CN212729707U - Collodion mop - Google Patents

Collodion mop Download PDF

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Publication number
CN212729707U
CN212729707U CN202021254656.3U CN202021254656U CN212729707U CN 212729707 U CN212729707 U CN 212729707U CN 202021254656 U CN202021254656 U CN 202021254656U CN 212729707 U CN212729707 U CN 212729707U
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CN
China
Prior art keywords
mop
wringing
head
collodion
collodion mop
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Expired - Fee Related
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CN202021254656.3U
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Chinese (zh)
Inventor
吴建业
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Individual
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Individual
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Priority to CN202021254656.3U priority Critical patent/CN212729707U/en
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Publication of CN212729707U publication Critical patent/CN212729707U/en
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Abstract

The utility model provides a collodion mop, including collodion mop head, mop pole, connecting portion, sliding part and crowded water portion, the collodion mop head passes through connecting portion and is connected with the mop pole, the sliding part parcel is on the mop pole to can follow the mop pole and reciprocate, crowded water portion fixed connection is at the sliding part lower extreme, along with the sliding part removal to wringing out to the collodion mop head, connecting portion include connecting block, connecting plug, the inside locating piece that is equipped with of connecting plug, locating piece bottom and connecting block butt cooperation produce a frictional force, make the mop pole can stabilize on holding the angle to one side, the firm effect of connecting block and mop pole is better, has realized making the mop can hold to one side, use the more nimble convenient technological effect of angle.

Description

Collodion mop
Technical Field
The utility model relates to a domestic utensil field of cleaning especially relates to a collodion mop.
Background
The mop is a common cleaning tool in daily life, and the collodion mop is widely applied because of good water absorption.
Among the prior art, patent number 2019208639026's utility model discloses a "from crowded water glued membrane mop", slide from top to bottom and extrude the glued membrane mop head in order to realize crowded water through the length direction of crowded water installation along the glued membrane mop head, make crowded water operation comparatively convenient.
However, in the actual use process, the technology still has at least the following technical problems:
because the mop adopts the first pit, the second pit and the third pit matched with the positioning pins to realize prepressing positioning, the collodion mop head is in a water squeezing or cleaning state, the mop rod can only be vertical or parallel relative to the collodion mop head, the mop rod can not be stably kept at a position forming an oblique angle with the collodion mop head, in the actual life, the mop needs to be held obliquely to sweep the ground left and right, or one end of the mop head is used for cleaning corners, the structure is not convenient for holding obliquely, and the requirement can not be met.
SUMMERY OF THE UTILITY MODEL
To the above problem, the utility model provides a collodion mop, the firm effect of mop pole and connecting block is better, when clearance corner or other needs hold the mop pole to one side, can make the mop pole stabilize on holding the angle to one side, it can only be perpendicular or parallel to glue the cotton mop head relatively to have solved among the prior art mop pole, can not make the stable maintenance of mop pole form the position at oblique angle with the cotton mop head, be not convenient for hold the technical problem who uses to one side, realized making the mop can hold to one side, use angle is more nimble convenient technological effect.
In order to solve the problem, the utility model provides a collodion mop, including collodion mop head, mop pole, connecting portion, sliding part and crowded water portion, the collodion mop head passes through connecting portion and is connected with the mop pole, and further:
the connecting part comprises a connecting block, a connecting plug and a connecting shaft;
the bottom end of the connecting block is fixedly connected with the collodion mop head, a first through hole is formed in the center of the connecting block, a vertical plane is arranged on one side of the connecting block, the top end and the other side of the connecting block are of arc-shaped structures, and the vertical plane is perpendicular to the collodion mop head;
second through holes are symmetrically formed in two sides of the lower end of the connecting plug, and the upper end of the connecting plug is connected with the mop rod; a positioning block is arranged in the connecting plug, an arc-shaped recess is formed in the center of the bottom of the positioning block and matched with the arc-shaped structure of the connecting block, and the edge of the bottom of the positioning block is of a planar structure and matched with a vertical plane of the connecting block; a supporting spring is arranged at the upper end of the left side of the positioning block, and the other end of the supporting spring abuts against the inside of the connecting plug;
the connecting shaft connects the connecting plug and the connecting block through the second through hole and the first through hole.
Furthermore, the sliding part is wrapped on the mop rod and can move up and down along the mop rod.
Further, the sliding part comprises a sliding handle, a sliding shell and a mounting part;
the sliding handle and the sliding shell are of an integrated structure and are wrapped on the mop rod, and two guide rail grooves are formed in the inner side of the sliding shell; the installation department sets up in the slip shell lower extreme, installation department and crowded water portion fixed connection.
Furthermore, two pairs of guide rail salient points are symmetrically arranged at the lower end of the mop rod and are matched with the guide rail grooves, so that the sliding part moves up and down along the mop rod.
Furthermore, the water squeezing part is fixedly connected to the lower end of the sliding part, moves up and down along the mop rod along with the sliding part and is in contact with the collodion mop head for squeezing water.
Further, the water squeezing part comprises a water squeezing frame and a water squeezing rotary head;
the water squeezing frame is fixedly arranged at the lower end of the sliding part, a pair of assembling holes are symmetrically formed in two sides of the water squeezing frame, and a pair of limiting convex parts are symmetrically formed in two sides of the water squeezing frame;
the wringing swivel is provided with a mounting seat, a contact plate is arranged on the bottom edge of the mounting seat, the contact plate and the mounting seat are of an integrated structure, a first wringing rotating wheel and a second wringing rotating wheel are fixedly mounted on a shaft of the mounting seat, rotating shafts are fixedly mounted on two sides of the mounting seat, and the rotating shafts are matched with assembly holes to assemble the wringing swivel on a wringing frame.
Furthermore, the wringing rotating head can rotate on the wringing frame by taking the rotating shaft as a shaft; the limiting convex part is matched with the mounting seat to limit the rotating position of the wringing rotating head.
Furthermore, the rotating shaft extends inwards to the inner side of the wringing rotating head, the part of the rotating shaft on the inner side of the wringing rotating head is provided with a section, and the section of the rotating shaft faces the direction of the wringing rotating wheel;
the wringing frame is further provided with a limiting spring wire, one end of the limiting spring wire is embedded into the wringing frame, and the other end of the limiting spring wire is clamped at the section of the rotating shaft in a matching mode, so that the wringing rotating head cannot rotate randomly in a natural state.
The utility model has the advantages that:
1. the utility model discloses a collodion mop, connect the connecting portion of collodion mop head and mop pole, the structure of locating piece butt cooperation connecting block has been adopted, when the relative collodion mop head of mop pole becomes perpendicular or oblique angle, the arc at locating piece bottom center is sunken to produce a frictional force with the arc structure cooperation of connecting block, make the mop pole can stabilize on holding the angle to one side, the firm effect of connecting block and mop pole is better, realized making the mop can hold to one side, use angle more nimble convenient technological effect.
2. When needs are crowded water for the glued membrane mop head, with the mop pole to the vertical plane side direction of connecting block, the planar structure of locating piece bottom and the vertical plane butt of connecting block this moment realize locating the glued membrane mop head in mop pole parallel state, make crowded water simple operation.
3. Supporting spring sets up in locating piece left side upper end, makes vertical plane first section receive pressure bigger, further makes the location effect more stable.
4. At crowded water during operation, when the contact plate contacted the glued membrane mop head, crowded water is changeed the rotatory mount pad that supports to spacing convex part of thrust, because the rotation of crowded water change, when the glued membrane mop head was crowded water by pressure, one end has been pressed into first, the crowded water runner of second, has avoided the glued membrane mop head to receive the extrusion suddenly, has dragged and has leaded to the torn condition of glued membrane, has reduced the injury to the glued membrane, also has better crowded water effect simultaneously. And through the cooperation of the limiting spring wire and the rotating shaft, the water squeezing rotating head cannot rotate randomly in a natural state, so that the contact plate is convenient to contact with the collodion mop head during water squeezing.
Drawings
Fig. 1 is a front view of the present invention.
Fig. 2 is an exploded view of the front view structure of the present invention.
Fig. 3 is a schematic view of the wringing state of the present invention.
Fig. 4 is a structure view of the connection portion of the present invention.
Fig. 5 is an exploded side view of the present invention.
FIG. 6 is a view showing the structure of the water squeezing unit of the present invention.
Fig. 7 is a schematic view of the working state of the water squeezing part of the present invention.
Fig. 8 is an enlarged view of the wringing portion of the present invention.
Wherein: 1-collodion mop head, 2-mop rod, 3-connecting part, 4-sliding part, 5-water squeezing part, 21-guide rail convex point, 31-connecting block, 32-connecting plug, 33-connecting shaft, 312-first through hole, 312-vertical plane, 321-second through hole, 322-positioning block, 323-supporting spring, 41-sliding handle, 42-sliding shell, 43-mounting part, 421-guide rail groove, 51-water squeezing frame, 52-water squeezing rotating head, 511-mounting hole, 512-limiting convex part, 513-limiting spring wire, 521-mounting seat, 522-contact plate, 523-first water squeezing rotating wheel, 524-second water squeezing rotating wheel and 525-rotating shaft.
Detailed Description
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
In order to deepen the understanding of the present invention, the following drawings in the embodiments of the present invention will be combined to clearly and completely describe the technical solution in the embodiments of the present invention, and the present embodiment is only used for explaining the present invention, and does not constitute the limitation to the protection scope of the present invention.
According to the embodiments shown in fig. 1-8, the collodion mop comprises a collodion mop head 1, a mop rod 2, a connecting part 3, a sliding part 4 and a water squeezing part 5, wherein the collodion mop head 1 is connected with the mop rod 2 through the connecting part 3; the collodion mop head is of a trapezoidal structure with a wider bottom, and the structure is convenient for cleaning corners and gaps.
The connecting part 3 comprises a connecting block 31, a connecting plug 32 and a connecting shaft 33;
the bottom end of the connecting block 31 is fixedly connected with the collodion mop head 1, the center of the connecting block 31 is provided with a first through hole 311, one side of the connecting block 31 is provided with a vertical plane 312, the top end and the other side of the connecting block 31 are of an arc-shaped structure, and the vertical plane 312 is perpendicular to the collodion mop head 1;
the two sides of the lower end of the connecting plug 32 are symmetrically provided with second through holes 321, and the upper end of the connecting plug 32 is connected with the mop rod 2 in a matching way; a positioning block 322 is arranged in the connecting plug 32, an arc-shaped recess is formed in the center of the bottom of the positioning block 322 and matched with the arc-shaped structure of the connecting block 31, and the edge of the bottom of the positioning block 322 is of a planar structure and matched with the vertical plane of the connecting block 31; a supporting spring 323 is arranged at the upper end of the left side of the positioning block 322, and the other end of the supporting spring 323 abuts against the inside of the connecting plug 32; the structure enables the positioning block 322 to be in butt fit with the connecting block 31 under the action of the supporting spring 323;
when the mop is used, when the mop rod 2 is vertical or oblique relative to the collodion mop head 1, the arc-shaped recess at the center of the bottom of the positioning block 322 is matched with the arc-shaped structure of the connecting block 31 to generate a friction force, so that the mop rod 2 can be stabilized at an oblique holding angle, and the stabilizing effect of the connecting block and the mop rod is better; when the collodion mop head needs to be wrung, the mop rod 2 is rotated to one side direction of the vertical plane 312 of the connecting block 31, and at the moment, the plane structure at the bottom of the positioning block 322 is abutted against the vertical plane 312 of the connecting block 31, so that the collodion mop head 1 is positioned in a parallel state of the mop rod 2, and can enter the wringing part for wringing, and the wringing operation is more convenient;
supporting spring 323 sets up in locating piece 322 left side upper end simultaneously, when locating piece 322 and the vertical plane 312 butt of connecting block 31, makes the first half section of vertical plane 312 receive pressure bigger, makes the location effect more stable.
The connecting shaft 33 connects the connecting plug 32 with the connecting block 31 through the second through hole 321 and the first through hole 311, that is, the mop rod is connected with the collodion mop head.
The sliding part 4 is wrapped on the mop rod 2 and can move up and down along the mop rod 2.
The sliding part 4 comprises a sliding handle 41, a sliding shell 42 and a mounting part 43;
the sliding handle 41 and the sliding shell 42 are integrated and wrapped on the mop rod 2, and two guide rail grooves 421 are arranged on the inner side of the sliding shell 42; the mounting part 43 is arranged at the lower end of the sliding shell 42, and the mounting part 43 is fixedly connected with the wringing part 5; the sliding grip 41 is held by hand and pushed and pulled along the direction of the mop rod, so that the sliding shell 42 and the water squeezing part 5 fixedly connected with the mounting part 43 can be driven to slide up and down, and the collodion mop head is squeezed.
Two pairs of guide rail salient points 21 are symmetrically arranged at the lower end of the mop rod 2, and the guide rail salient points 21 are matched with the guide rail grooves 421, so that the sliding part 4 moves up and down along the mop rod 2. The distance between the position of the guide rail salient point and the connecting block is at least greater than 1/2 of the length of the collodion mop head, so that the collodion mop head can be erected to receive wringing when the guide rail salient point is matched at the lowest end of the guide rail groove, namely when the sliding part is positioned at the position which is farthest away from the collodion mop head relative to the mop rod.
The water squeezing part 5 is fixedly connected to the lower end of the sliding part 4, and the water squeezing part 5 moves up and down along the mop rod 2 along with the sliding part 4 and is in contact with the collodion mop head 1 for squeezing water.
The wringing portion 5 includes a wringing rack 51 and a wringing swivel 52.
The wringing frame 51 is fixedly installed at the lower end of the sliding part 4, a pair of assembly holes 511 are symmetrically formed in two sides of the wringing frame 51, and a pair of limiting convex parts 512 are symmetrically formed in two sides of the wringing frame 51.
The wringing rotary head 52 is provided with a mounting seat 521, a contact plate 522 is arranged at the bottom edge of the mounting seat 521, the contact plate 522 and the mounting seat 521 are of an integrated structure, a first wringing rotary wheel 523 and a second wringing rotary wheel 524 are fixedly mounted on the shaft of the mounting seat 521, rotating shafts 525 are fixedly mounted on two sides of the mounting seat 521, and the rotating shafts 525 are matched with the assembling holes 511 to assemble the wringing rotary head 52 on the wringing frame 51.
The side edge of the mounting seat is in a fan shape, the rotating shaft 523 is arranged at the center of a fan-shaped central angle, and the wringing rotating head 52 can rotate on the wringing frame 51 by taking the rotating shaft 525 as an axis; the limiting convex part 512 is matched with the mounting seat 521 to limit the rotating position of the wringing rotating head 52. The first wringing wheel 523 and the second wringing wheel 524 are mounted on the mounting seat 521 in a shaft-fixed manner, and can roll, and the first wringing wheel 523 and the second wringing wheel 524 are parallel to the contact plate 522 and perpendicular to the side of the mounting seat.
The rotating shaft 525 extends inwards to the inner side of the wringing rotating head 52, the part of the rotating shaft 525 at the inner side of the wringing rotating head 52 is provided with a section, the section is parallel to the rotating shaft, and the section of the rotating shaft 525 faces the direction of the wringing rotating wheel; the inner side of the wringing frame 51 is further provided with a limiting spring wire 513, one end of the limiting spring wire 513 is embedded into the wringing frame 51, the other end of the limiting spring wire 513 is clamped at the section of the rotating shaft 525 in a matching mode, the wringing rotating head 52 cannot rotate randomly in a natural state through matching of the limiting spring wire and the rotating shaft, and the contact plate 522 is in contact with a collodion mop head when wringing is facilitated.
When the contact plate 522 contacts the collodion mop head, the wringing rotating head 52 rotates to the limit convex part 512 to abut against the mounting seat 521 under the thrust force, and the sliding part continues to be pulled down, so that the first wringing rotating wheel 523 and the second wringing rotating wheel 524 squeeze the collodion mop head for wringing. Due to the rotation of the wringing rotating head 52, when the collodion mop head is squeezed under pressure, one end of the collodion mop head is pressed into the first wringing rotating wheel and the second wringing rotating wheel, so that the condition that the collodion mop head is torn due to sudden extrusion and pulling is avoided, the harm to the collodion is reduced, and meanwhile, a better wringing effect is achieved; and when the water squeezing part is pulled back towards the mop rod, the contact plate 522 can scrape the garbage adhered to the surface of the mop head on the surface of the collodion mop head, so that secondary cleaning is realized.
The beneficial effect of this embodiment lies in, when the mop uses, when mop pole 2 becomes perpendicular or oblique angle relative glued membrane mop head 1, the arc at locating piece 322 bottom center is sunken to produce a frictional force with the arc structure cooperation of connecting block 31, makes mop pole 2 can be stabilized on oblique holding angle, and the firm effect of connecting block and mop pole is better.
When the collodion mop head needs to be wrung, the mop rod 2 is rotated to one side direction of the vertical plane 312 of the connecting block 31, and at the moment, the plane structure at the bottom of the positioning block 322 is abutted against the vertical plane 312 of the connecting block 31, so that the collodion mop head 1 is positioned in a parallel state of the mop rod 2, and can enter the wringing part for wringing, and the wringing operation is more convenient; simultaneously, supporting spring 323 sets up in locating piece 322 left side upper end, when locating piece 322 and the vertical plane 312 butt of connecting block 31, makes the first half section of vertical plane 312 receive pressure bigger, makes the location effect more stable.
When the sliding part is pulled down, the squeezing part is driven by the sliding part, when the contact plate 522 contacts the collodion mop head, the squeezing rotor 52 is rotated to the limit convex part 512 by the thrust to abut against the mounting seat 521, and the sliding part is pulled down continuously, so that the first squeezing rotor 523 and the second squeezing rotor 524 squeeze the collodion mop head to squeeze water. Because the wringing rotating head 52 rotates, when the collodion mop head is squeezed by pressure, one end of the collodion mop head is pressed into the first wringing rotating wheel and the second wringing rotating wheel, the condition that the collodion mop head is suddenly squeezed and pulled to cause tearing of the collodion is avoided, the harm to the collodion is reduced, and meanwhile, a better wringing effect is achieved. And through the cooperation of the limiting spring wire and the rotating shaft, the water squeezing rotating head cannot rotate randomly in a natural state, so that the contact plate is convenient to contact with the collodion mop head during water squeezing. When the water squeezing part is pulled back towards the mop rod, the contact plate 522 can scrape the garbage adhered to the surface of the mop head on the surface of the collodion mop head, so that secondary cleaning is realized.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides a collodion mop, includes collodion mop head (1), mop pole (2), connecting portion (3), sliding part (4) and crowded water portion (5), collodion mop head (1) is connected its characterized in that through connecting portion (3) and mop pole (2):
the connecting part (3) comprises a connecting block (31), a connecting plug (32) and a connecting shaft (33);
the bottom end of the connecting block (31) is fixedly connected with the collodion mop head (1), a first through hole (311) is formed in the center of the connecting block (31), a vertical plane (312) is formed in one side of the connecting block (31), the top end and the other side of the connecting block (31) are of an arc-shaped structure, and the vertical plane (312) is perpendicular to the collodion mop head (1);
second through holes (321) are symmetrically formed in two sides of the lower end of the connecting plug (32), and the upper end of the connecting plug (32) is connected with the mop rod (2); a positioning block (322) is arranged in the connecting plug (32), an arc-shaped recess is formed in the center of the bottom of the positioning block (322) and matched with an arc-shaped structure of the connecting block (31), and the edge of the bottom of the positioning block (322) is of a planar structure and matched with a vertical plane of the connecting block (31); a supporting spring (323) is arranged at the upper end of the left side of the positioning block (322), and the other end of the supporting spring (323) abuts against the inside of the connecting plug (32);
the connecting shaft (33) connects the connecting plug (32) and the connecting block (31) through the second through hole (321) and the first through hole (311).
2. The collodion mop of claim 1, wherein: the sliding part (4) is wrapped on the mop rod (2) and can move up and down along the mop rod (2).
3. The collodion mop of claim 2, wherein: the sliding part (4) comprises a sliding handle (41), a sliding shell (42) and a mounting part (43);
the sliding handle (41) and the sliding shell (42) are of an integrated structure and are wrapped on the mop rod (2), and two guide rail grooves (421) are formed in the inner side of the sliding shell (42); installation department (43) set up in slip shell (42) lower extreme, installation department (43) and crowded water portion (5) fixed connection.
4. The collodion mop of claim 3, wherein: two pairs of guide rail salient points (21) are symmetrically arranged at the lower end of the mop rod (2), and the guide rail salient points (21) are matched with the guide rail grooves (421), so that the sliding part (4) moves up and down along the mop rod (2).
5. The collodion mop of claim 1, wherein: the water squeezing part (5) is fixedly connected to the lower end of the sliding part (4), and the water squeezing part (5) moves up and down along the mop rod (2) along with the sliding part (4) and is in contact with the collodion mop head (1) for squeezing water.
6. The collodion mop of claim 5, wherein: the water squeezing part (5) comprises a water squeezing frame (51) and a water squeezing rotary head (52);
the water squeezing frame (51) is fixedly arranged at the lower end of the sliding part (4), a pair of assembling holes (511) are symmetrically formed in the two sides of the water squeezing frame (51), and a pair of limiting convex parts (512) are symmetrically formed in the two sides of the water squeezing frame (51);
crowded water is turned round (52) and is equipped with mount pad (521), mount pad (521) base is equipped with contact plate (522), contact plate (522) and mount pad (521) structure as an organic whole, mount pad (521) axle fixed mounting has first crowded water runner (523), second crowded water runner (524), mount pad (521) both sides fixed mounting has pivot (525), pivot (525) and pilot hole (511) cooperation will be crowded water and turn round (52) and assemble on crowded water frame (51).
7. The collodion mop of claim 6, wherein: the wringing rotating head (52) can rotate on the wringing frame (51) by taking the rotating shaft (525) as a shaft; the limiting convex part (512) is matched with the mounting seat (521) to limit the rotating position of the wringing rotating head (52).
8. The collodion mop of claim 6, wherein: the rotating shaft (525) extends inwards to the inner side of the wringing rotating head (52), the part of the rotating shaft (525) on the inner side of the wringing rotating head (52) is provided with a section, and the section of the rotating shaft (525) faces the direction of the wringing rotating wheel;
the wringing frame (51) is further provided with a limiting spring wire (513), one end of the limiting spring wire (513) is embedded into the wringing frame (51), and the other end of the limiting spring wire is clamped at the section of the rotating shaft (525) in a matching mode, so that the wringing rotating head (52) cannot rotate randomly in a natural state.
CN202021254656.3U 2020-07-01 2020-07-01 Collodion mop Expired - Fee Related CN212729707U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021254656.3U CN212729707U (en) 2020-07-01 2020-07-01 Collodion mop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021254656.3U CN212729707U (en) 2020-07-01 2020-07-01 Collodion mop

Publications (1)

Publication Number Publication Date
CN212729707U true CN212729707U (en) 2021-03-19

Family

ID=75012057

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021254656.3U Expired - Fee Related CN212729707U (en) 2020-07-01 2020-07-01 Collodion mop

Country Status (1)

Country Link
CN (1) CN212729707U (en)

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Granted publication date: 20210319