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Disposable air freshener including gel or polymer fragrance support

a technology of fragrance support and fragrance, applied in the field of fragrance and aroma management, can solve the problems of unresolved challenges, high volatility of fragrances with high equilibrium vapor pressure, and high volatility of fragrances, and achieve the effect of uniform and reliable fragrance release and enhanced heat distribution

Inactive Publication Date: 2012-05-31
DAMICO DANIEL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0012]Embodiments of the invention provide a fragrance distribution device comprising an electrical resistor, a plug or other power source, and a fragrance in a polymer or thermoplastic carrier. The polymer or thermoplastic carrier may include, for example, metal inclusions, which may be powdered metal. These metal inclusions are believed to enhance heat distribution throughout the carrier, thus allowing a more uniform and reliable release of fragrance.
[0013]A further embodiment of the invention provides a fragrance retained in a polymer or thermoplastic carrier. Metal is distributed throughout the carrier and believed to enhance heat distribution when the carrier is subjected to heat.

Problems solved by technology

Fragrances with a high equilibrium vapor pressure have a high volatility and quickly evaporate.
The useful lifespan of a fragrance device is limited by the amount of fragrance that is able to be distributed from the device.
Known devices for fragrance distribution may present a number of heretofore unresolved challenges.
For example, selection of a carrier that allows uniform distribution of the fragrance at a selected rate is difficult.
Some carriers and fragrances evaporate too quickly.
This results in an undesirably short lifespan for the fragrance distribution product and potentially an undesirably intense aroma.
Other carriers and fragrances may diffuse too slowly, or diffuse to an extent insufficient to create the desired fragrance in a room of large size.
This could result in a fragrance concentration that is too low to be effective for an intended use.
Unfortunately, many heat assisted fragrance distributors share problems with their non-heated counterparts.
For example, fragrance may diffuse too rapidly when the carrier is heated.
Because the application of heat is often not uniform across the entirety of a fragrance diffuser (for example, when the heat is applied to only one side or to the bottom of a container holding the fragrance and carrier), the fragrance may not be uniformly released from the carrier.
This is particularly troublesome in applications where the carrier is a solid carrier, and where there is no opportunity for the carrier to be placed in contact with the heating element.
This can result in low fragrance capacity (because only a small amount of carrier is provided) or in significant wasted fragrance and carrier (because more carrier is provided than can be placed in contact with or operatively close to the heat source.

Method used

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  • Disposable air freshener including gel or polymer fragrance support
  • Disposable air freshener including gel or polymer fragrance support
  • Disposable air freshener including gel or polymer fragrance support

Examples

Experimental program
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Effect test

example 1

[0053]Example 1 describes the construction of a polymer support containing metal inclusions and a fragrance. An amount of fragrance that is 33.4% by weight of the anticipated final formula amount is weighed and loaded into a vessel. Into the fragrance is added antioxidant and hindered amine at 0.7% and 0.7% by weight of the anticipated final formula amount, respectively. An amount of 0.2% of a color solution is added. This is mixed until dissolution.

[0054]The fragrance solution is transferred to a 5 gallon drum. EVA in the amount of 65% by weight of the anticipated final formula amount is added as solid beads. Aluminum powder, if desired, is added at 0.3% by weight of the anticipated final formula amount. The drum is sealed and rotated until the fragrance mixture is completely absorbed into the EVA and the aluminum (if present) coats the beads.

[0055]The beads are loaded into an injection molding machine. It is preferred that prior to injection molding the beads be no larger than 325...

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Abstract

Embodiments of the invention provide a fragrance distribution device comprising an electrical resistor, a plug or other power source, and a fragrance in a polymer or thermoplastic carrier. The polymer or thermoplastic carrier may include, for example, metal inclusions, which may be powdered metal. These metal inclusions are believed to enhance heat distribution throughout the carrier, thus allowing a more uniform and reliable release of fragrance.

Description

CLAIM TO PRIORITY[0001]This application claims priority to U.S. Provisional Patent Application No. 60 / 931,358, filed on May 23, 2007, and having common inventor. That application, including all figures and drawings, is incorporated by reference as if fully rewritten herein.BACKGROUND OF THE INVENTION[0002]1. Field of the Invention[0003]The invention relates to the fields of scent and aroma management. This may include, for example but not be limited to increasing the amount of desirable volatile organic compound (for example, fragrances) in a room or other area.[0004]2. Background of the Art[0005]Many devices for providing a fragrance to an area over a period of time are known. Generally, these devices operate by allowing a fragrance contained in the device to diffuse from the device and into the atmosphere. Diffusion of fragrance may be enhanced, for example, by heating the fragrance, by including the fragrance in a volatile carrier, or by a combination of those. Diffusion of fragr...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): A61L9/03A61L9/01
CPCC11B5/0078A61L9/03
Inventor D'AMICO, DANIEL
Owner DAMICO DANIEL
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