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Flushing dispensers for delivering consistent consumer experience

A dispenser, volume technology, applied in a single handheld device, spray device, spray device, etc., can solve problems such as inability to dispense, the dispenser cannot provide consumers with a satisfactory experience, and the clogging system.

Inactive Publication Date: 2017-02-22
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 include separate chambers for separating incompatible ingredients, such dispensers may not provide a satisfactory experience for consumers, or may not be able to dispense specific ingredients without damaging and / or clogging the system

Method used

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

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0222] Embodiment 1 polyacrylate microcapsule

[0223]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 blades) and have 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 within minutes to 50° C. This will be referred to as Oil Solution A.

[0224] In a reaction vessel, an aqueous solution consisting of 2.40 grams of Celvol 540 polyvinyl alcohol dispersed in 300 grams of deionized water was prepared 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 and 0.51 grams of 40% sodium hydroxide solution were added. The solution was heated to 50°C and kept at this temperature.

[0225] To oil ...

Embodiment 2

[0228] Embodiment 2 polyacrylate microcapsules

[0229] 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 blades) mixed 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 within 75 minutes Cool to 50° C. This will be called Oil Solution A.

[0230] In a reaction vessel, an aqueous solution consisting of 2.40 grams of Celvol 540 polyvinyl alcohol dispersed in 300 grams of deionized water was prepared 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 and 0.51 grams of 40% sodium hydroxide solution were added. The solution was heated to 50°C and kept at this temperature.

[0231...

Embodiment 3

[0234] Embodiment 3 polyacrylate microcapsules

[0235] 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 blades) and have 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 within minutes to 50° C. This will be referred to as Oil Solution A.

[0236] In a reaction vessel, an aqueous solution consisting of 2.40 grams of Celvol 540 polyvinyl alcohol dispersed in 300 grams of deionized water was prepared 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 and 0.51 grams of 40% sodium hydroxide solution were added. The solution was heated to 50°C and kept at this temperature.

[0237] To oi...

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Abstract

A process for flushing a dispenser and a process for combining a first composition and a second composition to form a mixture and dispensing said mixture through an exit orifice are provided. Assemblies for flushing are also provided.

Description

technical field [0001] The present disclosure generally relates to methods and assemblies for flushing dispensers. Background technique [0002] Consumers often expect a pleasant fragrance to be delivered during and / or after application of a product. Such fragrances typically contain perfume oils and / or other aromatizing substances that provide a fragrance for a limited time. It is also not uncommon to include solvents for solubilizing fragrance oils and / or other aromatizing substances. Sometimes, such solvents may not be compatible with other ingredients that may provide benefits to consumers. While there may be dispensers that include separate chambers for keeping incompatible ingredients separate, such dispensers may not provide a satisfactory experience for consumers, or may not be able to dispense certain ingredients without damaging and / or clogging the system. Therefore, there is a need for a dispenser that can keep some incompatible ingredients separated while deli...

Claims

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Application Information

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IPC IPC(8): B05B1/34B05B11/00B05B15/02B05B15/55
CPCB05B1/3436B05B11/0037B05B11/1056B05B11/1074B05B11/1084B05B11/0038B05B15/55
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