CN223585838U - Fool-proof assembling structure for dust collector battery pack - Google Patents
Fool-proof assembling structure for dust collector battery packInfo
- Publication number
- CN223585838U CN223585838U CN202423146755.0U CN202423146755U CN223585838U CN 223585838 U CN223585838 U CN 223585838U CN 202423146755 U CN202423146755 U CN 202423146755U CN 223585838 U CN223585838 U CN 223585838U
- Authority
- CN
- China
- Prior art keywords
- battery pack
- assembly
- component
- fixedly connected
- vacuum source
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Links
Classifications
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
Landscapes
- Battery Mounting, Suspending (AREA)
Abstract
The utility model relates to the technical field of dust collectors, in particular to a foolproof assembling structure of a dust collector battery pack, which comprises a vacuum source component, a dust barrel component, a battery pack component and an assembling component, wherein a conductive jack is arranged on the battery pack component, the assembling component comprises a handle, a supporting plate, two guide rails, two sliding blocks and two limiting parts, when the battery pack component is installed, the battery pack component is placed on the supporting plate, the battery pack component is slid along the guide rails, the battery pack component is abutted with the vacuum source component, then the limiting parts are controlled to move to the side edges of the sliding blocks, so that the position of the battery pack component is fixed, when the battery pack component is required to be disassembled, the limiting parts are moved away from the sliding blocks, and then the battery pack component can be removed.
Description
Technical Field
The utility model relates to the technical field of dust collectors, in particular to a foolproof assembly structure of a dust collector battery pack.
Background
The dust collector is a cleaning tool with wide application, and the motor is used for driving the blades to rotate at high speed, so that negative air pressure is generated in the sealed bracket to suck dust, but the traditional dust collector has poor compactness and high cost.
The prior art CN216675615U discloses a handheld dust collector, which comprises a battery pack assembly, wherein a pair of barbs which are horizontally arranged at intervals are arranged on one side, close to a vacuum source assembly, of the battery pack assembly, ventilation holes are arranged in the barbs, the ventilation holes are communicated with the inside of the battery pack assembly, hook grooves which are in one-to-one correspondence with the barbs are arranged on one side, adjacent to the battery pack assembly, of the vacuum source assembly, downward protrusions are arranged on the tops of the grooves, the grooves are communicated with the inside of the vacuum source assembly, the barbs are inserted into the corresponding hook grooves and are matched with the corresponding protrusions when the vacuum source assembly is installed, so that the vacuum source assembly is connected with the battery pack assembly, meanwhile, the outer end parts of the battery pack assembly are clamped into grooves at the top of the handheld part assembly, the fixing of the battery pack assembly can be realized, the air flow generated by the vacuum source assembly is used for cooling batteries in the battery pack assembly, meanwhile, the quality stability of products can be improved, and the overall structure of the products is more compact.
However, by adopting the above mode, the battery pack assembly is assembled through the barb and the hook groove on the vacuum source assembly, and because the user is an untrained person, the user adopts the assembly mode to easily damage the barb or the notch due to improper operation or excessive force in the assembly or disassembly process, thereby influencing the firmness of assembly.
Disclosure of utility model
The utility model aims to provide a foolproof assembly structure of a dust collector battery pack, which aims to solve the problem that when the battery pack assembly is assembled by the existing handheld dust collector, barbs or notches are easily damaged due to improper operation or excessive force, so that the firmness of assembly is affected.
In order to achieve the above purpose, the utility model provides a foolproof assembly structure of a dust collector battery pack, which comprises a vacuum source component, a dust barrel component, a battery pack component and an assembly component, wherein the dust barrel component is arranged at the bottom of the vacuum source component, the battery pack component is positioned at the side edge of the vacuum source component, a conductive jack is arranged on the battery pack component, and the assembly component comprises a handle, a supporting plate, two guide rails, two sliding blocks and two limiting components;
The handle is arranged on the side edges of the vacuum source component and the dust barrel component, the supporting plate is fixedly connected with the handle and is positioned on the side edge of the handle, the two guide rails are respectively fixedly connected with the supporting plate and are positioned on two sides of the supporting plate, the two sliding blocks are respectively fixedly connected with the battery pack component and are positioned on two sides of the battery pack component, and the two limiting parts are arranged on two sides of the supporting plate.
The assembly component further comprises two fool-proof blocks, wherein the fool-proof blocks are fixedly connected with the battery pack component respectively and are positioned on two sides of the battery pack component.
The assembly component further comprises two positioning components, wherein the two positioning components are respectively positioned on the side edges of the two guide rails, each positioning component comprises a rotating shaft, a support, a screw rod and an anti-abrasion pad, the rotating shafts are in rotating connection with the guide rails and positioned on the side edges of the guide rails, the support is fixedly connected with the rotating shafts and positioned on the side edges of the rotating shafts, the screw rod is in threaded connection with the support and penetrates through the support, and the anti-abrasion pad is fixedly connected with the screw rod and positioned on the side edges of the screw rods.
The limiting component comprises a spring, a pull block and a limiting rod, wherein the spring is fixedly connected with the supporting plate and is positioned at the bottom of the supporting plate, the pull block is fixedly connected with the spring and is positioned at one end of the spring far away from the supporting plate, and the limiting rod is fixedly connected with the pull block and penetrates through the spring and the supporting plate.
The limiting component further comprises an inclined surface block, and the inclined surface block is fixedly connected with the limiting rod and is positioned on the side edge of the limiting rod.
According to the fool-proof assembling structure of the dust collector battery pack, when the battery pack assembly is installed, the battery pack assembly is placed on the supporting plate, the two sliding blocks are respectively located between the guide rail and the supporting plate, the battery pack assembly is slid along the guide rail, the conductive insertion holes on the battery pack assembly are in butt joint with the conductive plugs on the vacuum source assembly, then the limiting parts are controlled to move to the side edges of the sliding blocks, the sliding blocks are limited, so that the battery pack assembly is fixed in position, the battery pack assembly is powered by the battery pack assembly, dust collection work is conducted through the vacuum source assembly, the dust barrel assembly and the battery pack assembly, when the battery pack assembly is required to be detached, the limiting parts are moved away from the sliding blocks, and then the battery pack assembly can be detached.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
Fig. 1 is a schematic overall structure of the present utility model.
Fig. 2 is a side cross-sectional view of the entirety of the present utility model.
Fig. 3 is a schematic view of the structure of the battery pack assembly and the assembly of the present utility model.
Fig. 4 is a schematic structural view of another view of the battery pack assembly and the assembly of the present utility model.
Fig. 5 is a side cross-sectional view of the battery pack assembly and assembly of the present utility model.
Fig. 6 is an elevational cross-sectional view of the battery pack assembly and assembled assembly of the present utility model.
101-Vacuum source assembly, 102-dust bucket assembly, 103-battery pack assembly, 104-conductive jack, 105-handle, 106-support plate, 107-guide rail, 108-slider, 109-limit part, 110-fool-proof block, 111-positioning part, 112-rotating shaft, 113-bracket, 114-screw, 115-anti-wear pad, 116-spring, 117-pull block, 118-limit rod, 119-inclined plane block.
Detailed Description
The following detailed description of embodiments of the utility model, examples of which are illustrated in the accompanying drawings and, by way of example, are intended to be illustrative, and not to be construed as limiting, of the utility model.
Referring to fig. 1 to 6, fig. 1 is a schematic overall structure of the present utility model, fig. 2 is a schematic overall side sectional view of the present utility model, fig. 3 is a schematic structural view of a battery pack assembly and an assembly of the present utility model, fig. 4 is a schematic structural view of another view of the battery pack assembly and the assembly of the present utility model, fig. 5 is a schematic side sectional view of the battery pack assembly and the assembly of the present utility model, and fig. 6 is a schematic front sectional view of the battery pack assembly and the assembly of the present utility model.
The utility model provides a foolproof assembly structure of a dust collector battery pack, which comprises a vacuum source assembly 101, a dust barrel assembly 102, a battery pack assembly 103 and an assembly, wherein the assembly comprises a handle 105, a support plate 106, two guide rails 107, two sliding blocks 108, two limiting parts 109, two foolproof blocks 110 and two positioning parts 111, the positioning parts 111 comprise a rotating shaft 112, a support 113, a screw 114 and an anti-wear pad 115, the limiting parts 109 comprise a spring 116, a pull block 117, a limiting rod 118 and an inclined surface block 119, and the problem that barbs or notches are easily damaged due to improper operation or excessive force when the battery pack assembly 103 is assembled by the conventional handheld dust collector is solved, so that the firmness of assembly is affected.
For the specific embodiment, the dust bucket assembly 102 is disposed at the bottom of the vacuum source assembly 101, the battery pack assembly 103 is disposed at a side of the vacuum source assembly 101, a conductive jack 104 is disposed on the battery pack assembly 103, a conductive plug corresponding to the conductive jack 104 is disposed on a side of the vacuum source assembly 101 adjacent to the battery pack assembly 103, after the battery pack assembly 103 is mounted on the support plate 106, the conductive plug is correspondingly inserted into the conductive jack 104, the battery pack assembly 103 can supply power to the vacuum source assembly 101, dust can be collected through the vacuum source assembly 101, the dust bucket assembly 102 and the battery pack assembly 103, and specific structures and working principles of the vacuum source assembly 101, the dust bucket assembly 102 and the battery pack assembly 103 are described in patent document with publication number CN 216675615U.
The handle 105 is disposed at the side of the vacuum source assembly 101 and the dust bucket assembly 102, the supporting plate 106 is fixedly connected with the handle 105 and is disposed at the side of the handle 105, the two guide rails 107 are respectively fixedly connected with the supporting plate 106 and are disposed at two sides of the supporting plate 106, the two sliding blocks 108 are respectively fixedly connected with the battery pack assembly 103 and are disposed at two sides of the battery pack assembly 103, and the two limiting members 109 are disposed at two sides of the supporting plate 106. When the battery pack assembly 103 is installed, the battery pack assembly 103 is placed on the supporting plate 106, the two sliding blocks 108 are respectively arranged between the guide rail 107 and the supporting plate 106, the battery pack assembly 103 is slid along the guide rail 107, the conductive insertion holes 104 on the battery pack assembly 103 are butted with the conductive plugs on the vacuum source assembly 101, then the limiting parts 109 are controlled to move to the sides of the sliding blocks 108, the sliding blocks 108 are limited, so that the battery pack assembly 103 is fixed in position, the battery pack assembly 103 is powered by the battery pack assembly 103, dust collection work is carried out through the vacuum source assembly 101, the dust barrel assembly 102 and the battery pack assembly 103, when the battery pack assembly 103 needs to be disassembled, the limiting parts 109 are moved away from the sliding blocks 108, and then the battery pack assembly 103 can be slid to be taken down.
Secondly, the two fool-proof blocks 110 are fixedly connected with the battery pack assembly 103 respectively and are positioned at two sides of the battery pack assembly 103. The thickness of the fool-proof block 110 is greater than the distance between the support plate 106 and the guide rail 107, so that the fool-proof block 110 cannot be inserted between the guide rail 107 and the support plate 106 when the user takes the battery pack assembly 103 reversely, so that the battery pack assembly 103 cannot be assembled when the user takes reversely, and damage to the conductive jack 104 caused by forced assembly with the vacuum source assembly 101 after the user takes reversely the battery pack assembly 103 is avoided.
Meanwhile, the two positioning parts 111 are respectively located at the sides of the two guide rails 107, the positioning parts 111 comprise a rotating shaft 112, a support 113, a screw 114 and an anti-abrasion pad 115, the rotating shaft 112 is rotationally connected with the guide rails 107 and located at the side of the guide rails 107, the support 113 is fixedly connected with the rotating shaft 112 and located at the side of the rotating shaft 112, the screw 114 is in threaded connection with the support 113 and penetrates through the support 113, and the anti-abrasion pad 115 is fixedly connected with the screw 114 and located at the side of the screw 114. Before assembling the battery pack assembly 103, a user rotates the rotating shaft 112 to enable the bracket 113 and the anti-wear pad 115 to rotate to be perpendicular to the supporting plate 106, then places the battery pack assembly 103 on the supporting plate 106, then rotates the bracket 113 and the anti-wear pad 115 to be parallel to the supporting plate 106, and then rotates the screw 114 to enable the screw 114 to drive the anti-wear pad 115 to move to be close to the battery pack assembly 103, and the position of the battery pack assembly 103 can be limited by utilizing the anti-wear pad 115.
In addition, the spring 116 is fixedly connected with the supporting plate 106 and is positioned at the bottom of the supporting plate 106, the pull block 117 is fixedly connected with the spring 116 and is positioned at one end of the spring 116 away from the supporting plate 106, and the limit rod 118 is fixedly connected with the pull block 117 and penetrates through the spring 116 and the supporting plate 106. The limiting rod 118 can be moved by pulling the pull block 117, the position of the slide block 108 can be limited by using the limiting rod 118, and the spring 116 is used for resetting the limiting rod 118.
Finally, the bevel block 119 is fixedly connected to the stop lever 118, and is located at a side edge of the stop lever 118. After the sliding block 108 contacts with the inclined surface block 119, the sliding block 108 pushes the inclined surface block 119, so that the inclined surface block 119 moves downwards, and the inclined surface block 119 drives the limiting rod 118 to move downwards, so that the battery pack assembly 103 can be mounted more conveniently.
When the battery pack assembly 103 is used, a user rotates the rotating shaft 112 to enable the bracket 113 and the anti-abrasion pad 115 to rotate to be in a vertical state with the supporting plate 106, then the battery pack assembly 103 is placed on the supporting plate 106, two sliding blocks 108 are respectively positioned between the guide rail 107 and the supporting plate 106, the battery pack assembly 103 is slid along the guide rail 107, in the process, the sliding blocks 108 are contacted with the inclined surface blocks 119, the sliding blocks 108 push the inclined surface blocks 119, the inclined surface blocks 119 move downwards, the inclined surface blocks 119 drive the limiting rod 118 to move downwards, the springs 116 are stretched, after the conductive jacks 104 on the battery pack assembly 103 are in butt joint with the conductive plugs on the vacuum source assembly 101, the sliding blocks 108 are separated from the limiting rod 118, the limiting rod 118 moves upwards under the pushing of the springs 116, the battery pack assembly 103 is limited by the limiting rod 118, the battery pack assembly 103 is moved to the battery pack assembly 103 by the supporting plate, the battery pack assembly 103 and the battery pack assembly 103, the battery pack assembly 103 is driven by the screw rod 115 to move parallel to the position of the vacuum source assembly 101, the anti-abrasion pad 114 is driven by the screw rod 114, the anti-abrasion pad 115 is driven to move away from the vacuum source assembly 101, and the battery pack assembly 103 is driven to move the anti-abrasion pad assembly 103, and the vacuum source assembly is driven to move the battery pack assembly 103, and the anti-abrasion pad assembly is moved to be in a position parallel to the position of the vacuum source assembly 101, the assembling mode of the battery pack assembly 103 is not easy to cause the damage of an assembling structure even for an untrained common user, and solves the problem that when the battery pack assembly 103 is assembled, the conventional handheld dust collector is easy to cause damage to barbs or notches due to improper operation or excessive force, so that the firmness of assembly is affected.
The foregoing disclosure is only illustrative of one or more preferred embodiments of the present application, and it is not intended to limit the scope of the claims hereof, as persons of ordinary skill in the art will understand that all or part of the processes for practicing the embodiments described herein may be practiced with equivalent variations in the claims, which are within the scope of the application.
Claims (5)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423146755.0U CN223585838U (en) | 2024-12-19 | 2024-12-19 | Fool-proof assembling structure for dust collector battery pack |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423146755.0U CN223585838U (en) | 2024-12-19 | 2024-12-19 | Fool-proof assembling structure for dust collector battery pack |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223585838U true CN223585838U (en) | 2025-11-25 |
Family
ID=97746627
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202423146755.0U Active CN223585838U (en) | 2024-12-19 | 2024-12-19 | Fool-proof assembling structure for dust collector battery pack |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223585838U (en) |
-
2024
- 2024-12-19 CN CN202423146755.0U patent/CN223585838U/en active Active
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| GR01 | Patent grant | ||
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