Disclosure of Invention
In order to solve the technical problems in the prior art, the utility model aims to provide a multifunctional foot dryer.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
a multifunctional foot dryer comprises a shell, an air outlet pipe and a drying component, wherein:
the shell is provided with an air inlet structure and an adapter;
the drying component is arranged in the shell and is respectively communicated with the air inlet structure and the adapter to form a drying channel;
the air outlet pipe is detachably connected with the adapter;
the shell is provided with a containing groove for placing the air outlet pipe.
Further preferred is: the shell includes epitheca and base, wherein:
the upper shell is provided with a clamping groove, and the base is provided with a buckle;
the base is detachably connected with the clamping groove of the upper shell through the clamping buckle.
Further preferred is: the upper shell comprises a main shell body and a buckle cover, wherein:
the main shell is a cylinder, and the opening surfaces at two ends of the main shell are respectively sealed by the buckle cover and the base;
the bottom of the main shell is provided with an installation groove and the accommodating groove;
the drying component is arranged in the mounting groove.
Further preferred is: the opening of the accommodating groove is arranged towards the base, and the opening of the mounting groove is arranged towards the buckle cover.
Further preferred is: the air outlet pipe is a flexible pipe which can be deformed and stretched;
the air inlet end of the air outlet pipe is detachably connected with the air guide pipe of the adapter.
Further preferred is: the side wall of the shell is provided with through holes, and a plurality of through holes are arranged in a concentrated mode to form the air inlet structure.
Further preferred is: the shell is provided with an air inlet baffle, and the air inlet baffle shields part of the through holes;
an air inlet gap is formed between the air inlet baffle and the shell, and the through hole is communicated with the air inlet gap to form an air inlet channel.
Further preferred is: the air inlet baffle is provided with a bayonet;
the wind guide cover of the adapter is detachably arranged in the shell through the bayonet.
After the technical scheme is adopted, compared with the background technology, the utility model has the following advantages:
according to the utility model, the accommodating groove is arranged in the shell, and the air guide pipe is arranged in the accommodating groove, so that the detachable part assembly is arranged in the shell, the part assembly is effectively collected, the phenomena of part loss and the like are avoided, and the technical problems in the prior art are solved;
the utility model also designs the air inlet baffle, which not only improves the air inlet speed, but also effectively clamps and holds the air guide cover of the adapter, thereby further solving the technical problems in the prior art.
Detailed Description
The product that sets forth among the prior art, its detachable spare part is by dismantling the unable concentrated storage of back, leads to the condition that spare part lost to appear very easily, and the user's of product experiences inadequately in time.
The inventor aims at the technical problems, and through the analysis of reasons, the inventor continuously researches and discovers a multifunctional foot dryer which comprises a shell, an air outlet pipe and a drying component, wherein:
the shell is provided with an air inlet structure and an adapter;
the drying component is arranged in the shell and is respectively communicated with the air inlet structure and the adapter to form a drying channel;
the air outlet pipe is detachably connected with the adapter;
the shell is provided with a containing groove for placing the air outlet pipe.
According to the technical scheme, the accommodating groove is formed in the shell, the air guide pipe is arranged in the accommodating groove, so that the detachable parts are assembled and arranged in the shell, the parts are effectively collected and stored, the phenomena of part loss and the like are avoided, and the technical problems in the prior art are solved.
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
It should be noted that, in the present utility model, terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are all based on the orientation or positional relationship shown in the drawings, and are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the apparatus or element of the present utility model must have a specific orientation, and thus should not be construed as limiting the present utility model.
Examples
As shown in fig. 1, a multifunctional foot dryer 1 is provided with a high-speed fan 300 and a heating ring 400, and high-speed air inlet and high-speed hot air blowing are realized by matching the high-speed fan 300 and the heating ring 400, so that hot air drying can be performed, and the multifunctional foot dryer can be used for human footsteps or air in a small space and other scenes requiring high-speed hot air drying.
Referring to fig. 1 to 5, the multifunctional foot dryer 1 includes a housing 100 and a built-in drying component, the housing 100 provides a certain assembly space, an air inlet structure and an air outlet structure 111 are disposed on the housing 100, and the drying component is mounted from the air inlet structure to the air outlet structure 111 and is disposed in the assembly space of the housing 100 to form a drying channel. Specifically, the housing 100 is a flat polyhedron, and an air inlet structure and an air outlet structure 111 are respectively disposed on two opposite sides of the housing 100; the air inlet structure is a plurality of through holes formed in the casing 100, the through holes are used for communicating an inner cavity of the casing 100 with the outside, so that air is introduced into an assembly space of the casing 100, and the air outlet structure 111 is an adapter 200; the casing 100 is provided with an embedded hole, the adapter 200 is assembled at the embedded hole, the adapter 200 is provided with a ventilation opening, and the ventilation opening is communicated with the inner cavity of the casing 100 and the outside for guiding out the heated air.
As shown in fig. 1 to 5, the adaptor 200 includes a connector, an air outlet filter 500, and an air guide cover, wherein the connector is connected with the housing 100 through a plug, so that the connector is assembled on the housing 100, and the connector is fully distributed with through holes so as to be communicated with two sides of the connector, and when the connector is fixed on the housing 100, the through holes on the connector are communicated with the inner cavity of the housing 100 and the outside; the air outlet filter screen 500 is arranged on the connector base, and the air outlet filter screen 500 covers the through holes of the connector base, so that the blown hot air is filtered; the air guiding cover and the joint seat are mutually buckled, so that the air outlet filter screen 500 is clamped and fixed, the air guiding cover is provided with two ventilation openings, the edges of the two ventilation openings respectively extend along the axial direction to form air guiding pipes 210, and the two air guiding pipes 210 are symmetrically distributed.
Referring to fig. 1 to 5, the housing 100 includes an upper case 110 and a base 120, and the upper case 110 is fastened to the base 120 and detachably connected to the base 120. Specifically, the two opposite sides of the upper shell 110 are respectively provided with the air outlet structure 111 and the air inlet structure, the buckling surfaces of the upper shell 110 and the base 120 are provided with the first clamping groove 101 and the second clamping groove 102, the first clamping groove 101 and the second clamping groove 102 are distributed on different edges of the upper shell 110, the base 120 is provided with the first clamping groove 101 and the second clamping groove 102 corresponding to the first clamping groove 101 and the second clamping groove 122, the first clamping groove 121 is in a reversed J-shaped clamping groove, the first clamping groove 121 stretches into the first clamping groove 101 and is clamped with the first clamping groove 101, the second clamping groove 122 is in an inverted L-shaped clamping groove, the second clamping groove 122 stretches into the second clamping groove 102 and is clamped with the second clamping groove 102, and the upper shell 110 and the base 120 are connected by utilizing the cooperation of the first clamping groove 101 and the first clamping groove 121 and the second clamping groove 102 and the second clamping groove 122.
In detail, as shown in fig. 6 and fig. 7, the upper case 110 includes a main case and a fastening cover 112, the fastening cover 112 is fastened on the main case, the main case includes a bottom and a side wall that are integrally connected, a connecting edge is provided at the periphery of the bottom, the bottom is connected with the side wall by using the connecting edge, the bottom is an inward installation groove, an inner cavity of the installation groove is respectively communicated with an air inlet structure and an air outlet structure 111, and is used for installing the drying assembly, and furthermore, an inner cavity of the installation groove is the assembly space; the first clamping groove 101 and the second clamping groove 102 are both arranged at the bottom of the main shell.
As shown in fig. 4 and 5, the drying assembly includes a high-speed fan 300 and a heating ring 400 that are adjacently disposed, the high-speed fan 300 is disposed near the air inlet structure, the heating ring 400 is disposed near the adapter 200, the high-speed fan 300 is used for sucking air from the air inlet interface, and the air is heated by the heating ring 400 to form hot air and is blown out from the air guide pipe 210 of the adapter 200. Specifically, the heating ring 400 is communicated with the air outlet structure 111 through an air guide cover, and the air guide cover is a horn-like air guide cylinder, so that openings are formed at two ends of the air guide cover, one opening is a small-diameter opening and is communicated with the heating ring 400, and the other opening is a large-diameter opening opposite to and communicated with the adapter 200.
As shown in fig. 4 and 5, the upper case 110 is provided with an air inlet baffle 114, and the air inlet baffle 114 is disposed close to the air inlet structure and shields a portion of the through holes. Specifically, an air inlet gap exists between the air inlet baffle 114 and the buckle cover 112 of the upper shell 110, and the air inlet baffle 114 is communicated with the air inlet gap to form an air inlet channel; because the air inlet baffle 114 shields the through holes in the air inlet structure, air flow entering the shell 100 is guided to the air inlet gap, and the air inlet inner diameter is reduced by the air inlet baffle 114, so that the air inlet flow rate is increased, and the drying efficiency is improved.
As shown in fig. 4 and 5, the air inlet baffle 114 is provided with a U-shaped bayonet 115 with an opening facing the base 120, and one end of the U-shaped bayonet is used for blocking one end of the mounting groove, so that air enters the casing 100 from the air inlet structure and is led into the drying assembly through the air inlet channel; because the U-shaped air inlet baffle 114 is provided with the bayonet 115, the bayonet 115 can effectively clamp the spare adapter 200, or the air guide cover of the existing adapter 200 is hidden in the upper shell 110, so that the adapter is convenient to store and use in different scenes. Specifically, the size of the bayonet 115 satisfies the requirement of accommodating the air guiding cover; in order to increase the air outlet area of the adapter 200, the air guiding cover may be detached from the adapter 200, and the detached air guiding cover is placed in the bayonet 115 of the air inlet baffle 114, so as to avoid the loss of the air guiding cover; in addition, a spare air guiding cover may be assembled in the bayonet 115, and the design of the air guiding pipe 210 of the spare air guiding cover may be consistent or inconsistent with that of the air guiding pipe installed on the casing 100. In this embodiment, the standby air guiding cover is consistent with the structure installed on the micro lesson, and in order to adapt to the structure of the air guiding duct 210 on the air guiding cover, the air inlet baffle 114 can be clamped on the flat plate part between the two air guiding plates of the air guiding cover, so as to fix the air guiding cover.
As shown in fig. 6 and 7, the multifunctional foot dryer 1 further includes an air outlet pipe 600, the air outlet pipe 600 is connected with the air guide pipe 210 on the adapter 200, and guides the emitted high-speed hot air to be guided out directionally, so as to be more suitable for the use requirements of people in specific scenes.
As shown in fig. 6 and 7, the air outlet pipe 600 includes a connection pipe and an air outlet head, the air outlet head is assembled at the air outlet end of the connection pipe, and the air inlet end of the connection pipe is sleeved on the air guide pipe 210 of the adapter 200. The number of the air outlet pipes 600 is matched with the air guide pipes 210 of the adapter 200, in this embodiment, the adapter 200 is provided with two air guide pipes 210, and further the two air outlet pipes 600 are also provided, and the two air outlet pipes 600 are respectively assembled on the two air guide pipes 210. The connecting pipe is a flexible pipe which can be stretched and bent to elastically deform and is used for different use requirements, so that the application range of the connecting pipe is widened.
As shown in fig. 6 and 7, the air outlet pipe 600 is detachably connected with the air guide pipe 210, and the air inlet end of the adapter pipe in the air outlet pipe 600 is adapted to the air guide pipe 210, namely: the air inlet end is sleeved on the air guide pipe 210, so as to realize the detachable connection of the air outlet pipe 600 and the air guide pipe 210.
As shown in fig. 6 and 7, the upper shell 110 of the housing 100 is provided with a receiving cavity, and the air outlet pipe 600 is disposed in the receiving cavity. Specifically, the bottom of the upper shell 110 has the mounting groove, the two sides of the mounting groove are provided with the accommodating grooves 113, the opening direction of the accommodating grooves 113 is opposite to that of the mounting groove, and the bottom and the side wall enclose the accommodating grooves 113 to form accommodating cavities, and the two accommodating cavities are symmetrically distributed. In this embodiment, the two air outlet pipes 600 are respectively disposed in the two accommodating chambers, so as to accommodate the air outlet pipes 600. It should be noted that: the air guide cover is clamped at the air inlet baffle 114, two air guide pipes 210 on the air guide cover are arranged in the two accommodating cavities, the air inlet end of the air outlet pipe 600 is propped against the air guide pipes 210, and the air outlet head of the air outlet pipe 600 is propped against the side wall of the mounting groove.
The bottom of the upper shell 110 in the shell 100 is provided with the mounting groove and the accommodating groove 113 with opposite openings, the mounting groove is used for assembling the drying assembly, the accommodating groove 113 and the side wall are enclosed to form an accommodating cavity, and the accommodating cavity is used for accommodating the air outlet pipe 600, so that the function of embedding the air outlet pipe 600 in the shell 100 is provided, the function of collecting and accommodating parts is provided, the loss of the parts is avoided, and the service life of a product is prolonged.
The present utility model is not limited to the above-mentioned embodiments, and any changes or substitutions that can be easily understood by those skilled in the art within the technical scope of the present utility model are intended to be included in the scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the protection scope of the claims.