Condensate water guiding device for breathing machine pipeline
By designing a condensate water diversion device for ventilator pipelines, including a water diversion cup, drainage tank and limit fixing structure, the problem of inconvenient collection of condensate water and easy entry into ventilator pipelines in the prior art is solved, and efficient and safe condensate water diversion effect is achieved.
Patent Information
- Application Number
- CN202421428800.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-06-21
AI Technical Summary
It is difficult to keep the condensate water collection device in the existing ventilator pipeline to keep it low, resulting in the condensate water easily entering the ventilator pipeline, and the capacity is small and it needs to be poured frequently, which poses safety hazards.
A condensate water flow guide device including a water diversion cup, a drainage tank and a limit-fixed structure is designed. The water diversion cup is directly connected to the water diversion cup lid of the ventilator pipeline and remains vertical through the limit fixing structure. The condensate flows into the drainage tank through the water diversion cup. The condensate in the drainage tank will be automatically discharged after a certain amount of condensate is accumulated.
It effectively prevents condensate water from flowing back into the breathing pipe, improves the capacity and efficiency of condensate water collection, reduces the pouring frequency, and enhances safety.
Smart Images

Figure CN222917935U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of condensate diversion for ventilator pipelines, and particularly relates to a condensate diversion device for ventilator pipelines. Background Art
[0002] A ventilator is a medical device used to assist patients in breathing. Ventilators are commonly used for the adjuvant treatment of patients with dyspnea or inability to breathe independently, such as patients in the intensive care unit, patients after anesthesia, patients with respiratory failure, etc. The ventilator delivers oxygen into the patient's lungs by providing a positive pressure airflow to assist the patient in breathing. The ventilator can also monitor the patient's breathing parameters, such as respiratory rate, tidal volume, oxygen inhalation concentration, etc., to ensure that the patient's respiratory function is effectively supported and monitored.
[0003] In actual clinical practice, when a patient breathes through a ventilator, since the tracheal intubation connected to the ventilator directly enters the patient's airway, the humidification function of the patient's upper respiratory tract on the airflow fails. This requires the use of a humidifier to warm and humidify the gas to replace the humidification function of the human upper respiratory tract. During the process of the gas warmed and humidified by the humidifier being transported to the human body along the pipeline, water vapor will condense on the inner wall of the pipeline to form condensate. These condensates are generally collected by a water accumulation cup arranged in the middle of the pipeline and poured at any time. The current problem is that the water accumulation cup has basically no weight and is not easy to always stay in a low position. Once it is not in a low position, it cannot collect condensates well. The capacity of the water accumulation cup is small, and it needs to be poured about every 3 - 4 hours. The pouring is relatively frequent. Once it is not poured in time, the condensate in the water accumulation cup may enter the breathing pipeline. The condensate entering the breathing pipeline will not only increase the resistance of the patient's inhalation or exhalation, affect the airway pressure and tidal volume, but also may flow into the lungs, endangering life.
[0004] Therefore, how to design a condensate diversion device that is convenient to stay in a low position, the condensate is not easy to enter the ventilator pipeline, has a large capacity, and does not need to be poured frequently is a technical problem that needs to be solved in the existing clinical practice. Summary of the Utility Model
[0005] Therefore, the technical problem to be solved by the utility model is to overcome the technical defects in the prior art that the water accumulation cup for collecting condensate is not easy to stay in a low position, the condensate is easy to enter the ventilator pipeline, has a small capacity, and needs to be poured frequently, so as to provide a condensate diversion device that is convenient to stay in a low position, the condensate is not easy to enter the ventilator pipeline, has a large capacity, and does not need to be poured frequently.
[0006] To this end, the utility model provides a condensate diversion device for ventilator pipelines, including:
[0007] The water diversion cup has a top end adapted to communicate with the water accumulation cup cover of the ventilator pipeline, and a first pipeline is connected to the bottom end;
[0008] The drainage tank has an inner cavity, the top end is connected to the first pipeline, and a water outlet pipe is provided at the bottom end;
[0009] It further includes a limit and fixation structure for fixing the water diversion cup and keeping it in a vertical state.
[0010] As a preferred solution, the limit and fixation structure includes:
[0011] A base;
[0012] A bracket, vertically and fixedly connected to the base;
[0013] A fixing clip, made of elastic material, including a first section and a second section; the end of the first section is an open clip for clamping and fixing the water diversion cup, and the end of the second section is a closed clip for sleeving and fixing on the bracket;
[0014] The water diversion cup can be placed into the open clip and be fixed by the extrusion of the open clip.
[0015] As a preferred solution, a first long opening communicating with the open clip is provided on the first section, and a second long opening is provided on the second section.
[0016] As a preferred solution, on the two side walls of the first long opening, a through hole is provided on one side wall, and a threaded hole is provided at the relative position of the other side wall. It further includes an adjusting member, which passes through the through hole and is screwed into the threaded hole for adjusting the clamping force of the open clip;
[0017] And / or, on the two side walls of the second long opening, a through hole is provided on one side wall, and a threaded hole is provided at the relative position of the other side wall. It further includes an adjusting member, which passes through the through hole and is screwed into the threaded hole for adjusting the clamping force of the closed clip.
[0018] As a preferred solution, the drainage tank includes a tank body and a tank cover, the tank cover is threadedly connected to the tank body, the water outlet pipe is formed at the bottom of the tank body, and the top end is communicated with the tank body.
[0019] As a preferred solution, it further includes:
[0020] A floating ball, including a spherical body, a sealing ball and a connecting rod; the spherical body is located inside the tank body, the connecting rod enters the inside of the water outlet pipe, and the sealing ball is located at the bottom end of the connecting rod;
[0021] Blocking blocks, several of them, evenly distributed at the top end of the water outlet pipe;
[0022] Annular groove, provided on the outer wall of the connecting rod;
[0023] Blocking ring, installed inside the annular groove and protruding a certain height from the annular groove;
[0024] Spring, sleeved on the connecting rod, with one end abutting against the blocking block and the other end abutting against the blocking ring;
[0025] Outlet pipe joint, sleeved and installed at the bottom end of the outlet pipe, including a first connecting portion and a second connecting portion. The first connecting portion can be detachably connected to the bottom end of the outlet pipe, and the inner diameter of the second connecting portion is smaller than the inner diameter of the outlet pipe;
[0026] In the initial state, there is little condensed water in the tank, which cannot lift the floating ball. The spring is in a stretched state, and the sealing ball presses against and seals the top opening of the second connecting portion;
[0027] As the condensed water in the tank increases, the floating ball floats up, the spring is in a compressed state, and the sealing ball opens the top opening of the second connecting portion due to floating up.
[0028] As a preferred solution, it further includes a second pipeline, the inner wall of one end is provided with internal threads, one end of the second pipeline is threadedly connected to the bottom end of the second connecting portion, and the other end communicates with a water accumulation bucket.
[0029] As a preferred solution, the water accumulation bucket can be placed on the base, and the bracket is fixedly connected to one side of the base.
[0030] The technical solution provided by the present utility model has the following advantages:
[0031] 1. The condensed water diversion device for a ventilator pipeline of the present utility model includes a water diversion cup, a drainage tank, and a limit fixing structure; wherein the top end of the water diversion cup is adapted to communicate with the water accumulation cup cover of the ventilator pipeline, and the bottom end is communicated with a first pipeline; the drainage tank has an inner cavity, the top end is communicated with the first pipeline, and the bottom end is provided with an outlet pipe; the limit fixing structure is used to vertically fix the water diversion cup.
[0032] When a patient breathes through a ventilator, the original water accumulation cup is unscrewed from the water accumulation cup cover of the ventilator pipeline, the water diversion cup is communicated with the water accumulation cup cover, and it is vertically fixed to the limit fixing structure; the condensed water condensed during the process of the gas heated and humidified by the humidifier being delivered to the human body flows downward from the water diversion cup into the drainage tank, and when the condensed water in the drainage tank accumulates to a certain amount, it is discharged downward from the outlet pipe.
[0033] The condensate diversion device for a ventilator pipeline of the present utility model has a water guiding cup directly docked and installed with the water collecting cup cover of the ventilator pipeline. The water guiding cup is fixed by a limit fixing structure, which is convenient for maintaining a low position and can prevent condensate from flowing back into the breathing pipeline. The water guiding cup at the low position can also guide the condensate to flow downward. When the condensate in the drainage tank accumulates to a certain amount, it can automatically drain downward without frequent pouring.
[0034] 2. The condensate diversion device for a ventilator pipeline of the present utility model, the limit fixing structure includes a base, a bracket and a fixing clip; wherein the bracket is vertically fixedly connected to the base; the fixing clip is made of elastic material and includes a first section and a second section; the end of the first section is an open clip for clamping and fixing the water guiding cup, and the end of the second section is a closed clip for sleeving and fixing on the bracket; the water guiding cup can be placed into the open clip and is fixed by being squeezed by the open clip; during use, first connect the water guiding cup with the water collecting cup cover of the ventilator pipeline, then squeeze and fix the water guiding cup inside the open clip, so that it is fixedly connected with the bracket through the fixing clip, and the water guiding cup is vertically fixed and maintained at a low position through the bracket and the base.
[0035] 3. The condensate diversion device for a ventilator pipeline of the present utility model, a first long opening communicating with the open clip is provided on the first section. A through hole is provided on one side wall of the first long opening, and a threaded hole is provided at the relative position of the other side wall. The adjusting member passes through the through hole and is screwed with the threaded hole for adjusting the clamping force of the open clip; when fixing the water guiding cup inside the open clip, first loosen the two side walls of the first long opening through the adjusting member to make the open clip in a relatively relaxed state; after fixing the water guiding cup inside the open clip, then tighten the two side walls of the first long opening through the adjusting member to clamp and fix the water guiding cup through the open clip.
[0036] 4. The condensate diversion device for a ventilator pipeline of the present utility model, a second long opening communicating with the closed clip is provided on the second section. A through hole is provided on one side wall of the second long opening, and a threaded hole is provided at the relative position of the other side wall. The adjusting member passes through the through hole and is screwed with the threaded hole for adjusting the clamping force of the closed clip; when it is necessary to adjust the height of the water guiding cup, first loosen the two side walls of the second long opening through the adjusting member to make the closed clip movable up and down on the bracket; when adjusted to the appropriate height, then tighten the two side walls of the second long opening through the adjusting member to clamp and fix the closed clip with the bracket.
[0037] 5. The condensate water diversion device for a ventilator pipeline of the present utility model further includes a floating ball, a blocking block, a blocking ring, a spring, and a water outlet joint; the floating ball includes a spherical body, a sealing ball, and a connecting rod; wherein the spherical body is located inside the tank body, the connecting rod enters the inside of the water outlet pipe, and the sealing ball is located at the bottom end of the connecting rod; there are several blocking blocks, which are evenly distributed at the top end of the water outlet pipe; an annular groove is arranged on the outer wall of the connecting rod; the blocking ring is installed inside the annular groove and protrudes a certain height from the annular groove; the spring is sleeved on the connecting rod, one end abuts against the blocking block, and the other end abuts against the blocking ring; the water outlet joint is sleeved and installed at the bottom end of the water outlet pipe, including a first connecting portion and a second connecting portion, the first connecting portion can be detachably connected to the bottom end of the water outlet pipe, and the inner diameter of the second connecting portion is smaller than the inner diameter of the water outlet pipe. When condensate water flows into the tank body, at first, the inflow of condensate water is less and cannot lift the floating ball, the sealing ball presses against and seals the top opening of the second connecting portion, and at this time the spring is in a stretched state; when more condensate water flows into the tank body, the floating ball floats upward and drives the sealing ball to float upward, thereby opening the top opening of the second connecting portion, and at this time the spring is in a compressed state; when the top opening of the second connecting portion is opened, the condensate water flows downward, and when the condensate water flows out to the point where it cannot lift the floating ball, under the pushing force of the spring, the sealing ball is pushed to abut against the top opening of the second connecting portion again, sealing the top opening of the second connecting portion again. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] In order to more clearly illustrate the technical solutions in the prior art or the specific embodiments of the present utility model, the following briefly introduces the drawings used in the description of the prior art or the specific embodiments.
[0039] Figure 1 FIG. is the overall structural schematic diagram of the condensate water diversion device for a ventilator pipeline of the present utility model.
[0040] Figure 2 is Figure 1 the structural schematic diagram of the limit fixing structure in FIG.
[0041] Figure 3 is Figure 2 the enlarged structural schematic diagram of part A in FIG.
[0042] Figure 4 is Figure 1 the structural schematic diagram of the connection between the water guiding cup and the drainage tank in FIG.
[0043] Figure 5 is Figure 1 the cross-sectional view of the drainage tank in FIG.
[0044] Figure 6 FIG. is the structural schematic diagram of the connection position between the sealing ball and the second connecting portion when the floating ball does not float.
[0045] Figure 7 isFigure 1 Internal structure schematic diagram of the middle tank body.
[0046] Figure 8 Schematic diagram of the structure of the floating ball.
[0047] Figure 9 is Figure 1 Schematic diagram of the structure of the middle water outlet joint.
[0048] Figure 10 is Figure 1 Schematic diagram of the structure where the second pipeline is connected to the water accumulation bucket in the middle.
[0049] Reference numerals: 1, water guiding cup; 2, first pipeline; 3, drainage tank; 31, tank cover; 32, tank body; 4, water outlet pipe; 41, blocking block; 42, spring; 6, fixing clip; 61, first section; 62, second section; 63, opening clip; 64, first long opening; 65, second long opening; 66, adjusting part; 67, closing clip; 7, bracket; 8, base; 9, floating ball; 91, sphere; 92, sealing ball; 93, annular groove; 94, connecting rod; 10, blocking ring; 11, water outlet joint; 12, first connecting part; 13, second connecting part; 14, second pipeline; 15, water accumulation bucket. Detailed implementation manners
[0050] In order to enable those skilled in the art to better understand this solution, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts shall fall within the protection scope of the present application.
[0051] It should be noted that the terms "first", "second", etc. in the claims and the description of the present application are used to distinguish similar objects, rather than to describe a specific order or sequence. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device including a series of steps or units is not limited to the clearly listed steps or units, but may also include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0052] In this application, the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal", etc. is based on the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe this application and its embodiments, and are not used to limit that the indicated device, element or component must have a specific orientation, or be constructed and operated in a specific orientation. Moreover, in addition to being used to represent the orientation or positional relationship, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those skilled in the art, the specific meanings of these terms in this application can be understood according to specific circumstances. In addition, the meaning of the term "a plurality" should be two or more. It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other.
[0053] The following will detail this application with reference to the drawings and in combination with embodiments. Embodiment
[0054] This embodiment provides a condensate diversion device for a ventilator pipeline, as Figure 1-8 shown, including: a water guiding cup 1, a drainage tank 3 and a limit fixing structure; wherein the top end of the water guiding cup 1 is adapted to be communicated with the water collecting cup cover of the ventilator pipeline, and the bottom end is communicated with a first pipeline 2; the drainage tank 3 has an inner cavity, the top end is communicated with the first pipeline 2, and the bottom end is provided with a water outlet pipe 4; the limit fixing structure is used to fix the water guiding cup 1 and keep it in a vertical state.
[0055] When a patient breathes through a ventilator, the original water collecting cup is unscrewed from the water collecting cup cover of the ventilator pipeline, the water guiding cup 1 is communicated with the water collecting cup cover, and it is vertically fixed to the limit fixing structure; the condensate condensed during the process of the gas heated and humidified by the humidifier being delivered to the human body flows downward from the water guiding cup 1 into the drainage tank 3, and when the condensate in the drainage tank 3 accumulates to a certain amount, it is discharged downward from the water outlet pipe 4.
[0056] For the condensate diversion device for a ventilator pipeline in this embodiment, the water guiding cup 1 is directly butt-connected and installed with the water collecting cup cover of the ventilator pipeline, and the water guiding cup 1 is fixed by the limit fixing structure, which is convenient to keep it at a low position and can avoid the condensate flowing back into the breathing pipeline; the water guiding cup 1 located at a low position can also guide the condensate to flow downward, and when the condensate in the drainage tank 3 accumulates to a certain amount, it can be automatically discharged downward without frequent pouring.
[0057] Specifically, as Figure 2-3As shown in the figure, the limit fixing structure includes: a base 8, a bracket 7, and a fixing clip 6; wherein the bracket 7 is vertically and fixedly connected to the base 8; the fixing clip 6 is made of an elastic material and includes a first section 61 and a second section 62; the end of the first section 61 is an open clip 63 for clamping and fixing the water guiding cup 1, and the end of the second section 62 is a closed clip 67 for sleeving and fixing on the bracket 7; the water guiding cup 1 can be placed into the open clip 63 and is fixed by being squeezed by the open clip 63; during use, first connect the water guiding cup 1 to the water collecting cup cover of the ventilator pipeline, then squeeze and fix the water guiding cup 1 inside the open clip 63, so that it is fixedly connected to the bracket 7 through the fixing clip 6, and the water guiding cup 1 is vertically fixed and maintained at a low position through the bracket 7 and the base 8.
[0058] A first long opening 64 communicating with the open clip 63 is provided on the first section 61, and a second long opening 65 is provided on the second section 62. On the two side walls of the first long opening 64, a through hole is provided on one side wall, and a threaded hole is provided at the relative position of the other side wall. An adjusting member 66 is further included, which passes through the through hole and is screwed into the threaded hole for adjusting the clamping force of the open clip 63; when fixing the water guiding cup 1 inside the open clip 63, first loosen the two side walls of the first long opening 64 through the adjusting member 66 to make the open clip 63 in a relatively relaxed state; after fixing the water guiding cup 1 inside the open clip 63, then tighten the two side walls of the first long opening 64 through the adjusting member 66 so that it clamps and fixes the water guiding cup 1 through the open clip 6; on the two side walls of the second long opening 65, a through hole is provided on one side wall, and a threaded hole is provided at the relative position of the other side wall. An adjusting member 66 is further included, which passes through the through hole and is screwed into the threaded hole for adjusting the clamping force of the closed clip 67; when it is necessary to adjust the height of the water guiding cup 1, first loosen the two side walls of the second long opening 64 through the adjusting member 66 to make the closed clip 67 movable up and down on the bracket 7; when adjusted to the appropriate height, then tighten the two side walls of the second long opening 64 through the adjusting member 66 to make the closed clip 67 tightly clamped and fixed to the bracket 7.
[0059] The drainage tank 3 includes a tank body 32 and a tank cover 31, and the tank cover 31 is threadedly connected to the tank body 32. When it is necessary to clean the inside of the tank body 32, the tank cover 31 can be temporarily unscrewed, and after cleaning, the tank cover 31 is threadedly connected to the tank body 32 again; the water outlet pipe 4 is formed at the bottom of the tank body 32 and the top end is communicated with the tank body 32, and the condensed water can be discharged through the water outlet pipe 4, so that there is no need for manual pouring.
[0060] Specifically, as Figure 5-6As shown in the figure, the condensate diversion device for the ventilator pipeline in this embodiment further includes: a float ball 9, a blocking block 41, a blocking ring 10, a spring 42, and a water outlet pipe joint 11; wherein the float ball 9 includes a spherical body 91, a sealing ball 92, and a connecting rod 94; the spherical body 91 is located inside the tank body 32, the connecting rod 94 enters the water outlet pipe 4, and the sealing ball 92 is located at the bottom end of the connecting rod 94; there are several blocking blocks 41, which are evenly distributed at the top end of the water outlet pipe 4; an annular groove 93 is arranged on the outer wall of the connecting rod 94; the blocking ring 10 is installed inside the annular groove 93 and protrudes from the annular groove 93 by a certain height; the spring 42 is sleeved on the connecting rod 94, and one end abuts against the blocking block 41, and the other end abuts against the blocking ring 10; the water outlet pipe joint 11 is sleeved and installed at the bottom end of the water outlet pipe 4, and includes a first connecting portion 12 and a second connecting portion 13. The first connecting portion 12 can be detachably connected to the bottom end of the water outlet pipe 4, and the inner diameter of the second connecting portion 13 is smaller than the inner diameter of the water outlet pipe 4; in the initial state, the condensate water in the tank body 32 is less and cannot lift the float ball 9, the spring 42 is in a stretched state, and the sealing ball 92 presses and seals the top opening of the second connecting portion 13; as the condensate water in the tank body 32 increases, the float ball 9 floats up, the spring 42 is in a compressed state, and the sealing ball 92 opens the top opening of the second connecting portion 13 due to floating up. The setting of the float ball 9 makes the drainage tank 3 and the second pipeline 14 relatively isolated, and can avoid the upward pollution of bacteria growing in the second pipeline 14 and the water accumulation bucket 15.
[0061] When the condensate water flows into the inside of the tank body 32, at first, the inflow amount of the condensate water is small and cannot lift the float ball 9, and the sealing ball 92 presses and seals the top opening of the second connecting portion 13. At this time, the spring 42 is in a stretched state; when the condensate water flowing into the inside of the tank body 32 is more and more, the float ball 9 floats up and drives the sealing ball 92 to float up, thereby opening the top opening of the second connecting portion 13. At this time, the spring 42 is in a compressed state; when the top opening of the second connecting portion 13 is opened, the condensate water flows out downward. When the condensate water flows out to the point where it cannot lift the float ball 9, under the thrust of the spring 42, the sealing ball 92 is pushed to abut against the top opening of the second connecting portion 13 again, and the top opening of the second connecting portion 13 is sealed again.
[0062] Preferably, as Figure 9-10 shown, it further includes a second pipeline 14, the inner wall of one end is provided with internal threads, one end of the second pipeline 14 is threadedly connected to the bottom end of the second connecting portion 13, and the other end communicates with the water accumulation bucket 15. The water accumulation bucket 15 is used to collect the discharged condensate water to avoid the condensate water flowing to the ground and causing the ground to be slippery, and it is easy for patients or medical staff to slip and get injured when stepping on it.
[0063] The water accumulation bucket 15 can be placed on the base 8, which does not occupy space. The bracket 7 is fixedly connected to one side of the base 8.
[0064] For the condensate diversion device for the ventilator pipeline in this embodiment, the usage method is as follows: When the patient breathes through the ventilator, place the condensate diversion device of this embodiment near the patient, and adjust the installation position of the fixing clip 6 on the bracket 7 according to the patient's body position, so that the height of the fixing clip 6 is basically the same as the height of the existing water accumulation cup; then unscrew the original water accumulation cup from the water accumulation cup cover, connect the water diversion cup 1 of the present invention to the water accumulation cup cover. At this time, the condensate inside the ventilator pipeline will enter the water diversion cup 1; the condensate entering the water diversion cup 1 enters the drainage tank 3 through the first pipeline 2, and the condensate is temporarily stored in the drainage tank 3. When a certain amount accumulates, lift the floating ball 9 to open the top opening of the second pipeline 14, and the condensate is discharged from the top opening into the water accumulation bucket 15 arranged below.
[0065] Obviously, the above embodiments are merely examples given for clear illustration and are not limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or variations can be made based on the above description. It is not necessary and impossible to list all the implementation manners here. And the obvious changes or variations derived therefrom are still within the protection scope of this innovative technical solution.
Claims
1. A condensate diversion device for a ventilator pipeline, characterized in that: include: A water inlet cup (1), the top end of which is suitable for being connected to a water collection cup cover of a ventilator pipeline, and the bottom end of which is connected to a first pipeline (2); A drainage tank (3) having an inner cavity, a top end of which is in communication with the first pipeline (2), and a bottom end of which is provided with a water outlet pipe (4); It also comprises a limiting fixing structure, which is used to fix the water diversion cup (1) and keep it in a vertical state.
2. The condensate guide device for a ventilator pipeline according to claim 1, characterized in that: The limiting fixing structure comprises: Base (8); A bracket (7) vertically fixedly connected to the base (8); The fixing clamp (6) is made of elastic material and comprises a first section (61) and a second section (62); the end of the first section (61) is an open clamp (63) for clamping and fixing the water-introducing cup (1), and the end of the second section (62) is a closed clamp (67) for being sleeved and fixed on the bracket (7); The water inlet cup (1) can be placed in the opening clamp (63) and pressed and fixed by the opening clamp (63).
3. The condensate guide device for a ventilator pipeline according to claim 2, characterized in that: The first section (61) is provided with a first long opening (64) connected to the opening clamp (63), and the second section (62) is provided with a second long opening (65).
4. The condensate guide device for a ventilator pipeline according to claim 3, characterized in that: On the two side walls of the first long strip opening (64), one side wall is provided with a through hole, and the other side wall is provided with a threaded hole at an opposite position, and also includes an adjustment member (66) which passes through the through hole and is screwed to the threaded hole for adjusting the clamping force of the opening clamp (63); And / or, on the two side walls of the second long strip opening (65), one side wall is provided with a through hole, and the other side wall is provided with a threaded hole at an opposite position, and also includes an adjustment member (66) that passes through the through hole and is screwed to the threaded hole for adjusting the clamping force of the closing clamp (67).
5. The condensate guide device for a ventilator pipeline according to claim 1, characterized in that: The drainage tank (3) comprises a tank body (32) and a tank cover (31), wherein the tank cover (31) is threadedly connected to the tank body (32), and the water outlet pipe (4) is formed at the bottom of the tank body (32), and the top end is connected to the tank body (32).
6. The condensate guide device for a ventilator pipeline according to claim 5, further comprising: The floating ball (9) comprises a ball (91), a sealing ball (92) and a connecting rod (94); the ball (91) is located inside the tank (32), the connecting rod (94) enters the water outlet pipe (4), and the sealing ball (92) is located at the bottom end of the connecting rod (94); A plurality of blocking blocks (41) are evenly distributed on the top of the water outlet pipe (4); an annular groove (93) provided on the outer wall of the connecting rod (94); A blocking ring (10) is installed inside the annular groove (93) and protrudes from the annular groove (93) by a certain height; A spring (42) is sleeved on the connecting rod (94), with one end abutting against the blocking block (41) and the other end abutting against the blocking ring (10); A water outlet pipe joint (11) is sleeved and mounted on the bottom end of the water outlet pipe (4), comprising a first connection portion (12) and a second connection portion (13), wherein the first connection portion (12) can be detachably connected to the bottom end of the water outlet pipe (4), and the inner diameter of the second connection portion (13) is smaller than the inner diameter of the water outlet pipe (4); In the initial state, the condensed water in the tank body (32) is small and cannot lift the float ball (9), the spring (42) is in an extended state, and the sealing ball (92) presses and seals the top opening of the second connecting portion (13); As the amount of condensed water in the tank body (32) increases, the float ball (9) floats up, the spring (42) is in a compressed state, and the sealing ball (92) floats up to open the top opening of the second connecting portion (13).
7. The condensate guide device for a ventilator pipeline according to claim 6, characterized in that: It also includes a second pipeline (14), the inner wall of one end of which is provided with an internal thread, one end of the second pipeline (14) is threadedly connected to the bottom end of the second connecting portion (13), and the other end is connected to the water storage bucket (15).