Electric functional washing aspirator host and system
By combining the flushing tube, suction tube and electrical control wire in the grip handle, the existing electric flushing suction handle is solved, and the lightweight and convenient operation of the grip handle is achieved, and the safety and efficiency of surgical operations are improved.
Patent Information
- Application Number
- CN202510279830.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The handle of the existing electric flushing suction device is large in size and heavy in weight, inconvenient to use and does not meet the ergonomic requirements. Long-term use may lead to problems such as finger tendonitis.
An electric-function flushing suction machine and system is designed. By combining the flushing pipe, suction pipe and electronic control wire in the grip handle, the control of the electronic control equipment is completed by using the electronic control wire, which simplifies the structure of the grip handle, reduces its weight and volume, and integrates a fast-adjustable operating mode.
It realizes lightweight and volume reduction of the grip handle, improves the convenience and safety of operation, reduces fatigue during surgical operations, and is in line with ergonomic design.
Smart Images

Figure CN119950866A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical auxiliary equipment, and in particular to an electric functional flushing and aspirating device host and system. Background Art
[0002] According to the prior art, an electric irrigation aspirator is a medical device that combines irrigation and aspiration functions and is widely used in multiple clinical scenarios. In open surgery or minimally invasive surgery (such as laparoscopy, arthroscopy), blood, tissue fluid, irrigation fluid or debris need to be quickly removed to ensure clear exposure of the surgical field and reduce operational errors. In trauma emergency treatment (such as open fractures, chest and abdominal trauma), the electric aspirator can quickly absorb a large amount of blood or secretions to assist in assessing the injury and implementing rescue.
[0003] Therefore, electric irrigation and suction devices can meet the needs of efficient and precise liquid management and wound cleaning, especially in scenarios that require simultaneous irrigation and suction. Their automation, controllability and multifunctional design make them an indispensable tool in modern medicine. The choice of electric rather than manual equipment is usually based on the complexity of the surgery, the length of the operation and higher requirements for infection control.
[0004] For example, an electric pulse irrigation aspirator disclosed in Chinese patent publication number CN201248768Y has a significant cleaning effect by using a pulse method to spray the liquid medicine into the wound in an orderly manner, which helps to reduce accidental infection and avoid contamination of discharge. It can also obtain different spray forces and shapes, thereby having different cleaning effects. That is, the push rod is operated to make the sliding part slide on the resistor, so that the irrigation aspirator can be powered by 6V or 12V, thereby obtaining different injection speeds and pressures. Different spray shapes can be obtained by combining the shape and structure of the end face of the liquid inlet hole, thereby having different cleaning effects. When the voltage is 6V, the shape of the sprayed water flow is a concentrated columnar shape, and when the voltage is 6V, the shape of the sprayed water flow is a diffuse shower shape, thereby achieving the control of the size of the sprayed water flow.
[0005] First of all, the flushing and suction switching of the above-mentioned flushing and aspiration device is achieved by the built-in motor driving the pulse pump through the gear reducer. Since the electric device is designed in the handle, the handle is large in size, heavy in weight, and high in cost. In addition, after repeated use, the valve push rod or button will become unsmooth and difficult to use, which is not conducive to delicate surgical operations. Even long-term use may cause consequences such as finger tenosynovitis, which does not meet the requirements of human hand ergonomics and imposes a burden on delicate and long-term surgical operations. Summary of the invention
[0006] In view of the deficiencies in the prior art, the present invention provides an electric functional flushing and aspirator host and system, which solves the problems raised in the above-mentioned background technology.
[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: an electric functional flushing and aspirating device host and system, including an integrated pipeline, characterized in that: the integrated pipeline is composed of a flushing tube, a suction tube and an electric control line, one end of the flushing tube, the suction tube and the electric control line are all connected to a gripping handle, one end of the suction tube is placed in a liquid collection bottle, and the liquid collection bottle is connected to a negative pressure center through a connecting pipeline;
[0008] A hard tube is fixedly mounted on one end of the holding handle away from the flushing tube, the suction tube and the electric control line, and a plurality of groups of tiny side holes are arranged in an array on the end of the hard tube away from the holding handle.
[0009] Furthermore, the irrigation tube, the suction tube and the electric control wire are integrated into the gripping handle, and the gripping handle controls the electric control device through the electric control wire therein, and then the electric control device controls the irrigation tube and the suction tube, thereby simplifying the irrigation and suction devices commonly used in the market, reducing the weight and volume of the gripping handle, and completing the reconstruction of the overall structure of the gripping end in the existing electric irrigation and suction device;
[0010] Furthermore, the handheld small suction device and the flushing and suction device used in abdominal surgery have two buttons to control the flushing or suction function when they are handheld or operated by hand. The buttons are driven by the meshing of gear sets or rotating parts to achieve the conversion of flushing or suction. This single-pipeline switching mode has a greater possibility of blockage, and the flushing size adjustment and suction size adjustment still require manual control of the externally connected pressurizing device and negative pressure device, and the integrated adjustment of the holding end cannot be achieved. Therefore, this embodiment completes the reconstruction of the holding end of the existing electric flushing and suction device, and further integrates the operation mode of rapid adjustment during the holding process, so as to provide a more convenient operation method for the operating doctor during the opening surgery.
[0011] A further improvement of the technical solution of the present invention is that: an opening switch is provided on the gripping handle, and in order to ensure that the gripping handle conforms to the ergonomic design, the gripping handle also includes at least one of the following four settings:
[0012] The gripping handle is in a straight line shape as a whole, and the opening switch on the gripping handle is provided with a push-pull stepless switch;
[0013] The gripping handle is in a straight line shape as a whole, and the opening switch on the gripping handle is provided with a button-type non-stepless switch; the gripping handle is in a pistol shape as a whole, and the opening switch on the gripping handle is provided with a push-pull stepless switch;
[0014] The gripping handle is in the shape of a pistol as a whole, and the opening switch on the gripping handle is provided with a button-type non-stepless switch.
[0015] During the actual operation, the doctor holds the handle to open the switch, and after it contacts different resistors, the resistance changes, the current changes, and thus the current of the electromagnetic control valve or peristaltic pump changes, and then the flushing force and attraction force of the flushing tube and the suction tube are changed. Therefore, in the actual operation, pushing forward is flushing, and the farther the push, the greater the flushing flow rate; pulling back is suction, and the farther the pull, the greater the suction force; when there is no operation, it rebounds to the middle to be closed. The resistor at the front end electrically controls the peristaltic pump of the flushing tube through the connection of the electric control line, and the resistor at the rear end electrically controls the electromagnetic control valve of the suction tube through the electrical connection of the electric control line;
[0016] When the handle is pushed forward and backward, the farther it is pushed, the greater the flushing flow rate; when it is pulled back, it is suction, and the farther it is pulled, the greater the suction force; when there is no operation, it rebounds to the middle to be closed; the resistor sheet at the front end electrically controls the peristaltic pump of the flushing tube through the connection of the electric control line, and the resistor sheet at the rear end electrically controls the electromagnetic control valve of the suction tube through the connection of the electric control line;
[0017] The gripping handle is in a straight line as a whole, and the opening switch on the gripping handle is provided with a button-type non-stepless switch; further, one of the buttons is pressed for suction, and the other button is pressed for flushing.
[0018] Among them, the push-pull type stepless switch is a switch structure that can be infinitely adjusted through push-pull actions. The operating doctor can continuously adjust the flow rate of the flushing tube and the adsorption force of the suction tube within a certain range; the button type non-stepless switch controls the on-off of the circuit by pressing or not the switch button. The operation is simple. For example, when the contact is pressed in the first stage, the switch contact of the electric control device is connected to realize flushing of the flushing tube. When the contact is pressed in the second stage, the other switch contact of the electric control device is connected to realize flushing of the suction tube. The push-pull type stepless switch and the button type non-stepless switch are widely used, so they are not described in detail.
[0019] A further improvement of the technical solution of the present invention is that the hard tube includes at least one of the following two configurations:
[0020] The hard tube is configured as a hollow tube and a partition groove is provided therein. The hard tube is divided into a flushing area and a suction area by the partition groove. The flushing tube is installed in the hard tube by limiting the flushing area, and the suction tube is installed in the hard tube by limiting the suction area. When a double channel is provided in the hard tube, in order to avoid the suction tube being too small and unable to be adsorbed, the suction tube is relatively thick, with an outer diameter of 5mm or 10mm, and the flushing tube is relatively thin, running on one side of the inside of the suction tube, with a diameter of about 2mm to 3mm;
[0021] The hard tube is configured as a hollow tube, and one end of the flushing tube and the suction tube are both installed at the opening at the end of the hard tube.
[0022] A further improvement of the technical solution of the present invention is that the integrated pipeline can be torn apart, the flushing tube, the suction tube and the electric control line are adhered by an adhesive, and the suction tube or the flushing tube is marked with a color stripe.
[0023] The further improvement of the technical solution of the present invention is that: it comprises a host, which is composed of a protective shell, a peristaltic pump, an electromagnetic control valve, a heating element and a socket;
[0024] The peristaltic pump is limited in the protective shell, and the peristaltic pump is installed at the middle end of the flushing tube. The peristaltic pump power switch is connected to the socket, the flushing tube is inserted into the peristaltic pump, and the peristaltic pump is controlled by a handle switch.
[0025] In order to avoid installing too many components in the gripping end of the electric irrigation and suction device, which would cause fatigue during long-term surgery, an external host is set up to directly control the irrigation tube and the suction tube. In addition to realizing the design of automation and controllability, the direct adjustment of the electric control device needs to be placed at the gripping end;
[0026] A further improvement of the technical solution of the present invention is that the electromagnetic control valve is installed at the middle end of the suction tube, and the suction force of the suction tube is controlled by squeezing, and the electromagnetic control valve is controlled by a handle switch.
[0027] A further improvement of the technical solution of the present invention is that: the socket is arranged at the outer end of the protective shell, the socket is electrically connected to the electric control line, the electric control line is electrically connected to the peristaltic pump and the electromagnetic control valve through the socket, and a temperature sensing element is arranged in the gripping handle, and the temperature sensing element is electrically connected to the socket through the electric control line.
[0028] A further improvement of the technical solution of the present invention is that: the protective shell is provided with a groove, a liquid storage bottle is clamped in the groove, an electromagnetic heating coil, a non-contact water level sensor and an infrared thermometer are provided in the liquid storage bottle, the end of the flushing tube away from the gripping handle is located in the liquid storage bottle, the flushing tube is connected to a water inlet pipe located in the liquid storage bottle, and a water inlet pipe is provided on the other side of the liquid storage bottle, the water inlet pipe is installed with a stainless steel pipe, the electromagnetic heating coil is installed on the outer end surface of the stainless steel pipe, and the non-contact water level sensor and infrared thermometer are installed in the compartment of the liquid storage bottle.
[0029] Furthermore, when the embodiment is initially started, the peristaltic pump is automatically turned on to fill the storage bottle with the flushing liquid. After it is filled, the peristaltic pump is automatically stopped and the electromagnetic induction heating is automatically turned on until the preset temperature stops, thereby heating the flushing liquid and maintaining the temperature. The host can set the water temperature, the default is 37°C;
[0030] Stable water temperature is maintained mainly by infrared thermometer, peristaltic pump speed and real-time change of heating power.
[0031] A further improvement of the technical solution of the present invention is that: a display screen is provided at the outer end of the protective shell, and the display screen displays the flushing flow rate, the set flushing peak flow rate, the total flushing liquid volume, the set flushing liquid temperature, and the real-time flushing liquid temperature at the handle. The host can select multiple model modes to meet the corresponding model of an electric functional flushing aspirator host and system matching use.
[0032] Beneficial Effects
[0033] Compared with the prior art, the present invention has the following beneficial effects: by merging the irrigation tube, the suction tube and the electric control wire into the gripping handle, the gripping handle controls the electric control device through the electric control wire therein, and then the electric control device controls the irrigation tube and the suction tube, thereby simplifying the current traditional irrigation and suction device structure, reducing the weight and volume of the gripping handle, and completing the reconstruction of the overall structure of the gripping end in the existing electric irrigation and suction device;
[0034] In addition to the reconstruction of the gripping end of the existing electric irrigation and suction device, the quick adjustment operation mode during the gripping process is further integrated to provide a more convenient operation method for doctors performing incision surgery.
[0035] The electromagnetic heating method used in the liquid storage bottle improves the heating efficiency of the liquid storage bottle. It is safer than traditional electric heating and avoids the risk of leakage caused by direct contact during surgery. The water temperature can be controlled autonomously by changing the heating power in real time based on the temperature sensor and the peristaltic pump speed through stable water temperature. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 A front view of the present invention as a whole;
[0037] Figure 2 It is a front view of a straight-line grip handle with a push-button non-stepless switch;
[0038] Figure 3 A three-dimensional diagram of a pistol-style grip handle with a push-pull stepless switch;
[0039] Figure 4 A three-dimensional diagram of a straight-line grip handle with a push-button non-stepless switch;
[0040] Figure 5 It is a structural diagram of a linear push-pull stepless switch holding handle;
[0041] Figure 6 The overall structure diagram of the inner liquid storage bottle of the present invention;
[0042] Figure 7 It is a structural cross-sectional view of the inner liquid storage bottle of the present invention.
[0043] In the figure: 1. Flushing tube; 2. Suction tube; 3. Electric control line; 4. Holding handle; 5. Liquid collection bottle; 6. Hard tube; 7. Side hole; 8. Main unit; 9. Protective shell; 10. Peristaltic pump; 11. Solenoid control valve; 12. Heating element; 13. Socket; 15. Liquid storage bottle; 16. Water inlet pipe; 17. Water inlet pipe; 18. Stainless steel pipe; 19. Display screen; 20. Infrared thermometer; 21. Opening switch; 22. Connecting pipe; 23. Electromagnetic heating coil; 24. Non-contact water level sensor; 25. Infusion bag. DETAILED DESCRIPTION
[0044] Various exemplary embodiments, features and aspects of the present application will be described in detail below with reference to the accompanying drawings. The same reference numerals in the accompanying drawings represent elements with the same or similar functions. Although various aspects of the embodiments are shown in the accompanying drawings, the drawings are not necessarily drawn to scale unless otherwise specified.
[0045] The word “exemplary” is used exclusively herein to mean “serving as an example, example, or illustration.” Any embodiment described herein as “exemplary” is not necessarily to be construed as preferred or advantageous over other embodiments.
[0046] In addition, in order to better illustrate the present application, numerous specific details are provided in the specific examples below. It should be understood by those skilled in the art that the present application can also be implemented without certain specific details. In some examples, methods, means, and elements well known to those skilled in the art are not described in detail in order to highlight the subject matter of the present application.
[0047] The present invention provides an electric functional flushing and aspirating device host and system, comprising an integrated pipeline, the integrated pipeline consisting of a flushing tube 1, a suction tube 2 and an electric control line 3, one end of the flushing tube 1, the suction tube 2 and the electric control line 3 are all connected to a gripping handle 4, one end of the suction tube 2 is placed in a liquid collecting bottle 5, and the liquid collecting bottle 5 is connected to a negative pressure center through a connecting pipe 22;
[0048] A hard tube 6 is fixedly mounted on one end of the gripping handle 4 away from the flushing tube 1 , the suction tube 2 and the electric control line 3 , and a plurality of groups of tiny side holes 7 are arranged in an array on the end of the hard tube 6 away from the gripping handle 4 .
[0049] Furthermore, the flushing tube 1, the suction tube 2 and the electric control line 3 are integrated into the gripping handle 4, and the gripping handle 4 controls the electric control device through the electric control line 3 therein, and then the electric control device controls the flushing tube 1 and the suction tube 2, thereby simplifying the commonly used flushing and suction devices on the market, reducing the weight and volume of the gripping handle 4, and completing the reconstruction of the overall structure of the gripping end in the existing electric flushing and suction devices;
[0050] Furthermore, the handheld small suction device and the flushing suction device used in abdominal surgery have two buttons to control the flushing or suction function when they are handheld or hand-held. The buttons are driven by the meshing of gear sets or rotating parts to achieve the conversion of flushing or suction. This single-line switching mode has a greater possibility of blockage, and the flushing size adjustment and suction size adjustment still require manual control of the externally connected pressurizing device and negative pressure device, and the integrated adjustment of the holding end cannot be achieved. Therefore, this embodiment further integrates the operation mode of rapid adjustment during the holding process in completing the reconstruction of the holding end of the existing electric flushing and suction device, providing a more convenient operation method for the operating doctor during the opening surgery;
[0051] The present invention also provides an electric functional flushing aspirator host and system, comprising a host 8, the host 8 comprising a protective shell 9, a peristaltic pump 10, an electromagnetic control valve 11, a heating element 12 and a socket 13;
[0052] The peristaltic pump 10 is limited in the protective shell 9, and the peristaltic pump 10 is installed in the middle section of the flushing tube 1. The power switch of the peristaltic pump 10 is connected to the socket 13. The flushing tube 1 is inserted into the peristaltic pump 10, and the peristaltic pump 10 is controlled by the handle switch, wherein the heating element 12 is provided in multiple groups and is respectively installed on the flushing tube 1 and the suction tube 2;
[0053] In this embodiment, in order to avoid installing too many components in the gripping end of the electric irrigation and suction device, which would cause fatigue during long-term surgery, an external host 8 is provided to directly control the irrigation tube 1 and the suction tube 2, and realize the design of automation and controllability. The direct adjustment of the electric control device needs to be placed at the gripping end;
[0054] Embodiment 1: An opening switch 21 is provided on the gripping handle 4. To ensure that the gripping handle 4 is ergonomically designed, the gripping handle 4 also includes at least one of the following four settings:
[0055] The gripping handle 4 is in a straight line shape as a whole, and the opening switch 21 on the gripping handle 4 is provided with a push-pull stepless switch;
[0056] The gripping handle 4 is in a straight line shape as a whole, and the opening switch 21 on the gripping handle 4 is provided with a button-type non-stepless switch; the gripping handle 4 is in a pistol shape as a whole, and the opening switch 21 on the gripping handle 4 is provided with a push-pull stepless switch;
[0057] The gripping handle 4 is in the shape of a pistol as a whole, and the opening switch 21 on the gripping handle 4 is provided with a button-type non-stepless switch.
[0058] It should be noted that the present embodiment provides specific operation steps, specifically, during the actual operation, the operating doctor holds the opening switch 21 of the handle 4, and after it contacts different resistors, the resistance and current change, thereby changing the current of the electromagnetic control valve 11 or the peristaltic pump 10, and then changing the flushing force and attraction force of the flushing tube 1 and the suction tube 2. Therefore, in the actual operation, pushing forward is flushing, and the farther the push, the greater the flushing flow rate, pulling backward is suction, and the farther the pull, the greater the suction force, and when there is no operation, it rebounds to the middle to be closed, and the resistor at the front end electrically controls the peristaltic pump 10 of the flushing tube 1 through the connection of the electric control line 3, and the resistor at the rear end controls the electromagnetic control valve 11 of the suction tube 2 through the electrical connection of the electric control line 3;
[0059] When the grip handle 4 is in the forward and backward push mode, the farther it is pushed, the greater the flushing flow rate is; when it is pulled back, it is suction, and the farther it is pulled, the greater the suction force is; when there is no operation, it rebounds to the middle to be closed; the resistor sheet at the front end electrically controls the peristaltic pump 10 of the flushing tube 1 through the connection of the electric control line 3, and the resistor sheet at the rear end electrically controls the electromagnetic control valve 11 of the suction tube 2 through the electric connection of the electric control line 3;
[0060] The gripping handle 4 is in a straight line as a whole, and the opening switch 21 on the gripping handle 4 is provided with a button-type non-stepless switch; further, one of them is pressed for suction, and the other is pressed for flushing.
[0061] Among them, the push-pull type stepless switch is a switch structure that can be infinitely adjusted through push-pull actions. The operating doctor can continuously adjust the flow rate of the flushing tube 1 and the adsorption force of the suction tube 2 within a certain range; the button type non-stepless switch controls the on-off of the circuit by pressing the switch button or not. The operation is simple. For example, when the contact is pressed in the first stage, the switch contact of the electric control device is connected to realize the flushing of the flushing tube 1. When the contact is pressed in the second stage, the other switch contact of the electric control device is connected to realize the flushing of the suction tube 2. The push-pull type stepless switch and the button type non-stepless switch are widely used, so they are not described in detail.
[0062] The hard tube 6 includes at least one of the following two configurations:
[0063] The hard tube 6 is set as a hollow tube and a partition groove is set inside the hard tube 6. The hard tube 6 is divided into a flushing area and a suction area by the partition groove. The flushing tube 1 is installed in the hard tube 6 through the flushing area limit, and the suction tube 2 is installed in the hard tube 6 through the suction area limit. When a double channel is set in the hard tube 6, in order to avoid the suction tube 2 being too small and unable to be adsorbed, the suction tube 2 is thicker, with an outer diameter of 5mm or 10mm, and the flushing tube 1 is thinner and runs on one side of the inside of the suction tube 2, with a diameter of about 2mm to 3mm.
[0064] The hard tube 6 is configured as a hollow tube, and one end of the flushing tube 1 and the suction tube 2 are both installed at the opening at the end of the hard tube 6 .
[0065] Embodiment 2: The integrated pipeline can be torn apart, the flushing tube 1, the suction tube 2 and the electric control line 3 are adhered by adhesive, and the suction tube 2 or the flushing tube 1 is marked with color stripes.
[0066] The electromagnetic control valve 11 is installed in the middle section of the suction tube 2, and the suction force of the suction tube 2 is controlled by squeezing. The electromagnetic control valve 11 is controlled by a handle switch.
[0067] The socket 13 is arranged at the outer end of the protective shell 9, and the socket 13 is electrically connected to the electric control line 3. The electric control line 3 is electrically connected to the peristaltic pump 10 and the electromagnetic control valve 11 through the socket 13. A temperature sensing element is arranged in the gripping handle 4, and the temperature sensing element is electrically connected to the socket 13 through the electric control line 3.
[0068] The protective shell 9 is provided with a groove, in which a liquid storage bottle 15 is clamped, and an electromagnetic heating coil 23, a non-contact water level sensor 24 and an infrared thermometer 20 are arranged in the liquid storage bottle 15. The end of the flushing tube 1 away from the gripping handle 4 is located in the liquid storage bottle 15, and the flushing tube 1 is connected to the water inlet pipe 16 located in the liquid storage bottle 15, and a water inlet pipe 17 is arranged on the other side of the liquid storage bottle 15. The water inlet pipe 17 is installed with a stainless steel pipe 18, and the electromagnetic heating coil 23 is installed on the outer end surface of the stainless steel pipe 18. The non-contact water level sensor 24 and the infrared thermometer 20 are installed in the compartment of the liquid storage bottle 15. The end of the flushing tube 1 away from the peristaltic pump 10 is Y-shaped and is respectively connected to the infusion bag 25.
[0069] A liquid storage bottle 15 is provided in the middle section of the flushing pipe 1, and the liquid storage bottle 15 can reduce the pulsation. The liquid storage bottle 15 can be inserted into the heating groove of the host 8, and can be stuck when pressed to the bottom. The outer shell of the groove is provided with a button, and the liquid storage bottle 15 can be ejected by pressing it. The relevant reset technology is relatively common in this field, so it will not be repeated here; the water inlet pipe 17 passes through a section of 304 stainless steel pipe 18 in the central area of the liquid storage bottle 15, which is used for electromagnetic induction heating to heat the water temperature.
[0070] Furthermore, when the embodiment is initially started, the peristaltic pump 10 is automatically turned on to fill the storage bottle 15 with the flushing liquid. After it is filled, the peristaltic pump 10 is automatically stopped and the electromagnetic induction heating is automatically turned on until the preset temperature stops, thereby heating the flushing liquid and maintaining the temperature. The host 8 can set the water temperature, the default is 37°C;
[0071] The stable water temperature is mainly maintained by changing the heating power in real time according to the rotation speed of the infrared thermometer 20 and the peristaltic pump 10.
[0072] A display screen 19 is provided at the outer end of the protective shell 9, and the display screen 19 displays the flushing flow rate, the set flushing peak flow rate, the total flushing liquid volume, the set flushing liquid temperature, and the real-time flushing liquid temperature at the handle. The host 8 can select multiple model modes to meet the corresponding model of an electric function flushing suction device host and system matching use.
[0073] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0074] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An electric functional irrigation aspirator host and system, including an integrated pipeline, characterized in that: The integrated pipeline is composed of a flushing tube (1), a suction tube (2) and an electric control line (3); one end of each of the flushing tube (1), the suction tube (2) and the electric control line (3) is connected to a gripping handle (4); one end of the suction tube (2) is placed in a liquid collecting bottle (5) and the liquid collecting bottle (5) is connected to a negative pressure center via a connecting pipe (22); A hard tube (6) is fixedly mounted on one end of the holding handle (4) away from the flushing tube (1), the suction tube (2) and the electric control line (3), and a plurality of groups of tiny side holes (7) are arranged in an array on the end of the hard tube (6) away from the holding handle (4).
2. The main unit and system of an electric functional irrigation and aspiration device according to claim 1, characterized in that: The gripping handle (4) is provided with an opening switch (21), and the gripping handle (4) further comprises at least one of the following four settings: The gripping handle (4) is in a straight line shape as a whole, and the opening switch (21) on the gripping handle (4) is provided with a push-pull type stepless switch; The gripping handle (4) is in a straight line shape as a whole, and the upper opening switch (21) of the gripping handle (4) is provided with a button-type non-stepless switch; the gripping handle (4) is in a pistol shape as a whole, and the upper opening switch (21) of the gripping handle (4) is provided with a push-pull stepless switch; The gripping handle (4) is in the shape of a pistol as a whole, and the opening switch (21) on the gripping handle (4) is provided with a button-type non-stepless switch.
3. The main unit and system of an electric functional irrigation and aspiration device according to claim 2, characterized in that: The hard tube (6) comprises at least one of the following two configurations: The hard tube (6) is configured as a hollow tube and a partition groove is provided therein. The hard tube (6) is divided into a flushing area and a suction area by the partition groove. The flushing tube (1) is installed in the hard tube (6) by limiting the flushing area, and the suction tube (2) is installed in the hard tube (6) by limiting the suction area. The hard tube (6) is configured as a hollow tube, and one end of the flushing tube (1) and the suction tube (2) are both installed at the opening at the end of the hard tube (6).
4. The main unit and system of an electric functional irrigation and aspiration device according to claim 3, characterized in that: The integrated pipeline can be torn apart, the flushing tube (1), the suction tube (2) and the electric control line (3) are bonded together by an adhesive, and the suction tube (2) or the flushing tube (1) is marked with a color stripe.
5. A main unit and system for an electric functional irrigation aspirator, applied to a main unit and system for an electric functional irrigation aspirator as claimed in claim 4, characterized in that: The device comprises a main unit (8), wherein the main unit (8) comprises a protective shell (9), a peristaltic pump (10), an electromagnetic control valve (11), a heating element (12) and a socket (13); The peristaltic pump (10) is limited in the protective shell (9), and the peristaltic pump (10) is installed at the middle end of the flushing tube (1), the power switch of the peristaltic pump (10) is connected to the socket (13), the flushing tube (1) is inserted into the peristaltic pump (10), and the peristaltic pump (10) is controlled by a handle switch, the end of the flushing tube (1) away from the peristaltic pump (10) is Y-shaped and is respectively connected to the infusion bag (25), wherein the heating element (12) is provided in multiple groups and is respectively installed on the flushing tube (1) and the suction tube (2).
6. The main unit and system of an electric functional irrigation and aspiration device according to claim 5, characterized in that: The electromagnetic control valve (11) is installed at the middle end of the suction tube (2) and controls the suction force of the suction tube (2) by squeezing. The electromagnetic control valve (11) is controlled by a handle switch.
7. The main unit and system of the electric functional irrigation and aspiration device according to claim 6, characterized in that: The socket (13) is arranged at the outer end of the protective shell (9), the socket (13) is electrically connected to the electric control line (3), the electric control line (3) is electrically connected to the peristaltic pump (10) and the electromagnetic control valve (11) through the socket (13), and a temperature sensing element is arranged in the gripping handle (4), and the temperature sensing element is electrically connected to the socket (13) through the electric control line (3).
8. The main unit and system of an electric functional irrigation and aspiration device according to claim 7, characterized in that: The protective shell (9) is provided with a groove, in which a liquid storage bottle (15) is clamped, and an electromagnetic heating coil (23), a non-contact water level sensor (24) and an infrared thermometer (20) are arranged in the liquid storage bottle (15); one end of the flushing pipe (1) away from the gripping handle (4) is located in the liquid storage bottle (15); the flushing pipe (1) is connected to a water inlet pipe (16) located in the liquid storage bottle (15), and a water inlet pipe (17) is arranged on the other side of the liquid storage bottle (15); a stainless steel pipe (18) is installed in the water inlet pipe (17); the electromagnetic heating coil (23) is fixedly installed on the outer end surface of the stainless steel pipe (18), and the non-contact water level sensor (24) and the infrared thermometer (20) are installed in the compartment of the liquid storage bottle (15).
9. The main unit and system of an electric functional irrigation and aspiration device according to claim 7, characterized in that: The outer end of the protective shell (9) is provided with a display screen (19), and the display screen (19) displays the flushing flow rate, the set flushing peak flow rate, the total flushing liquid volume, the set flushing liquid temperature, and the real-time temperature of the flushing liquid at the handle.
Citation Information
Patent Citations
Electric pulse washing and sucking apparatus
CN201248768Y