Dust removal tool
By designing a dust removal tool with adjustable support arms, the existing dust removal dust body is easily folded and the wipes are inconvenient to be stored, and the automatic storage of the cleaning head and the convenient disassembly of the wipes is achieved.
Patent Information
- Application Number
- CN202421652855.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-12
AI Technical Summary
The existing dust removal duster is located on the outside when stored, which poses a risk of breaking, and the wipes are thrown away at any time and are inconvenient for storage.
A dust removal tool is designed, including a handle and a cleaning head, with a storage cavity in the handle, and the cleaning head is movably mounted at the front end of the storage cavity, including a first support arm and a second support arm, both of which can be adjusted to change the width of the cleaning head and close to the storage cavity when moving backwards.
By setting a storage cavity in the handle, the cleaning head can be completely stored in it, avoiding exposed and damaged, realizing automatic disassembly of wipes and convenient storage of dust removal tools.
Smart Images

Figure CN222917482U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of dust removal brushes, and particularly relates to a dust removal tool. Background Art
[0002] As a cleaning tool, the dust removal brush is widely used in daily household dust cleaning, such as feather dusters, electrostatic dusters, etc. The existing dust removal brushes generally include a handle and a brush body. The brush body is detachably installed with a disposable wiping material. The handle adjusts the use length and storage length of the dust removal brush through a telescopic structure and a rotating structure. This dust removal brush has the advantages of disposable wiping material and convenient storage. However, when the dust removal brush is stored, the brush body is located outside, and the brush body is generally a thin sheet supported by plastic, which has the risk of breaking. Therefore, there is still room for optimizing the structure of the dust removal brush. Summary of the Utility Model
[0003] An object of the utility model is to provide a dust removal tool to solve the above problems.
[0004] To achieve the above object of the utility model, the utility model is realized by the following technical solutions:
[0005] A dust removal tool includes a handle and a cleaning head. A storage cavity is arranged in the handle. The cleaning head is movably installed at the front end of the storage cavity. The cleaning head includes a first support arm and a second support arm. The relative positions of the first support arm and the second support arm are adjustable to change the width of the cleaning head. When the first support arm and the second support arm are opened, they support and tension a wiping material. When the first support arm and the second support arm move backward, they approach and close to enter the storage cavity. By arranging a storage cavity in the handle, the cleaning head can be stored in the storage cavity, shortening the overall storage length and volume of the dust removal tool, and avoiding the thin sheet-shaped cleaning head being exposed outside and damaged or broken. During the process of the cleaning head entering the storage cavity, the mouth of the storage cavity abuts against the wiping material, and the cleaning head gradually separates from the wiping material to realize the automatic disassembly of the wiping material.
[0006] Preferably, the first support arm and the second support arm are arranged in a staggered manner. When the cleaning head moves into the storage cavity, the first support arm and the second support arm are abutted by the entrance of the storage cavity and approach or deform, and enter the storage cavity in a stacked state.
[0007] Preferably, the first support arm and the second support arm are located on the same plane. A guiding surface is provided on the first support arm and / or the second support arm. When the cleaning head moves into the storage cavity, the first support arm and the second support arm are pushed against each other by the entrance of the storage cavity and approach each other. The guiding surface guides the first support arm and the second support arm to move or deform to a misaligned position and enter the storage cavity in a stacked state from top to bottom. The width of the wiping material is greater than the width of the handle. When in use, the wiping material needs to be supported and spread out by the cleaning head to form a cleaning surface. The misaligned arrangement of the guiding surface or the first support arm and the second support arm can reduce the width of the cleaning head when being stored, so as to enter the storage cavity for storage.
[0008] Preferably, a chute is provided on the handle, and a sliding component is provided between the handle and the cleaning head. The sliding component includes a sliding sleeve, a guide rod and a fixed seat. The sliding sleeve is located outside the handle, and the fixed seat is located inside the handle. The first support arm and the second support arm are both rotatably mounted on the fixed seat. The guide rod passes through the chute to connect the sliding sleeve and the fixed seat, so as to control the sliding sleeve to drive the cleaning head to enter or leave the storage cavity from the outside. The setting of the sliding component can control and drive the cleaning head to enter or leave the storage cavity from the outside, and the operation is more convenient. The first support arm and the second support arm are rotatably arranged, and the movement is more flexible. Compared with the deformation movement, it can avoid the deformation of the cleaning head when being stored.
[0009] Preferably, a chute is provided on the handle, and a sliding component is provided between the handle and the cleaning head. The sliding component includes a sliding sleeve and a guide rod. The sliding sleeve is located outside the handle, and the first support arm and the second support arm are both rotatably mounted on the guide rod. The guide rod passes through the chute and is fixedly connected to the sliding sleeve, so as to control the sliding sleeve to drive the cleaning head to enter or leave the storage cavity from the outside. Using the guide rod to form the rotating shaft of the first support arm and the second support arm enables the first support arm and the second support arm to rotate synchronously. The guide rod is also connected to the sliding sleeve, playing a role in linkage movement. There are fewer accessories and the installation is more convenient.
[0010] Preferably, extension segments are provided on both the first support arm and the second support arm. The extension segments extend towards the direction of the other support arm. Concave cavities are provided on the extension segments. Any one of the extension segments is inserted into the concave cavity of the other extension segment for staggered installation. The first support arm and the second support arm are connected along the same rotating shaft, and the rotating shaft is arranged on the extension segment. Arranging the rotating shaft on the extension segment enables the first support arm and the second support arm to enter the storage cavity only by rotating a small angle. Moreover, when rotating, the lower ends of the first support arm and the second support arm will not open outwards to abut against the storage cavity or be greater than the width of the storage cavity.
[0011] Preferably, a clearance cavity is provided between the first supporting arm and the second supporting arm, the clearance cavity is located at the front end of the rotating shaft, the guide rod passes through the clearance cavity, the guide rod abuts against the extension section to drive the cleaning head to move backward, and the front ends of the first supporting arm and the second supporting arm enclose the guide rod when the first supporting arm and the second supporting arm are stored, and the guide rod abuts against the first supporting arm and the second supporting arm to drive the cleaning head to move forward. The setting of the clearance cavity can simultaneously meet the rotation of the first supporting arm and the second supporting arm and the linkage between the sliding assembly and the cleaning head when the guide rod is installed, avoiding interference between the movement and rotation of the first supporting arm and the second supporting arm.
[0012] Preferably, the sliding assembly further comprises a locking mechanism, which comprises a card slot and a card block, wherein the card slot is arranged at the front end of the sliding slot, the card block is movably mounted between the sliding sleeve and the fixing seat, a spring is arranged between the card block and the fixing seat, and the elastic force of the spring causes the card block to automatically move upward into the card slot when it moves to the card slot position, so as to keep the cleaning head in an outwardly extended cleaning state, the card block is provided with a button, the button is located on the sliding sleeve, and the button is pressed, the card block moves downward out of the card slot, and the cleaning head can move backward into the storage state. The setting of the locking mechanism can keep the cleaning head in an extended cleaning state, and prevent the cleaning head from moving backward into the storage chamber during cleaning.
[0013] Preferably, the wiper is sleeved on the cleaning head, and the first supporting arm and the second supporting arm are provided with a mounting section and a storage section on both sides, respectively. When the first supporting arm and the second supporting arm are opened, the two mounting sections are separated from each other and can cooperate with the wiper to spread the wiper, and the mounting section includes a plurality of mounting blocks protruding outward, and the storage section is set as a straight surface or an arc surface. When the cleaning head enters the storage cavity, the storage section is close to or in contact with the side wall of the storage cavity, and the storage section reduces the resistance with the side wall of the storage cavity. The setting of the mounting section and the mounting block increases the resistance between the cleaning head and the wiper, and prevents the wiper from sliding and separating relative to the cleaning head.
[0014] Preferably, the wipe is provided in a bag, which is enclosed on three sides and open on one side, and the cleaning head enters the wipe from the opening, and the first supporting arm and the second supporting arm are opened to contact the inner surface of the wipe, so that a cleaning surface is formed on the width of the wipe.
[0015] Preferably, the bottom of the mounting block is provided with an inclined surface, and the inclined surface cooperates with the storage cavity to enable the first supporting arm and the second supporting arm to rotate toward each other when they move backward. The setting of the inclined surface can convert the backward movement of the first supporting arm and the second supporting arm into a rotation toward each other, thereby avoiding the situation where the bottom of the mounting block and the mouth of the storage cavity are stuck against each other.
[0016] The advantages of the utility model are: a storage cavity is provided in the handle, and the cleaning head can be stored in the storage cavity, thereby shortening the overall storage length and volume of the dust removal tool, and preventing the thin sheet-like cleaning head from being exposed to the outside and being damaged and broken; when the cleaning head enters the storage cavity, the mouth of the storage cavity abuts against the wiping object, and the cleaning head is gradually separated from the wiping object to realize automatic disassembly of the wiping object; the width of the wiping object is greater than the width of the handle, and the wiping object needs to be supported and spread out by the cleaning head to form a cleaning surface when in use, and the staggered setting of the guide surface or the first supporting arm and the second supporting arm can reduce the width of the cleaning head when it is stored, so that it can enter the storage cavity for storage. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the cleaning state of the dust removal tool of the utility model.
[0018] Figure 2 It is a schematic diagram of the cleaning head of the utility model in a closed state.
[0019] Figure 3 It is a schematic diagram of the storage state of the dust removal tool of the utility model.
[0020] Figure 4 It is an exploded schematic diagram of the dust removal tool of Example 1 of the utility model.
[0021] Figure 5 It is an overall schematic diagram of the cleaning head of Example 1 of the utility model.
[0022] Figure 6 This is a schematic diagram of the staggered installation of the first supporting arm and the second supporting arm in Example 1 of the utility model.
[0023] Figure 7 It is a schematic diagram of the guide surfaces of the first supporting arm and the second supporting arm of Example 1 of the utility model.
[0024] Figure 8 It is a schematic diagram of the engagement state of the card block and the card slot of Example 1 of the utility model.
[0025] Figure 9 It is a cross-sectional view and a partially enlarged schematic view of the backward movement process of the cleaning head of Example 1 of the utility model.
[0026] Figure 10 It is a cross-sectional view of the dust removal tool of Example 1 of the utility model and a partially enlarged schematic view of the giving way of the guide rod by the giving way cavity.
[0027] Figure 11 It is a schematic diagram of the state in which the supporting member supports the cleaning head in Embodiment 1 of the utility model.
[0028] Figure 12 It is an exploded schematic diagram of the dust removal tool of Example 2 of the utility model.
[0029] Figure 13 It is a sectional view of the dust removal tool and a partial enlarged schematic diagram of the pressing buckle in Embodiment 2 of the present utility model.
[0030] Figure 14 It is a schematic diagram of the rotating state of the cleaning head in Embodiment 3 of the present utility model. Detailed implementation manners
[0031] The following will combine with the attached drawings to elaborate in detail the implementation manners of the present utility model, so as to fully understand how the present utility model uses technical means to solve technical problems and achieve the realization process of technical effects and implement accordingly.
[0032] In the present utility model, certain terms are used to refer to specific components. Those skilled in the art should understand that this specification and the claims do not use the difference in names as a way to distinguish components, but use the difference in functions of components as the criterion for distinction. It should be noted that unless otherwise specified, when a component is described as "provided with" or "arranged in" or "set on" another component and other words, it can mean directly provided with or directly arranged in another component or there can also be an intermediate component, and it can be an integral structure or a split structure. When a component is described as "connected" to another component and other words, it can be directly connected or connected through an intermediate component, and it can be integrally connected or split-connected or there can be a contact fit relationship. When a component is described as "set on another component", it does not mean that this component must be located above or on the upper part of another component, but can also be in other positions. The terms "upper", "lower", "left", "right", "high", "low" and similar expressions used herein are based on the normal placement state of the product and are only for the purpose of convenience of description. The term "a plurality" used herein refers to two or more numbers. The terms "vertical", "horizontal" and similar words used herein refer to a substantially vertical or substantially horizontal state within a reasonable error range and do not have to be very precise. Embodiment
[0033] Such as Figure 1-12 , a dust removal tool, including a handle 1 and a cleaning head 2. A storage cavity 3 is provided in the handle 1. The cleaning head 2 is movably installed at the front end of the storage cavity 3. The cleaning head 2 includes a first support arm 4 and a second support arm 5. The relative positions of the first support arm 4 and the second support arm 5 can be adjusted to change the width of the cleaning head 2. The first support arm 4 and the second support arm 5 are opened and detachably support a tensioned wiping material (not shown in the drawings) and approach and close when moving backward to enter the storage cavity 3.
[0034] In this embodiment, the handle 1 of the dust removal tool is described as having only one section, that is, the handle 1 is not provided with a telescopic structure, but only one section. The front end of the handle 1 is connected to the cleaning head 2. In actual use, a telescopic structure can also be provided on the handle 1. It can be understood that on the basis of the handle 1 and the cleaning head 2 of this embodiment, the rear end of the handle 1 is also provided with a plurality of telescopic rods, and the handle 1 can enter the telescopic rod backward to realize telescopic adjustment. This embodiment is described in detail with the dust removal functional unit composed of the handle 1 and the cleaning head 2. Even if a telescopic rod is provided at the rear end of the handle 1, it will not cause too much impact on the specific structure between the handle 1 and the cleaning head 2. For example, the cleaning head 2 is first stored in the handle 1, and then the handle 1 and the telescopic rod are telescopically stored respectively; when unfolding, first pull the handle 1 and the telescopic rod apart and then pull the cleaning head 2 apart.
[0035] The handle 1 in the present embodiment is configured to be in a round tube shape or a square tube shape, and in order to facilitate the user's holding, the diameter or width of the handle 1 is between 20MM-30MM. The handle 1 of this size can meet the hand shape of most consumers and is more comfortable to hold. The first supporting arm 4 and the second supporting arm 5 have the same structure, and only the installation direction or position is different. During production and assembly, workers do not need to deliberately distinguish between the first supporting arm 4 and the second supporting arm 5, so as to improve production and assembly efficiency. The width of the first supporting arm 4 and the second supporting arm 5 when stored is adapted to the storage cavity 3, and is larger than the size of the storage cavity 3 when unfolded, so as to jointly support the wipe so that the wipe has a cleaning surface with a stable width.
[0036] Specifically, Figure 2 and Figure 6 , the width of each of the first supporting arm 4 and the second supporting arm 5 is adapted to the storage chamber 3, and they are arranged in a staggered manner, that is, the first supporting arm 4 and the second supporting arm 5 as a whole or on a side close to each other are on different planes. When the cleaning head 2 moves backward into the storage chamber 3, the first supporting arm 4 and the second supporting arm 5 move toward each other until the two supporting arms overlap up and down. Of course, the first supporting arm 4 and the second supporting arm 5 can also be arranged on the same plane, such as Figure 7 A guide surface 6 is provided on one or both of the first supporting arm 4 and the second supporting arm 5. When the cleaning head 2 moves backward, the first supporting arm 4 and the second supporting arm 5 move toward each other under the obstruction of the entrance 13 of the storage chamber 3. The first supporting arm 4 and the second supporting arm 5 are close to each other on one side, and under the action of the guide surface 6, the height change between the first supporting arm 4 and the second supporting arm 5 is gradually dislocated until the two supporting surfaces overlap up and down.
[0037] It should be noted that the front and rear, up and down, and width directions in this embodiment refer to the attached Figure 1-3 Description, move forward and attach Figure 1-3 The rightward movement in the figure, the backward movement in the figure, and the upward and downward movement in the figure Figure 1-3 The direction of approaching or moving away from the line of sight can also be understood asFigure 7-8 in the up-down direction, the width direction is Figure 1-3 in the up-down direction, and this direction is the opening direction of the cleaning head 2.
[0038] In this embodiment, the first support arm 4 and the second support arm 5 are rotatably connected. In other embodiments, the first support arm 4 and the second support arm 5 may be fixedly connected or integrally formed. The first support arm 4 and the second support arm 5 are provided as plastic sheets, and deform and overlap when subjected to an external force.
[0039] Preferably, in order to facilitate controlling the backward movement and storage of the cleaning head 2, a chute 7 is provided on the handle 1, and a sliding assembly 8 is provided between the handle 1 and the cleaning head 2. The sliding assembly 8 includes a sliding sleeve 9, a guide rod 10, and a fixed seat 11. The sliding sleeve 9 is located outside the handle 1, the fixed seat 11 is located inside the handle 1, the first support arm 4 and the second support arm 5 are both rotatably mounted on the fixed seat 11, and the guide rod 10 passes through the chute 7 to connect the sliding sleeve 9 and the fixed seat 11, so as to control the sliding sleeve 9 outside the handle 1 to indirectly drive the cleaning head 2 to enter or leave the storage cavity 3.
[0040] In other embodiments, the sliding assembly 8 may also be arranged such that the sliding assembly 8 includes a sliding sleeve 9 and a guide rod 10. The sliding sleeve 9 is located outside the handle 1, the first support arm 4 and the second support arm 5 are both rotatably mounted on the guide rod 10, and the guide rod 10 passes through the chute 7 and is fixedly connected to the sliding sleeve 9, so as to control the sliding sleeve 9 outside the handle 1 to indirectly drive the cleaning head 2 to enter or leave the storage cavity 3.
[0041] In the above embodiment, the first support arm 4 and the second support arm 5 are rotatably connected along the same rotating shaft 12, so that the first support arm 4 and the second support arm 5 rotate synchronously, and the rotating shaft 12 is located at the rear end of the first support arm 4 and the second support arm 5. Setting the rotating shaft 12 at this position can expand the rotation angle of the first support arm 4 and the second support arm 5 and reduce the influence of the side wall and the entrance 13 of the storage cavity 3 on the first support arm 4 and the second support arm 5. If the first support arm 4 and the second support arm 5 are rotatably connected along different rotating shafts 12 respectively, the rotation angles of the first support arm 4 and the second support arm 5 are easily blocked by the side wall and the entrance 13 of the storage cavity 3, and the rotation angles become smaller. If the rotating shaft 12 is set at a position far from the rear end of the first support arm 4 and the second support arm 5, the first support arm 4 and the second support arm 5 form a scissor structure, that is, the front end rotates and opens, and the rear end rotates and opens in the opposite direction. Under the obstruction of the side wall of the storage cavity 3, the rotation angles of the first support arm 4 and the second support arm 5 are small. Connecting the first support arm 4 and the second support arm 5 along the same rotating shaft 12 and setting the rotating shaft 12 at the rear end can expand the rotation angles of the first support arm 4 and the second support arm 5 within the limited space and width of the storage cavity 3 to adapt to the use of wiping objects with a larger width.
[0042] Specifically, such as Figure 6, extension segments 14 are provided on both the first support arm 4 and the second support arm 5. The extension segments 14 extend towards the direction of the other support arm. Concave cavities 15 are provided on the extension segments 14. Any one of the extension segments 14 is inserted into the concave cavity 15 of the other extension segment 14 for staggered installation. The first support arm 4 and the second support arm 5 are connected along the same rotating shaft 12, and the rotating shaft 12 is arranged on the extension segment 14. The setting of the extension segment 14 makes the rotating shaft 12 closer to the centers of the first support arm 4 and the second support arm 5, as well as the center of the storage cavity 3, so as to expand the rotation angle of the first support arm 4 and the second support arm 5. The setting of the concave cavity 15 enables the two support arms with the same structure to be automatically staggered during installation, so as to reduce the mutual obstruction when the first support arm 4 and the second support arm 5 rotate towards each other for storage.
[0043] In order to enable the cleaning head 2 to automatically move to the open state when leaving the storage cavity 3, a torsion spring (not shown in the drawings) is provided in this embodiment. The torsion spring is sleeved on the rotating shaft 12, and the torsion spring is accommodated in the concave cavities 15 of the two support arms. The two arms of the torsion spring extend forward and abut against the first support arm 4 and the second support arm 5 respectively, so as to release elastic force to make the first support arm 4 and the second support arm 5 rotate in the away direction when the cleaning head 2 leaves the storage cavity 3.
[0044] When the rotating shafts 12 of the first support arm 4 and the second support arm 5 are different components from the guide rod 10, in order to enable the guide rod 10 to drive the first support arm 4 and the second support arm 5 to move without interfering with the rotation of the first support arm 4 and the second support arm 5, in this embodiment, as Figure 5 , a relief cavity 16 is provided between the first support arm 4 and the second support arm 5. The relief cavity 16 is located at the front end of the rotating shaft 12. The guide rod 10 passes through the relief cavity 16. The guide rod 10 abuts against the fixed seat 11 or the extension segment 14 to drive the cleaning head 2 to move backward. When the first support arm 4 and the second support arm 5 are stored, the front ends will enclose the guide rod 10, and the guide rod 10 abuts against the fixed seat 11 or the first support arm 4 and the second support arm 5 to drive the cleaning head 2 to move forward. And during installation, first install the first support arm 4 and the second support arm 5 on the fixed seat 11, rotate the first support arm 4 and the second support arm 5 to the overlapping position, and jointly extend into the storage cavity 3 with the fixed seat 11. Move the sliding sleeve 9 to the position corresponding to the fixed seat 11, and sequentially pass the guide rod 10 through the sliding sleeve 9, the chute 7 and the relief cavity 16 from the outside to realize the overall installation of the dust removal tool.
[0045] Preferably, relief slots 17 are provided on both sides of the fixed seat 11 corresponding to the first support arm 4 and the second support arm 5. The relief slots 17 can increase the rotation angle of the first support arm 4 and the second support arm 5. Of course, it can also be set that the rotating shaft 12 is arranged at the front end of the fixed seat 11, that is, the rotating shaft 12 is flush with the front surface of the fixed seat 11 or protrudes from the front surface, so as to eliminate the rotation obstruction of the side wall of the fixed seat 11 to the first support arm 4 and the second support arm 5.
[0046] In the above embodiments, if a telescopic rod is added to the rear side of the handle 1, the size of the front section of the telescopic rod can be adapted to the sliding sleeve 9, and the mating size between the rear end of the handle 1 and the front section of the telescopic rod can be adjusted to be adapted to the size of the sliding sleeve 9, so that after the sliding sleeve 9 moves to the rear end of the handle 1, the sliding sleeve 9 and the handle 1 can jointly move backward into the telescopic rod; alternatively, the thickness of the sliding sleeve 9 can be adjusted or the sliding sleeve 9 can be removed, a sliding convex block is arranged at the position corresponding to the sliding groove 7 on the outer side of the handle 1, and a channel adapted to the sliding convex block is arranged at the corresponding position of each section of the telescopic rod, so that the handle 1 and the sliding convex block can enter the telescopic rod for storage; or after the sliding sleeve 9 is removed, the cleaning head 2 is pushed to move the cleaning head 2 backward, and when it moves to the extreme rear position, the front end of the cleaning head 2 is located outside the storage cavity 3, so as to pull the cleaning head 2 to move forward and open. In this structure, there is no need to perform too much processing on the telescopic rod.
[0047] Preferably, the sliding assembly 8 further includes a locking mechanism. The locking mechanism includes a card slot 18 and a clamping block 19. The card slot 18 is arranged at the front end of the sliding groove 7. The clamping block 19 is movably installed between the sliding sleeve 9 and the fixed seat 11. A spring 20 is arranged between the clamping block 19 and the fixed seat 11. The elastic force of the spring 20 makes the clamping block 19 automatically move upward into the card slot 18 when it moves to the position of the card slot 18, so as to keep the cleaning head 2 in the extended cleaning state. A button 21 is arranged on the clamping block 19. The button 21 is located on the sliding sleeve 9. When the button 21 is pressed, the clamping block 19 moves downward to leave the card slot 18, and the cleaning head 2 can move backward into the storage state. In this embodiment, the clamping block 19 is arranged on the side surface of the guide rod 10, and the connection position between the guide rod 10 and the sliding sleeve 9 forms the button 21.
[0048] In this embodiment, sliding rails 22 extending into the storage cavity 3 are arranged on both sides of the sliding groove 7. The length of the sliding rails 22 is adapted to the sliding groove 7, and a step is arranged at the front end of the sliding rails 22. The position of the step forms the card slot 18. When the fixed seat 11 moves to the position of the card slot 18, the clamping block 19 automatically enters the card slot 18 for positioning under the action of the spring 20. At the same time, a groove 23 is arranged on the fixed seat 11, and the sliding rails 22 can be inserted into the groove 23. The fixed seat 11 moves back and forth in the storage cavity 3, and the front and rear positions of the groove 23 change relative to the sliding rails 22. The arrangement of the groove 23 facilitates alignment during assembly, and the groove 23, the sliding rails 22, the guide rod 10 and the sliding groove 7 jointly act to limit the moving direction and circumferential fixation of the sliding assembly 8.
[0049] Of course, on the basis of setting the card slot 18 at the front end of the sliding groove 7 to position and hold the cleaning head 2 in the extended cleaning state, the same card slot 18 can also be arranged at the rear end of the sliding groove 7. When the sliding assembly 8 moves backward until the cleaning head 2 completely enters the storage cavity 3, the clamping block 19 enters the card slot 18 at the rear end to keep the cleaning head 2 in the storage state where the whole is located in the storage cavity 3.
[0050] In other embodiments, the card slot 18 can also adopt other methods. The slide rails 22 are not provided on both sides of the slide groove 7. For example, Figure 12 , a sunken groove or a through hole penetrating outward is provided at the front end of the slide groove 7. The groove or hole forms the card slot 18. When the sliding assembly 8 moves to the position of the card slot 18, the latch 19 automatically enters the card slot 18 for positioning. Another identical card slot 18 is provided at the rear end of the slide groove 7 to keep the cleaning head 2 in the stored state. With the card slot 18 and latch 19 structures of this structure, when adding a telescopic rod, the sliding sleeve 9 and the guide rod 10 structures can be removed to maintain the consistency of the outer shape of the handle, without redundant protruding parts, so as to facilitate the production and processing of the telescopic rod and make the telescopic fit between the handle and the telescopic rod more stable. The latch 19 and the card slot 18 can also adopt the method of setting an elastic member on the latch 19 and an arc surface on the edge of the card slot 18, so that the latch 19 automatically enters or leaves the limit of the card slot 18 when pushing and pulling the cleaning head.
[0051] In the above embodiments, the guide rod 10 passes through the slide groove 7 and is respectively connected to the sliding sleeve 9 and the fixed seat 11, and the guide rod 10 abuts against the front end of the slide groove 7 to prevent the sliding assembly 8 and the cleaning head from moving forward and detaching from the handle; by using the method of forming the card slot 18 with a groove or a hole, the cooperation and limitation between the latch 19 and the card slot 18 can also prevent the sliding assembly 8 and the cleaning head from detaching from the handle forward.
[0052] In the above embodiments, for example, Figure 1 , when the cleaning head 2 is opened, it is in a V shape, that is, the front ends of the first support arm 4 and the second support arm 5 are far apart, and the rear ends are connected at the same point. A receiving section 24 is provided on the side where the first support arm 4 and the second support arm 5 are close when opened, and an installation section is provided on the side where they are far apart. The receiving section 24 is set as a flat surface or an arc surface. When the cleaning head 2 moves backward into the receiving cavity 3, the receiving sections 24 move toward each other and gradually move away until they contact or abut against the entrance 13 of the receiving cavity 3. The flat surface or arc surface setting of the receiving section 24 reduces the resistance between the side wall of the receiving cavity 3, and avoids the receiving section 24 being stuck against the entrance 13 of the receiving cavity 3. The installation section includes several outwardly protruding installation blocks 25. When installing the wiping object, the installation section is located on the outside and contacts the wiping object. The setting of the installation blocks 25 reduces the contact area between the cleaning head 2 and the wiping object, increases the moving resistance between the cleaning head 2 and the wiping object when the cleaning head 2 is opened, and avoids the wiping object from falling off.
[0053] In this embodiment, the wiping object is set as a bag shape, that is, three sides of the wiping object are enclosed and one side is open. The opening is provided in the width direction of the wiping object, and the size of the opening is between the widths when the cleaning head 2 is closed and opened, so that the cleaning head 2 can enter the opening when it is closed and prevent the wiping object from detaching from the cleaning head 2 when the cleaning head 2 is opened.
[0054] Preferably, the wiper is composed of two non-woven fabrics spliced up and down. A space is formed between the two non-woven fabrics for the cleaning head 2 to enter and open and close. Fibers or soft hairs for dust removal are provided on the outer sides of the two non-woven fabrics. The cleaning head 2 enters the wiper from the opening. The first support arm 4 and the second support arm 5 open and contact the inner surface of the non-woven fabric. The mounting blocks 25 on the two support arms jointly tighten the wiper to prevent the wiper from falling off, and can also form a cleaning plane on the upper and lower surfaces of the wiper.
[0055] Preferably, an inclined surface 26 is provided at the bottom of the mounting block 25. The inclined surface 26 cooperates with the receiving cavity 3 to make the first support arm 4 and the second support arm 5 rotate towards each other when moving backward.
[0056] In this embodiment, the wiper is prevented from falling by the opening of the wiper being smaller than the distance at which the cleaning head 2 opens, and in combination with the abutting and tightening of the mounting block 25 on the wiper, to prevent the wiper from falling.
[0057] In order to prevent the first support arm 4 and the second support arm 5 from moving towards each other under force when the cleaning head 2 is in the cleaning position, preferably, a support member 27 is further provided between the first support arm 4 and the second support arm 5. The support member 27 prevents the first support arm 4 and the second support arm 5 from moving towards each other. In this embodiment, the support member 27 is set as a compression spring or an elastic strip. The elastic force of the support member 27 enables the first support arm 4 and the second support arm 5 not to move towards each other when receiving a small force, making the installation of the first support arm 4 and the second support arm 5 on the wiper more stable.
[0058] Specifically, notches 28 are provided at positions where the first support arm 4 and the second support arm 5 are close to each other. Grooves for installing the support member 27 are provided on the notches 28. The elastic force of the support member 27 is transmitted to the first support arm 4 and the second support arm 5 through both ends to support the first support arm 4 and the second support arm 5 to remain in the open position. When the first support arm 4 and the second support arm 5 are closed, the support member 27 deforms and shortens until it is accommodated in the two notches 28.
[0059] The following introduces the installation and disassembly methods of the wiper in this embodiment.
[0060] During installation, push the sliding sleeve 9 forward to push part of the cleaning head 2 out of the receiving cavity 3. At this time, the width at which the cleaning head 2 opens is small. Align the pushed-out part of the cleaning head 2 with the opening of the wiper and insert it. Continue to push the sliding sleeve 9 forward to drive the cleaning head 2 to extend. During the forward movement of the cleaning head 2, the elastic force of the torsion spring makes the cleaning head 2 gradually open until the locking block 19 enters the card slot 18. At this time, the cleaning head 2 is in the extended cleaning state. In this state, the distance at which the front end of the cleaning head 2 opens is greater than the width of the opening of the wiper. The mounting sections on the first support arm 4 and the second support arm 5 abut against the inner surface of the wiper to make the wiper taut and form a cleaning plane.
[0061] During disassembly, the button 21 is pressed to make the card block 19 leave the card slot 18, and the sliding sleeve 9 is pulled backward to drive the cleaning head 2 to gradually enter the storage chamber 3. During the backward movement of the cleaning head 2, the outer side of the cleaning head 2 abuts against the entrance 13 of the storage chamber 3, and the first supporting arm 4 and the second supporting arm 5 are forced to rotate toward each other until the distance opened by the cleaning head 2 is equivalent to or smaller than the opening size of the wipe. The wipe abuts against the front end of the handle and gradually moves away from the cleaning head 2 until it falls off the cleaning head 2. Example
[0062] The same parts of this embodiment as those of the first embodiment will not be described repeatedly, and only the differences will be described. The difference between this embodiment and the first embodiment lies in the fixing structure between the wiper and the cleaning head 2 .
[0063] like Figure 12-13 In this embodiment, the sliding assembly 8 includes a sliding sleeve 9, a fixed seat 11 and a push buckle 30. The push buckle 30 is movably installed between the sliding sleeve 9 and the fixed seat 11. The push buckle 30 includes a pressing portion 31 and a positioning portion 32. The pressing portion 31 is arranged on the sliding sleeve 9, and the positioning portion 32 passes through the sliding groove 7 into the storage cavity 3 and extends forward. A positioning hole is provided at the opening position of the wiper. The cleaning head 2 enters the wiper to reach a preset installation position, and the positioning portion 32 extends into the positioning hole to realize the front and rear positioning between the wiper and the cleaning head 2, thereby preventing the wiper from detaching from the cleaning head 2.
[0064] Due to the arrangement of the positioning portion 32 and the positioning hole, this embodiment does not limit the opening size of the wiper. The opening of the wiper is arranged to match the width of the cleaning head 2 or one side of the wiper is completely open. The positioning portion 32 and the positioning hole can both realize the front and rear positioning of the wiper.
[0065] Preferably, both upper and lower sides of the cleaning head 2 are provided with push buckles 30 to position both upper and lower ends of the wiping object. In order to adapt to the push buckles 30 on both sides, in this embodiment, both upper and lower sides of the handle 1 are provided with slide grooves 7, and the sliding sleeve 9 is provided with holes for the push buckles 30 to pass through at positions corresponding to the two slide grooves 7, and the fixed seat 11 is also provided with holes for the push buckles 30 to pass through at positions corresponding to the clearance cavity 16. The upper and lower push buckles 30 enter the clearance cavity 16 along the holes in the up-and-down directions respectively, and the push buckles 30 that enter the clearance cavity 16 form a guide rod 10, and the front-to-back direction of the push buckles 30 abuts against the fixed seat 11 to drive the fixed seat 11 and the cleaning head 2 to move forward and backward following the sliding sleeve 9. Example
[0066] The same parts of this embodiment as those of embodiment 1-2 will not be described repeatedly, and only the differences will be described. The difference between this embodiment and embodiment 1-2 is that the cleaning head 2 can be rotated to adjust the cleaning angle.
[0067] likeFigure 14 In this embodiment, the cleaning head 2 is rotatably connected to the cleaning head 2 or between the cleaning head 2 and the fixed seat 11. When the cleaning head 2 extends out of the storage cavity 3, the angle of the cleaning head 2 relative to the handle 1 is adjusted by rotation to adapt to different positions to be cleaned.
[0068] The first support arm 4 and the second support arm 5 are thin sheets made of plastic. When moving backward into the storage cavity 3, the first support arm 4 and the second support arm 5 are deformed and move toward each other under the abutment of the entrance 13 of the storage cavity 3 to change the overall width of the first support arm 4 and the second support arm 5, so as to enter the storage cavity 3.
[0069] In this embodiment, the sliding assembly 8 includes a sliding sleeve 9, a guide rod 10 and a fixed seat 11. The guide rod 10 passes through the sliding groove 7 and is fixedly connected to the sliding sleeve 9 and the fixed seat 11 at both ends respectively. The front end of the fixed seat 11 is rotatably connected to the cleaning head 2. When the sliding assembly 8 moves to the frontmost cleaning state, the part of the fixed seat 11 rotatably connected to the cleaning head 2 extends out of the entrance of the storage cavity 3 for the cleaning head 2 to rotate and adjust the cleaning angle relative to the handle 1.
[0070] Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A dust removal tool, comprising a handle and a cleaning head, characterized in that: A storage cavity is provided in the handle, and the cleaning head is movably mounted at the front end of the storage cavity. The cleaning head comprises a first supporting arm and a second supporting arm. The relative positions of the first supporting arm and the second supporting arm can be adjusted to change the width of the cleaning head. The first supporting arm and the second supporting arm support and tension the wipe when they are opened to each other, and the first supporting arm and the second supporting arm close together when they move backward to enter the storage cavity.
2. The dust removal tool according to claim 1, characterized in that: The first supporting arm and the second supporting arm are staggered, and the cleaning head moves into the storage chamber. The first supporting arm and the second supporting arm are pressed against the entrance of the storage chamber and move or deform to move closer to each other, and enter the storage chamber in a stacked state. Alternatively, the first supporting arm and the second supporting arm are located on the same plane, and a guide surface is provided on the first supporting arm and / or the second supporting arm. The cleaning head moves into the storage cavity, and the first supporting arm and the second supporting arm are pressed against the entrance of the storage cavity, and the guide surface guides the first supporting arm and the second supporting arm to move or deform to a dislocated position, so as to enter the storage cavity in a stacked state.
3. The dust removal tool according to claim 2, characterized in that: A slide groove is provided on the handle, and a sliding assembly is provided between the handle and the cleaning head. The sliding assembly includes a sliding sleeve, a guide rod and a fixed seat. The sliding sleeve is located on the outside of the handle, and the fixed seat is located on the inside of the handle. The first supporting arm and the second supporting arm are both rotatably mounted on the fixed seat. The guide rod passes through the slide groove to connect the sliding sleeve and the fixed seat, so as to control the sliding sleeve from the outside to drive the cleaning head to enter or leave the storage cavity.
4. The dust removal tool according to claim 2, characterized in that: A slide groove is provided on the handle, and a sliding assembly is provided between the handle and the cleaning head. The sliding assembly includes a sliding sleeve and a guide rod. The sliding sleeve is located on the outside of the handle, and the first supporting arm and the second supporting arm are both rotatably mounted on the guide rod. The guide rod passes through the slide groove and is fixedly connected to the sliding sleeve to control the sliding sleeve from the outside to drive the cleaning head to enter or leave the storage cavity.
5. The dust removal tool according to claim 3, characterized in that: The first supporting arm and the second supporting arm are both provided with an extension section, and the extension section extends in the direction of the other supporting arm. A concave cavity is provided on the extension section, and any extension section is inserted into the concave cavity of the other extension section for staggered installation. The first supporting arm and the second supporting arm are connected along the same rotating shaft, and the rotating shaft is arranged on the extension section.
6. The dust removal tool according to claim 5, characterized in that: A clearance cavity is provided between the first supporting arm and the second supporting arm, and the clearance cavity is located at the front end of the rotating shaft. The guide rod passes through the clearance cavity, and the guide rod abuts against the extension section to drive the cleaning head to move backward. When the first supporting arm and the second supporting arm are stored, the front end of the guide rod is enclosed by the guide rod, and the guide rod abuts against the first supporting arm and the second supporting arm to drive the cleaning head to move forward.
7. The dust removal tool according to claim 6, characterized in that: The sliding assembly also includes a locking mechanism, which includes a slot and a block. The slot is arranged at the front end of the slot, and the block is movably installed between the sliding sleeve and the sliding sleeve and the fixed seat. A spring is provided between the block and the fixed seat, and the elastic force of the spring causes the block to automatically move upward into the slot when it moves to the slot position, so as to keep the cleaning head in an outwardly extended cleaning state. A button is provided on the block, and the button is located on the sliding sleeve. When the button is pressed, the block moves downward to leave the slot, and the cleaning head can move backward into a storage state.
8. The dust removal tool according to claim 7, characterized in that: The wipe is sleeved on the cleaning head, and a mounting section and a storage section are respectively provided on both sides of the first supporting arm and the second supporting arm. When the first supporting arm and the second supporting arm are opened, the two mounting sections are separated from each other and can cooperate with the wipe to spread the wipe. The mounting section includes a plurality of mounting blocks protruding outward, and the storage section is configured as a straight surface or an arc surface. When the cleaning head enters the storage cavity, the storage section is close to or in contact with the side wall of the storage cavity, and the storage section reduces the resistance with the side wall of the storage cavity.
9. The dust removal tool according to claim 8, characterized in that: The wipe is arranged in a bag, surrounded on three sides and open on one side, the cleaning head enters the wipe from the opening, the first supporting arm and the second supporting arm are opened and contact the inner surface of the wipe, so that a cleaning surface is formed on the width of the wipe.
10. The dust removal tool according to claim 9, characterized in that: An inclined surface is provided at the bottom of the mounting block, and the inclined surface cooperates with the receiving cavity to enable the first supporting arm and the second supporting arm to rotate toward each other when they move backward.