Glass wiper
By setting a cleaning section on the glass wiper and using external driving force to achieve automatic water squeezing and cleaning, the problems of easy hand soiling and low efficiency of existing glass wipers are solved, achieving a highly efficient cleaning effect without manual rubbing.
Patent Information
- Application Number
- CN202520143178.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Existing glass cleaners are prone to getting your hands dirty during cleaning and have low cleaning efficiency.
A glass cleaner has been designed that uses an external driving force to move the cleaning head across the cleaning surface, thereby achieving automatic water squeezing and cleaning and avoiding manual rubbing.
It enables cleaning of glass wipes without manual rubbing, avoiding hand contamination and improving cleaning efficiency.
Smart Images

Figure CN223873851U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a cleaning tool technical field, concretely relates to a glass wipe. BACKGROUND
[0002] The currently commonly used cleaning tools such as glass wipe, when cleaning the sponge wiping part, need to be manually rubbed for cleaning, which not only dirties hands, but also has low cleaning efficiency and many inconveniences. UTILITY MODEL CONTENTS
[0003] Therefore, the utility model provides a glass wipe to solve the problems of dirtying hands and low cleaning efficiency.
[0004] The utility model provides a glass wipe, which comprises:
[0005] A cleaning head is provided with a cleaning part, and a cleaning surface is arranged on the cleaning part;
[0006] A cleaning part is movably arranged on the cleaning head, and has a first position lower than the cleaning surface and a second position overlapped with the cleaning surface;
[0007] The cleaning part moves from the first position to the second position under the action of external driving force, and continues to move along the cleaning surface under the action of driving force, so as to clean the cleaning head.
[0008] The utility model provides a glass wipe, and the cleaning part movably arranged on the cleaning head moves under the action of external driving force, moves from the first position lower than the cleaning surface to the second position overlapped with the cleaning surface, and continues to move along the cleaning surface under the action of external force to wash the cleaning part of the cleaning head, so that the user can clean the cleaning surface by using the cleaning part without manually rubbing and cleaning the cleaning surface, the hands of the user are prevented from being dirty during cleaning of the glass wipe, and the cleaning efficiency of the glass wipe is improved.
[0009] In an optional embodiment, the glass wipe further comprises a pushing part in transmission connection with the cleaning part.
[0010] The driving force acts on the pushing part, and the pushing part drives the cleaning part to move from the first position to the second position and continues to move along the cleaning surface.
[0011] The pushing part in transmission connection with the cleaning part is arranged to facilitate driving the cleaning part by using the pushing part, so that the cleaning part moves from the first position to the second position and continues to move along the cleaning surface, thereby performing the water squeezing and cleaning operation of the cleaning part on the cleaning head.
[0012] In an alternative embodiment, the glass cleaner is further provided with a driven part, the pushing member is in transmission connection with the driven part, and the driven part is connected with the cleaning part;
[0013] The pushing member is driven to push the driven part to move in the first direction, so that the driven part drives the cleaning part to move from the first position to the second position, and the pushing member is continuously driven to push the driven part to move in the second direction, so that the driven part drives the cleaning part to continue to move along the cleaning surface.
[0014] Beneficial effect: the driven part connected with the cleaning part, and the transmission connection between the pushing member and the driven part, the user manually applies force to the pushing member to drive the driven part, so that the cleaning part is driven by the driven part to move from the first position to the second position and continue to move along the cleaning surface.
[0015] In an alternative embodiment, the pushing member is provided with a first wedge surface, and the driven part is provided with a second wedge surface suitable for abutting against the first wedge surface;
[0016] The pushing member is driven to move, and the second wedge surface slides along the first wedge surface, so that the driven part moves in the first direction.
[0017] Beneficial effect: the inclined surface sliding cooperation between the first wedge surface on the pushing member and the second wedge surface on the driven part realizes the movement of the driven part in the first direction driven by the pushing member, and the synchronous movement of the cleaning part in the first direction.
[0018] In an alternative embodiment, the pushing member is further provided with a first abutting surface, and the driven part is provided with a second abutting surface;
[0019] The pushing member is driven to drive the driven part to move in the first direction until the first abutting surface abuts against the second abutting surface, and the pushing member continues to be driven to apply force to the second abutting surface through the first abutting surface, so that the driven part moves in the second direction.
[0020] Beneficial effect: the straight surface abutting cooperation between the first abutting surface on the pushing member and the second abutting surface on the driven part realizes the movement of the driven part in the second direction driven by the pushing member, and the synchronous movement of the cleaning part in the second direction.
[0021] In an alternative embodiment, the driven part is provided with movable frames on both sides, the movable frames are connected with the cleaning part to support the cleaning part, and the movable frames move synchronously with the cleaning part when the cleaning part moves.
[0022] Beneficial effect: the two groups of movable frames on both sides of the driven part form an integral structure with the cleaning part, so that the driven part, the movable frames and the cleaning part move synchronously as a whole when the pushing member is driven by external force.
[0023] In an alternative embodiment, the cleaning part is rotationally connected to the movable frame, and when the cleaning part is pressed onto the cleaning surface and moves, the cleaning part rotates relative to the movable frame and / or the cleaning surface.
[0024] Beneficial effect: The cleaning part is rotationally connected to the movable frame, so that when the cleaning part is pressed onto the cleaning surface and moves, the cleaning part can rotate on the cleaning surface, improving the smoothness of the movement of the cleaning part, thereby improving the squeezing and washing efficiency of the cleaning object.
[0025] In an alternative embodiment, the cleaning part is provided as a roller.
[0026] Beneficial effect: The cleaning part is provided as a roller to improve the smoothness of the movement of the cleaning part.
[0027] In an alternative embodiment, the glass wiper is further provided with a reset member, which is provided in cooperation with the cleaning part.
[0028] When the cleaning part moves along the cleaning surface, the reset member stores energy, and when the reset member releases energy, it drives the cleaning part to reset.
[0029] Beneficial effect: By providing a reset member, the cleaning part is realized to reciprocate on the cleaning surface, thereby improving the squeezing and washing efficiency of the cleaning object.
[0030] In an alternative embodiment, the glass wiper further comprises a pushing member and a driven part in transmission connection with the pushing member, and the driven part is connected with the cleaning part.
[0031] Beneficial effect: The user drives the driven part and the cleaning part to move synchronously by pushing the pushing member, so as to squeeze and wash the cleaning object.
[0032] In an alternative embodiment, the pushing member is provided with a third abutting surface, and the driven part is provided with a fourth abutting surface adapted to cooperate with the third abutting surface.
[0033] When the reset member releases energy, the third abutting surface abuts against the fourth abutting surface and drives the pushing member to reset, thereby making the pushing member push the driven part, so as to reset the cleaning part and the driven part.
[0034] Beneficial effect: The straight surface abutting cooperation of the third abutting surface on the pushing member and the fourth abutting surface on the driven part realizes the movement of the pushing member driving the driven part in the reverse direction of the second direction under the releasing action of the reset member, and drives the cleaning part to move synchronously in the reverse direction of the second direction.
[0035] In an alternative embodiment, a receiving cavity is formed in the cleaning head, and the pushing member and the driven part are located in the receiving cavity.
[0036] The reset member is an elastic member arranged in the accommodating cavity, one end of the elastic member abuts against the pushing member, and the other end of the elastic member abuts against the inner wall of the accommodating cavity, and the elastic member is suitable for driving the pushing member to reset.
[0037] Beneficial effect: the accommodating cavity provides installation positions for the pushing member and the driven part, and provides an abutting position for the elastic member.
[0038] In an alternative embodiment, a limiting groove is arranged in the accommodating cavity, and the pushing member and the elastic member are arranged in the limiting groove, and the pushing member is suitable for moving along the length direction of the limiting groove.
[0039] Beneficial effect: the limiting groove is used for limiting the elastic member, ensuring the stability of the elastic member during expansion and contraction, thereby ensuring the stability of the pushing member movement.
[0040] In an alternative embodiment, the pushing member is provided with a mounting groove, and one end of the elastic member is arranged in the mounting groove, and when the elastic member is energized, the elastic member partially enters the mounting groove.
[0041] Beneficial effect: the mounting groove is arranged on the pushing member to mount one end of the elastic member, improving the mounting stability of the elastic member, and avoiding disengagement of the elastic member during expansion and contraction to cause cooperation failure.
[0042] In an alternative embodiment, the movable frame connected with the cleaning part is at least partially arranged in the accommodating cavity and is provided with the driven part, and the part of the movable frame exposed from the accommodating cavity is connected with the cleaning part.
[0043] Beneficial effect: the driven part is hidden in the accommodating cavity of the cleaning head, and is connected with the cleaning part only through the movable frame, improving the aesthetic appearance of the glass wipe as a whole.
[0044] In an alternative embodiment, the glass wipe further comprises an operating member, the operating member is in transmission connection with the pushing member, and the operating member has an operating state and an idle state.
[0045] When the operating member is in the operating state, it is suitable to be driven to push the pushing member.
[0046] When the operating member is in the idle state, it can be prevented from being mistakenly touched to prevent the pushing member from being driven.
[0047] Beneficial effect: the operating member in transmission connection with the pushing member is arranged to facilitate the user to push the pushing member through the operating member to drive the driven part to move.
[0048] In an alternative embodiment, when the operating member is in the operating state, the operating member is arranged in line with the pushing member and is adapted to be driven to push the pushing member;
[0049] When the operating member is in the idle state, the operating member is biased to the pushing member to avoid being mistakenly touched to prevent the pushing member from being driven.
[0050] Beneficial effects: the in-line arrangement of the operating member and the pushing member and the biasing of the operating member to the pushing member are used to switch the operating state and the idle state of the operating member.
[0051] In an alternative embodiment, the cleaning head is provided with a mounting hole, and the pushing member comprises an extension rod which extends out of the mounting hole to be in transmission connection with the operating member.
[0052] Beneficial effects: the mounting hole is provided on the cleaning head to avoid the extension rod of the pushing member extending outwards, so that the extension rod is used to transmission connect the operating member with the operating member.
[0053] In an alternative embodiment, the extension rod is hinged to the operating member and is adapted to rotate the operating member relative to the extension rod to switch the operating member between the operating state and the idle state.
[0054] Beneficial effects: the hinging of the extension rod to the operating member realizes the transmission connection of the operating member with the operating member, which is stable and efficient and facilitates the switching operation of the operating member between the operating state and the idle state.
[0055] In an alternative embodiment, the extension rod is provided with a bayonet, and the operating member is provided with a buckle adapted to cooperate with the bayonet.
[0056] When the operating member is in the operating state, the buckle is buckled to the bayonet to maintain the in-line position of the operating member and the extension rod.
[0057] When the operating member is in the idle state, the buckle is disengaged from the bayonet to bias the operating member to the side of the extension rod.
[0058] Beneficial effects: the bayonet and the buckle are respectively arranged on the extension rod and the operating member to maintain the stability of the in-line position of the operating member and the extension rod.
[0059] In an alternative embodiment, the buckle is provided in an elastic structure.
[0060] Beneficial effects: the buckle is provided in an elastic structure to facilitate the quick deformation of the buckle to engage or disengage the bayonet, which facilitates the switching operation of the operating member between the operating state and the idle state.
[0061] Specifically, the buckle is provided as a rubber buckle.
[0062] In an alternative embodiment, the adjacent surface of the cleaning surface is further provided with a rubber wiper strip, which is detachably arranged on the adjacent surface of the cleaning surface.
[0063] Beneficial effects: The rubber wiper strip is arranged to facilitate the wiping of the glass window surface, thereby improving the cleaning effect. BRIEF DESCRIPTION OF DRAWINGS
[0064] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed in the specific embodiments or the prior art description will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0065] Figure 1 A structural schematic diagram of a glass cleaner provided by the present application is shown in the figure.
[0066] Figure 2 A structural schematic diagram of the cleaning head position in the glass cleaner provided by the present application is shown in the figure.
[0067] Figure 3 A sectional view of the cleaning head position in the glass cleaner provided by the present application is shown in the figure.
[0068] Figure 4 A structural schematic diagram of the cooperation of the water removing element, the pushing element, the operating element and the elastic element in the present application is shown in the figure. Figure 3 A partial enlarged schematic diagram of B in the figure is shown in the figure.
[0069] Figure 5 A structural schematic diagram of the cooperation of the water removing element, the pushing element, the operating element and the elastic element in the present application is shown in the figure.
[0070] Figure 6 A partial enlarged schematic diagram of C in the figure is shown in the figure. Figure 5
[0071] A partial enlarged schematic diagram of A in the figure is shown in the figure. Figure 7 Figure 2
[0072] Explanation of reference signs:
[0073] 1, cleaning head; 101, accommodating cavity; 102, limiting groove; 103, mounting hole;
[0074] 2, cleaning surface;
[0075] 3, water removing element; 301, cleaning part; 302, driven part; 3021, second wedge surface; 3022, second abutting surface; 3023, fourth abutting surface; 303, movable frame;
[0076] 4, pusher; 401, first wedge surface; 402, first abutting surface; 403, third abutting surface; 404, mounting groove; 405, extension rod; 4051, bayonet;
[0077] 5, operating member; 501, buckle;
[0078] 6, elastic member;
[0079] 7, rubber wiper strip;
[0080] 8, handgrip. DETAILED DESCRIPTION
[0081] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0082] The embodiments of the utility model will be described in combination with Figures 1-7 .
[0083] According to the embodiments of the utility model, a glass cleaner is provided, as shown in Figure 1 , Figure 2 , comprising: a cleaning head 1, a cleaning surface 2 and a cleaning part 301.
[0084] The cleaning head 1 is provided with a cleaning member, and the cleaning member is provided with the cleaning surface 2; the cleaning part 301 is movably arranged on the cleaning head 1 and has a first position lower than the cleaning surface 2 and a second position overlapped on the cleaning surface 2; the cleaning part 301 is moved from the first position to the second position under the action of external driving force, and continues to move along the cleaning surface 2 under the action of driving force, so as to clean the cleaning head 1.
[0085] In the above embodiments, the cleaning part 301 movably arranged on the cleaning head 1 is moved under the action of external driving force, and is moved from the first position lower than the cleaning surface 2 to the second position overlapped on the cleaning surface 2, and continues to move along the cleaning surface 2 under the action of external driving force to squeeze and wash the cleaning member of the cleaning head 1, so that the user can wash the cleaning surface 2 by using the cleaning part 301 without manually rubbing and washing the cleaning surface 2, which avoids the user from dirtying hands when cleaning the glass cleaner, and improves the washing efficiency of the glass cleaner.
[0086] Specifically, the cleaning head 1 of the glass cleaner is provided with a handgrip 8, and when the user uses the glass cleaner, the user holds the handgrip 8 to extend the cleaning head 1 to the glass, so that the cleaning surface 2 is attached to the glass surface to clean the glass. The cleaning part 301 is movably arranged on the cleaning head 1. When the cleaning part 301 is in the first position, the cleaning part 301 is located at a position lower than the cleaning surface 2 and on one side of the cleaning surface 2, so as to avoid the cleaning part 301 from colliding with the glass surface when the cleaning surface 2 is attached to the glass surface to clean the glass, and to ensure the smoothness of the cleaning head 1 when moving to clean the glass. When the cleaning part 301 is in the second position, the cleaning part 301 is located at a position higher than the cleaning surface 2, and can continue to move along the cleaning surface 2 under the action of the driving force, so as to produce a pressing effect on the cleaning surface 2 and squeeze out the sewage of the cleaning element during cleaning. The specific material of the cleaning element can be sponge, polyester, etc.
[0087] Further, the present embodiment does not limit the specific form of the external driving force for driving the cleaning part 301. As an embodiment, the user manually drives the cleaning part 301; as another embodiment, the cleaning part 301 is driven by a motor, a transmission structure, etc.
[0088] Further, the cleaning part 301 can be provided as a scraper, a roller, etc.
[0089] In some embodiments, as shown in Figure 3 The glass cleaner further includes a pushing element 4, which is in transmission connection with the cleaning part 301. The driving force acts on the pushing element 4, and the pushing element 4 is driven to push the cleaning part 301 to move from the first position to the second position and continue to move along the cleaning surface 2.
[0090] In the above embodiment, the pushing element 4 in transmission connection with the cleaning part 301 is provided, so as to drive the cleaning part 301 by the pushing element 4, so that the cleaning part 301 moves from the first position to the second position and continues to move along the cleaning surface 2, thereby performing the water squeezing and cleaning operation of the cleaning element on the cleaning head 1.
[0091] Specifically, when performing the water squeezing and cleaning operation of the cleaning element on the cleaning head 1, the user can manually apply force to the pushing element 4, so that the pushing element 4 drives the cleaning part 301 to move, thereby realizing the water squeezing and cleaning operation of the cleaning part 301 from the first position to the second position and continuing to move along the cleaning surface 2.
[0092] In some embodiments, as shown in Figure 3As shown, the glass cleaner is also provided with a driven part 302, the pushing piece 4 is in transmission connection with the driven part 302, and the driven part 302 is connected with the cleaning part 301; the pushing piece 4 drives the driven part 302 to move in the first direction, so as to drive the cleaning part 301 to move from the first position to the second position, and the pushing piece 4 continues to drive the driven part 302 to move in the second direction, so as to drive the cleaning part 301 to continue to move along the cleaning surface 2.
[0093] In the above embodiment, the driven part 302 connected with the cleaning part 301 is provided, and the pushing piece 4 is in transmission connection with the driven part 302, the user manually applies force to the pushing piece 4 to drive the driven part 302, so as to drive the cleaning part 301 to move from the first position to the second position and continue to move along the cleaning surface 2 through the driven part 302.
[0094] Specifically, the first direction is in the thickness direction of the cleaning piece, and the second direction is in the width direction of the cleaning piece; in Figure 2 、 Figure 3 the view angle of the pushing piece 4, the first direction is the vertical upward direction, and the second direction is the right direction. The pushing piece 4 drives the driven part 302 to move in the first direction, that is, the pushing piece 4 drives the driven part 302 to move upward and synchronously drives the cleaning part 301 to move upward, so that the driven part 302 drives the cleaning part 301 to move from the first position to the second position, and the pushing piece 4 continues to drive the driven part 302 to move in the second direction, that is, the pushing piece 4 drives the driven part 302 to move rightward and synchronously drives the cleaning part 301 to move rightward, so that the driven part 302 drives the cleaning part 301 to continue to move rightward along the cleaning surface 2.
[0095] In some embodiments, as Figure 3 、 Figure 4 shown, the pushing piece 4 is provided with a first wedge surface 401, and the driven part 302 is provided with a second wedge surface 3021 adapted to abut against the first wedge surface 401; the pushing piece 4 is driven to move, and the second wedge surface 3021 slides along the first wedge surface 401, so that the driven part 302 moves in the first direction.
[0096] In the above embodiment, the inclined surface sliding fit of the first wedge surface 401 on the pushing piece 4 and the second wedge surface 3021 on the driven part 302 is used to realize that the pushing piece 4 drives the driven part 302 to move in the first direction, and drives the cleaning part 301 to synchronously move in the first direction.
[0097] Specifically, the first wedge surface 401 is formed on the upper side surface of the pushing piece 4, and the second wedge surface 3021 is formed on the lower side surface of the driven part 302, and the first wedge surface 401 and the second wedge surface 3021 distributed along the upper and lower positions are arranged in abutment; in Figure 2 、 Figure 3From the perspective of the pusher 4, the pusher 4 is driven to move to the right. Under the sliding cooperation of the first wedge surface 401 and the second wedge surface 3021, the driven part 302 moves along the first direction, that is, moves upward.
[0098] In some embodiments, such as Figure 3 , Figure 4 As shown, the pushing member 4 is also provided with a first abutting surface 402, and the driven part 302 is provided with a second abutting surface 3022; when the pushing member 4 is driven and drives the driven part 302 to move along the first direction until the first abutting surface 402 abuts against the second abutting surface 3022, the pushing member 4 continues to be driven and applies force to the second abutting surface 3022 through the first abutting surface 402, so that the driven part 302 moves along the second direction.
[0099] In the above embodiment, by utilizing the direct contact between the first contact surface 402 on the pusher 4 and the second contact surface 3022 on the driven part 302, the pusher 4 drives the driven part 302 to move along the second direction, and drives the cleaning part 301 to move synchronously along the second direction.
[0100] Specifically, in Figure 2 , Figure 3 From the perspective of the pusher 4, as the pusher 4 is driven to move to the right, the first wedge surface 401 and the second wedge surface 3021 engage in inclined sliding cooperation. The driven part 302 continuously approaches the pusher 4 until the first abutting surface 402 and the second abutting surface 3022 come into contact. At this time, the force is continued to be applied so that the pusher 4 is driven to continue moving to the right, and the driven part 302 can move along the second direction, that is, move to the right.
[0101] In some embodiments, such as Figure 2 , Figure 3 , Figure 5 As shown, movable frames 303 are provided on both sides of the driven part 302. The movable frames 303 are connected to the cleaning part 301 to support the cleaning part 301. When the cleaning part 301 moves, the movable frames 303 move synchronously with the cleaning part 301.
[0102] In the above embodiment, the two sets of movable frames 303 on both sides of the driven part 302 and the cleaning part 301 form an integral structure so that the driven part 302, the movable frames 303 and the cleaning part 301 can move synchronously as a whole when the external force drives the pusher 4.
[0103] Specifically, the cleaning section 301, the driven section 302, and the movable frame 303 together constitute the water removal component 3. When the external force drives the pushing member 4, it causes the water removal component 3 to move in the first or second direction, thereby causing the cleaning section 301 to complete the corresponding position change.
[0104] In some embodiments, such as Figure 2 , Figure 3 ,Figure 5 As shown in the figure, the cleaning part 301 is rotationally connected with the movable frame 303, and when the cleaning part 301 is pressed onto the cleaning surface 2 and moves, the cleaning part 301 rotates relative to the movable frame 303 and / or the cleaning surface 2.
[0105] In the above embodiment, the cleaning part 301 is rotationally connected with the movable frame 303, so that when the cleaning part 301 is pressed onto the cleaning surface 2 and moves, the cleaning part 301 can rotate on the cleaning surface 2, improving the smoothness of the movement of the cleaning part 301, thereby improving the wringing cleaning efficiency of the cleaning object.
[0106] Specifically, when the cleaning part 301 is pressed onto the cleaning surface 2 and moves, the cleaning part 301 is rotationally arranged relative to one of the cleaning surface 2 and the movable frame 303 or rotationally arranged relative to both.
[0107] In some embodiments, as shown in the figure, Figure 2 , Figure 3 , Figure 5 The cleaning part 301 is arranged as a roller.
[0108] In the above embodiment, the cleaning part 301 is arranged as a roller to improve the smoothness of the movement of the cleaning part 301.
[0109] Specifically, the cleaning part 301 is arranged as a roller so that the cleaning part 301 can roll on the cleaning surface 2, thereby better performing rolling wringing cleaning.
[0110] In some embodiments, as shown in the figure, Figure 3 The glass wipe is also provided with a reset part, which is arranged in cooperation with the cleaning part 301; when the cleaning part 301 moves along the cleaning surface 2, the reset part stores force, and when the reset part releases force, it drives the cleaning part 301 to reset.
[0111] In the above embodiment, by arranging the reset part, the reciprocating movement of the cleaning part 301 on the cleaning surface 2 is realized, thereby improving the wringing cleaning efficiency of the cleaning object.
[0112] Specifically, the reset part can be arranged as a spring, an electric push-pull rod, etc.
[0113] In some embodiments, as shown in the figure, Figure 3 The glass wipe also includes a pushing part 4 and a driven part 302 in transmission connection with the pushing part 4, and the driven part 302 is connected with the cleaning part 301.
[0114] In the above embodiment, the user drives the driven part 302 and the cleaning part 301 to move synchronously by pushing the pushing part 4, so as to perform wringing cleaning on the cleaning object.
[0115] In some embodiments, as shown in the figure, Figure 3 , Figure 4, Figure 5 , Figure 6 As shown, the pusher 4 is provided with a third abutting surface 403, and the driven part 302 is provided with a fourth abutting surface 3023 suitable for cooperating with the third abutting surface 403; when the reset member releases force, the third abutting surface 403 abuts against the fourth abutting surface 3023 and drives the pusher 4 to reset, thereby causing the pusher 4 to push the driven part 302 so that the cleaning part 301 and the driven part 302 are reset.
[0116] In the above embodiment, by utilizing the direct contact between the third contact surface 403 on the pusher 4 and the fourth contact surface 3023 on the driven part 302, the pusher 4 drives the driven part 302 to move in the opposite direction of the second direction under the force relief action of the reset member, and drives the cleaning part 301 to move synchronously in the opposite direction of the second direction.
[0117] Specifically, the pusher 4 is provided with a vertical plate, the first abutting surface 402 and the third abutting surface 403 are respectively provided on both sides of the vertical plate, the driven part 302 is provided with a half-closed slot and two opposing protruding structures at the opening position, the fourth abutting surface 3023 is provided on the protruding structure, and the vertical plate passes through the slot so that the first abutting surface 402 and the second abutting surface 3022 are opposite to each other, and the third abutting surface 403 and the fourth abutting surface 3023 are opposite to each other.
[0118] In some embodiments, such as Figure 3 As shown, a receiving cavity 101 is formed inside the cleaning head 1, and the pushing member 4 and the driven part 302 are located in the receiving cavity 101; the resetting member is an elastic member 6 provided in the receiving cavity 101, one end of the elastic member 6 abuts against the pushing member 4, and the other end of the elastic member 6 abuts against the inner wall of the receiving cavity 101, and the elastic member 6 is adapted to drive the pushing member 4 to reset.
[0119] In the above embodiment, the receiving cavity 101 provides an installation position for the pusher 4 and the driven part 302, and provides an abutment position for the elastic member 6.
[0120] Specifically, the elastic element 6 is designed as a spring.
[0121] In some embodiments, such as Figure 3 As shown, a limiting groove 102 is provided in the receiving cavity 101, and the pushing member 4 and the elastic member 6 are provided in the limiting groove 102. The pushing member 4 is adapted to move along the length direction of the limiting groove 102.
[0122] In the above embodiment, the limiting groove 102 is used to limit the elastic member 6 to ensure the stability of the elastic member 6 during expansion and contraction, thereby ensuring the stability of the moving member 4.
[0123] Specifically, the limiting groove 102 is provided along the width direction of the cleaning head 1, and its internal space is sized to fully accommodate the elastic member 6 and ensure that the elastic member 6 can freely expand and contract.
[0124] In some embodiments, as shown in Figure 3 , Figure 4 , the pushing member 4 is provided with a mounting groove 404, and one end of the elastic member 6 is arranged in the mounting groove 404. When the elastic member 6 is charged, the elastic member 6 partially enters the mounting groove 404.
[0125] In the above embodiment, the mounting groove 404 is arranged on the pushing member 4 for mounting one end of the elastic member 6, which improves the mounting stability of the elastic member 6 and avoids disengagement of the elastic member 6 from the pushing member 4 during extension and contraction of the elastic member 6, thereby causing cooperation failure.
[0126] Specifically, the mounting groove 404 is slotted along the width direction of the cleaning head 1, and the internal space size is preferably suitable for embedding the end of the elastic member 6 in an interference fit.
[0127] In some embodiments, as shown in Figure 2 , Figure 3 , Figure 5 , the movable frame 303 connected with the cleaning part 301 is at least partially arranged in the accommodating cavity 101 and is provided with the driven part 302, and the part of the movable frame 303 exposed from the accommodating cavity 101 is connected with the cleaning part 301.
[0128] In the above embodiment, the driven part 302 is hidden in the accommodating cavity 101 of the cleaning head 1, and is connected with the cleaning part 301 only through the movable frame 303, thereby improving the aesthetic appearance of the glass wiper as a whole.
[0129] Specifically, the driven part 302 is connected with two groups of movable frames 303 on both sides, and the cleaning part 301 is rotationally connected through the two groups of movable frames 303.
[0130] In some embodiments, as shown in Figure 2 , the glass wiper further comprises an operating member 5, the operating member 5 is in transmission connection with the pushing member 4, and the operating member 5 has an operating state and an idle state; when the operating member 5 is in the operating state, it is suitable to be driven to push the pushing member 4; when the operating member 5 is in the idle state, it can be prevented from being mistakenly touched to prevent the pushing member 4 from being driven.
[0131] In the above embodiment, the operating member 5 in transmission connection with the pushing member 4 is arranged to facilitate the user to push the pushing member 4 through the operating member 5 to drive the driven part 302 to move.
[0132] Specifically, in the state shown in Figure 2 , at this time, the operating member 5 is in the idle state, and the user cannot push the pushing member 4 by applying force to the operating member 5; in this state, the operating member can be turned by 90° towards the direction close to the hand-held rod 8 to switch it to the operating state, at this time, the user can apply force to the operating member 5 to push the pushing member 4.
[0133] In some embodiments, as shown inFigure 2 As shown, when the operating member 5 is in the operating state, the operating member 5 is arranged in line with the pushing member 4 and is adapted to be driven to push the pushing member 4; when the operating member 5 is in the idle state, the operating member 5 is biased to the pushing member 4 to avoid being triggered by mistake to prevent the pushing member 4 from being driven.
[0134] In the above embodiment, the operating state and the idle state of the operating member 5 are switched by the in-line arrangement of the operating member 5 and the pushing member 4 and the biasing of the operating member 5 to the pushing member 4.
[0135] Specifically, the operating member 5 is turned by 90° to switch the operating state and the idle state of the operating member 5.
[0136] In some embodiments, as shown in Figure 2 , Figure 7 The cleaning head 1 is provided with a mounting hole 103, and the pushing member 4 includes an extension rod 405 that extends out of the mounting hole 103 to be in transmission connection with the operating member 5.
[0137] In the above embodiment, the mounting hole 103 is arranged on the cleaning head 1 to avoid the extension rod 405 of the pushing member 4 extending outwards, so as to facilitate the transmission connection of the operating member 5 with the operating member 5 by the extension rod 405.
[0138] Specifically, the specific connection mode of the transmission connection of the extension rod 405 with the operating member 5 can be hinged, buckled, etc.
[0139] In some embodiments, as shown in Figure 2 , Figure 7 The extension rod 405 is hinged with the operating member 5 and is adapted to rotate the operating member 5 relative to the extension rod 405 to switch the operating member 5 between the operating state and the idle state.
[0140] In the above embodiment, the hinging of the extension rod 405 with the operating member 5 realizes the transmission connection of the operating member 5 with the operating member 5, which is stable and efficient and facilitates the switching operation of the operating member 5 between the operating state and the idle state.
[0141] In some embodiments, as shown in Figure 7 The extension rod 405 is provided with a bayonet 4051, and the operating member 5 is provided with a buckle 501 adapted to cooperate with the bayonet 4051; when the operating member 5 is in the operating state, the buckle 501 is buckled to the bayonet 4051 to keep the operating member 5 in line with the extension rod 405; when the operating member 5 is in the idle state, the buckle 501 is disengaged from the bayonet 4051 to bias the operating member 5 to the side of the extension rod 405.
[0142] In the above embodiment, the bayonet 4051 and the buckle 501 are respectively arranged on the extension rod 405 and the operating member 5 to be in clamping cooperation, so as to maintain the stability of the operating member 5 in line with the extension rod 405.
[0143] Specifically, when the operating member 5 is in the operating state, the buckle 501 buckles with the socket 4051 so that the operating member 5 and the extension rod 405 are fixed in position, thereby keeping the operating member 5 in the collinear position with the extension rod 405; when the operating member 5 is in the idle state, the buckle 501 is detached from the socket 4051 so that the operating member 5 can rotate relative to the extension rod 405, thereby enabling the operating member 5 to be offset from the side of the extension rod 405.
[0144] In some embodiments, as shown in Figure 7 The buckle 501 is provided in an elastic structure.
[0145] In the above embodiments, the buckle 501 is provided in an elastic structure so as to facilitate the rapid deformation of the buckle 501 to buckle or detach from the socket 4051, thereby facilitating the conversion operation of the operating member 5 between the operating state and the idle state.
[0146] Specifically, the buckle 501 is provided in a rubber buckle.
[0147] In some embodiments, as shown in Figure 2 , Figure 3 The adjacent surface of the cleaning surface 2 is further provided with a rubber wiper 7, which is detachably arranged on the adjacent surface of the cleaning surface 2.
[0148] In the above embodiments, the rubber wiper 7 is provided to facilitate the wiping of the glass window surface, thereby improving the cleaning effect.
[0149] Specifically, the rubber wiper 7 is arranged on the cleaning head 1 and located on the adjacent surface of the cleaning surface 2. After the cleaning surface 2 on the cleaning member is used to clean the glass window, the position of the cleaning head 1 can be adjusted by rotating the handgrip 8 to wipe the glass window surface with the rubber wiper 7.
[0150] The specific way in which the glass wiper is used to squeeze water to clean the cleaning member is as follows:
[0151] The cleaning head 1 of the glass wiper is cleaned in the state shown in Figure 2 ;
[0152] When the cleaning member on the cleaning head 1 needs to be squeezed to clean, the operating member 5 is rotated by 90 degrees towards the handgrip 8, so that the operating member 5 is collinear with the extension rod 405 of the pushing member 4 and the buckle 501 and the socket 4051 are buckled and fixed;
[0153] The user drives the pusher 4 to move along the second direction by applying force to the operating member 5 along the second direction, and the driven part 302 moves along the first direction under the sliding cooperation of the inclined surfaces of the first wedge surface 401 and the second wedge surface 3021, so that the driven part 302 drives the cleaning part 301 to move along the first direction to a position capable of covering the cleaning surface 2 through the movable frame 303, and at the same time, the first abutting surface 402 abuts against the second abutting surface 3022;
[0154] The user continues to apply force to the operating member 5 along the second direction, and the driven part 302 moves along the second direction under the straight surface abutting cooperation of the first abutting surface 402 and the second abutting surface 3022, and the cleaning part 301 moves along the second direction synchronously through the movable frame 303, until the cleaning part 301 moves from one side to the other side in the width direction of the cleaning element, so as to perform water squeezing cleaning on the cleaning element of the cleaning head 1, and in the process, the elastic member 6 is compressed to store force;
[0155] The user does not apply force to the operating member 5, the elastic member 6 resets to release force to drive the pusher 4 to move along the reverse direction of the second direction, the driven part 302 moves along the reverse direction of the second direction under the straight surface abutting cooperation of the third abutting surface 403 and the fourth abutting surface 3023, and the cleaning part 301 moves along the reverse direction of the second direction synchronously through the movable frame 303, until the cleaning part 301 resets to one side in the width direction of the cleaning element, and the overall structure of the cleaning part 301, the movable frame 303 and the driven part 302 is free to fall, so that the first wedge surface 401 and the second wedge surface 3021 reset to the initial state;
[0156] The above-mentioned actions are repeated for several times to realize the reciprocating motion of the cleaning part 301 on the cleaning surface 2 for several times, until the cleaning element on the cleaning head 1 is completely cleaned by water squeezing.
[0157] Although the embodiments of the present application are described in conjunction with the drawings, various modifications and changes can be made by those skilled in the art without departing from the spirit and scope of the present application, and such modifications and changes fall within the scope defined by the present application.
Claims
1. A glass wipe, characterized in that, The glass cleaner comprises: a cleaning head (1) provided with a cleaning member, wherein a cleaning surface (2) is arranged on the cleaning member; a cleaning part (301) movably arranged on the cleaning head (1), wherein the cleaning part (301) has a first position lower than the cleaning surface (2) and a second position overlapped with the cleaning surface (2); the cleaning part (301) is moved from the first position to the second position under the action of an external driving force, and continues to move along the cleaning surface (2) under the action of the driving force, so as to clean the cleaning head (1).
2. The glass wipe of claim 1, wherein, The glass cleaner further comprises a pushing member (4) in transmission connection with the cleaning part (301); the driving force acts on the pushing member (4), and the pushing member (4) is driven to move the cleaning part (301) from the first position to the second position and continue to move along the cleaning surface (2).
3. The glass wipe of claim 2, wherein, The glass cleaner further comprises a driven part (302) in transmission connection with the pushing member (4) and connected with the cleaning part (301); the pushing member (4) is driven to move the driven part (302) in a first direction, so that the driven part (302) drives the cleaning part (301) to move from the first position to the second position, and the pushing member (4) is continuously driven to move the driven part (302) in a second direction, so that the driven part (302) drives the cleaning part (301) to continue to move along the cleaning surface (2).
4. The glass wipe of claim 3, wherein, The pushing member (4) is provided with a first wedge surface (401), and the driven part (302) is provided with a second wedge surface (3021) adapted to abut against the first wedge surface (401); the second wedge surface (3021) slides along the first wedge surface (401) when the pushing member (4) is driven to move, so that the driven part (302) moves in the first direction.
5. The glass wipe of claim 4, wherein, The pushing member (4) is further provided with a first abutment surface (402), and the driven part (302) is provided with a second abutment surface (3022); when the driven part (302) is driven to move in the first direction to the position where the first abutment surface (402) abuts against the second abutment surface (3022), the pushing member (4) continues to be driven to apply force to the second abutment surface (3022) through the first abutment surface (402), so that the driven part (302) moves in the second direction.
6. The glass wipe of claim 5, wherein, Both sides of the driven part (302) are provided with movable frames (303) connected with the cleaning part (301) to support the cleaning part (301), and the movable frames (303) move synchronously with the cleaning part (301) when the cleaning part (301) moves.
7. The glass wipe of claim 6, wherein, The cleaning part (301) is rotationally connected with the movable frames (303), and the cleaning part (301) rotates relative to the movable frames (303) and / or the cleaning surface (2) when the cleaning part (301) is overlapped with the cleaning surface (2) and moves.
8. The glass wipe of claim 7, wherein, The cleaning part (301) is arranged as a roller.
9. Glass wipe according to any one of claims 3-8, characterized in that, The glass wipe is also provided with a reset member, which is arranged in cooperation with the cleaning part (301); When the cleaning part (301) moves along the cleaning surface (2), the reset member is charged; when the reset member is discharged, the cleaning part (301) is reset.
10. The glass wipe of claim 9, wherein, The glass wipe also includes a pushing member (4) and a driven part (302) in transmission connection with the pushing member (4), and the driven part (302) is connected with the cleaning part (301).
11. The glass wipe of claim 10, wherein, The pushing member (4) is provided with a third abutting surface (403), and the driven part (302) is provided with a fourth abutting surface (3023) adapted to cooperate with the third abutting surface (403); When the reset member is discharged, the third abutting surface (403) abuts against the fourth abutting surface (3023) and resets the pushing member (4), so that the pushing member (4) pushes the driven part (302), so that the cleaning part (301) and the driven part (302) are reset.
12. The glass wipe of claim 9, wherein, The cleaning head (1) is formed with a containing cavity (101), and the pushing member (4) and the driven part (302) are located in the containing cavity (101); The reset member is an elastic member (6) arranged in the containing cavity (101), one end of the elastic member (6) abuts against the pushing member (4), the other end of the elastic member (6) abuts against the inner wall of the containing cavity (101), and the elastic member (6) is adapted to drive the pushing member (4) to reset.
13. The glass wipe of claim 12, wherein, The containing cavity (101) is provided with a limiting groove (102), and the pushing member (4) and the elastic member (6) are arranged in the limiting groove (102), and the pushing member (4) is adapted to move along the length direction of the limiting groove (102).
14. The glass wipe of claim 13, wherein, The pushing member (4) is provided with a mounting groove (404), and one end of the elastic member (6) is arranged in the mounting groove (404), and when the elastic member (6) is charged, the elastic member (6) partially enters the mounting groove (404).
15. The glass wipe of claim 12, wherein, The movable frame (303) connected with the cleaning part (301) is at least partially arranged in the containing cavity (101) and is provided with the driven part (302), and the part of the movable frame (303) exposed from the containing cavity (101) is connected with the cleaning part (301).
16. The glass wipe of any one of claims 2-8, 10-15, wherein, The glass wipe also includes an operating member (5), which is in transmission connection with the pushing member (4), and the operating member (5) has an operating state and an idle state; When the operating member (5) is in the operating state, it is adapted to be driven to push the pushing member (4); When the operating member (5) is in the idle state, it can be prevented from being mistakenly touched to prevent the pushing member (4) from being driven.
17. The glass wipe of claim 16, wherein, When the operating member (5) is in the operating state, the operating member (5) is arranged in line with the pushing member (4) and is adapted to be driven to push the pushing member (4); When the operating member (5) is in the idle state, the operating member (5) is offset from the pushing member (4) to avoid being mistakenly touched to prevent the pushing member (4) from being driven.
18. The glass wipe of claim 17, wherein, The cleaning head (1) is provided with a mounting hole (103), the pusher (4) comprises an extension rod (405) which extends out of the mounting hole (103) to be in transmission connection with the operating member (5).
19. The glass wipe of claim 18, wherein, The extension rod (405) is hinged with the operating member (5) and is adapted to rotate the operating member (5) relative to the extension rod (405) to switch the operating member (5) between the operating state and the idle state.
20. The glass wipe of claim 19, wherein, The extension rod (405) is provided with a bayonet (4051), and the operating member (5) is provided with a buckle (501) adapted to cooperate with the bayonet (4051). When the operating member (5) is in the operating state, the buckle (501) is buckled on the bayonet (4051) to keep the operating member (5) in the collinear position with the extension rod (405). When the operating member (5) is in the idle state, the buckle (501) is disengaged from the bayonet (4051) to bias the operating member (5) to the side of the extension rod (405).
21. The glass wipe of claim 20, wherein, The buckle (501) is provided in an elastic structure.
22. The glass wipe of any one of claims 1-8, 10-15, 17-21, wherein, The adjacent surface of the cleaning surface (2) is further provided with a rubber scraping strip (7) which is detachably arranged on the adjacent surface of the cleaning surface (2).