Assembly for conducting respiratory air in a patient ventilation system
20220379064 · 2022-12-01
Assignee
Inventors
Cpc classification
International classification
Abstract
An assembly for conducting respiratory air in a patient ventilation system has a plastic respiratory air tube component for conducting respiratory air. At least one heating wire is used to heat the respiratory air. A plastic connector conducts the respiratory air, is integrally connected to an end portion of the tube component and is used for connection to a further, external respiratory air-conducting component. The connector has a connection piece in which an end portion of the heating wire is electrically contacted to an external supply line. The end portion of the heating wire is routed through a lateral wall of the connector to the connection piece. In the connection piece, a recess for accommodating a protective plastic housing for an electrical contacting portion is provided between the heating wire end section and the end portion of the supply line.
Claims
1. An assembly for conducting respiratory air in a patient ventilation system having a respiratory air tube component (11) with a tube wall (20) made of plastic, for conducting respiratory air, having at least one heating wire (22a, 22b) to heat the respiratory air, having a connector (12; 37; 38), which conducts the respiratory air, is made of plastic and is integrally connected to an end portion of the tube component (11), for connecting the tube component (11) to a further, external respiratory air-conducting component, wherein the connector (12; 37; 38) has a connection piece (22) integrally connected thereto, in which an end portion (25) of the heating wire (22a, 22b) is electrically contacted to a supply line (26), wherein the end portion (25) of the heating wire (22a, 22b) is routed through a lateral wall (23a) of the connector (12; 37; 38) to the connection piece (22), having a protective plastic housing (28) for an electrical contacting portion (24) between the heating wire end portion (25) and an end portion of the supply line (26) electrically contacted thereto, wherein a recess (27) for accommodating the protective housing (28) is provided in the connection piece (22).
2. The assembly according to claim 1, wherein the heating wire (22a, 22b) is configured in the form of a plastic-coated heating coil (21) around an inner lumen of the tube component (11).
3. The assembly according to claim 1, wherein the connection piece (22) extends radially from a longitudinal axis (L) of the connector (37).
4. The assembly according to claim 1, wherein the protective housing (28) is configured such that a plurality of heating wire end portions (22a, 22b) are electrically contacted therein to associated supply line end portions (26a, 26b).
5. The assembly according to claim 4, wherein the protective housing (28) has at least one separating web (31) for insulation between the heating wire end portions (22a, 22b) or the supply line end portions (26a, 26b).
6. The assembly according to claim 1, wherein the protective housing (28) has a cover (32) which is connected to a base body (30) of the protective housing (28).
7. The assembly according to claim 6, comprising a solid-body hinge (33) between the cover (32) and the base body (30).
8. The assembly according to claim 1, comprising an overmolding body (39) which is arranged such as to support a tube wall (20) of the end portion from the inside when the connector (38) is molded to the end portion of the tube component (11).
9. The assembly according to claim 8, wherein the overmolding body (39) has a radially projecting collar (40) for axial fixation of the overmolding body (39) in the connector (38) during overmolding.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0031] A patient ventilation system 1, the main components of which are shown in
[0032] The ventilation system has a main unit 2 for controlling/regulating, in particular, a respiratory air supply, air humidification and temperature control of the respiratory air. In principle, the main unit 2 may also serve to determine a respiratory air composition. The main unit 2 serves as a respiratory air source.
[0033] The main unit 2 is in fluid connection with a respiratory air supply tube component 5 via a junction port 3 and a junction connector 4. The latter is shown very schematically in
[0034] Via a further junction connector 6, the respiratory air supply tube component is in fluid connection with a junction port 7 of a respiratory air humidification device 8. The humidification device 8 is in signal communication with the main unit 2 in a manner not shown.
[0035] The humidification device 8 is in fluid connection with a respiratory air connection tube component 11 via a further junction port 9 and a further junction connector 10.
[0036] The respiratory air connection tube component 11 is in fluid connection with a patient respiratory mask 15 via a further junction connector 12, a monitoring connector 13 and a three-way connector 14. The monitoring connector 13 thus, on the one hand, serves to connect to the respiratory air connection tube component 11, i.e. to a heatable respiratory air tube portion for conducting ventilation air from the main unit 2 to the patient, and, on the other hand, to connect this tube component 11 to the patient respiratory mask 15 as a patient air interface.
[0037] The respiratory mask 15, via the three-way connector 14 and a further junction connector 16, is in fluid connection with a respiratory air discharge tube component 17. The latter is in fluid connection with the main unit 2 via a further junction connector 18 and a further junction port 19.
[0038]
[0039] The connector 12 is integrally connected to an end portion of the tube component 11 by overmolding. The connector 12 serves to connect the tube component 11 to a further, external respiratory air-conducting component, which is not shown in the drawing.
[0040] The connector 12 has a connection piece 22 which is integrally connected to a base body 23 of the connector 12. The connection piece 22 extends obliquely away from the base body 23 of the connector 12, with respect to a longitudinal axis L of the connector 12, which coincides with a longitudinal axis of the facing end portion of the tube component 11.
[0041]
[0042] The connection piece 22 is provided for accommodating an electrical contacting portion 24 between an end portion 25 of the heating wires 22a/b and an end portion of a supply line 26 electrically contacted to this heating wire end portion 25. For this purpose, the connection piece 22 has a recess 27.
[0043] The heating wire end portion 25 is routed through a lateral wall 23a of the connector 12 to the connection piece 22.
[0044] The assembly for conducting respiratory air with the tube component 11 and the connector 12 also includes the supply line 26.
[0045] The recess 27 in the connection piece 22 serves to accommodate a protective plastic housing 28 for the electrical contacting portion 24 (cf.
[0046] A base body 30 of the protective housing 28 has a separating web 31 for insulation between the heating wire/supply line end portions 22a/26a contacted to each other on the one hand and the heating wire/supply line end portions 22b/26b contacted to each other on the other hand. The separating web 31 prevents the two heating wires 22a and 22b on the one hand and the two supply lines 26a, 26b on the other hand from undesirably coming into contact with each other in regions where they are stripped to create the line connection 29.
[0047] The protective housing 28 has a cover 32 that is connected to the base body of the protective housing 28 via a solid-body hinge 33, namely is integrally formed therewith. A latched closed position may be present between the cover 32 and the base body 30. The base body 30, on the one hand, and the cover 32, on the other hand, delimit an accommodation space 34 for accommodating the electrical contacting portion 24. For routing out insulated lead portions of the heating wire end portion 25, on the one hand, and the end portion of the supply line 26, on the other hand, respective passage openings 35, 36 are formed in end walls of the base body 30.
[0048] In the production of the assembly according to
[0049]
[0050] With reference to
[0051] The assembly with the connector 38 and the end portion of the tube component 11 facing same includes an overmolding body 39, which is arranged in such a way that it supports the tube wall 20 of the end portion from the inside when the connector 38 is molded onto the end portion of the tube component 11. For this purpose, the overmolding body 39 is designed as a grommet and has a radially projecting collar 40, which serves to axially fix the overmolding body 39 in the connector 38 during overmolding. For the axial fixation of the overmolding body 39, the collar is located in a complementary circumferential recess 41 in an inner wall 42 of the connector 38 when the overmolding body 39 is inserted.
[0052] In the inserted position shown in
[0053] When overmolding the connector 38 and the associated end portion of the tube component 11, the overmolding body 39 ensures that the tube wall 20, which is softer due to the increased overmolding temperature, is securely supported from the inside and is not damaged by the overmolding process.