Leak detection device in joints between pipes with flanges and gaskets
09778134 · 2017-10-03
Inventors
Cpc classification
International classification
Abstract
The present invention relates to a device for detecting leaks of liquids or gases caused by temperature variations, pressure variations, wear on the clamping and coupling devices, wear on sealing devices, by corrosive action, among others, in joints between pipes made by flanges (F) and together and basically comprises a strip (1) to be applied to the region of the “gap” (G) between flanges (F) with a pressure sensor (2) and protective caps (3) adapted to a screw head casing (PE) and nuts (P) employed for mounting between flanges (F).
Claims
1. A leak detection device in joints between pipes with flanges and gaskets for use in leak detection of liquids or gases caused by temperature changes, pressure changes, wear of clamping and coupling devices, wear on sealing devices, or by corrosive action characterized in that: a strip made of a substantially porous laminar substrate covered by at least one layer of a modified silicone elastomer strip serving to cover an entire surface of a joint between the flanges and a gap, and additionally, having an orifice located at a point along the length and centered in relation to the width of the strip; a pressure sensor fixed in the orifice of the strip which serves to record the minimum pressure change which occurs between flanges and is formed by a substantially cylindrical base which has a bonded membrane of resilient material and resistant to corrosive fluids, with a trigger adjacent to the membrane, which is connected to a recorder which is one of a mechanical type and having an electronic circuit and a cover which is fixed to the base isolating the internal components from the environment; protective caps, to cover screw head cases and nuts (P), made of plastic materials plus a load of UV protection, consisting of a fitting body wherein the protective caps have a hexagonal shape and an open end, a flat surface shaped flap, substantially circular and exceeding the dimensions of the fitting body and covered internally by a modified silicone grease.
2. The leak detection device according to claim 1 wherein the strip has a foil substrate coated on only one of its surfaces by a layer of modified silicone elastomer and where this substrate is coated with a chemical capable of reacting to a compound that flows inside the pipe and at the leak, which causes the chemical substance and the substrate to change color.
3. The leak detection device according to claim 1 wherein the strip has a foil substrate coated on the larger planar surfaces by a layer of modified silicone elastomer.
4. The leak detection device according to claim 1 wherein the recorder mechanism is comprised of an arm connected to the trigger and integrated into the cover, which has a colored indicator, so that the membrane flexed by the effect of pressure pushes the trigger which drives the arm and moves the colored indicator, changing the visual record to a different color than the original color, indicating a state of abnormality.
5. The leak detection device according to claim 1 wherein the recorder of the electronic circuit type is selected from the group consisting of: a luminous type, comprising a small stroboscopic circuit powered by a battery and a switch connected to the trigger, so that the membrane, being flexed by the effect of pressure pushes the trigger and the switch which closes the electric circuit of the battery and intermittently illuminates a set of light emitting diodes for the effect of programming the small stroboscopic circuit; and a transmitter type, comprising a small radio frequency transmission circuit powered by a battery and a switch connected to the trigger, so that the membrane being flexed by pressure, pushes the trigger and the switch which closes the electric circuit of the battery and powers the small transmission circuit and radio frequency signals are transmitted through an emitter, which are picked up remotely by a central station.
6. The leak detection device according to claim 1 wherein the substrate is made of non-woven felt, the protective cover, is made of polycarbonate, protective caps made of hard plastic are polyvinyl chloride with the membrane being made of synthetic rubber.
7. The leak detection device according to claim 1 wherein both the strip with the pressure sensor and protective caps, are fixed in their places of installation by means of modified silicone elastomer cords which are not yet cured.
8. The leak detection device according to claim 1 wherein the length of the strip is dependent on the perimeter of the flanges and the width of the strip is dependent on the opening of the gap and thereby allows an adjustment to a precise length and width without the possibility of gaps or overlapping ends when installed.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The characteristics of the device for detecting leaks in joints between pipe flanges and gaskets for the object of the present invention, will be better perceived from the detailed description which will hereinafter, by mere way of example, be associated with the drawings referenced below which are integral parts of this report.
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DETAILED DESCRIPTION OF THE INVENTION
(12) The object of the present invention provides a detailed description of the leak detection device in joints between pipes, by means of flanges and gaskets, and will be made in accordance with the identification of components that form the basis of the Figures described above.
(13) From this point on, the facilities of an oil rig at sea will be adopted as a scenario only by way of example. However the universe of application for all items of the present invention is not limited to this scenario, since there are aqueducts, pipelines, oil flow lines and other piping exposed to the weather, or internal constructions in which the joints between flanges must be inspected.
(14) The facilities of an oil rig were chosen because they are under the influence of a harsh environment where, in addition to weather conditions, these facilities also suffer from the action of potentially corrosive gases, salt spray and the intense action of ultraviolet rays.
(15) As previously stated, adopted procedures or developed equipment do not always produce the expected effects.
(16) There is a multitude of equipment and devices in the art which function based on a variation of pressure in the region of the “gap” to detect a leak.
(17) In reality, the detection efficiency of these devices is very low.
(18) Efficiency is placed under suspicion, since leakage occurs in this region through the flange holes where the screw cases are adapted, usually without any sealing. It must be remembered that the detection efficiency for liquids is great, but the potential for dangerous levels of gasses is very high.
(19) Without a seal provided in the region of the screw case, a pressure will be generated which is perceived by the equipment only when the flow of leakage is greater than the fluid flow permitted through the holes of the flanges. Until this leakage is sensed and recorded, much of the fluid has already spread to the environment and can cause very serious accidents in the form of potentially explosive or toxic gasses.
(20) In order to record a leak in these situations, it is necessary for the sensitivity of such equipment or devices to be very high, with a very advanced means of perception in technological terms, urging the formation of a detection system for an entire operating plant which has a plethora of seals between pipes.
(21) The object of the present invention discloses a device for the detection of leaks in pipe joints with flanges and gaskets, presenting as its main advantage a simple construction, while at the same time conferring a tight seal in the region between the flanges.
(22) Due to its construction characteristics and application, a minimal leakage within the union between flanges is sufficient to generate a positive pressure capable of triggering a sensor, which can acknowledge the occurrence of this minimum pressure almost immediately.
(23) This registration immediately allows all preventive measures in relation to the interruption of fluid flow, the safe stopping of production equipment, and even adoption of procedures in relation to the withdrawal of individuals working near the site of occurrence to be carried out in minimum time.
(24) Before the device of the present invention for leak detection is described, it is necessary to mention that some of its components are based on some compositions based on modified silicone, which have already been protected by privilege invention request BR 2010/0074377 filed on Aug. 12, 2010 by the same Applicant of this current request.
(25) A first composition from the above mentioned which will always be referenced throughout this report is the term “modified silicone elastomer” comprising a physical mixture of a commercial silicone elastomer in the form of paste with 7.0 to 13.0 w/w oximosilano (CAS 22984-54-9) and 1.0 to 5.0 w/w aminopropyl triethoxy silane (CAS 919-30-2).
(26) A second composition which will always be referenced throughout this report is the term “modified silicone grease” which comprises a physical mixture of commercial silicone grease (P928-10 LUB) with 93.0 to 97.0 w/w polydimethyl siloxane (CAS 63148-62-9), 2.0 to 5.0 w/w inorganic filler (CAS 112945-52-5) and 0.1 to 0.5 w/w stabilizing additives (CAS 68037-64-9).
(27) With the aid of
(28) The leak detection device in joints with flanges and gaskets of the present invention comprises: a strip (1), which can be seen in more detail in
(29) A first embodiment of the strip (1),
(30) A second embodiment of the strip (1),
(31) The substrate (11) is preferably made of non-woven felt.
(32) The protective cover (25) is preferably made of polycarbonate.
(33) The membrane, which is made of resilient material and resistant to corrosive fluids, (22) is a synthetic rubber known by the trade name “Viton” registered to “DuPont Performance Elastomers LLC.”
(34) The embodiment of a recorder (24) of the mechanical type (241) (
(35) The embodiments to the recorder (24) of the electronic circuit type (242) are shown in
(36) Both the strip (1) with the pressure sensor (2) as well as the protective caps (3), are fixed in their places of installation by cords of modified silicone elastomer which is not yet cured.
(37) The strip (1) with the pressure sensor (2) have their principal dimensions on the various types of mechanical joints in which they are employed where the length of the strip (1) is dependent on the perimeter of the flanges (F) and the width of the strip (1) is dependent on the opening of the “gap” (2) thereby allowing an adjustment to a precise length and width without the possibility of gaps or overlapping ends when installed.
(38) The protective caps (3) are manufactured in sizes compatible with screws and nuts on the market.
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(41) Although the present invention has been described in its preferred embodiment, the main concepts guiding the present invention, which is a device for detecting leaks in joints between flanges and gaskets, remain preserved as to its innovative character, usually where those who are skilled in the art may discern and practice variations, modifications, alterations, adaptations, and reasonable equivalents applicable and compatible to the working environment in question, without however, departing from the scope of the spirit and scope of the present invention represented by the following claims.