Hose Shroud
20170248254 · 2017-08-31
Inventors
Cpc classification
F16L57/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L35/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L11/085
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A hose shroud comprises a tube formed from an aramid fabric rolled into a plurality of tubular layers. The hose shroud has a first end fitting at a first end of the tube, and a second end fitting at a second end of the tube.
Claims
1. A hose shroud, comprising: a tube formed from an aramid fabric rolled into a plurality of layers; a first end fitting at a first end of the tube; and a second end fitting at a second end of the tube.
2. The hose shroud of claim 1, wherein the tube has at least nine layers of aramid fabric.
3. The hose shroud of claim 2, wherein the tube has between 9 and 12 layers of aramid fabric.
4. The hose shroud of claim 1, wherein the aramid fabric has a thread count of 70×70 and a thickness of 0.007 inches.
5. The hose shroud of claim 1, comprising a vinyl material covering an outermost layer of the plurality of tubular layers to form an outer covering.
6. The hose shroud of claim 5, wherein the vinyl material is 18 ounce vinyl coated polyester fabric.
7. The hose shroud of claim 1, wherein at least one of the tubular layers is secured with an adhesive, or stitching.
8. The hose shroud of claim 1, wherein the first and second end fittings comprise a ferrule.
9. The hose shroud of claim 1, wherein the tube is configured to fit over a high pressure hose.
10. The hose shroud of claim 1, wherein one of the first end fitting and the second end fitting comprises one of a cam lock component, a whip-check strap, and a threaded shroud nut.
11. The hose shroud of claim 1, wherein at least one of the first end fitting and the second end fitting comprises a whip-check strap configured to constrict a high pressure hose in the event of a hose rupture.
12. A hose shroud, comprising a tube having a plurality of aramid fabric layers; a first end fitting at a first end of the tube; wherein said first end fitting comprises a cam lock component configured to attach the shroud to a high pressure lance covering a high pressure hose and connection.
13. The hose shroud of claim 12, wherein the cam lock component is a female cam lock component.
14. The hose shroud of claim 12, wherein the cam lock component is a male cam lock component.
15. The hose shroud of claim 12, wherein the tube has at least nine layers of aramid fabric.
16. The hose shroud of claim 15, wherein the tube has between 9 and 12 layers of aramid fabric.
17. The hose shroud of claim 12, comprising a vinyl material covering an outermost layer of the plurality of tubular layers to form an outer covering.
18. A hose shroud, comprising a tube having a plurality of aramid fabric layers; a first end fitting at a first end of the tube; wherein said first end fitting comprises a threaded component configured to attach the shroud to a high pressure lance covering a high pressure hose and connection.
19. The hose shroud of claim 18, wherein the tube has 9-12 tubular layers of aramid fabric.
20. The hose shroud of claim 18, comprising a vinyl material covering an outermost layer of the plurality of tubular layers to form an outer covering.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0015] With reference to
[0016] An exemplary lance 14 is illustrated in
[0017] A hose shroud 30 surrounds a portion of the hose 12 and, in this example, attaches to the lance 14. The hose shroud 30 protects the operator 24 from the high pressure fluid 18 in the event of a hose burst 12.
[0018] An exemplary embodiment of the hose shroud 30 is shown in
[0019] In this example, the tube 32 is formed of a roll of an aramid fabric, as shown in
[0020] In an embodiment, the aramid fabric is Kevlar®. In an embodiment, the aramid fabric has a thread count of 70×70 and a thickness of 0.007 inches. In a further embodiment, the aramid fabric is Kevlar® 159, style 779. This is only one example and other thickness and thread counts may come within the scope of this disclosure. The tube 32 is responsible for energy dissipation in the event of a hose rupture. If the hose ruptures, the high pressure fluid will be trapped by the shroud and directed away from the lance, preventing injury to the operator. In some examples, the hose 12 includes a metal braid, which is also trapped by the shroud. In the event that the high pressure fluid travels radially outwardly from the hose, the many layers of the shroud dissipate energy from the high pressure fluid. The tensile strength of the aramid fabric, tight weave of the aramid fabric, and rolled construction of the shroud successfully dissipate energy from a hose rupture.
[0021] In an embodiment, a vinyl material is rolled around the aramid fabric layers to form an abrasion resistant covering 40. In an example, the vinyl material is 18-ounce vinyl coated polyester material. In an example, a piece of vinyl which may be seven to nine inches wide is wrapped around the aramid fabric layers such that it overlaps itself by approximately one inch and secured to itself with an adhesive, such as vinyl adhesive. It should be understood that a larger or smaller pieces of vinyl may be used for larger or smaller shrouds.
[0022] After the tube 32 is constructed, the end fittings 34a, 34b are installed and secured to the tube, as shown in
[0023] In some embodiments, the end fitting 34a includes a cam lock component 48 for attaching the shroud to a lance, which would include a complementary cam lock component. In this example, the ferrule 42 is slid over the aramid fabric tube 32 and the cam lock component 48 is slid inside the aramid fabric tube 32. Then the ferrule 42 is crimped down on the cam lock component 48. The cam lock component inserted into the aramid fabric tube 32 may be the male component or the female component of a cam lock assembly. In an example, the cam lock component 48 is a 1.5 inch, Type C cam and groove fitting with hose barb.
[0024] In other embodiments, as shown in
[0025] As illustrated in
[0026] The hose shroud 30 may have the same type of end fittings 34a, 34b at each end of the shroud 30. Alternatively, the hose shroud 30 may have different types of end fittings 34a, 34b at opposite ends 35, 36 of the shroud 30. In some embodiments, the hose shroud 30 is configured to be attached to a lance 14. In other embodiments, the hose shroud 30 may be used over another portion of the hose 12. For example, a hose shroud 30 having a whip check strap 50 at both ends 35, 36 may be used over a coupling linking two hoses, or covering any hose to which people may be exposed.
[0027] Although the different examples have a specific component shown in the illustrations, embodiments of this disclosure are not limited to those particular combinations. It is possible to use some of the components or features from one of the examples in combination with features or components from another one of the examples. Also, although particular step sequences are shown, described, and claimed, it should be understood that steps may be performed in any order, separated or combined unless otherwise indicated and will still benefit from the present disclosure.
[0028] Although a preferred embodiment of this invention has been disclosed, a worker of ordinary skill in this art would recognize that certain modifications would come within the scope of this invention. For that reason, the following claims should be studied to determine the true scope and content of this invention.