Clinical breathing machine threaded pipe support for intensive care medicine department
By designing a ventilator threaded tube support, the problems of tangled and tangled ventilator threaded tubes were solved, achieving stable fixation of the threaded tubes and smooth airflow, reducing the burden on patients and the risk of infection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-26
- Publication Date
- 2026-03-10
AI Technical Summary
Ventilator tubing is prone to tangling and getting messy during connection and use, which can narrow the inner diameter of the tubing, increase airflow resistance, require more effort from the patient, and may lead to bacterial growth and the risk of ventilator-associated pneumonia.
A threaded tube support for a ventilator used in the intensive care unit was designed, including a clamping component, a stabilizing component, and a conversion component. The clamping component is used to fix the threaded tube to the ventilator, the limiting component and the stabilizing component are used to prevent the threaded tube from getting tangled, the support is adapted to the fixing of the threaded tube in different positions, and the friction plate is used to increase stability.
It effectively prevents the threaded tube from tangling, maintains smooth airflow, reduces the patient's respiratory effort, lowers the risk of bacterial growth, and improves the safety of use.
Smart Images

Figure CN121623104A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of medical devices, and particularly relates to a clinical breathing machine threaded pipe support for intensive care units. BACKGROUND
[0002] A breathing machine is a medical device for assisting or replacing the respiratory function of the human body through mechanical devices, and is divided into medical and household types, and has modes such as control ventilation and auxiliary ventilation. Its functions include maintaining life in emergency and critical support, correcting hypoxemia and hypercapnia, and gaining time for primary disease treatment; improving ventilation function and protecting lung tissue in the treatment of respiratory diseases; and improving the quality of life of patients with sleep apnea in home rehabilitation.
[0003] At the same time, multiple threaded pipes need to be connected on the breathing machine for oxygen delivery and carbon dioxide discharge, and need to be connected at different positions. After connection, the threaded pipes will be crossed and tangled, causing the pipe diameter to be narrowed or folded, the resistance of airflow to be increased, the patient to need to consume more energy for inhalation, the respiratory muscle fatigue to be aggravated, and even the human-machine confrontation to be triggered. If condensate or secretions accumulate at the tangled place, it may become a breeding ground for bacteria, increasing the probability of ventilator-associated pneumonia (VAP) infection. Therefore, when using, a coherent device is needed to prevent tangling and to comb it.
[0004] Therefore, a clinical breathing machine threaded pipe support for intensive care units is needed to solve the above technical problems. SUMMARY
[0005] In order to solve the above technical problems, the application designs a clinical breathing machine threaded pipe support for intensive care units, which can be fixed on a breathing machine for use, and can fix the threaded pipes of the breathing machine while in use. At the same time, the threaded pipes at different positions can be fixed and adaptively adjusted during fixation, especially for the threaded pipes connected to the patient, which can be fixed while preventing the threaded pipes from being pulled.
[0006] In order to achieve the above technical effects, the application designs a clinical breathing machine threaded pipe support for intensive care units, which comprises a clamping assembly, a stabilizing assembly and a conversion assembly. The upper end of the clamping assembly movably installs the conversion assembly, and the lower end of the clamping assembly movably installs the stabilizing assembly. The conversion assembly comprises a support table, a support rod and a limiting assembly. The support table is fixedly installed at the upper end of the clamping assembly, and a plurality of support rods are movably installed on the support table. The distal end of the support rod is fixedly installed with the limiting assembly.
[0007] The limiting assembly includes an extension plate and a fixing platform. The extension plate is fixedly installed at the end of the support rod, and the support platform is fixedly installed at the upper end of the extension plate. A square groove is provided on the support platform, and fixing knobs are movably installed on both sides of the support platform. A partition plate is movably provided on the inner side of the support platform, and the partition plate and the fixing knobs are movably connected. By controlling the forward and reverse rotation of the knobs, the forward and backward movement of the partition plate is controlled to clamp the threaded tube.
[0008] Furthermore, multiple spacers are provided, and the distance between each spacer is 4mm-8mm;
[0009] Furthermore, the clamping assembly includes a triangular rod, a clamping rod, and a vertical rod; the clamping rods are movably mounted on both sides of the triangular rod, and the vertical rod is movably mounted on the upper end of the triangular rod; the clamping rods are fixed and released by a second fixing bolt provided on the back, and the vertical rod is fixed and released by a second fixing bolt provided on the back.
[0010] Furthermore, the stabilizing component includes a support plate and a friction plate; the support plate is movably mounted on the lower end of the triangular rod, and the friction plate is movably mounted on the end of the support plate; the support plate is telescopic, and the support plate and the friction plate are fixed and adjusted by bolts;
[0011] Furthermore, the support rod is fixed by a fourth fixing bolt located at the upper end of the support platform;
[0012] Furthermore, friction strips are provided inside the friction plate.
[0013] The beneficial effects of this invention are:
[0014] This invention designs a threaded tube support for a ventilator used in intensive care unit, comprising: a clamping component, a stabilizing component, and a conversion component; the conversion component is movably mounted on the upper end of the clamping component, and the stabilizing component is movably mounted on the lower end of the clamping component; the clamping component can clamp the entire device onto the ventilator, and the adjustable design of the clamping component allows it to adapt to and clamp and fix ventilators of different sizes.
[0015] To ensure clamping stability, the present invention includes a stabilizing component at the lower end of the clamping assembly. This stabilizing component further secures the device to the ventilator, specifically to the side wall, using friction to ensure stability and prevent slippage during fixation. Additionally, the present invention includes a conversion assembly comprising a support platform, support rods, and a limiting component. The support platform is fixedly mounted on the upper end of the clamping assembly, and multiple support rods are movably mounted on the support platform. The limiting component is fixedly mounted at the end of each support rod. The limiting component secures the threaded tube and, based on the spacing between the threads of the threaded tube, effectively limits its movement, ensuring stability after fixation. Attached Figure Description
[0016] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below.
[0017] Figure 1 This is a schematic diagram of the overall structure of a threaded tube support for a ventilator used in the intensive care unit.
[0018] Figure 2 This is a top view of a threaded tube support for a ventilator used in the intensive care unit.
[0019] Figure 3 This is a side view of a threaded tube support for a ventilator used in intensive care unit clinical settings.
[0020] Figure 4 This is a rear view of a threaded tube support for a ventilator used in intensive care unit clinical settings.
[0021] Figure 5 This is a schematic diagram of another overall structure of a threaded tube support for a ventilator used in clinical settings of critical care medicine.
[0022] Figure 6 This is a schematic diagram of section A of a threaded tube support for a ventilator used in the intensive care unit.
[0023] The attached diagram lists the components represented by each number as follows:
[0024] 1-Clamping assembly, 11-Triangular rod, 111-First fixing bolt, 12-Upright rod, 121-Second fixing bolt, 13-Clamping rod, 131-Second fixing bolt, 2-Stabilizing assembly, 21-Support plate, 211-Third fixing bolt, 22-Friction plate, 3-Conversion assembly, 31-Support platform, 32-Fourth fixing bolt, 33-Support rod, 34-Limiting assembly, 341-Extension plate, 342-Fixing platform, 343-Fixing knob, 344-Spacer plate. Detailed Implementation
[0025] Example 1
[0026] A threaded tube support for a ventilator used in intensive care unit clinical settings includes: a clamping assembly 1, a stabilizing assembly 2, and a conversion assembly 3; the conversion assembly 3 is movably mounted on the upper end of the clamping assembly 1, and the stabilizing assembly 2 is movably mounted on the lower end of the clamping assembly 1; the conversion assembly 3 includes a support platform 31, support rods 33, and a limiting assembly 34; the support platform 31 is fixedly mounted on the upper end of the clamping assembly 1, and multiple support rods 33 are movably mounted on the support platform 31, with the limiting assembly 34 fixedly mounted at the end of each support rod 33; the support rods 33 are fixed by a fourth fixing bolt 32 located on the upper end of the support platform 31;
[0027] The limiting component 34 includes an extension plate 341 and a fixing platform 342. The extension plate 341 is fixedly installed at the end of the support rod 33, and the support platform 31 is fixedly installed at the upper end of the extension plate 341. The support platform 31 has a square groove, and fixing knobs 343 are movably installed on both sides of the support platform 31. A partition plate 344 is movably arranged on the inner side of the support platform 31, and the partition plate 344 and the fixing knobs 343 are movably connected. By controlling the forward and reverse rotation of the knobs, the forward and backward movement of the partition plate 344 is controlled to clamp the threaded tube. In this embodiment, multiple partition plates 344 are provided, and the distance between each partition plate 344 is 4mm-8mm. When in use, the partition plates 344 are relatively fixed by using the gap between the partition plates and the threaded tubes between them to interlock, which can effectively prevent movement after fixing.
[0028] The support platform 31 is integrally molded from medical-grade ABS engineering plastic. The bolts are fixedly connected to the upper end of the clamping component 1 (which can be adjusted). At the same time, the fourth fixing bolt 32 (with anti-slip knob) locks the angle of the support rod 33 to meet the needs of pipeline routing under different bed heights and patient positions.
[0029] Example 2
[0030] In this embodiment, based on the clamping component 1 described in Embodiment 1, the entire device can be clamped onto the ventilator. The adjustable design of the clamping component 1 allows it to adapt to and clamp ventilators of different sizes. Specifically, the clamping component 1 includes a triangular rod 11, clamping rods 13, and a vertical rod 12. The clamping rods 13 are movably mounted on both sides of the triangular rod 11, and the vertical rod 12 is movably mounted on the upper end of the triangular rod 11. The clamping rods 13 are fixed and loosened by a second fixing bolt 121 located on the back, and the vertical rod 12 is also fixed and loosened by the same bolt. Specifically, the clamping range can be flexibly adjusted according to the thickness and shape of the ventilator body. The bolt fastening structure ensures a tight connection between the support and the ventilator, preventing the support from falling off due to patient movement or equipment movement during clinical use, and providing a stable foundation for the threaded tube fixation.
[0031] Example 3
[0032] In this embodiment, based on the stabilizing component 2 described in Embodiment 1, the stabilizing component 2 can be further fixed to the ventilator, specifically on the side wall. Friction further ensures stability and prevents slippage during fixation. Specifically, the stabilizing component 2 includes a support plate 21 and a friction plate 22. The support plate 21 is movably mounted on the lower end of the triangular rod 11, and the friction plate 22 is movably mounted on the end of the support plate 21. The support plate 21 is telescopic, and the support plate 21 and the friction plate 22 are fixed and adjusted by bolts. This effectively solves the problem of lateral swaying of the support frame caused by simple top clamping. In this embodiment, the friction plate 22 has friction strips inside. These friction strips increase friction, better preventing slippage. The friction strips can be made of rubber, effectively increasing friction while also protecting the ventilator itself.
[0033] The preferred embodiments of the present invention disclosed above are only for the purpose of illustrating the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to the specific implementation described.
Claims
1. An Intensive Care Unit (ICU) clinical ventilator threaded tube support, characterized by, Including clamping assembly, stabilizing assembly, conversion assembly, the upper end of the clamping assembly is movably installed with the conversion assembly, the lower end of the clamping assembly is movably installed with the stabilizing assembly, the conversion assembly includes a support table, a support rod and a limiting assembly, the support table is fixedly installed on the upper end of the clamping assembly, a plurality of support rods are movably installed on the support table, and the limiting assembly is fixedly installed at the end of the support rod, The limiting assembly includes an extension plate and a fixed table, the extension plate is fixedly installed at the end of the support rod, the upper end of the extension plate is fixedly installed with the support table, a square groove is formed in the support table, the two sides of the support table are movably installed with fixed knobs, a spacing plate is movably arranged on the inner side of the support table, and the spacing plate and the fixed knobs are movably connected, the forward and reverse rotation of the control knob is controlled to control the forward and backward movement of the spacing plate to clamp the threaded pipe.
2. A threaded tube support for a clinical ventilator in an intensive care unit according to claim 1, characterized in that The spacing plate is provided with a plurality of spacing plates, and the distance between each spacing plate is 4mm-8mm.
3. A threaded tube support for a clinical ventilator in an intensive care unit according to claim 1, characterized in that The clamping assembly includes a triangular rod, a clamping rod and a vertical rod, the two sides of the triangular rod are movably installed with the clamping rod, and the upper end of the triangular rod is movably installed with the vertical rod, the clamping rod is fixed and loosened through the second fixed bolt arranged on the back, and the vertical rod is fixed and loosened through the second fixed bolt arranged on the back.
4. A threaded tube support for a clinical ventilator in an intensive care unit according to claim 1, characterized in that, The stabilizing assembly includes a support plate and a friction plate, the support plate is movably installed at the lower end of the triangular rod, and the end of the support plate is movably installed with the friction plate, the support plate is in an extension form, and the support plate and the friction plate are fixed and adjusted through bolts.
5. A threaded tube support for a clinical ventilator in an intensive care unit according to claim 1, characterized in that, The support rod is fixed through the fourth fixed bolt arranged at the upper end of the support table.
6. A threaded tube support for a clinical ventilator in an intensive care unit according to claim 1, characterized in that, The interior of the friction plate is provided with a friction strip.