Adaptor for Mounting onto a Medical Container, a Medical Container Comprising Said Adaptor, and a Method for Manufacturing Said Adaptor
20230075695 · 2023-03-09
Inventors
- Pooja Bhuvanesh Kulkarni (Pune, Maharashtra, IN)
- Nicolas Euvrard (Plainsboro, NJ, US)
- Cédric Rivier (Voreppe, FR)
- Rajesh Poola (Chennai, Tamil Nadu, IN)
- Julien Gagliano (Grenoble, FR)
- Frédéric Michel (Rives, FR)
Cpc classification
A61M2039/1077
HUMAN NECESSITIES
A61M2039/1033
HUMAN NECESSITIES
A61M39/1011
HUMAN NECESSITIES
International classification
Abstract
An adaptor for mounting onto a medical container, the adaptor including a distal part configured to receive a connector, and a proximal part configured to be mounted onto the distal tip of the medical container. The proximal part includes an inner ring protruding from a lateral tubular wall of the adaptor, said inner ring having an inner edge that delimits an opening configured to receive the distal tip. The proximal part further includes a gripping member made of an elastomer material, said gripping member being connected to the inner edge of the inner ring in order to be in contact with an outer surface of the distal tip when the adaptor is mounted onto the medical container.
Claims
1. An adaptor for a medical container having a distal tip, said adaptor comprising: a distal part configured to receive a connector, and a proximal part configured to be mounted onto the distal tip of the medical container, wherein the proximal part comprises an inner ring protruding from a lateral tubular wall of the adaptor, said inner ring having an inner edge that delimits an opening configured to receive the distal tip, and wherein the proximal part further comprises a gripping member made of an elastomer material, said gripping member being connected to the inner edge of the inner ring in order to be in contact with an outer surface of the distal tip when the adaptor is mounted onto the medical container, wherein the inner ring comprises a protrusion or a recess, preferably a protrusion, that engages a complementarily shaped recess or protrusion, preferably a recess, provided on the elastomer gripping member in order to secure said elastomer gripping member to the inner ring.
2. The adaptor according to claim 1, wherein the inner ring comprises a distal and a proximal abutment surface abutting against the gripping member in order to secure said elastomer gripping member in a longitudinal direction of the adaptor.
3. The adaptor according to claim 1, wherein said protrusion or recess has a dovetail shape.
4. The adaptor according to claim 1, wherein the elastomer gripping member comprises a free distal lip.
5. The adaptor according to claim 1, wherein the gripping member is over-molded or co-injection molded.
6. The adaptor according to claim 1, wherein the elastomer material of the gripping member is rubber or thermoplastic elastomer.
7. The adaptor according to claim 1, wherein the gripping member is in the form of a 360° extending sleeve.
8. The adaptor according to claim 1, wherein the adaptor comprises several gripping members, each of said gripping members being in the form of a partial sleeve, the adjacent gripping members thereby delimiting gaps allowing the inner edge of the inner ring to be in contact with the outer surface of the distal tip when the adaptor is mounted onto the medical container.
9. A medical container comprising a distal tip and an adaptor according to claim 1.
10. A medical container comprising a distal tip and an adaptor according to claim 8, wherein the distal tip comprises bumps configured to abut against the inner edge the inner ring at the gaps delimited by the adjacent gripping members.
11. A method for manufacturing an adaptor according to claim 1, wherein the gripping member is overmolded or co-injection molded.
12. The method according to claim 1, wherein the adaptor is formed in a two-shot injection molding.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0033] The disclosure and the advantages arising therefrom will clearly emerge from the detailed description that is given below with reference to the appended drawings as follows:
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
DETAILED DESCRIPTION
[0041] With reference to
[0042] The adaptor 1 comprises a distal part 2 and a proximal part 4. The adaptor 1 comprises a tubular wall 6 defining an inner cavity around a central longitudinal axis A.
[0043] The distal part 2 is configured to receive the connector. As illustrated on
[0044] The proximal part 4 is configured to secure the adaptor 1 to the distal tip 102 of the medical container 100. The proximal part 4 defines a proximal opening leading into the inner cavity so as to receive the distal tip 102 of the medical container 100 inside the adaptor 1. The proximal part 4 further comprises an inner ring 40 and at least one gripping member 50. The inner ring 40 and the gripping member 50 are configured to secure the adaptor 1 onto the distal tip 102 of the medical container 100.
[0045] The inner ring 40 inwardly and radially protrudes from the tubular wall 6 of the adaptor 1. The inner ring 40 is configured to support the gripping member 50. The gripping member 50 is thus connected to the rest of the adaptor 1 by means of inner ring 40 and preferably by means of this inner ring 40 only.
[0046] The inner ring 40 has an inner edge 42 defining the proximal opening. The inner edge 42 is configured to maintain said gripping member 50 against the outer surface of the distal tip 102 when the adaptor 1 is mounted onto the medical container 100. The gripping member 50 may thus be compressed by the outer surface against the inner edge 42 by the distal tip 102 having a frustoconical shape. The inner edge 42 may have a cylindrical shape and may preferably extend parallel to the longitudinal axis A. The inner edge 42 continuously extends in a circumferential direction.
[0047] The inner ring 40 preferably extends in a transversal plane that is orthogonal to the longitudinal axis A. Accordingly the inner ring 40 extends orthogonally to the tubular wall 6 of the adaptor 1. The inner ring 40 therefore better withstands deformation when the adaptor 1 is mounted onto the distal tip 102 and better maintains the gripping member 50 against the outer surface of the distal tip 102.
[0048] The inner ring 40, and more generally the rest of the adaptor 1 apart from the gripping member 50, may be made a plastic material, more precisely of any rigid polymer adapted to medical use, such as high density polyethylene (PE), polypropylene (PP), polycarbonate (PC), acrylonitrile butadiene styrene (ABS), polyoxymethylene (POM), polystyrene (PS), polybutylene terephthalate (PBT), polyamide (PA), and combinations thereof. The rest of the adaptor 1 at least includes the inner ring 40 and may further include the proximal part 4, the tubular wall 6 and/or the distal part 2. Preferably, the adaptor 1, more specifically the inner ring 40, is made of acrylonitrile butadiene styrene (ABS). Furthermore, the adaptor 1 may preferably be made of a light-transmitting material.
[0049] The gripping member 50 is configured to secure the adaptor 1 to the distal tip 102. The gripping member 50 is made of a softer material than the inner ring 40 and more generally than the rest of the adaptor 1 in order to enhance the adherence of the proximal part of the adaptor 1 onto the distal tip 102. More specifically, the gripping member 50 is made of an elastomer material such as thermoplastic elastomer or rubber. The rubber may be either natural or synthetic rubber. The gripping member 50 thus forms an elastomer inner sleeve configured to secure the adaptor 1 to the medical container 100.
[0050] The gripping member 50 is supported by the inner ring 40. More specifically, the gripping member 50 covers the inner edge 42 of the inner ring 40. therefore, the gripping member 50 is configured to extend between said inner edge 42 and the distal tip 102 of the medical container 100. As shown on
[0051] The gripping member 50 is fixedly attached to the inner edge 42 of the inner ring 40. For example, the gripping member 50 may be over-molded or may be co-injection molded with the inner ring 40 and more generally with the rest of the adaptor 1. The inner ring 40 and the gripping member 50 thus form a single-piece adaptor 1 made of two different materials. By single-piece adaptor 1 it is meant that the inner ring 40 and the gripping member 50 that are made of different materials form together a single piece that cannot be disassembled or separated without damaging the adaptor 1. The gripping member 50 is thus fixed relative to the inner ring 40.
[0052] In order to prevent any sliding movement of the gripping member 50 relative to the inner ring 40, the inner ring 40 may comprise a proximal abutment surface 44a and a distal abutment surface 44b. The gripping member 50 is preferably secured to these proximal and distal abutment surfaces 44a, 44b.
[0053] As visible on
[0054] The inner ring 40 may further comprise a radial bottom shoulder 46a and/or a radial top shoulder 46b. The bottom and top shoulders 46a, 46b are respectively arranged proximally and distally relative to the inner edge 42. The gripping member 50 is advantageously also secured to the radial bottom shoulder 46a and/or top shoulder 46b.
[0055] It should also be noted that the gripping member 50 may have a bottom proximal face 57a that does not go beyond a bottom proximal face 47a of the inner ring 40. The gripping member 50 may also have a top distal face 57b that does not go beyond a top distal face 47b of the inner ring 40. Preferably, the bottom proximal face 57a of the gripping member 50 is flush with the bottom proximal face 47a of the inner ring 40, and/or the top distal face 57b of the gripping member 50 is flush with the top distal face 47b of the inner ring 40.
[0056] As shown on
[0057] According to
[0058] Alternatively, as shown on
[0059] The disclosure also relates to a medical container 100 as shown for example on
[0060] As visible on
[0061] The disclosure also relates to a method for manufacturing the above-described adaptor 1. This method may include overmolding or co-injection molding of the gripping member 50 with the rest of the adaptor 1. Preferably, the adaptor 1 is formed in a two-shot injection molding process.