CN108744109B - Intestinal hydrotherapy equipment - Google Patents

Intestinal hydrotherapy equipment Download PDF

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Publication number
CN108744109B
CN108744109B CN201810680960.5A CN201810680960A CN108744109B CN 108744109 B CN108744109 B CN 108744109B CN 201810680960 A CN201810680960 A CN 201810680960A CN 108744109 B CN108744109 B CN 108744109B
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pipe
pressure pipe
water
water pump
pipeline
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CN108744109A (en
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李树新
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M3/00Medical syringes, e.g. enemata; Irrigators
    • A61M3/02Enemata; Irrigators
    • A61M3/0233Enemata; Irrigators characterised by liquid supply means, e.g. from pressurised reservoirs
    • A61M3/0254Enemata; Irrigators characterised by liquid supply means, e.g. from pressurised reservoirs the liquid being pumped
    • A61M3/0258Enemata; Irrigators characterised by liquid supply means, e.g. from pressurised reservoirs the liquid being pumped by means of electric pumps
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/33Controlling, regulating or measuring
    • A61M2205/3368Temperature
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/75General characteristics of the apparatus with filters
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2210/00Anatomical parts of the body
    • A61M2210/10Trunk
    • A61M2210/1042Alimentary tract
    • A61M2210/1064Large intestine

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Anesthesiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Hematology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Devices For Medical Bathing And Washing (AREA)

Abstract

The invention relates to the technical field of medical instruments, in particular to intestinal hydrotherapy equipment, which comprises: the water tank, circulating water pump and pressure pipe, circulating water pump is connected to the delivery port of water tank bottom, and circulating water pump's delivery port passes through the tube coupling pressure pipe, and the height that highly is higher than circulating water pump of the topmost of pressure pipe can be adjusted from top to bottom. According to the intestinal hydrotherapy equipment provided by the invention, as the liquid is conveyed by the water pump easily to generate the condition of unstable pressure, the height of the topmost end of the pressure pipe is higher than that of the circulating water pump and can be adjusted up and down, the liquid is stably guided into the topmost end of the pressure pipe as much as possible by controlling the water pump, and the liquid in the pressure pipe freely flows downwards under the action of gravity, so that the situation that the liquid pressure in the pressure pipe is not easily controlled because the liquid is directly and quickly guided into the pressure pipe by the water pump is avoided, and the pressure of the finally flowing liquid is stable because the liquid in the pressure pipe is subjected to the stable gravity of the.

Description

Intestinal hydrotherapy equipment
Technical Field
The invention relates to the technical field of medical instruments, in particular to intestinal hydrotherapy equipment.
Background
Intestinal hydrotherapy is commonly called intestinal lavage. The large intestine hydrotherapy is a novel health care method which can thoroughly clean the intestinal tract, discharge vivotoxin, improve constipation, correct diarrhea, adjust intestinal flora imbalance, prevent intestinal cancer, have the functions of beautifying, skin beautifying, weight losing, adjust endocrine imbalance and the like, and is known as the most popular physical internal adjustment health care natural therapy in the 21 st century.
Intestinal hydrotherapy is a method of thoroughly cleaning and comprehensively maintaining the entire intestine with high-tech equipment, and the colon is washed with sterilized and purified warm water.
In the prior art, the intestinal hydrotherapy equipment adopts a water pump for pressurization, so that the defect of unstable pressure is easily caused.
Disclosure of Invention
The invention aims to overcome the defect of unstable pressure in the prior art.
Therefore, the technical scheme adopted is that the intestinal hydrotherapy equipment comprises: the water tank, circulating water pump and pressure pipe, circulating water pump is connected to the delivery port of water tank bottom, and circulating water pump's delivery port passes through the tube coupling pressure pipe, and the height that highly is higher than circulating water pump of the topmost of pressure pipe can be adjusted from top to bottom.
In order to enable the water tank to automatically add water, the preferable technical scheme is that the intestinal hydrotherapy equipment further comprises a controller, a water level sensor is arranged inside the water tank, a water inlet electromagnetic valve is connected to a water inlet of the water tank, the water level sensor is electrically connected with the controller, and the water inlet electromagnetic valve is electrically connected with the controller.
In order to control the temperature of liquid in the water tank, the preferable technical scheme is that a circulating water pump and a pressure pipe are sequentially connected with a shunt electromagnetic valve and a water outlet electromagnetic valve through pipelines, the circulating water pump is connected with a water inlet of the shunt electromagnetic valve, the water outlet electromagnetic valve is connected with one water outlet of the shunt electromagnetic valve, the other water outlet of the shunt electromagnetic valve is connected with the bottom of the water tank, and a heater is arranged between the other water outlet of the shunt electromagnetic valve and the bottom of the water tank; a first temperature sensor is arranged in the water tank and connected with the controller; a second temperature sensor is arranged between a water inlet of the shunt electromagnetic valve and the circulating water pump, the second temperature sensor is connected with the controller, and the shunt electromagnetic valve, the water outlet electromagnetic valve and the heater are respectively connected with the controller.
In order to make the liquid in the water tank cleaner, the preferable technical proposal is that an ultraviolet sterilization device is arranged in the water tank, and a filter is arranged at the water inlet of the water tank.
In order to control the highest liquid level of the pressure pipe and the water tank, the preferable technical scheme is that a first overflow port is arranged at the top end of the pressure pipe and is connected with the top of the water tank through a pipeline; the top of the water tank is provided with a second overflow port which is connected with a pipeline and communicated with the outside.
In order to stabilize the liquid flow in the pressure pipe, the preferable technical scheme is that a transfer box is connected between the circulating water pump and the pressure pipe, and the top of the transfer box is communicated with the outside; the height of transfer case is higher than the height of pressure pipe, and the top of transfer case and circulating water pump's delivery port intercommunication, the bottom of transfer case and pressure pipe pass through the pipeline intercommunication.
In order to enable the transfer case and the pressure pipe to be capable of adjusting the height, the preferable technical scheme is that the transfer case is positioned right above the pressure pipe, a side water inlet of the transfer case is connected with a first transverse pipe, the first transverse pipe is communicated with a water outlet of a circulating water pump through a pipeline, a first overflow port on the side surface of the pressure pipe is connected with a second transverse pipe, and the second transverse pipe is connected with the top of a water tank through a pipeline; the first horizontal pipe and the second horizontal pipe are connected with a supporting rod, a telescopic rod is arranged under the supporting rod, and the telescopic end of the telescopic rod is connected with the lower end of the supporting rod.
In order to make the motion tracks of the transfer box and the pressure pipe more stable and prevent the pipelines connected with the water outlet of the circulating water pump and the second overflow port from being too disordered, the preferable technical scheme is that sliding blocks are arranged at the end parts of the first transverse pipe and the second transverse pipe, and the first transverse pipe and the second transverse pipe penetrate through the sliding blocks; the side of transfer case and pressure pipe sets up the pipeline and places the case, and the side that the case was placed to the pipeline corresponds first violently pipe and violently manage with the second sets up vertical first slide, and the slider setting is in first slide and can slide from top to bottom, and the pipeline that circulating water pump's delivery port and second overflow mouth are connected is the pipe of can buckling, and the pipe of can buckling is fixed on the side that the case was placed to the pipeline is relative with first slide.
In order to enable the bending and unfolding of the bendable pipe to be more orderly in the up-and-down moving process of the middle steering and pressure pipe and prevent the bendable pipe from being disordered and knotted, the preferable technical scheme is that two groups of telescopic frames are oppositely arranged in the pipeline placing box, each telescopic frame consists of a plurality of guard plates hinged end to end, the corresponding hinged parts of the two groups of telescopic frames are connected through connecting rods, the guard plate at one end part of each telescopic frame is hinged with the position, corresponding to the side wall of the pipeline placing box, of the corresponding fixed bendable pipe, the connecting rod at any side of each telescopic frame extends out of the guard plate, the two ends of each telescopic frame are provided with second slide ways corresponding to the positions of the connecting rods extending out of the guard plates, the second slide ways are vertically and fixedly arranged in the pipeline placing box, the connecting rods extending out of the guard plates can be arranged in the second slide; the bendable pipe is bent according to the shape formed by connecting the guard plates of the telescopic frame, the bendable pipe is arranged inside the telescopic frame in a bending mode corresponding to the guard plates, and the connecting rod is located inside the bending position of the bendable pipe.
The technical scheme of the invention has the following advantages:
according to the intestinal hydrotherapy equipment provided by the invention, as the liquid is conveyed by the water pump easily to generate the condition of unstable pressure, the height of the topmost end of the pressure pipe is higher than that of the circulating water pump and can be adjusted up and down, the liquid is stably guided into the topmost end of the pressure pipe as much as possible by controlling the water pump, and the liquid in the pressure pipe freely flows downwards under the action of gravity, so that the situation that the liquid pressure in the pressure pipe is not easily controlled because the liquid is directly and quickly guided into the pressure pipe by the water pump is avoided, and the pressure of the finally flowing liquid is stable because the liquid in the pressure pipe is subjected to the stable gravity of the.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without creative efforts.
FIG. 1 is a schematic structural view of example 1 of the present invention;
FIG. 2 is a schematic structural diagram of example 2 of the present invention;
FIG. 3 is a schematic structural diagram according to embodiment 3 of the present invention;
FIG. 4 is a side sectional view of a pipe placing box in embodiment 3 of the present invention;
fig. 5 is a schematic structural view of an expansion bracket according to embodiment 3 of the present invention;
wherein, 10-a water tank; 11-a circulating water pump; 12-a water inlet electromagnetic valve; 13-a shunt solenoid valve; 14-water outlet solenoid valve; 15-a heater; 16-a second overflow port; 17-a bendable tube; 20-pressure pipe; 21-a first overflow; 22-a transfer box; 23-a first cross tube; 24-a second cross tube; 25-a support bar; 26-a telescopic rod; 27-a slide block; 30-a controller; 31-a water level sensor; 32-a first temperature sensor; 33-a second temperature sensor; 40-a pipeline placing box; 41-a first slideway; 42-a telescopic frame; 421-guard plate; 422-connecting rod; 43-second slide.
Detailed Description
The technical solutions of the present invention will be described clearly and completely with reference to the accompanying drawings, and it should be understood that the described embodiments are some, but not all embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
As shown in fig. 1, the present invention provides an intestinal hydrotherapy device including: the water circulation system comprises a water tank 10, a water circulation pump 11 and a pressure pipe 20, wherein a water outlet at the bottom of the water tank 10 is connected with the water circulation pump 11, the water outlet of the water circulation pump 11 is connected with the pressure pipe 20 through a pipeline, the topmost height of the pressure pipe 20 is higher than that of the water circulation pump 11 and can be adjusted up and down, the height of the standard pressure pipe 20 is 1.6 meters, and the water outlet pressure of the pressure pipe 20 is 10-12 kPa.
The working principle of the invention is as follows:
according to the intestinal hydrotherapy equipment provided by the invention, as the liquid conveyed by the water pump is easy to generate unstable pressure, the height of the topmost end of the pressure pipe 20 is higher than that of the circulating water pump 11 and can be adjusted up and down, the liquid is led into the topmost end of the pressure pipe 20 stably as much as possible by controlling the water pump, and the liquid in the pressure pipe 20 freely flows downwards under the action of gravity, so that the situation that the liquid is directly and quickly led into the pressure pipe 20 by the water pump, the pressure of the liquid in the pressure pipe 20 is not easy to control, the liquid in the pressure pipe 20 is stable under the action of the stable gravity of the gravity, and the pressure of the finally flowing liquid.
In order to enable the water tank 10 to automatically add water, the preferred technical scheme is that the intestinal hydrotherapy device further comprises a controller 30, a water level sensor 31 is arranged inside the water tank 10, the water inlet of the water tank 10 is connected with the water inlet electromagnetic valve 12, the water level sensor 31 is electrically connected with the controller 30, and the water inlet electromagnetic valve 12 is electrically connected with the controller 30. The controller 30 determines whether the water level reaches a set value through a signal sent by the water level sensor 31, when the water level of the water tank 10 is detected not to reach the set value, the controller 30 controls the water inlet solenoid valve 12 to open to add water to the water tank 10, when the water level of the water tank 10 reaches the set value, the water level sensor 31 sends a water full signal to the controller 30, and the controller 30 controls the water inlet solenoid valve 12 to stop adding water.
In order to control the temperature of the liquid in the water tank 10, the preferable technical scheme is that a water circulating pump 11 and a pressure pipe 20 are sequentially connected with a shunt electromagnetic valve 13 and a water outlet electromagnetic valve 14 through pipelines, the water circulating pump 11 is connected with a water inlet of the shunt electromagnetic valve 13, the water outlet electromagnetic valve 14 is connected with one water outlet of the shunt electromagnetic valve 13, the other water outlet of the shunt electromagnetic valve 13 is connected with the bottom of the water tank 10, and a heater 15 is arranged between the other water outlet of the shunt electromagnetic valve 13 and the bottom of the water tank 10; a first temperature sensor 32 is arranged in the water tank 10, and the first temperature sensor 32 is connected with the controller 30; a second temperature sensor 33 is arranged between the water inlet of the flow dividing electromagnetic valve 13 and the circulating water pump 11, the second temperature sensor 33 is connected with the controller 30, and the flow dividing electromagnetic valve 13, the water outlet electromagnetic valve 14 and the heater 15 are respectively connected with the controller 30.
When the detection result of the first temperature sensor 32 is greater than the set outlet water temperature value, the controller 30 controls the heater 15 to stop working; when the detection result of the first temperature sensor 32 is smaller than the set value, the controller 30 controls the heater 15 to start to work, continue heating, simultaneously close the water outlet of the diversion solenoid valve 13 communicated with the water outlet solenoid valve 14, and open the water outlet of the diversion solenoid valve 13 communicated with the water tank 10. The water heated by the heater 15 enters the water tank 10 for heat preservation and storage for later use. The long-time work of the heater 15 is avoided, the service life of the heater 15 is prolonged, the energy consumption is saved, and the constant temperature of the water flowing out from the water outlet of the water tank 10 is further ensured.
When the detection result of the second temperature sensor 33 is equal to the set water outlet temperature value, the water outlet electromagnetic valve 14 is opened, the water outlet of the flow dividing electromagnetic valve 13 communicated with the water outlet electromagnetic valve 14 is opened, and the water outlet of the flow dividing electromagnetic valve 13 communicated with the water tank 10 is closed. When the detection result of the second temperature sensor 33 does not accord with the set value of the water outlet temperature, the water outlet electromagnetic valve 14 is closed, the water outlet of the diversion electromagnetic valve 13 communicated with the water outlet electromagnetic valve 14 is closed, and the water outlet of the diversion electromagnetic valve 13 communicated with the water tank 10 is opened. The outlet water temperature setpoint may be set at a constant temperature of 38 deg.C, or some deviation may be allowed, such as 38 + -0.5 deg.C.
In order to make the liquid in the water tank 10 cleaner, the preferred technical scheme is that an ultraviolet sterilization device is arranged in the water tank 10, a filter is arranged at a water inlet of the water tank 10, the filter comprises a filter layer, and the ultraviolet sterilization device and the filter are mature and applied in the prior art and are not described herein again. The ultraviolet sterilization device purifies bacteria in water, and the filter filters particles in the water to ensure that the water in the water tank 10 is clean.
In order to control the highest liquid level of the pressure pipe 20 and the water tank 10, the preferable technical scheme is that a first overflow port 21 is arranged at the top end of the pressure pipe 20, and the first overflow port 21 is connected with the top of the water tank 10 through a pipeline; the top of the water tank 10 is provided with a second overflow port 16, and the second overflow port 16 is connected with a pipeline and communicated with the outside. After the liquid in the pressure pipe 20 reaches the limited liquid level height, the liquid flows into the water tank 10 through the first overflow port 21, and after the liquid in the water tank 10 reaches the limited liquid level height, the liquid flows to the outside through the second overflow port 16, so that the maximum volume of the liquid in the pressure pipe 20 and the water tank 10 is ensured, and the use failure of the whole intestinal hydrotherapy device caused by excessive liquid in the pressure pipe 20 and the water tank 10 is prevented.
In order to stabilize the liquid flow in the pressure pipe 20, a preferable technical scheme is that a transfer tank 22 is connected between the circulating water pump 11 and the pressure pipe 20, and the top of the transfer tank 22 is communicated with the outside; the height of the transfer box 22 is higher than that of the pressure pipe 20, the top of the transfer box 22 is communicated with the water outlet of the circulating water pump 11, and the bottom of the transfer box 22 is communicated with the pressure pipe 20 through a pipeline. First, the circulating water pump 11 guides the liquid into the intermediate tank 22, the liquid in the intermediate tank 22 flows into the pressure pipe 20 by gravity, the influence of the kinetic energy of the water sprayed by the circulating water pump 11 on the pressure of the liquid flowing into the pressure pipe 20 is reduced, the pressure of the liquid flowing into the pressure pipe 20 through the intermediate tank 22 is more stable, and the user does not feel uncomfortable when the device is used.
Example 2
As shown in fig. 2, in order to enable the height of the transfer case 22 and the pressure pipe 20 to be adjusted, the preferred technical scheme is that the transfer case 22 is positioned right above the pressure pipe 20, a side water inlet of the transfer case 22 is connected with a first transverse pipe 23, the first transverse pipe 23 is communicated with a water outlet of the circulating water pump 11 through a pipeline, a first overflow port 21 on the side of the pressure pipe 20 is connected with a second transverse pipe 24, and the second transverse pipe 24 is connected with the top of the water tank 10 through a pipeline; a support rod 25 is connected between the first transverse pipe 23 and the second transverse pipe 24, an expansion rod 26 is arranged right below the support rod 25, and the expansion end of the expansion rod 26 is connected with the lower end of the support rod 25. The extension and contraction of the telescopic rod 26 drives the transfer case 22 and the pressure pipe 20 to move up and down, so that the heights of the transfer case 22 and the pressure pipe 20 are changed, the hydraulic potential energy in the pressure pipe 20 is changed, and finally the pressure of the liquid flowing out is changed.
Example 3
As shown in fig. 3, 4 and 5, in order to stabilize the movement locus of the transfer box 22 and the pressure pipe 20 and prevent the pipelines connected with the water outlet of the circulating water pump 11 and the second overflow port 16 from being too disordered, the preferable technical scheme is that sliding blocks 27 are arranged at the end parts of the first transverse pipe 23 and the second transverse pipe 24, and the first transverse pipe 23 and the second transverse pipe 24 both penetrate through the sliding blocks 27; the side of the transit box 22 and the pressure pipe 20 is provided with a pipeline placing box 40, the side of the pipeline placing box 40 corresponding to the first transverse pipe 23 and the second transverse pipe 24 is provided with a vertical first slideway 41, the sliding block 27 is arranged in the first slideway 41 and can slide up and down, the pipeline connecting the water outlet of the circulating water pump 11 and the second overflow port 16 is a bendable pipe 17, and the bendable pipe 17 is fixed on the side of the pipeline placing box 40 opposite to the first slideway 41. In the process of height change of the transfer case 22 and the pressure pipe 20, the sliding blocks 27 on the first transverse pipe 23 and the second transverse pipe 24 move up and down in the first slide way 41, so that the transfer case 22 and the pressure pipe 20 move up and down more stably; the bendable pipe 17 is arranged in the pipeline placing box 40, so that the whole body is simpler and more attractive, and meanwhile, the bendable pipe 17 is prevented from knotting and the occupied space is prevented from being too large.
In order to make the bending and unfolding of the bendable pipe 17 more orderly during the middle steering and pressure pipe 20 moving up and down, prevent the bendable pipe 17 from being disordered, knotting, preferably, two groups of telescopic frames 42 are oppositely arranged in the pipeline placing box 40, each telescopic frame 42 is composed of a plurality of guard plates 421 hinged end to end, the corresponding hinged parts of the two groups of telescopic frames 42 are connected through connecting rods 422, the guard plate 421 at one end of each telescopic frame 42 is hinged with the position of the corresponding fixed bendable pipe 17 on the side wall of the pipeline placing box 40, the connecting rod 422 at any side of each telescopic frame 42 extends out of the guard plate 421, second slide ways 43 are arranged at the two ends of each telescopic frame 42 corresponding to the positions of the connecting rods 422 extending out of the guard plates 421, the second slide ways 43 are vertically and fixedly arranged in the pipeline placing box 40, the connecting rods 422 extending out of the guard plates 421 can be arranged in the second slide ways 43 in a vertically sliding manner, and the guard plates at the other ends of the telescopic frames 42 are hinged with; the bendable pipe 17 is bent according to the shape formed by connecting the guard plates 421 of the telescopic frame 42, the bendable pipe 17 is arranged inside the telescopic frame 42 in a bending way corresponding to the guard plates 421, and the connecting rod 422 is arranged inside the bending position of the bendable pipe 17. In the process of height change of the transit box 22 and the pressure pipe 20, the first transverse pipe 23 and the second transverse pipe 24 drive the two groups of telescopic frames 42 to extend or contract, the connecting rods 422 extending out of the protective plates 421 can be arranged in the second slide ways 43 in a vertically sliding manner, so that the two groups of telescopic frames 42 move more stably, the bendable pipe 17 is clamped between the protective plates 421 which are arranged oppositely, the bendable pipe 17 is constrained in a fixed space, and disorder is prevented; the shape that the backplate 421 that connects into according to the expansion bracket 42 through the pipe 17 that can buckle is buckled, and the pipe 17 that can buckle corresponds backplate 421 and is the broken line type setting inside expansion bracket 42, and connecting rod 422 is located the position of buckling of the pipe 17 that can buckle inside, makes the pipe 17 that can buckle stretch out or contract according to stretching out or contracting of two sets of expansion brackets 42 in step or contract, makes the pipe 17 that can buckle stretch out or contract more stably, reduces the pipeline and places the volume of case 40.
It should be understood that the above examples are only for clarity of illustration and are not intended to limit the embodiments. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And obvious variations or modifications therefrom are within the scope of the invention.

Claims (5)

1. Intestinal hydrotherapy apparatus, characterized by comprising: the water pump type water heater comprises a water tank (10), a circulating water pump (11) and a pressure pipe (20), wherein a water outlet at the bottom of the water tank (10) is connected with the circulating water pump (11), a water outlet of the circulating water pump (11) is connected with the pressure pipe (20) through a pipeline, and the topmost height of the pressure pipe (20) is higher than that of the circulating water pump (11) and can be adjusted up and down;
the top end of the pressure pipe (20) is provided with a first overflow port (21), and the first overflow port (21) is connected with the top of the water tank (10) through a pipeline; a second overflow port (16) is arranged at the top of the water tank (10), and the second overflow port (16) is connected with a pipeline and communicated with the outside;
a transfer case (22) is connected between the circulating water pump (11) and the pressure pipe (20), and the top of the transfer case (22) is communicated with the outside; the height of the transfer box (22) is higher than that of the pressure pipe (20), the top of the transfer box (22) is communicated with a water outlet of the circulating water pump (11), and the bottom of the transfer box (22) is communicated with the pressure pipe (20) through a pipeline;
the transfer case (22) is positioned right above the pressure pipe (20), a side water inlet of the transfer case (22) is connected with a first transverse pipe (23), the first transverse pipe (23) is communicated with a water outlet of the circulating water pump (11) through a pipeline, a first overflow port (21) on the side surface of the pressure pipe (20) is connected with a second transverse pipe (24), and the second transverse pipe (24) is connected with the top of the water tank (10) through a pipeline; a supporting rod (25) is connected between the first transverse pipe (23) and the second transverse pipe (24), an expansion rod (26) is arranged right below the supporting rod (25), and the expansion end of the expansion rod (26) is connected with the lower end of the supporting rod (25);
the end parts of the first transverse pipe (23) and the second transverse pipe (24) are respectively provided with a sliding block (27), and the first transverse pipe (23) and the second transverse pipe (24) both penetrate through the sliding blocks (27); the side of transfer case (22) and manometer pipe (20) sets up the pipeline and places case (40), the side that case (40) were placed to the pipeline corresponds first violently pipe (23) and second violently pipe (24) sets up vertical first slide (41), slider (27) set up in first slide (41) and can slide from top to bottom, the pipeline that the delivery port of circulating water pump (11) and second overflow mouth (16) are connected is pipe (17) of can buckling, pipe (17) of can buckling are fixed on the side that case (40) are placed to the pipeline and first slide (41) is relative.
2. The intestinal hydrotherapy device according to claim 1, further comprising a controller (30), wherein a water level sensor (31) is disposed inside the water tank (10), the water inlet of the water tank (10) is connected to the water inlet solenoid valve (12), the water level sensor (31) is electrically connected to the controller (30), and the water inlet solenoid valve (12) is electrically connected to the controller (30).
3. The intestinal hydrotherapy device according to claim 2, wherein a flow dividing solenoid valve (13) and a water outlet solenoid valve (14) are sequentially connected between the circulating water pump (11) and the pressure pipe (20) through a pipeline, the circulating water pump (11) is connected with a water inlet of the flow dividing solenoid valve (13), the water outlet solenoid valve (14) is connected with one water outlet of the flow dividing solenoid valve (13), the other water outlet of the flow dividing solenoid valve (13) is connected with the bottom of the water tank (10), and a heater (15) is arranged between the other water outlet of the flow dividing solenoid valve (13) and the bottom of the water tank (10);
a first temperature sensor (32) is arranged in the water tank (10), and the first temperature sensor (32) is connected with the controller (30);
a second temperature sensor (33) is arranged between a water inlet of the shunt electromagnetic valve (13) and the circulating water pump (11), the second temperature sensor (33) is connected with the controller (30), and the shunt electromagnetic valve (13), the water outlet electromagnetic valve (14) and the heater (15) are respectively connected with the controller (30).
4. The enteral hydrotherapy device according to claim 1, wherein an ultraviolet sterilization device is provided in the water tank (10), and a filter is provided at an inlet of the water tank (10).
5. The intestinal hydrotherapy device according to claim 1, wherein two groups of telescopic frames (42) are oppositely arranged inside the pipeline placing box (40), each telescopic frame (42) is composed of a plurality of guard plates (421) hinged end to end, the corresponding hinged parts of the two groups of telescopic frames (42) are connected through connecting rods (422), the connecting rod (422) on any side of the telescopic frames (42) extends out of the guard plates (421), second slide ways (43) are arranged at the two ends of the telescopic frames (42) corresponding to the positions of the connecting rods (422) extending out of the guard plates (421), the second slide ways (43) are vertically and fixedly arranged inside the pipeline placing box (40), the connecting rods (422) extending out of the guard plates (421) can be arranged in the second slide ways (43) in a vertically sliding manner, the guard plates (421) on one end part of the telescopic frames (42) are hinged with the positions of the side walls of the pipeline placing box (40) corresponding to the fixed folding pipes (17), a guard plate (421) at the other end of the expansion bracket (42) is hinged with the end of the second transverse pipe (24); the bendable pipe (17) is bent according to the shape formed by connecting the guard plates (421) of the telescopic frame (42), the bendable pipe (17) is arranged inside the telescopic frame (42) in a bending mode corresponding to the guard plates (421), and the connecting rod (422) is located inside the bending position of the bendable pipe (17).
CN201810680960.5A 2018-06-27 2018-06-27 Intestinal hydrotherapy equipment Active CN108744109B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810680960.5A CN108744109B (en) 2018-06-27 2018-06-27 Intestinal hydrotherapy equipment

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Application Number Priority Date Filing Date Title
CN201810680960.5A CN108744109B (en) 2018-06-27 2018-06-27 Intestinal hydrotherapy equipment

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CN114632211A (en) * 2020-12-15 2022-06-17 广州丽万洁科技有限公司 Physical nature therapy intestinal hydrotherapy machine
CN114558184A (en) * 2021-04-30 2022-05-31 广州丽万洁科技有限公司 Storage type intestinal ecological instrument and application thereof

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CN207286383U (en) * 2017-03-13 2018-05-01 杭州大力神医疗器械有限公司 Colon hydrotherepeutic instrument intelligence control system

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CN104998314A (en) * 2015-06-24 2015-10-28 刘崇恺 Washing system for urinary surgery
CN205549107U (en) * 2016-02-26 2016-09-07 江苏省省级机关医院 Hand -held type enema device
CN206761978U (en) * 2016-12-30 2017-12-19 北京天天一泉净水设备股份有限公司 A kind of intestines treat machine
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