Hemolysis-reduction connector for direct blood draw
US-2024374185-A1 · Nov 14, 2024 · US
US10420924B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10420924-B2 |
| Application number | US-201514868108-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 28, 2015 |
| Priority date | Sep 30, 2014 |
| Publication date | Sep 24, 2019 |
| Grant date | Sep 24, 2019 |
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A connector device for a fluid system for medical purposes is disclosed that includes a main housing having a fluid flow chamber forming two channel portions leading in different directions towards two open attachments, wherein the attachments are provided for connection to a fluid line or a fluid reservoir, and with an attachment port which opens into the fluid flow chamber and which has a closure arrangement and which includes a Luer connecting portion. The fluid flow chamber has a dimensionally stable flow-guiding wall which is arranged between the two channel portions in the fluid flow chamber and protrudes freely with a front edge towards the attachment port in such a way that the closure arrangement, upon opening of the closure arrangement, interacts with the front edge of the flow-guiding wall in order to effect flow of fluid out of the attachment port into only one channel portion.
Opening claim text (preview).
The invention claimed is: 1. A connector device for a fluid system for medical purposes, comprising: a main housing which has a fluid flow chamber that forms channel portions leading in different directions towards two open attachments, wherein the attachments are provided for connection to in each case a fluid line or a fluid reservoir, and also with an attachment port which opens into the fluid flow chamber and is provided with a closure arrangement and which comprises a connecting portion for connection to an attachment part, wherein the fluid flow chamber has a dimensionally stable flow-guiding wall which is rigidly arranged between the two channel portions in the fluid flow chamber and protrudes freely with a front edge towards the attachment port in such a way that the closure arrangement, in an open position, interacts with the front edge of the flow-guiding wall in order to obtain a flow of fluid from the attachment port at least substantially to only one channel portion, wherein the closure arrangement includes a movable actuating body that is mounted in the attachment port. 2. The connector device according to claim 1 , wherein the connecting portion is designed as a Luer slip or Luer lock connecting portion. 3. The connector device according to claim 1 , wherein the connecting portion is designed as an enteral small bore connector. 4. The connector device according to claim 1 , wherein the flow-guiding wall is integrated in one piece in the main housing. 5. The connector device according to claim 1 , wherein the flow-guiding wall, at the free front edge, has an arc-shaped or V-shaped curvature in cross section over a partial area coaxial to a central longitudinal axis (M) of the attachment port, and wherein the flow-guiding wall is formed in a mouth region where one channel portion leads into the other channel portion. 6. The connector device according to claim 1 , wherein, as part of the closure arrangement, the movable actuating body is configured to open a flexible closure membrane in accordance with a connection to a Luer attachment part. 7. The connector device according to claim 6 , wherein the flow-guiding wall protrudes in the direction of the attachment port in such a way that the actuating body and/or the flexible closure membrane, in the open position of the closure arrangement, are in contact with partial areas of the flow-guiding wall in such a way that a flow of fluid delivered into the attachment port from the Luer attachment part flows at least substantially into the channel portion. 8. The connector device according to claim 7 , wherein the actuating body and/or the flexible closure membrane, in the open position of the closure arrangement, are positioned on or next to at least a partial area of the flow-guiding wall. 9. The connector device according to claim 6 , wherein a curvature of the free front edge of the flow-guiding wall is adapted to a through-channel of the actuating body, coaxial to the central longitudinal axis (M) of the attachment port, in such a way that a groove thereby formed in the flow-guiding wall, on a side facing towards one channel portion, is flush with the through-channel of the actuating body when the actuating body is moved to its open position. 10. The connector device according to claim 1 , wherein the flow-guiding wall is designed for one channel portion as a flow-guiding surface which deflects a stream of fluid and which causes a deflection, in the direction of the attachment port, of fluid flowing out of one channel portion in the direction of the other channel portion. 11. The connector device according to claim 1 , wherein the attachment port is provided in a housing component which is produced separately from the main housing and which is produced from a more inert plastics material than a plastics material of the main housing, in order to achieve greater chemical resistance than the main housing to medical active substances that can be delivered at the attachment port to the fluid system. 12. The connector device according to claim 11 , wherein the housing component having the attachment port is connected tightly to the main housing by cohesive bonding, in particular by one of gluing or welding.
having a plurality of male connectors, e.g. Luer connectors · CPC title
having a plurality of female connectors, e.g. Luer connectors · CPC title
Quick-acting type connectors · CPC title
Male-female welded joints (F16L13/0245 and F16L13/0254 take precedence) · CPC title
Adhesive joints · CPC title
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