NASAL CANNULA HAVING SLIDING TRACK MECHANISM
20190298961 ยท 2019-10-03
Inventors
Cpc classification
A61L29/06
HUMAN NECESSITIES
A61L29/06
HUMAN NECESSITIES
A61L29/14
HUMAN NECESSITIES
A61M2207/00
HUMAN NECESSITIES
A61M2205/0216
HUMAN NECESSITIES
International classification
A61M16/08
HUMAN NECESSITIES
A61L29/06
HUMAN NECESSITIES
A61L29/14
HUMAN NECESSITIES
Abstract
A nasal cannula having sliding track mechanism, the nasal cannula has a flexible nasal prong body, the nasal prong body is combined with a rigid sliding track frame, an elastic portion of the nasal prong body is formed on the sliding track frame, an outside of the elastic portion is provided with a pair of nasal prongs; wherein two sides of the sliding track frame respectively have a track, a intake tube can be quickly combined to the nasal prong body in a sliding manner along a rigid track direction of the sliding track frame, and a gas tightness can be achieved between the nasal prong body and the intake tube, the intake tube can be quickly separated from the nasal prong body in a sliding manner along a track direction of the sliding track frame.
Claims
1. A nasal cannula having sliding track mechanism, the nasal cannula comprising: a rigid sliding track frame (10), two sides of the sliding track frame (10) respectively have a track (12), a through hole (13) is formed on the sliding track frame (10); a flexible nasal prong body (20), the nasal prong body (20) is combined with the sliding track frame (10), an elastic portion (21) of the nasal prong body (20) is formed on the sliding track frame (10), an outside of the elastic portion (21) is provided with a pair of nasal prongs (22), an inside of the elastic portion (21) is provided with a sealing surface (25), and the sealing surface (25) is located at the through hole (13) of the sliding track frame (10); a rigid intake tube (30), one side of the intake tube (30) has a flow guiding portion (31), and the flow guiding portion (31) has a pair of first convex portions (32); wherein each of the first convex portions (32) can be inserted into each of the tracks (12), each of nasal prongs (22) can be fluid communicated to an opening (34) of the flow guiding portion (31), a flange (35) of the opening (34) can be pressed against the sealing surface (25), therefore a gas tightness can be achieved between the flow guiding portion (31) and the elastic portion (21), the intake tube (30) can be quickly combined to the nasal prong body (20) in a sliding manner along a track direction (S1) of the sliding track frame (10); when each of the first convex portions (32) is escaped from each of the tracks (12), the intake tube (30) can be quickly separated from the nasal prong body (20) in a sliding manner along a track direction (Si) of the sliding track frame (10).
2. The nasal cannula having sliding track mechanism of claim 1, wherein each of the first convex portions (32) can be formed a shape of curved surface, each of the first convex portions (32) can be easily inserted into each of the tracks (12) when the sliding track frame (10) is combined with the flow guiding portion (31).
3. The nasal cannula having sliding track mechanism of claim 1, wherein the material of the nasal prong body (20) can select from Silicone, Thermo-Plastic-Rubber (TPR), Thermoplastic Elastomer (TPE), Thermoplastic Urethane (TPU).
4. The nasal cannula having sliding track mechanism of claim 1, wherein the sliding track frame (10) further has a pair of the guiding portions (16), the flow guiding portion (31) further has a pair of guiding surfaces (36); each of the guiding portions (16) can slide on each of the guiding surfaces (36) when the sliding track frame (10) is combined with the guiding portion (31), and thereby guiding each of the first convex portions (32) to insert into each of the tracks (12).
5. The nasal cannula having sliding track mechanism of claim 4, wherein the nasal prong body (20) has a stopping portion (24), the stopping portion (24) can be pressed against a first rib portion (14) of the sliding track frame (10), a second rib portion (15) of the sliding track frame (10) can be fixed to a groove (251) of the nasal prong body (20), the groove (251) is adjacent to the elastic portion (21), the nasal prong body (20) has a pair of lateral walls (26), each of the guiding portions (16) can be fixed between the lateral walls (26) and the elastic portion (21).
6. The nasal cannula having sliding track mechanism of claim 4, wherein the flow guiding portion (31) has a pair of upright wall surfaces (311), each of the upright wall surfaces (311) is located between each of the first convex portions (32) and each of the guiding surfaces (36).
7. The nasal cannula having sliding track mechanism of claim 1, wherein the tracks (12) are symmetrically disposed on the sliding track frame (10), the first convex portions (32) are symmetrically disposed on the flow guiding portion (31), therefore the combination direction of the intake tube (30) and the sliding track frame (10) can be quickly changed; thereby locating a connecting portion (37) of the intake tube (30) in a left direction (L1) of the nasal prong body (20) or a right direction (R1) of the nasal prong body (20).
8. The nasal cannula having sliding track mechanism of claim 1, wherein the nasal prong body (20) has a pair of extending wings (28), a pair of strap fasteners (29) can be respectively fixed on the extending wings (28), each of the strap fasteners (29) has a plurality of strap holes (293).
9. The nasal cannula having sliding track mechanism of claim 1, wherein a breathing tube (41) can be connected to a connecting portion (37) of the intake tube (30), the connecting portion (37) of the intake tube (30) can be located in a left direction (L1) of the nasal prong body (20) or a right direction (R1) of the nasal prong body (20); thereby locating the extending direction of the breathing tube (40) in the left direction (L1) of the nasal cannula body (20) or the right direction (R1) of the nasal prong body (20).
10. The nasal cannula having sliding track mechanism of claim 1, wherein a breathing tube (41) can be connected to a connecting portion (37) of the intake tube (30), a tubing connector (42) can be further connected to the breathing tube (41).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0020] Referring to
[0021] Examples of the shape of the first convex portions 32, the first positioning portions 11 and the second positioning portions 33 will be illustrated below, each of the first convex portions 32 can be formed a shape of curved surface, each of the first convex portions 32 can be easily inserted into each of the tracks 12 when the sliding track frame 10 is combined with the flow guiding portion 31; the first positioning portions 11 and the second positioning portions 33 can be formed a shape of curved surface, each of the first positioning portions 11 is easily positioned in each of the second positioning portions 33 when the sliding track frame 10 is combined with the flow guiding portion 31; each of the first positioning portions 11 is easily separated from each of the second positioning portions 33 when the sliding track frame 10 is separated from the flow guiding portion 31.
[0022] Examples of the material of the sliding track frame 10, the nasal prong body 20 and the intake tube 30 will be illustrated below, the material of the nasal prong body 20 is, for example but not limited to Silicone, Thermo-Plastic-Rubber (TPR), Thermoplastic Elastomer (TPE), Thermoplastic Urethane (TPU); the material of the sliding track frame 10 and the intake tube 30 is, for example but not limited to plastic.
[0023] Examples of the further function of the sliding track frame 10 and the flow guiding portion 31 will be illustrated below, the sliding track frame 10 further has a pair of the guiding portions 16, the flow guiding portion 31 further has a pair of guiding surfaces 36; each of the guiding portions 16 can slide on each of the guiding surfaces 36 when the sliding track frame 10 is combined with the guiding portion 31, and thereby guiding each of the first convex portions 32 to insert into each of the tracks 12.
[0024] Examples of the combination manner of the nasal prong body 20 and the sliding track frame 10 will be illustrated below, the nasal prong body 20 is combined to the sliding track frame 10 by means of injection molding or bonding, the nasal prong body 20 has a stopping portion 24, the stopping portion 24 can be pressed against a first rib portion 14 of the sliding track frame 10, a second rib portion 15 of the sliding track frame 10 can be fixed to a groove 251 of the nasal prong body 20, the groove 251 is adjacent to the elastic portion 21, the nasal prong body 20 has a pair of lateral walls 26, each of the guiding portions 16 can be fixed between the lateral walls 26 and the elastic portion 21.
[0025] Examples of the further function of the flow guiding portion 31 will be illustrated below, the flow guiding portion 31 has a pair of upright wall surfaces 311, each of the upright wall surfaces 311 is located between each of the first convex portions 32 and each of the guiding surfaces 36, each of the second positioning portions 33 is disposed on each of the upright wall surfaces 311; When the sliding track frame 10 is combined with the guiding portion 31, each of the second positioning portions 33 can slide on an inside wall surface 161 of each guiding portion 16 until each of the second positioning portions 33 is positioned with each of the first positioning portions 11.
[0026] Examples of the combination direction of the intake tube 30 and the sliding track frame 10 will be illustrated below, the tracks 12 are symmetrically disposed on the sliding track frame 10, the first convex portions 32 are symmetrically disposed on the flow guiding portion 31, therefore the combination direction of the intake tube 30 and the sliding track frame 10 can be quickly changed (as shown in
[0027] Referring to
[0028] Referring to
[0029] Examples of the function of the sliding track frame 10 will be illustrated below, two tracks 12 of the sliding track frame 10 can limit the moving direction of the first convex portions 32 of the flow guiding portion 31, therefore the first convex portions 32 of the flow guiding portion 31 can synchronously slide along the track direction Si of the sliding track frame 10, the flow guiding portion 31 will be not easily offset. Moreover, the flow guiding portion 31 is not easily separated from the tracks 12 of the sliding track frame 10 when the breathing tube 41 is inadvertently pulled.