Utility materials incorporating a microparticle matrix
View Patent ↗A utility material can include microparticles, an organic binder and an inorganic binder. The microparticles can be present in an amount from about 25 wt % to about 60 wt %, based on wet formulation. The inorganic binder can optionally include sodium silicate. The organic binder can optionally include a vinyl acetate. The utility material can be formed into a variety of different products or building materials, such as wallboard, shear panels. In addition, the building material may be particularly used to attenuate sound.
1. A building material comprising:
a wallboard paper sheet;
a core matrix comprised of a plurality of microparticles having a generally spherical shape and a hollow interior, and at least one binder for adhering said microparticles together, said core matrix defining first and second surfaces, wherein the first surface of the core matrix is disposed on the sheet, wherein the second surface of the core matrix is an exposed rough surface so as to expose a portion of the plurality of microparticles and the at least one binder; and
a multi-elevational surface configuration formed in at least a part of said exposed rough surface of said core matrix that is configured to enhance the sound attenuation properties of said building material.
2. The building material of claim 1 , further comprising a reinforcing member disposed within said core matrix, said reinforcing member being configured to reinforce said building material in one or more ways selected from the group consisting of reinforcing against sound transmission, reinforcing against heat transfer, enhancing strength, and any combination of these.
3. The building material of claim 1 , wherein said building material comprises a Sound Transmission Class (STC) rating between 35 and 65.
4. The building material of claim 1 , wherein said building material comprises a decibel noise reduction value between 55 and 65 dB at 3000 Hz, for a ½ inch thick wallboard.
5. The building material of claim 1 , further comprising a plurality of cavities strategically formed throughout said core matrix.