Hanging ironing brush and fabric cleaning machine

By designing a hanging brush for the indwelling box and suction pipe, the problem of condensate cannot be intercepted and suctioned is solved, the stability and uniformity of steam injection is achieved, and the ironing effect and convenience of use are improved.

CN120250316APending Publication Date: 2025-07-04NINGBO DWAFER ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202510662336.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

The existing ironing brushes cannot effectively intercept and suck back during use, resulting in poor ironing effect and unstable steam injection, which affects the quality and usage experience of fabrics.

Method used

A hanging iron brush is designed, including a retention box, a suction pipe and a condensate suction module. The retention box automatically intercepts the condensate and recycles the suction pipe to ensure the stability and uniformity of steam injection.

Benefits of technology

Active separation and recycling of condensate water is achieved, ensuring the sustainability and stability of steam injection, improving ironing quality and convenience of use, and avoiding wet spot residues and uneven steam injection problems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of fabric cleaning machines, in particular to a hanging ironing brush and a fabric cleaning machine, and the hanging ironing brush comprises a main machine which is provided with a first connector capable of conducting steam and condensate water; the input end of the transmission hose is detachably connected with the first joint; the holding module is detachably arranged at the output end of the conveying hose, and a first pipeline and a second pipeline which can conduct steam and condensate water respectively are arranged in the holding module; the brush head is detachably arranged at the connecting end of the holding module; the brush head is provided with an indwelling box capable of temporarily storing steam; the front end of the first pipeline and the front end of the second pipeline are both communicated with the indwelling box. When steam enters the indwelling box, the steam with higher specific gravity can be automatically deposited at the bottom of the indwelling box; the condensate water can be automatically intercepted, and the condensate water can be actively sucked back.
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Description

Technical Field

[0001] The present invention relates to the technical field of fabric cleaning machines, and specifically relates to a hanging ironing brush and a fabric cleaning machine. Background Art

[0002] As an important component of a fabric cleaning machine, a hanging ironing brush is widely used in the ironing and cleaning of clothes, curtains and other fabrics. Existing hanging ironing brushes usually soften fabric fibers by steam injection to achieve the purpose of removing wrinkles and sterilization. However, in the actual use process, the hanging ironing brush has problems that condensed water cannot be effectively intercepted and sucked back, resulting in the following technical defects:

[0003] 1. The overflow of condensed water affects the ironing effect: During the use of existing hanging ironing brushes, steam is transported from the main machine to the brush head through a pipeline. Due to the temperature change inside the pipeline or the low ambient temperature, part of the steam will cool to form condensed water and be discharged together with the steam injection, resulting in the residue of wet spots during the ironing process and affecting the ironing quality of fabrics.

[0004] 2. Unable to actively suck back condensed water: Traditional hanging ironing brushes usually rely on gravity or the user shaking the brush head to discharge condensed water, lacking an automatic suction system. This causes condensed water to accumulate around the steam nozzle during ironing, not only affecting the uniform output of steam, but also possibly dripping onto the fabric surface during use, causing secondary pollution or local over-wetting and reducing the ironing efficiency.

[0005] 3. Condensed water affects the stability of steam injection: Due to the accumulation of condensed water in the pipeline, it may cause the steam flow to be blocked, affecting the stability of steam injection, resulting in intermittent steam ejection or uneven injection during the ironing process, reducing the working efficiency of the device and the user experience. Summary of the Invention

[0006] In view of the above problems, a hanging ironing brush is provided. By proposing a device that can not only automatically intercept condensed water but also automatically suck back condensed water, the technology that existing hanging ironing machines are prone to cause the overflow of condensed water when ironing clothes, thereby affecting the ironing effect and the stability of steam injection, is solved.

[0007] To solve the problems of the existing technology, the present invention provides a hanging ironing brush, including: a main machine provided with a first joint capable of conducting steam and condensed water; a transmission hose, the input end of the transmission hose is detachably connected to the first joint; a holding module detachably arranged at the output end of the transmission hose, and a first pipe and a second pipe capable of conducting steam and condensed water respectively are arranged in the holding module; a brush head detachably arranged at the connecting end of the holding module; the brush head is provided with a retention box capable of temporarily storing steam; the front ends of the first pipe and the second pipe are both communicated with the retention box; when steam enters the retention box, the steam with a heavier specific gravity will spontaneously deposit at the bottom of the retention box.

[0008] Preferably, the holding module further includes a connecting handle, a quick-release joint capable of being connected to the transfer hose, and an opening / closing switch capable of controlling the opening and closing of the first pipe; the quick-release joint is coaxially and fixedly arranged at the connecting end of the connecting handle, and the connecting handle is detachably connected to the transfer hose through the quick-release joint; the first pipe and the second pipe are arranged in the connecting handle in parallel along the long side direction of the connecting handle; the opening / closing switch is embedded in the connecting handle and is arranged near the output end of the connecting handle.

[0009] Preferably, the holding module further includes a limiting part and a suction pipe capable of continuously sucking the condensed water at the bottom of the indwelling box; the suction pipe is arranged in the indwelling box, and the rear end of the suction pipe is communicated with the second pipe; the front end of the suction pipe is fixed to the bottom of the indwelling box through the limiting part.

[0010] Preferably, the brush head further includes a steam outlet module capable of discharging steam, the steam outlet module is embedded on the surface of the brush head and is arranged near the top of the brush head, and the input end of the steam outlet module is communicated with the top of the indwelling box.

[0011] Preferably, the steam outlet module includes a limiting panel, a plurality of groups of steam spray holes opened on the limiting panel, and air inlet pipes vertically arranged on the other side of the limiting panel corresponding to the plurality of groups of steam spray holes one by one; the plurality of groups of steam spray holes are opened on the limiting panel in parallel along the long side direction of the top of the brush head; the air inlet pipes are vertically arranged on the inner side of the limiting panel.

[0012] Preferably, the main body includes a base frame, a steam generating module capable of generating steam, and a condensed water suction module capable of automatically sucking back the condensed water.

[0013] Preferably, the steam generating module includes a water storage tank, a water pump, a fixing frame, a heater, and a discharge pump; the water storage tank is detachably arranged on the base frame and is arranged near the front end of the base frame; the water pump is arranged vertically on the middle part of the base frame through the fixing frame; the heater is fixedly arranged on the top of the fixing frame; the discharge pump is embedded at the bottom of the base frame and is communicated with the first joint.

[0014] Preferably, the condensate back-suction module includes a storage box, a suction pump, an inlet pipe and a suction pipe; the storage box is vertically fixed on the base frame, and the bottom of the storage box is also provided with a first through hole and a second through hole relatively penetrating therethrough; the inlet pipe is vertically fixed in the storage box and is connected to the first through hole, and the top of the inlet pipe is also provided with a first opening capable of introducing condensate into the inlet pipe; the suction pipe is vertically fixed in the storage box and is connected to the second through hole, and the top of the suction pipe is also provided with a second opening for air to enter; the suction pump is vertically fixed in the middle of the base frame, and the suction end of the suction pump is connected to the second through hole.

[0015] Preferably, the condensate re-suction module further includes a sealing unit capable of dynamically sealing the second opening of the suction pipe; the sealing unit is slidably disposed on one side of the suction pipe and close to the second opening.

[0016] Fabric washing machine, including hanging ironing brush.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. The present invention realizes active separation, recovery and discharge of condensed water through the cooperation of the retention box, suction pipe and condensed water reabsorption module. Compared with the traditional ironing brush, which has the problem of uneven ironing, residual wet spots or dripping water stains due to condensed water mixing into the steam flow, the present invention can automatically intercept and reabsorb condensed water, ensure the continuity and stability of steam injection, and improve the ironing quality and convenience of use.

[0019] 2. The invention uses multiple groups of air inlet pipes and steam spray holes to adjust the flow rate and balance the pressure of steam before it is discharged, thus avoiding the uneven distribution of steam or unstable spraying that affects the ironing effect of traditional ironing brushes. It ensures that the steam can be sprayed evenly and delicately onto the surface of the fabric, improves the wrinkle removal effect, and reduces steam energy loss.

[0020] 3. The present invention forms a continuous negative pressure through the suction pipe and the second pipe to ensure that the condensed water can be accurately recovered and stored, thereby avoiding the problem of steam pipe transportation being blocked or intermittent and unstable steam injection due to accumulation of condensed water. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a three-dimensional picture of a hanging ironing brush.

[0022] Figure 2 It is a side view of the hanging ironing brush.

[0023] Figure 3 yes Figure 2 Cross-sectional view at AA.

[0024] Figure 4Is the exploded three-dimensional view of the hanging ironing brush Figure 1 .

[0025] Figure 5 Is the three-dimensional view of the partial structure of the hanging ironing brush after removing the water storage tank.

[0026] Figure 6 Is the exploded three-dimensional view of the hanging ironing brush Figure 2 .

[0027] Figure 7 Is the side view of the brush head in the hanging ironing brush.

[0028] Figure 8 Is Figure 7 The sectional view taken along the line B-B of.

[0029] Figure 9 Is the side view of the hanging ironing brush.

[0030] Figure 10 Is Figure 9 The sectional view taken along the line C-C of.

[0031] The reference numerals in the figure are:[[]]

[0032] 1. Main body; 11. First joint; 12. Base frame; 121. Exhaust passage; 13. Steam generation module; 131. Water storage tank; 132. Water pump; 133. Fixed frame; 134. Heater; 135. Export pump; 14. Condensate suction module; 141. Storage tank; 1411. First through hole; 1412. Second through hole; 142. Suction pump; 143. Inlet pipe; 1431. First opening; 144. Suction pipe; 1441. Second opening; 145. Sealing unit;

[0033] 2. Transfer hose;

[0034] 3. Holding module; 31. First pipe; 32. Second pipe; 33. Connecting handle; 34. Quick-release joint; 35. Opening and closing switch; 36. Limiting part; 37. Suction pipe;

[0035] 4. Brush head; 41. Retaining box; 42. Steam export module; 421. Limiting panel; 422. Steam spray hole; 423. Inlet pipe. Detailed implementation mode

[0036] In order to further understand the features, technical means, specific purposes and functions achieved by the present invention, the present invention will be further described in detail below in conjunction with the drawings and specific implementation modes.

[0037] See Figures 1 to 10As shown: a hanging ironing brush, comprising: a main body 1 provided with a first connector 11 capable of conducting steam and condensed water; a transmission hose 2, the input end of the transmission hose 2 being detachably connected to the first connector 11; a holding module 3 detachably arranged at the output end of the transmission hose 2, and a first pipe 31 and a second pipe 32 capable of conducting steam and condensed water respectively are arranged in the holding module 3; a brush head 4 detachably arranged at the connecting end of the holding module 3; the brush head 4 is provided with a retention box 41 capable of temporarily storing steam; the front ends of the first pipe 31 and the second pipe 32 are both communicated with the retention box 41; when steam enters the retention box 41, the steam with a heavier specific gravity will spontaneously settle at the bottom of the retention box 41.

[0038] When it is necessary to iron the fabric by hanging, first connect to an external power supply to drive the main body 1 to enter the working state, so that steam and negative pressure are generated synchronously to ensure the stable output of steam and the effective recovery of condensed water. At this time, the steam and negative pressure generated by the main body 1 sequentially pass through the transmission hose 2 and the holding module 3, and finally are transmitted to the inside of the brush head 4.

[0039] In order to effectively solve the problem of the ejection of condensed water, a retention box 41 is arranged inside the brush head 4 for temporarily storing and stably outputting the steam entering the brush head 4. During the steam transmission process, the condensed water in the steam pipeline will settle into the retention box 41 due to the change in flow rate and the action of gravity, so that the steam can fully remove the condensed water before being transported to the ejection port, avoiding the problem of water stains remaining on the fabric surface or uneven ironing caused by the ejection of condensed water with the steam.

[0040] At the same time, the second pipe 32 is in a continuous negative pressure state, which can actively adsorb and recover the condensed water in the retention box 41 to ensure that the condensed water will not accumulate inside the brush head 4, thereby avoiding the influence of the overflow of condensed water on the stability of steam ejection. This structure realizes the active interception and synchronous adsorption of condensed water, ensures the stability of the steam delivery system, enables the steam to be continuously and evenly ejected onto the fabric surface, and improves the ironing efficiency.

[0041] Through the retention box 41, the first pipe 31 and the second pipe 32, the active interception and efficient recovery of condensed water are realized, effectively preventing the water stain problem caused by the mixing of condensed water during the steam ejection process. Compared with the traditional hanging ironing brush that relies on gravity drainage or external shaking drainage, the present invention can automatically separate and adsorb condensed water, ensure the stability and uniformity of steam output, improve the ironing effect, avoid secondary pollution of the fabric caused by the splashing of condensed water, and improve the use convenience, ironing quality and overall working efficiency of the fabric cleaning machine.

[0042] See Figure 8As shown: The holding module 3 further includes a connecting handle 33, a quick-release joint 34 capable of connecting with the transmission hose 2, and an opening and closing switch 35 capable of controlling the opening and closing of the first pipe 31; the quick-release joint 34 is coaxially and fixedly arranged at the connecting end of the connecting handle 33, and the connecting handle 33 is detachably connected to the transmission hose 2 through the quick-release joint 34; the first pipe 31 and the second pipe 32 are arranged in parallel along the long side direction of the connecting handle 33 within the connecting handle 33; the opening and closing switch 35 is embedded in the connecting handle 33 and is arranged near the output end of the connecting handle 33.

[0043] The transmission hose 2 further is provided with a connecting hose capable of separately conducting steam, one end of the connecting hose communicates with the first pipe 31, and the other end communicates with the output end of the first joint 11.

[0044] When it is necessary to use the brush head 4 for cleaning or ironing operations, the staff first takes the connecting handle 33 and the transmission hose 2, and quickly and fixedly connects the two through the quick-release joint 34 arranged at the connecting end of the connecting handle 33, so as to realize the convenient docking between the connecting handle 33 and the transmission hose 2. The quick-release joint 34 adopts the prior art and will not be elaborated here. Its structural design can ensure the stable connection between the connecting handle 33 and the transmission hose 2, and avoid problems such as loosening or falling off during use.

[0045] After the connection is completed, the staff then takes the brush head 4 and inserts it at the output end of the connecting handle 33 to ensure the firm docking between the brush head 4 and the connecting handle 33, so as to realize the quick installation of the brush head 4. After the brush head 4 is installed, the opening or closing of the first pipe 31 can be controlled through the opening and closing switch 35, so as to flexibly control the release of steam and meet different cleaning or ironing requirements. The opening and closing switch 35 adopts the prior art and will not be elaborated here. Its design ensures the precise regulation of steam supply and avoids problems such as steam leakage or unstable supply.

[0046] See Figure 8 As shown: The holding module 3 further includes a limiting portion 36 and a suction pipe 37 capable of continuously sucking the condensed water at the bottom of the retention box 41; the suction pipe 37 is arranged in the retention box 41, the rear end of the suction pipe 37 communicates with the second pipe 32; the front end of the suction pipe 37 is fixed to the bottom of the retention box 41 through the limiting portion 36.

[0047] The suction pipe 37 cooperates with the second pipe 32. When the brush head 4 is in the working state, it can continuously generate negative pressure to ensure stable steam delivery and provide efficient condensate suction capacity. When condensate accumulates inside the retention box 41 due to steam cooling, the suction pipe 37 can actively draw out and discharge the condensate under the action of negative pressure, thus preventing condensate from staying or overflowing and affecting the ironing or cleaning effect.

[0048] In addition, the front end of the suction pipe 37 is fixed to the bottom of the retention box 41 through the limiting part 36, ensuring that the end of the suction pipe 37 is always in the lowest water level area, and can accurately and continuously adsorb and extract the condensate at the bottom of the retention box 41. This structure enables the condensate to be quickly and efficiently discharged regardless of the water level during the accumulation process.

[0049] See Figure 7 As shown: The brush head 4 further includes a steam export module 42 capable of exporting steam. The steam export module 42 is embedded on the surface of the brush head 4 and is arranged near the top of the brush head 4. The input end of the steam export module 42 is communicated with the top of the retention box 41.

[0050] When it is necessary to continuously output steam through the steam export module 42 to iron the fabric, first turn on the opening and closing switch 35 to connect the first channel, ensuring that the steam generated by the main machine 1 can smoothly be transported to the inside of the retention box 41 through the first channel. The steam is temporarily stored after entering the retention box 41. After the retention box 41 is completely filled with steam, it is then transported to the steam export module 42 through the diversion path, and finally the steam is stably exported to achieve efficient ironing.

[0051] Since the steam is temporarily stored in the retention box 41 before being exported, when the steam transported by the main machine 1 enters the retention box 41, the condensate formed due to temperature difference or pipeline cooling, as well as the saturated steam with a relatively large specific gravity, will deposit at the bottom of the retention box 41 due to gravity, thus effectively separating the condensate and ensuring that the finally ejected steam is pure and uniform. Through the active collection and isolation of condensate by the retention box 41, the mixing of condensate into the steam flow is avoided, preventing the direct splashing of condensate onto the fabric surface during the ironing process and affecting the ironing effect or causing local wet spot problems.

[0052] Through the retention box 41, the steam export module 42 and the first pipeline 31, the stable output of steam and the effective isolation of condensed water are achieved. Compared with the traditional way of directly exporting steam in a hanging ironing device, through the temporary storage and separation mechanism of the retention box 41, the present invention effectively removes condensed water and highly humid saturated steam, making the steam transportation more stable and efficient, ensuring that the ejected steam is uniform and delicate, and improving the ironing quality. In addition, this structure reduces the impact of condensed water overflow on the fabric, avoids uneven ironing or secondary pollution caused by the spraying of condensed water, thereby enhancing the usability, ironing quality and overall working efficiency of the fabric cleaning machine.

[0053] See Figure 8 As shown: The steam export module 42 includes a limit panel 421, a plurality of groups of steam spray holes 422 opened on the limit panel 421, and air inlet pipes 423 vertically arranged on the other side of the limit panel 421 corresponding to the plurality of groups of steam spray holes 422 one by one; the plurality of groups of steam spray holes 422 are parallelly opened on the limit panel 421 along the long side direction of the top of the brush head 4; the air inlet pipes 423 are vertically arranged on the inner side of the limit panel 421.

[0054] When the steam in the retention box 41 reaches the saturated state, the steam will enter the plurality of groups of air inlet pipes 423 in turn under the drive of the internal pressure, and is directionally transported along the internal flow path of the air inlet pipes 423. After being guided by the air inlet pipes 423, the steam is finally ejected at a high speed through the uniformly distributed plurality of groups of steam spray holes 422, achieving the effect of precise export, ensuring that the steam can evenly cover the ironing area, and improving the ironing and cleaning efficiency.

[0055] In addition, the multi-group distribution structure of the air inlet pipes 423 can adjust the steam flow rate and balance the pressure, ensuring that the steam has been fully diffused and stabilized before spraying, and avoiding problems such as uneven flow rate or pressure mutation during the steam spraying process.

[0056] See Figure 3 and Figure 4 As shown: The main body 1 includes a base frame 12, a steam generation module 13 capable of generating steam, and a condensed water suction module 14 capable of automatically sucking back condensed water.

[0057] The base frame 12, and an exhaust passage 121 for guiding and discharging the waste gas generated by the condensed water suction module 14 during the suction process is further provided on the base frame 12; the steam generation module 13 and the condensed water suction module 14 are both vertically arranged on the base frame 12 and are respectively arranged near both sides of the base frame 12; the export end and the suction end of the steam generation module 13 and the condensed water suction module 14 are both communicated with the first joint 11.

[0058] When it is necessary to iron the fabric and generate steam, first connect to an external power source to drive the steam generation module 13 into the working state. At this time, the steam generation module 13 starts to heat up and generate stable steam to meet the needs of hanging ironing. After the steam is generated, the steam is directed from the steam generation module 13 to the first joint 11 and transmitted through the delivery pipeline to the hanging ironing brush head 4, thus realizing the generation and precise diversion of steam.

[0059] When it is necessary to absorb the condensed water retained in the retention box 41, first connect to an external power source to drive the condensed water suction module 14 into the working state, making it generate a stable negative pressure. At this time, the negative pressure is conducted through the transmission hose 2 and the second pipeline 32, causing the second pipeline 32 to be continuously in the adsorption state, forming an active suction force. When there is deposited condensed water in the retention box 41, the condensed water is quickly drawn away under the drive of the negative pressure and discharged through the second pipeline 32, thus realizing the automatic collection and discharge of condensed water and ensuring the stable operation of the steam delivery system.

[0060] See Figure 5 and Figure 6 as shown: The steam generation module 13 includes a water storage tank 131, a water pump 132, a fixing frame 133, a heater 134 and an export pump 135; the water storage tank 131 is detachably arranged on the base frame 12 and is arranged near the front end of the base frame 12; the water pump 132 is arranged vertically on the middle of the base frame 12 through the fixing frame 133; the heater 134 is fixedly arranged on the top of the fixing frame 133; the export pump 135 is embedded in the bottom of the base frame 12 and is communicated with the first joint 11.

[0061] The water storage tank 131, the water pump 132, the heater 134 and the export pump 135 are sequentially connected and communicated through connecting hoses.

[0062] When it is necessary to supply steam to the brush head 4, first connect to an external power source to drive the water pump 132 into the working state, making it extract water from the water storage tank 131 and transmit the water source to the heater 134 through the delivery pipeline. After receiving the water source, the heater 134 quickly heats the water, instantly vaporizing it and generating high-temperature steam to ensure the continuity and stability of steam supply.

[0063] At the same time, the export pump 135 is started synchronously to actively suck the steam generated inside the heater 134 and stably transmit the steam to the first joint 11, thus realizing the directional delivery of steam. The function of the export pump 135 can not only accelerate the steam flow and improve the steam delivery efficiency, but also prevent the steam from staying and condensing in the pipeline, ensuring that the steam always maintains a high temperature state during the transmission process to meet the ironing and cleaning needs of the brush head 4.

[0064] See Figure 3 ,Figure 5 and Figure 6 As shown in Figure 6 , the condensate water suction-back module 14 includes a storage tank 141, a suction pump 142, an inlet pipe 143, and a suction tube 144; the storage tank 141 is vertically and fixedly arranged on the base frame 12, and a first through hole 1411 and a second through hole 1412 are relatively and penetratively formed at the bottom of the storage tank 141; the inlet pipe 143 is vertically and fixedly arranged in the storage tank 141 and communicates with the first through hole 1411, and a first opening 1431 capable of introducing condensate water into the inlet pipe 143 is further formed at the top of the inlet pipe 143; the suction tube 144 is vertically and fixedly arranged in the storage tank 141 and communicates with the second through hole 1412, and a second opening 1441 capable of allowing air to enter is further formed at the top of the suction tube 144; the suction pump 142 is vertically and fixedly arranged in the middle of the base frame 12, and the suction end of the suction pump 142 communicates with the second through hole 1412.

[0065] When it is necessary to continuously maintain a negative pressure state in the second pipeline 32 to actively suck the accumulated condensate water in the indwelling box 41, first connect to an external power supply to drive the suction pump 142 to start. When the suction pump 142 works, it cooperates with the suction tube 144 to form a stable negative pressure in the storage tank 141, so that a suction force is always maintained at the first through hole 1411, realizing continuous suction of the condensate water in the indwelling box 41.

[0066] After the condensate water enters through the first joint 11, it first passes through the first through hole 1411 and enters the interior of the inlet pipe 143, and flows along the inlet pipe 143, and finally enters the storage tank 141 through the first opening 1431 formed at the top of the inlet pipe 143, ensuring that the condensate water can be stably collected and stored.

[0067] See Figure 6 and Figure 10 As shown in Figure 10 , the condensate water suction-back module 14 further includes a sealing unit 145 capable of dynamically sealing the second opening 1441 of the suction tube 144; the sealing unit 145 is slidably arranged on one side of the suction tube 144 and close to the second opening 1441.

[0068] During the continuous accumulation of condensate water in the storage tank 141, the sealing unit 145 will be affected by the buoyancy force and float synchronously with the water level of the condensate water until the condensate water rises to the warning water level. At this time, the sealing unit 145 further rises with the water level and finally closes the second opening 1441, preventing the continuous formation of negative pressure in the storage tank 141, thereby automatically cutting off the suction and avoiding excessive condensate water entering the suction tube 144.

[0069] The sealing unit 145 is composed of a floating plate and a sealing plug fixedly arranged on the top of the floating plate.

[0070] Fabric cleaning machine, including a hanging ironing brush.

[0071] The present invention can not only automatically intercept the condensed water but also actively suck back the condensed water.

[0072] The above embodiments only express one or several implementation manners of the present invention, and the description thereof is relatively specific and detailed, but it should not be construed as a limitation to the scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the appended claims.

Claims

1. Hanging ironing brush, characterized in that Comprising: A main body (1) provided with a first joint (11) capable of conducting steam and condensate; A transmission hose (2), the input end of the transmission hose (2) being detachably connected to the first joint (11); A holding module (3) detachably arranged at the output end of the transmission hose (2), and a first pipe (31) and a second pipe (32) capable of respectively conducting steam and condensate are arranged in the holding module (3); A brush head (4) detachably arranged at the connecting end of the holding module (3); the brush head (4) is provided with a retention box (41) capable of temporarily storing steam; the front ends of the first pipe (31) and the second pipe (32) are both communicated with the retention box (41); when steam enters the retention box (41), the steam with a heavier specific gravity will spontaneously deposit at the bottom of the retention box (41).

2. The hanging ironing brush according to claim 1, wherein The holding module (3) further includes a connecting handle (33), a quick-release joint (34) capable of being connected to the transmission hose (2), and an opening and closing switch (35) capable of controlling the opening and closing of the first pipe (31); The quick-release joint (34) is coaxially and fixedly arranged at the connecting end of the connecting handle (33), and the connecting handle (33) is detachably connected to the transmission hose (2) through the quick-release joint (34); The first pipe (31) and the second pipe (32) are arranged in the connecting handle (33) in parallel along the long side direction of the connecting handle (33); The opening and closing switch (35) is embedded in the connecting handle (33) and is arranged near the output end of the connecting handle (33).

3. The hanging ironing brush according to claim 2, wherein The holding module (3) further includes a limiting portion (36) and a suction pipe (37) capable of continuously sucking the condensate at the bottom of the retention box (41); The suction pipe (37) is arranged in the retention box (41), and the rear end of the suction pipe (37) is communicated with the second pipe (32); the front end of the suction pipe (37) is fixed to the bottom of the retention box (41) through the limiting portion (36).

4. The hanging ironing brush according to claim 1, characterized in that The brush head (4) further includes a steam outlet module (42) capable of discharging steam, the steam outlet module (42) is embedded on the surface of the brush head (4) and is arranged near the top of the brush head (4), and the input end of the steam outlet module (42) is communicated with the top of the retention box (41).

5. The hanging ironing brush according to claim 4, characterized in that, The steam outlet module (42) includes a limiting panel (421), a plurality of groups of steam spray holes (422) opened on the limiting panel (421), and air inlet pipes (423) vertically arranged on the other side of the limiting panel (421) corresponding to the plurality of groups of steam spray holes (422) one by one; The plurality of groups of steam spray holes (422) are opened on the limiting panel (421) in parallel along the long side direction of the top of the brush head (4); The air inlet pipes (423) are vertically arranged on the inner side of the limiting panel (421).

6. The hanging ironing brush according to claim 1, characterized in that, The main body (1) includes a base frame (12), a steam generation module (13) capable of generating steam, and a condensate suction module (14) capable of automatically sucking back condensate.

7. The hanging ironing brush according to claim 6, characterized in that, The steam generation module (13) includes a water storage tank (131), a water pump (132), a fixing frame (133), a heater (134), and a discharge pump (135); The water storage tank (131) is detachably arranged on the base frame (12) and is arranged near the front end of the base frame (12); The water pump (132) is arranged vertically on the middle part of the base frame (12) through the fixing frame (133); The heater (134) is fixedly arranged on the top of the fixing frame (133); The discharge pump (135) is embedded and installed at the bottom of the base frame (12) and is communicated with the first joint (11).

8. The hanging ironing brush according to claim 6, characterized in that, The condensate suction module (14) includes a storage tank (141), a suction pump (142), an inlet pipe (143), and a suction pipe (144); The storage tank (141) is vertically and fixedly arranged on the base frame (12), and a first through hole (1411) and a second through hole (1412) are relatively penetrated through the bottom of the storage tank (141); The inlet pipe (143) is vertically and fixedly arranged in the storage tank (141) and is communicated with the first through hole (1411), and a first opening (1431) capable of introducing condensate into the inlet pipe (143) is further opened at the top of the inlet pipe (143); The suction pipe (144) is vertically and fixedly arranged in the storage tank (141) and is communicated with the second through hole (1412), and a second opening (1441) capable of allowing air to enter is further opened at the top of the suction pipe (144); The suction pump (142) is vertically and fixedly arranged in the middle part of the base frame (12), and the suction end of the suction pump (142) is communicated with the second through hole (1412).

9. The hanging ironing brush according to claim 8, wherein, The condensate suction module (14) further includes a sealing unit (145) capable of dynamically sealing the second opening (1441) of the suction pipe (144); The sealing unit (145) is slidably arranged on one side of the suction pipe (144) and is close to the second opening (1441).

10. Fabric cleaning machine, characterized in that, Including the hanging ironing brush according to any one of claims 1-9.