CN205145905U - Filter equipment and dust collecting equipment - Google Patents
Filter equipment and dust collecting equipment Download PDFInfo
- Publication number
- CN205145905U CN205145905U CN201520976751.7U CN201520976751U CN205145905U CN 205145905 U CN205145905 U CN 205145905U CN 201520976751 U CN201520976751 U CN 201520976751U CN 205145905 U CN205145905 U CN 205145905U
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- Prior art keywords
- filter
- connecting axle
- air
- operating room
- spiral
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Abstract
The utility model discloses a filter equipment and dust collecting equipment. This filter equipment, including the studio and be located the inside filter in studio, the air -out passageway is connected to the one end of filter, the other end coaxial arrangement connecting axle of filter, spiral plate encircle the connecting axle be at least 1 week 90% so that form the spiral wind channel, be equipped with the inlet air channel who communicates with the spiral wind channel in the connecting axle, the side and the dust collecting chamber intercommunication of studio. Compared with the prior art, the side and the dust collecting chamber intercommunication of this filter equipment's studio, the gaseous spiral wind channel of following gets into the studio, gets into the movement tendency motion of pressing the spiral in the back, and the lateral wall that is close to the studio under the effect of centrifugal force is considered to be worth doing to dirt to along the lateral wall motion, at the here in -process, the side that the studio can be followed to the dirt bits gets into the dust collecting chamber, makes the dirt bits keep away from the filter, lengthens the life of filter, guarantees the dust collection efficiency. The utility model also discloses a dust collecting equipment.
Description
Technical field
The utility model relates to dedusting technology field, particularly relates to a kind of filter.The utility model also relates to a kind of cleaner with above-mentioned filter.
Background technology
Along with the fast development of economic construction, also more and more higher to the requirement of environment, various filter arises at the historic moment, filter general motor High Rotation Speed, produces air negative pressure, draw dust, reach the object of dedusting in the housing of sealing.
Please refer to Fig. 1, Fig. 1 is a kind of structural representation of typical filter, wherein, and the direction of motion of dirt bits when the direction in figure shown in arrow is dust catcher work.
Direction as can be seen from Fig. 1 shown in arrow, in the cleaner of prior art, power motor is communicated with filter 1, air in dust storage chamber 2 is extracted out, in dust storage chamber 2, forms negative pressure, make air and dirt bits under the effect of power motor, successively through sweep-up pipe 3 and air channel, enter dust storage chamber 2, walk around filter 1 and rotate and converge in dust storage chamber 2 gradually by the trend of spiral, reach the object of dust suction.
But along with increasing of dirt bits, the dirt bits collecting dust storage chamber 2 li, easily by the impact of power motor, produce the trend to filter 1 movement, make dirt consider to be worth doing and stick on filter 1, the filter screen of blocking filter 1.So not only can increase the power consumption of power motor, increase the noise of cleaner, reduce efficiency of dust collection; And the service life of filter 1 can be affected, increase the maintenance frequency of filter 1, and increase cleaning cost.
Therefore, how extending the service life of filter, is the current technical issues that need to address of those skilled in the art.
Utility model content
The purpose of this utility model is to provide a kind of filter, in this filter course of work, dirt can be made to consider to be worth doing away from filter, extend the service life of filter.Another object of the present utility model is to provide a kind of cleaner with above-mentioned filter.
For realizing above-mentioned utility model object, the utility model provides a kind of filter, comprise operating room and be positioned at the filter of inside working chamber, one end of described filter connects air-out passage, the other end of described filter coaxially installs connecting axle, spiral plate is at least 1 week 90% to form spiral duct around described connecting axle, is provided with the air intake passage be communicated with described spiral duct in described connecting axle; The side of described operating room is communicated with dust storage chamber.
Alternatively, described spiral plate is provided with baffle plate away from the end of described filter, and the two ends of described baffle plate are all connected with described spiral plate, form the end plate of described spiral duct; The sidewall of the described connecting axle in described spiral duct is provided with opening, air intake passage described in described open communication and described spiral duct.
Alternatively, described connecting axle is the axis body of hollow, and the inside of described connecting axle is described air intake passage, is provided with deep bead between the end of described filter and described connecting axle.
Alternatively, the external diameter of described connecting axle is equal with the external diameter of described filter.
Alternatively, the sidewall of described filter extends to two ends and forms beam barrel respectively, and one end is described air-out passage, and the other end is described air intake passage.
Alternatively, two end faces of described operating room are set in outside described air-out passage and described air intake passage, and the side of described operating room is columnar structured.
Alternatively, the side of described operating room is provided with analyses dirt mouth, described in analyse dirt mouth and be communicated with described dust storage chamber.
Alternatively, two sides of described dust storage chamber are tangent in the side of described columnar structured diameter two ends and described operating room, and two described sides extend to form closed described dust storage chamber.
Alternatively, the side of described dust storage chamber and the side of described operating room are structure as a whole.
The utility model additionally provides a kind of cleaner, comprises power part, also comprises the filter described in above-mentioned any one, and described power part is positioned at air-out passage, and air-flow flows to described power part after entering the filter of described filter.
The filter that the utility model provides, comprise operating room and be positioned at the filter of inside working chamber, one end of filter connects air-out passage, the other end of filter coaxially installs connecting axle, spiral plate is at least 1 week 90% to form spiral duct around connecting axle, is provided with the air intake passage be communicated with spiral duct in connecting axle; The side of operating room is communicated with dust storage chamber.
During filter work, under the effect of power part, in operating room, produce negative pressure, the gas with dirt bits enters from air intake passage, enters in operating room, enter the inside of filter, finally enter power part after gas is filtered along spiral duct.
Compared with prior art, the side of the operating room of this filter is communicated with dust storage chamber, gas enters operating room along spiral duct, moves after entering by the movement tendency of spiral, and dirt bits are under the influence of centrifugal force near the sidewall of operating room, and move along sidewall, in the process, dirt bits can enter dust storage chamber from the side of operating room, and dirt is considered to be worth doing away from filter, extend the service life of filter, ensure efficiency of dust collection.
In a kind of mode, spiral plate is provided with baffle plate away from the end of filter, and the two ends of baffle plate are all connected with spiral plate, forms the end plate of spiral duct; The sidewall of the connecting axle in spiral duct is provided with opening, open communication air intake passage and spiral duct.
Further, connecting axle is the axis body of hollow, and the inside of connecting axle is air intake passage, is provided with deep bead between the end of filter and connecting axle.
In above-mentioned each mode, the sidewall of filter extends to two ends and forms beam barrel respectively, and one end is air-out passage, and the other end is air intake passage.
The utility model additionally provides a kind of cleaner, comprises power part, also comprises the filter described in above-mentioned any one, and described power part is positioned at air-out passage, and air-flow flows to power part after entering the filter of filter.This filter has above-mentioned technique effect, therefore the cleaner with this filter also has corresponding technique effect.
Accompanying drawing explanation
Fig. 1 is a kind of structural representation of typical filter;
Fig. 2 is the structural representation of the first detailed description of the invention of filter provided by the utility model;
The partial structurtes schematic diagram that Fig. 3 is the filter shown in Fig. 2;
The air trajectory schematic diagram that Fig. 4 is the filter shown in Fig. 2;
Fig. 5 is the side view of the filter shown in Fig. 2.
Wherein, the Reference numeral in Fig. 1 and the corresponding relation between component names as follows:
Filter 1; Dust storage chamber 2; Sweep-up pipe 3;
Reference numeral in Fig. 2 to Fig. 5 and the corresponding relation between component names as follows:
Filter 1; Air-out passage 2; Connecting axle 3; Spiral plate 4; Air intake passage 5; Dust storage chamber 6; Baffle plate 7; Opening 8.
Detailed description of the invention
Core of the present utility model provides a kind of filter, in this filter course of work, dirt can be made to consider to be worth doing away from filter, extend the service life of filter.Another core of the present utility model is to provide a kind of cleaner with above-mentioned filter.
In order to make those skilled in the art person understand the utility model scheme better, below in conjunction with the drawings and specific embodiments, the utility model is described in further detail.
Please refer to Fig. 2 to Fig. 5, Fig. 2 is the structural representation of the first detailed description of the invention of filter provided by the utility model, the partial structurtes schematic diagram that Fig. 3 is the filter shown in Fig. 2, the air trajectory schematic diagram that Fig. 4 is the filter shown in Fig. 2, Fig. 5 is the side view of the filter shown in Fig. 2.
In a kind of concrete embodiment, the utility model provides a kind of filter, comprise operating room and be positioned at the filter 1 of inside working chamber, one end of filter 1 connects air-out passage 2, the other end of filter 1 coaxially installs connecting axle 3, spiral plate 4 is at least 1 week 90% to form spiral duct around connecting axle 3, is provided with the air intake passage 5 be communicated with spiral duct in connecting axle 3; The side of operating room is communicated with dust storage chamber 6.
During filter work, under the effect of power part, in operating room, produce negative pressure, the gas carrying dirt bits enters from air intake passage 5, enter in operating room along spiral duct, gas enters the inside of filter 1 after filter 1 filters, and finally enters power part.
Compared with prior art, the side of the operating room of this filter is communicated with dust storage chamber 6, gas enters operating room along spiral duct, move by the movement tendency of spiral after entering, dirt bits are under the influence of centrifugal force near the sidewall of operating room, and move along sidewall, in the process, dirt bits can enter dust storage chamber 6 from the side of operating room, and dust storage chamber 6 is in the side of operating room, and dirt bits enter after dust storage chamber away from filter 1, dirt is considered to be worth doing separated from the gas, only there is gas to enter filter 1, extend the service life of filter 1, ensure efficiency of dust collection.
Preferably, spiral plate 4 is greater than 1 week around connecting axle 3 and is less than 1.5 weeks, after making gas enter operating room, still can keep stronger screw trend.
It should be noted that, herein for cleaner, filter provided by the utility model is described, but the application scenario of filter provided by the utility model includes but not limited to cleaner.For air purifier, air-conditioning air inlet system, automobile air inlet system etc., some require higher occasion to cleaning gas degree, even comprise the air inlet system of some large-scale civil buildings, factory, can use filter provided by the utility model.
In a kind of concrete embodiment, spiral plate 4 is provided with baffle plate 7 away from the end of filter 1, and the two ends of baffle plate 7 are all connected with spiral plate 4, forms the end plate of spiral duct; The sidewall of the connecting axle 3 in spiral duct is provided with opening 8, and opening 8 is communicated with air intake passage 5 and spiral duct.
Spiral plate 4 defines spiral duct with the outer wall of connecting axle 3, baffle plate 7 is positioned at the end of spiral duct away from filter 1, the direction of gas along spiral duct to filter 1 place entering spiral duct is moved, baffle plate 7 can limit the flow direction of air-flow, the structure of baffle plate 7 can be the structure shown in Fig. 3 and Fig. 4, also can be other the structure that can limit air current flow direction, such as, can be extended by spiral plate 4 and form baffle plate 7, the structure of baffle plate 7 can also be arc.
Air intake passage 5 is positioned at connecting axle 3, arranges opening 8 at the sidewall of connecting axle 3, is communicated with air intake passage 5 and spiral duct, and the air-flow entering in air intake passage 5 just can be introduced spiral duct by the sidewall that opening 8 is arranged on the connecting axle 3 in spiral duct.Preferably, make the position of opening 8 near baffle plate 7, the stroke that air-flow is moved in spiral duct is longer as far as possible, then the guide effect of spiral duct to air-flow is better, after leaving spiral duct, air-flow still moves in a screw fashion, and concrete structure as shown in Figure 3 and Figure 4.
In embodiment concrete further, connecting axle 3 is the axis body of hollow, and the inside of connecting axle 3 is air intake passage 5, is provided with deep bead between the end of filter 1 and connecting axle 3.
In this filter, can arrange an air intake passage 5 in connecting axle 3, also connecting axle 3 itself directly can be set to air intake passage 5, namely connecting axle 3 is the axis body of hollow, arranges deep bead at connecting axle 3 and the link of filter 1.
When this filter 1 works, enter the air-flow of connecting axle 3, be subject to the stop of deep bead, enter spiral duct, then enter operating room according to the motion mode of spiral by the opening 8 on sidewall, and get rid of into dust storage chamber 6 by dirt bits, the motion process of air-flow please refer to Fig. 4.
Using the connecting axle 3 of whole hollow as air intake passage 5, the area of air intake passage 5 is comparatively large, can suck more air-flow, improve the dust suction speed of filter, increase work efficiency during work.
Concrete, the external diameter of connecting axle 3 can be equal with the external diameter of filter 1, also can be unequal.The inside of connecting axle 3 is as air intake passage 5, and the diameter of connecting axle 3 can be greater than the diameter of filter 1, also can be less than the diameter of filter 1.
Concrete, the diameter of connecting axle 3 can be selected according to the concrete condition in reality use, when needing suction port larger, the diameter of connecting axle 3 can be made comparatively large, when needing suction port less, the diameter of connecting axle 3 can be made less.
In above-mentioned each concrete embodiment, the sidewall of filter 1 extends to two ends and forms beam barrel respectively, and one end is air-out passage 2, and the other end is air intake passage 5.As shown in Figure 4.
Air-out passage 2 and air intake passage 5, the diameter of the two all can be identical with the external diameter of filter 1, also can be different.When air-out passage 2 is identical with the external diameter of filter 1 with air intake passage 5, sidewall, the air intake passage 5 of air-out passage 2, filter 1 are structure as a whole, and integral structure is convenient to manufacture, and are also convenient to install, can reduce the production cost of filter.
In another kind of concrete embodiment, two end faces of operating room are set in outside air-out passage 2 and air intake passage 5, and the side of operating room is columnar structured.
Operating room is positioned at the outside of filter 1, and two end faces are set in the outside of air-out passage 2 and air intake passage 5, and two end faces perpendicular to the axis of filter 1, also can have a certain degree with the axis of filter 1; Sidewall and two end faces form operating room, and air-flow is in spiral form in work indoor sport.
Sidewall can be columnar structured, air-flow forms swirling eddy in operating room, dirt bits in air-flow are made to produce centrifugal force and move along the sidewall of operating room under the influence of centrifugal force, the sidewall of operating room is columnar structured, less to the resistance of dirt bits, dirt can be made to consider to be worth doing and to keep larger centrifugal force, easily by air-flow of dishing out.
In embodiment concrete further, the side of operating room is provided with analyses dirt mouth, analyses dirt mouth and is communicated with dust storage chamber 6.
When gas rotates in operating room, the impurity in gas has deep movement tendency under the influence of centrifugal force, through analysing dirt mouth, can throw away from analysing dirt mouth, is got rid of in dust storage chamber 6 by dirt bits.Do not have power source in dust storage chamber 6, dirt bits enter in dust storage chamber 6, and centrifugal force can reduce gradually, finally collects in dust storage chamber 6, dirt is considered to be worth doing away from filter 1, can not be adsorbed on filter 1, extend the service life of filter 1.
In another kind of concrete embodiment, two sides of dust storage chamber 6 are tangent in the side of columnar structured diameter two ends and operating room, and two sides extend to form closed dust storage chamber 6.
Can be communicated with by analysing dirt mouth between operating room and dust storage chamber 6, analysing dirt mouth can be comparatively large, also can be less, analyse dirt mouth larger time more easily make air-flow get rid of dirt bits into dust storage chamber 6.
In embodiment concrete further, the side of dust storage chamber 6 and the side of operating room are structure as a whole.
Operating room and dust storage chamber 6 can be as a whole space, when air-flow enters along spiral duct, formed spiral air flow, the scope of its motion can be regarded as operating room, and dirt bits are thrown out of air-flow under gravitational and centrifugal forces, fall in dust storage chamber 6, the precipitation efficiency of dirt bits is high, good dedusting effect.As shown in Figure 5.
Except above-mentioned filter, the utility model additionally provides a kind of cleaner, comprise the filter described in power part and the various embodiments described above, described power part is positioned at air-out passage, and air-flow flows to power part after entering the filter of described filter.
This filter has above-mentioned technique effect, therefore the cleaner with this filter also has corresponding technique effect.The structure of other each several parts of cleaner please refer to prior art, repeats no more herein.
Above filter provided by the utility model and cleaner are described in detail.Apply specific case herein to set forth principle of the present utility model and embodiment, the explanation of above embodiment just understands method of the present utility model and core concept thereof for helping.Should be understood that; for those skilled in the art; under the prerequisite not departing from the utility model principle, can also carry out some improvement and modification to the utility model, these improve and modify and also fall in the protection domain of the utility model claim.
Claims (10)
1. a filter, comprise operating room and be positioned at the filter (1) of inside working chamber, one end of described filter (1) connects air-out passage (2), it is characterized in that, the other end of described filter (1) coaxially installs connecting axle (3), spiral plate (4) is at least 1 week 90% to form spiral duct around described connecting axle (3), is provided with the air intake passage (5) be communicated with described spiral duct in described connecting axle (3); The side of described operating room is communicated with dust storage chamber (6).
2. filter as claimed in claim 1, it is characterized in that, described spiral plate (4) is provided with baffle plate (7) away from the end of described filter (1), the two ends of described baffle plate (7) are all connected with described spiral plate (4), form the end plate of described spiral duct; The sidewall of the described connecting axle (3) in described spiral duct is provided with opening (8), and described opening (8) is communicated with described air intake passage (5) and described spiral duct.
3. filter as claimed in claim 2, it is characterized in that, the axis body that described connecting axle (3) is hollow, the inside of described connecting axle (3) is described air intake passage (5), is provided with deep bead between the end of described filter (1) and described connecting axle (3).
4. filter as claimed in claim 3, it is characterized in that, the external diameter of described connecting axle (3) is equal with the external diameter of described filter (1).
5. the filter as described in any one of Claims 1-4, it is characterized in that, the sidewall of described filter (1) extends to two ends and forms beam barrel respectively, and one end is described air-out passage (2), and the other end is described air intake passage (5).
6. filter as claimed in claim 5, is characterized in that, two end faces of described operating room are set in described air-out passage (2) and described air intake passage (5) outside, and the side of described operating room is columnar structured.
7. filter as claimed in claim 6, it is characterized in that, the side of described operating room is provided with analyses dirt mouth, described in analyse dirt mouth and be communicated with described dust storage chamber (6).
8. filter as claimed in claim 7, it is characterized in that, two sides of described dust storage chamber (6) are tangent in the side of described columnar structured diameter two ends and described operating room, and two described sides extend to form closed described dust storage chamber (6).
9. filter as claimed in claim 8, it is characterized in that, the side of described dust storage chamber (6) and the side of described operating room are structure as a whole.
10. a cleaner, comprises power part, it is characterized in that, also comprises the filter as described in any one of claim 1 to 9, and described power part is positioned at air-out passage, and air-flow flows to described power part after entering the filter of described filter.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520976751.7U CN205145905U (en) | 2015-11-30 | 2015-11-30 | Filter equipment and dust collecting equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520976751.7U CN205145905U (en) | 2015-11-30 | 2015-11-30 | Filter equipment and dust collecting equipment |
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CN205145905U true CN205145905U (en) | 2016-04-13 |
Family
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Family Applications (1)
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CN201520976751.7U Withdrawn - After Issue CN205145905U (en) | 2015-11-30 | 2015-11-30 | Filter equipment and dust collecting equipment |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105311915A (en) * | 2015-11-30 | 2016-02-10 | 胡国海 | Filter device and dust removal equipment |
WO2017092424A1 (en) * | 2015-11-30 | 2017-06-08 | 胡国海 | Filter device and dust-removing equipment |
-
2015
- 2015-11-30 CN CN201520976751.7U patent/CN205145905U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105311915A (en) * | 2015-11-30 | 2016-02-10 | 胡国海 | Filter device and dust removal equipment |
WO2017092424A1 (en) * | 2015-11-30 | 2017-06-08 | 胡国海 | Filter device and dust-removing equipment |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20160413 Effective date of abandoning: 20171103 |
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AV01 | Patent right actively abandoned |