Extra Heavy Duty Double Silver Foil Air Bubble Cell Insulation 5 M L Free Ship
Thank you for viewing my listing. THE TOUGHEST SILVER FOIL BUBBLE INSULATION EVER. IDEAL FOR HOT OR CLD CLIMATE. 5 METRES LONG (17 FEET).
3.75 SQUARE METERS (45 SQUARE FEET). AVAILABLE EXCLUSIVELY THROUGH THIS LISTING. 33 MM (1 1/4) DIAMETER BUBBLES. 13 MM THICK (1/2) BUBBLES. TWO LAYERS OF ALUMINUM FOIL. Call Eddie Solomon if you have any question. EXTRA THICK SILVER FOIL BUBBLE INSULATION. Double Foil Insulation is available in 35 Square Meters rolls - 750 mm wide x 5 Meters long. This is the Extra Thick for higher r value. Most bubble insulation available on the market come in smaller thickness. This Extra Heavy Duty Insulation is available exclusively through this listing.
It consists of a layer of polyethylene bubbles that is sandwiched between two layers of 99% pure aluminum radiant barrier foil. This style can be used in a variety of applications because it's light weight and easy to handle yet provides superior protection. The bubble center creates maximum R-Value and the reflective foil on both sides allow it to reflect 97% of radiant heat away from a structure on the outside and back in on a structure from the inside. This is why it works effectively in both hot and cold climates. Also available in 1,500 mm wide.
The main feature is the reflective nature of the insulation and not its thickness. For thicker sheets, you may double up.
Also available in the Extra Heavy Duty Extra Thick rolls of 20 Square Meters, 40 Square Meters and 75 Square meters. Discounted wholesale prices available for 400 Square Meters and 600 Square Meters in both the single Foil and Double Foil. Double Foil Reflective Insulation is a versatile insulation consisting of an 4.8 mm thick - 10 mm diameter layer of polyethylene bubbles sandwiched between two sheets of highly reflective, 99% aluminum. Reflective Bubble Insulation provides superior reflectivity of radiant heat while providing protection against conductive heat gain and loss as well as performing as a vapor barrier. Also available silver Foil Insulation reinforced tape.
For a demonstration on the use of Silver Foil Bubble Insulation , go to the following links. Extra Thick 33 mm diameter bubbles 13 mm thick. Weight 1 oz / sq. Ft - 320 g/sq m.
Smoke Development (ASTM E84-05) 5. Emissivity - ASTM C1371 0.03-0.04. Reflectivity - ASTM 3903 0.96-0.97. Water Vapor Permeance-ASTM E96
Thin sheets takes up less room than bulk insulation. Can act as a vapor barrier. Will not mold or mildew. Radon retarder, will limit radon penetration through the floor.
This is a high quality industrial strength Double Foil Insulation Bubble Wrap. Long lasting, heavy duty nylon barrier layer to increase longevity. Bubble Wrap is Lightweight and easy to use.
It is an inexpensive solution to your insulation needs. Our standard single and double bubble foil insulation is. Silver foil Available in a range of widths, from. 375 mm 15" to 1,500 mm (60"), and lengths. Aluminium products, as well as products covered with Silver Foil. On one side and white polyethylene on the other. This durable bubble insulation will withstand temperatures between 50 degrees Celsius. And 82 degrees Celsius (180 degrees Fahrenheit), making it ideal for both attic and flooring installations. Be sure to check out our silver Foil Aluminium. This is the best tape for bubble foil insulation because it ensures the continuity of the reflective surface, which is essential for getting the most from your installation.
Radiant floor heating has been in use for centuries and radiant barriers help to retain the heat generated by the radiant heating system blocking it from escaping into the ground. Insulation is extremely tough and pliable, easy to install, and is an excellent vapor barrier for all your radiant floor heating applications, thus greatly reducing your electricity or gas bills. Insulation installed in crawl spaces below a building structure reflect the heat flows that are flowing downward from the flooring back up into the flooring at a 95-97% rate providing increased comfort and heat retention.
The temperature of the cold floors which cause cold feet will be raised while your heating bill is reduced, providing for increased comfort. As heat is reflected back into the living area, it warms other objects which then radiate heat back into the room, further increasing your living comfort. Insulation applications are only limited by your imagination. We can also custom make any combination to suit your requirements.
You can have foam sandwiched between two layers of Silver foil, Or thicker bubbles between tow layers of foil, or any combination you require. Please note custom made insulation attracts minimum order of 1,500 Square meters.
All the insulation is made right here in Australia with the highest standard of material and manufacture. The following test report was conducted by the Australian CSIRO on the single sided foil small standard size bubbles. This listing is for the Extra Thick Bubbles Double Sided Foil which commands a greater insulation potential than the single foil small bubbles insulation.
CSIRO- Materials Science & Engineering. (ABN: 41 687 119 230). Sample Description: silver insulation material designed for pallet protection. At an ambient temperature of 23.1ºC difference from face to back 2.4ºC. At an ambient temperature of 28.6ºC difference from face to back 5.1ºC.
OF THE INSULATIVE EFFECTIVENESS OF SINGLE-SIDED 10 MILLIMETRE BUBBLE FILM (4.8 mm Thick). THE TRUTH ABOUT R VALUE. Around most of the world, R-values are given in SI units, typically square-metre kelvin per watt or m2·K/W (or equally, m2·°C/W).
An R 2 value may increase or decrease depending on how the insulation is applied. With the Silver Foil bubble Insulation you will need an air pocket between the surface. Of the structure you are insulating. The air pocket has its own r value depending on the width of the air pocket thus increasing the R value of the insulation material. Conversely, if you apply the insulation material directly on the surface of the structure will defeat the purpose of insulation because the insulation material will act as a heat conductor and will end up heating the premises in the hot summer and will also be counterproductive in winter. Radiation is minimized by low emissivity (highly reflective) exterior surfaces such as aluminum foil. Lower thermal conductivity, or higher R-values, can be achieved by allowing an air gap between the surface of the structure and the aluminium foil.
Gap will produce a smaller R value. Air by itself has no R value; only trapped air will produce an R value. However, if you allow a very wide gap, the air will not be trapped and may reduce your R value and cause an opposite result. The R-value is a measure of an insulation sample's ability to reduce the rate of heat flow under specified test conditions.
The primary mode of heat transfer impeded by insulation is conduction, but insulation also reduces heat loss by all three heat transfer modes: conduction, convection, and radiation. The primary means of heat loss across an uninsulated air-filled space is natural convection, which occurs because of changes in air density with temperature. Insulation greatly retards natural convection making the primary mode of heat transfer conduction. To find the heat loss per square meter, simply divide the temperature difference by the R value. If the interior of a home is at 20 °C, and the roof cavity is at 10 °C, the temperature difference is 10 C° (= 10 K difference). Assuming a ceiling insulated to R2 (R = 2.0 m2K/W), energy will be lost at a rate of 10 K/2 K·m2/W = 5 watts for every square meter of ceiling. Doubling the thickness of the insulation material or even doubling the thickness of the trapped air layer doubles the R value. This does not hold for compressed bats of glass wool because compressing the bats does not proportionally increase the r value. Furthermore, doubling the thickness of the Silver Foil Bubble Insulation does not double the R value of the insulation material. The main feature of the Silver Backed Bubble Insulation is its reflective nature and not its thickness. To Double the R value of the Foil Bubble Insulation you will need to create a heat pocket which hads it s own R value that can be added to the R value of the Foil Insulation. As an example, the if Foil Bubble Insulation has an R value of r2 and the. Heat pocket has an R value of R 1,5, both R value are added together to achieve an R value of R3.5 in SI units or R19 in United States standards. As discussed earlier porous material such as foam and bats does not allow the full potential of trapped air to be established and will not give you the proportional R value relative to thickness. In calculating the R-value of a multi-layered installation, the R-values of the individual layers are added:. R-value(outside air film) + R-value(brick) + R-value(sheathing) + R-value(insulation) + R-value(plasterboard) + R-value(inside air film) = R-value(total). To account for other components in a wall such as framing, an area-weighted average R-value of the whole wall may be calculated. For the most part, testing the R-value of insulation is done at a steady temperature, usually about 70 °F (21 °C) with no surrounding air movement. Since these are ideal conditions, the listed R-value for insulation will almost certainly be higher than it would be in actual use, because most situations with insulation are under different conditions. Some types of foam insulation, such as polyurethane and polyisocyanurate are blown with heavy gases such as chlorofluorocarbons (CFC) or hydrochlorofluorocarbons (HFCs).
However, over time a small amount of these gases diffuse out of the foam and are replaced by air, thus reducing the effective R-value of the product. This has led to controversy as how to rate the insulation of these products.
However, the LTTR effectively provides only an eight-year aged R-value, short in the scale of a building that may have a lifespan of 50 to 100 years. Note that these examples use the non-SI definition and/or given for a 1 inch (25.4 mm) thick sample. Vacuum insulated panels have the highest R-value (approximately R45 per inch in American customary units); aerogel has the next highest R-value (about R10-30 per inch), followed by isocyanurate and phenolic foam insulations with, R8.3 and R7 per inch, respectively. They are followed closely by polyurethane and polystyrene insulation at roughly R6 and R5 per inch.
Loose cellulose, fiberglass (both blown and in batts), and rock wool (both blown and in batts) all possess an R-value of roughly R-2.5 to R-4 per inch. Straw bales perform at about R1.5. However, typical straw bale houses have very thick walls and thus are well insulated. The effective thermal resistance of an enclosed air cavity is strongly influenced by radiative heat transfer and distance between the two surfaces. Occasionally, I list the same item with discounted prices for a limited time. Public holidays and weekends excluded. If you wish to have your item delivered or handled in a special manner, let me know and I will inform you if there is any additional charge. If you live in a remote location with no courier service, let me know. Delays may be experienced in case of work overload , postal or courier.
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This item is in the category "Home & Garden\Yard, Garden & Outdoor Living\Garden Structures & Shades\Garden & Storage Sheds". The seller is "eddiesolomon777" and is located in Tamborine Mountain, QLD. This item can be shipped worldwide.
- Brand: EDDIE SOLOMON
- MPN: XHDSFBI