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Flushing dispensers for delivering a consistent consumer experience

An actuator, volumetric technology, applied in the direction of a single handheld device, spray device, spray device, etc., can solve the problem of not providing a consistent experience distribution to consumers

Inactive Publication Date: 2017-02-15
THE PROCTER & GAMBLE COMPANY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

While there may be dispensers that accommodate separate chambers for separating incompatible components, such dispensers may not provide a consistent experience to consumers or may not be able to dispense certain chambers without damaging and / or clogging the system. ingredients

Method used

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  • Flushing dispensers for delivering a consistent consumer experience
  • Flushing dispensers for delivering a consistent consumer experience
  • Flushing dispensers for delivering a consistent consumer experience

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0221] Embodiment 1: polyacrylate microcapsules

[0222] An oil solution consisting of 128.4 g of aromatic oil, 32.1 g of isopropyl myristate, 0.86 g of DuPont Vazo-67, and 0.69 g of WakoChemicals V-501 was added to a temperature-controlled steel jacketed reactor at 35° C. Mix at 1000 rpm (4 ends, 2" diameter flat grinding paddle) with a nitrogen blanket applied at 100 cc / min. Heat the oil solution to 70°C over 45 minutes, hold at 75°C for 45 minutes, and Cool to 50° C. within 75 minutes. This will be referred to as Oil Solution A.

[0223] In a reaction vessel, an aqueous solution was prepared consisting of 300 g of deionized water in which 2.40 g of Celvol 540 polyvinyl alcohol was dispersed at 25 degrees Celsius. The mixture was heated to 85°C for 45 minutes. The solution was cooled to 30°C. 1.03 grams of Wako Chemicals V-501 initiator was added along with 0.51 grams of 40% sodium hydroxide solution. The solution was heated to 50°C and the solution was maintained at t...

Embodiment 2

[0227] Embodiment 2: polyacrylate microcapsules

[0228] An oil solution consisting of 96g of aromatic oil, 64g of isopropyl myristate, 0.86g of DuPont Vazo-67, 0.69g of WakoChemicals V-501 was added to a temperature-controlled steel jacketed reactor at 35°C, which was operated at 1000rpm (4 ends, 2" diameter flat grinding paddles) mixing and with a nitrogen blanket applied at 100 cc / min. The oil solution was heated to 70°C over 45 minutes, held at 75°C for 45 minutes, and at 75 minutes Cool internally to 50° C. This will be referred to as Oil Solution A.

[0229] In a reaction vessel, an aqueous solution was prepared consisting of 300 g of deionized water in which 2.40 g of Celvol 540 polyvinyl alcohol was dispersed at 25 degrees Celsius. The mixture was heated to 85°C for 45 minutes. The solution was cooled to 30°C. 1.03 grams of Wako Chemicals V-501 initiator was added along with 0.51 grams of 40% sodium hydroxide solution. The solution was heated to 50°C and the solu...

Embodiment 3

[0233] Embodiment 3: polyacrylate microcapsules

[0234] An oil solution consisting of 128.4 g of aromatic oil, 32.1 g of isopropyl myristate, 0.86 g of DuPont Vazo-67, and 0.69 g of WakoChemicals V-501 was added to a temperature-controlled steel jacketed reactor at 35° C. Mix at 1000 rpm (4 ends, 2" diameter flat grinding paddle) with a nitrogen blanket applied at 100 cc / min. Heat the oil solution to 70°C over 45 minutes, hold at 75°C for 45 minutes, and Cool to 50° C. within 75 minutes. This will be referred to as Oil Solution A.

[0235] In a reaction vessel, an aqueous solution was prepared consisting of 300 g of deionized water in which 2.40 g of Celvol 540 polyvinyl alcohol was dispersed at 25 degrees Celsius. The mixture was heated to 85°C for 45 minutes. The solution was cooled to 30°C. 1.03 grams of Wako Chemicals V-501 initiator was added along with 0.51 grams of 40% sodium hydroxide solution. The solution was heated to 50°C and the solution was maintained at t...

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Abstract

An assembly for flushing a dispenser that internally mixes a first composition and a second composition; dispensers including said assemblies are also provided.

Description

technical field [0001] The present disclosure generally relates to methods and assemblies for flushing dispensers. Background technique [0002] Consumers often desire the delivery of pleasant fragrances during and / or after application of a product. Such fragrances often contain perfume oils and / or other odorous substances that provide fragrance for a limited period of time. It is also not uncommon to include solvents for solubilizing perfume oils and / or other odorous substances. At this point, such solvents may be incompatible with other ingredients that may provide a benefit to the consumer. While there may be dispensers that accommodate separate chambers for separating incompatible components, such dispensers may not provide a consistent experience to consumers or may not be able to dispense certain chambers without damaging and / or clogging the system. some ingredients. Therefore, there is a need for a dispenser that can keep some incompatible ingredients separate but...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B05B11/00B05B15/02B05B1/34
CPCB05B1/3436B05B11/0037B05B11/1056B05B11/1047B05B11/1001B05B11/1074B05B11/1084B05B11/0038B05B15/55
Inventor L·巴罗韦N·C·德林E·A·M·巴克斯特M·J·克哈诺卡J·C·普洛斯A·R·E·麦格雷戈J·O·迪霍拉A·G·霍瓦斯
Owner THE PROCTER & GAMBLE COMPANY