Cloth wringing mop
The design of the clamp and sliding components enables the replacement of the wiping cloth without manual operation, solving the problem of inconvenience in manual fixing in existing flat mops, and improving efficiency and safety.
Patent Information
- Application Number
- CN202522100111.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-29
AI Technical Summary
The existing flat mop requires manual operation to fix the wiping cloth, which makes replacement inconvenient, time-consuming, and prone to stains and germs, affecting the user experience.
The design employs a clamping plate and sliding assembly, allowing for installation and removal without manual operation by pressing the handle to clamp or release the wiping cloth.
It simplifies the process of replacing the wiping cloth, saves time and effort, avoids hand contact with dirt and germs, and improves the user experience.
Smart Images

Figure CN224671455U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning tool technology, and in particular to a cloth-clamping mop. Background Technology
[0002] A mop is a cleaning tool for scrubbing floors. Existing flat mops are generally similar in structure, including a mop handle and a flat mop head that is movably connected to the mop handle, with a wiping cloth on the mop head.
[0003] The cleaning cloths on existing flat mops are typically secured manually, using methods such as Velcro, clips, or straps. This manual method has several drawbacks: Users must frequently stop their work to re-secure the cloth when changing it, requiring both hands to operate (pressing Velcro, adjusting straps) to interrupt the cleaning process and reduce efficiency. Each cloth change involves manually aligning the Velcro, fastening the clips, or tightening the straps, which is time-consuming and involves multiple steps. Furthermore, insufficient force during manual securing can loosen the cloth, while excessive force can damage the fabric or mop head structure. Repeated pulling can also shorten the lifespan of the cloth and mop. Additionally, installing and removing the cloth requires direct hand contact, and due to frequent use, the cloth accumulates dirt and grime, easily contaminating the user's hands and negatively impacting the user experience. Summary of the Invention
[0004] The purpose of this utility model is to provide a cloth-clamping mop that avoids manually fixing the wiping cloth and having both hands in contact with the wiping cloth, saving time and effort and making it easy to operate.
[0005] To achieve the above objectives, this utility model provides the following solution:
[0006] This utility model provides a cloth-clamping mop, including a mop body and a handle. The mop body includes a top cover and a bottom cover connected with a gap. A wiping cloth is provided below the bottom surface of the bottom cover. A first clamping plate and a second clamping plate, symmetrically arranged and spaced apart, are slidably connected on both sides between the bottom cover and the top cover. A first elastic member is provided between the first clamping plate and the second clamping plate. The handle is movably connected to the front of the top cover through a sliding assembly. The first clamping plate and the second clamping plate are movably connected to the sliding assembly. The sliding assembly is movably connected to a control plate. The sliding assembly is provided with a first locking part, and the control plate is provided with a second locking part. When the top cover is pressed down, the first locking part and the second locking part lock together, and the first clamping plate and the second clamping plate are squeezed by the oblique force of the sliding assembly, which compresses the first elastic member, causing the first clamping plate and the second clamping plate to move closer to the center of the bottom cover to clamp the wiping cloth. When the first locking part and the second locking part are released, the first elastic member causes the first clamping plate and the second clamping plate to move away from the center of the bottom cover to release the wiping cloth.
[0007] Preferably, the sliding assembly includes a receiving component, two symmetrical support frames, and two symmetrical sliding plates. The receiving component includes a receiving body, and the lower part of the front and rear side walls of the receiving body is provided with receiving protrusions. The receiving protrusions extend laterally along the length direction of the mop body. A first fixed shaft along the width direction of the mop body is provided between the two receiving protrusions on the same side. One end of the support frame is provided with a first arc-shaped groove, and the first fixed shaft is engaged in the first arc-shaped groove and can rotate within the first arc-shaped groove. One end of the sliding plate near the center of the bottom cover is provided with a U-shaped groove. The groove wall of the U-shaped groove extends upward to protrude from the upper surface of the sliding plate. A second fixed shaft along the width direction of the mop body is provided in the U-shaped groove. The other end of the support frame is provided with a second arc-shaped groove, and the second fixed shaft is engaged in the second arc-shaped groove and can rotate within the second arc-shaped groove.
[0008] Preferably, the end of the slide plate away from the center of the bottom cover is provided with a first guide groove and a second guide groove that are symmetrically arranged at an angle, and the angle opening formed by the first guide groove and the second guide groove faces the outside of the mop body.
[0009] Preferably, the bottom surface of the first clamping plate is provided with symmetrical first protrusions at both ends, and the bottom surface of the second clamping plate is provided with symmetrical second protrusions at both ends. The first protrusions and the second protrusions on the same side correspond to each other. The first protrusions are accommodated in the first guide groove on the same side and can slide in the first guide groove. The second protrusions are accommodated in the second guide groove on the same side and can slide in the second guide groove.
[0010] Preferably, the first elastic element is a first spring, the top surface of the first clamping plate has symmetrically extended upward first receiving grooves at both ends, the top surface of the second clamping plate has symmetrically extended upward second receiving grooves at both ends, the first receiving groove corresponds to the second receiving groove on the same side, the first receiving groove has a first protrusion, the second receiving groove has a second protrusion, and the two ends of the first spring are respectively sleeved on the first protrusion and the second protrusion.
[0011] Preferably, the first clamping plate has a plurality of first elongated holes evenly distributed on it, and one side of the top cover has a plurality of downwardly extending first mounting posts. The first elongated holes are fitted onto the outside of the first mounting posts with gaps. The first mounting posts have first mounting holes with downward openings. One side of the bottom cover has a first fixing hole. The first mounting holes and the first fixing holes are connected by connecting bolts. The second clamping plate has a plurality of second elongated holes evenly distributed on it, and the other side of the top cover has a plurality of downwardly extending second mounting posts. The second elongated holes are fitted onto the outside of the second mounting posts with gaps. The second mounting posts have second mounting holes with downward openings. The other side of the bottom cover has a second fixing hole. The second mounting holes and the second fixing holes are connected by connecting bolts.
[0012] Preferably, the outer edges of the first clamping plate and the second clamping plate are each evenly distributed with a plurality of first clamping teeth facing the center of the bottom cover, and the two sides of the bottom cover are evenly distributed with a plurality of second clamping teeth that are interleaved with the first clamping teeth.
[0013] Preferably, the top surface of the bottom cover is provided with two symmetrical guide plates, the slide plate can move between the two guide plates along the length direction of the mop body, the bottom surface of the bottom cover is evenly distributed with a number of herringbone-shaped protrusions arranged in an array, the bottom of the receiving member is provided with a hollow tube column, one end of the second spring is connected inside the tube column, and the other end of the second spring abuts against the top surface of the bottom cover.
[0014] Preferably, the first snap-fit part is a snap-fit groove, which is provided on the side walls of both ends of the receiving body of the receiving member; the second snap-fit part is a snap-fit protrusion; the control plate has a control plate through hole in the middle, which is sleeved on the outside of the receiving body; the snap-fit protrusion is provided on the side wall of the control plate through hole; a control plate pin is provided on the outer side wall of the end of the control plate on the same side as the snap-fit protrusion; one end of the third spring is sleeved on the control plate pin, and the other end of the third spring abuts against the top cover.
[0015] Preferably, the top cover has symmetrical scraper strips on both sides, and the center of the top cover has an upwardly extending hollow top cover protrusion so that the bottom of the center of the top cover forms a top cover groove. The top cover protrusion has a first top cover through hole and a second top cover through hole, and the upper part of the receiving member passes through and protrudes from the first top cover through hole.
[0016] Preferably, the control plate is housed in the top cover groove, and the other end of the third spring abuts against the inner sidewall of the top cover groove. The top surface of the control plate opposite to the latching protrusion is provided with a lever, which passes through and protrudes from the second top cover through hole and can slide within the second top cover through hole.
[0017] Preferably, the handheld part includes a connecting rod and a drag bar assembly. The connecting rod is connected to the receiving member through a steering block. The receiving body of the receiving member has a symmetrically provided receiving protrusion on its top surface. The receiving protrusion has a receiving hole. The two ends of the steering block are respectively provided with steering block convex shafts, which are rotatably connected in the receiving hole.
[0018] Preferably, the top of the steering block is arc-shaped, one end of the top of the steering block is provided with a notch, a receiving block is provided inside the connecting rod, one end of the receiving block is connected to the retaining spring and the retaining spring abuts against the inside of the connecting rod, and the other end of the receiving block abuts against the notch.
[0019] Preferably, the steering block is provided with a steering block through hole in the direction perpendicular to the steering block convex axis, and one end of the connecting rod is provided with a first snap-fit plate and a second snap-fit plate. The steering block can be snapped between the first snap-fit plate and the second snap-fit plate. The first snap-fit plate is provided with a first snap-fit plate through hole, and the second snap-fit plate is provided with a second snap-fit plate through hole. The rotating shaft passes through the first snap-fit plate through hole, the steering block through hole and the second snap-fit plate through hole in sequence, so that the steering block is rotatably connected to the connecting rod. The other end of the connecting rod is provided with a locking block.
[0020] Preferably, the mop rod assembly includes a mop extension rod, one end of which is provided with a locking hole, and the locking block is engaged in the locking hole. The other end of the mop extension rod is connected to a sleeve rod, and the end of the sleeve rod is provided with a hanging hole.
[0021] Preferably, the mop handle assembly includes a mop handle with a latch that can engage with a locking block. The mop handle also has a nozzle and a water pump inside. The nozzle is connected to the water pump, and a drive rod is mounted on the water pump. The drive rod can slide up and down inside the mop handle to drive the water pump to spray water from the nozzle. The mop handle is hollow to accommodate water. A handle is located at the end of the mop handle. A transmission rod is located inside the mop handle, with one end abutting against or connected to the drive rod, and the other end having a pressing rod that can slide up and down along the handle. A water inlet is located on the handle, and a closable sealing cap is provided on the water inlet.
[0022] Preferably, the mop handle includes several mop handle units, and adjacent mop handle units are sequentially and sealed together by a first coupling part and a second coupling part. One end of the mop handle unit is provided with a first coupling part and the other end is provided with a second coupling part. The outer diameter of the first coupling part and the second coupling part are matched with the inner diameter of the mop handle unit. The first coupling part and the second coupling part are placed inside the mop handle unit and pressed tightly at the connection position between the mop handle unit and the first coupling part and the second coupling part, so that its diameter is reduced and it is locked in place.
[0023] The present invention achieves the following beneficial technical effects compared to the prior art:
[0024] The cloth-clamping mop provided by this utility model allows the wiping cloth to be placed under the bottom cover. Pressing down on the extended mop handle causes the receiving component to move downwards, which in turn moves the support frames at both ends of the receiving component downwards, increasing the horizontal length of the support frames. The support frames push the sliding plate away from the center of the bottom cover, causing the first and second guide grooves to move. This exerts an oblique force on the corresponding first and second protrusions inside the guide grooves, causing the first protrusion to move closer to the center of the bottom cover within the first guide groove, while the second protrusion moves closer to the center within the second guide groove. Simultaneously, the first and second elongated holes also move closer to the center of the bottom cover, causing the first and second clamping plates to move closer to the center of the bottom cover. When the locking protrusion engages in the locking groove, the receiving component stops moving downwards, and the first and second clamping teeth hold the wiping cloth in place. At this point, the first and second springs are compressed. When the wiping cloth needs to be removed after wiping, move the lever towards the receiving part. The third spring is compressed, the latch disengages from the slot, and the receiving part moves upward. Simultaneously, the compression force of the first spring pushes the first and second clamping plates away from the center of the bottom cover. The compression force of the second spring also pushes the receiving part upward to ensure its reset, thus causing the first clamping teeth to move away from the second clamping teeth, allowing the wiping cloth to fall off. This cloth-clamping mop eliminates the need for direct hand operation when installing and replacing the wiping cloth. Simply press down on the handle when installing the cloth, and move the lever by hand when removing it. It's simple, convenient, time-saving, and labor-saving, avoiding contact between hands and dirt and germs on the cloth, thus enhancing the user experience. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of the cloth-clamping mop in the first embodiment of this utility model;
[0026] Figure 2 This is a schematic diagram of the structure of the mop body in the un-clothed state of the mop in the first embodiment of this utility model.
[0027] Figure 3 This is a schematic diagram of the structure of the mop body in the clamped state of the mop in the first embodiment of the present invention.
[0028] Figure 4 This is a partial exploded structural diagram of the mop body of the cloth-clamped mop in the first embodiment of the present invention.
[0029] Figure 5 This is a partial exploded structural diagram of the top and bottom covers of the cloth-clamped mop in the first embodiment of this utility model;
[0030] Figure 6This is a partial exploded view of the first and second clamping plates of the cloth-clamping mop in the first embodiment of this utility model;
[0031] Figure 7 This is a partial exploded view of the cloth-clamping mop from another angle in the first embodiment of this utility model;
[0032] Figure 8 This is a schematic diagram of the structure of the cloth-clamping mop in the second embodiment of this utility model;
[0033] Figure 9 This is a partial exploded view of the cloth-clamped mop in the second embodiment of the present invention;
[0034] Figure 10 This is a partial exploded view of the cloth-clamping mop from another angle in the second embodiment of this utility model;
[0035] In the picture: 1 - Mop body;
[0036] 101-Top cover, 102-Top cover protrusion, 103-Top cover groove, 104-Control board, 105-Control board through hole, 106-Snap protrusion, 107-Control board pin, 108-Third spring, 109-Pulley, 110-First top cover through hole, 111-Second top cover through hole, 112-First mounting post, 113-First mounting hole, 114-Second mounting post, 115-Second mounting hole, 116-Scraper strip;
[0037] 117-Bottom cover, 118-First fixing hole, 119-Second fixing hole, 120-Guide plate, 121-Herringbone protrusion;
[0038] 122-First clamping plate, 123-First receiving groove, 124-First protrusion, 125-First clamping plate groove, 126-Second clamping plate groove, 127-Clamping plate groove, 128-First protruding post, 129-First elongated hole;
[0039] 130-Second clamping plate, 131-Second receiving groove, 132-Second protrusion, 134-Second protruding post, 135-Second elongated hole, 136-First spring;
[0040] 137-Receiving part, 138-Receiving body, 139-Receiving protrusion, 140-First fixed shaft, 141-Slot, 142-Column, 143-Second spring; 144-Receiving protrusion, 145-Receiving hole;
[0041] 146-Support frame, 147-First arc-shaped groove, 148-Second arc-shaped groove, 149-Slide plate, 150-U-shaped groove, 151-Second fixed shaft, 152-First guide groove, 153-Second guide groove, 154-First clamping tooth, 155-Second clamping tooth;
[0042] 2-Handheld part;
[0043] 201-Connecting rod, 202-Mop extension rod, 203-Steering block, 204-Steering block convex shaft, 205-Groove, 206-Receiving block, 207-Steering block through hole, 208-First snap-fit plate, 209-Second snap-fit plate, 210-First snap-fit plate through hole, 211-Second snap-fit plate through hole, 212-Snap-fit block, 213-Snap-fit hole, 214-Sleeve rod, 215-Hanging hole;
[0044] 301-Mop handle, 302-Hook, 303-Nozzle, 304-Water pump, 305-Drive rod, 306-Mop handle unit, 307-First coupling part, 308-Second coupling part, 309-Handle, 310-Transmission rod, 311-Pressing rod, 312-Water inlet, 313-Sealing cap. Detailed Implementation
[0045] First Embodiment
[0046] This embodiment provides a cloth-clamping mop, such as Figures 1-7 As shown, the mop includes a mop body 1 and a handheld part 2. The mop body 1 includes a top cover 101 and a bottom cover 117 that are connected with a gap. A wiping cloth (not shown) is provided below the bottom surface of the bottom cover 117 for cleaning the wiping surface. A first clamping plate 122 and a second clamping plate 130 are symmetrically arranged and slidably connected on both sides between the bottom cover 117 and the top cover 101. The first clamping plate 122 and the second clamping plate 130 are spaced apart. A first spring 136 is provided between the first clamping plate 122 and the second clamping plate 130. Specifically, the top surface of the first clamping plate 122 has symmetrically extending upward first receiving grooves 123 at both ends, and the top surface of the second clamping plate 130 has symmetrically extending upward second receiving grooves 131 at both ends. The first receiving groove 123 corresponds to the second receiving groove 131 on the same side. The first receiving groove 123 has a first protrusion 124, and the second receiving groove 131 has a second protrusion 132. The two ends of the first spring 136 are respectively sleeved on the first protrusion 124 and the second protrusion 132. When the first clamping plate 122 and the second clamping plate 130 move toward the center of the bottom cover 117, the first spring 136 is compressed.
[0047] The first clamping plate 122 and the second clamping plate 130 are respectively movably connected to the sliding assembly, which is movably connected to the control panel 104. The handheld part 2 is movably connected to the front of the top cover 101 through the sliding assembly. Specifically, the sliding assembly includes a receiving member 137, two symmetrical support frames 146, and two symmetrical sliding plates 149. The first clamping plate 122 has a first clamping plate groove 125 at its center, and the second clamping plate 130 has a second clamping plate groove 126 at its center. The first clamping plate groove 125 and the second clamping plate groove 126 are joined together to form a clamping plate groove 127. The receiving member 137 is accommodated in the clamping plate groove 127 and can move up and down within the clamping plate groove 127.
[0048] The receiving component 137 includes a receiving body 138. The lower part of the front and rear side walls of the receiving body 138 is provided with receiving protrusions 139. The receiving protrusions 139 extend laterally in the length direction of the mop body 1 so that the receiving protrusions 139 protrude from the side walls at both ends of the receiving body 138. A first fixed shaft along the width direction of the mop body 1 is provided between the two receiving protrusions 139 on the same side. One end of the support frame 146 is provided with a first arc-shaped groove 147. The first fixed shaft is engaged in the first arc-shaped groove 147 and can rotate within the first arc-shaped groove 147. The end of the slide plate 149 near the center of the bottom cover 117 is provided with a U-shaped groove 150. The groove wall of the U-shaped groove 150 extends upward to protrude from the upper surface of the slide plate 149. A second fixed shaft 151 along the width direction of the mop body 1 is provided in the U-shaped groove 150. The other end of the support frame 146 is provided with a second arc-shaped groove 148. The second fixed shaft 151 is engaged in the second arc-shaped groove 148 and can rotate within the second arc-shaped groove 148. The end of the slide plate 149 away from the center of the bottom cover 117 is provided with a symmetrically arranged oblique and elongated first guide groove 152 and a second guide groove 153. The angled opening formed by the first guide groove 152 and the second guide groove 153 faces the outside of the mop body 1. The bottom surface of the first clamping plate 122 is provided with symmetrical first protrusions 128 at both ends, and the bottom surface of the second clamping plate 130 is provided with symmetrical second protrusions 134 at both ends. The first protrusions 128 and the second protrusions 134 on the same side correspond to each other. The first protrusions 128 are housed in the first guide groove 152 on the same side and can slide in the first guide groove 152. The second protrusions 134 are housed in the second guide groove 153 on the same side and can slide in the second guide groove 153.
[0049] Specifically, when the receiving member 137 is pressed down, the two ends of the support frame 146 rotate around the first fixed axis and the second fixed axis 151 respectively, thereby reducing the angle between the support frame 146 and the horizontal plane. In other words, the horizontal component of the support frame 146 becomes longer, which in turn causes the support frame 146 to push the slide plate 149 away from the center of the bottom cover 117. Before the receiving member 137 is pressed down, the first protrusion 128 is located in the first guide groove 152 away from the center of the bottom cover 117, and similarly, the second protrusion 134 is also located in the second guide groove 153 away from the center of the bottom cover 117. After the pressing receiving member 137 is pressed down, the sliding plate 149 moves away from the center of the bottom cover 117. The movement of the sliding plate 149 will drive the movement of the first guide groove 152 and the second guide groove 153. Since the first guide groove 152 and the second guide groove 153 are inclined and the angled openings they form face outwards from the mop body 1, the movement of the first guide groove 152 and the second guide groove 153 will exert an oblique force on the first protrusion 128 and the second protrusion 134 that are correspondingly housed inside. This oblique force will cause the first protrusion 128 to move in the width direction of the mop body 1 in the first guide groove 152 toward the center of the bottom cover 117, while the second protrusion 134 will move in the width direction of the mop body 1 in the second guide groove 153 toward the center of the bottom cover 117. This will cause the first clamping plate 122 and the second clamping plate 130 to move toward the center of the bottom cover 117. Meanwhile, the outer edges of the first clamping plate 122 and the second clamping plate 130 are each evenly distributed with a plurality of first clamping teeth 154 facing the center of the bottom cover 117, and the edges of both sides of the bottom cover 117 are evenly distributed with a plurality of second clamping teeth 155 that are staggered with the first clamping teeth 154. In the natural state, the first clamping teeth 154 and the second clamping teeth 155 are spaced apart. When the first clamping plate 122 and the second clamping plate 130 move toward the center of the bottom cover 117, the staggered arrangement of the first clamping teeth 154 and the second clamping teeth 155 will clamp the wiping cloth placed under the bottom cover 117, at which time the first spring 136 is compressed. When the receiving member 137 moves upward, the compression force of the first spring 136 causes the first clamping plate 122 and the second clamping plate 130 to move toward a position away from the center of the bottom cover 117, thereby releasing the wiping cloth.
[0050] The top cover 101 has an upwardly extending hollow top cover protrusion 102 at its center, forming a top cover groove 103 at the bottom of the center of the top cover 101. Slots are provided on the side walls of both ends of the receiving body 138 of the receiving member 137. The control plate 104 is housed within the top cover groove 103. A control plate through hole 105 is provided in the middle of the control plate 104, which is fitted onto the outside of the receiving body 138. A locking protrusion 106 is provided on the side wall of the control plate through hole 105. When the receiving member 137 is pressed down, the locking protrusion 106 engages in the slot, preventing the receiving member 137 from moving downwards, thus limiting its downward movement. A hollow tube is provided at the bottom of the receiving member 137, with one end of a second spring connected inside the tube. The other end of the second spring abuts against the top surface of the bottom cover 117. A control plate pin 107 is provided on the outer wall of one end of the control plate 104 on the same side as the latch 106. One end of the third spring 108 is sleeved on the control plate pin 107, and the other end of the third spring 108 abuts against the top cover 101. A toggle block 109 is provided on the top surface of the control plate 104 opposite to the latch 106. A first top cover through hole 110 and a second top cover through hole 111 are provided on the top cover protrusion 102. The upper part of the receiving member 137 passes through and protrudes from the first top cover through hole 110 and can slide up and down in the first top cover through hole 110. The toggle block 109 passes through and protrudes from the second top cover through hole 111 and can slide in the second top cover through hole 111. When it is necessary to disengage the latch 106 from the slot, the lever 109 is moved towards the receiving part 137. The third spring 108 is compressed, causing the latch 106 to move out of the slot, thereby moving the receiving part 137 upward. Simultaneously, when the receiving part 137 is pressed down, the second spring is also compressed. When the latch 106 moves out of the slot, the compression force of the second spring also pushes the receiving part 137 upward, further ensuring the reset of the receiving part 137. This eliminates the need for direct hand operation when installing and replacing the wiping cloth. Simply press down on the handle 2 when installing the wiping cloth, and use the lever 109 to remove it. This is simple, convenient, time-saving, and labor-saving, and avoids contact between hands and dirt and germs on the wiping cloth, enhancing the user experience.
[0051] The first clamping plate 122 has a plurality of first elongated holes 129 evenly distributed on one side. The top cover 101 has a plurality of first mounting posts 112 extending downward on one side. The first elongated holes 129 are fitted with the outer side of the first mounting posts 112 so that the first mounting posts 112 can slide within the first elongated holes 129. The first mounting posts 112 have first mounting holes 113 with downward openings. The bottom cover 117 has a first fixing hole 118 on one side. The first mounting hole 113 and the first fixing hole 118 are connected by connecting bolts. The second clamping plate 130 has several elongated holes 135 evenly distributed on it. The other side of the top cover 101 has several downwardly extending second mounting posts 114. The elongated holes 135 are spaced and fitted onto the outside of the second mounting posts 114, allowing the second mounting posts 114 to slide within the elongated holes 135. Each second mounting post 114 has a downward-facing second mounting hole 115. The other side of the bottom cover 117 has a second fixing hole 119. The second mounting hole 115 and the second fixing hole 119 are connected by connecting bolts. The connection between the first mounting hole 113 and the first fixing hole 118, and the connection between the second mounting hole 115 and the second fixing hole 119, achieves the connection between the top cover 101 and the bottom cover 117. Furthermore, when the first clamping plate 122 moves toward or away from the center of the bottom cover 117, the first elongated hole 129 will move around the first mounting post 112 toward or away from the center of the bottom cover 117. When the second clamping plate 130 moves toward or away from the center of the bottom cover 117, the second elongated hole 135 will move around the second mounting post 114 toward or away from the center of the bottom cover 117, thus ensuring the reliability of the movement of the first clamping plate 122 and the second clamping plate 130.
[0052] The top surface of the bottom cover 117 is provided with two symmetrical guide plates 120. The slide plate 149 can move between the two guide plates 120 along the length of the mop body 1. The guide plates 120 provide guidance for the movement of the slide plate 149, further ensuring the reliability of this cloth-clamping mop. The bottom surface of the bottom cover 117 is evenly distributed with several herringbone-shaped protrusions 121 arranged in an array, so that the wiping cloth can better fit the wiping surface. The top cover 101 is provided with symmetrical scraper strips 116 on both sides. After the wiping cloth has wiped the wiping surface, some water stains are usually left on the wiping surface. The mop body 1 can be turned over and the scraper strips 116 can be used to scrape away the water stains on the wiping surface.
[0053] The handle 2 includes a connecting rod 201 and a mop extension rod 202. The connecting rod 201 is connected to the receiving member 137 via a steering block 203. The receiving body 138 of the receiving member 137 has a symmetrically provided receiving protrusion on its top surface, and a receiving hole 145 is provided on the receiving protrusion. The two ends of the steering block 203 are respectively provided with steering block convex shafts 204, which are rotatably connected in the receiving hole 145, realizing the rotatable connection between the steering block 203 and the receiving member 137. The top of the steering block 203 is arc-shaped, and one end of the top of the steering block 203 has a notch 205. A receiving block 206 is provided in the connecting rod 201. One end of the receiving block 206 is connected to a retaining spring (not shown) and the retaining spring abuts against the connecting rod 201. The other end of the receiving block 206 abuts against the notch 205, which realizes that the connecting rod 201 can be folded to a position parallel to the mop body 1 and maintained in this state, enhancing the convenience of use. The steering block 203 is provided with a steering block through hole 207 in a direction perpendicular to the steering block convex shaft 204. One end of the connecting rod 201 is provided with a first snap-fit plate 208 and a second snap-fit plate 209. The steering block 203 can be snapped between the first snap-fit plate 208 and the second snap-fit plate 209. The first snap-fit plate 208 is provided with a first snap-fit plate through hole 210, and the second snap-fit plate 209 is provided with a second snap-fit plate through hole 211. The rotating shaft (not shown) passes through the first snap-fit plate through hole 210, the steering block through hole 207 and the second snap-fit plate through hole 211 in sequence, so that the steering block 203 is rotatably connected to the connecting rod 201. The other end of the connecting rod 201 is provided with a snap-fit block 212. One end of the mop extension rod 202 is provided with a locking hole 213, and a locking block 212 is engaged in the locking hole 213, thereby connecting the mop extension rod 202 and the connecting rod 201. The other end of the mop extension rod 202 is connected to a sleeve rod 214, and the end of the sleeve rod 214 is provided with a hanging hole 215. When placing the mop, the mop can be hung on the wall, which saves more space.
[0054] In this embodiment, the cloth-clamping mop is used by placing the wiping cloth under the bottom cover 117 and pressing down on the mop extension rod 202. This causes the receiving member 137 to move downward, which in turn moves the support frames 146 at both ends of the receiving member 137 downward. This also increases the length of the horizontal component of the support frame 146. The support frame 146 pushes the sliding plate 149 to move away from the center of the bottom cover 117, which in turn moves the first guide groove 152 and the second guide groove 153. This causes the first protrusion 128 and the second protrusion 134, which are respectively housed inside the first guide groove 152, to move towards the center of the bottom cover 117. At the same time, the second protrusion 134 moves towards the center of the bottom cover 117 in the second guide groove 153. Simultaneously, the first elongated hole 129 and the second elongated hole 135 also move towards the center of the bottom cover 117, which in turn causes the first clamping plate 122 and the second clamping plate 130 to move towards the center of the bottom cover 117. When the latch 106 engages with the slot, the receiving member 137 stops moving downwards, and the first clamping tooth 154 and the second clamping tooth 155 hold the wiping cloth in place. At this time, the first spring 136 and the second spring are compressed. When the wiping cloth needs to be removed after wiping, the lever 109 is moved towards the receiving member 137, the third spring 108 is compressed, the latch 106 disengages from the slot, and the receiving member 137 moves upwards. At the same time, the compression force of the first spring 136 pushes the first clamping plate 122 and the second clamping plate 130 away from the center of the bottom cover 117. The compression force of the second spring also pushes the receiving member 137 upwards to ensure that the receiving member 137 returns to its original position, thereby causing the first clamping tooth 154 to move away from the second clamping tooth 155, and the wiping cloth falls off. If there are water stains on the wiping surface, turn the mop body 1 over and place the scraper 116 against the wiping surface to scrape off the water stains. After use, it can be hung on an external wall through the hanging hole 215 to store the wiping material.
[0055] Second Embodiment
[0056] This embodiment provides a cloth-clamping mop, such as Figures 8-10 As shown, it includes a mop body 1 and a handheld part 2. It should be noted that the structure of the mop body 1 in this embodiment is the same as the structure, connection relationship and working principle of the mop body 1 in the first embodiment, and will not be described again here.
[0057] In this embodiment, the handheld part 2 includes a connecting rod 201 and a mop handle 301. The structure of the connecting rod 201 is the same as that of the first embodiment. The mop handle 301 in this embodiment is provided with a slot 302, and the locking block 212 can be locked in the slot 302 to realize the locking of the mop handle 301 and the connecting rod 201.
[0058] A nozzle 303 is provided on the mop handle 301, and a water pump 304 is provided inside the mop handle 301. The nozzle 303 is connected to the water pump 304. A drive rod 305 is provided on the water pump 304. The drive rod 305 can slide up and down inside the mop handle 301 to drive the water pump 304 to spray water out from the nozzle 303. The mop handle 301 includes several mop handle units 306, and adjacent mop handle units 306 are sequentially and sealed together by a first coupling part 307 and a second coupling part 308. Specifically, one end of the mop handle unit 306 is provided with a first coupling part 307 and the other end is provided with a second coupling part 308. The first coupling part 307 and the second coupling part 308 have a hollow structure and are tubular in shape, which is convenient for manufacturing and processing. The outer diameters of the first coupling part 307 and the second coupling part 308 are matched with the inner diameter of the mop handle unit 306. The first coupling part 307 and the second coupling part 308 are placed inside the mop handle unit 306 and pressed tightly at the connection position between the mop handle unit 306 and the first coupling part 307 and the second coupling part 308, so that their diameters are reduced and locked in place, thus achieving a sealed and fixed connection between the first coupling part 307 and the second coupling part 308 and the mop handle unit.
[0059] The mop handle 301 has a hollow structure to hold water. A handle 309 is located at the end of the mop handle 301. Removing the handle 309 allows water to be added to the mop handle 301. Inside the mop handle 301 is a transmission rod 310. One end of the transmission rod 310 abuts against or is connected to the drive rod 305, and the other end has a pressing rod 311, which can slide up and down along the handle 309. A water inlet 312 is located on the handle 309, and the water inlet 312 has an openable and closable sealing cap 313. Water can also be injected into the mop handle 301 through the water inlet 312, with the hollow cavity of the mop handle 301 acting as a water storage area. Pressing the pressing lever 311 pushes the transmission lever 310 to slide down along the mop handle 301, thereby causing the drive lever 305 to slide down and drive the water pump 304 to spray water from the nozzle 303, thus realizing the water spraying function.
[0060] In this embodiment, when in use, the wiping cloth is clamped or removed using the steps in the first embodiment. When water spraying is required, the pressing rod 311 is pressed, which pushes the transmission rod 310 to slide down along the mop handle 301, thereby causing the drive rod 305 to slide down. The drive rod 305 will cause the water in the water pump 304 to be squeezed and sprayed out through the nozzle 303, thus realizing the water spraying function.
[0061] This utility model uses specific examples to illustrate its principles and implementation methods. The above description of the embodiments is only for the purpose of helping to understand the method and core idea of this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the idea of this utility model. In summary, the content of this specification should not be construed as a limitation of this utility model.
Claims
1. A cloth-clamping mop, comprising a mop body and a handle, characterized in that: The mop body includes a top cover and a bottom cover connected by a gap. A wiping cloth is provided below the bottom surface of the bottom cover. A first clamping plate and a second clamping plate, which are symmetrically arranged and spaced apart, are slidably connected on both sides between the bottom cover and the top cover. A first elastic member is provided between the first clamping plate and the second clamping plate. The handle is movably connected to the front of the top cover through a sliding assembly. The first clamping plate and the second clamping plate are movably connected to the sliding assembly. The sliding assembly is movably connected to the control plate. The sliding assembly is provided with a first locking part, and the control plate is provided with a second locking part. When the top cover is pressed down, the first locking part and the second locking part lock together, and the first clamping plate and the second clamping plate are squeezed by the oblique force of the sliding assembly, which compresses the first elastic member, causing the first clamping plate and the second clamping plate to move closer to the center of the bottom cover to hold the wiping cloth. When the first locking part and the second locking part are released, the first elastic member causes the first clamping plate and the second clamping plate to move away from the center of the bottom cover to release the wiping cloth.
2. The cloth-clamping mop according to claim 1, characterized in that: The sliding assembly includes a receiving component, two symmetrical support frames, and two symmetrical sliding plates. The receiving component includes a receiving body, and the lower part of the front and rear side walls of the receiving body is provided with receiving protrusions. The receiving protrusions extend laterally along the length direction of the mop body. A first fixed shaft along the width direction of the mop body is provided between the two receiving protrusions on the same side. One end of the support frame is provided with a first arc-shaped groove, and the first fixed shaft is engaged in the first arc-shaped groove and can rotate within the first arc-shaped groove. The end of the sliding plate near the center of the bottom cover is provided with a U-shaped groove. The groove wall of the U-shaped groove extends upward to protrude from the upper surface of the sliding plate. A second fixed shaft along the width direction of the mop body is provided in the U-shaped groove. The other end of the support frame is provided with a second arc-shaped groove, and the second fixed shaft is engaged in the second arc-shaped groove and can rotate within the second arc-shaped groove.
3. The cloth-clamping mop according to claim 2, characterized in that: The end of the slide plate away from the center of the bottom cover is provided with a first guide groove and a second guide groove that are symmetrically arranged at an angle. The angle opening formed by the first guide groove and the second guide groove faces the outside of the mop body.
4. The cloth-clamping mop according to claim 3, characterized in that: The bottom surface of the first clamping plate is provided with symmetrical first protrusions at both ends, and the bottom surface of the second clamping plate is provided with symmetrical second protrusions at both ends. The first protrusions and the second protrusions on the same side correspond to each other. The first protrusions are housed in the first guide groove on the same side and can slide in the first guide groove. The second protrusions are housed in the second guide groove on the same side and can slide in the second guide groove.
5. The cloth-clamping mop according to claim 4, characterized in that: The first elastic element is a first spring. The top surface of the first clamping plate has symmetrically extended upward first receiving grooves at both ends. The top surface of the second clamping plate has symmetrically extended upward second receiving grooves at both ends. The first receiving groove corresponds to the second receiving groove on the same side. The first receiving groove has a first protrusion and the second receiving groove has a second protrusion. The two ends of the first spring are respectively sleeved on the first protrusion and the second protrusion.
6. The cloth-clamping mop according to claim 5, characterized in that: The first clamping plate has several elongated holes evenly distributed on it. One side of the top cover has several downward-extending first mounting posts. The elongated holes are spaced and fitted onto the outside of the first mounting posts. Each first mounting post has a downward-facing first mounting hole. One side of the bottom cover has a first fixing hole. The first mounting hole and the first fixing hole are connected by connecting bolts. The second clamping plate has several elongated holes evenly distributed on it. The other side of the top cover has several downward-extending second mounting posts. The elongated holes are spaced and fitted onto the outside of the second mounting posts. Each second mounting post has a downward-facing second mounting hole. The other side of the bottom cover has a second fixing hole. The second mounting hole and the second fixing hole are connected by connecting bolts.
7. The cloth-clamping mop according to claim 6, characterized in that: The outer edges of the first clamping plate and the second clamping plate are each evenly distributed with a number of first clamping teeth facing the center of the bottom cover, and the two sides of the bottom cover are evenly distributed with a number of second clamping teeth that are interleaved with the first clamping teeth.
8. The cloth-clamping mop according to claim 7, characterized in that: The top surface of the bottom cover is provided with two symmetrical guide plates. The slide plate can move between the two guide plates along the length of the mop body. The bottom surface of the bottom cover is evenly distributed with a number of herringbone-shaped protrusions arranged in an array. The bottom of the receiving part is provided with a hollow tube column. One end of the second spring is connected inside the tube column, and the other end of the second spring abuts against the top surface of the bottom cover.
9. The cloth-clamping mop according to claim 2, characterized in that: The first snap-fit part is a snap-fit groove, which is provided on the side walls of both ends of the receiving body of the receiving component. The second snap-fit part is a snap-fit protrusion. The middle part of the control plate is provided with a control plate through hole, which is sleeved on the outside of the receiving body. The snap-fit protrusion is provided on the side wall of the control plate through hole. A control plate pin is provided on the outer side wall of the control plate end on the same side as the snap-fit protrusion. One end of the third spring is sleeved on the control plate pin, and the other end of the third spring abuts against the top cover.
10. The cloth-clamping mop according to claim 9, characterized in that: The top cover has symmetrical scraper strips on both sides, and the center of the top cover has an upward-extending hollow top cover protrusion so that the bottom of the center of the top cover forms a top cover groove. The top cover protrusion has a first top cover through hole and a second top cover through hole, and the upper part of the receiving member passes through and protrudes from the first top cover through hole.
11. The cloth-clamping mop according to claim 10, characterized in that: The control plate is housed in the top cover groove, and the other end of the third spring abuts against the inner side wall of the top cover groove. The top surface of the control plate opposite to the card protrusion is provided with a lever, which passes through and protrudes from the second top cover through hole and can slide within the second top cover through hole.
12. The cloth-clamping mop according to claim 2, characterized in that: The handheld part includes a connecting rod and a towing rod assembly. The connecting rod is connected to the receiving part through a steering block. The receiving body of the receiving part has a symmetrical receiving protrusion on its top surface. The receiving protrusion has a receiving hole. The two ends of the steering block are respectively provided with steering block convex shafts, which are rotatably connected in the receiving hole.
13. The cloth-clamping mop according to claim 12, characterized in that: The top of the steering block is arc-shaped, and one end of the top of the steering block is provided with a notch. A receiving block is provided inside the connecting rod. One end of the receiving block is connected to the snap ring and the snap ring abuts against the inside of the connecting rod. The other end of the receiving block abuts against the notch.
14. The cloth-clamping mop according to claim 13, characterized in that: The steering block is provided with a steering block through hole in the direction perpendicular to the steering block convex axis. One end of the connecting rod is provided with a first snap-fit plate and a second snap-fit plate. The steering block can be snapped between the first snap-fit plate and the second snap-fit plate. The first snap-fit plate is provided with a first snap-fit plate through hole, and the second snap-fit plate is provided with a second snap-fit plate through hole. The rotating shaft passes through the first snap-fit plate through hole, the steering block through hole and the second snap-fit plate through hole in sequence, so that the steering block is rotatably connected to the connecting rod. The other end of the connecting rod is provided with a locking block.
15. The cloth-embedded mop according to any one of claims 12-14, characterized in that: The mop rod assembly includes a mop extension rod, one end of which has a locking hole, and the locking block is engaged in the locking hole. The other end of the mop extension rod is connected to a sleeve rod, and the end of the sleeve rod has a hanging hole.
16. The cloth-embedded mop according to any one of claims 12-14, characterized in that: The mop handle assembly includes a mop handle with a latch that engages with a locking block. A nozzle is also provided on the mop handle. A water pump is located inside the mop handle, and the nozzle is connected to the water pump. A drive rod is provided on the water pump, which slides up and down within the mop handle to drive the water pump and spray water from the nozzle. The mop handle is hollow to accommodate water. A handle is located at the end of the mop handle. A transmission rod is located inside the mop handle, with one end abutting against or connected to the drive rod, and the other end having a pressing rod that slides up and down along the handle. A water inlet is located on the handle, and a closable sealing cap is provided on the water inlet.
17. The cloth-clamping mop according to claim 16, characterized in that: The mop handle includes several mop handle units, and adjacent mop handle units are sequentially sealed and connected by a first coupling part and a second coupling part. One end of the mop handle unit is provided with a first coupling part and the other end is provided with a second coupling part. The outer diameter of the first coupling part and the second coupling part are matched with the inner diameter of the mop handle unit. The first coupling part and the second coupling part are placed inside the mop handle unit and pressed tightly at the connection position between the mop handle unit and the first coupling part and the second coupling part, so that its diameter is reduced and it is locked and fixed.