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Roofing granules with high solar reflectance, roofing products with high solar reflectance, and processes for preparing same

a technology of solar reflectance and roofing products, applied in the field of roofing granules and roofing products, can solve the problems of reducing the effective service life of such roofs, affecting the appearance of the roof, and the elevated temperature of the roofing shingles, and achieve the effect of high solar reflectan

Inactive Publication Date: 2010-08-12
CERTAINTEED CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0016]The present invention provides roofing granules, which have high solar reflectance, such as at least 70 percent, as well as roofing products such as shingles provided with such solar reflective roofing granules. The present invention also provides a process for preparing solar reflective roofing granules. In one presently preferred embodiment, the process of the present invention comprises providing a binder, inert mineral particles, and sola

Problems solved by technology

However, depending on location and climate, shingled roofs can experience very challenging environmental conditions, which tend to reduce the effective service life of such roofs.
One significant environmental stress is the elevated temperature experienced by roofing shingles under sunny, summer conditions, especially roofing shingles coated with dark colored roofing granules.
Although such roofs can be coated with solar reflective paint or coating material, such as a composition containing a significant amount of titanium dioxide pigment, in order to reduce such thermal stresses, this utilitarian approach will often prove to be aesthetically undesirable, especially for residential roofs.
Furthermore, except in the white or very light colors, there is typically only a very small amount of pigment in the conventional granule's color coating that reflects solar radiation well.
Absorption of solar heat may result in elevated temperatures at the shingle's surroundings, which can contribute to the so-called heat-island effects and increase the cooling load to its surroundings.
To achieve such high level of solar reflectance, it is necessary to coat the roof with a reflective coating over granulated roofing products, since the granules with current coloring technology are not capable of achieving such high levels of solar reflectance.
However, polymeric coatings applied have only a limited amount of service life and will require re-coat after certain years of service.
Also, the cost of adding such a coating on roof coverings can be relatively high.
Unfortunately, these granules have a “washed-out” color appearance due to the partially revealed white base coat.
However, there is no control of color blends and the novel granules are typically available only in white or buff colors.
However, the addition of kaolin clays, which are used to make the metal-silicate binder durable through heat curing, inevitably reduce the color strength or the color intensity of the pigment.
However, these alternatives require either very high temperatures, or the use of corrosive chemicals, and in many cases could result in loss of color due to pigment degradation by the acid.
However, the long-term durability and cost for polymeric coatings are not as advantageous as the silicate binders.

Method used

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  • Roofing granules with high solar reflectance, roofing products with high solar reflectance, and processes for preparing same
  • Roofing granules with high solar reflectance, roofing products with high solar reflectance, and processes for preparing same
  • Roofing granules with high solar reflectance, roofing products with high solar reflectance, and processes for preparing same

Examples

Experimental program
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example

[0088]Particles with high solar reflectance are prepared by agglomerating the appropriate materials in an Eirich RV02 mixer using the following procedure. A quantity of the kaolin material (Calcined Plastic Fireclay by Christy Minerals) and a drilling starch binder were disposed into an Eirich mixer and dry mixed for 30 seconds. De-ionized water was then added over a 30 second period as the mixer continued to rotate and spheres of base material were formed. After approximately four minutes of mixing the base material, binder and water, the TiO2 pigment material (CR-826, available from Tronox, Oklahoma City, Okla.) was slowly added over 3 to 5 minutes to the mass of rotating spherically shaped bases by sprinkling (also known as “dusting in”) the layer material on top of the bases as they were moving in the mixer until uniform distribution of the TiO2 pigment on particle surface was observed. Samples contain various amounts of kaolin material and TiO2 pigments which total a constant 1...

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Abstract

Solar reflective roofing granules include a binder and inert mineral particles, with solar reflective particles dispersed in the binder. An agglomeration process preferentially disposes the solar reflective particles at a desired depth within or beneath the surface of the granules.

Description

BACKGROUND OF THE INVENTION[0001]1. Field of the Invention[0002]The present application relates to roofing granules and roofing products including roofing granules, such as roofing shingles.[0003]2. Brief Description of the Prior Art[0004]Asphalt shingles are conventionally used in the United States and Canada as roofing and siding materials. Roofing granules are typically distributed over the upper or outer face of such shingles. The roofing granules, in general are formed from mineral materials, and serve to provide the shingle with durability. They protect the asphalt from the effects of the solar radiation (in particular from the degradative effects of ultraviolet rays) and of the environment (wind, precipitation, pollution, and the like), and contribute to better reflection of incident radiation. The granules moreover are typically colored, naturally or artificially by way of the application of pigments, to meet the aesthetic requirements of the user.[0005]Roofing granules typi...

Claims

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Application Information

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IPC IPC(8): C09D5/33C09D1/00B32B1/00B32B37/24
CPCC04B18/021Y10T428/2993C04B33/14C04B35/62695C04B35/62821C04B35/6316C04B35/636C04B2111/00586C04B2111/80C04B2235/3232C04B2235/3427C04B2235/349C04B2235/656E04D7/005Y02B80/34C04B33/04Y10T428/2982C04B14/106C04B14/305C04B18/023Y02A30/254Y02B80/00E04D2001/005C04B35/6365C04B35/64C04B2235/48C04B2235/9646E04D5/12
Inventor SHIAO, MING LIANGHONG, KEITH C.STEPHENS, WALTER T.
Owner CERTAINTEED CORP
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