Handle water spraying structure

By installing a water-sealing device in the water spray structure of the fabric cleaning machine's handle, and utilizing the cooperation of the water-sealing shaft and the return spring, the water spray path can be controlled, solving the problem of water leakage due to electric control failure, and achieving low-cost and high-efficiency water spray control.

CN223453189UActive Publication Date: 2025-10-21GUANGDONG DONLIM INTELLIGENT ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202422985080.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-10-21
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

Existing fabric cleaning machines are prone to problems such as malfunctioning electronic boards and solenoid valves leading to water leakage due to the handle spray mechanism, and electric control is also costly.

Method used

A water sealing device is installed in the second inner cavity of the sleeve. The water sealing device slides in the second inner cavity to connect or disconnect the second water inlet and the second water outlet. The water spray path is opened or closed by the cooperation of the water sealing shaft, the return spring and the control components.

Benefits of technology

It has a simple structure, low cost, avoids the problem of water leakage caused by the failure of electronic board and solenoid valve, is easy to operate, and has a good sealing effect.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223453189U_ABST
    Figure CN223453189U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of fabric cleaning machines, in particular to a handle water spraying structure which comprises a handle, and a first inner cavity is formed in the handle. A first water inlet and a first water outlet are formed in the nozzle, and the first water inlet is formed in the first inner cavity; the sleeve is installed in the first inner cavity, a second water inlet and a second water outlet are formed in the sleeve, a second inner cavity is formed in the sleeve, the second inner cavity is communicated with the second water inlet and the second water outlet, the second water inlet is connected with a clear water pipe, and the second water outlet is connected to the first water inlet; and the water sealing device is installed in the second inner cavity in a sliding mode, and the water sealing device is used for controlling the second water inlet and the second water outlet to be communicated or not communicated. The water sealing device is arranged in the second inner cavity of the sleeve, the second water inlet and the second water outlet are controlled to be communicated or not communicated through sliding of the water sealing device in the second inner cavity, then the water spraying waterway is opened or closed, the structure is simple, and cost is low.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a cloth cleaning machine technical field, concretely relates to a handle water spraying structure. BACKGROUND

[0002] At present, the handle water spraying structure for cloth cleaning machine on market, its water spraying control usually is electric control, such as the utility model patent no. CN218870153U discloses a cloth cleaning machine, and its water spraying mechanism includes water tank, water outlet channel, water spraying port, water pump and solenoid valve, the solenoid valve is located in the water outlet channel, when working, the water in the water tank is pumped out to the water outlet channel by the water pump, and then the solenoid valve is controlled to open by the button on the control handle and the electronic control board, so that the water outlet channel and the water spraying port are communicated, and water can be sprayed out through the water outlet channel and the water spraying port. This control mode can easily cause the electronic board to fail or the solenoid valve to leak, and the structure cost is higher by using electric control.

[0003] Therefore, the prior art still needs to be improved and developed. UTILITY MODEL CONTENT

[0004] In order to solve the problems of the prior art, the utility model provides a handle water spraying structure, which sets a water sealing device in the second inner cavity of the sleeve, uses the water sealing device to slide in the second inner cavity to control the communication or non-communication of the second water inlet and the second water outlet, and then realizes the opening or closing of the water path. The structure is simple, and the cost is low.

[0005] In order to achieve the above purpose, the technical scheme applied by the utility model is as follows:

[0006] A handle water spraying structure, comprising a handle, a first inner cavity is formed in the handle; a nozzle, a first water inlet and a first water outlet are arranged on the nozzle, and the first water inlet is installed in the first inner cavity; a sleeve, the sleeve is installed in the first inner cavity, and a second water inlet and a second water outlet are arranged on the sleeve; a second inner cavity is formed in the sleeve, the second water inlet and the second water outlet are communicated, a clean water pipe is connected to the second water inlet, and the second water outlet is connected to the first water inlet; a water sealing device, the water sealing device is slidably installed in the second inner cavity, and the water sealing device is used to control the communication or non-communication of the second water inlet and the second water outlet. In this way, the water spraying path is sequentially connected by the clean water pipe, the second water inlet, the second inner cavity, the second water outlet, the first water inlet and the first water outlet. The water sealing device is arranged in the second inner cavity of the sleeve, and the water sealing device is used to slide in the second inner cavity to control the communication or non-communication of the second water inlet and the second water outlet, so as to realize the opening or closing of the water spraying path. The structure is simple, and the cost is low.

[0007] According to the scheme, the water sealing device comprises a water sealing shaft, a reset spring, a spring buckle and a control assembly, the spring buckle is in clamping connection with the opening of the second inner cavity, the water sealing shaft is slidingly arranged in the second inner cavity, the first end of the water sealing shaft is formed with a water sealing part, the water sealing part corresponds to the second water inlet and the second water outlet for sealing, the second end of the water sealing shaft passes through the spring buckle and is correspondingly connected with the control assembly, the control assembly is used for driving the water sealing shaft to drive the water sealing part to open the second water inlet and the second water outlet, so that the second water inlet and the second water outlet are communicated, the reset spring is sleeved on the water sealing shaft between the water sealing part and the spring buckle, and the two ends of the reset spring are respectively abutted against the water sealing part and the spring buckle. In this way, in the initial state, the water sealing part corresponds to the second water inlet and the second water outlet for sealing under the elastic force of the reset spring, so that the second water inlet and the second water outlet are not communicated, when it is needed to control the second water inlet and the second water outlet to be communicated, the control assembly is used to drive the water sealing shaft to drive the water sealing part to slide backward in the second inner cavity, so that the water sealing part is separated from the second water inlet and the second water outlet, and then the second water inlet and the second water outlet are communicated.

[0008] According to the scheme, the water sealing device comprises a water sealing shaft, a reset spring, a spring buckle and a control assembly, the spring buckle is in clamping connection with the opening of the second inner cavity, the water sealing shaft is slidingly arranged in the second inner cavity, the first end of the water sealing shaft is formed with a water sealing part, the water sealing part corresponds to the second water inlet for sealing, the second end of the water sealing shaft passes through the spring buckle and is correspondingly connected with the control assembly, the control assembly is used for driving the water sealing shaft to drive the water sealing part to open the second water inlet, so that the second water inlet and the second water outlet are communicated, the reset spring is sleeved on the water sealing shaft between the water sealing part and the spring buckle, and the two ends of the reset spring are respectively abutted against the water sealing part and the spring buckle.

[0009] According to the scheme, the water sealing device comprises a water sealing shaft, a reset spring, a spring buckle and a control assembly, the spring buckle is in clamping connection with the opening of the second inner cavity, the water sealing shaft is slidingly arranged in the second inner cavity, the first end of the water sealing shaft is formed with a water sealing part, the water sealing part corresponds to the second water outlet for sealing, the second end of the water sealing shaft passes through the spring buckle and is correspondingly connected with the control assembly, the control assembly is used for driving the water sealing shaft to drive the water sealing part to open the second water outlet, so that the second water inlet and the second water outlet are communicated, the reset spring is sleeved on the water sealing shaft between the water sealing part and the spring buckle, and the two ends of the reset spring are respectively abutted against the water sealing part and the spring buckle.

[0010] According to the scheme, the control assembly comprises a guide shaft and a handle, the second end of the water sealing shaft is fixedly connected with the guide shaft, the handle is hingedly connected with the handle, an inclined guide groove is formed on the handle, and the guide groove is slidably arranged with the guide shaft; when the water sealing part corresponds to the second water inlet and the second water outlet, the guide shaft is located in the upper part of the guide groove, when the handle is pressed close to the handle, the inclined surface of the guide groove drives the guide shaft to drive the water sealing shaft to slide in the second inner cavity, and when the guide shaft is located in the lower part of the guide groove, the water sealing part opens the second water inlet and the second water outlet. In this way, by pressing the handle, the guide shaft is driven to slide backward, the reset spring is compressed, the water sealing part is separated from the second water inlet and the second water outlet, and the second water inlet and the second water outlet are communicated, which is convenient to operate, and when the handle is released, the water sealing shaft is driven to slide forward under the rebounding force of the reset spring to reset, and corresponds to the second water inlet and the second water outlet.

[0011] According to the scheme, the water sealing part comprises a first water sealing part and a second water sealing part, the first water sealing part corresponds to the second water inlet, the second water sealing part corresponds to the second water outlet, the reset spring is sleeved on the water sealing shaft between the first water sealing part and the elastic buckle, and the two ends of the reset spring are respectively abutted against the first water sealing part and the elastic buckle. In this way, the first water sealing part and the second water sealing part are used to bidirectionally seal the second water inlet and the second water outlet respectively, the sealing effect is better, when the first water sealing part has poor sealing effect due to wear, the second water sealing part still seals the second water outlet, the second water inlet and the second water outlet are not communicated, or when the second water sealing part has poor sealing effect due to wear, the first water sealing part still seals the second water inlet, and the second water inlet and the second water outlet are not communicated.

[0012] According to the scheme, a second sealing element is sleeved on the outer wall of the first water sealing part, and the second sealing element is used to form a seal between the outer wall of the first water sealing part and the inner wall of the second inner cavity. In this way, the second sealing element is used to prevent water from leaking between the outer wall of the first water sealing part and the inner wall of the second inner cavity, so that water does not come into contact with the reset spring to cause corrosion.

[0013] According to the scheme, the second sealing element comprises a front sealing element and a rear sealing element, and the front sealing element and the rear sealing element are arranged in a spaced manner, and when the second water inlet is located between the front sealing element and the rear sealing element, the first water sealing part seals the second water inlet. In this way, the front sealing element and the rear sealing element are used to seal the second water inlet, and the sealing effect is better.

[0014] According to the scheme, the second water sealing part is coaxially arranged with the water sealing shaft and the second water outlet. In actual application, the diameter of the second water sealing part is greater than that of the second water outlet, and when the second water sealing part is abutted on the second water outlet by the water sealing shaft, the second water outlet can be completely covered and sealed. Preferably, the second water sealing part is an elastic sealing member, and when sealing, the second water sealing part is pressed on the second water outlet under the elastic force of the reset spring, and the sealing effect is better.

[0015] According to the scheme, the second water outlet is connected by being inserted into the first water inlet, and the first sealing member is arranged on the outer wall of the second water outlet. The first sealing member is used to form a seal between the outer wall of the second water outlet and the inner wall of the first water inlet. In this way, the connection between the second water outlet and the first water inlet is without interval, and the gap between the outer wall of the second water outlet and the inner wall of the first water inlet is eliminated by the first sealing member, so that the water guiding effect is better.

[0016] The utility model has the advantages of:

[0017] The utility model discloses the water sealing device is arranged in the second inner cavity of the sleeve, and the water sealing device is used to realize the communication or non-communication of the second water inlet and the second water outlet in the second inner cavity, and then the opening or closing of the water spraying channel is realized. The structure is simple, and the cost is low. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the overall structure of the utility model exploded view;

[0019] Figure 2 It is the overall structure of the utility model assembly schematic view;

[0020] Figure 3 It is the nozzle schematic view of the utility model;

[0021] Figure 4 It is the sleeve schematic view of the utility model;

[0022] Figure 5 It is the water sealing device exploded view of the utility model;

[0023] Figure 6 It is the second water inlet and the second water outlet sealing state schematic view of the utility model;

[0024] Figure 7 It is Figure 6 The enlarged view of position A;

[0025] Figure 8 It is the second water inlet and the second water outlet communication state schematic view of the utility model;

[0026] Figure 9 It is Figure 8 The enlarged view of position B.

[0027] In the picture:

[0028] 1. Handle; 101. First inner cavity; 3. Nozzle; 31. First water inlet; 32. First water outlet; 4. Sleeve; 41. Second water inlet; 42. Second water outlet; 43. Second inner cavity; 44. First sealing member; 45. Clamping hole; 5. Water-sealing shaft; 51. Water-sealing part; 511. First water-sealing part; 512. Second water-sealing part; 52. Second sealing member; 521. Front sealing member; 522. Rear sealing member; 53. Perforation; 6. Return spring; 7. Spring catch; 8. Guide shaft; 9. Handle; 91. Connecting shaft; 92. Guide groove; 10. Handle cover; 20. Clean water pipe. DETAILED DESCRIPTION

[0029] The technical solution of the present utility model is described below with reference to the accompanying drawings and embodiments.

[0030] Example 1:

[0031] like Figures 1 to 9 As shown, the utility model describes a handle water spraying structure, comprising a handle 1, wherein the handle 1 is formed with a first inner cavity 101; a nozzle 3, wherein the nozzle 3 is provided with a first water inlet 31 and a first water outlet 32, and the first water inlet 31 is installed in the first inner cavity 101; a sleeve 4, wherein the sleeve 4 is installed in the first inner cavity 101, and is provided with a second water inlet 41 and a second water outlet 42, and a second inner cavity 43 is formed in the sleeve 4, and the second inner cavity 43 is connected to the second water inlet 41 and the second water outlet 42, the second water inlet 41 is connected to the clean water pipe 20, and the second water outlet 42 is connected to the first water inlet 31; a water sealing device, wherein the water sealing device is slidably installed in the second inner cavity 43, and the water sealing device is used to control whether the second water inlet 41 and the second water outlet 42 are connected or not. In this arrangement, the water spraying circuit is composed of the clean water pipe 20, the second water inlet 41, the second inner cavity 43, the second water outlet 42, the first water inlet 31 and the first water outlet 32 ​​connected in sequence. By arranging a water sealing device in the second inner cavity 43 of the sleeve 4, the water sealing device is slid in the second inner cavity 43 to control the connection or disconnection between the second water inlet 41 and the second water outlet 42, thereby realizing the opening or closing of the water spraying circuit. The structure is simple and the cost is low.

[0032] Further, the water sealing device comprises a water sealing shaft 5, a reset spring 6, a snap buckle 7 and a control assembly. The snap buckle 7 is in clamping connection with the opening of the second inner cavity 43. The water sealing shaft 5 is slidingly arranged in the second inner cavity 43. The water sealing shaft 5 is provided with a water sealing portion 51 at the first end. The water sealing portion 51 is in corresponding sealing with the second water inlet 41 and the second water outlet 42. The second end of the water sealing shaft 5 penetrates through the snap buckle 7 and is in corresponding connection with the control assembly. The control assembly is used to drive the water sealing shaft 5 to drive the water sealing portion 51 to open the second water inlet 41 and the second water outlet 42, so that the second water inlet 41 and the second water outlet 42 are communicated. The reset spring 6 is sleeved on the water sealing shaft 5 between the water sealing portion 51 and the snap buckle 7. The two ends of the reset spring 6 are respectively in abutment with the water sealing portion 51 and the snap buckle 7. In this way, in the initial state, under the elastic force of the reset spring 6, the water sealing portion 51 is in corresponding sealing with the second water inlet 41 and the second water outlet 42, so that the second water inlet 41 and the second water outlet 42 are not communicated. When it is needed to control the second water inlet 41 and the second water outlet 42 to be communicated, the control assembly is used to drive the water sealing shaft 5 to drive the water sealing portion 51 to slide backward in the second inner cavity 43, so that the water sealing portion 51 is separated from the second water inlet 41 and the second water outlet 42, and then the second water inlet 41 and the second water outlet 42 are communicated through the gap formed between the second inner cavity 43 and the water sealing portion 51.

[0033] In actual application, the opening side wall of the second inner cavity 43 is provided with a clamping hole 45. The snap buckle 7 is in clamping connection with the clamping hole 45. The assembly is convenient, and the reset spring 6 is limited.

[0034] Further, the control assembly comprises a guide shaft 8 and a handle 9. The second end of the water sealing shaft 5 is fixedly connected with the guide shaft 8. The handle 9 is hingedly connected with the handle 1. The handle 9 is provided with an inclined guide groove 92. The guide shaft 8 is slidingly arranged in the guide groove 92. When the water sealing portion 51 is in corresponding sealing with the second water inlet 41 and the second water outlet 42, the guide shaft 8 is located at the upper part of the guide groove 92. When the handle 9 is pressed close to the handle 1, the inclined surface of the guide groove 92 drives the guide shaft 8 to drive the water sealing shaft 5 to slide in the second inner cavity 43. When the guide shaft 8 is located at the lower part of the guide groove 92, the water sealing portion 51 opens the second water inlet 41 and the second water outlet 42. In this way, the handle 9 is pressed to change the stroke position of the guide shaft 8 in the guide groove 92, so as to drive the guide shaft 8 to drive the water sealing shaft 5 to slide backward and compress the reset spring 6, so that the water sealing portion 51 is separated from the second water inlet 41 and the second water outlet 42, and then the second water inlet 41 and the second water outlet 42 are communicated. The operation is convenient. When the handle 9 is released, the water sealing shaft 5 is driven to slide forward under the rebound force of the reset spring 6 to reset, and the water sealing portion 51 is in corresponding sealing with the second water inlet 41 and the second water outlet 42.

[0035] It should be noted that the second water inlet 41 and the second water outlet 42 are communicated, the pressure of the water flow acts on the water sealing part 51, a rearward thrust is generated on the water sealing shaft 5, and the pressing handle 9 is more labor-saving, and the hand is not tired after long-term work. It can be understood that the elastic force of the reset spring 6 is greater than the pressure of the water flow, and the water sealing shaft 5 can be reset when the handle 9 is loosened.

[0036] In practical application, the second end of the water sealing shaft 5 is formed with a through hole 53, the guide shaft 8 is fixed in the through hole 53, the handle 9 is provided with a connecting shaft 91, and the connecting shaft 91 is hinged to the handle 1. In this way, the assembly is convenient. The sidewall of the handle 1 is formed with an opening, and the handle cover 10 is detachably installed on the opening. The handle cover 10 is provided with a hole position for the handle 9 to pass out. When the handle cover 10 is assembled on the opening, the sleeve 4 and the water sealing device are packaged in the first inner cavity 101. When the handle cover 10 is detached, the sleeve 4 and the water sealing device can be maintained or replaced, and the use is more convenient.

[0037] Further, the water sealing part 51 includes a first water sealing part 511 and a second water sealing part 512. The first water sealing part 511 corresponds to the second water inlet 41 and is blocked. The second water sealing part 512 corresponds to the second water outlet 42 and is blocked. The reset spring 6 is sleeved on the water sealing shaft 5 between the first water sealing part 511 and the elastic buckle 7, and the two ends of the reset spring 6 abut against the first water sealing part 511 and the elastic buckle 7, respectively. In this way, the second water inlet 41 and the second water outlet 42 are bidirectionally blocked by the first water sealing part 511 and the second water sealing part 512, respectively, and the blocking effect is better. When the first water sealing part 511 is worn and the blocking effect is not good, the second water sealing part 512 still maintains blocking with the second water outlet 42, so that the second water inlet 41 and the second water outlet 42 are not communicated. Or when the second water sealing part 512 is worn and the blocking effect is not good, the first water sealing part 511 still maintains blocking with the second water inlet 41, so that the second water inlet 41 and the second water outlet 42 are not communicated.

[0038] In practical application, the reset spring 6 is sleeved on the water sealing shaft 5 between the first water sealing part 511 and the elastic buckle 7, and the two ends of the reset spring 6 abut against the first water sealing part 511 and the elastic buckle 7, respectively. In this way, when the second water inlet 41 and the second water outlet 42 are in the open or closed state, they will not be in contact with the reset spring 6 to cause corrosion, and the working performance of the reset spring 6 will not be affected.

[0039] Further, the first water sealing part 511 is sleeved with a second sealing member 52 on the outer wall, and the second sealing member 52 is used to form a seal between the outer wall of the first water sealing part 511 and the inner wall of the second inner cavity 43. In this way, the second sealing member 52 is used to prevent water from leaking between the outer wall of the first water sealing part 511 and the inner wall of the second inner cavity 43, so that the water will not be in contact with the reset spring 6 to cause corrosion.

[0040] Further, the second sealing member 52 comprises a front sealing member 521 and a rear sealing member 522, which are arranged in a spaced manner, and the first water sealing part 511 is sealed with the second water inlet 41 when the second water inlet 41 is located between the front sealing member 521 and the rear sealing member 522. In this way, the second water inlet 41 is sealed by the cooperation of the front sealing member 521 and the rear sealing member 522, and the sealing effect is better.

[0041] Further, the second water sealing part 512 is coaxially arranged with the water sealing shaft 5 and the second water outlet 42. In actual application, the diameter of the second water sealing part 512 is greater than that of the second water outlet 42, and when the water sealing shaft 5 drives the second water sealing part 512 to abut against the second water outlet 42, the second water outlet 42 can be completely covered and sealed. Preferably, the second water sealing part 512 is an elastic sealing member, and when the second water sealing part 512 is sealed, it is pressed against the second water outlet 42 under the elastic force of the reset spring 6, and the sealing effect is better.

[0042] Further, the second water outlet 42 extends into the first water inlet 31 for cooperation and connection, and the first sealing member 44 is arranged on the outer wall of the second water outlet 42. The first sealing member 44 is used to form a seal between the outer wall of the second water outlet 42 and the inner wall of the first water inlet 31. In this way, the second water outlet 42 and the first water inlet 31 are connected without any gap, and the first sealing member 44 is used to prevent water leakage between the outer wall of the second water outlet 42 and the inner wall of the first water inlet 31, and the water guiding effect is better.

[0043] In actual application, the front end of the handle 1 is provided with a buckle for cooperation and assembly with the brush head, and the rear end of the handle 1 is provided with a joint for cooperation and connection with the dirt suction pipe. Since it is prior art, no specific description is given.

[0044] Embodiment Two:

[0045] In this embodiment two, the water sealing device comprises a water sealing shaft 5, a reset spring 6, a elastic buckle 7, and a control assembly. The elastic buckle 7 is in clamping connection with the opening of the second inner cavity 43, the water sealing shaft 5 is slidably arranged in the second inner cavity 43, the first end of the water sealing shaft 5 is formed with a water sealing part 51, the water sealing part 51 corresponds to the second water inlet 41 for sealing, the second end of the water sealing shaft 5 passes through the elastic buckle 7 and is correspondingly connected with the control assembly, the control assembly is used to drive the water sealing shaft 5 to drive the water sealing part 51 to open the second water inlet 41 and the second water outlet 42, so that the second water inlet 41 and the second water outlet 42 are communicated, and the reset spring 6 is arranged on the water sealing shaft 5 between the water sealing part 51 and the elastic buckle 7, and the two ends of the reset spring 6 abut against the water sealing part 51 and the elastic buckle 7, respectively.

[0046] The difference between the second embodiment and the first embodiment is that the water sealing part 51 in the first embodiment is correspondingly double-way sealed with the second water inlet 41 and the second water outlet 42 to realize the water path communication or non-communication, the water sealing part 51 in the second embodiment is correspondingly single-way sealed with the second water inlet 41 to realize the water path communication or non-communication, and the rest structure is the same as the first embodiment, which is not repeated here.

[0047] Embodiment three:

[0048] In the third embodiment, the water sealing device comprises a water sealing shaft 5, a reset spring 6, a elastic buckle 7 and a control assembly, the elastic buckle 7 is connected with the opening of the second inner cavity 43, the water sealing shaft 5 is slidably arranged in the second inner cavity 43, the water sealing shaft 5 is formed with a water sealing part 51 at the first end, the water sealing part 51 is correspondingly sealed with the second water outlet 42, the second end of the water sealing shaft 5 passes through the elastic buckle 7 and is correspondingly connected with the control assembly, the control assembly is used for driving the water sealing shaft 5 to drive the water sealing part 51 to open the second water inlet 41 and the second water outlet 42, so that the second water inlet 41 and the second water outlet 42 are communicated, the reset spring 6 is sleeved on the water sealing shaft 5 between the water sealing part 51 and the elastic buckle 7, and the two ends of the reset spring 6 are respectively abutted against the water sealing part 51 and the elastic buckle 7.

[0049] The difference between the third embodiment and the first embodiment is that the water sealing part 51 in the first embodiment is correspondingly double-way sealed with the second water inlet 41 and the second water outlet 42 to realize the water path communication or non-communication, the water sealing part 51 in the third embodiment is correspondingly single-way sealed with the second water outlet 42 to realize the water path communication or non-communication, and the rest structure is the same as the first embodiment, which is not repeated here.

[0050] The embodiments of the utility model are described above in combination with the drawings, but the utility model is not limited to the above-mentioned specific embodiments, the above-mentioned specific embodiments are only illustrative but not restrictive, and the person skilled in the art can make many forms under the inspiration of the utility model without departing from the purpose of the utility model and the scope protected by the claims, which all belong to the protection scope of the utility model.

Claims

1. A handle water jet structure, characterized by, The utility model relates to a water sealing device of a faucet, which comprises a handle (1) with a first inner cavity (101) formed therein, a nozzle (3) with a first water inlet (31) and a first water outlet (32), the first water inlet (31) being installed in the first inner cavity (101), a sleeve (4) with a second water inlet (41) and a second water outlet (42) and a second inner cavity (43) formed in the sleeve (4), the second inner cavity (43) being connected with the second water inlet (41) and the second water outlet (42), the second water outlet (42) being connected with the first water inlet (31), and a water sealing device which is slidably installed in the second inner cavity (43) and is used for controlling the connection or disconnection of the second water inlet (41) and the second water outlet (42). The water sealing device comprises a water sealing shaft (5), a reset spring (6), a spring buckle (7) and a control assembly, the spring buckle (7) is connected with the opening of the second inner cavity (43) by clamping, the water sealing shaft (5) is slidably located in the second inner cavity (43), the first end of the water sealing shaft (5) is formed with a water sealing part (51), the water sealing part (51) is correspondingly sealed with the second water inlet (41) and the second water outlet (42), the second end of the water sealing shaft (5) is correspondingly connected with the control assembly through the spring buckle (7), the control assembly is used for driving the water sealing shaft (5) to open the second water inlet (41) and the second water outlet (42) with the water sealing part (51), so that the second water inlet (41) and the second water outlet (42) are connected, the reset spring (6) is sleeved on the water sealing shaft (5) between the water sealing part (51) and the spring buckle (7), and the two ends of the reset spring (6) are respectively abutted against the water sealing part (51) and the spring buckle (7). The water sealing device comprises a water sealing shaft (5), a reset spring (6), a spring buckle (7) and a control assembly, the spring buckle (7) is connected with the opening of the second inner cavity (43) by clamping, the water sealing shaft (5) is slidably located in the second inner cavity (43), the first end of the water sealing shaft (5) is formed with a water sealing part (51), the water sealing part (51) is correspondingly sealed with the second water inlet (41) and the second water outlet (42), the second end of the water sealing shaft (5) is correspondingly connected with the control assembly through the spring buckle (7), the control assembly is used for driving the water sealing shaft (5) to open the second water inlet (41) with the water sealing part (51), so that the second water inlet (41) and the second water outlet (42) are connected, the reset spring (6) is sleeved on the water sealing shaft (5) between the water sealing part (51) and the spring buckle (7), and the two ends of the reset spring (6) are respectively abutted against the water sealing part (51) and the spring buckle (7). ​ ​ 2. A handle water jet structure according to claim 1, characterized in that: ​ 3. The handle water jet structure according to claim 1, wherein: ​ 4. The handle water jet structure according to claim 1, wherein: The water sealing device comprises a water sealing shaft (5), a reset spring (6), a elastic buckle (7) and a control assembly, the elastic buckle (7) is in clamping connection with the opening of the second inner cavity (43), the water sealing shaft (5) is slidably arranged in the second inner cavity (43), the first end of the water sealing shaft (5) is formed with a water sealing part (51), the water sealing part (51) corresponds to the second water outlet (42) for sealing, the second end of the water sealing shaft (5) penetrates through the elastic buckle (7) and is correspondingly connected with the control assembly, the control assembly is used for driving the water sealing shaft (5) to drive the water sealing part (51) to open the second water outlet (42), so that the second water inlet (41) and the second water outlet (42) are communicated, the reset spring (6) is sleeved on the water sealing shaft (5) between the water sealing part (51) and the elastic buckle (7), and the two ends of the reset spring (6) are respectively abutted against the water sealing part (51) and the elastic buckle (7).

5. The handle water jet structure according to claim 2, wherein: The control assembly comprises a guide shaft (8) and a handle (9), the second end of the water sealing shaft (5) is fixedly connected with the guide shaft (8), the handle (9) is hingedly connected with the handle (1), the handle (9) is formed with an inclined guide groove (92), and the guide shaft (8) is slidably arranged in the guide groove (92); when the water sealing part (51) corresponds to the second water inlet (41) and the second water outlet (42) for sealing, the guide shaft (8) is located at the upper part in the guide groove (92), when the handle (9) is pressed close to the handle (1), the inclined surface of the guide groove (92) drives the guide shaft (8) to drive the water sealing shaft (5) to slide in the second inner cavity (43), and when the guide shaft (8) is located at the lower part in the guide groove (92), the water sealing part (51) opens the second water inlet (41) and the second water outlet (42).

6. A handle water jet structure according to claim 2, characterized in that: The water sealing part (51) comprises a first water sealing part (511) and a second water sealing part (512), the first water sealing part (511) corresponds to the second water inlet (41) for sealing, the second water sealing part (512) corresponds to the second water outlet (42) for sealing, the reset spring (6) is sleeved on the water sealing shaft (5) between the first water sealing part (511) and the elastic buckle (7), and the two ends of the reset spring (6) are respectively abutted against the first water sealing part (511) and the elastic buckle (7).

7. A handle water jet structure according to claim 6, characterized in that: A second sealing element (52) is sleeved on the outer wall of the first water sealing part (511), and the second sealing element (52) is used for forming a seal between the outer wall of the first water sealing part (511) and the inner wall of the second inner cavity (43).

8. A handle water jet structure according to claim 7, characterized in that: The second sealing element (52) comprises a front sealing element (521) and a rear sealing element (522), the front sealing element (521) and the rear sealing element (522) are arranged at intervals, and when the second water inlet (41) is located between the front sealing element (521) and the rear sealing element (522), the first water sealing part (511) and the second water inlet (41) form sealing.

9. The handle water jet structure according to claim 6, wherein: The second water sealing part (512) is coaxially arranged with the water sealing shaft (5) and the second water outlet (42).

10. The handle water jet structure according to claim 2, wherein: The second water outlet (42) is connected with the first water inlet (31) in a matching mode, and a first sealing member (44) is arranged on the outer wall of the second water outlet (42), so that the outer wall of the second water outlet (42) and the inner wall of the first water inlet (31) are sealed.

Citation Information

Patent Citations

  • Fabric cleaning machine

    CN218870153U