Abstract:
A reusable insulation wrap for insulating and protecting an article, the wrap comprising a multilayer insulation member having a nylon protective layer adapted to be abrasion and moisture resistant to prevent damage to the other layers, a polymerized chloroprene stretchable layer adapted to resist moisture and having first and second edges and sized to closely encircle the article, a closed cell foam insulative layer, a foil reflective layer affixed to the closed cell foam adapted outside thereof, a flame retardant and an ultraviolet protectant in one of the layers and a hook and loop fastener adapted to cooperatively engage and maintain desired position on the article, whereby, the wrap is stretched around the article to fit snugly in place minimizing influence of the outside environment including temperature fluctuations, moisture, and debris on the article.
Abstract:
A multilayer insulation is provided that includes radiant barrier layers separated by one or more spacers. The spacers are configured to maintain separation and provide a low conductivity thermal path between adjacent radiant barrier layers of the multilayer insulation. In certain implementations, the spacers have a shape defined by the intersection of three orthogonally oriented discs and are disposed between two radiant barrier layers of the multilayer insulation. In other implementations, the spacers are mechanically coupled to and extend from a radiant barrier layer.
Abstract:
A multilayered nonwoven insulating barrier with an integral pocket for installation of a component to be insulated. The insulating barrier has nonwoven layers that overlap one another and are stitched to one another by first pair of seams to form an integral pocket therebetween. An elastic member is secured to one end of the insulating barrier to facilitate wrapping the end around and forming a seal. A second elastic member is secured to an opposite end of the insulating barrier to facilitate wrapping the second end around and forming a seal. A releasable member is secured along a first lateral side of the insulating barrier and a mating releasable member is secured along an opposite second lateral side of the insulating barrier and the releasable members facilitate releasable wrapping of the insulating barrier about and forming a seal with the component.
Abstract:
A thermal protection apparatus is disclosed. The thermal protection apparatus may comprise a thermally insulative layer positioned proximate to a portion of a structure having a dimensional transition, wherein the dimensional transition is thermally protected.
Abstract:
A thermal insulation jacket system comprising: a first thermal insulation jacket configured to fit on an object; a microcontroller located in the first thermal insulation jacket; a first temperature measuring means in signal communication with the microcontroller, configured to measure the temperature of the object; a second temperature measuring means in signal communication with the microcontroller, configured to measure the ambient temperature; where the microcontroller is configured to determine the energy savings achieved by the insulative properties of the first thermal insulation jacket.
Abstract:
A cover for a pipe including a body, a slit, two flanges extending from the edges of the slit, and protrusions extending outwardly from each flange. The protrusions have three connected central openings extending from an outermost end of the protrusion to an inner surface of the flange. Also a fastener having five portions. The maximum width or diameter of the first portion, the third portion, and the fifth portion is larger than the maximum width or diameter of the second portion and the fourth portion. Also, a system for covering a pipe having such a cover and a plurality of such fasteners, a kit for covering a pipe including such a cover and at least one such fastener, and a method of covering a pipe.
Abstract:
There is a need for a flexible, insulated jacket that can be used to substantially enclose a pipe junction, then inject a cooling substance into the jacket, and thereby freeze or substantially freeze the contents of the junction. Industries conveying fluids, including fluids such as hydrocarbons, using pipes and valves would benefit from such a jacket. The jacket is shaped to substantially enclose a pipe junction connecting two or more pipes. The jacket includes a flexible insulated body having fasteners. The jacket has an open position and a closed position. The body substantially encloses the pipe junction in the closed position. The jacket further includes at least two fluid injection valves communicated through the jacket body.
Abstract:
A segmented insulative device and related kit for insulating components of a thermal distribution system, and particularly chilled fluid systems. The kit includes a sheet of segmented insulation formed by a composite layer of segmented, flexible, pre-sewn insulation that is easily cut to size in the field using scissors, utility knives or other simple, hand-held cutting devices. The composite layer includes at least one outer layer of low permeance laminate devoid of stitching and adhered to the pre-sewn insulation. The kit also includes low permeance pressure-sensitive adhesive tape as fasteners, also easily cut to length, using hand-held devices. The low permeance laminate and the low permeance pressure-sensitive adhesive tape form a contiguous outer water vapor barrier free of stitching that would otherwise compromise low permeance. The segmented insulation and the fasteners are attached to one another in the field. This provides an installation kit that an installer can use to provide a versatile insulation in the form of the assembled segmented insulative device that insulates against heat gain to the chilled surface and retards the intrusion of water vapor into the insulation as well as to the chilled surface. The segmented insulative device lends itself to quick customization on-site rather than requiring costly off-site manufacture or pre-assembly and subsequent quick installation on the pipe component requiring thermal installation.
Abstract:
The present invention discloses a thermal insulating blanket (10) including an insulating core (41) encased in a fibrous envelope with at least one breather vent (50) in the upper portion of the outer enveloping cover (31) and at least one drain opening (60) in the lower portion of the outer enveloping cover.
Abstract:
A reusable insulation jacket for straight industrial tubing, as well as elbow, union, coupling, tee, valve, and other connectors carrying extreme hot and cold materials comprises a thin insulating mat. For straight tubing, the jacket is of a width as to completely wrap the tubing and overlap itself. For tubing connectors, the jacket is stitched and stuffed (manufactured) to form a cavity as to completely receive the tubing connector. In all forms, the jacket will overlap itself whereat complimentary releasable fastening hook and loop material securely hold the jacket in place to insulate the tubing or tubing connector and to prevent an individual from otherwise being burned from contacting the tubing or tubing connector. Additionally, the jacket has properties as to insulate much more efficiently then fiberglass insulation, allowing a much lower profile to accomplish equal insulation characteristics which allows more insulated tubing in a smaller area.