Aerated fiber cement building products and methods of making the same
Disclosed herein are low density fiber cement articles, such as fiber cement building panels and sheets, comprised of multiple overlaying fiber cement substrate layers having small and uniform entrained air pockets and low density fillers distributed throughout. The combination of entrained air pockets and low density fillers provide a low density fiber cement matrix with physical and mechanical properties similar to comparable low density fiber cement matrix without entrained air pockets.
1. A building article comprising: a plurality of thin film overlaying fiber cement substrate layers, wherein each of said overlaying fiber cement substrate layer is bonded to an adjacent overlaying substrate layer, the fiber cement substrate layers together forming a single fiber cement matrix wherein said fiber cement matrix comprises an air entrainment agent; a first plurality of filler particles having a first density and incorporated in the fiber cement matrix, wherein the first plurality of filler particles comprises about 0.1%-5% by volume of the fiber cement matrix; a second plurality of filler particles having a second density and incorporated in the fiber cement matrix, wherein the second plurality of filler particles have an average density less than the average density of the first plurality of filler particles; and a plurality of air voids formed by the air entrainment agent defined by air pockets entrained in the fiber cement matrix such that the air voids are formed directly in the fiber cement matrix with no material separating the air voids from the fiber cement matrix, wherein the air voids comprise about 3%-20% by volume of the fiber cement matrix, wherein the air voids are closed cell and have an average diameter greater than 20 microns, and wherein the air voids are uniformly distributed.
2. The building article of claim 1 , wherein the first plurality of filler particles comprise microspheres.
3. The building article of claim 1 , wherein the second plurality of filler particles comprise perlite.
4. The building article of claim 1 , wherein the average diameter of the air voids is between 20 microns to 100 microns.
5. The building article of claim 4 comprising a fiber cement formulation, the fiber cement formulation comprising:
less than 50% by weight of a siliceous aggregate;
about 25%-38% by weight of a hydraulic binding agent;
about 5%-15% by weight of cellulose fibers;
about 1.5%-3.5% by weight of hollow microspheres;
about 3%-8% by weight of expanded perlite;
about 0.1%-0.5% by weight of an air entrainment agent; and
a hollow microsphere to air entrainment agent ratio between about 3 and 35.
6. The fiber cement formulation of claim 1 , wherein the formulation comprises about 1.5% by weight of hollow microspheres, about 3.5% by weight of expanded perlite, and about 0.5% by weight of the air entrainment agent.
7. The fiber cement formulation of claim 1 , wherein the formulation comprises about 3.5% by weight of the hollow microspheres, about 3.5% by weight of the expanded perlite, and about 0.5% by weight of the air entrainment agent.
8. The fiber cement formulation of claim 1 , wherein the air entrainment agent is selected from the group consisting of salts of wood resin, synthetic detergents, salts of sulfonated lignin, salts of petroleum acids, salts of proteinaceous material, fatty and resinous acids and salts thereof, alkylbenzene sulfonates, salts of sulfonated hydrocarbons, and combinations thereof.
9. The fiber cement formulation of claim 1 , wherein the air entrainment agent comprises vinsol resin.
10. The fiber cement formulation of claim 1 , wherein the air entrainment agent comprises a sacrificial filler.
11. The fiber cement formulation of claim 1 , wherein the air entrainment agent forms a plurality of closed-cell voids interspersed between the microspheres and expanded perlite.