Micro-bubble shower head
Technical Field
The invention relates to the technical field of shower devices, in particular to a micro-bubble shower head.
Background
The shower is a necessary product of the prior bathroom, saves water and space, and is relatively accordant with the environmental protection concept, when most of the prior shower showers enter the shower head through a pressurizing means, the external air pressure forces the water flow to accelerate and discharge water, but the water pressure is too high to bring the sense of urgency or stabbing pain to people, the prior shower head adopts water to swirl to form vortex in the shower head so that people feel comfortable and relaxed, only the surface of the skin can be cleaned but the inside of skin pores can not be cleaned, the water body is improved through a device for generating micro-nano bubbles, because the micro-nano bubbles generate negative ions when being crushed, and simultaneously generate ultrasonic waves for improving the health condition, the micro-nano bubbles can act on the human body, beautify the skin, promote the health and cure various skin diseases, the skin of people is influenced by air pollution, ultraviolet rays and cosmetic residues, the skin ages day by day, the negative effects of the residues, the micro-nano bubbles enter pores, and after the micro-nano bubbles break, aging substances and dirt are separated from the pores and discharged out of the pores, and meanwhile, sufficient oxygen is provided for the skin to help the skin to metabolize, so that how to solve the problems is a technical problem to be solved by technical personnel in the field.
Disclosure of Invention
Accordingly, the present invention has been made in view of the above problems, and it is an object of the present invention to provide a micro bubble showerhead which can solve the above problems, and can achieve the above object by the following means.
The invention provides a micro-bubble shower head, which comprises a shell, a water inlet pipe, an air inlet, an inner cover, a flow dividing cover, a water sealing block, a knob and a spray hole, wherein the shell is provided with a water inlet pipe and a water outlet pipe;
the shell is a hollow cylinder;
the water inlet pipe is arranged in the center of the upper bottom surface of the shell, the upper end of the water inlet pipe is cylindrical, the lower end of the water inlet pipe is of a hollow round platform structure, and the round platform structure penetrates through the upper bottom surface of the shell;
the air inlets are a plurality of air inlets arranged on the outer side of the water inlet pipe on the upper bottom surface of the shell;
the inner cover is arranged in the shell in a hollow round platform structure, the wide part is connected with an included angle formed by the upper bottom surface and the side wall of the shell, and the narrow part is arranged on the lower bottom surface of the shell;
the reposition of redundant personnel cover is set up inside the inner cover in the shell, include: the water-proof cover is of a hollow round platform structure, a narrow part is arranged on the lower bottom surface of the shell, the water-proof disc is a cylinder, a through hole is formed in the center of the water-proof cover, the lower end of the water-proof cover is provided with an arc-shaped surface extending outwards, an annular groove is formed along the outer side of the through hole, an inner ring of the convex disc semi-annular body is arranged at the upper end of the side wall of the water-proof disc, an outer ring of the convex disc semi-annular body is arranged on the wide part of the water-proof cover, the arc surface of the convex disc and the annular groove on the water-proof disc form an S shape;
the water sealing block is a hemisphere and is movably arranged in the through hole of the water distribution disc, water flow impacts the spherical surface of the water sealing block to form a water film, the water film is scattered towards the periphery to impact the arc-shaped surface at the lower end of the through hole to form micro-nano bubble mixed liquid;
the knob is arranged outside the lower bottom surface of the shell and is connected with the plane of the water sealing block through a shaft;
the spray holes are formed in the lower bottom surface of the shell.
In one embodiment, the arc-shaped surface of the water sealing block is provided with a bulge.
In one embodiment, a protrusion is provided in the annular groove on the water diversion disc.
In one embodiment, the knob is provided in a pull type.
In one embodiment, the inner wall of the water-resisting cover is provided with a bulge.
In one embodiment, the number of air inlets is at least one.
In one embodiment, the lower bottom surface of the housing is configured to be removable.
The invention has the beneficial effects that:
1. according to the invention, micro-nano bubbles are formed after water flow is sprayed out through the structural characteristics, the interior of skin pores can be cleaned, and deposited grease and the like are carried away from the skin by utilizing charges on the surfaces of the bubbles, so that deep cleaning of the skin is realized.
2. The invention improves the gas-liquid mixing effect through the wall attachment effect.
3. The invention has simple structure, small volume and simple operation.
Drawings
Fig. 1 is a sectional view showing the overall structure of the present invention.
Fig. 2 is a schematic view of the overall structure of the flow distribution cover of the present invention.
Detailed Description
Preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings, so that those embodiments can be easily implemented by those having ordinary skill in the art to which the present invention pertains. However, the present invention may be embodied in many different forms and is not limited to the embodiments described below. In addition, in order to more clearly describe the present invention, components not connected to the present invention will be omitted from the drawings.
As shown in figure 1, the invention provides a micro-bubble shower head, which comprises a shell 1, a water inlet pipe 2, a gas inlet 3, an inner cover 4, a diversion cover 5, a water sealing block 6, a knob 7 and a spray hole 8;
the shell 1 is a hollow cylinder;
the water inlet pipe 2 is arranged in the center of the upper bottom surface of the shell 1, the upper end of the water inlet pipe 2 is cylindrical, the lower end of the water inlet pipe 2 is of a hollow round platform structure, and the round platform structure penetrates through the upper bottom surface of the shell 1;
the air inlets 3 are a plurality of air inlets arranged on the outer side of the water inlet pipe 2 on the bottom surface of the shell 1;
the inner cover 4 is a hollow round platform structure and is arranged in the shell 1, the wide part is connected with an included angle formed by the upper bottom surface and the side wall of the shell 1, and the narrow part is arranged on the lower bottom surface of the shell 1;
the flow dividing cover 5 is disposed inside the inner cover 4 in the housing 1, as shown in fig. 2, and includes: the water-proof cover 51 is of a hollow circular truncated cone structure, the narrow part of the water-proof cover is arranged on the lower bottom surface of the shell 1, the water-proof disc 52 is a cylinder, the center of the water-proof disc 52 is provided with a through hole 521, the lower end of the water-proof disc is provided with an arc-shaped surface extending outwards, an annular groove 522 is arranged along the outer side of the through hole 521, the inner ring of the semi-annular body of the convex disc 53 is arranged at the upper end of the side wall of the water-proof disc 52, the outer ring of the semi-annular body of the convex disc 53 is arranged on the wide part of the water-proof cover 51, the upper arc surface of the convex disc 53 and the annular groove 522 on the water;
the water sealing block 6 is hemispheroid and is movably arranged in the through hole 521 of the water distribution disc 52, water flow impacts the spherical surface of the water sealing block 6 to form a water film, the water film is scattered to the periphery to impact the arc-shaped surface at the lower end of the through hole 521 to form micro-nano bubble mixed liquid;
the knob 7 is arranged outside the lower bottom surface of the shell 1 and is connected with the plane of the water sealing block 6 through a shaft;
the injection holes 8 are provided on the lower bottom surface of the case 1.
Preferably, as an implementation mode, the arc-shaped surface of the water sealing block 6 is provided with a protrusion, which is beneficial to the formation of micro bubbles.
Preferably, as an implementation mode, the annular groove 522 on the water diversion disc 52 is provided with a bulge, so that more fine bubbles can be formed.
Preferably, the knob 7 is a pull type knob, which is convenient for a bather to use.
Preferably, as an implementation mode, the inner wall of the water-proof cover 51 is provided with a bulge, and water flow impact forms smaller micro-bubbles.
Preferably, as an implementation mode, at least one gas inlet 3 is provided, so that gas-liquid mixing can be satisfied.
Preferably, as an implementation mode, the lower bottom surface of the housing 1 is detachably arranged, so that dirt in the housing 1 can be cleaned conveniently.
The invention principle of the invention is as follows:
when the water flow injection valve is used, water flow enters the shell 1 through the water inlet pipe 2 to form a wall attachment effect, negative pressure is formed at the air inlet 3 to drive air to enter, the knob 7 is rotated to enable the water sealing block 6 to be separated from the through hole 521 on the water distribution disc 52, the water flow impacts the water sealing block 6 to form micro-nano bubble mixed liquid, the micro-nano bubble mixed liquid enters the water separation cover 51 and is ejected through the nozzle hole 8 of the inner ring of the bottom plate, when needed, the knob 7 is rotated to enable the water sealing block 6 to block the through hole 521 on the water distribution disc 52, the water flow forms an S-shaped structure through the upper arc surface of the convex disc 53 and the annular groove 522 on the water distribution disc 52 to impact the bulge 54 on the arc surface of the convex disc 53 to.