Teatcup
US-10548291-B2 · Feb 4, 2020 · US
US11533886B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11533886-B2 |
| Application number | US-201816759033-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 23, 2018 |
| Priority date | Oct 26, 2017 |
| Publication date | Dec 27, 2022 |
| Grant date | Dec 27, 2022 |
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Official abstract text for this publication.
A connector configured for receiving a cartridge for forming a teatcup where the cartridge includes an elongated sleeve and a barrel pre-mounted in the elongated sleeve and having an inner space for receiving a teat and the connector includes a lower base member and a shell extending from the lower base member and surrounding a receiving space for receiving the cartridge, the lower base member and the shell foringm one piece of a plastic material, and the shell being configured to extend along an axial length of the elongated sleeve at least to the upper end of the sleeve when the cartridge is received in the connector.
Opening claim text (preview).
The invention claimed is: 1. A connector ( 2 ) for a teatcup to be attached to a teat of an animal to be milked, the connector ( 2 ) comprising: a lower base member ( 3 ); a shell ( 4 ) extending along a longitudinal central axis (x) from the lower base member ( 3 ); a metal sleeve ( 60 ) attached to and extending around an outer surface ( 61 ) of the shell ( 4 ), wherein the connector ( 2 ) is configured to receive a cartridge ( 1 ) comprising an elongated sleeve ( 8 ) and a barrel ( 9 ) pre-mounted in the elongated sleeve ( 8 ) and having an inner space ( 10 ) for receiving said teat, wherein the elongated sleeve ( 8 ) has axial length from a lower end ( 8 ″) of the elongated sleeve ( 8 ) to an upper end ( 8 ′) of the elongated sleeve ( 8 ), wherein the shell ( 4 ) defines a receiving space ( 5 ) for receiving the cartridge ( 1 ), the receiving space surrounding the longitudinal central axis (x), wherein the lower base member ( 3 ) and the shell ( 4 ) form one piece of a plastic material, wherein the shell ( 4 ) is configured to extend outside the elongated sleeve ( 8 ) along the axial length of the elongated sleeve ( 8 ) at least outside of an endmost part of the upper end ( 8 ′) of the elongated sleeve ( 8 ) when the cartridge ( 1 ) is received in the receiving space ( 5 ) of the connector ( 2 ), wherein the outer surface ( 61 ) comprises a depressed surface portion ( 62 ) extending around the shell ( 4 ) and wherein the metal sleeve ( 60 ) is arranged in the depressed surface portion ( 62 ), and wherein the shell ( 4 ) is tapering and the metal sleeve ( 60 ) is correspondingly tapering, and wherein the shell ( 4 ) is configured to permit the metal sleeve ( 60 ) to be pushed onto the shell ( 4 ) in a direction from the lower base member ( 3 ) upwards into the depressed surface portion ( 62 ) of the shell ( 4 ); and a pulse nipple ( 34 ) which extends downwardly from the lower base member ( 3 ) in parallel with the longitudinal central axis (x) in a manner to permit the lower base member ( 3 ) and the pulse nipple ( 34 ) to pass through the metal sleeve ( 60 ) when the metal sleeve ( 60 ) is pushed onto the shell ( 4 ) in the direction from the lower base member ( 3 ) upwards into the depressed surface portion ( 62 ) of the shell ( 4 ). 2. The connector ( 2 ) according to claim 1 , wherein the metal sleeve ( 60 ) is made of stainless steel. 3. The connector ( 2 ) according to claim 1 , wherein the metal sleeve ( 60 ) has an outer surface ( 63 ) which transitions continuously to the outer surface ( 62 ) of the shell ( 4 ) at least at a lower end ( 60 ″) of the metal sleeve ( 60 ). 4. The connector according to claim 1 , wherein the shell ( 4 ) is tapering from an upper end ( 4 ′) of the shell ( 4 ). 5. The connector ( 2 ) according to claim 1 , wherein the metal sleeve ( 60 ) has an upper end ( 60 ′) located at an axial distance (D′) from an upper end of the shell ( 4 ). 6. The connector ( 2 ) according to claim 1 , wherein the metal sleeve ( 60 ) has a lower end ( 60 ″) located at an axial distance (D″) from the lower base member ( 3 ). 7. The connector ( 2 ) according to claim 1 , wherein the metal sleeve ( 60 ) has an axial length (L s ) that is at least 20 mm. 8. The connector ( 2 ) according to claim 1 , wherein the shell ( 4 ) has an engagement element ( 70 ) and the metal sleeve ( 60 ) has a corresponding engagement element ( 71 ), which engage each other to prevent the metal sleeve ( 60 ) from rotating in relation to the shell ( 4 ). 9. The connector ( 2 ) according to claim 1 , wherein the cartridge ( 1 ) comprises a head member ( 12 ) comprising a lip ( 13 ) surrounding an opening ( 14 ) to the inner space ( 10 ), and wherein the shell ( 4 ) comprises an upper end surface ( 4 a ) configured to seal against a lower surface ( 15 ′) of the head member ( 12 ). 10. The connector ( 2 ) according to claim 1 , wherein the plastic material of the lower base member ( 3 ) and the shell ( 4 ) is a polybutylene terephthalate resin (PBT). 11. A teatcup configured to be attached to the teat of an animal to be milked and comprising the connector ( 2 ) according to claim 1 in combination with the cartridge ( 1 ), wherein, with the cartridge ( 1 ) received in the receiving space ( 5 ) of the connector ( 2 ), the shell ( 4 ) extends outside the elongated sleeve ( 8 ) along the axial length of the elongated sleeve ( 8 ) at least outside of an endmost part of the upper end ( 8 ′) of the elongated sleeve ( 8 ). 12. The teatcup of claim 11 , wherein the lower base member ( 3 ) includes a pulse opening ( 34 a ) extending through a side of the lower base member ( 3 ) the pulse nipple ( 34 ) permitting a supply of pulsating pressure to a pulsation chamber ( 11 ) of the teatcup via the pulse opening ( 34 a ). 13. A teatcup configured to be attached to the teat of an animal to be milked and comprising the connector ( 2 ) according to claim 1 in combination with the cartridge ( 1 ), wherein, with the cartridge ( 1 ) received in the receiving space ( 5 ) of the connector ( 2 ), the shell ( 4 ) extends outside the elongated sleeve ( 8 ) along the axial length of the elongated sleeve ( 8 ) beyond the endmost part of the upper end ( 8 ′) of the elongated sleeve ( 8 ). 14. A teatcup configured to be attached to the teat of an animal to be milked and comprising the connector ( 2 ) according to claim 1 in combination with the cartridge ( 1 ), wherein, with the cartridge ( 1 ) received in the receiving space ( 5 ) of the connector ( 2 ), the shell ( 4 ) extends outside the elongated sleeve ( 8 ) along the axial length of the elongated sleeve ( 8 ) beyond the upper end ( 8 ′) of the elongated sleeve ( 8 ) and the lower end ( 8 ″) of the elongated sleeve ( 8 ) extends into the lower base member ( 3 ), thereby the elongated sleeve ( 8 ) is protected by the shell ( 4 ) and the lower base member ( 3 ). 15. A teatcup configured to be attached to the teat of an animal to be milked and comprising the connector ( 2 ) according to claim 1 in combination with the cartridge ( 1 ), wherein the cartridge ( 1 ) comprises a head member ( 12 ) comprising a lip ( 13 ) provided at the upper end ( 8 ′) of the elongated sleeve ( 8 ) and attached to the barrel ( 9 ), the lip ( 13 ) surrounding and defining an opening ( 14 ) to the inner space ( 10 ), wherein the cartridge ( 1 ) comprises a ring member ( 16 ) attaching the lip ( 13 ) to the barrel ( 9 ) and locking the lip ( 13 ) to the sleeve ( 8 ), and wherein the shell ( 4 ) comprises an upper end surface ( 4 a ) sealing against a lower surface ( 15 ′) of the head member ( 12 ), and with the cartridge ( 1 ) received in the receiving space ( 5 ) of the connector ( 2 ), the shell ( 4 ) extends at least partially outside along an exterior surface of the ring member ( 16 ). 16. The connector ( 2 ) according to claim 1 , wherein the shell ( 4 ) comprises an uppermost end surface ( 4 a ) and a lower end ( 4 ″) that adjoins the lower base member ( 3 ), wherein the outer surface ( 61 ) of the shell ( 4 ) that comprises the depressed surface portion ( 62 ) extends around the shell ( 4 ) and longitudinally from an upper end ( 4 ′) of the shell ( 4 ), through a longitudinal mid-point of the shell ( 4 ), towards the lower end ( 4 ″) of the shell ( 4 ), and wherein the metal sleeve ( 60 ) is arranged in the depressed surface portion ( 62 ), the metal sleeve ( 60 ) having an axial length (L s ) that is at least 20 mm extending longitudinally from the upper end ( 4 ′) of the shell ( 4 ), through the longitudinal mid-point of the shell ( 4 ), and towards the lower end ( 4 ″) of the sh
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