DEVICE FOR LEAK CONTAINMENT
20250109816 · 2025-04-03
Assignee
Inventors
- VINICIUS SANTOS LIMA (Ibirité, BR)
- THIAGO RAFAEL DE OLIVEIRA (Betim, BR)
- WAGNER HENRIQUE SALDANHA (Betim, BR)
- ELBERT FERNANDO MARTINS COELHO (Contagem, BR)
Cpc classification
F16L55/1705
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present disclosure describes a device for leak containment, including a set of compression plates, which respectively contain fixed thereto a plurality of fixing clamps for anchoring the device, and a plurality of tightening elements including screws and nuts, at least one filling element, a set of hollow tubular elements, and a tensioning cable passing inside the set of hollow tubular elements. A tensioning of the tensioning cable, together with a tightening of the plurality of tightening elements, presses the set of hollow tubular elements and compresses at least one filling element.
Claims
1. A device for leak containment, the device comprising: a set of compression plates, which respectively comprises fixed thereto a plurality of fixing clamps for anchoring the device, and a plurality of tightening elements comprising screws and nuts; at least one filling element; a set of hollow tubular elements; and a tensioning cable passing inside the set of hollow tubular elements, wherein a tensioning of the tensioning cable, together with a tightening of the plurality of tightening elements, presses the set of hollow tubular elements and compresses at least one filling element.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to complement this description and obtain a better understanding of the features of the present disclosure, a set of figures is presented in which, in a non-limiting way, the preferred embodiment thereof is represented.
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[0024]
DETAILED DESCRIPTION
[0025] The present disclosure refers to a device for leak containment 100. More specifically, the device for leak containment 100 is applied to the flanged joints of a piece of equipment and enables leak containment without interrupting the operation thereof.
[0026] Briefly, the device 100 of the present disclosure enables the installation, tensioning and compression of a filling on the straight surfaces and corners of a flanged joint by way of a tensioning cable surrounded by a set of hollow tubular elements in combination with a plurality of tightening elements back-pressed by fixing clamps, the installation, tensioning and compression being sufficient to contain a leak from a flanged joint of a piece of equipment without interrupting the operation thereof.
[0027]
[0028] It will be appreciated by a technician skilled on the subject that examples of the present disclosure can be applied to joints with flanges of different configurations. Notwithstanding, in the example shown in
[0029] More specifically, the device for leak containment 100 comprises at least one set of compression plates 110, a plurality of fixing clamps 120, a plurality of tightening elements 130, at least one filling element 140, a set of hollow tubular elements 150, and a tensioning cable 160.
[0030] As illustrated in
[0031] The set of compression plates 110 preferably comprises metal plates of substantially rectangular shape and with sufficient thickness to provide rigidity to the set, depending on the piece of equipment in which the device 100 is mounted to contain a leak. Preferably, the set of compression plates 110 comprises at least four metal plates, one for each side of the flanged joint, wherein each plate has a thickness of at least (6.35 mm).
[0032] As illustrated in greater detail in
[0033] The plurality of tightening elements 130 preferably comprises tensioning screws containing nuts 131. As illustrated in
[0034] At least one filling element 140 is preferably at least one gasket. It will be appreciated that more than one gasket may be required for an ideal seal, as illustrated in
[0035] Notwithstanding, although a preferred configuration of gaskets is illustrated and described, it will be appreciated by a technician skilled on the subject that the quantity and dimensions of gaskets used may vary according to the design strengths of each flanged joint.
[0036] The set of hollow tubular elements 150 preferably comprises rigid pipes or OD (outer diameter) of metallic material. The rigid pipes may have a circular, elliptical, triangular, square, rectangular, pentagonal, hexagonal, rhombic, diamond, star-shaped, trapezoidal, polygonal cross-section, etc. Preferably, the set of hollow tubular elements 150 has a circular cross-sectional shape. It will be appreciated by a technician skilled on the subject that the dimension of the set of hollow tubular elements 150 may vary according to the design strengths of each flanged joint. Preferably, the hollow tubular elements 150 are suitably sized to allow the free passage of the tensioning cable 160 inside the same.
[0037] The set of hollow tubular elements 150 allows the tensioning cable 160 to pass inside the tubular elements, and these are segmented into lengths to enable the assembly on the four sides (straight parts) of a flanged joint. It is observed that in the four corners of the flanged joint, the tensioning cable 160 is not covered by the tubular elements.
[0038] Accordingly, once the device 100 is mounted on a flanged joint, the tensioning screws 130 are tightened in order to press on the set of hollow tubular elements 150, which, in turn, compress at least one filling element 140, to then seal the leak.
[0039] The tensioning cable 160 is preferably a steel cable. When pulling on the steel cable, as illustrated in
[0040] Notwithstanding, the reason that the cable 160 is surrounded by the set of hollow tubular elements 150 in the straight regions is to provide the cable/pipe assembly with the necessary rigidity, so that the force that will be applied in the compression direction of the gaskets 140, 141 can be transferred and distributed. Therefore, the pressure in the straight regions is substantially carried out by the tensioning screws 130.
[0041] As illustrated in
[0042] In this sense, below a preferred implementation of the present device in a flanged joint will be briefly described as an example.
[0043] The steps of implementing the device 100 to perform the seal begin with the introduction of the first layers of gaskets with dimensions compatible with the gap of smaller width. After completing the filling of the smaller gap with the introduction of the first layers of gaskets, one or more gaskets are introduced with a width compatible with the greater spacing between the flanges.
[0044] Next, with the gaskets installed in place, the assembly of the pipe/steel cable set begins; the steel cable is surrounded by a set of pipes that have a diameter compatible with the larger spacing of the flanges. These pipes are segmented into lengths that allow assembly on the four sides (straight parts) of the flanged joint, and wherein, in the four corners, the steel cable is not covered by the pipes.
[0045] When pulling the steel cable by tying the same down to a structure close to the flanged joint, the steel cable will exert enough pressure to seal only at the corners. As the straight parts are long, in these regions the cable is only pulled, without exerting significant pressure to compress the gaskets, as shown in the illustration below.
[0046] In straight regions, the compression plate that is fixed to the cases/closing screws of the flanged joint has U type clamps and tensioning screws that, when threaded/tightened, exert pressure on the pipe/steel cable set, which then compresses the gaskets to provide sealing and containment of the leak.
[0047] An assembled configuration of the device 100 containing a leak in a flanged joint is illustrated in
[0048] In this sense, a preferred embodiment of the disclosure teaches a device for leak containment 100 that comprises at least: [0049] a set of compression plates 110, respectively comprising fixed thereto a plurality of fixing clamps 120 for anchoring the device 100 in a flanged joint, and a plurality of tightening elements 130; [0050] at least one filling element 140; [0051] a set of hollow tubular elements 150; and [0052] a tensioning cable 160 passing inside the set of hollow tubular elements 150; [0053] wherein a tensioning of the tensioning cable 160, together with a tightening of the plurality of tightening elements 130, presses the set of hollow tubular elements 150 to compress at least one filling element 140 over a leak.
[0054] In this way, those skilled in the art will understand the knowledge presented herein and will be able to reproduce examples of the present disclosure described herein, encompassed by the scope of the attached claim.