|
(11) | EP 3 838 094 A1 |
| (12) | EUROPEAN PATENT APPLICATION |
| published in accordance with Art. 153(4) EPC |
|
|
|
|
|||||||||||||||||||||||||||
| (54) | STRIKING-TYPE HEPA SELF-CLEANING APPARATUS AND VACUUM CLEANER HAVING APPARATUS |
| (57) A striking-type HEPA self-cleaning apparatus and a vacuum cleaner having the self-cleaning
apparatus, said self-cleaning apparatus comprising: a mounting cover (15) an inner
part of which is provided with a certain accommodation space and a bottom part of
which is opened to form a ventilation opening, a HEPA filter (17) that is connected
to the bottom part of the mounting cover (15) and that seals the ventilation opening,
and a striking assembly (14) that is disposed within the accommodation space; the
striking assembly (14) comprises a striking driver (141) and at least one set of striking
hammers (143) that is in transmission connection with the driver (141); the striking
hammers (143) are located directly above the HEPA filter (17), and under the drive
of the driver (141), the striking hammers (143) periodically strike an upper surface
of the HEPA filter (17); as such, the HEPA filter (17) of the vacuum cleaner is able
to retain a sufficient degree of air permeability for a long period of time or be
restored to a sufficient degree of air permeability, thus ensuring that the vacuum
cleaner retains a stronger suction force. By means of a suitable spatial arrangement,
the vacuum cleaner achieves the effects of enhancing heat dissipation and reducing
noise; and by means of performing a manner of alternating wind blowing and wind suction
for the HEPA filter (17), dust accumulated on a surface of the HEPA filter (17) may
be blown off. |
TECHNICAL FIELD
BACKGROUND
SUMMARY
a mounting cover, wherein the mounting cover is provided with an accommodation space therein and is opened at a bottom thereof to form an air vent;
an HEPA filter, wherein the HEPA filter is connected to the bottom of the mounting cover and closes the air vent; and
a striking assembly arranged in the accommodation space,
where, the striking assembly includes a strike driver and at least one set of striking hammer drivingly connected to the strike driver, the striking hammer is located right above the HEPA filter, and the striking hammer is configured to be driven by the strike driver to periodically strike an upper surface of the HEPA filter.
a rotary arm, wherein one end of the rotary arm is rotationally connected with a top wall of the mounting cover; and
a striking portion, wherein the striking portion is integrated with another end of the rotary arm;
wherein, a restoring spring is elastically arranged between the striking portion and the top wall of the mounting cover, and a bottom surface of the striking portion is in continuous contact with the top surface of the HEPA filter under a restoring force of the restoring spring. A force-bearing end protruding outward is formed at a side, facing the pushing wheel, of an outer wall of the striking portion. When the pushing wheel rotates in the vertical plane, the pushing end thereof periodically pushes the force-bearing end upward so that the bottom surface of the striking portion is periodically lifted up by a certain distance relative to the top surface of the HEPA filter.
a dust collector, wherein an upper portion of the dust collector is opened;
a cover plate, wherein the cover plate is connected to the upper portion of the dust collector and includes an opening for air extraction; and
the HEPA apparatus self-cleaned by striking according to any one of the above solutions, wherein the mounting cover of the HEPA apparatus self-cleaned by striking is arranged at the opening and closes the opening.
a front motor cover, wherein a rear side of the front motor cover is opened; and
a rear motor cover, wherein the rear motor cover is connected to the rear side of the front motor cover, and a motor accommodation chamber is formed between the rear motor cover and the front motor cover; and wherein
the motor accommodation chamber includes a left motor chamber and a right motor chamber which are arranged in parallel and in communication with each other, a left motor and a right motor are arranged in the left motor chamber and the right motor chamber, respectively; and the rear motor cover is provided with a left heat dissipation air outlet and a right heat dissipation air outlet corresponding to the left motor and the right motor, respectively.
an air inlet chamber arranged at a front side of the motor accommodation chamber; and
at least one air filtering outlet pipe arranged at a bottom of the motor accommodation chamber; and wherein
the air inlet chamber and the air filtering outlet pipe are both in communication with the motor accommodation chamber.
an HEPA apparatus self-cleaned by striking, wherein the HEPA apparatus self-cleaned by striking is the HEPA apparatus self-cleaned by striking according to any one of the above six solutions;
a dust collector, wherein an upper portion of the dust collector is opened;
a cover plate, wherein the cover plate is connected to the upper portion of the dust collector and includes an opening for air extraction, and the HEPA filter of the HEPA apparatus self-cleaned by striking is connected to the opening; and
a left air extraction port switching mechanism and a right air extraction port switching mechanism, both of which being arranged on the mounting cover of the HEPA apparatus self-cleaned by striking; and wherein
the mounting cover covers the HEPA filter, and the mounting cover is arranged at the opening and configured to seal the opening; an airflow in-and-out chamber is formed between a top wall of the mounting cover and the HEPA filter, and a striking assembly of the HEPA apparatus self-cleaned by striking is arranged in the airflow in-and-out chamber;
the top wall of the mounting cover is provided with a left air extraction port, a right air extraction port, a left air blow-in port and a right air blow-in port. The left air extraction port and the right air extraction port are symmetrically arranged in an X-axis direction, and the left air blow-in port and the right air blow-in port are also symmetrically arranged in the X-axis direction. The left air extraction port switching mechanism alternately blocks the left air extraction port and the left air blow-in port, and the right air extraction port switching mechanism alternately blocks the right air extraction port and the right air blow-in port, to allow that:
in a case that the left air extraction port is opened and the left air blow-in port is closed, the right air extraction port is closed and the right air blow-in port is opened; or
in a case that the left air extraction port is closed and the left air blow-in port is opened, the right air extraction port is opened and the right air blow-in port is closed.
a front motor cover, wherein a rear side of the front motor cover is opened; and
a rear motor cover, wherein the rear motor cover is connected to the rear side of the front motor cover, to be combined with the front motor cover to form a motor accommodation chamber therebetween; and wherein
the motor accommodation chamber includes a left motor chamber and a right motor chamber which are arranged in parallel and in communication with each other, a left motor and a right motor are arranged in the left motor chamber and the right motor chamber, respectively; and the rear motor cover is provided with a left heat dissipation air outlet and a right heat dissipation air outlet corresponding to the left motor and the right motor, respectively.
an air inlet chamber arranged at a front side of the motor accommodation chamber; and
at least one air filtering outlet pipe arranged at a bottom of the motor accommodation chamber; and wherein
the air inlet chamber and the air filtering outlet pipe are both in communication with the motor accommodation chamber.
a left driver arranged on the top wall of the mounting cover; and
a left switching plate configured to slidably cover the left air extraction port and the left air blow-in port; and wherein
the left switching plate is arranged between the left air inlet and the top wall of the mounting cover. The left switching plate is provided with a left ventilation port, the left switching plate is in transmission connection with the left driver, so that the left switching plate is driven by the left driver to slide back and forth in the Y-axis direction, to allow the left ventilation port to be alternately in communication with the left air extraction port and the left air blow-in port.
a right driver arranged on the top wall of the mounting cover; and
a right switching plate configured to slidably cover the right air extraction port and the right air blow-in port; and wherein
the right switching plate is arranged between the right air inlet and the top wall of the mounting cover. The right switching plate is provided with a right ventilation port, and the right switching plate is in transmission connection with the right driver, so that the right switching plate is driven by the right driver to slide back and forth in the Y-axis direction, to allow the right ventilation port to be alternately in communication with the right air extraction port and the right air blow-in port.
BRIEF DESCRIPTION OF THE DRAWINGS
Figure 1 is a longitudinal cross-sectional view of an HEPA apparatus self-cleaned by striking according to the present application;
Figure 2 is an exploded view of the HEPA apparatus self-cleaned by striking according to the present application;
Figure 3 is a three-dimensional structural view of a striking assembly of the HEPA apparatus self-cleaned by striking according to the present application;
Figure 4 is a three-dimensional structural view of a vacuum cleaner having the HEPA apparatus self-cleaned by striking according to the present application;
Figure 5 is an exploded view of the vacuum cleaner having the HEPA apparatus self-cleaned by striking according to the present application;
Figure 6 is a three-dimensional structural view of an air duct assembly of the vacuum cleaner having the HEPA apparatus self-cleaned by striking according to the present application;
Figure 7 is a top view of the air duct assembly of the vacuum cleaner having the HEPA apparatus self-cleaned by striking according to the present application;
Figure 8 is a cross-sectional view taken along a line B-B in Figure 7;
Figure 9 is a three-dimensional structural view of a vacuum cleaner having an HEPA apparatus self-cleaned by striking and reversely blowing according to the present application;
Figure 10 is an exploded view of the vacuum cleaner having the HEPA apparatus self-cleaned by striking and reversely blowing according to the present application;
Figure 11 is a three-dimensional structural view of a mounting cover of the vacuum cleaner having the HEPA apparatus self-cleaned by striking and reversely blowing according to the present application;
Figure 12 is a three-dimensional structural view of an air duct assembly of the vacuum cleaner having the HEPA apparatus self-cleaned by striking and reversely blowing according to the present application;
Figure 13 is a top view of the air duct assembly of the vacuum cleaner having the HEPA apparatus self-cleaned by striking and reversely blowing according to the present application; and
Figure 14 is a cross-sectional view taken along a line B-B in Figure 13.
DETAILED DESCRIPTION OF THE EMBODIMENTS
a mounting cover 15, wherein the mounting cover 15 is provided with an accommodation space therein and is opened at a bottom thereof to form an air vent;
an HEPA filter 17, wherein the HEPA filter 17 is connected to the bottom of the mounting cover 15 and closes the air vent; and
a striking assembly 14 arranged in the accommodation space;
wherein, the striking assembly 14 includes a strike driver 141 and at least one set of striking hammer 143 drivingly connected to the driver 141, the striking hammer 143 is located right above the HEPA filter 17, and the striking hammer 143 is configured to be driven by the driver 141 to periodically strike an upper surface of the HEPA filter 17.
a rotary arm 1431, wherein one end of the rotary arm 1431 is rotationally connected with a top wall of the mounting cover 15; and
a striking portion 1432, wherein the striking portion 1432 is integrated with another end of the rotary arm 1431;
wherein, a restoring spring 144 is elastically arranged between the striking portion 1432 and the top wall of the mounting cover 15, and a bottom surface of the striking portion 1432 is in continuous contact with the top surface of the HEPA filter 17 under a restoring force of the restoring spring 144; a force-bearing end 1433 protruding outward is formed at a side, facing the pushing wheel 142, of an outer wall of the striking portion 1432, when the pushing wheel 142 rotates in the vertical plane, the pushing end 1421 thereof periodically pushes the force-bearing end 1433 upward, so that the bottom surface of the striking portion 1432 is periodically lifted up by a certain distance relative to the top surface of the HEPA filter 17.
a dust collector 11, wherein the dust collector 11 is opened at an upper portion thereof. In an embodiment, the dust collector 11 is provided with a dust suction pipe 111 configured to be connected with a dust suction head on a side wall thereof; and
a cover plate 13, wherein the cover plate 13 is connected to the upper portion of the dust collector 11 and includes an opening 131 for air extraction.
a front motor cover 161, wherein the front motor cover 161 is opened at a rear side thereof; and
a rear motor cover, wherein the rear motor cover is connected to the rear side of the front motor cover 161, and a motor accommodation chamber is formed between the rear motor cover and the front motor cover 161; and wherein
the motor accommodation chamber includes a left motor and a right motor chamber which are arranged in parallel and in communication with each other, a left motor 167 and a right motor 168are arranged in the left motor chamber and the right motor chamber, respectively; and the rear motor cover is provided with a left heat dissipation air outlet 163 and a right heat dissipation air outlet 164 corresponding to the left motor 167 and the right motor 168, respectively.
an air inlet chamber162 arranged at a front side of the motor accommodation chamber; and
at least one air filtering outlet pipe arranged at a bottom of the motor accommodation chamber; and wherein
the air inlet chamber 162 and the air filtering outlet pipe are both in communication with the motor accommodation chamber.
a dust collector 11, wherein the dust collector 11 is opened at an upper portion thereof;
a cover plate 13, wherein the cover plate 13 is connected to the upper portion of the dust collector 11 and includes an opening 131 for air extraction, and the HEPA filter of the HEPA apparatus self-cleaned by striking is connected to the opening 131; and
a left air extraction port switching mechanism and a right air extraction port switching mechanism, both of which being arranged on the mounting cover 15 of the HEPA apparatus self-cleaned by striking; and wherein
the mounting cover 15 covers the HEPA filter 17, and the mounting cover 15 is arranged at the opening 131 and configured to seal the opening 131; an airflow in-and-out chamber is formed between a top wall of the mounting cover 15 and the HEPA filter 17; and a striking assembly 14 of the HEPA apparatus self-cleaned by striking is arranged in the airflow in-and-out chamber.
when the left air extraction port is opened and the left air blow-in port is closed, the right air extraction port is closed and the right air blow-in port is opened; or
when the left air extraction port is closed and the left air blow-in port is opened, the right air extraction port is opened and the right air blow-in port is closed.
a front motor cover 161, wherein the front motor cover 161 is opened at its rear side; and
a rear motor cover, wherein the rear motor cover is connected to the rear side of the front motor cover 161, and a motor accommodation chamber is formed between the rear motor cover and the front motor cover 161; and wherein
the motor accommodation chamber includes a left motor and a right motor chamber which are arranged in parallel and in communication with each other, a left motor 167 and a right motor 168are arranged in the left motor chamber and the right motor chamber, respectively; and the rear motor cover is provided with a left heat dissipation air outlet 163 and a right heat dissipation air outlet 164 corresponding to the left motor 167 and the right motor 168, respectively.
an air inlet chamber 162 arranged at a front side of the motor accommodation chamber; and
at least one air filtering outlet pipe arranged at a bottom of the motor accommodation chamber; and wherein
the air inlet chamber 162 and the air filtering outlet pipe are both in communication with the motor accommodation chamber.
a left driver 153 arranged on the top wall (that is, the mounting plate) of the mounting cover 15; and
a left switching plate 154 configured to slidably cover the left air extraction port and the left air blow-in port; and wherein
the left switching plate 154 is arranged between the left air inlet 1621 and the top wall (that is, the mounting plate) of the mounting cover 15. The left switching plate 154 is provided with a left ventilation port 1541, the left switching plate 154 is drivingly connected with the left driver 153, so that the left switching plate 154 is driven by the left driver 153 to slide back and forth in the Y-axis direction, which causes the left ventilation port 1541 to be alternately in communication with the left air extraction port and the left air blow-in port.
a right driver 152 arranged on the top wall (that is, the mounting plate) of the mounting cover 15; and
a right switching plate 155 configured to slidably cover the right air extraction port and the right air blow-in port; and wherein
the right switching plate 155 is arranged between the right air inlet 1622 and the top wall (that is, the mounting plate) of the mounting cover 15. The right switching plate 155 is provided with a right ventilation port. The right switching plate 155 is drivingly connected with the right driver 152, so that the right switching plate 155 is driven by the right driver 152 to slide back and forth in the Y-axis direction, which causes the right ventilation port 1551 to be alternately in communication with the right air extraction port and the right air blow-in port.
a mounting cover (15), wherein the mounting cover (15) is provided with an accommodation space therein and is opened at a bottom thereof to form an air vent;
an HEPA filter (17), wherein the HEPA filter (17) is connected to the bottom of the mounting cover (15) and closes the air vent; and
a striking assembly (14) arranged in the accommodation space;
wherein, the striking assembly (14) comprises a strike driver (141) and at least one set of striking hammer (143) drivingly connected to the strike driver (141), the striking hammer (143) is located right above the HEPA filter (17), and the striking hammer (143) is configured to be driven by the strike driver (141) to periodically strike an upper surface of the HEPA filter (17).
a rotary arm (1431), wherein one end of the rotary arm (1431) is rotationally connected with a top wall of the mounting cover (15); and
a striking portion (1432), wherein the striking portion (1432) is integrated with another end of the rotary arm (1431);
wherein, a restoring spring (144) is elastically arranged between the striking portion (1432) and the top wall of the mounting cover (15), and a bottom surface of the striking portion (1432) is in continuous contact with the top surface of the HEPA filter (17) under a restoring force of the restoring spring (144); a force-bearing end (1433) protruding outward is formed at a side, facing the pushing wheel (142), of an outer wall of the striking portion (1432); when the pushing wheel (142) rotates in the vertical plane, the pushing end (1421) on the pushing wheel (142) is configured to periodically push the force-bearing end (1433) upward to make the bottom surface of the striking portion (1432) periodically be lifted up by a certain distance relative to the top surface of the HEPA filter (17).
a dust collector (11), wherein the dust collector (11) is opened at an upper portion thereof;
a cover plate (13), wherein the cover plate (13) is connected to the upper portion of the dust collector (11) and comprises an opening (131) for air extraction; and
the HEPA apparatus self-cleaned by striking according to any one of claims 1 to 7, wherein the mounting cover (15) of the HEPA apparatus self-cleaned by striking is arranged at the opening (131) and closes the opening (131).
a front motor cover (161), wherein the front motor cover (161) is opened at a rear side thereof; and
a rear motor cover, wherein the rear motor cover is connected to the rear side of the front motor cover (161), and a motor accommodation chamber is formed between the rear motor cover and the front motor cover (161); and wherein
the motor accommodation chamber comprises a left motor chamber and a right motor chamber which are arranged in parallel and in communication with each other; a left motor (167) and a right motor (168) are arranged in the left motor chamber and the right motor chamber, respectively; and the rear motor cover is provided with a left heat dissipation air outlet (163) and a right heat dissipation air outlet (164) corresponding to the left motor (167) and the right motor (168), respectively.
the HEPA apparatus self-cleaned by striking according to any one of claims 1 to 6;
a dust collector (11), wherein the dust collector (11) is opened at an upper portion thereof;
a cover plate (13), wherein the cover plate (13) is connected to the upper portion of the dust collector (11) and comprises an opening (131) for air extraction, and the HEPA filter (17) of the HEPA apparatus self-cleaned by striking is connected to the opening (131); and
a left air extraction port switching mechanism and a right air extraction port switching mechanism, both of which being arranged on the mounting cover (15) of the HEPA apparatus self-cleaned by striking; and wherein
the mounting cover (15) covers the HEPA filter (17), and the mounting cover (15) is arranged at the opening (131) and configured to seal the opening (131); an airflow in-and-out chamber is formed between a top wall of the mounting cover (15) and the HEPA filter (17); and a striking assembly (14) of the HEPA apparatus self-cleaned by striking is arranged in the airflow in-and-out chamber;
the top wall of the mounting cover (15) is provided with a left air extraction port, a right air extraction port, a left air blow-in port and a right air blow-in port, the left air extraction port and the right air extraction port are symmetrically arranged in an X-axis direction, and the left air blow-in port and the right air blow-in port are also symmetrically arranged in the X-axis direction; the left air extraction port switching mechanism is configured to alternately block the left air extraction port and the left air blow-in port, and the right air extraction port switching mechanism is configured to alternately block the right air extraction port and the right air blow-in port, so that:
when the left air extraction port is opened and the left air blow-in port is closed, the right air extraction port is closed and the right air blow-in port is opened; or
when the left air extraction port is closed and the left air blow-in port is opened, the right air extraction port is opened and the right air blow-in port is closed.
a front motor cover (161), wherein the front motor cover (161) is opened at a rear side thereof; and
a rear motor cover, wherein the rear motor cover is connected to the rear side of the front motor cover (161), and a motor accommodation chamber is formed between the rear motor cover and the front motor cover (161); and wherein
the motor accommodation chamber comprises a left motor chamber and a right motor chamber which are arranged in parallel and in communication with each other, a left motor (167) and a right motor (168) are arranged in the left motor chamber and the right motor chamber, respectively; and the rear motor cover is provided with a left heat dissipation air outlet (163) and a right heat dissipation air outlet (164) corresponding to the left motor (167) and the right motor (168), respectively.
an air inlet chamber (162) arranged at a front side of the motor accommodation chamber; and
at least one air filtering outlet pipe arranged at a bottom of the motor accommodation chamber; and wherein
the air inlet chamber (162) and the air filtering outlet pipe are both in communication with the motor accommodation chamber.
a left driver (153) arranged on the top wall of the mounting cover (15); and
a left switching plate (154) configured to slidably cover the left air extraction port and the left air blow-in port; and wherein
the left switching plate (154) is arranged between the left air inlet (1621) and the top wall of the mounting cover (15), the left switching plate (154) is provided with a left ventilation port (1541); the left switching plate (154) is drivingly connected with the left driver (153), so that the left switching plate (154) is driven by the left driver (153) to slide back and forth in a Y-axis direction, which causes the left ventilation port (1541) to be alternately in communication with the left air extraction port and the left air blow-in port.
a right driver (152) arranged on the top wall of the mounting cover (15); and
a right switching plate (155) configured to slidably cover the right air extraction port and the right air blow-in port; and wherein
the right switching plate (155) is arranged between the right air inlet (1622) and the top wall of the mounting cover (15), the right switching plate (155) is provided with a right ventilation port (1551), the right switching plate (155) is drivingly connected with the right driver (152), so that the right switching plate (155) is driven by the right driver (152) to slide back and forth in the Y-axis direction, which causes the right ventilation port (1551) to be alternately in communication with the right air extraction port and the right air blow-in port.
REFERENCES CITED IN THE DESCRIPTION
Patent documents cited in the description