the first passage portion 54a was not feasible in the conventional design of
Another advantage of the forming end fitting assembly 30 using two separate bodies 32/24 attached together is the optimization/minimization of material stock used to make end fitting assembly 30. Smaller dimensioned stock material can be used to individually form the inner and outer bodies 32/24, which significantly lowers the amount of stock material that is wasted compared to machining the end fitting as a single piece of material. The machining processes for fabricating the inner and outer bodies 32/34 is simplified, making them faster and less expensive to make compared to the single piece end 10 fitting of
It is to be understood that the present invention is not limited to the embodiment(s) described above and illustrated herein, but encompasses any and all variations falling within the scope of the appended claims. For example, references to the present invention herein are not intended to limit the scope of any claim or claim term, but instead merely make reference to one or more features that may be covered by one or more of the claims. Materials, processes and numerical examples described above are exemplary only, and should not be deemed to limit the claims. Further, as is apparent from the claims and specification, not all method steps need be performed in the exact order illustrated or claimed, but rather in any order that allows the proper formation of the pipe end fitting of the present invention.
This application is a continuation of U.S. Non-Provisional application Ser. No. 16/249,609 filed Jan. 16, 2019, which is a continuation of U.S. Non-Provisional application Ser. No. 13/644,891 filed on Oct. 4, 2012, which claims the benefit of U.S. Provisional Application No. 61/543,247, filed Oct. 4, 2011, the contents of each of which are incorporated by reference herein in their entirety
Number | Name | Date | Kind |
---|---|---|---|
2350867 | Bean | Jun 1944 | A |
2425211 | Strickland, Jr. | Aug 1947 | A |
2707388 | Kent | May 1955 | A |
2748869 | Hager | Jun 1956 | A |
2840262 | William | Jun 1958 | A |
3736633 | Kalen | Jun 1973 | A |
4078832 | Wittman | Mar 1978 | A |
4200312 | Watkins | Apr 1980 | A |
4569540 | Beson | Feb 1986 | A |
4671542 | Juchnowski | Jun 1987 | A |
5224738 | Taga | Jul 1993 | A |
5624140 | Allen et al. | Apr 1997 | A |
5904381 | Ohmi et al. | May 1999 | A |
6039066 | Selby | Mar 2000 | A |
6283384 | Wyant et al. | Sep 2001 | B1 |
6374863 | Friederich | Apr 2002 | B1 |
6588806 | Arosio | Jul 2003 | B2 |
6705351 | Fraser | Mar 2004 | B2 |
6814340 | Arosio | Nov 2004 | B2 |
6827375 | Fraser | Dec 2004 | B2 |
6889715 | Fraser et al. | May 2005 | B2 |
6899140 | Fraser et al. | May 2005 | B2 |
7055551 | Fraser et al. | Jun 2006 | B2 |
7107662 | Levarlo | Sep 2006 | B1 |
10184603 | Hegler | Jan 2019 | B2 |
10190722 | Espinasse et al. | Jan 2019 | B2 |
10197198 | Glejbol | Feb 2019 | B2 |
10226823 | Karpachevskyy | Mar 2019 | B2 |
10226892 | Kremers | Mar 2019 | B2 |
10234068 | Varagnolo | Mar 2019 | B2 |
10281065 | Secher et al. | May 2019 | B2 |
10285223 | Hatton et al. | May 2019 | B2 |
10288207 | Littlestar et al. | May 2019 | B2 |
10378682 | Cloos et al. | Aug 2019 | B2 |
10408795 | Nicolas et al. | Sep 2019 | B2 |
10415731 | Boche et al. | Sep 2019 | B2 |
10429267 | Grimsley | Oct 2019 | B2 |
10436667 | Littlestar et al. | Oct 2019 | B2 |
10442925 | Rong et al. | Oct 2019 | B2 |
10451206 | Espinasse et al. | Oct 2019 | B2 |
10471661 | Boczkowski et al. | Nov 2019 | B2 |
10480054 | Valdez et al. | Nov 2019 | B2 |
10487965 | Bouey et al. | Nov 2019 | B2 |
10494519 | Wilson et al. | Dec 2019 | B2 |
10513896 | Gudme et al. | Dec 2019 | B2 |
10527198 | Nicolson et al. | Jan 2020 | B2 |
10544889 | Bouey et al. | Jan 2020 | B2 |
10544892 | Holst | Jan 2020 | B2 |
11028951 | Hegler et al. | Jun 2021 | B2 |
20030006392 | Arosio | Jan 2003 | A1 |
20030111839 | Fraser | Jun 2003 | A1 |
20080036204 | Fisher et al. | Feb 2008 | A1 |
20110109079 | Hegler et al. | May 2011 | A1 |
20110186305 | Wilde | Aug 2011 | A1 |
20130291988 | Hegler | Nov 2013 | A1 |
20190003921 | Nicholas | Jan 2019 | A1 |
20190024830 | Glejbol | Jan 2019 | A1 |
20190094101 | Spiegel et al. | Mar 2019 | A1 |
20190101233 | Hatton et al. | Apr 2019 | A1 |
20190126567 | Bornemann et al. | May 2019 | A1 |
20190145563 | Hegler | May 2019 | A1 |
20190145564 | Hegler | May 2019 | A1 |
20190154186 | Varagnolo et al. | May 2019 | A1 |
20190162334 | Westhoff et al. | May 2019 | A1 |
20190162335 | Yu et al. | May 2019 | A1 |
20190162336 | Andersen et al. | May 2019 | A1 |
20190186656 | Kozak et al. | Jun 2019 | A1 |
20190194440 | Rong et al. | Jun 2019 | A1 |
20190217337 | Gujare et al. | Jul 2019 | A1 |
20190219473 | Littlestar et al. | Jul 2019 | A1 |
20190242501 | Bereczkne et al. | Aug 2019 | A1 |
20190257448 | Chalmers et al. | Aug 2019 | A1 |
20190285199 | Nicolson et al. | Sep 2019 | A1 |
20190309582 | Procida | Oct 2019 | A1 |
20190338868 | Hjorth | Nov 2019 | A1 |
20190368967 | Grimsley | Dec 2019 | A1 |
20190391097 | Nicolas et al. | Dec 2019 | A1 |
20200011467 | Holst | Jan 2020 | A1 |
Number | Date | Country |
---|---|---|
2012318605 | Nov 2018 | AU |
2014299014 | Jan 2019 | AU |
2014363465 | Jan 2019 | AU |
2017302735 | Jan 2019 | AU |
2014310509 | Mar 2019 | AU |
2017319390 | Mar 2019 | AU |
2017347152 | May 2019 | AU |
2017365730 | Jun 2019 | AU |
2018211384 | Aug 2019 | AU |
2018222217 | Aug 2019 | AU |
2015335367 | Oct 2019 | AU |
2015345613 | Oct 2019 | AU |
2018288000 | Jan 2020 | AU |
2019279941 | Jan 2020 | AU |
112014017998 | Jan 2019 | BR |
112018013586 | Jan 2019 | BR |
PI0810573 | Jan 2019 | BR |
PI0819542 | Jan 2019 | BR |
112019001414 | Feb 2019 | BR |
112018075840 | Mar 2019 | BR |
112019004048 | Mar 2019 | BR |
PI0517181 | Mar 2019 | BR |
112019000076 | Apr 2019 | BR |
112019007789 | Apr 2019 | BR |
PI0914836 | Apr 2019 | BR |
112019003669 | May 2019 | BR |
112019005154 | Jun 2019 | BR |
112013032388 | Jul 2019 | BR |
PI0720487 | Aug 2019 | BR |
112012015257 | Sep 2019 | BR |
112013017957 | Sep 2019 | BR |
112015027495 | Sep 2019 | BR |
112016001932 | Sep 2019 | BR |
PI0909348 | Sep 2019 | BR |
112015002088 | Oct 2019 | BR |
112019020051 | Oct 2019 | BR |
112012020776 | Nov 2019 | BR |
112019012614 | Nov 2019 | BR |
PI0808956 | Nov 2019 | BR |
112013028806 | Dec 2019 | BR |
112013000428 | Jan 2020 | BR |
112019013850 | Jan 2020 | BR |
PI0924891 | Jan 2020 | BR |
2360498 | May 2001 | CA |
2850665 | Feb 2017 | CA |
2859433 | Mar 2019 | CA |
2823056 | Apr 2019 | CA |
2765294 | Jun 2019 | CA |
2854955 | Jun 2019 | CA |
2835008 | Aug 2019 | CA |
3012146 | Jan 2020 | CA |
1336994 | Feb 2002 | CN |
103988008 | Aug 2014 | CN |
109153196 | Jan 2019 | CN |
109153229 | Jan 2019 | CN |
109915671 | Jun 2019 | CN |
109958827 | Jul 2019 | CN |
110177969 | Aug 2019 | CN |
106985493 | Nov 2019 | CN |
108291686 | Nov 2019 | CN |
110461586 | Nov 2019 | CN |
110462273 | Nov 2019 | CN |
107250643 | Dec 2019 | CN |
108291670 | Jan 2020 | CN |
14-0873.836 | Dec 2015 | CO |
102018214615 | Jun 2019 | DE |
3224393 | Jan 2019 | DK |
2820083 | Feb 2019 | DK |
2959199 | Feb 2019 | DK |
3228639 | Feb 2019 | DK |
2780159 | Apr 2019 | DK |
3196523 | Apr 2019 | DK |
2516534 | Jul 2019 | DK |
2901062 | Aug 2019 | DK |
3286474 | Sep 2019 | DK |
30167 | Jun 2018 | EA |
1899721 | Mar 2008 | EP |
2354439 | Aug 2011 | EP |
2764287 | Aug 2014 | EP |
2360406 | Jan 2019 | EP |
2780159 | Jan 2019 | EP |
3069063 | Jan 2019 | EP |
3433523 | Jan 2019 | EP |
3089846 | Feb 2019 | EP |
3334969 | Feb 2019 | EP |
3334970 | Feb 2019 | EP |
3439871 | Feb 2019 | EP |
2386894 | Mar 2019 | EP |
2516534 | Mar 2019 | EP |
2737238 | Mar 2019 | EP |
2859173 | Mar 2019 | EP |
3371502 | Mar 2019 | EP |
3455059 | Mar 2019 | EP |
3455536 | Mar 2019 | EP |
3458531 | Mar 2019 | EP |
2862700 | Apr 2019 | EP |
3105484 | Apr 2019 | EP |
3258155 | Apr 2019 | EP |
3334965 | Apr 2019 | EP |
3334967 | Apr 2019 | EP |
3463849 | Apr 2019 | EP |
3468725 | Apr 2019 | EP |
3314155 | May 2019 | EP |
3488135 | May 2019 | EP |
2519764 | Jun 2019 | EP |
2572134 | Jul 2019 | EP |
2661578 | Jul 2019 | EP |
3507535 | Jul 2019 | EP |
3513108 | Jul 2019 | EP |
2576333 | Aug 2019 | EP |
3014157 | Aug 2019 | EP |
3059481 | Aug 2019 | EP |
3526437 | Aug 2019 | EP |
2588787 | Sep 2019 | EP |
2870397 | Sep 2019 | EP |
3093546 | Oct 2019 | EP |
3548280 | Oct 2019 | EP |
3350498 | Dec 2019 | EP |
3482112 | Dec 2019 | EP |
3583344 | Dec 2019 | EP |
3068104 | Jul 2019 | FR |
3077997 | Aug 2019 | FR |
3074251 | Dec 2019 | FR |
3076337 | Jan 2020 | FR |
2503880 | Mar 2019 | GB |
2562674 | Mar 2019 | GB |
2557571 | Sep 2019 | GB |
2572120 | Sep 2019 | GB |
2520756 | Oct 2019 | GB |
2535925 | Dec 2019 | GB |
2574296 | Dec 2019 | GB |
E045956 | Jan 2020 | HU |
330637 | Jan 2020 | IN |
H10148280 | Jun 1998 | JP |
353187 | Jan 2018 | MX |
2678216 | Feb 2019 | PL |
2379299 | May 2019 | PL |
2018113428 | Oct 2019 | RU |
0138769 | May 2001 | WO |
2013052639 | Apr 2013 | WO |
2019016554 | Jan 2019 | WO |
2019016558 | Jan 2019 | WO |
2019073047 | Apr 2019 | WO |
2019022599 | May 2019 | WO |
2019099219 | May 2019 | WO |
2019105926 | Jun 2019 | WO |
2019112431 | Jun 2019 | WO |
2019120677 | Jun 2019 | WO |
2019141326 | Jul 2019 | WO |
2019165562 | Sep 2019 | WO |
2019197538 | Oct 2019 | WO |
2019207031 | Oct 2019 | WO |
2019238456 | Dec 2019 | WO |
2020016325 | Jan 2020 | WO |
Entry |
---|
United States Patent and Trademark Office; PCT International Search Report, issued in connection to PCT/US12/58713; dated Jan. 4, 2013; 2 pages; U.S. |
United States Patent and Trademark Office; PCT Written Opinion of the International Searching Authority, issued in connection to PCT/US12/58713; dated Jan. 4, 2013; 5 pages; U.S. |
Colombian Patent Office; Office Action, issued in connection to Colombian Patent Application No. 14-087.836; dated May 16, 2015; 21 page; Colombia. |
European Patent Office; Extended European Search Reprot, issued in connection to EP12838818.8; dated Jul. 14, 2015; 6 pages; Europe. |
The Eurasian Patent Organization; Official Action, issued in connection to Eurasian Patent Application No. 201490686/31; dated Nov. 25, 2015; 4 pages; Russia. |
Australian Government, IP Australia; Patent Examination Report No. 2, issued in connection to Australian Patent Application No. 2012318605; dated Jan. 14, 2016; 3 pages; Australia. |
Canadian Intellectual Property Office; Office Action, issued in connection to Canadian Patent Application No. 2,850,665; dated Feb. 3, 2016; 4 pages; Canada. |
Chinese Patent Office; Rejection Decision, issued in connection to CN201280048714.9; dated Dec. 27, 2016; 14 pages; China. |
Chinese Patent Office, Patent Reexamination Board; Board Opinion, issued in connection to CN201280048714.9; dated Jan. 25, 2018; 8 pages. |
Chinese Patent Office, Patent Reexamination Board; Second Board Opinion, issued in connection to CN201280048714.9; dated Sep. 5, 2018; 3 pages. |
Chinese Patent Office; Rejection Decision, issued in connection to CN201280048714.9; dated Dec. 26, 2018; 18 pages; China. |
Malaysian Patent Office; Substantive Examination Adverse Report and Search Report, issued in connection to application No. PI2014000989; dated Jan. 15, 2018; 4 pages; Malaysia. |
Malaysian Patent Office; Substantive Examination Clear Report, issued in connection to application No. PI2014000989; dated Nov. 15, 2018; 2 pages; Malaysia. |
Korean Intellectual Property Office; Examination Report, issued in connection to application No. 329/2014; dated Oct. 17, 2018; 8 pages; Korea. |
Korean Intellectual Property Office; Search Report, issued in connection to application No. 329/2014; dated Oct. 17, 2018; 5 pages; Korea. |
Mexican Patent Office; Official Action, issued in connection to application No. MX/a/2014/004023; dated Feb. 22, 2017; 4 pages; Mexico. |
European Patent Office; Communication Pursuant to Article 94(3) EPC, issued in connection to EP12838818.8; dated Feb. 15, 2019; 4 pages; Europe. |
Ministry of Commerce and Industry, Sultanate of Oman; Office Action, issued in connection to application No. OM/P/2014/00070; dated Oct. 2, 2017; 5 pages; Oman. |
Indian Patent Office; First Examination Report, issued in connection to application No. 3440/DELNP/2014; 6 pages; dated Dec. 20, 2018; India. |
Indonesian Patent Office; Substantive Examination Report, issued in connection to application No. P00201402375; dated Jan. 21, 2019; 3 pages; Indonesia. |
Australian Government, IP Australia; Examination Report No. 2 for your Standard Patent Application, issued in connection to AU2016208363; dated Jul. 11, 2018; 5 pags; Australia. |
Australian Government, IP Australia; Examination Report No. 1 for your Standard Patent Application, issued in connection to AU2016208363; dated Jul. 19, 2017; 4 pags; Australia. |
Canadian Intellectual Property Office; Examiner Report, issued in connection to CA2954887; dated Sep. 26, 2018; 5 pages; Canada. |
Australian Government, IP Australia; Examination Report No. 1 for your Standard Patent Application, issued in connection to AU2018206739; dated May 17, 2019; 4 pags; Australia. |
China National Intellectual Property Administration; Office Action, issued in connection to application No. 201910229442.6; 5 pages; China. |
Kingdom of Bahrain, Ministry of Industry, Commerce and Tourism; Patent Application Substantive Examination Result Notice, issued in connection to application No. 20140038; dated Dec. 25, 2019; 9 pages; Bahrain. |
National Institute of Industrial Property of Brazil; Office Action, issued in connection to application No. BR112014008175-1; dated Apr. 1, 2020; 6 pages; Brazil. |
European Patent Office; Communication Pursuant to Article 94(3) EPC, issued in connection to EP12838818.8; dated Dec. 18, 2019; 4 pages; Europe. |
Number | Date | Country | |
---|---|---|---|
20210293362 A1 | Sep 2021 | US |
Number | Date | Country | |
---|---|---|---|
61543247 | Oct 2011 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 16249609 | Jan 2019 | US |
Child | 17341059 | US | |
Parent | 13644891 | Oct 2012 | US |
Child | 16249609 | US |