Asphaltic membrane with mullite-containing granules
A roofing article comprising (i) an asphaltic substrate; and (ii) a plurality of mullite-containing granules disposed on a surface of the substrate, where said mullite-containing granules include a mullite concentration of at least 35 wt % and at most 63 wt % as determined by quantitative x-ray diffraction.
1. A method of making a reflective roofing article, the method comprising the steps of:
(a) providing a hot asphaltic substrate; and
(b) applying by gravity a plurality of granules to the hot asphaltic substrate, wherein the plurality of granules are mullite-containing granules that include mullite crystallites dispersed within a non-mullite phase, the granules including a mullite concentration of at least 35 wt % and at most 63 wt % as determined by quantitative x-ray diffraction, and where the mullite crystallites have a size of at least 25 nm and at most 65 nm as determined by x-ray diffraction line broadening by the isolated (110), and where the mullite crystallites have an aspect ratio of at least 1.5, where the aspect ratio is a ratio of the mullite crystallite size by the isolated (001) x-ray diffraction peak to the mullite crystallite size by the isolated (110) x-ray diffraction peak.
2. The method of claim 1 , where said step of applying includes multiple, sequential drops of the mullite-containing granules to the hot asphaltic substrate.
3. The method of claim 2 , where the granules dropped in a first step are characterized by a first size and where the granules dropped in a second step are characterized by a second size, and where the first size is larger than the second size.
4. The method of claim 3 , wherein during the step of applying the hot asphaltic substrate is at a temperature of at least 150° C.
5. The method of claim 4 , wherein the during the step of applying the hot asphaltic substrate is at a temperature of at most 220° C.
6. The method of claim 5 , wherein during the step of applying the hot asphaltic substrate is at a temperature of between about 160° C. and about 195° C.
7. The method of claim 6 , wherein during the step of applying the hot asphaltic substrate is at a temperature of between about 170° C. and about 185° C.
8. The method of claim 1 , where said step of providing a hot asphaltic substrate includes providing a hot polymer-modified membrane including a fiberglass scrim.