Tube connectors and tubes with connectors

The tube connector design with a translucent structure and tube restricting feature addresses the issue of inaccurate tip alignment, ensuring precise and secure attachment of medical tubes.

JP7839849B1Active Publication Date: 2026-04-02HIRAKAWA HEWTECH

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2026-04-02

AI Technical Summary

Technical Problem

Conventional tube connectors fail to accurately align the tip position of medical tubes during attachment, leading to issues such as insufficient insertion or the tip interfering with other components.

Method used

A tube connector design featuring a first member, a second member, and a deformable O-ring, where the second member has a threaded portion and a translucent structure allowing visual confirmation of the medical tube's position, along with a tube restricting portion to prevent over-insertion.

Benefits of technology

Enables precise alignment and secure fixation of the medical tube tip, preventing interference with other components and ensuring accurate attachment.

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Abstract

The present invention provides a tube connector and a tube with a connector that allow for precise alignment of the tip position of a medical tube when attaching it. [Solution] A tube connector 12 for connecting a medical tube 11 to a medical device, comprising a female member 21 into which the medical tube 11 is inserted, a male member 22 that screws into the female member 21, and a packing 23 that is housed in the female member 21 and deforms as the male member 22 screws into the female member 21, thereby fixing the medical tube 11, wherein at least the male member 22 of the female member 21 and male member 22 is translucent.
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Description

Technical Field

[0001] The present invention relates to a tube connector and a tube with a connector.

Background Art

[0002] Conventionally, as a tube connector, there is one composed of a first member (compression member) and a second member (body), and by screwing the first member and the second member to compress and deform a packing by these two members, a medical tube (catheter) is fixed (see Patent Document 1). This tube connector includes a first member and a second member each having an internal thread and an external thread that are screwed together with each other, and a packing attached to the first member. After inserting a medical tube into the through hole of the packing, the first member and the second member are screwed together to compress the packing with these two members, and the medical tube is fixed by the packing deformed by the compression. Thus, since it is configured to fix the medical tube by the deformation of the packing accompanying the screwing of the first member and the second member, the medical tube can be easily and liquid-tightly attached.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] However, in the conventional tube connector, when attaching a medical tube, since it is impossible to grasp how far the tip of the medical tube has been inserted, there is a problem that the tip position of the medical tube cannot be accurately aligned. As a result, problems such as insufficient insertion of the medical tube and the medical tube coming off from the tube connector, or the tip of the medical tube being inserted too far and interfering with other members occur.

[0005] Therefore, the present invention aims to provide a tube connector and a tube with a connector that can accurately align the tip position of a medical tube when attaching it. [Means for solving the problem]

[0006] To achieve the above objective, the present invention provides a tube connector for connecting a medical tube to a medical device, comprising: a first member into which the medical tube is inserted; a second member that screws onto the first member; and a component housed in the first member that deforms as the second member screws onto the first member, thereby fixing the medical tube. O-ring And, equipped with, The second member has a axial portion on which a threaded portion is formed on the second member side, Part 1 The material has a first member side threaded portion that screws into the second member side threaded portion and a receiving portion that receives the shaft-like portion, and a seating portion formed at a different axial position from the first member side threaded portion, on which the O-ring is seated, and the state in which the medical tube is inserted into the O-ring can be visually observed through the seating portion. The present invention provides a tube connector characterized by its light-transmitting properties.

[0007] Furthermore, in order to achieve the above objective, the present invention provides a tube connector for connecting a medical tube to a medical device, comprising: a first member into which the medical tube is inserted; a second member that screws onto the first member; and a third member that is housed in the first member and deforms as the second member screws onto the first member, thereby fixing the medical tube. O-ring And, equipped with, The second member has a axial portion on which a threaded portion is formed on the second member side, Part 1 The material has a first member side threaded portion that screws into the second member side threaded portion and a receiving portion that receives the shaft-shaped portion, and a seating portion formed at a different axial position from the first member side threaded portion, on which the O-ring is seated, and is translucent so that the state in which the medical tube is inserted into the O-ring can be seen through the seating portion. The present invention provides a tube connector characterized in that the second member has a light-transmitting portion formed therein that allows the tip position of the medical tube inside to be visually confirmed.

[0008] Furthermore, in order to achieve the above objective, the present invention comprises a medical tube and a tube connector for connecting the medical tube to a medical device, wherein the tube connector includes a first member into which the medical tube is inserted, a second member that screws onto the first member, and a part that is housed in the first member and deforms as the second member screws onto the first member, thereby fixing the medical tube. O-ring And, equipped with, The second member has a axial portion on which a threaded portion is formed on the second member side,Part 1 The material has a first member side threaded portion that screws into the second member side threaded portion and a receiving portion that receives the shaft-like portion, and a seating portion formed at a different axial position from the first member side threaded portion, on which the O-ring is seated, and the state in which the medical tube is inserted into the O-ring can be visually observed through the seating portion. The present invention provides a connector-equipped tube characterized by its light-transmitting properties.

[0009] Furthermore, in order to achieve the above objective, the present invention comprises a medical tube and a tube connector for connecting the medical tube to a medical device, wherein the tube connector includes a first member into which the medical tube is inserted, a second member that screws onto the first member, and a part that is housed in the first member and deforms as the second member screws onto the first member, thereby fixing the medical tube. O-ring And, equipped with, The second member has a axial portion on which a threaded portion is formed on the second member side, Part 1 The material has a first member side threaded portion that screws into the second member side threaded portion and a receiving portion that receives the shaft-shaped portion, and a seating portion formed at a different axial position from the first member side threaded portion, on which the O-ring is seated, and is translucent so that the state in which the medical tube is inserted into the O-ring can be seen through the seating portion. The present invention provides a connector-equipped tube characterized in that the second member has a translucent portion formed therein that allows the tip position of the medical tube inside to be visually observed. [Effects of the Invention]

[0010] The tube connector and tube with connector according to the present invention allow for precise alignment of the tip position of a medical tube when attaching it. [Brief explanation of the drawing]

[0011] [Figure 1] This image shows a front view (a) of a tube with a connector according to one embodiment of the present invention, with a medical tube attached to the tube connector and a front view (b) of a medical tube detached from the tube connector. [Figure 2] (a) is a cross-sectional view of the tube connector along line A-A', (b) is a cross-sectional view of the tube connector along line B-B', and (c) is an enlarged view of the main part of Figure 2(b) showing the area around the engaging projection and the retaining part. [Figure 3] These are front view (a), right side view (b), and left side view (c) of the male component. [Figure 4] These are a side view diagram (a) and a cross-sectional view along line C-C' (b) illustrating the behavior of the O-ring when pressed by the pressing part. [Figure 5]Front view (a), right side view (b), and left side view (c) showing the female member. [Figure 6] Explanatory drawing showing the tube attachment operation. [Figure 7] (a) is a front view showing the tube connector of the first modification, and (b) is a front view showing the tube connector of the second modification.

Mode for Carrying Out the Invention

[0012] Hereinafter, a tube connector according to an embodiment of the present invention and a tube with a connector including the same will be described with reference to the accompanying drawings. This tube with a connector is one in which a tube connector is attached to a medical tube used inside and outside the human body. In particular, this tube with a connector adopts a configuration in which the position of the internal medical tube can be visually recognized with respect to the tube connector. Hereinafter, as shown in each figure, left and right, front and back, and up and down will be defined and described. In the present embodiment, the left-right direction coincides with the axial direction of the tube connector, and the direction orthogonal to the axial direction of the tube connector is the shear direction of the tube connector.

[0013] (Configuration of the Tube with a Connector) As shown in FIG. 1, the tube with a connector 1 includes a medical tube 11 and a tube connector 12 that connects the medical tube 11 to a medical device D. By inserting and fixing the end of the medical tube 11 into the tube connector 12 and connecting the tube connector 12 to the medical device D, the medical tube 11 is connected to the medical device D. In the present embodiment, as the tube with a connector 1 and the tube connector 12, a drainage tube with a connector 1 and a drainage tube connector 12 used in endoscopic biliary / pancreatic duct drainage are exemplified. Therefore, as the medical device D to which the medical tube 11 is connected, a syringe, a drainage bag (sterile bag), or the like is assumed.

[0014] The medical tube 11 is a colored tube with a colored exterior. In this embodiment, for example, a catheter introduced into a patient's body is assumed. That is, in this embodiment, one side of the medical tube 11 is introduced into the patient's body, and the end of the other side of the medical tube 11 is fixed to the tube connector 12 outside the patient's body.

[0015] (Configuration of the tube connector) As shown in FIGS. 1 and 2, the tube connector 12 is formed in an overall gourd shape and includes a female member 21 on the right side into which the medical tube 11 is inserted, a male member 22 on the left side that is screwed into the female member 21, and an O-ring 23 that is accommodated in the female member 21 and deformed as the male member 22 is screwed into the female member 21, and fixes (holds) the medical tube 11 by this deformation. The female member 21 is an example of the first member, and the male member 22 is an example of the second member. Also, the O-ring 23 is an example of a packing that is deformed as the female member 21 and the male member 22 are screwed together and fixes the medical tube 11 by this deformation. Further, the O-ring 23 is a ring-shaped packing made of synthetic rubber and having a circular cross-section.

[0016] As shown in FIG. 3, the male member 22 has a male member body 31, a shaft portion 32 protruding to the right from the male member body 31, a device connection portion 33 protruding to the left from the male member body 31 and connecting to the medical device D, and a through hole 34 penetrating the male member body 31, the shaft portion 32, and the device connection portion 33. The male member body 31, the shaft portion 32, the device connection portion 33, and the through hole 34 are formed coaxially. Also, the device connection portion 33 has screw threads for connection or the like, and may be configured to directly connect the medical device D or to connect the medical device D via a separately prepared medical tube or connector.

[0017] The outer circumferential surface 36 of the male member body 31 has a screw-fitting grip portion 37 for screwing the male member 22 into the female member 21. The screw-fitting grip portion 37 is composed of a grip structure consisting of six recesses 37a (finger rests) arranged in the circumferential direction, and is positioned spaced to the left from the right end of the outer circumferential surface 36. The distance L1 of the screw-fitting grip portion 37 from the right end should be such that when the screw-fitting grip portion 37 is gripped from the left side, the tip of the gripping finger does not extend beyond the right end of the outer circumferential surface 36, and is preferably, for example, 0.95 mm or more. In addition, each recess 37a is formed in a teardrop shape, for example, with the right side being the tip.

[0018] Furthermore, the outer surface 36 of the male member body 31 is tapered towards the right end, and the outer shape of the right end is perfectly circular.

[0019] As shown in Figures 2 and 3, the shaft portion 32 has a cylindrical shaft portion body 41, a pressing portion 42 formed at the right end of the shaft portion body 41 which presses the O-ring 23 when the female member 21 and the male member 22 are screwed together, a male threaded portion 43 formed on the outer circumferential surface of the shaft portion body 41 adjacent to the left side of the pressing portion 42, and an engaging projection 44 formed on the outer circumferential surface of the shaft portion body 41 adjacent to the left side of the male threaded portion 43. The male threaded portion 43 is screwed into the female threaded portion 71 (described later) of the female member 21.

[0020] As shown in Figure 2(c), the engaging projection 44 is formed to protrude radially around the entire circumference of the shaft-shaped body 41 and has a trapezoidal cross-section. As will be described in detail later, the engaging projection 44 and the retaining portion 72 of the female member 21 (described later) constitute a separation suppression structure.

[0021] As shown in Figures 3 and 4, the pressing section 42 has six pressers 51 arranged at predetermined intervals in the circumferential direction, and these six pressers 51 press the O-ring 23 through which the medical tube 11 is inserted. Specifically, the six pressers 51 press the O-ring 23 at six points spaced apart in the circumferential direction. As a result, as shown in Figure 4(b), these six points on the O-ring 23 can be significantly deformed, and the hole in the O-ring 23 becomes approximately hexagonal. As a result, the O-ring 23 presses the medical tube 11 inserted through the hole in the O-ring 23 only at the six points corresponding to the pressers 51, so that the material of the tube body (e.g., the outer layer tube) of the medical tube 11 escapes to the unpressed parts (parts corresponding to the intervals), and the tube body becomes approximately hexagonal. This prevents the medical tube 11 from becoming blocked and allows the medical tube 11 to be firmly fixed. Furthermore, it is preferable that the spacing between each of the six pressers 51 is equal to (approximately the same as) the circumferential width of each presser 51 in the circumferential direction. For example, it is preferable that the spacing between each of the six pressers 51 is 0.8 times or more and 1.2 times or less the circumferential width of each presser 51 in the circumferential direction.

[0022] Furthermore, as shown in Figure 4(a), each presser 51 of the pressing section 42 has a pressing surface 51a formed parallel to the shear direction of the tube connector 12. That is, the pressing surface 51a of the pressing section 42 is a surface that is substantially perpendicular to the axial direction of the tube connector 12.

[0023] As shown in Figures 2 and 3, the through-hole 34 functions as an insertion hole for inserting the medical tube 11, and also as a communication channel that connects the internal flow path of the medical tube 11 to the medical device D. In other words, when the medical tube 11 is inserted into and fixed in the tube connector 12, the internal flow path of the medical tube 11 is connected to the medical device D in a liquid-tight manner through the through-hole 34 of the tube connector 12, thereby connecting the medical tube 11 and the medical device D.

[0024] Furthermore, a tube restricting portion 56 is formed at the axial midpoint of the through-hole 34 as a constricted portion of the through-hole 34, against which the tip of the medical tube 11 inserted into the female member 21 abuts. The tube restricting portion 56 is an annular rib protruding from the inner circumferential surface of the through-hole 34, and the right annular surface of the tube restricting portion 56 is the abutment surface against which the medical tube 11 abuts. The inner diameter of the tube restricting portion 56 is smaller than the outer diameter of the medical tube 11 and larger than the inner diameter of the medical tube 11. As a result, the tube restricting portion 56 functions as a stopper that restricts the insertion of the tip of the medical tube 11 beyond a predetermined insertion position, and also functions as a positioning portion that positions the tip of the medical tube 11 when it is inserted into the tube connector 12 by abutting against the tube restricting portion 56. In this way, the provision of the tube restricting portion 56 makes it easy to align the tip position of the medical tube 11 inserted into the tube connector 12.

[0025] Furthermore, the male member 22 (male member body 31, shaft-shaped portion 32, and equipment connection portion 33) is made of a translucent resin material and has a light-transmitting configuration. As a result, the male member 22 is configured so that the tip of the medical tube 11 inside it can be seen. This makes it easier and more accurate to align the tip position of the medical tube 11 inserted into the tube connector 12.

[0026] (Configuration of the female component) As shown in Figure 5, the female member 21 is formed in a tapered cylindrical shape, and a screw-fitting grip portion 62 for screwing the male member 22 into the female member 21 is formed on the outer circumferential surface 61 of the female member 21. The screw-fitting grip portion 62 is composed of a grip structure consisting of six recesses 62a (finger rests) arranged in the circumferential direction, and is positioned on the outer circumferential surface 61 spaced apart from the left end in the rightward direction. The distance L2 of the screw-fitting grip portion 62 from the left end should be such that when the screw-fitting grip portion 62 is gripped by pinching it from the right side, the tip of the gripping finger does not extend beyond the left end of the outer circumferential surface 61, and is preferably, for example, 0.95 mm or more. In addition, each recess 62a is formed in a teardrop shape, for example, with the left side as the tip. When screwing the male member 22 into the female member 21, the screwing grip portion 62 of the female member 21 is held with one hand by placing a finger in the recess 62a and pinching it, and the screwing grip portion 37 of the male member 22 is held with the other hand by placing a finger in the recess 37a and pinching it, and the male member 22 is rotated against the female member 21 to screw the male member 22 into the female member 21.

[0027] Furthermore, the outer surface 61 of the female member 21 is tapered at its left end, and the outer shape of the left end is a perfect circle with the same diameter as the outer shape of the right end of the male member body 31. The shape of the left end of the outer surface 61 of the female member 21 and the shape of the right end of the outer surface 36 of the male member 22 create a recess in the center of the entire tube connector 12 in the left-right direction, and this recess serves as a connector gripping portion for gripping the tube connector 12 as a whole.

[0028] On the other hand, as shown in Figures 2 and 5, the female member 21 has, from the right, an insertion hole 66 into which the medical tube 11 is inserted, a tapered hole-shaped seating portion 67 connected to the left of the insertion hole 66 for seating the O-ring 23, and a receiving hole 68 connected to the left of the seating portion 67 for receiving the axial portion 32 of the male member 22, all formed coaxially.

[0029] The inner circumferential surface of the receiving hole 68 is formed with a female threaded portion 71 that screws into the male threaded portion 43 of the male member 22, and a retaining portion 72 that is spaced apart to the left of the female threaded portion 71 and locks the engaging projection 44 of the male member 22. The male member 22 is screwed into the female threaded portion 71 of the female member 21 by screwing the male threaded portion 43 of the male member 22 into the female threaded portion 71 of the female member 21.

[0030] As shown in Figure 2(c), the retaining portion 72 is formed to protrude radially around the entire circumference of the receiving hole 68 and has a trapezoidal cross-section. The right side 72a of the retaining portion 72 is a locking surface that engages with the left side 44a of the engaging projection 44 of the male member 22 in the direction of separation of the male member 22 from the female member 21 (left direction). The right side 72a contacts the left side 44a of the engaging projection 44 and locks the engaging projection 44 in that separation direction, thereby restricting the separation of the male member 22 from the female member 21. In this way, by providing a portion that connects the female member 21 and the male member 22 separately from the screw portions 43 and 71, even if the screwing of the screw portions 43 and 71 is loosened and the screwing of the screw portions 43 and 71 is disengaged, it is possible to suppress the separation of the female member 21 from the male member 22, thereby preventing the female member 21 from separating from the male member 22 unintentionally. Furthermore, even if the threaded portions 43 and 71 become disengaged, it is preferable that the distance between the female threaded portion 71 and the retaining portion 72 be greater than or equal to the length of the male threaded portion 43, in order to prevent the female member 21 from separating from the male member 22.

[0031] Furthermore, the right side 72a of the retaining portion 72 is an inclined surface that slopes radially inward toward the left (separation direction). Therefore, by strongly pulling the male member 22 in the separation direction relative to the female member 21, the male member 22 can be intentionally separated from the female member 21.

[0032] As shown in Figure 2, the seating portion 67 has a seating surface 67a that is formed in an inclined shape (tapered hole shape) that slopes radially outward toward the left, and the O-ring 23 is seated on this seating surface 67a. That is, the seating surface 67a of the seating portion 67 is formed in an inclined shape that is tilted toward the medical tube 11 from a plane parallel to the pressing surface 51a of the pressing portion 42. As shown in Figure 4(a), the pressing surface 51a of the pressing portion 42 is formed parallel to the shear direction, and the seating surface 67a of the O-ring 23 is an inclined surface that is tilted toward the medical tube 11. When the O-ring 23 seated on the seating surface 67a is pressed by the pressing portion 42, stress is generated on the O-ring 23 toward the medical tube 11, and the O-ring 23 deforms significantly toward the medical tube 11. This allows the medical tube 11 to be firmly fixed.

[0033] Furthermore, the female component 21 is made of a translucent resin material and has a light-transmitting structure. This allows the medical tube 11 and O-ring 23 inside the female component 21 to be visible.

[0034] Next, with reference to Figure 6, the tube attachment operation for attaching the medical tube 11 to the tube connector 12 will be described. As shown in Figure 6(a), this tube attachment operation is performed with the female member 21 and the male member 22 connected by the retaining portion 72. That is, the axial portion 32 of the male member 22 is received by the receiving hole 68 of the female member 21, and the engaging projection 44 is located to the right of the retaining portion 72.

[0035] In the tube installation operation, first, as shown in Figure 6(b), the tip of the medical tube 11 is inserted into the female member 21 and male member 22 through the insertion hole 66 of the female member 21, and the medical tube 11 is inserted through the hole of the O-ring 23. At this time, the tip of the medical tube 11 is aligned by bringing it into contact with the tube regulating part 56. Furthermore, since the female member 21 and male member 22 are translucent, the position of the tip of the medical tube 11 can be visually confirmed while aligning it.

[0036] Once the medical tube 11 is inserted, the O-ring 23 secures the medical tube 11 by screwing the male member 22 onto the female member 21, as shown in Figure 6(c). That is, when the male member 22 is screwed onto the female member 21 by the male threaded portion 43 and the female threaded portion 71, the pressing portion 42 presses the O-ring 23, and this pressure deforms the O-ring 23 inward, securing the medical tube 11 through which the O-ring 23 is inserted. At this time, the pressing surface 51a of the pressing portion 42 (six pressing elements 51) is parallel to the shear direction, while the seating surface 67a of the seating portion 67 is formed inclined, which promotes the radial inward deformation of the O-ring 23, as shown in Figure 4(a), and firmly secures the medical tube 11. Furthermore, by pressing the O-ring 23 with six pressers 51 arranged at intervals in the circumferential direction, the O-ring 23 deforms significantly radially inward only at the positions of the pressers 51, as shown in Figure 4(b). As a result, the O-ring 23 presses against the outer surface of the medical tube 11 only at the positions corresponding to the pressers 51, allowing the material of the medical tube 11 to escape to the unpressed areas (areas corresponding to the intervals), thus preventing the medical tube 11 from becoming blocked. This completes the tube installation operation.

[0037] (Effects and Effects of the Embodiment) As described above, with the configuration of the embodiment, the male member 22 has a translucent structure, allowing the medical tube 11 inside the male member 22 to be visible. This makes it possible to align the tip position of the medical tube 11 while visually observing its position when attaching the medical tube. This allows for accurate alignment of the tip position of the medical tube when attaching it.

[0038] Furthermore, since the female component 21 has a translucent structure, the medical tube 11 and O-ring 23 inside the female component 21 can be seen. This allows the position and condition of the medical tube 11 and O-ring 23 inside the female component 21 to be confirmed.

[0039] Furthermore, since the female member 21 and the male member 22 are translucent, it is easy to confirm whether or not the medical tube 11 is inserted through the O-ring 23.

[0040] Furthermore, by providing the tube restricting section 56, it is possible to prevent the medical tube 11 from being inserted too far and causing the tip of the medical tube 11 to interfere with the medical device D.

[0041] Furthermore, by making the inner diameter of the tube restricting section 56 smaller than the outer diameter of the medical tube 11 and larger than the inner diameter of the medical tube 11 (the tube body), it is possible to maintain the restricting function of the tube restricting section 56 while avoiding narrowing of the flow path at the tube restricting section 56.

[0042] (Regarding other embodiments) Although embodiments of the present invention have been described above, these embodiments do not limit the invention as defined in the claims. Furthermore, it should be noted that not all combinations of features described in the embodiments are necessarily essential for solving the problem of the invention. The present invention can be implemented with appropriate modifications without departing from its spirit.

[0043] For example, in the above embodiment, the female member 21 and the male member 22 were configured to be semi-transparent, but the configuration is not limited to this, as long as the female member 21 and the male member 22 are translucent. That is, as shown in Figure 7(a), the female member 21 and the male member 22 may be configured to be transparent.

[0044] Furthermore, in the above embodiment, both the female member 21 and the male member 22 were configured to be translucent, but it is also possible for only one of the female member 21 or the male member 22 to be translucent.

[0045] Furthermore, in the above embodiment, the entire male member 22 was configured to be translucent, but a part of the male member 22 may also be configured to be translucent. That is, as shown in Figure 7(b), the male member 22 may be configured to have a translucent portion 81 which is a transparent or semi-transparent portion that allows the tip position of the medical tube 11 inside to be seen. In such a case, as shown in the figure, it is preferable that the translucent portion 81 is arranged around the tube restricting portion 56 in the left-right direction.

[0046] Furthermore, in the above embodiment, the side to which the medical tube 11 is connected is a female member 21 and the side to which the medical device D is connected is a male member 22. However, it is also possible to configure the side to which the medical device D is connected to be a female member 21 and the side to which the medical tube 11 is connected to be a male member 22.

[0047] Furthermore, while the above embodiments illustrate drainage tubes 1 and tube connectors 12 used in endoscopic biliary / pancreatic duct drainage procedures, the present invention is not limited to these. In other words, the present invention may also be applied to tubes 1 and tube connectors 12 used for purposes other than drainage.

[0048] Furthermore, in the above embodiment, a catheter introduced into the patient's body was exemplified as the medical tube 11, but the present invention may also be applied to a medical tube 11 used outside the body. That is, the present invention may be applied to a tube 1 with a connector for a medical tube 11 used outside the body, or to a tube connector 12 for a medical tube 11 used outside the body. [Explanation of Symbols]

[0049] 1: Tube with connector, 11: Medical tube, 12: Tube connector, 21: Female component, 22: Male component, 23: O-ring, 56: Tube regulating section, D: Medical device

Claims

1. A tube connector for connecting medical tubing to medical equipment, The first member into which the aforementioned medical tube is inserted, A second member that screws onto the first member, The device comprises an O-ring housed in the first member, which deforms as the second member is screwed into the first member, and which secures the medical tube by the deformation, The second member has a axial portion on which a threaded portion is formed on the second member side, The tube connector is characterized in that the first member has a first member side threaded portion that screws into the second member side threaded portion and a receiving portion that receives the shaft-shaped portion, and a seating portion formed at a different axial position from the first member side threaded portion and on which the O-ring is seated, and the seating portion is translucent so that the state in which the medical tube is inserted into the O-ring can be seen through the seating portion.

2. The tube connector according to claim 1, characterized in that the second member has a tube restricting portion formed therein, which the tip of the medical tube inserted into the first member abuts against.

3. The tube connector according to claim 1 or 2, characterized in that the first member and the second member are light-transmitting.

4. A tube connector for connecting medical tubing to medical equipment, The first member into which the aforementioned medical tube is inserted, A second member that screws onto the first member, The device comprises an O-ring housed in the first member, which deforms as the second member is screwed into the first member, and which secures the medical tube by the deformation, The second member has a axial portion on which a threaded portion is formed on the second member side, The tube connector is characterized in that the first member has a first member side threaded portion that screws into the second member side threaded portion and a receiving portion that receives the shaft-shaped portion, and a seating portion formed at a position different in the axial direction from the first member side threaded portion and on which the O-ring is seated, and is translucent so that the state in which the medical tube is inserted into the O-ring can be seen through the seating portion, and the second member has a translucent portion formed therein so that the tip position of the medical tube inside can be seen.

5. A tube with a connector, comprising a medical tube and a tube connector according to any one of claims 1 to 3.

6. A tube with a connector, characterized by comprising a medical tube and the tube connector described in claim 4.

Citation Information

Patent Citations

  • Catheter connector

    JP1999042287A

  • Connector for catheter

    WO2009122906A1

  • Joint for coupling injector to catheter

    JP1979021087A

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