Abstract:
A texture material formulated substantially to match a pre-existing texture pattern. The texture material comprises a carrier, a binder, a filler, and a pH change material. The texture material changes from a wet form to a solidified form when exposed to air. A pH of the texture material changes as the texture material changes from the wet form to the solidified form. An appearance of at least one appearance characteristic of the at least one material forming the pH change material changes as the pH of the texture material changes. An appearance characteristic of the texture material associated with the at least one material forming the pH change material in at least one of the wet form and the solidified form differs from a similar appearance characteristic of the pre-existing texture pattern.
Abstract:
A composition for forming a textured coating on drywall material, comprising acoustic texture material and propellant material. The acoustic texture material comprises a base portion and a particulate portion, where the particulate portion comprises at least one of urethane foam and melamine foam. The propellant material is at least one of DME and a hydrocarbon propellant.
Abstract:
An aerosol texturing system for applying a layer of texture material on an uncoated portion of a substrate substantially to match a coated portion of the substrate, comprises an aerosol assembly, texture material, and propellant material. The aerosol assembly defines a product chamber and is selectively operable in a first mode in which the product chamber is sealed and in a second mode in which fluid is allowed to flow out of the product chamber along a dispensing passageway. The texture material and propellant material are disposed within the product chamber. The texture material comprises a base portion and a particulate portion comprising at least one particulate material. When the aerosol assembly is in the second mode, the propellant material is adapted to force the texture material out of the aerosol assembly along the dispensing passageway and onto the uncoated portion of the substrate.
Abstract:
A tensioning device for applying tension to a line extending between first and second objects. The tensioning device comprises a first engaging portion, a support surface, and first and second gripping portions defining a gripping notch. The first engaging portion is adapted to be connected to the first object. The support surface is adapted to support the line. The gripping notch is located adjacent to the support surface. The support surface supports the line to define a first line portion extending in a first direction, a second line portion in contact with the support surface, and a third line portion extending in a second direction. The third line portion is adapted to support the second object. The first line portion is pulled to place the line under tension. The gripping notch is arranged to engage the first line portion to inhibit movement of the line relative to the support surface.
Abstract:
An aerosol texturing system for forming a textured surface on drywall material. The aerosol texturing system comprises an aerosol assembly defining a product chamber and acoustic texture material and propellant material disposed within the product chamber. The aerosol assembly is selectively operable in a first mode in which the product chamber is sealed and in a second mode in which fluid is allowed to flow out of the product chamber along a dispensing passageway. The acoustic texture material comprises a base portion and a particulate portion. The particulate portion comprises at least one particulate material selected from the group consisting of urethane foam and melamine foam. At least a portion of the propellant material exists in a gaseous state such that, when the aerosol assembly is in the second mode, the propellant material forces the acoustic texture material out of the aerosol assembly along the dispensing passageway.
Abstract:
An aerosol system or method for mixing first and second materials. The system comprises first and second container assemblies and a coupler. The first container assembly contains the second material and a propellant material that pressurizes the second material. The second container assembly contains the second material. The coupler is arranged to couple the first and second container assemblies, thereby forcing the second material into the second container assembly such that the first and second materials mix. The resulting mixture may then be dispensed from the second container assembly using an actuator member. In one case, the first container assembly comprises a male-type valve assembly and the second container assembly comprises a female type valve assembly. In another case, the first material is a catalyst and the second material is a pigmented liquid, which, when mixed, are suitable for repairing a damaged surface.
Abstract:
A method of applying texture material to a surface. A block of chip material is provided. A physical structure of the chip material is not substantially altered when the chip material is exposed to a propellant material. The block of chip material is processed to obtain chips, and the chips are combined with a coating portion to obtain acoustic texture material. Propellant material is arranged within the product chamber such that a liquid phase portion of the propellant material is mixed with the acoustic texture material, and a gas phase portion of the propellant material pressurizes the acoustic texture material within the product chamber. The propellant material may be di-methyl ethylene.
Abstract:
A dispenser for an aerosol system for dispensing liquid material includes an outlet member, a collar member, an actuator member, and a selector member. The outlet member defines an outlet opening. The actuator member supports the collar member and the outlet member such that movement of the collar member relative to the actuator member causes the collar member to deform the outlet member. Movement of the selector member relative to the collar member causes movement of the collar member relative to the actuator member. Deformation of the outlet member alters a cross-sectional area of the outlet opening.
Abstract:
A method of applying texture material to a destination surface defining a pre-textured portion formed by a spray system and an untextured portion, comprising the following steps. A flexible container, texture, material, a sponge base, a resilient sponge are provided. The resilient sponge is adhered to the sponge base to form a sponge assembly. The texture material is arranged within the container chamber, and the sponge member is fixed relative to the container. Texture material is forced out of the container member and onto an applicator surface. At least a portion of the texture material on the applicator surface is transferred to the untextured portion of the destination surface by displacing the container member along the dispensing axis towards the destination surface with the applicator surface substantially parallel to the destination surface. The container member is then displaced away from the destination surface along the dispensing axis with the applicator surface substantially parallel to the destination surface such that an exposed portion of the particulate material on the untextured portion of the destination surface stands out from the destination surface and is visually perceptible.
Abstract:
An aerosol texturing system for applying a layer of texture material on an uncoated portion of a substrate substantially to match a coated portion of the substrate, comprises an aerosol assembly, texture material, and propellant material. The aerosol assembly defines a product chamber and is selectively operable in a first mode in which the product chamber is sealed and in a second mode in which fluid is allowed to flow out of the product chamber along a dispensing passageway. The texture material and propellant material are disposed within the product chamber. The texture material has a base portion and a particulate portion containing at least one particulate material. When the aerosol assembly is in the second mode, the propellant material is adapted to force the texture material out of the aerosol assembly along the dispensing passageway and onto the uncoated portion of the substrate.