Composite rag, cleaning assembly and cleaning equipment
By designing partitioned water replenishment and absorption sections in the sweeper's mop, the problem of excessive residual water on the floor during wet mopping is solved, achieving a more efficient cleaning effect.
Patent Information
- Application Number
- CN202423323572.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing sweeper mops leave a lot of residual water on the floor during wet mopping operations, which affects the cleaning effect.
Design a composite cleaning cloth, including a wet mopping layer, an interlayer, and an installation layer. The interlayer is divided into a water-replenishing section and a water-absorbing section. The water-replenishing section and the water-absorbing section are laid flat on the same layer and separated by an isolation section to ensure that the water-replenishing section stores moisture and the water-absorbing section absorbs residual water.
While ensuring sufficient water usage for wet mopping, it effectively reduces residual water on the floor, thus improving cleaning results.
Smart Images

Figure CN223914074U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of cleaning equipment, especially relates to a composite wiping cloth, cleaning assembly and cleaning equipment. BACKGROUND
[0002] The sweeper can automatically clean the ground, perceive the surrounding environment through the built-in sensor, plan the cleaning route according to the perceived information, and remove the sundries on the ground through the high-speed rotating brush head and strong suction. The sweeper usually includes cleaning and dust removal and wiping cloth wet mopping functions, and can automatically complete the cleaning work of the floor, greatly facilitating people's daily life.
[0003] The sweeper performs wet mopping work through the rotary mop connecting piece equipped on the body, and the bottom of the mop connecting piece is provided with a mop for mopping. In order to meet the wet mopping requirement, the mop needs to maintain a certain amount of water, however, the mop structure of the existing sweeper has the problem of too much residual water on the ground during wet mopping work, thereby affecting the cleaning effect of the sweeper. UTILITY MODEL CONTENT
[0004] In view of the above-mentioned deficiencies of the prior art, the purpose of the utility model is to provide a composite wiping cloth, a cleaning assembly and a cleaning equipment, which are used to solve the technical problem of too much residual water on the ground of the sweeper wiping cloth during wet mopping work in the prior art.
[0005] To achieve the above-mentioned purposes and other related purposes, the technical scheme of the utility model is as follows:
[0006] A composite wiping cloth comprises a wet mopping layer, a layer and an installation layer which are connected in sequence from bottom to top, wherein,
[0007] The wet mopping layer is used for mopping and decontamination;
[0008] The layer comprises a water supplement part and a water absorption part which are arranged in zones and used for storing water and absorbing residual water respectively, and the water supplement part and the water absorption part are laid in the same layer;
[0009] The installation layer is used for connecting with the mop connecting piece.
[0010] The composite wiping cloth provided by the application comprises a wet mopping layer, a layer and an installation layer which are connected in sequence from bottom to top, wherein the layer comprises a water supplement part and a water absorption part which are laid in the same layer. By arranging the water supplement part and the water absorption part in zones in the layer, the water supplement part and the water absorption part are included in the layer at the same time. The water supplement part can store water for mopping, and the water absorption part can absorb residual water after mopping. The wet mopping water amount of the wiping cloth can be ensured, the residual water amount on the ground can be effectively reduced, and the cleaning effect can be improved.
[0011] Optionally, the composite mop further comprises an isolation part, the isolation part is located between the water supplement part and the water absorption part, and the water supplement part and the water absorption part are separated by the isolation part.
[0012] The structure can separate the water supplement part and the water absorption part by the isolation part, protect the water supplement part and the water absorption part respectively, and avoid water flow interference between the water supplement part and the water absorption part.
[0013] Optionally, the outer periphery of the wet mop layer has a turn-up, and the wet mop layer, the interlayer and the mounting layer are connected by the turn-up.
[0014] The turn-up of the outer periphery of the wet mop layer provides a reliable fixing point for the connection of the wet mop layer, the interlayer and the mounting layer, and the connection has higher structural stability, so that the mop is not prone to delamination or deformation during long-term use, and the overall durability of the mop is improved.
[0015] Optionally, the water absorption rate of the water absorption part is greater than the water absorption rate of the water supplement part.
[0016] The water absorption part has a higher water absorption rate, so that it can more effectively absorb the excess water generated by the wet mop layer during mopping; the water absorption rate of the water supplement part is lower, which helps to maintain the stability of the internal water, and can ensure that the wet mop layer always maintains appropriate humidity during mopping.
[0017] Optionally, the area ratio of the water absorption part on the interlayer is less than the area ratio of the water supplement part on the interlayer.
[0018] The area ratio of the water supplement part on the interlayer is greater, so that it can more effectively store and distribute water to the wet mop layer, the wet mop layer can continuously obtain sufficient water, and the cleaning coverage area is improved. The water absorption capacity of the water absorption part can absorb the residual water on the ground, which helps to reduce water residue and improve cleaning effect.
[0019] Optionally, the water supplement part is at least partially located in the middle of the interlayer, and the water absorption part is at least partially wrapped around the periphery of the water supplement part.
[0020] The water supplement part is located in the middle of the interlayer, which can ensure that the water is evenly distributed from the center to the periphery, and the water supplement part can more directly supply water to the wet mop layer, so that the wet mop layer can continuously and stably obtain water during cleaning; and the water absorption part is located in the periphery of the water supplement part, which can more effectively absorb the excess water generated by the wet mop layer during mopping.
[0021] Optionally, the water absorbing part encloses a closed accommodation space, and the water supplementing part is located in the accommodation space.
[0022] The water supplementing part is completely wrapped in the closed accommodation space formed by the water absorbing part, and the water supplementing part and the water absorbing part are separated by the isolation part, so that the moisture in the water supplementing part can be more concentratedly supplied to the wet mop layer, avoiding disordered diffusion and waste of the moisture; and the water absorbing part can more effectively absorb the excess moisture generated by the wet mop layer during mopping, reducing the amount of residual water on the ground.
[0023] Optionally, the water supplementing part, the water absorbing part and the isolation part are circular rings, and the water supplementing part, the isolation part and the water absorbing part are sequentially sleeved from inside to outside.
[0024] The circular ring design enables the water supplementing part, the isolation part and the water absorbing part to be closely sleeved together to form a stable overall structure, thereby improving the durability of the mop and reducing the possibility of loosening or falling off during use; and the circular ring design also enables the mop to more evenly distribute moisture during cleaning, thereby improving the cleaning effect.
[0025] Optionally, the isolation part has a water supplementing area and a water absorbing area, at least two water absorbing areas are circumferentially spaced apart from each other in the water supplementing area, the water supplementing part is located in the water supplementing area, and the water absorbing part is located in the water absorbing area.
[0026] The water absorbing areas are circumferentially spaced apart from each other in the water supplementing area, which helps to ensure that the water supplementing area continuously provides sufficient moisture to the wet mop layer, ensuring that the wet mop layer maintains an appropriate degree of moisture during cleaning; meanwhile, the water absorbing areas circumferentially spaced apart from each other on the side of the water supplementing area can absorb excess moisture, preventing too much residual water on the ground and avoiding local over-wetting or over-drying.
[0027] Optionally, the water supplementing part has at least two positioning grooves circumferentially spaced apart from each other, and the water absorbing part is adapted to the positioning grooves.
[0028] The positioning grooves can conveniently position and assemble the water absorbing part, so that a plurality of water absorbing parts are circumferentially spaced apart from each other on the water supplementing part; the water supplementing part can supply water to the wet mop layer through the middle part and the side part of the water supplementing part, thereby maintaining the moisture of the middle part and the side part of the wet mop layer; and correspondingly, the water absorbing parts circumferentially spaced apart from each other can timely absorb residual water, preventing residual water stains on the ground.
[0029] Optionally, at least one side edge of the water supplementing part is a circular arc surface, the water supplementing part has a mounting position on the circular arc surface, the water absorbing part is sleeved on the periphery of the circular arc surface and is adapted to the mounting position, and the isolation part is clamped between the water supplementing part and the water absorbing part.
[0030] The arc surface structure can help disperse stress and facilitate assembly of the water supplementing part and the water absorbing part; the water absorbing part is arranged on the side of the arc surface of the water supplementing part, and the water absorbing part is positioned with the water supplementing part through the mounting positions arranged on the outer periphery of the water supplementing part, so that the positioning of the water absorbing part and the water supplementing part is accurate and the connection is reliable.
[0031] Optionally, a partition structure is formed between the water supplementing part and the water absorbing part, the partition structure has a height difference with the water supplementing part and / or the water absorbing part, and the partition structure constitutes the isolation part.
[0032] The isolation part is formed by the partition structure formed between the water supplementing part and the water absorbing part, that is, the isolation part can not be independently arranged, and the structure is simpler.
[0033] Optionally, coaxial connecting holes are arranged in the middle of the wet mopping layer, the interlayer and the mounting layer.
[0034] The wet mopping layer, the interlayer and the mounting layer are connected through the coaxial connecting holes, so that the connection between the layers is more stable and is not prone to dislocation or loosening.
[0035] Optionally, the wet mopping layer is made of fiber cloth, the water supplementing part and the water absorbing part are made of sponges with different water absorption rates, the isolation part is made of a water isolation rubber strip, and the mounting layer is made of a bristle cloth.
[0036] The fiber cloth has good water absorption and wear resistance, can quickly absorb and retain water, ensures the wetness of the wet mopping layer, and is not prone to damage; the sponge has good water storage capacity; the water supplementing part and the water absorbing part are prepared by using sponges with different water absorption rates, so that the water supplementing part can store water and the water absorbing part can absorb residual water on the ground; the water isolation rubber strip can isolate the water of the water supplementing part and the water absorbing part, and has good adhesion; and the bristle cloth facilitates connection of the mounting layer with the mopping connecting piece.
[0037] Based on the same concept, the utility model also provides a cleaning assembly which comprises a mopping connecting piece and a composite wiping cloth as described above, and the composite wiping cloth is detachably connected to the bottom of the mopping connecting piece.
[0038] The composite wiping cloth is in contact with the ground under the driving of the mopping connecting piece, so that the ground is cleaned, and the water amount of the composite wiping cloth is ensured and residual water on the ground is prevented.
[0039] Optionally, the mopping connecting piece is a wiping cloth disc or a flat mop.
[0040] The mopping connecting piece can be a wiping cloth disc (disc-shaped) or a flat mop (flat-shaped), and both can be used to connect the composite wiping cloth to perform cleaning work.
[0041] Optionally, the mop connecting piece comprises a connecting body and a connecting seat, the connecting body is used for connecting the composite mop, a middle part of the connecting body is provided with the connecting seat, and the connecting seat is configured to drive the connecting body to rotate around an axis under a driving force.
[0042] The above structure utilizes the connecting seat to connect with the external driving power, and can drive the connecting body to rotate around the axis of the connecting body, so that the cleaning operation is performed.
[0043] Optionally, a plurality of water dripping channels are arranged on the connecting body and spaced apart along the circumference of the connecting body, and each water dripping channel has a guide inclined surface inclined towards the water dripping channel on the outer circumferential side.
[0044] The above structure is beneficial to guiding the water flow to the composite mop below the connecting body through the water dripping channels, so that the composite mop can continuously obtain water supply and perform wet mopping operation. The guide inclined surface is beneficial to guiding the water flow, so that the water flow is more rapidly gathered in the water dripping channel.
[0045] Based on the same concept, the utility model also provides a cleaning equipment which comprises a machine body and the cleaning assembly as described above, and the cleaning assembly is detachably connected to the machine body.
[0046] The above structure utilizes the cleaning assembly, so that the cleaning equipment can reduce the residual water amount on the ground while ensuring the water amount of the cleaning assembly, and ensures the cleaning effect.
[0047] As described above, the composite mop, the cleaning assembly and the cleaning equipment have the following beneficial effects:
[0048] The water supplement part and the water absorbing part are arranged in the interlayer partition and are laid in the same layer, so that the water supplement part and the water absorbing part are simultaneously included in the interlayer, the water supplement part can store the water for mopping, the water absorbing part can absorb the residual water after mopping, the wet mopping water amount of the mop can be ensured, the residual water amount on the ground can be effectively reduced, and the cleaning effect is improved. BRIEF DESCRIPTION OF DRAWINGS
[0049] Figure 1 FIG. 1 is a schematic diagram of the overall structure of the composite mop according to an embodiment of the utility model;
[0050] Figure 2 FIG. 2 is a schematic diagram of the exploded structure of the composite mop according to an embodiment of the utility model;
[0051] Figure 3 FIG. 3 is a schematic diagram of the structure of the interlayer of the composite mop according to an embodiment of the utility model;
[0052] Figure 4The exploded structural schematic view of the composite wiping cloth of another embodiment of the present utility model;
[0053] Figure 5 The structural schematic view of the interlayer of the composite wiping cloth of another embodiment of the present utility model;
[0054] Figure 6 The exploded structural schematic view of the composite wiping cloth of another embodiment of the present utility model;
[0055] Figure 7 The structural schematic view of the interlayer of the composite wiping cloth of another embodiment of the present utility model;
[0056] Figure 8 The overall structural schematic view of the cleaning assembly of the embodiment of the present utility model;
[0057] Figure 9 The exploded structural schematic view of the cleaning assembly of the embodiment of the present utility model;
[0058] Figure 10 The overall structural schematic view of the mopping connecting piece of the embodiment of the present utility model Figure 1 ;
[0059] Figure 11 The overall structural schematic view of the mopping connecting piece of the embodiment of the present utility model Figure 2 ;
[0060] Figure 12 The exploded structural schematic view of the mopping connecting piece of the embodiment of the present utility model;
[0061] Figure 13 The sectional structural schematic view of the mopping connecting piece of the embodiment of the present utility model;
[0062] Figure 14 The structural schematic view of the cleaning equipment of the embodiment of the present utility model.
[0063] Explanation of reference signs
[0064] 100 - composite wiping cloth;
[0065] 110 - wet mopping layer; 110a - first connecting hole;
[0066] 120 - interlayer; 121 - water supplementing part; 121a - second connecting hole; 121b - positioning groove; 121c - mounting position; 122 - water absorbing part; 123 - isolating part; 123a - water supplementing area; 123b - water absorbing area;
[0067] 130 - mounting layer; 130a - third connecting hole;
[0068] 200 - mopping connecting piece;
[0069] 210 - connecting body; 210a - inner ring; 210b - outer ring; 211 - water dripping channel; 211a - guide slope; 212 - adhesive member;
[0070] 220 - connecting seat;
[0071] 230 - elastic member;
[0072] 300 - cleaning assembly. DETAILED DESCRIPTION
[0073] The implementation of the present application will be described by specific embodiments, and those skilled in the art can easily understand other advantages and effects of the present application from the content disclosed in the specification. The present application can also be implemented or applied in different specific embodiments, and various modifications or changes can be made based on different views and applications without departing from the spirit of the present application.
[0074] It should be understood that the structures, proportions, sizes, etc. shown in the drawings attached to the specification are only used to understand and read the content disclosed in the specification for those skilled in the art, and do not define the limiting conditions for the implementation of the present application, so they do not have technical significance. Any modification of the structure, change of the proportional relationship or adjustment of the size does not affect the effects and purposes that can be achieved by the present application, and should still fall within the scope of the technical content disclosed by the present application. At the same time, the terms such as "up", "down", "left", "right", "middle" and "one" used in the specification are only for the convenience of clear description, and are not used to limit the scope of the present application. The change or adjustment of the relative relationship does not change the technical content.
[0075] The floor cleaning machine performs wet mopping work through the rotary mop connecting piece provided on the machine body. The mop cloth for mopping is installed at the bottom of the mop connecting piece. In order to meet the wet mopping requirements, the mop cloth often needs to maintain a certain amount of water. However, the mop cloth structure of the existing floor cleaning machine has the problem of more residual water on the ground when the water amount is large, thereby affecting the cleaning effect of the floor cleaning machine.
[0076] Therefore, in order to solve the above problems, the present application provides a composite mop cloth, a cleaning assembly and a cleaning equipment, which will be described in detail as follows:
[0077] Please refer to Figures 1 to 3The utility model provides a kind of composite wiping cloth, comprising: from bottom to top sequentially laminated connection's wet mop layer 110, interlayer 120 and installation layer 130, wherein, the wet mop layer 110 is used to mop and remove dirt;The interlayer 120 includes the water replenishing portion 121 for storing moisture and the water absorbing portion 122 for absorbing residual water arranged in zones, and the water replenishing portion 121 and the water absorbing portion 122 are laid in the same layer;The installation layer 130 is used to connect with mop connector 200.
[0078] Specifically, the wet mop layer 110 is used for mopping and removing dirt. The wet mop layer 110, as the part directly contacting the ground, is used for wet mopping and absorbing dirt on the ground. The interlayer 120 includes the water replenishing portion 121 and the water absorbing portion 122 arranged in zones. The water replenishing portion 121 is used for storing appropriate amount of moisture, ensuring that the wet mop layer 110 can continuously obtain moisture from the water replenishing portion 121 during cleaning, maintaining a wet state, thereby improving cleaning efficiency and avoiding the influence of cleaning effect due to insufficient moisture. The water absorbing portion 122 is used for absorbing excess moisture of the wet mop layer 110 remaining on the ground during or after cleaning, preventing excessive residual water on the ground and reducing water stains. The water replenishing portion 121 and the water absorbing portion 122 are laid in the same layer. Here, the "same layer" means that the water replenishing portion 121 and the water absorbing portion 122 are laid in the same layer regardless of their thickness. Here, "laying" means laying in the direction parallel to the plane of the interlayer 120. This allows the wiping cloth to maintain moisture during mopping and absorb excess moisture in time, greatly reducing the amount of residual water on the ground. In addition, the wiping cloth can maintain balance during cleaning and is not easy to twist or deform, which is beneficial to improve cleaning effect. The installation layer 130 is used to connect the wiping cloth with the mop connector 200, simplifying the process of replacing the wiping cloth and improving cleaning efficiency.
[0079] The composite wiping cloth 100 is sequentially laminated from bottom to top by the wet mop layer 110, the interlayer 120 and the installation layer 130. The interlayer 120 includes the water replenishing portion 121 and the water absorbing portion 122 arranged in the same layer, so that the interlayer 120 includes both the water replenishing portion 121 and the water absorbing portion 122. The water replenishing portion 121 can store water for mopping, and the water absorbing portion 122 can absorb residual water after mopping. This can ensure the amount of water for mopping while effectively reducing the amount of residual water on the ground, improving cleaning effect.
[0080] In the above embodiments, the composite wiping cloth further comprises a separation part 123, and the moisturizing part 121 and the water absorbing part 122 are separated by the separation part 123. Specifically, the separation part 123 serves as a barrier between the moisturizing part 121 and the water absorbing part 122, which not only separates the moisturizing part 121 and the water absorbing part 122 to prevent water from flowing between them, but also protects the respective states of the moisturizing part and the water absorbing part, respectively, to avoid water flow interference between the moisturizing part and the water absorbing part, thereby affecting the operation of the moisturizing part and the water absorbing part. At the same time, it also plays a role in fixed connection, ensuring the stability and durability of the sandwich layer 120.
[0081] It can be understood that the moisturizing part 121 and the water absorbing part 122 can be fixedly connected through the separation part 123, or can also be fixedly connected through the wet wiping layer 110 and the mounting layer 130.
[0082] In some embodiments, the outer periphery of the wet wiping layer 110 has a hem (not shown in the figure), and the wet wiping layer 110, the sandwich layer 120 and the mounting layer 130 are stitched together through the hem. Specifically, the outer periphery of the wet wiping layer 110 has a hem, which covers the outer edges of the wet wiping layer 110, the sandwich layer 120 and the mounting layer 130 and is stitched together. The hem design of the outer periphery of the wet wiping layer 110 provides a reliable fixing point for the stitching connection between the wet wiping layer 110, the sandwich layer 120 and the mounting layer 130. Compared with other bonding or buckling methods, this stitching connection method has higher structural stability, which can ensure that the wiping cloth is not prone to delamination or deformation during long-term use. The stitching connection tightly connects the three layers together through the stitches, which can effectively resist external force tearing and improve the overall durability of the wiping cloth, thereby prolonging the service life. At the same time, since the three layers are stitched together through the hem, the wet wiping layer 110 is not easy to slide or shift in a wet state, thereby improving the accuracy and efficiency of cleaning. The hem design makes the stitching connection of the wet wiping layer 110, the sandwich layer 120 and the mounting layer 130 more convenient and easy to operate.
[0083] It should be noted that the water absorption rate of the water absorption part 122 is greater than that of the water supplement part 121. Specifically, the water absorption part 122 is designed to have a higher water absorption rate, so that it can more effectively absorb the excess moisture generated by the wet mop layer 110 during mopping, helping to reduce the amount of residual water on the ground, prevent water stains and the risk of slipping, not only can improve the cleaning efficiency, but also can reduce the problem of stain spreading caused by excessive moisture during cleaning. In contrast, the water absorption rate of the water supplement part 121 is lower, which helps to maintain the stability of the water in the water supplement part 121. The main function of the water supplement part 121 is to store water for the wet mop layer 110 to use, avoiding excessive wetting that leads to water waste or poor cleaning effect, which can ensure that the wet mop layer 110 always maintains an appropriate degree of wetness during mopping. The difference in water absorption rate between the water absorption part 122 and the water supplement part 121 helps them work together to maintain the wetness of the wet mop layer 110 while reducing the amount of residual water on the ground.
[0084] In the above embodiments, the area ratio of the water absorption part 122 on the interlayer 120 is less than that of the water supplement part 121 on the interlayer 120. For example, the area ratio of the water absorption part 122 on the interlayer 120 is less than 20%. Since the water supplement part 121 occupies a larger area in the interlayer 120, it can store more water, allowing the wet mop layer 110 to continuously obtain water from the water supplement part 121 during cleaning, maintaining a wet state, thereby improving cleaning efficiency. In addition, the larger area of the water supplement part 121 allows the wet mop layer 110 to cover a wider area during cleaning, reducing the cleaning blind area and improving the uniformity of cleaning; although the area of the water absorption part 122 is small, it can absorb the residual water on the ground, preventing water from remaining, thereby avoiding water stains and the risk of slipping, and improving the cleaning effect.
[0085] Referring to Figure 3 In some embodiments, the water supplement part 121 is at least partially located in the middle of the interlayer 120, and the water absorption part 122 is at least partially wrapped around the periphery of the water supplement part 121. Specifically, the water supplement part 121 is located in the middle of the interlayer 120, which can ensure that the water is evenly distributed from the center to the periphery, allowing the water supplement part 121 to more directly supply water to the wet mop layer 110, so that the wet mop layer 110 can continuously and stably obtain water during cleaning, improving cleaning efficiency; the water absorption part 122 is wrapped around the periphery of the water supplement part 121, which can more effectively absorb the excess moisture generated by the wet mop layer 110 during mopping. This layout helps to prevent the accumulation of water on the ground and excessive wetness of the ground, maintaining the cleanliness of the ground, while also helping to more effectively absorb residual water when cleaning the edge area.
[0086] Continuing to refer to Figure 2 and Figure 3In some embodiments, the water absorbing portion 122 encloses a closed accommodation space, and the water supplementing portion 121 is located in the accommodation space. Specifically, the water supplementing portion 121 is completely wrapped in the closed accommodation space enclosed by the water absorbing portion 122, and the two are separated by the isolation portion 123, so that the moisture in the water supplementing portion 121 can be more concentratedly supplied to the wet mop layer 110, avoiding disordered diffusion and waste of the moisture, and the wet mop layer 110 can more stably obtain the required moisture during the cleaning process; the water absorbing portion 122 completely wraps the periphery of the water supplementing portion 121, which can more effectively absorb the excess moisture generated by the wet mop layer 110 during the cleaning process, and ensure the cleaning effect.
[0087] In the above embodiments, the water supplementing portion 121, the water absorbing portion 122 and the isolation portion 123 are all circular rings, and the water supplementing portion 121, the isolation portion 123 and the water absorbing portion 122 are sequentially sleeved from inside to outside. Specifically, the concept of the present application lies in the partitioned arrangement of the water supplementing portion 121 and the water absorbing portion 122, which is not limited to the specific shape structure. In the present example, the water supplementing portion 121, the water absorbing portion 122 and the isolation portion 123 are all circular rings; or, in other examples, the water supplementing portion 121 can be square, the water absorbing portion 122 can be circular, and the isolation portion 123 is located between the water supplementing portion 121 and the water absorbing portion 122; or, the water supplementing portion 121 is long strip-shaped, the water absorbing portion 122 is circular or long strip-shaped, and the isolation portion 123 is located between the water supplementing portion 121 and the water absorbing portion 122, etc.
[0088] The water supplementing portion 121 is located in the innermost layer and can continuously provide moisture for the wet mop layer 110; the water absorbing portion 122 is located in the outermost layer and can absorb excess moisture during the cleaning process, reducing the amount of residual water on the ground; the isolation portion 123 is located between the water supplementing portion 121 and the water absorbing portion 122, and plays a role of isolation and buffering, preventing the moisture in the two from penetrating each other. The circular ring design enables the water supplementing portion 121, the isolation portion 123 and the water absorbing portion 122 to be closely sleeved together to form a stable overall structure, which not only improves the durability of the mop, but also reduces the problem of loosening or falling off that may occur during use. In addition, the circular ring design also enables the mop to more evenly distribute moisture during the cleaning process, improving the cleaning effect.
[0089] Referring to Figure 4 and Figure 5In some embodiments, the isolation portion 123 has a water replenishing area 123a and a water absorbing area 123b, the water replenishing area 123a is circumferentially spaced apart from at least two water absorbing areas 123b, the water replenishing portion 121 is located in the water replenishing area 123a, and the water absorbing portion 122 is located in the water absorbing area 123b. In some embodiments, the outer periphery of the isolation portion 123 is circular, and the interior of the isolation portion 123 is divided into the water replenishing area 123a and the water absorbing area 123b. The water replenishing area 123a is circumferentially spaced apart from two water absorbing areas 123b, and the water absorbing areas 123b are in the form of circular arcs. The water absorbing areas 123b are circumferentially spaced apart from the water replenishing area 123a, which helps to ensure that the water replenishing area 123a continuously provides sufficient water to the wet mop layer 110, and ensures that the wet mop layer 110 maintains an appropriate degree of wetness during cleaning. At the same time, the water absorbing areas 123b circumferentially spaced apart from the water replenishing area 123a can absorb excess water, prevent excessive water from remaining on the ground, and avoid local over-wetting or over-drying, which helps to improve cleaning efficiency. The layout structure is more compact, and the space utilization is improved.
[0090] With reference to Figure 4 and Figure 5 In the above embodiments, the water replenishing portion 121 is circumferentially spaced apart from at least two positioning grooves 121b, and the water absorbing portion 122 is adapted to the positioning grooves 121b. In some embodiments, the water replenishing portion 121 is circumferentially provided with at least two circular arc-shaped positioning grooves 121b, which helps to quickly transfer water. The water absorbing portion 122 is in the form of a circular arc, which is adapted to the circular arc-shaped positioning grooves 121b. The water absorbing portion 122 is separated from the water replenishing portion 121 by the isolation portion 123. In this way, the water absorbing portion 122 can be conveniently positioned and assembled by the positioning grooves 121b, so that the water absorbing portion 122 is circumferentially spaced apart from the water replenishing portion 121. The water replenishing portion 121 can supply water to the wet mop layer 110 through the central portion and the circumferential side, thereby maintaining the wetness of the central portion and the circumferential side of the wet mop layer 110. The water absorbing portion 122 can timely absorb residual water to prevent water stains from remaining on the ground. In addition, the circular arc-shaped water absorbing portion 122 has a relatively simple structure and is easy to clean, thereby reducing maintenance costs.
[0091] With reference to Figure 6 and Figure 7In some embodiments, the outer edge of the water supplementing part 121 is a circular arc surface, and the circular arc surface of the water supplementing part 121 has a mounting position 121c, the water absorbing part 122 is sleeved on the outer periphery of the circular arc surface and is matched with the mounting position 121c, and the isolation part 123 is arranged between the water supplementing part 121 and the water absorbing part 122. Specifically, the wet wiping layer 110, the interlayer 120 and the mounting layer 130 are substantially semi-elliptical, the outer edge of one side of the water supplementing part 121 in the interlayer 120 is a circular arc surface, the outer edge of the other side is a plane, the water supplementing part 121 is substantially semi-elliptical, the circular arc surface of the water supplementing part 121 has a mounting position 121c, the water absorbing part 122 is wrapped on the circular arc surface of the water supplementing part 121, and the isolation part 123 is located between the water supplementing part 121 and the water absorbing part 122 and is matched with the water supplementing part 121 and the water absorbing part 122 respectively. The inner side of the isolation part 123 is matched with the water supplementing part 121, and the outer side of the isolation part 123 is matched with the water absorbing part 122. The outer side of the isolation part 123 is provided with a limiting step, and the water absorbing part 122 is clamped on the limiting step. In this way, the circular arc surface structure can help to disperse stress and facilitate the assembly of the water supplementing part 121 and the water absorbing part 122; by arranging the water absorbing part 122 on the circular arc surface side of the water supplementing part 121, the water absorbing part 122 is positioned by the mounting position 121c provided on the outer periphery of the water supplementing part 121, so as to ensure the accurate positioning and reliable connection of the water absorbing part 122 and the water supplementing part 121.
[0092] In some other embodiments, a partition structure is formed between the water supplementing part 121 and the water absorbing part 122, the partition structure has a height difference with the water supplementing part 121 and / or the water absorbing part 122, and the partition structure constitutes the isolation part 123. Specifically, the water supplementing part 121 and the water absorbing part 122 are located in the same layer but have different heights, and the isolation part 123 is constituted by the partition structure formed between the water supplementing part 121 and the water absorbing part 122, that is, the isolation part 123 can not adopt an independently arranged structure, and has a simpler structure and a more compact layout.
[0093] Referring to Figure 1 It can be understood that, in the example, the wet wiping layer 110, the interlayer 120 and the mounting layer 130 are all disc-shaped. The disc-shaped design enables the layers to be closely attached to each other and not prone to dislocation or shaking; the disc-shaped structure has good stability and can ensure the stability and durability of the composite wiping cloth 100 during use; the wet wiping layer 110 can more easily cover every corner and gap on the ground and ensure the uniformity and consistency of ground cleaning. In addition, the outer periphery dimensions of the wet wiping layer 110, the interlayer 120 and the mounting layer 130 are substantially the same, ensuring the close connection between the wet wiping layer 110, the interlayer 120 and the mounting layer 130. In another example, referring to Figure 6The wet mopping layer 110, the interlayer 120 and the mounting layer 130 can also be substantially semi-elliptical. In other examples, the wet mopping layer 110, the interlayer 120 and the mounting layer 130 can also be provided in the shape of a semicircle, a sector or other shapes, and the overall shape of the wet mopping layer 110, the interlayer 120 and the mounting layer 130 is not limited herein.
[0094] Referring to Figure 2 and Figure 4 It can be understood that the central portions of the wet mopping layer 110, the interlayer 120 and the mounting layer 130 are provided with coaxially penetrating connecting holes. Specifically, the central portion of the wet mopping layer 110 is provided with a first connecting hole 110a; for the interlayer 120, the connecting hole is provided on the water replenishing portion 121, i.e., a second connecting hole 121a is provided in the central portion of the water replenishing portion 121; and the central portion of the mounting layer 130 is provided with a third connecting hole 130a. The wet mopping layer 110, the interlayer 120 and the mounting layer 130 are connected through the coaxially penetrating connecting holes (the first connecting hole 110a, the second connecting hole 121a and the third connecting hole 130a), which can ensure that the connection between the layers is more stable and less prone to dislocation or loosening. At the same time, the connecting holes are also convenient for positioning and connecting the composite mop 100 and the mopping connecting piece 200.
[0095] It is worth mentioning that the wet mopping layer 110 is made of fiber cloth, the water replenishing portion 121 and the water absorbing portion 122 are made of sponges with different water absorption rates, the isolation portion 123 is made of a water-blocking adhesive tape, and the mounting layer 130 is made of a bristle cloth. Specifically, the fiber cloth has good water absorption and wear resistance, can quickly absorb and retain water, and ensures the moisture of the wet mopping layer 110, and is not prone to damage; the sponge has good water storage capacity, and the water replenishing portion 121 and the water absorbing portion 122 are prepared by using sponges with different water absorption rates, which is conducive to storing water in the water replenishing portion 121 and absorbing residual water on the ground in the water absorbing portion 122; the water-blocking adhesive tape can be conducive to isolating the water in the water replenishing portion 121 and the water absorbing portion 122, and has good adhesion; and the bristle cloth is conducive to connecting the mounting layer 130 with the mopping connecting piece 200.
[0096] Based on the same concept, the utility model also provides a cleaning assembly 300, referring to Figure 8 and Figure 9The cleaning assembly 300 comprises a mop connecting piece 200 and the composite mop 100 as described above, which is detachably connected to the bottom of the mop connecting piece 200. For example, the composite mop 100 is connected to the mop connecting piece 200 by a specific connection mode (such as adhesion, buckling or mechanical fixation). For example, the composite mop 100 is adhered to the side of the mop connecting piece 200 facing the ground by the adhesive 212. During the cleaning of the ground, the mop connecting piece 200 drives the composite mop 100 to descend and contact the ground, and the mop connecting piece 200 rotates around its own axis under the driving force, so that the composite mop 100 rubs against the ground to improve the cleaning effect on the ground.
[0097] In some embodiments, the mop connecting piece 200 is a mop disc or a flat mop. Specifically, the mop connecting piece 200 can be a mop disc (for example, disc-shaped) or a flat mop (for example, rectangular flat-shaped), which can be used to connect the composite mop 100 described above to perform cleaning work. Accordingly, for the mop disc, the composite mop 100 applies pressure to the ground by the rotational motion of the mop disc to perform cleaning work; for the flat mop, the composite mop 100 applies pressure to the ground by the translational motion of the flat mop to perform cleaning work.
[0098] Referring to Figures 10 to 12 For example, the mop connecting piece 200 is a mop disc. In some embodiments, the mop connecting piece 200 comprises a connecting body 210 and a connecting seat 220, the connecting body 210 is used to connect the composite mop 100, the middle part of the connecting body 210 is provided with the connecting seat 220, and the connecting seat 220 is configured to drive the connecting body 210 to rotate around the axis under the driving force. The bottom of the connecting body 210 is provided with an adhesive 212 for connecting the composite mop 100. The connecting seat 220 is a rotary member, the connecting seat 220 is provided on the connecting body 210, and the connecting seat 220 can drive the connecting body 210 to rotate around its own axis under the driving force, thereby performing cleaning work.
[0099] Continuing to refer to Figure 10In the above embodiment, the connecting body 210 is provided with a plurality of water dripping channels 211 spaced along the circumferential direction of the connecting body 210, and each water dripping channel 211 has a guide slope 211a inclined towards the water dripping channel 211 on the outer circumferential side of the water dripping channel 211. Specifically, the connecting body 210 has an inner ring 210a and an outer ring 210b, and the connecting beams are connected between the inner ring 210a and the outer ring 210b, and the water dripping channels 211 are arranged between adjacent connecting beams. The water dripping channels 211 are beneficial to guide the water flow to the composite mop 100 below the connecting body 210, so that the composite mop 100 can continuously obtain water supply and perform wet mopping operation. Each water dripping channel 211 has a fan-shaped structure, and each water dripping channel 211 has a guide slope 211a inclined towards the water dripping channel 211 on the side close to the outer ring 210b. The guide slope 211a is beneficial to guide the water flow to the water dripping channel 211 more quickly.
[0100] In addition, referring to Figure 12 and Figure 13 , the mop connecting piece 200 further comprises at least two elastic members 230, the at least two elastic members 230 are arranged on the outer circumferential side of the connecting seat 220 along the circumferential direction of the connecting seat 220, and the two ends of each elastic member 230 abut against the connecting seat 220 and the connecting body 210 along the axial direction of the mop connecting piece 200, so that the connecting body 210 floats relative to the connecting seat 220 along the axial direction of the mop connecting piece 200. In this way, the elastic member 230 applies a pushing force towards the ground side to the connecting body 210 by the elastic force of the elastic member 230, and the ground applies a counteracting force to the connecting body 210 through the composite mop 100. When the local force acting on the connecting body 210 is greater than the elastic force of the elastic member 230, the connecting body 210 can float in the direction away from the ground along the axial direction, so as to compensate for the error accumulation of the connecting body 210 in the axial direction, until the counteracting force applied by the ground to the connecting body 210 and the elastic force of the elastic member 230 reach a balance. During the cleaning process, the mop connecting piece 200 drives the composite mop 100 to adjust the contact pressure between the composite mop 100 and the ground through the floating of the connecting body 210, so as to improve the uniformity of the contact pressure between the composite mop 100 and the ground, increase the contact area between the composite mop 100 and the ground, and further improve the cleaning effect. The elastic member 230 is, for example, a spring, an elastic column, an elastic block, etc. In the present embodiment, the elastic member 230 is a spiral spring, which can be selected adaptively according to actual needs, and is not limited herein.
[0101] Based on the same concept, the utility model also provides a kind of cleaning equipment, including fuselage and as described above cleaning assembly 300, referring to Figure 14The mop connecting piece 200 used in the cleaning assembly 300 of the cleaning device 1 is a mop disc, and the cleaning assembly 300 is detachably connected to the machine body. Specifically, the cleaning device can be a dry-wet dual-purpose cleaning robot, for example, a sweeping robot or a sweeping and mopping integrated robot. When the cleaning assembly 300 is connected to the machine body, the connecting seat 220 of the mop connecting piece 200 is connected to the driving structure on the cleaning device to transmit power. For example, the driving structure includes a driving motor, and the connecting seat 220 is connected to the output shaft of the driving motor, so that the cleaning assembly 300 is driven to rotate by the driving motor. The cleaning assembly 300 is installed on the machine body and can be lifted relative to the machine body. When the cleaning assembly 300 is lowered to a cleaning position, the composite mop 100 in the cleaning assembly 300 cleans the ground to be cleaned. By using the above cleaning assembly 300, the cleaning device can reduce the residual water amount on the ground while performing the cleaning operation, and ensure the cleaning effect.
[0102] In summary, the composite mop 100, the cleaning assembly 300 and the cleaning device provided by the present application have the following advantages. The water supplementing part 121 and the water absorbing part 122 are arranged in the same layer of the interlayer 120 of the composite mop 100, so that the interlayer 120 simultaneously includes the water supplementing part 121 and the water absorbing part 122. The water supplementing part 121 can store water for mopping, the water absorbing part 122 can absorb residual water after mopping, and the isolation part 123 can separate the water supplementing part 121 and the water absorbing part 122. Therefore, the wet mopping water amount of the mop can be ensured, the residual water amount on the ground can be effectively reduced, and the cleaning effect can be improved.
[0103] The above embodiments only exemplarily illustrate the principles and effects of the present application, and are not used to limit the present application. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought of the present application should be covered by the claims of the present application.
Claims
1. A composite wipe, characterized by, include: The wet-lay layer, interlayer, and mounting layer are stacked and connected sequentially from bottom to top, among which, The wet mop layer is used for mopping and removing dirt; The interlayer includes a water replenishment section for storing water and a water absorption section for absorbing residual water, which are arranged in sections and are laid flat on the same layer. The mounting layer is used to connect to the mop connector.
2. The composite wipe of claim 1, wherein, The composite cloth also includes an isolation section located between the water-replenishing section and the water-absorbing section, and the water-replenishing section and the water-absorbing section are separated by the isolation section.
3. The composite wipe of claim 1, wherein, The outer periphery of the wet mopping layer has a flange, through which the wet mopping layer, the interlayer, and the mounting layer are stitched together.
4. The composite wipe of claim 1 wherein, The water absorption rate of the water-absorbing part is greater than that of the water-replenishing part.
5. The composite wipe of claim 1 wherein, The area of the water-absorbing part on the interlayer is less than the area of the water-replenishing part on the interlayer.
6. The composite wipe of claim 2, wherein, The water replenishment section is at least partially located in the middle of the interlayer, and the water absorption section at least partially covers the periphery of the water replenishment section.
7. The composite wipe of claim 6, wherein, The water-absorbing part forms a closed accommodating space, and the water-replenishing part is located within the accommodating space.
8. The composite wipe of claim 7, wherein, The water replenishment part, water absorption part, and isolation part are all annular, and the water replenishment part, isolation part, and water absorption part are nested together sequentially from the inside to the outside.
9. The composite wipe of claim 6, wherein, The isolation section has a water replenishment area and a water absorption area. At least two water absorption areas are arranged circumferentially at intervals in the water replenishment area. The water replenishment section is located in the water replenishment area, and the water absorption section is located in the water absorption area.
10. The composite wipe of claim 9, wherein, The water replenishment part is provided with at least two positioning grooves at circumferential intervals, and the water absorption part is adapted to the positioning grooves.
11. The composite wipe of claim 6, wherein, At least one outer edge of the water replenishment part is an arc surface, and the arc surface of the water replenishment part has a mounting position. The water absorption part is sleeved on the periphery of the arc surface and is adapted to the mounting position. The isolation part is sandwiched between the water replenishment part and the water absorption part.
12. The composite wipe of claim 6 wherein, A partition structure is formed between the water replenishment part and the water absorption part, and the partition structure has a height difference with the water replenishment part and / or the water absorption part, and the partition structure constitutes the isolation part.
13. The composite wipe of claim 1 wherein, The wet drag layer, the interlayer, and the mounting layer are all provided with coaxial through-holes in the middle.
14. The composite wipe of claim 2 wherein, The wet mopping layer is made of fiber cloth, the water replenishment part and the water absorption part are made of sponges with different water absorption rates, the isolation part is made of waterproof adhesive strips, and the mounting layer is made of burr cloth.
15. A cleaning assembly characterized by, It includes a mopping connector and a composite cloth as described in any one of claims 1-14, the composite cloth being detachably connected to the bottom of the mopping connector.
16. The cleaning assembly of claim 15, wherein, The mopping connector is a mop tray or a flat mop.
17. The cleaning assembly of claim 15, wherein, The mopping connector includes a connecting body and a connecting seat. The connecting body is used to connect the composite mop, and the connecting seat is inserted through the middle of the connecting body. The connecting seat is configured to drive the connecting body to rotate around the axis under a driving force.
18. The cleaning assembly of claim 17, wherein, The connecting body is provided with multiple drip channels spaced apart, and each drip channel has a guide slope inclined toward the drip channel on its outer periphery.
19. A cleaning apparatus, characterized by It includes a body and a cleaning component as described in any one of claims 15-18, the cleaning component being detachably connected to the body.