Dust collector system

By designing a rotating connection between the bottom cover and the sub-cover in the vacuum cleaner system, combined with the convex top block and rocker arm of the base station, the problems of unstable dust cup fixation and unsuitable cover angle are solved, thus improving dust removal efficiency.

CN224166221UActive Publication Date: 2026-04-28SUZHOU GB TECH CLEANING APPLIANCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU GB TECH CLEANING APPLIANCE CO LTD
Filing Date
2025-03-19
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing vacuum cleaners are not easy to fix in the dust cup after use, and the dust cup cover cannot be stably fixed at the right angle, resulting in low dust removal efficiency.

Method used

A vacuum cleaner system was designed, comprising a bottom cover and a sub-cover at the bottom of the dust cup. Through the connection of a rotating shaft and a rotating component, combined with the convex top block and rocker arm on the base station, the dust cup is stably fixed and the cover is automatically opened to a suitable angle, thereby improving dust removal efficiency.

Benefits of technology

It achieves stable fixation of the dust cup in the vacuum cleaner and automatically opens the lid to a suitable angle, improving the efficiency of dust discharge.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dust collector system which comprises a dust collector and a base station used for charging and deashing the dust collector, a dust cup of the dust collector comprises a multi-cone body, a dust cup body and a bottom cover located below the dust cup body, and the dust cup body internally comprises a secondary dust collection chamber located in a primary dust collection chamber. A bottom cover for opening or covering the primary dust collection chamber is arranged at the bottom of the dust cup; the base station comprises a shell, a dust storage part located in the shell and a suction motor, the side wall of the upper portion of the shell is provided with a containing cavity for containing the dust cup, the inner wall of the containing cavity is provided with a dust inlet, a convex top block corresponding to the lifting arm part is located above the dust inlet, and when the dust collector is installed on the base station, the convex top block can push the lifting arm part to move. According to the dust collector system, the dust cup of the dust collector can be more stably fixed, the sub-cover can be automatically opened to a proper angle, and the dust discharging efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of household cleaning technology, and in particular to a vacuum cleaner system. Background Technology

[0002] Vacuum cleaners have brought great convenience to people's lives. After using a vacuum cleaner, it is necessary to clean the dust in the dust cup. However, the existing vacuum cleaner system is not convenient to put the vacuum cleaner into the base station and cannot stably fix the dust cup. Secondly, when cleaning the dust in the dust cup, the dust cup cover cannot be fixed at the right angle, which can easily damage related components and result in low dust removal efficiency, which needs to be improved. Utility Model Content

[0003] The purpose of this invention is to provide a vacuum cleaner system that facilitates the insertion of the vacuum cleaner into the receiving cavity, while also enabling more stable fixation of the dust cup, automatically opening the cover to a suitable angle, and improving dust removal efficiency.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is: a vacuum cleaner system, comprising: a vacuum cleaner and a base station for charging and cleaning the vacuum cleaner, wherein the dust cup of the vacuum cleaner comprises: a multi-cone, a dust cup and a bottom cover located below the dust cup, wherein the dust cup includes a secondary dust collection chamber located within a primary dust collection chamber, and the bottom of the dust cup is provided with a bottom cover for opening or covering the primary dust collection chamber;

[0005] The bottom cover has a bottom cover hole in the center area, and one end of the bottom cover has a rotating shaft. A sub-cover for opening or covering the bottom cover hole has a rotating member with a rotating hole at one end. The rotating shaft of the bottom cover is embedded in the rotating hole of the rotating member of the sub-cover. The rotating member has a rocker arm on the side opposite to the sub-cover.

[0006] The base station includes: a housing, a dust storage section located inside the housing, and a suction motor. The upper side wall of the housing has a receiving cavity for placing a dust cup. The inner wall of this receiving cavity has a dust inlet. Above the dust inlet is a protruding block corresponding to the rocker arm. When the vacuum cleaner is installed on the base station, the protruding block can push the rocker arm to move.

[0007] The following are further improvements to the above technical solution:

[0008] 1. In the above scheme, a sealing ring is provided around the ash inlet, and the convex block is located inside the sealing ring.

[0009] 2. In the above scheme, at least two reinforcing ribs are provided at intervals on the convex top block.

[0010] 3. In the above scheme, the opening of the bottom cover hole is larger than the opening of the secondary dust collection chamber, the diameter of the sub-cover is larger than the diameter of the secondary dust collection chamber, and the sub-cover can cover the bottom cover hole and the area of ​​the primary dust collection chamber near the outer wall of the secondary dust collection chamber.

[0011] 4. In the above scheme, the bottom cover has an inner groove at one end of the rotating shaft, and the rotating shaft and the rotating component are located in the inner groove.

[0012] 5. In the above scheme, the rocker arm is located inside the inner groove.

[0013] This utility model vacuum cleaner system has a bottom cover at the bottom of the dust cup. The bottom cover has a hole in its center and a rotating shaft at one end. A rotating component with a rotating hole at one end is used to open or cover the bottom cover hole. The rotating shaft of the bottom cover is embedded in the rotating hole of the rotating component of the sub-cover. The side of the rotating component opposite to the sub-cover has a rocker arm. The upper side wall of the housing has a receiving cavity for placing the dust cup. The inner wall of this receiving cavity has a dust inlet. Above the dust inlet is a protruding block corresponding to the rocker arm. This system facilitates the insertion of the vacuum cleaner into the receiving cavity, which not only helps to more stably fix the dust cup of the vacuum cleaner but also enables the sub-cover to open to a suitable angle automatically. Furthermore, the bottom cover hole allows for the simultaneous discharge of dust from the primary and secondary dust collection chambers, improving the efficiency of dust removal. Attached Figure Description

[0014] Appendix Figure 1 This is a schematic diagram of the vacuum cleaner system of this utility model;

[0015] Appendix Figure 2 This is a schematic diagram of the base station structure in the vacuum cleaner system of this utility model;

[0016] Appendix Figure 3 For the appendix Figure 2 Enlarged view of point A in the schematic diagram of the base station structure shown;

[0017] Appendix Figure 4 This is a partial structural diagram of the vacuum cleaner in the vacuum cleaner system of this utility model;

[0018] Appendix Figure 5 This is a schematic diagram of a partially transparent structure opened in the vacuum cleaner system of this utility model.

[0019] Appendix Figure 6 This is a schematic diagram of a partially transparent structure of the vacuum cleaner seal in the vacuum cleaner system of this utility model;

[0020] Appendix Figure 7 For the appendix Figure 6 The enlarged view of point B in the schematic diagram of the partially transparent structure shown.

[0021] In the attached diagrams: 1. Vacuum cleaner; 2. Dust cup; 3. Bottom cover; 31. Bottom cover hole; 4. Primary dust collection chamber; 5. Secondary dust collection chamber; 6. Sub-cover; 7. Rotating component; 71. Rotating hole; 8. Rocker arm; 9. Base station; 10. Receiving cavity; 11. Dust inlet; 12. Rotating shaft; 13. Inner groove; 14. Protruding top block; 141. Reinforcing rib; 15. Sealing ring. Detailed Implementation

[0022] The present patent can be further understood through the specific embodiments given below, but they are not intended to limit the present patent.

[0023] Example 1: A vacuum cleaner system includes: a vacuum cleaner 1 and a base station 9 for charging and cleaning the vacuum cleaner 1. The dust cup 2 of the vacuum cleaner 1 includes: a multi-cone, a dust cup 2 and a bottom cover 3 located below the dust cup 2. The dust cup 2 includes a secondary dust collection chamber 5 located within a primary dust collection chamber 4. The bottom of the dust cup 2 is provided with a bottom cover 3 for opening or covering the primary dust collection chamber 4.

[0024] The bottom cover 3 has a bottom cover hole 31 in the center area, and a rotating shaft 12 at one end of the bottom cover 3. A rotating component 7 with a rotating hole 71 at one end is used to open or cover the bottom cover hole 31. The rotating shaft 12 of the bottom cover 3 is embedded in the rotating hole 71 of the rotating component 7 of the sub-cover 6. The rotating component 7 has a rocker arm 8 on the side opposite to the sub-cover 6.

[0025] The base station 9 includes: a housing, a dust storage section located inside the housing, and a suction motor. The upper side wall of the housing has a receiving cavity 10 for placing the dust cup 2. The inner wall of the receiving cavity 10 has a dust inlet 11. Above the dust inlet 11 is a protruding block 14 corresponding to the rocker arm 8. When the vacuum cleaner 1 is installed on the base station 9, the protruding block 14 can push the rocker arm 8 to move.

[0026] A sealing ring 15 is provided around the ash inlet 11, and the convex block 14 is located inside the sealing ring 15.

[0027] At least two reinforcing ribs 141 are provided at intervals on the aforementioned convex top block 14.

[0028] The opening of the bottom cover hole 31 is larger than the opening of the secondary dust collection chamber 5, and the diameter of the sub-cover 6 is larger than the diameter of the secondary dust collection chamber 5. The sub-cover 6 can cover the bottom cover hole 31 and the area of ​​the primary dust collection chamber 4 near the outer wall of the secondary dust collection chamber 5. The dust in the primary dust collection chamber 4 and the secondary dust collection chamber 5 can be discharged simultaneously through the bottom cover hole 31, which improves the efficiency of dust discharge.

[0029] The bottom cover 3 has an inner groove 13 at one end of the rotating shaft 12, and the rotating shaft 12 and the rotating component 7 are located in the inner groove 13.

[0030] Example 2: A vacuum cleaner system includes: a vacuum cleaner 1 and a base station 9 for charging and cleaning the vacuum cleaner 1. The dust cup 2 of the vacuum cleaner 1 includes: a multi-cone, a dust cup 2 and a bottom cover 3 located below the dust cup 2. The dust cup 2 includes a secondary dust collection chamber 5 located within a primary dust collection chamber 4. The bottom of the dust cup 2 is provided with a bottom cover 3 for opening or covering the primary dust collection chamber 4.

[0031] The bottom cover 3 has a bottom cover hole 31 in the center area, and a rotating shaft 12 at one end of the bottom cover 3. A rotating component 7 with a rotating hole 71 at one end is used to open or cover the bottom cover hole 31. The rotating shaft 12 of the bottom cover 3 is embedded in the rotating hole 71 of the rotating component 7 of the sub-cover 6. The rotating component 7 has a rocker arm 8 on the side opposite to the sub-cover 6.

[0032] The base station 9 includes: a housing, a dust storage section located inside the housing, and a suction motor. The upper side wall of the housing has a receiving cavity 10 for placing the dust cup 2. The inner wall of the receiving cavity 10 has a dust inlet 11. Above the dust inlet 11 is a protruding block 14 corresponding to the rocker arm 8. When the vacuum cleaner 1 is installed on the base station 9, the protruding block 14 can push the rocker arm 8 to move.

[0033] A sealing ring 15 is provided around the ash inlet 11, and the convex block 14 is located inside the sealing ring 15.

[0034] At least two reinforcing ribs 141 are provided at intervals on the aforementioned convex top block 14.

[0035] The bottom cover 3 has an inner groove 13 at one end of the rotating shaft 12, and the rotating shaft 12 and the rotating component 7 are located in the inner groove 13.

[0036] The aforementioned rocker arm 8 is located within the inner groove 13.

[0037] Working principle: After vacuuming, to clean the dust in the dust cup 2, the vacuum cleaner 1 is placed into the accommodating cavity 10 above the base station 9. The convex top block 14 above the dust inlet 11 presses down on the rocker arm 8, and the sub-cover 6 rotates around the rotating shaft 12. At this time, the sub-cover 6 can maintain the open state without the need for external force, while the bottom cover 3 is always in a sealed connection with the dust cup 2. Since the opening of the bottom cover hole 31 is larger than the opening of the secondary dust collection chamber 5, and the diameter of the sub-cover 6 is larger than the diameter of the secondary dust collection chamber 5, the dust in the primary dust collection chamber 4 and the secondary dust collection chamber 5 is poured into the dust inlet 11. When using the vacuum cleaner 1 again, the vacuum cleaner 1 is taken out of the accommodating cavity 10 above the base station. At this time, the rocker arm 8 is no longer under the pressure of the convex top block 14, and the sub-cover 6 falls back, so that the dust cup is in a sealed state.

[0038] The vacuum cleaner system described above has a bottom cover 3 at the bottom of the dust cup 2. The bottom cover 3 has a bottom cover hole 31 in its central area. One end of the bottom cover 3 has a rotating shaft 12. A sub-cover 6, which is used to open or cover the bottom cover hole 31, has a rotating component 7 at one end with a rotating hole 71. The rotating shaft 12 of the bottom cover 3 is embedded in the rotating hole 71 of the rotating component 7 of the sub-cover 6. The rotating component 7 has a rocker arm 8 on the side opposite to the sub-cover 6. The upper side wall of the housing has a receiving cavity 10 for placing the dust cup 2. The inner wall of this receiving cavity 10 has a dust inlet 11. Above the dust inlet 11 is a protruding block 14 corresponding to the rocker arm 8. This system facilitates the insertion of the vacuum cleaner into the receiving cavity 10, which not only helps to more stably fix the dust cup 2 of the vacuum cleaner 1 but also enables the sub-cover 6 to be automatically opened to a suitable angle.

[0039] Furthermore, the bottom cover hole 31 allows for the simultaneous discharge of dust from both the primary dust collection chamber 4 and the secondary dust collection chamber 5, thereby improving the efficiency of dust removal.

[0040] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent changes or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.

Claims

1. A vacuum cleaner system, characterized in that: include: A vacuum cleaner (1) and a base station (9) for charging and cleaning the vacuum cleaner (1), wherein the dust cup (2) of the vacuum cleaner (1) includes: a multi-cone, a dust cup (2) and a bottom cover (3) located below the dust cup (2), wherein the dust cup (2) includes and is located within a secondary dust collection chamber (5) within a primary dust collection chamber (4), and the bottom of the dust cup (2) is provided with a bottom cover (3) for opening or covering the primary dust collection chamber (4); The bottom cover (3) has a bottom cover hole (31) in the center area. One end of the bottom cover (3) has a rotating shaft (12). A sub-cover (6) for opening or covering the bottom cover hole (31) has a rotating component (7) with a rotating hole (71) at one end. The rotating shaft (12) of the bottom cover (3) is embedded in the rotating hole (71) of the rotating component (7) of the sub-cover (6). The rotating component (7) has a rocker arm (8) on the side opposite to the sub-cover (6). The base station (9) includes: a housing, a dust storage section located inside the housing, and a suction motor. The upper side wall of the housing has a accommodating cavity (10) for placing a dust cup (2). The inner wall of the accommodating cavity (10) has a dust inlet (11). Above the dust inlet (11) is a protruding block (14) corresponding to the rocker arm (8). When the vacuum cleaner (1) is installed on the base station (9), the protruding block (14) can push the rocker arm (8) to move.

2. The vacuum cleaner system according to claim 1, characterized in that: A sealing ring (15) is provided around the ash inlet (11), and the convex block (14) is located inside the sealing ring (15).

3. The vacuum cleaner system according to claim 1 or 2, characterized in that: At least two reinforcing ribs (141) are provided at intervals on the convex top block (14).

4. The vacuum cleaner system according to claim 1, characterized in that: The opening of the bottom cover hole (31) is larger than the opening of the secondary dust collection chamber (5), the diameter of the sub-cover (6) is larger than the diameter of the secondary dust collection chamber (5), and the sub-cover (6) can cover the area of ​​the bottom cover hole (31) and the primary dust collection chamber (4) near the outer wall of the secondary dust collection chamber (5).

5. The vacuum cleaner system according to claim 1, characterized in that: The bottom cover (3) has an inner groove (13) at one end of the rotating shaft (12), and the rotating shaft (12) and the rotating component (7) are located in the inner groove (13).

6. The vacuum cleaner system according to claim 5, characterized in that: The rocker arm (8) is located inside the inner groove (13).