Self-wringing strip-bundle mop
By designing a self-squeezing mop with a bundled design, and using the mop handle to control the swing of the mop head and squeezer, the problem of cloth jamming and laborious wringing of long bundled mops is solved, achieving an easy and fast wringing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-20
- Publication Date
- 2026-04-10
AI Technical Summary
Existing mops are prone to jamming, require a lot of effort, and do not clean thoroughly during the wringing process. In particular, long mops have excessive friction when wringing, resulting in uneven wringing and inconvenience.
A self-squeezing mop bundle was designed. The mop head and squeezer are controlled by the mop handle to achieve self-squeezing of water from the long bundle. The large contact area between the squeezer and the long bundle prevents the mop from jamming. The simple structure and friction components reset the squeezer to reduce resistance.
It enables easy and quick water squeezing of long strips, avoiding the problem of cloth jamming. The water squeezing process is smoother and less labor-intensive. The structure is simple and stable, and the cleaning effect is good.
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Figure CN121817751A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household goods, and in particular to a strip bundle mop capable of self-squeezing water. BACKGROUND
[0002] The mop is a cleaning tool with a large quantity and wide range of use, which is used not only in hotels, restaurants, shopping malls, supermarkets and hospitals every day, but also in the homes of the general public. The existing mops are various in types and complete in functions, and can meet various different needs. Some mops that are convenient to use and good in use effect liberate people from heavy housework and physical labor, and thus are favored by people. The long strip bundle mop has good water absorption and good cleaning effect, and is a common ground cleaning tool. In the prior art, the long strip bundle mop is usually composed of a plurality of twisted cotton yarns to form a large wiping material, and adopts a water squeezing mode, usually a twisting or spin-drying mode.
[0003] The utility model patent CN201564435U discloses a hand twisting water mop, a handle, a rod head, a hand guard, a handle are connected on the rod, the rod is connected into a whole with the fixing piece through the rod head, one end of the mop is connected on the fixing piece through a clasp, the other end of the mop is fixed on the water twisting body, the water twisting body is matched with the handle, the rod is further connected with an elastic buckle and a rotating body, the outer surface of the rotating body has a straight gear that is matched with the straight rib on the inner surface of the water twisting body, the inner surface of the rotating body has a ratchet, the outer surface of the elastic buckle has a pawl, the elastic buckle is matched with the ratchet on the rotating body through the pawl. Two spring buckles and the rotating body matched therewith are added on the rod, and the pawl can only rotate in the advancing direction of the ratchet, so that the rotating body can only rotate in one direction, the function of rotating positioning and locking the mop is achieved, the drawback that the traditional water twisting mop cannot lock the mop when twisting water is improved, thus the mop is labor-saving when being used, the mop twisting speed is fast, and the mop is a clean, sanitary and good-in-use-effect mop. However, the problem is that the water twisting mode is labor-consuming, and the mop can only be washed when being used, and the cleaning is not complete. Although the washing and water spinning effects can be achieved through the centrifugal rotation mode, the rotation mode must be matched with a barrel for use, and the use is inconvenient and occupies a large volume.
[0004] The Chinese invention patent CN116982891A discloses a self-squeezing long strip bundle mop, comprising a mop rod, a plurality of long strip bundles, a mop head, characterized in that it further comprises a holding part, the mop rod is provided with a first matching part matched with the holding part, the mop rod is slidingly connected with a movable part and a squeezing part capable of moving up and down along the mop rod, one end of the long strip bundle is connected with the mop head, and the other end is connected with the movable part, the movable part can move between a first position close to the mop head and a second position away from the mop head to straighten the long strip bundle, when the holding part is matched with the first matching part, the movable part is kept at the second position, and the squeezing part is used to slide up and down to squeeze the long strip bundle when the movable part is at the second position. When the long strip bundle mop is squeezed, the self-squeezing of the mop head is realized by the squeezing plate. However, the problem is that the cloth strip is soft, and the cloth strip is easily stuck due to excessive friction through the squeezing hole, the cloth strip is not smooth during squeezing, and the squeezing is laborious. SUMMARY
[0005] (I) Technical problems to be solved
[0006] Therefore, the embodiment of the present specification provides a self-squeezing strip bundle mop which is easy to squeeze and does not get stuck.
[0007] (II) Technical solutions
[0008] To solve the technical problems, the present application provides the following technical solutions: a self-squeezing strip bundle mop, comprising a mop rod, a plurality of long strip bundles, and a mop head, one end surface of the mop head is connected with the plurality of long strip bundles, the other end surface of the mop head is connected with the mop rod, the mop head is slidingly arranged in a surrounding frame, a squeezer is hinged at the opening of the surrounding frame, the squeezer can swing between a first position close to the long strip bundle and a second position away from the long strip bundle, the mop rod is pushed to control the mop head to make the long strip bundle stretch out from the opening of the surrounding frame, the squeezer swings from the first position to the second position, and the long strip bundle works; the mop rod is pulled to control the mop head to make the long strip bundle pull back to the surrounding frame, the squeezer swings from the second position to the first position, and the long strip bundle is squeezed, thereby realizing self-squeezing of the long strip bundle.
[0009] Compared with the prior art, the advantages of the present application are as follows: the mop rod is pushed to control the mop head to make the long strip bundle stretch out from the opening of the surrounding frame, the squeezer swings from the first position to the second position, and the long strip bundle works; the mop rod is pulled to control the mop head to make the long strip bundle pull back to the surrounding frame, the squeezer swings from the second position to the first position, and the long strip bundle is squeezed, thereby realizing self-squeezing of the long strip bundle. Since the long strip bundle is soft cloth, the contact area between the squeezer and the long strip bundle is large, and there is no problem of cloth getting stuck or being hooked during the squeezing process, thereby realizing easy and fast squeezing.
[0010] In some embodiments, the extruder comprises a first squeeze plate and a second squeeze plate, which are oppositely arranged at the opening of the frame, and the long strip bundle extends from the gap between the first squeeze plate and the second squeeze plate. Through the improvement, the first squeeze plate and the second squeeze plate are arranged, and the long strip bundle extends or retracts from the gap between the first squeeze plate and the second squeeze plate without the support of other parts, so that the long strip bundle extends or retracts more smoothly and quickly. When the first squeeze plate and the second squeeze plate are both in the first position, the first squeeze plate and the second squeeze plate cooperate to squeeze the long strip bundle, realizing the self-squeezing function of the strip bundle mop.
[0011] In some embodiments, the opposite two side walls of the mop head are downwardly protruded with a first protrusion and a second protrusion. The mop rod is pushed to move the mop head to the opening of the frame. The wall surface of the first protrusion abuts against the inner end surface of the first squeeze plate, and the wall surface of the second protrusion abuts against the inner end surface of the second squeeze plate, driving the first squeeze plate and the second squeeze plate to swing from the first position to the second position. Through the improvement, during the process of moving the mop head to the opening of the frame by controlling the mop rod, the long strip bundle gradually extends from the inside of the frame. During this process, the first protrusion and the second protrusion are synchronously abutted against the first squeeze plate and the second squeeze plate, so that the first squeeze plate and the second squeeze plate are outwardly turned and opened, the gap between the first squeeze plate and the second squeeze plate is enlarged, and the long strip bundle extends from the inside of the frame more smoothly.
[0012] In some embodiments, the inner end surface of the extruder is provided with a friction member. When the extruder is in the second position, the friction member is downwardly inclined from the end of the long strip bundle to the end close to the long strip bundle. During the process of moving the long strip bundle back to the inside of the frame, the long strip bundle is in contact with the friction member for friction, driving the extruder to swing from the second position to the first position. Through the improvement, during the process of moving the long strip bundle back to the inside of the frame, the long strip bundle is in contact with the friction member for friction, driving the extruder to swing from the second position to the first position, realizing the reset of the extruder. The simple structure cooperates, and the extruder is subjected to smaller resistance than the traditional reset spring and other means, so that the extruder squeezes water more easily.
[0013] In some embodiments, the mop head comprises a fixing hole for fixing the long strip bundle, one end of the long strip bundle is inserted into the fixing hole, and a limiting tooth is arranged at the opening of the fixing hole. The limiting tooth is arranged around the central axis of the fixing hole, and the limiting tooth abuts against the long strip bundle. Through the improvement, the tooth part of the limiting tooth is in friction with the wall surface of the long strip bundle, limiting the long strip bundle from being separated from the fixing hole, so that the strip mop is more stable and firm during work.
[0014] In some embodiments, the opening of the frame comprises relatively arranged hinged plates, and the two ends of the extruder are hinged to the hinged plates respectively, and the hinged plates are provided with avoiding grooves for avoiding the long strip bundle, through the improvement, the friction between the hinged plates and the long strip bundle is prevented from being too large during the pulling back of the long strip bundle into the frame, so that the recovery resistance of the long strip bundle is too large, and through the arrangement of the avoiding grooves, the recovery of the long strip bundle is more smooth.
[0015] In some embodiments, the left and right ends of the first squeeze plate are outwardly protruded with first friction blocks, the left and right ends of the second squeeze plate are outwardly protruded with second friction blocks, and the outer side end faces of the first friction blocks and the second friction blocks are all abutted against the inner side end face of the hinged plate, through the improvement, through the abutment of the outer side end faces of the first friction blocks and the second friction blocks against the inner side end face of the hinged plate, the first squeeze plate and the second squeeze plate are prevented from being easily turned open by external factors.
[0016] In some embodiments, the frame is outwardly protruded with a holding part near one end of the mop rod, the holding part is provided with a mounting hole communicated with the inner cavity of the frame, the mop rod is inserted into the mounting hole, the inner side wall face of the mounting hole is outwardly protruded with a plurality of support blocks, and the plurality of support blocks are circumferentially and spacedly arranged around the center axis of the mounting hole, through the improvement, the plurality of support blocks are circumferentially and spacedly arranged around the center axis of the mounting hole, the support blocks support the mop rod, the mop rod is prevented from shaking during the working process, and the holding part is used for hand holding, after holding, the mop rod is more convenient and labor-saving to push and pull.
[0017] In some embodiments, the left and right ends of the first squeeze plate are outwardly protruded with first pin shafts, the left and right ends of the second squeeze plate are outwardly protruded with second pin shafts, the hinged plate is provided with first pin holes and second pin holes matched with the first pin shafts and the second pin shafts, the first pin shafts are accommodated in the first pin holes, the second pin shafts are accommodated in the second pin holes, the first pin shafts are sleeved with first return springs, the second pin shafts are sleeved with second return springs, the two ends of the first return springs are connected with the hinged plate and the first squeeze plate respectively, and the two ends of the second return springs are connected with the hinged plate and the second squeeze plate respectively, through the improvement, through the accommodation of the first pin shafts in the first pin holes and the accommodation of the second pin shafts in the second pin holes, the turning of the first squeeze plate and the second squeeze plate is realized, through the arrangement of the first return springs and the second return springs, when the first squeeze plate and the second squeeze plate are turned from the first position to the second position, the first return springs and the second return springs are deformed to generate resistance, the gap between the first squeeze plate and the second squeeze plate is prevented from being too large, so that the first squeeze plate and the second squeeze plate are difficult to reset, and at the same time, the first return springs and the second return springs play a pushing role during the turning of the first squeeze plate and the second squeeze plate from the second position to the first position.
[0018] In some embodiments, a first abutment portion and a second abutment portion protrude outward on the inner end face of the hinge plate. When the first wringer plate and the second wringer plate are in the first position, the first abutment portion abuts against the first wringer plate and the second abutment portion abuts against the second wringer plate. Through the above improvement, when the first wringer plate and the second wringer plate rotate from the second position to the first position, the first abutment portion and the second abutment portion respectively limit the first wringer plate and the second wringer plate, preventing the first wringer plate and the second wringer plate from over-rotating.
[0019] (III) Beneficial Effects
[0020] This invention provides a self-squeezing mop head, where the mop head is controlled by a mop handle, causing the squeezer to swing between a first position and a second position. When the mop handle is pushed, the mop head moves towards the opening of the frame, where the wall surface of the first protrusion abuts against the inner end face of the first wringer plate, and the wall surface of the second protrusion abuts against the inner end face of the second wringer plate, causing the squeezer to swing from the first position to the second position. This causes the first and second wringer plates to flip outwards and open, increasing the gap between them and allowing the long mop head to extend more smoothly from the frame. The inner end face of the squeezer is provided with a friction element, which is inclined downwards from the end away from the squeezer to the end closer to the squeezer. As the long mop head is pulled back into the frame, it contacts and rubs against the friction element, causing the squeezer to swing from the second position to the first position. This design achieves the reset of the squeezer. The simple structure and operation result in less resistance compared to traditional methods using return springs or other means, making squeezing water easier. Simultaneously, as the first and second squeezing plates rotate from the first position to the second position, the first and second return springs deform, generating resistance to prevent excessive gaps between them, which could hinder their reset. Furthermore, the first and second return springs act as a pusher as the squeezing plates rotate from the second position to the first position. When the first and second squeezing plates rotate back to the first position, the first and second abutment parts respectively limit their movement, preventing excessive overturning. Attached Figure Description
[0021] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram of the extruder of the present invention in the first position;
[0023] Figure 2 schematic view of the structure of the squeezer in a first position, in partial section;
[0024] Figure 3 schematic view of the structure of the squeezer in a first position, in partial section and from another angle;
[0025] Figure 4 schematic view of the structure of the squeezer in a second position;
[0026] Figure 5 schematic view of the structure of the squeezer in a second position, in partial section;
[0027] Figure 6 schematic view of the structure of the squeezer in a second position, in partial section and from another angle;
[0028] Figure 7 schematic view of the structure of the mop handle of the application;
[0029] Figure 8 schematic view of the structure of the frame of the application;
[0030] Figure 9 schematic view of the structure of the frame of the application, from another angle;
[0031] Figure 10 schematic view of the structure of the mop head of the application;
[0032] Figure 11 schematic view of the structure of the mop head of the application, from another angle;
[0033] Figure 12 schematic view of the structure of the squeezer of the application;
[0034] Figure 13 schematic view of the structure of the first and second abutment of the application;
[0035] Figure 14 schematic view of the structure of the first and second return spring of the application.
[0036] In the figure: 1, frame; 1.1, hinged plate; 1.1.1, first pin hole; 1.1.2, second pin hole; 1.1.3, first abutting part; 1.1.4, second abutting part; 1.2, avoiding slot; 1.3, holding part; 1.3.1, mounting hole; 1.3.2, supporting block; 1.4, ventilation hole; 2, mop rod; 2.1, limiting slot; 3, long strip bundle; 4, mop head; 4.1, fixing hole; 4.2, limiting tooth; 4.3, first protruding block; 4.4, second protruding block; 4.5, connecting part; 4.6, mounting slot; 4.7, limiting block; 4.7.1, pressing part; 4.7.2, limiting part; 4.8, buffer pad; 5, squeezer; 5.1, first squeezing plate; 5.2, second squeezing plate; 5.3, friction piece; 5.3.1, first friction strip; 5.3.2, second friction strip; 5.4, first friction block; 5.5, second friction block; 5.6, first pin shaft; 5.7, second pin shaft; 6, first return spring; 7, second return spring. DETAILED DESCRIPTION
[0037] The present application will be described in detail below with reference to the attached drawings and specific embodiments.
[0038] The above and other aspects of the present application will become more apparent by describing in detail the embodiments thereof with reference to the attached drawings in which:
[0039] It is to be understood that the embodiments described herein are merely examples of embodiments of the application and that many variations and modifications can be made to the described embodiments without departing from the spirit and scope of the application. It is further understood that all such variations and modifications fall within the scope of the application and that the application can be practiced in different but equivalent manners. It is also understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting. It is also understood that where the description uses terms such as "including", "having", "containing" or "comprising", it is used in the sense of "including but not limited to", "having but not limited to" or "comprising but not limited to", and is intended to cover the respective terms as well as their functional equivalents.
[0040] It is also need to be explained that the figures provided in the following embodiments only illustrate the basic ideas of the present application in a schematic way, and only show the components related to the present application in the figures, not drawn according to the number, shape and size of the components in actual implementation, and the shape, number and ratio of each component in actual implementation can be changed arbitrarily, and the component layout pattern can be more complex.
[0041] In addition, in the following description, specific details are provided to facilitate a thorough understanding of the examples. However, one skilled in the art will understand that the examples can be practiced without these specific details.
[0042] The technical solutions provided by the embodiments of the present application are described below in combination with the drawings.
[0043] Please refer to Figures 1-6 In the present embodiment, a mop with self-squeezing water, comprising a mop rod 2, a plurality of long strips 3, and a mop head 4, one end surface of the mop head 4 is connected to the plurality of long strips 3, the other end surface of the mop head 4 is connected to the mop rod 2, the mop head 4 is slidably arranged in a frame 1, a squeezer 5 is hinged at the opening of the frame 1, the squeezer 5 can swing between a first position close to the long strips 3 and a second position away from the long strips 3, pushing the mop rod 2 controls the mop head 4 to make the long strips 3 extend out of the opening of the frame 1, the squeezer 5 swings from the first position to the second position, and the long strips 3 work; pulling the mop rod 2 controls the mop head 4 to make the long strips 3 pull back into the frame 1, the squeezer 5 swings from the second position to the first position, and the long strips 3 are squeezed, realizing self-squeezing water of the long strips 3.
[0044] In the present embodiment, a mop with self-squeezing water, comprising a mop rod 2, a plurality of long strips 3, and a mop head 4, one end surface of the mop head 4 is connected to the plurality of long strips 3, the other end surface of the mop head 4 is connected to the mop rod 2, the mop head 4 is slidably arranged in a frame 1, a squeezer 5 is hinged at the opening of the frame 1, the squeezer 5 can swing between a first position close to the long strips 3 and a second position away from the long strips 3, pushing the mop rod 2 controls the mop head 4 to make the long strips 3 extend out of the opening of the frame 1, the squeezer 5 swings from the first position to the second position, and the long strips 3 work; pulling the mop rod 2 controls the mop head 4 to make the long strips 3 pull back into the frame 1, the squeezer 5 swings from the second position to the first position, and the long strips 3 are squeezed, realizing self-squeezing water of the long strips 3.
[0045] In some embodiments, as Figure 12As shown, the extruder 5 includes a first squeeze plate 5.1 and a second squeeze plate 5.2, which are oppositely arranged at the opening of the frame 1, and the long strip bundle 3 extends from the gap between the first squeeze plate 5.1 and the second squeeze plate 5.2. It should be noted that the first squeeze plate 5.1 and the second squeeze plate 5.2 are arranged, and the long strip bundle 3 extends or retracts from the gap between the first squeeze plate 5.1 and the second squeeze plate 5.2 without the support of other parts, so that the long strip bundle 3 extends or retracts more smoothly and quickly. When the first squeeze plate 5.1 and the second squeeze plate 5.2 are both in the first position, the first squeeze plate 5.1 and the second squeeze plate 5.2 cooperate to squeeze the long strip bundle 3, realizing the self-squeezing function of the strip bundle drag plate.
[0046] It should be noted that when the extruder 5 is in the first position, the first squeeze plate 5.1 and the second squeeze plate 5.2 are approximately parallel to the ground, and when the extruder 5 is in the second position, the first squeeze plate 5.1 and the second squeeze plate 5.2 are approximately perpendicular to the ground.
[0047] In some embodiments, as shown, Figures 10-11 As shown, the opposite two side walls of the mop head 4 are downwardly convex with a first convex block 4.3 and a second convex block 4.4. The mop rod 2 drives the mop head 4 to move to the opening of the frame 1, and the wall surface of the first convex block 4.3 abuts against the inner side end surface of the first squeeze plate 5.1, and the wall surface of the second convex block 4.4 abuts against the inner side end surface of the second squeeze plate 5.2, driving the first squeeze plate 5.1 and the second squeeze plate 5.2 to swing from the first position to the second position. It should be noted that during the process of controlling the mop rod 2 to move the mop head 4 to the outlet of the frame 1, the long strip bundle 3 gradually extends from the inside of the frame 1. During this process, the first convex block 4.3 and the second convex block 4.4 are in contact with the first squeeze plate 5.1 and the second squeeze plate 5.2 at the same time, so that the first squeeze plate 5.1 and the second squeeze plate 5.2 are turned outward and opened, and the gap between the first squeeze plate 5.1 and the second squeeze plate 5.2 is enlarged, so that the long strip bundle 3 extends from the frame 1 more smoothly.
[0048] In some embodiments, as shown, Figure 12As shown, the inner side end faces of the first squeeze plate 5.1 and the second squeeze plate 5.2 are respectively provided with a friction member 5.3, when the first squeeze plate 5.1 and the second squeeze plate 5.2 are in the second position, the friction member 5.3 is inclined downward from the end of the long strip bundle 3 to the end of the long strip bundle 3, when the long strip bundle 3 is pulled back to the frame 1, the long strip bundle 3 is in contact with the friction member 5.3, which drives the first squeeze plate 5.1 and the second squeeze plate 5.2 to swing from the second position to the first position, it should be noted that when the long strip bundle 3 is moved back to the frame 1, the long strip bundle 3 is in contact with the friction member 5.3, which drives the first squeeze plate 5.1 and the second squeeze plate 5.2 to swing from the second position to the first position, which realizes the reset of the first squeeze plate 5.1 and the second squeeze plate 5.2, and the simple structure cooperates with the rest means such as the reset spring to make the extruder 5 receive smaller resistance, so that the extruder 5 extrudes water more easily.
[0049] It should be noted that the friction member 5.3 can be a tooth or a convex point.
[0050] It should be noted that the friction member 5.3 includes a first friction strip 5.3.1 and a second friction strip 5.3.2, the first friction strip 5.3.1 is arranged on the first squeeze plate 5.1, the second friction strip 5.3.2 is arranged on the second squeeze plate 5.2, the first friction strip 5.3.1 is arranged on a plane perpendicular to the end face of the first squeeze plate 5.1 and inclined downward from the inside to the outside, and the second friction strip 5.3.2 is arranged on a plane perpendicular to the end face of the second squeeze plate 5.2 and inclined downward from the inside to the outside.
[0051] In some embodiments, as shown in Figures 11-12 As shown, the mop head 4 includes a fixing hole 4.1 for fixing the long strip bundle 3, one end of the long strip bundle 3 is inserted into the fixing hole 4.1, a limiting tooth 4.2 is arranged at the opening of the fixing hole 4.1, the limiting tooth 4.2 is arranged around the center axis of the fixing hole 4.1, and the limiting tooth 4.2 abuts against the long strip bundle 3, it should be noted that the tooth part of the limiting tooth 4.2 is in friction with the wall surface of the long strip bundle 3 to limit the long strip bundle 3 from disengaging from the fixing hole 4.1, so that the strip mop is more stable and firm during work.
[0052] In some embodiments, as shown in Figure 9 As shown, the opening of the frame 1 includes a hinge plate 1.1 arranged oppositely, the two ends of the extruder 5 are respectively hinged to the hinge plate 1.1, and the hinge plate 1.1 is provided with an avoiding slot 1.2 for avoiding the long strip bundle 3, it should be noted that the friction force of the hinge plate 1.1 on the long strip bundle 3 is prevented from being too large during the process of pulling back the long strip bundle 3 to the frame 1, so that the recovery resistance of the long strip bundle 3 is too large, and the setting of the avoiding slot 1.2 makes the recovery of the long strip bundle 3 more smooth.
[0053] In some embodiments, as shown in Figures 12-13As shown, the left and right ends of the first squeeze plate 5.1 are outwardly protruding with a first pin shaft 5.6, the left and right ends of the second squeeze plate 5.2 are outwardly protruding with a second pin shaft 5.7, the hinged plate 1.1 is provided with a first pin hole 1.1.1 and a second pin hole 1.1.2 matched with the first pin shaft 5.6 and the second pin shaft 5.7, the first pin shaft 5.6 is accommodated in the first pin hole 1.1.1, and the second pin shaft 5.7 is accommodated in the second pin hole 1.1.2, the first pin shaft 5.6 is sleeved with a first reset spring 6, the second pin shaft 5.7 is sleeved with a second reset spring 7, the two ends of the first reset spring 6 are respectively connected with the hinged plate 1.1 and the first squeeze plate 5.1, and the two ends of the second reset spring 7 are respectively connected with the hinged plate 1.1 and the second squeeze plate 5.2, it should be noted that the first pin shaft 5.6 is accommodated in the first pin hole 1.1.1 and the second pin shaft 5.7 is accommodated in the second pin hole 1.1.2 to realize the overturning of the first squeeze plate 5.1 and the second squeeze plate 5.2, and the first reset spring 6 and the second reset spring 7 are arranged to generate resistance when the first squeeze plate 5.1 and the second squeeze plate 5.2 rotate from the first position to the second position, so as to prevent the gap between the first squeeze plate 5.1 and the second squeeze plate 5.2 from being too large, and make the first squeeze plate 5.1 and the second squeeze plate 5.2 difficult to reset; meanwhile, the first reset spring 6 and the second reset spring 7 play a pushing role when the first squeeze plate 5.1 and the second squeeze plate 5.2 rotate from the second position to the first position.
[0054] In some embodiments, as shown in Figure 14 As shown, the inner side end face of the hinged plate 1.1 is outwardly protruding with a first abutting portion 1.1.3 and a second abutting portion 1.1.4, when the first squeeze plate 5.1 and the second squeeze plate 5.2 are in the first position, the first abutting portion 1.1.3 abuts on the first squeeze plate 5.1, and the second abutting portion 1.1.4 abuts on the second squeeze plate 5.2, it should be noted that when the first squeeze plate 5.1 and the second squeeze plate 5.2 rotate from the second position to the first position, the first abutting portion 1.1.3 and the second abutting portion 1.1.4 limit the first squeeze plate 5.1 and the second squeeze plate 5.2 respectively, to prevent the first squeeze plate 5.1 and the second squeeze plate 5.2 from being overturned excessively.
[0055] In some embodiments, as shown in Figure 12As shown, the left and right ends of the first squeeze plate 5.1 are outwardly protruding with first friction blocks 5.4, the left and right ends of the second squeeze plate 5.2 are outwardly protruding with second friction blocks 5.5, the outer side end faces of the first friction blocks 5.4 and the outer side end faces of the second friction blocks 5.5 are all in abutment with the inner side end face of the hinge plate 1.1, and it needs to be noted that the outer side end faces of the first friction blocks 5.4 and the outer side end faces of the second friction blocks 5.5 are all in abutment with the inner side end face of the hinge plate 1.1, which prevents the first squeeze plate 5.1 and the second squeeze plate 5.2 from being easily turned open by external factors.
[0056] In some embodiments, as shown in the drawings, Figures 7-9 As shown, the end of the frame 1 close to the mop rod 2 is outwardly protruding with a holding part 1.3, the holding part 1.3 is provided with a mounting hole 1.3.1 communicating with the inner cavity of the frame 1, the mop rod 2 is inserted into the mounting hole 1.3.1, and the inner side wall surface of the mounting hole 1.3.1 is outwardly protruding with a plurality of support blocks 1.3.2, which are circumferentially spaced around the center axis of the mounting hole 1.3.1, and it needs to be noted that the plurality of support blocks 1.3.2 are circumferentially spaced around the center axis of the mounting hole 1.3.1, which supports the mop rod 2 to prevent the mop rod 2 from shaking during work, and the holding part 1.3 is used for hand holding, which makes it more convenient and labor-saving to push and pull the mop rod 2 after holding.
[0057] In some embodiments, as shown in the drawings, Figures 7-9 As shown, the end of the mop head 4 close to the mop rod 2 is outwardly protruding with a connecting part 4.5, the outer side wall surface of the connecting part 4.5 is oppositely provided with two mounting grooves 4.6, the mounting grooves 4.6 are provided with a pressing part 4.7.1 and a limiting part 4.7.2 connected to one end of the pressing part 4.7.1, and the inner side end of the mop rod 2 is provided with a limiting groove 2.1 matched with the limiting part 4.7.2, and the limiting part 4.7.2 is accommodated in the limiting groove 2.1, and it needs to be noted that pressing the pressing part 4.7.1 makes the limiting part 4.7.2 accommodated in the limiting groove 2.1, and releasing the pressing part 4.7.1 makes the wall surface of the limiting part 4.7.2 abut against the wall surface of the limiting groove 2.1 to realize the connection of the mop head 4 and the mop rod 2.
[0058] In some embodiments, as shown in the drawings, Figure 9 As shown, the front and rear side end faces of the frame 1 are both provided with a plurality of ventilation holes 1.4, and it needs to be noted that the provision of the ventilation holes 1.4 makes the long strip bundle 3 in the frame 1 more easily air-dried to prevent the long strip bundle 3 from being damp for a long time, which shortens the service life of the long strip bundle 3.
[0059] In some embodiments, as shown in the drawings, Figure 10As shown, the mop head 4 is provided with two buffer pads 4.8 close to the end face of the mop rod 2, which are symmetrically arranged on the two sides of the mop head 4. It should be noted that the buffer pads 4.8 are arranged to prevent damage caused by the collision between the mop head 4 and the inner side wall of the frame 1.
[0060] Working principle: pushing the mop rod 2 to drive the mop head 4 to move to the opening of the frame 1, the wall surface of the first protrusion 4.3 abuts against the inner side end face of the first wringing plate 5.1, and the wall surface of the second protrusion 4.4 abuts against the inner side end face of the second wringing plate 5.2, driving the wringer 5 to swing from the first position to the second position, so that the first wringing plate 5.1 and the second wringing plate 5.2 are turned outward and opened, and the first return spring 6 and the second return spring 7 are deformed to generate resistance; pulling the mop rod 2 to drive the mop head 4 to move to the bottom of the frame 1, the control strip bundle 3 is pulled back to the frame 1, the strip bundle 3 is in contact with the friction piece 5.3, driving the first wringing plate 5.1 and the second wringing plate 5.2 to swing from the second position to the first position, the first return spring 6 and the second return spring 7 restore the deformation to play a pushing role to realize the reset of the first wringing plate 5.1 and the second wringing plate 5.2, and at the same time, the first wringing plate 5.1 and the second wringing plate 5.2 cooperate to extrude the strip bundle 3 to realize the self-wringing function of the strip bundle mop plate.
[0061] In the present specification, the same or similar parts among various embodiments can be referred to each other, and each embodiment focuses on the difference from other embodiments.
[0062] The above is merely a specific implementation of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A self-wringing strip bundle mop comprising a mop handle (2), a plurality of long strip bundles (3), and a mop head (4), characterized in that: One end surface of the mop head (4) is connected with a plurality of the long strip bundles (3), the other end surface of the mop head (4) is connected with the mop rod (2), the mop head (4) is slidably arranged in the frame (1), a squeezer (5) is hingedly connected to the opening of the frame (1), the squeezer (5) can swing between a first position close to the long strip bundle (3) and a second position away from the long strip bundle (3), pushing the mop rod (2) controls the mop head (4) to make the long strip bundle (3) stretch out from the opening of the frame (1), the squeezer (5) swings from the first position to the second position, and the long strip bundle (3) works; pulling the mop rod (2) controls the mop head (4) to make the long strip bundle (3) pull back into the frame (1), the squeezer (5) swings from the second position to the first position, and the long strip bundle (3) is squeezed to realize self-squeezing water.
2. A self-wringing strip bundle mop according to claim 1, wherein: The squeezer (5) comprises a first squeezing plate (5.1) and a second squeezing plate (5.2), the first squeezing plate (5.1) and the second squeezing plate (5.2) are oppositely arranged at the opening of the frame (1), and the long strip bundle (3) stretches out from the gap between the first squeezing plate (5.1) and the second squeezing plate (5.2).
3. A self-wringing strip bundle mop according to claim 2, wherein: The opposite two side walls of the mop head (4) are downwardly protruded with a first protrusion (4.3) and a second protrusion (4.4), pushing the mop rod (2) drives the mop head (4) to move to the opening of the frame (1), the wall surface of the first protrusion (4.3) abuts against the inner side end surface of the first squeezing plate (5.1), the wall surface of the second protrusion (4.4) abuts against the inner side end surface of the second squeezing plate (5.2), and the first squeezing plate (5.1) and the second squeezing plate (5.2) are driven to swing from the first position to the second position.
4. A self-wringing strip bundle mop according to claim 1, wherein: The inner side end surface of the squeezer (5) is provided with a friction member (5.3), when the squeezer (5) is in the second position, the friction member (5.3) is downwardly inclined from one end away from the long strip bundle (3) to one end close to the long strip bundle (3), when the long strip bundle (3) is pulled back into the frame (1), the long strip bundle (3) contacts and rubs against the friction member (5.3), and the squeezer (5) is driven to swing from the second position to the first position.
5. A self-wringing strip bundle mop as defined in claim 1, wherein: The mop head (4) comprises a fixing hole (4.1) for fixing the long strip bundle (3), one end of the long strip bundle (3) is inserted into the fixing hole (4.1), a limiting tooth (4.2) is arranged at the opening of the fixing hole (4.1), the limiting tooth (4.2) is arranged around the central axis of the fixing hole (4.1), and the limiting tooth (4.2) abuts against the long strip bundle (3).
6. A self-wringing strip bundle mop according to claim 2, wherein: The opening of the frame (1) comprises a pair of opposite hinged plates (1.1), both ends of the squeezer (5) are hinged to the hinged plates (1.1), and the hinged plates (1.1) are provided with avoiding grooves (1.2) for avoiding the long strip bundle (3).
7. A self-wringing strip bundle mop according to claim 6, wherein: The left and right ends of the first squeezing plate (5.1) are outwardly protruded with first friction blocks (5.4), the left and right ends of the second squeezing plate (5.2) are outwardly protruded with second friction blocks (5.5), and the outer side end faces of the first friction blocks (5.4) and the second friction blocks (5.5) are in abutment with the inner side end face of the hinged plate (1.1).
8. A self-wringing strip bundle mop according to claim 6, wherein: The frame (1) is outwardly protruded with a holding part (1.3) near one end of the mop rod (2), the holding part (1.3) is provided with a mounting hole (1.3.1) in communication with the inner cavity of the frame (1), the mop rod (2) is inserted into the mounting hole (1.3.1), and the inner side wall face of the mounting hole (1.3.1) is outwardly protruded with a plurality of support blocks (1.3.2) which are circumferentially spaced apart around the central axis of the mounting hole (1.3.1).
9. A self-wringing strip bundle mop according to claim 6, wherein: The left and right ends of the first squeezing plate (5.1) are outwardly protruded with first pin shafts (5.6), the left and right ends of the second squeezing plate (5.2) are outwardly protruded with second pin shafts (5.7), the hinged plate (1.1) is provided with first pin holes (1.1.1) and second pin holes (1.1.2) matched with the first pin shafts (5.6) and the second pin shafts (5.7), the first pin shafts (5.6) are accommodated in the first pin holes (1.1.1), the second pin shafts (5.7) are accommodated in the second pin holes (1.1.2), the first pin shafts (5.6) are sleeved with first return springs (6), the second pin shafts (5.7) are sleeved with second return springs (7), the two ends of the first return springs (6) are connected with the hinged plate (1.1) and the first squeezing plate (5.1) respectively, and the two ends of the second return springs (7) are connected with the hinged plate (1.1) and the second squeezing plate (5.2) respectively. The inner side end face of the hinged plate (1.1) is outwardly protruded with a first abutting part (1.1.3) and a second abutting part (1.1.4), when the first squeezing plate (5.1) and the second squeezing plate (5.2) are in the first position, the first abutting part (1.1.3) abuts on the first squeezing plate (5.1), and the second abutting part (1.1.4) abuts on the second squeezing plate (5.2). 10. A self-wringing strip bundle mop according to claim 6, wherein:
Citation Information
Patent Citations
Self-wringing strip bundle mop
CN116982891A
Manual water squeezing mop
CN201564435U