Indoor floor cleaning tool
By incorporating a multi-point spray mechanism and an extended mop head into the steam mop, the problem of low mopping efficiency in existing steam mops has been solved, resulting in more efficient cleaning and lower labor intensity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WEIHAI JUNENG IND TECHNOLOGY CO LTD
- Filing Date
- 2025-04-30
- Publication Date
- 2026-04-10
AI Technical Summary
Existing steam mops have a narrow mop head due to their single nozzle structure, resulting in low mopping efficiency and a large amount of labor required during use.
A multi-point injection mechanism is set at the steam outlet of the steam generator's steam delivery channel. High-temperature steam is injected through multiple downward-sloping steam nozzles. Combined with an extended mop head and a ball-head hinge structure, a wide-head design is achieved, improving mopping efficiency and flexibility.
The multi-point spray mechanism and extended mop head design broaden the reach of steam, improve mopping efficiency, reduce labor, and enhance the flexibility of cleaning tools.
Smart Images

Figure CN224099287U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a cleaning tool, especially to an indoor floor cleaning tool. BACKGROUND
[0002] As one of common tools for indoor floor cleaning, the steam mop can generate high-temperature water vapor, which is sent to the nozzle of the mop by the steam generator to be sprayed out, so that the high-temperature steam can effectively penetrate into the stains and bacteria on the floor, soften stubborn dirt, and then, in the process of pushing the mop, the steam can take away the dirt to achieve the cleaning effect, and the high temperature can also kill most bacteria and viruses. Therefore, it is particularly suitable for families with regular deep cleaning needs. However, the common steam mop on the market is mostly provided with a single nozzle structure, and since the spraying point of the single nozzle structure is fixed and has a limited range, the mop head of the existing steam mop is relatively narrow, thereby having the problem of low floor mopping efficiency. SUMMARY
[0003] In order to solve the above technical problems, the utility model provides an indoor floor cleaning tool.
[0004] In order to solve the above technical problems, the utility model provides an indoor floor cleaning tool.
[0005] The front side of the shell is provided with a steam delivery channel, and the bottom end of the shell is hingedly connected with the elongated mop head.
[0006] The steam delivery channel is connected in communication with the output end of the steam generator, and the steam delivery channel is connected with a multi-point spraying mechanism at the steam outlet end, and the multi-point spraying mechanism comprises a plurality of downwardly inclined steam nozzles.
[0007] The plurality of steam nozzles are located at the same height and are linearly distributed above the elongated mop head.
[0008] As a preferred, the multi-point spraying mechanism further comprises a uniform steam pipe.
[0009] The steam delivery channel is connected in communication with the uniform steam pipe through a steam control valve.
[0010] The uniform steam pipe is a long pipe, and the two ends are sealed and plugged by plugs.
[0011] The plurality of steam nozzles are connected at the front side of the uniform steam pipe.
[0012] As a preferred, one steam nozzle is connected in communication with the uniform steam pipe through one hydraulic valve.
[0013] As preferably, the mounting plate back side of the lengthened mop head is fixed with a support, and a rollable boost roller is installed on the support, and the bottom end surface of the boost roller is flush with the bottom end surface of the lengthened mop head.
[0014] As preferably, a hinge head is fixed at the bottom end of the shell, and a hinge seat is fixed above the mounting plate of the lengthened mop head, and the hinge head and the hinge seat are hingedly connected.
[0015] As preferably, the hinge seat comprises a seat plate, support ears and a hinge ball head;
[0016] The seat plate is fixed on the mounting plate of the lengthened mop head, the support ears are symmetrically distributed on the seat plate, and the hinge ball head is rotatably installed between the support ears;
[0017] The bottom of the hinge head downwardly extends to form a hinge support arm, and the hinge support arm spans the hinge ball head and is rotatably connected with the hinge ball head.
[0018] As preferably, ball head rotating shafts are fixed on the left and right sides of the hinge ball head, and the ball head rotating shafts are clamped into ball head shaft holes opened on the support ears;
[0019] Support arm rotating shafts arranged on the inner side wall of the hinge support arm are clamped into support arm shaft holes opened on the front and rear sides of the hinge ball head.
[0020] The utility model discloses an indoor ground cleaning tool, and a multi-point injection mechanism is arranged at the steam outlet end of the steam delivery channel of the steam generator, the multi-point injection mechanism can widen the action width of the heating steam through the steam injection effect of the plurality of injection nozzles, and cooperates with the lengthened mop head, so that the indoor ground cleaning tool has a wide-head mop head, thereby helping to improve the floor mopping efficiency during use of the cleaning tool and reducing the labor amount. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the whole structure schematic diagram of the utility model.
[0022] Figure 2 It is the structure schematic diagram of the multi-point injection mechanism in the utility model. Figure 1
[0023] It is the structure schematic diagram of the nozzle unit in the utility model. Figure 3 Figure 2 It is the structure schematic diagram of the mop head in the utility model.
[0024] Figure 4 Figure 1 It is the hinge structure schematic diagram of the mop holder and the mop head in the utility model.
[0025] Figure 5 It is the hinge structure schematic diagram of the mop holder and the mop head in the utility model.
[0026] Figure 6 The utility model discloses a structure diagram of articulated ball head.
[0027] In the drawing: 1, mop frame; 2, water storage tank; 3, shell; 4, articulated head; 4a, articulated branch; 5, steam delivery channel; 6, multi-point injection mechanism; 61, steam uniform pipe; 62, plug; 63, hydraulic valve; 64, steam nozzle; 7, lengthened mop head; 8, articulated seat; 81, seat plate; 82, support ear; 83, articulated ball head; 831, ball head pivot; 832, branch shaft hole. DETAILED DESCRIPTION
[0028] The utility model will be further explained in detail in connection with the drawings and specific embodiment.
[0029] Example one
[0030] The embodiment discloses an indoor floor cleaning tool, specifically a steam mop, and the overall structure is as shown in the drawing, comprising a mop frame 1, a water storage tank 2 and a steam generator. Figure 1
[0031] The water storage tank 2 is installed on the mop frame 1 and is used for storing water. The water storage tank 2 is connected to the steam generator through a water pump. The water pump is used for pumping the water stored in the water storage tank 2 into the steam generator. The steam generator is provided with an electric heating element (such as a PTC heater). The steam generator converts water into hot steam through the electric heating element.
[0032] The steam generation principle of the steam mop described above is prior art. Since it is not the improvement point of the application, it will not be described here.
[0033] For the indoor floor cleaning tool of the embodiment, the steam generator is arranged in the shell 3 below the water tank 2. The steam delivery channel 5 is arranged on the front side of the shell 3. The steam delivery channel 5 is connected to the steam generator through a pipe body at the output end.
[0034] The steam delivery channel 5 is a large-diameter channel structure, which is connected to the multi-point injection mechanism 6 through a steam control valve 11.
[0035] The steam control valve 11 is used for adjusting the output amount of steam. A knob type steam control valve or a button type steam control valve can be used.
[0036] The multi-point injection mechanism 6 is arranged as shown in the drawing, comprising a steam uniform pipe 61 and a plurality of steam nozzles 64. Figure 2
[0037] The steam uniform pipe 61 is a long pipe, and the two ends are sealed and plugged by plugs 62. For the steam uniform pipe 61, on the one hand, it is communicated with the steam delivery channel 5 through the steam control valve 11, and on the other hand, it is used for the arrangement of the steam nozzle 64.
[0038] Firstly, the steam nozzle 64 is connected with the uniform steam pipe 61 through the hydraulic valve 63, and the high-temperature steam sent by the steam sending channel 5 enters the uniform steam pipe 61 through the steam control valve 11. Secondly, a plurality of steam nozzles 64 are arranged at intervals on the front side of the uniform steam pipe 61, and the plurality of steam nozzles 64 are located at the same height and are distributed in a straight line above the elongated mop head 7, so that the high-temperature steam entering the uniform steam pipe 61 is distributed to each steam nozzle 64 through the uniform pipe 61, and then is sprayed out through the steam nozzle 64.
[0039] As preferred, one steam nozzle 64 is equipped with one hydraulic valve 63, so that each steam nozzle 64 can be independently controlled to open and close through the corresponding hydraulic valve.
[0040] As preferred, in order to enable the high-temperature steam to be sprayed to the ground, as shown, the nozzle part of the steam nozzle 64 is inclined downward and has a flat structure feature, so as to facilitate the smooth spraying action of the steam. Figure 3
[0041] In addition, it should be noted that in order to enable the steam nozzle 64 to smoothly spray the required amount of steam for ground cleaning, the hydraulic valve 63 is closed at the initial heating, the steam control valve 11 monitors the amount of high-temperature steam entering the uniform steam pipe 61, and when the high-temperature steam in the uniform steam pipe 61 accumulates to a preset value, the steam control valve 11 transmits a signal to the control end (such as a programmable logic controller PLC), and then the control end controls the hydraulic valve 63 to open, and then as the steam sending channel 5 continuously sends high-temperature steam, the uniform steam pipe 61 can always contain sufficient amount of steam, and then meet the demand of the plurality of flat steam nozzles 64 to high-speed spray the high-temperature steam for mopping.
[0042] Therefore, for the indoor ground cleaning tool disclosed in the embodiment, the multi-point spraying mechanism 6 is provided, and through the positioning design of the plurality of steam nozzles, the plurality of steam nozzles 64 jointly spray the high-temperature steam in front of the mop head, and then the mop head is wiped forward. Since the area of the sprayed high-temperature steam is increased, the widened elongated mop head can be matched, so that the cleaning tool can clean a wider area in one dragging, and has the advantages of improving the cleaning efficiency and reducing the cleaning workload.
[0043] Embodiment two
[0044] The embodiment discloses an indoor ground cleaning tool, which is based on the structure disclosed in embodiment one, and the elongated mop head 7 is arranged by using a ball head type hinged structure, can be rotated and adjusted in four reverse directions of front, back, left and right, and effectively improves the use flexibility of the mop head.
[0045] As shown in Figure 1 and Figure 5 As shown, the elongated mop head 7 is hingedly connected to the bottom end of the housing 3; specifically, a hinge head 4 is fixedly arranged at the bottom end of the housing 3, and a hinge seat 8 is fixedly arranged above the mounting plate of the elongated mop head 7, the hinge head 4 is hingedly connected to the hinge seat 8, thereby realizing the hinged connection between the housing 3 and the elongated mop head 7.
[0046] As shown, Figure 5 For the convenience of description, the structure of the hinge seat 8 is divided into a seat plate 81, support ears 82 and a hinge ball head 83;
[0047] The seat plate 81 is fixedly arranged on the mounting plate of the elongated mop head 7, and can be fixedly assembled by screws or other structures (not shown in the figure), the support ears 82 are symmetrically distributed on the seat plate 81, and the hinge ball head 83 is rotatably mounted between the two support ears 82 based on the support of the two support ears 82;
[0048] At the same time, the bottom of the hinge head 4 below the housing 3 extends downward to form a hinge support arm 4a, and the hinge support arm 4a is rotatably connected to the hinge ball head 83 after crossing the hinge ball head 83. Thus, the adjustment between the overall part of the mop stand 1 and the elongated mop head 7 in the front-back and left-right directions can be realized.
[0049] For the hinge ball head 83, the structure for realizing the rotational connection with the support ears 82 and the hinge support arm 4a is specifically as follows: Figure 6 As shown, it is a schematic diagram of the structure of the hinge ball head 83, ball head shafts 831 are fixedly arranged on the left and right sides of the hinge ball head 83, and correspondingly, ball head shaft holes are formed in the inner side walls of the support ears 82, and the ball head shafts 831 are clamped into the ball head shaft holes formed in the support ears 82.
[0050] Similarly, arm shaft holes 832 are formed in the front and rear sides of the hinge ball head 83, and correspondingly, arm shafts are arranged on the inner side walls of the hinge support arm 4a, and the arm shafts arranged on the inner side walls of the hinge support arm 4a are clamped into the arm shaft holes 832.
[0051] Thus, through the rotatable connection of the hinge ball head 83 with the corresponding structures in the front-back and left-right directions, the indoor floor cleaning tool of the present embodiment can be adjusted in the front-back and left-right directions, greatly improving the flexibility of product use.
[0052] As a preferred, a support 10 is fixedly arranged on the back side of the mounting plate of the elongated mop head 7, and a rollable boost roller 9 is mounted on the support 10, and the bottom end surface of the boost roller 9 is flush with the bottom end surface of the elongated mop head 7. Due to the widening of the width of the elongated mop head 7, the arrangement of the boost roller 9 can assist the smooth advancement of the elongated mop head 7 during the mopping process.
[0053] Therefore, the indoor ground cleaning tool has a wide-head mop head, so as to help improve the floor mopping efficiency of the cleaning tool during use and reduce the labor amount. In addition, the lengthened mop head 7 is provided by using a ball head type hinged structure, which can realize multidirectional use adjustment, and effectively improve the flexibility of the indoor ground cleaning tool.
[0054] The above embodiment is not a limitation of the utility model, and the utility model is not limited to the above examples. Changes, modifications, additions or replacements made by the person skilled in the art within the technical scheme range of the utility model also belong to the protection range of the utility model.
Claims
1. A floor cleaning tool for indoor use, comprising a mop frame (1) on which a water storage tank (2) is mounted, the water storage tank (2) being connected with a steam generator through a water pump, characterized in that: The steam generator is located in the shell (3) below the water tank (2); The front side of the shell (3) is provided with a steam delivery channel (5), and the bottom end of the shell (3) is hingedly connected to an extended mop head (7); The steam delivery channel (5) is connected in communication with the output end of the steam generator, and the steam delivery channel (5) is connected with a multi-point injection mechanism (6), and the multi-point injection mechanism (6) comprises a plurality of downwardly inclined steam nozzles (64); A plurality of steam nozzles (64) are located at the same height and are linearly distributed above the extended mop head (7).
2. The indoor floor cleaning tool of claim 1, wherein: The multi-point injection mechanism (6) further comprises a steam uniformizing pipe (61); The steam delivery channel (5) is connected in communication with the steam uniformizing pipe (61) through a steam control valve (11); The steam uniformizing pipe (61) is a long pipe, and both ends are sealed by plugs (62). A plurality of steam nozzles (64) are connected to the front side of the steam uniformizing pipe (61).
3. The indoor floor cleaning tool of claim 2, wherein: One steam nozzle (64) is connected in communication with the steam uniformizing pipe (61) through a hydraulic valve (63).
4. The indoor floor cleaning tool according to claim 1 or 3, characterized in that: The mounting plate of the extended mop head (7) is fixed with a support (10) on the back side, and a rollable boost roller (9) is installed on the support (10), and the bottom end surface of the boost roller (9) is flush with the bottom end surface of the extended mop head (7).
5. The indoor floor cleaning tool of claim 4, wherein: The bottom end of the shell (3) is fixed with a hinged head (4), and the mounting plate of the extended mop head (7) is fixedly provided with a hinged seat (8) above, and the hinged head (4) and the hinged seat (8) are hingedly connected.
6. The indoor floor cleaning tool of claim 5, wherein: The hinged seat (8) comprises a seat plate (81), a supporting ear (82) and a hinged ball head (83); The seat plate (81) is fixed on the mounting plate of the extended mop head (7), the supporting ears (82) are symmetrically distributed on the seat plate (81), and the hinged ball head (83) is rotatably installed between the supporting ears (82); The bottom of the hinged head (4) extends downward to form a hinged arm (4a), and the hinged arm (4a) spans the hinged ball head (83) and is rotatably connected with the hinged ball head (83).
7. The indoor floor cleaning tool of claim 6, wherein: Ball head shafts (831) are fixed on the left and right sides of the hinged ball head (83), and the ball head shafts (831) are clamped into the ball head shaft holes formed on the supporting ears (82); Hinged arm shaft holes (832) are formed on the front and rear sides of the hinged ball head (83), and arm shafts arranged on the inner side wall of the hinged arm (4a) are clamped into the hinged arm shaft holes (832).