Hand held cleaner
Technical field
The present invention relates to a kind of hand held cleaner is and in particular to a kind of hand held cleaner with cyclone separator component.
Background technology
The hand held cleaner with cyclone separator component generally includes flow generator assembly, including the intake line with suction inlet, cyclone separator means, power supply, handle, filter etc..In prior art, the layout type of these parts usually as disclosed in CN101489454B, that is,:1st, flow generator 35 and power supply 32 are respectively positioned at the upper and lower end of handle 28;2nd, filter 42 is located between the flow generator in cyclone separator means and main body;3rd, cyclone separator and main body are arranged generally in a horizontal direction.
Although this arrangement mode facilitates user to hold vacuum cleaner, still suffer from some drawbacks, when cyclone separator has multistage in such as CN101489454B, its volume is larger;When and for example the flow generator of cyclone separator and main body is arranged in the horizontal direction, the gas channel between cyclone separator and flow generator is longer and airflow direction changes, and reduces current rate entering cyclone separator etc..
Content of the invention
In order to solve the above problems, it is an object of the invention to provide a kind of compact conformation, the powerful hand held cleaner of suction.
For achieving the above object, a kind of hand held cleaner of an embodiment of the present invention includes:Intake line, has longitudinal axis;Flow generator assembly, it produces the air-flow along the flowing of described intake line;Cyclone separator component, is communicated with described intake line, for making the gentle flow separation of the dust of suction;Filter assemblies, are arranged in hand held cleaner;Power supply module, to described flow generator assembly power supply;Handle, grips for user, and described flow generator assembly and described cyclone separator component are along perpendicular to the arrangement of the direction of described longitudinal axis.
Preferably, described handle is arranged in the side of described flow generator assembly and described cyclone separator component along described longitudinal axis direction.
Preferably, one end of described handle connects described filter assemblies, and the other end connects described power supply module.
Preferably, described filter assemblies connect described flow generator assembly, and described flow generator assembly arranges along described longitudinal axis direction.
Preferably, described intake line is located at the opposite side of described cyclone separator component.
Preferably, described cyclone separator component is single cone multistage filtering formula or single-stage filtering type.
Preferably, described flow generator assembly is located at top or the bottom of cyclone separator component.
Preferably, described filter assemblies are removably disposed in hand held cleaner.
Preferably, cyclone separator component has upstream cyclone and downstream cyclonic separator, and downstream cyclonic separator is in upstream cyclone.
Compared to prior art, the present invention passes through flow generator and the cyclone separator that setting is arranged up and down, makes hand held cleaner integral layout more compact;By directly connection flow generator and cyclone separator, make vacuum cleaner suction losses minimum.
Brief description
Fig. 1 is the schematic diagram of the hand held cleaner of the first embodiment of the present invention.
Fig. 2 is the schematic diagram of the hand held cleaner of the second embodiment of the present invention.
Fig. 3 is the schematic diagram of the hand held cleaner of the third embodiment of the present invention.
Fig. 4 is the schematic diagram of the hand held cleaner of the fourth embodiment of the present invention.
Wherein:1st, flow generator assembly;2nd, intake line;3rd, cyclone separator component;4th, power supply module;5th, handle;6th, trigger switch;7th, filter assemblies;8th, air outlet;Y, longitudinal axis.
Specific embodiment
In order that the object, technical solutions and advantages of the present invention are clearer, describe the present invention with specific embodiment below in conjunction with the accompanying drawings.
Fig. 1 is the first embodiment of the present invention.As illustrated, hand held cleaner includes flow generator assembly 1, intake line 2, cyclone separator component 3, power supply module 4, handle 5, trigger switch 6, filter assemblies 7.Intake line 2 has longitudinal axis Y, and described intake line 2 has suction inlet.On the basis of longitudinal axis Y, on the upside of the Fig. 1 in its vertical direction, direction is the top of hand held cleaner, identical in figure 2 below to Fig. 4.Flow generator assembly 1 is used for producing the air-flow along the flowing of described intake line.Cyclone separator component 3 is communicated with described intake line 2, and for making the gentle flow separation of the dust of suction, in the present embodiment, cyclone separator component is single cone multistage filtering formula, and its concrete structure is known to those skilled in the art, repeats no more.Power supply module 4 is powered to described flow generator assembly 1.Handle 5 supplies user to grip, and is provided with trigger switch 6, and trigger switch 6 is used for for operator's operation, the selectable flow generator starting or closing hand held cleaner.
The direction arrangement of flow generator assembly 1 and cyclone separator component 3 Y perpendicularly to the longitudinal axis, in the present embodiment, flow generator assembly 1 is located at the top of cyclone separator component 3, and that is, they are arranged above and below.Further, flow generator assembly 1 and cyclone separator component 3 directly communicate, and centre is not provided with defecator such as filter assemblies 7.
Here of the present invention is emphasized, flow generator assembly 1 is directly arranged at the top of cyclone separator component 3, make that the gas channel between flow generator assembly 1 and cyclone separator component 3 is the shortest and airflow direction does not change, loss of vacuum can be reduced, so as to the volume and weight of maximum reduction flow generator, promote miniaturization and the lightweight of hand held cleaner.
Handle 5 is arranged in the side of described flow generator assembly 1 and described cyclone separator component 3 along longitudinal axis Y-direction.Even flow generator assembly 1 and described cyclone separator component 3 are regarded as a main body being combined into, then handle 5 and this main body arrange along longitudinal axis Y-direction.And, one end of handle 5 connects filter assemblies 7, the other end connects power supply module 4, and handle 5 passes through filter assemblies 7 and power supply module 4 is connected in main body;And, filter assemblies 7 connect flow generator assembly 1, and flow generator assembly 1 axis Y-direction arrangement vertically;And power supply module 4 connects cyclone separator component 3.Or, handle 5, power supply module 4 and filter assemblies 7 constitute an entirety, to be connected to flow generator assembly 1 and the main body of described cyclone separator component 3 combination.Preferably, filter assemblies 7 are removably disposed in hand held cleaner, facilitate user's cleaning or change filter assemblies.
In the present embodiment, cyclone separator component 3 has upstream cyclone and downstream cyclonic separator, and downstream cyclonic separator is located at the inside of upstream cyclone, thus reducing the height of cyclone separator component 3.And intake line 2 is located at the opposite side of cyclone separator component 3 in the present embodiment, relative with handle 5 side.
Fig. 2 is the second embodiment of the present invention.As illustrated, its structure and first embodiment are close, difference is that its cyclone separator component 3 is single-stage filtering type.Other repeat no more.
Fig. 3 is the third embodiment of the present invention.As illustrated, its structure and first embodiment are close, difference is that its flow generator assembly 1 is located at the lower section of cyclone separator component 3.Accordingly, the position of filter assemblies 7 also therewith flow generator assembly 1 come lower section, between handle 5 and flow generator assembly 1, specifically, the lower end of handle 5 connects power supply module 4, power supply module 4 is connected in main body, adjacent with filter assemblies 7, is additionally provided with power supply module 4 between filter assemblies 7 and handle 5.The upper end of handle 5 is connected to cyclone separator component 3.Other repeat no more.
Fig. 4 is the fourth embodiment of the present invention.As illustrated, its structure and first embodiment are close, difference is that filter assemblies 7 are arranged between flow generator assembly 1 and cyclone separator component 3.One end of handle is connected with flow generator assembly 1, and this one end is provided with air outlet 8.Other repeat no more.
The a series of detailed description of those listed above is only for illustrating of the feasibility embodiment of the present invention; they simultaneously are not used to limit the scope of the invention, and all equivalent implementations made without departing from skill spirit of the present invention or change should be included within the scope of the present invention.