CN219353737U - Self-cleaning bathtub with swirling flow cleaning and air drying system - Google Patents
Self-cleaning bathtub with swirling flow cleaning and air drying system Download PDFInfo
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- CN219353737U CN219353737U CN202320061272.7U CN202320061272U CN219353737U CN 219353737 U CN219353737 U CN 219353737U CN 202320061272 U CN202320061272 U CN 202320061272U CN 219353737 U CN219353737 U CN 219353737U
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- bathtub
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- air drying
- air
- self
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B40/00—Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers
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Abstract
The utility model relates to the technical field of bathroom equipment, in particular to a self-cleaning bathtub with a swirling flow cleaning and air drying system, which solves the technical problems of time and labor waste in cleaning after the bathtub is idle in the prior art, and specifically adopts the following scheme: the outer edge of the bathtub body opening is provided with an outer edge connecting part, and the outer edge connecting part forms a tubular channel adapting to the shape of the bathtub opening; the plurality of jet pipe assemblies are connected to the outer edge connecting part, and the output end of each jet pipe assembly and a straight line perpendicular to the bottom of the bathtub body form a preset angle; the cleaning air drying output assembly can be communicated with the tubular passage to convey water flow or cleaning wind to the tubular passage; in addition, the bathtub also comprises an electronic flushing control system, and the electronic flushing control system is particularly composed of a timer and an algorithm controller, so that maintenance after bath can be carried out on the bathtub, swirling flushing is realized, and then air drying is carried out, so that comprehensive experience is better.
Description
Technical Field
The utility model relates to the technical field of bathroom equipment, in particular to a self-cleaning bathtub with a swirling flow cleaning and air drying system.
Background
With the gradual increase of the residence area of people, the design of residential buildings in the washroom not only realizes the dry-wet separation, but also is provided with a bathtub for improving the life quality; the bathtub is more popular in hotels, hotels and folk-custom, and improves the quality of life for people's leisure life.
In the prior art, the bathtub is used in a more practical way, so that the current life rhythm of people is fast, the practical bathtub is not used all the time, when the bathtub is idle, if the bathtub is lack of effective maintenance, ash or caking can fall in the bathtub, the bathtub can be better used after cleaning, the bathtub cleaning is not only time-consuming and labor-consuming, but also the common practice of people is to clean after water storage, thus the waste of water can be more easily caused, and therefore, the prior art lacks a self-cleaning bathtub capable of effectively cleaning the bathtub.
Disclosure of Invention
The utility model aims to solve the technical problems that cleaning is time-consuming and labor-consuming after the bathtub is idle in the prior art, and provides a self-cleaning bathtub with a swirling flow cleaning and air drying system.
In order to solve the technical problems, the technical scheme of the utility model is as follows:
a self-cleaning bathtub with a swirling flow cleaning and air drying system, comprising: the bathtub body is provided with an outer edge connecting part on the outer edge of the bathtub opening, and the outer edge connecting part forms a tubular channel adapting to the shape of the bathtub opening;
a plurality of jet pipe assemblies which are connected to the outer edge connecting part, are arranged on the first position side of the bathtub body, and can be communicated with the tubular passage;
the output end of each of the jet pipe assemblies 20 is inclined in a predetermined direction as viewed in a top view so as to be capable of jetting water to form a swirling flow in the bathtub;
when seen in a cross-sectional direction, the output end of each jet pipe assembly and a straight line perpendicular to the bottom of the bathtub body form a preset angle; and
a purge air dryer output assembly capable of communicating with the tubular passage to deliver a flow of water or purge air thereto; or alternatively
The water flow pressurized by the purge wind.
Specifically, the method also comprises the following steps:
an electronic flush control system;
the electronic flush control system includes:
a timer operated by a bathtub cleaning button;
the timer is connected with an algorithm controller, and a control end of the water valve, a control end of the air pump, a control end of the detergent valve and a control end of the water drain valve are inserted in the algorithm controller.
Specifically, one end of the tubular channel is connected with an inlet pipe;
the cleaning and air drying output assembly comprises a tee joint part;
the inlet pipe is connected with a tee joint component.
Specifically, the tee component includes:
the body part is provided with a first connecting pipe and a second connecting pipe at two ends respectively;
the first adapter tube and the second adapter tube are coaxially arranged;
the first connecting pipe is connected to the inlet pipe through a flange;
and a third connection pipe which is connected to the body part in an inclined manner, and the second end of which is arranged towards the direction of the second connection pipe.
Specifically, wash air-dry output subassembly still includes:
an air duct having a first end connected to the third adapter and a second end having an open mouth;
an air valve and an air pump are arranged on the air pipeline.
Specifically, wash air-dry output subassembly still includes:
the first end of the water pipeline is connected with the second connecting pipe, and the second end of the water pipeline is connected with the water bus;
the water pipeline is provided with a water valve.
Specifically, when the water flow is pressurized by the cleaning wind, the pressure of the cleaning wind is greater than that of the water flow, and the pressure of the water flow is 0.45-0.6 times that of the cleaning wind;
the flow rate of the cleaning wind is smaller than the flow rate of the water flow.
Specifically, a plurality of connection ports are formed in the outer edge connection portion, and the direction of the connection ports is the output direction of the jet pipe assembly.
Specifically, the ejector tube assembly includes:
a connecting portion threadably received within the connecting port hole;
and the injection pipe is communicated with the connecting part, and a nozzle is arranged on the injection pipe.
The utility model has the following beneficial effects:
to sum up, this design not only can be to the maintenance after the bathtub is bathed, air-dries, can also wash when idle the use once more for a long time, also can cooperate the rivers pressure boost to give the bather more diversified experience with wind, and the function is more various, experiences better.
Drawings
The utility model is described in further detail below with reference to the drawings and the detailed description.
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic top view of the present utility model;
FIG. 3 is a schematic view of the structure of the ejector tube of the present utility model;
FIG. 4 is a schematic view of a detergent valve arrangement of the present utility model;
FIG. 5 is a schematic diagram of the configuration of the electronic flush control system of the present utility model;
fig. 6 is a diagram of an embodiment of the flushing operation of the electronic flushing control system of the present utility model.
Reference numerals in the drawings denote:
the bathtub body 10, the outer edge connecting part 110, the jet pipe assembly 20, the cleaning and air drying output assembly 30 and the tubular channel 101;
the water discharge port 11, the inlet pipe 31, the three-way component 32, the body part 320, the first connecting pipe 321, the second connecting pipe 322 and the third connecting pipe 333;
an air pipe 340, a water pipe 350, a connection port 111, a connection portion 21, a spray pipe 22, and a nozzle 23;
water valve W1, air valve W2, air pump W3, detergent valve W4, drain valve W5.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, based on the embodiments of the utility model, which a person of ordinary skill in the art would obtain without inventive faculty, are within the scope of the utility model; it should be noted that, for convenience of description, in the present application, "left side" is "first end", "right side" is "second end", "upper side" is "first end", and "lower side" is "second end" in the current view, and the purpose of this description is to clearly express the technical solution, and should not be construed as unduly limiting the technical solution of the present application.
The utility model provides a self-cleaning bathtub with a swirling flow cleaning and air drying system, which solves the technical problems of time and labor waste in cleaning after the bathtub is idle in the prior art, and referring to fig. 1-3, the self-cleaning bathtub with the swirling flow cleaning and air drying system comprises: the bathtub body 10 is provided with an outer edge connecting part 110 on the outer edge of the bathtub opening, and the outer edge connecting part 110 forms a tubular channel 101 adapting to the shape of the bathtub opening; a plurality of jet pipe assemblies 20 connected to the outer edge connection portion 110, arranged at the first position side of the bathtub body 10, and capable of communicating with the tubular passage 101; the first position side specifically refers to the half-turn extent of the tub body 10 on the first side in fig. 1, the other side being left to the bather as a back rest;
the output end of each of the jet pipe assemblies 20 is inclined in a predetermined direction as viewed in a top view so as to be capable of jetting water to form a swirling flow in the bathtub; in particular embodiments, the output end of each jet stack assembly 20 is preferably inclined clockwise and at the same predetermined angle of inclination so that a swirling water stream is ejected;
the output end of each jet pipe assembly 20 forms a preset angle with the straight line of the jet pipe assembly 20 perpendicular to the bottom of the bathtub body 10 when seen in a cross-sectional direction; and
a purge air dryer output assembly 30 capable of communicating with the tubular passage 101 to deliver a flow of water or purge air to the tubular passage 101; or a water flow pressurized by the purge wind.
Thus, the present tub may deliver a water flow through the jet stack assembly 20, which, due to the inclined design, creates an impact on the tub wall that is more likely to clean the dirt from the tub wall, particularly because the actual flush water flow is swirling based on this principle design;
in addition, the air can be independently ventilated, and the air can be conveyed by the jet pipe assembly 20, so that the aim of air drying after cleaning is fulfilled, and the maintenance is convenient;
in addition, wind and water can be mixed, the impact force of water flow is improved, the shower can be conveniently washed, the shower can be used when being used for bathing, small waves are formed in the bathtub, and better experience is given to bathers.
In one embodiment, referring to FIGS. 1 and 2, a bathtub body 10 has a drain 11; the bottom surface of the bathtub body 10 is inclined in the direction of the drain 11 so that the drain 11 can be regarded as the lowest point of the bathtub body 10; this facilitates rapid drainage.
In addition, in order to improve the automation degree, the technical scheme can also be optionally configured with an electronic flushing control system, as shown in fig. 5 and 6, the electronic flushing control system comprises: a timer 41 whose operation is controlled by a bathtub cleaning button 42; the timer 41 is connected with an algorithm controller 43, and the algorithm controller 43 is interposed with a control end of a water valve W1, a control end of an air valve W2, a control end of an air pump W3, a control end of a detergent valve W4, and a control end of a drain valve W5.
The specific working principle is as follows: the water valve W1, the air valve W2, the air pump W3, the detergent valve W4 and the drain valve W5 are all automatic control valves, and flushing and running modes can be set through an algorithm controller, as shown in figure 6, wherein Y represents opening and N represents closing; the connecting lines of the detergent sprayer may also be provided separately, but it should be noted that the detergent sprayer is provided for the purpose of producing a more pronounced cleaning effect.
In one embodiment, referring to FIGS. 1-3, an inlet tube 31 is connected to one end of the tubular passage 101; the purge air dryer output assembly 30 includes a three-way member 32; the inlet tube 31 is connected to a tee 32.
In a detailed configuration, the tee member 32 includes: a body part 320, two ends of which are respectively provided with a first connecting pipe 321 and a second connecting pipe 322; the first adapter tube 321 and the second adapter tube 322 are coaxially arranged; the first connection pipe 321 is connected to the inlet pipe 31 through a flange; a third adapter tube 333, which is connected to the body 320 in an inclined manner and whose second end is arranged in the direction of the second adapter tube 322.
In one embodiment, referring to FIGS. 1-3, the purge air dryer output assembly 30 further includes: an air duct 340 having a first end connected to the third adapter 333 and a second end having an open mouth; an air valve W2 and an air pump W3 are provided on the air pipe 340.
Specifically, the cleaning and air drying output assembly 30 further includes: a water pipe 350 having a first end connected to the second adapter 322 and a second end connected to the water bus; the water pipe 350 is provided with a water valve W1.
In a specific embodiment, referring to fig. 1-3, when the water flow is pressurized by the purge wind, the pressure of the purge wind is greater than the pressure of the water flow, and the pressure of the water flow is 0.45-0.6 times the pressure of the purge wind;
the flow rate of the purge wind is smaller than the flow rate of the water flow.
It should be noted that: when the water flow is pressurized by the cleaning wind, the pressure of the cleaning wind is greater than that of the water flow, and the pressure of the water flow is 0.45-0.6 times of that of the cleaning wind; the flow rate of the cleaning wind is smaller than the flow rate of the water flow; the design ensures that the cleaning wind does not obstruct the water flow due to excessive pressure and flow; the pressure of the current building public water is about 0.4-0.45Mpa.
Specifically, the outer edge connecting portion 110 is provided with a plurality of connection ports 111, and the direction of the plurality of connection ports 111 is the output direction of the ejector tube assembly 20.
Specifically, the jet stack assembly 20 includes:
a connection portion 21 that can be screwed into the hole of the connection port 111;
and a jet pipe 22 which communicates with the connection portion 21, and a further nozzle 23 is provided on the jet pipe 22.
To sum up, this design not only can be to the maintenance after the bathtub is bathed, air-dries, can also wash when idle the use once more for a long time, also can cooperate the rivers pressure boost to give the bather more diversified experience with wind, and the function is more various, experiences better.
It is apparent that the above examples are given by way of illustration only and are not limiting of the embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. While still being apparent from variations or modifications that may be made by those skilled in the art are within the scope of the utility model.
Claims (9)
1. The utility model provides a take self-cleaning bathtub of swirling flow cleaning and air-drying system which characterized in that includes:
the bathtub body (10) is provided with an outer edge connecting part (110) on the outer edge of the bathtub opening, and the outer edge connecting part (110) forms a tubular channel (101) adapting to the shape of the bathtub opening;
a plurality of jet pipe assemblies (20) connected to the outer edge connection portion (110), arranged on the first position side of the bathtub body (10), and capable of communicating with the tubular passage (101);
the output end of each jet pipe assembly (20) is inclined in a preset direction when seen in a top view so as to enable jet water flow to form swirling flow in the bathtub;
the output end of each jet pipe assembly (20) forms a preset angle with a straight line of the jet pipe assembly (20) perpendicular to the bottom of the bathtub body (10) when seen in a cross-sectional direction; and
a purge air-dry output assembly (30) capable of communicating with the tubular passage (101) to deliver a flow of water or purge air to the tubular passage (101); or alternatively
The water flow pressurized by the purge wind.
2. A self-cleaning bathtub with a swirling flow cleaning and air drying system according to claim 1, further comprising:
an electronic flush control system;
the electronic flush control system includes:
a timer (41) whose operation is controlled by a bathtub cleaning button (42);
the timer (41) is connected with an algorithm controller (43), and a control end of a water valve (W1), a control end of an air valve (W2), a control end of an air pump (W3), a control end of a detergent valve (W4) and a control end of a water drain valve (W5) are inserted into the algorithm controller (43).
3. A self-cleaning bathtub with swirl washing and air drying system according to claim 2, characterised in that one end of the tubular channel (101) is connected with an inlet pipe (31);
the cleaning and air drying output assembly (30) comprises a three-way component (32);
the inlet pipe (31) is connected with a tee joint part (32).
4. A self-cleaning bathtub with a swirl washing and air drying system as claimed in claim 3, characterised in that said tee fitting (32) comprises:
a body part (320), wherein a first connecting pipe (321) and a second connecting pipe (322) are respectively arranged at two ends of the body part;
the first connection tube (321) and the second connection tube (322) are arranged coaxially;
the first connecting pipe (321) is connected to the inlet pipe (31) through a flange;
and a third connecting tube (333) which is connected to the body part (320) in an inclined manner and the second end of which is arranged toward the second connecting tube (322).
5. A self-cleaning bathtub with a swirl washing and air drying system as defined in claim 4, wherein said washing air drying output assembly (30) further comprises:
an air duct (340) having a first end connected to the third adapter (333) and a second end with an open mouth;
an air valve (W2) and an air pump (W3) are arranged on the air pipeline (340).
6. A self-cleaning bathtub with a swirl washing and air drying system as defined in claim 5, wherein said washing air drying output assembly (30) further comprises:
a water pipe (350) having a first end connected to the second connection pipe (322) and a second end connected to a water bus;
a water valve (W1) is arranged on the water pipeline (350).
7. A self cleaning bathtub with a swirling washing and air drying system according to any one of claims 1 to 6, wherein the pressure of the washing wind is greater than the pressure of the water flow when the water flow is pressurized by the washing wind, the pressure of the water flow being 0.45-0.6 times the pressure of the washing wind;
the flow rate of the cleaning wind is smaller than the flow rate of the water flow.
8. A self cleaning bath with a swirl washing and air drying system according to claim 7, characterized in that the outer edge connection part (110) is provided with a plurality of connection ports (111), the opening direction of the connection ports (111) is the output direction of the jet pipe assembly (20).
9. A self-cleaning bathtub with a swirl washing and air drying system as claimed in claim 8, characterised in that said jet stack assembly (20) comprises:
a connection part (21) which can be screwed into the hole of the connection port (111);
and a spray pipe (22) which is communicated with the connecting part (21), wherein a spray nozzle (23) is arranged on the spray pipe (22).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202320061272.7U CN219353737U (en) | 2023-01-09 | 2023-01-09 | Self-cleaning bathtub with swirling flow cleaning and air drying system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320061272.7U CN219353737U (en) | 2023-01-09 | 2023-01-09 | Self-cleaning bathtub with swirling flow cleaning and air drying system |
Publications (1)
Publication Number | Publication Date |
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CN219353737U true CN219353737U (en) | 2023-07-18 |
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CN202320061272.7U Active CN219353737U (en) | 2023-01-09 | 2023-01-09 | Self-cleaning bathtub with swirling flow cleaning and air drying system |
Country Status (1)
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CN (1) | CN219353737U (en) |
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2023
- 2023-01-09 CN CN202320061272.7U patent/CN219353737U/en active Active
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