Method of making a ceiling panel with enhanced acoustics and texture
A ceiling tile and a method of manufacture, wherein the ceiling tile has contrasting colors of texturized woven yarn and a coating, respectively, wherein individual colors of the yarn and coating are at different depths of surface texture, wherein color contrasts accentuate the surface texture depths to be viewed, and provide a desirable, unpredictable randomness of pattern of the color contrasts.
1. A method of making a ceiling tile, comprising:
covering a core of sound absorbing fibers with yarn, the yarn providing a surface topography; and
applying a coating of contrasting color, compared to a yarn color, on randomly distributed relatively taller portions of the surface topography, while some of the relatively taller portions have some of their side surfaces uncovered by the coating to expose the yarn color, and applying the coating on randomly distributed relatively large fluffy surface areas of the yarn at relatively lower depths of the surface topography, while randomly distributed relatively small fluffy surface areas of the yarn are uncoated by the coating to expose the yarn color, and relatively small smoother areas of the yarn at relatively lower depths of the surface topography are randomly distributed and are uncoated by the coating to expose the yarn color, which provides a random distribution of the yarn color at different depths and a random distribution of the contrasting color at different depths.
2. The method of claim 1 , comprising: providing the core with stepped edges.
3. The method of claim 1 , comprising: providing the core with squared edges.
4. The method of claim 1 , comprising: covering the core with a cloth including said yarn, said yarn comprising texturized fill yarns of the cloth.
5. The method of claim 1 , comprising: covering the core with a cloth including said yarn, wherein the relatively taller portions, the fluffy portions and the relatively smooth surface portions of said yarn are at different surface depths of the surface topography.
6. The method of claim 1 , comprising: applying the coating on relatively large smoother areas of the yarn at relatively lower depths of the surface topography.
7. The method of claim 1 , comprising: avoiding penetration of the coating into all surface depths of the surface topography by providing the coating with a non-penetrating viscosity.
8. The method of claim 1 , comprising: avoiding penetration of the coating into all surface depths of the surface topography by providing said yarn as hydrophobic to the coating.
9. The method of claim 1 , comprising: covering the core with a cloth including said yarn, and further including a distribution of small pores in the cloth for air to penetrate for sound dampening.
10. The method of claim 1 , wherein the step of applying the coating of contrasting color further includes, spraying the coating with a rotary spray movement onto the surface topography while linearly displacing the surface topography.