IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0865588
(2004-06-09)
|
발명자
/ 주소 |
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
12 인용 특허 :
19 |
초록
▼
A dispenser assembly for dispensing a substance from a receptacle is provided. Preferably the collar therefore comprises outwardly projecting and elongated angled ribs for forming complementary elongated grooves in the outer surface of the ferrule. A method of assembling such a dispenser assembly up
A dispenser assembly for dispensing a substance from a receptacle is provided. Preferably the collar therefore comprises outwardly projecting and elongated angled ribs for forming complementary elongated grooves in the outer surface of the ferrule. A method of assembling such a dispenser assembly upon a receptacle is also provided and comprises the important step of allowing the collar to rotate over the outer surface of the ferrule and towards the receptacle, such that the elongated ribs form complementary elongated grooves in the outer surface of the ferrule thereby forming an airtight seal between the dispensing assembly and the receptacle.
대표청구항
▼
1. A dispensing assembly for dispensing a substance from a receptacle, the receptacle comprising a neck and a rim, the dispenser assembly comprising:pump assembly that comprises at least an exit tube through which the substance leaves the pump assembly, and a dip tube coupled to the exit tube and ex
1. A dispensing assembly for dispensing a substance from a receptacle, the receptacle comprising a neck and a rim, the dispenser assembly comprising:pump assembly that comprises at least an exit tube through which the substance leaves the pump assembly, and a dip tube coupled to the exit tube and extending into the receptacle for transporting substance from the receptacle towards the exit tube; a ferrule for maintaining a coupling of the pump assembly to the receptacle, the ferrule comprising an outer surface and an interior cavity, an aperture through which at least the exit tube of the pump assembly extends, an a plurality of bendable and depending legs for engaging the rim of the receptacle; a gasket, positioned in the interior cavity of the ferrule and having an opening through which the pumping assembly is positioned, the gasket being in frictional engagement with the ferrule and for at least maintaining an airtight seal between the pumping assembly and the receptacle; and an annular collar, the collar having an inner surface and an outer surface, the inner surface comprising outwardly projecting elongated ribs, the ribs extending along the inner surface thereof and non-orthogonally to a longitudinal axis of the collar; wherein the ribs are angled along the inner surface of the collar and the frictional engagement between the gasket and the ferrule is sufficient such that: the collar is caused to rotate along the outer surface of the ferrule as the collar is pressed towards the receptacle; and the elongated ribs form complementary elongated grooves in the outer surface of the ferrule as the collar is being fitted thereon; wherein the plurality of depending legs are locked in engagement with the rim of the receptacle to maintain the coupling of the ferrule with the receptacle; whereby an airtight seal is provided between the dispensing assembly and the receptacle when the collar is positioned over the ferrule and the collar secures the engagement of the legs with the rim of the receptacle. 2. The dispensing assembly as claimed in claim 1, wherein the collar is made of aluminum.3. The dispensing assembly as claimed in claim 1, wherein each rib forms an angle of approximately 10 degrees with a reference line “1v” on the inner surface of the collar.4. The dispensing assembly as claimed in claim 1, wherein the ferrule is made of metal.5. An assembly comprising a receptacle and the dispensing assembly claimed in claim 1.6. A method of assembling a dispensing assembly upon a rim of a receptacle, wherein the dispensing assembly is for dispensing a substance from the receptacle and comprises (a) a pump assembly that comprises at least an exit tube through which the substance leaves the pump assembly, and a dip tube coupled to the exit tube and extending into the receptacle for transporting the substance from the receptacle towards the exit tube; (b) a ferrule for maintaining a coupling of the pump assembly to the receptacle, the ferrule comprising an outer surface and an interior cavity, an aperture through which at least the exit tube of the pump assembly extends, and a plurality of bendable and depending leg for engaging the rim of the receptacle; (c) a collar having an inner surface and an outer surface, the inner surface comprising outwardly protecting elongated ribs, the ribs extending along the inner surface thereof and being non-orthogonal to longitudinal axis of the collar; and (d) a gasket, positioned in the interior cavity of the ferrule and having an opening through which the pumping assembly is positioned, the gasket being in frictional engagement with the ferrule and for at least maintaining a airtight seal between the pumping assembly and the receptacle, wherein the method comprises:pushing the collar towards the receptacle and allowing it to rotate over the outer surface of the ferrule as it is forced towards the receptacle and forming elongated grooves in the Outer surface of the ferrule by the elongated ribs as the collar is being fitted thereon; trapping the plurality of depending legs under the rim of the receptacle, thereby maintaining the coupling of the ferrule with the receptacle; whereby an airtight seal is provided between the dispensing assembly and the receptacle when the collar is positioned over the ferrule and the collar secures the engagement of the legs with the rim of the receptacle. 7. The method as claimed in claim 6, including the steps of:providing a fitting assembly against the collar to cause the collar to move downwardly towards the receptacle, and allowing the collar to rotate due to the combination of: the angle of the ribs; the coefficient of friction between the gasket and the ferrule; and the coefficient of friction between the collar and the fitting assembly. 8. The method as claimed in claim 7, wherein:the angle of the ribs is small enough; the coefficient of friction between the gasket and the ferrule is large enough; and the coefficient of friction between the collar and the fitting assembly is small enough that: the fitting assembly imparts no rotational force to the collar as it is pushed towards the receptacle and yet the collar rotates as it pushed onto the ferrule and the ribs cut grooves in the ferrule as the collar moves towards the receptacle. 9. An assembly constructed from the method of claim 6.10. A method of assembling an assembly comprising a dispensing assembly and a receptacle, wherein the dispensing assembly is for dispensing a substance from the receptacle and comprises (a) a pump assembly that comprises at least an exit tube through which the substance leaves the pump assembly, and a dip tube coupled to the exit tube and extending into the receptacle for transporting the substance from the receptacle towards the exit tube; (b) a ferrule for maintaining a coupling of the pump assembly to the receptacle, the ferrule comprising an outer surface and an interior cavity, an aperture through which at least the exit tube of the pump assembly extends, and a plurality of bendable and depending legs for engaging the rim of the receptacle; (c) a collar having an inner surface and an outer surface, the inner surface comprising outwardly projecting elongated ribs, the ribs extending along the inner surface thereof an being non-orthogonal to a longitudinal axis of the collar; and (d) a gasket, positioned in the interior cavity of the ferrule and having an opening through which the pumping assembly is positioned, the gasket being in frictional engagement with the ferrule and for at least maintaining an airtight seal between the pumping assembly and the receptacle, wherein the method comprises:pushing the collar towards the receptacle and causing it to rotate over the outer surface of the ferrule as it is forced towards the receptacle and forming elongated grooves in the outer surface of the ferrule by the elongated ribs as the collar is being fitted thereon; trapping the plurality of depending legs under the rim of the receptacle, thereby maintaining the coupling of the ferrule with the receptacle; whereby an airtight seal is provided between the dispensing assembly and the receptacle when the collar is positioned over the ferrule and the collar secures the engagement of the legs with the rim of the receptacle.
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