An inlet structure for a mini drying washing machine, a mini washing machine
By designing a water inlet structure using the drying air duct space in a mini drying washing machine, the problems of difficulty in mini washing machines and complex water inlet structure in the prior art are solved, and the miniaturization design of the washing machine body and the simplification of the water inlet structure are realized.
Patent Information
- Application Number
- CN202110423658.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-04-20
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2041-04-20
AI Technical Summary
While existing mini washing machines have drying functions, it is difficult to achieve miniaturized design, and the water inlet structure is complex, which increases equipment costs and processing costs.
By designing a water inlet structure in a mini drying washing machine, a water inlet passage is arranged using the space at the end of the drying air duct to connect the water inlet and the drying air duct, a shared channel between the water inlet and the drying air is realized.
It realizes the miniaturization design of the washing machine body while having drying function, reduces equipment and processing costs, and is suitable for any mini washing machine with drying air duct.
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Figure CN115216934B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of household appliances, and particularly to a water inlet structure and a mini washing machine for a mini drying washing machine. Background Art
[0002] As a human cleaning device, a washing machine is essential in people's daily life, and the functions of the washing machine are becoming more and more diversified, including a drying function. For underwear, it is usually washed separately. If a conventional washing machine is used, it will waste water, and the clothes need to reach the minimum weight to be dehydrated cleanly; if washed by hand, it will be time-consuming and laborious. At present, mini washing machines have also appeared on the market. In order to enrich the functions of the mini washing machine, a drying component is set in the mini washing machine to dry the clothes. While the functions are enriched, the overall size of the mini washing machine is also increased. Summary of the Invention
[0003] In order to overcome the deficiencies of the prior art, the present invention provides a water inlet structure for a mini drying washing machine. The water inlet component has a small and compact structure, and makes full use of the space of the drying air duct of the washing machine body to arrange the water inlet waterway, so that the mini washing machine has a drying function while being beneficial to the miniaturized design of the washing machine body.
[0004] In order to achieve the above object, the present invention is realized through the following technical solutions.
[0005] The present invention provides a water inlet structure for a mini drying washing machine, including a water inlet component for injecting water into the cylinder component of the washing machine body. The water inlet component is provided with a water inlet; the water inlet is communicated with the end of the drying air duct of the washing machine body, so that the water inlet waterway of the cylinder component and the air duct at the end of the drying air duct share a channel for water inlet or passing through dry air.
[0006] Preferably, the water inlet component is provided with a channel; both ends of the channel are respectively communicated with the drying air duct and the gas-liquid channel of the cylinder component; when the washing machine body performs drying, the channel is used to introduce dry air into the gas-liquid channel; when the washing machine body performs washing, the channel is used to inject water into the gas-liquid channel.
[0007] Preferably, one end of the channel passes through the door seal of the washing machine body to communicate with the gas-liquid channel.
[0008] Preferably, the water inlet component is provided with a temperature sensor.
[0009] Preferably, the number of the water inlets is at least two.
[0010] Preferably, a diversion part is arranged in the channel; the diversion part is provided with a diversion channel for guiding water to the gas-liquid channel.
[0011] Preferably, the outlet end of the diversion channel extends out of the channel.
[0012] Preferably, one diversion channel is provided corresponding to one water inlet.
[0013] Preferably, a positioning groove is provided at the bottom of the water inlet member for engaging with a positioning protrusion provided on the outer side of the cylinder assembly to achieve positioning and installation.
[0014] The second object of the present invention is to provide a mini drying washing machine, including a washing machine body, and the washing machine body includes:
[0015] A cylinder assembly for processing small items of clothing;
[0016] A drying assembly for performing drying;
[0017] An inlet structure for a mini drying washing machine as described above, for injecting water into the air path at the end of the drying air duct.
[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0019] The present invention provides an inlet structure for a mini drying washing machine, where the water inlet of the water inlet member is communicated with the end of the drying air duct, so as to make full use of the space of the drying air path inside the washing machine body to arrange the water inlet water path of the cylinder assembly, reasonably plan the layout of the air path and water path inside the washing machine body, and is beneficial to the miniaturized design of the washing machine body.
[0020] In a preferred solution, the water inlet member further includes a channel for respectively communicating with the drying air duct and the gas-liquid pipeline of the cylinder assembly, making full use of the space of the drying air path inside the washing machine body to arrange the water inlet member. The water inlet member has a small and compact structure and is easy to assemble, replacing the traditional technical solution of opening a water inlet on the door seal or the cylinder assembly to achieve water inlet, avoiding the increase in equipment cost and processing cost caused by the complexity of the door seal or cylinder assembly mold due to opening a water inlet on the door seal or the cylinder assembly, and can be applied to any mini washing machine with a drying air duct, with a wide application range.
[0021] In a preferred solution, the water inlet member is provided with a temperature sensor to replace the temperature sensor provided at the outlet of the drying air duct to detect the temperature at the outlet of the drying air duct for judging drying. The water inlet member only needs to open corresponding assembly holes to install the temperature sensor, the corresponding mold is simple, the processing cost is reduced, and the installation and replacement of the temperature sensor are simple and convenient.
[0022] The above description is only an overview of the technical solution of the present invention. In order to be able to understand the technical means of the present invention more clearly and implement it according to the content of the specification, the following will be described in detail with reference to the preferred embodiments of the present invention and the accompanying drawings. The specific implementation manners of the present invention are given in detail by the following embodiments and their accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The drawings described herein are provided to further understand the present invention and form a part of this application. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation to the present invention. In the drawings:
[0024] Figure 1 is an exploded structural schematic diagram of the water inlet part of the present invention;
[0025] Figure 2 is a partial structural cross-sectional view of the washing machine body of the present invention;
[0026] Figure 3 is Figure 2 an enlarged view of part A in;
[0027] Figure 4 is a three-dimensional structural schematic diagram of the water inlet part of the present invention;
[0028] Figure 5 is a structural cross-sectional view of the door seal of the present invention;
[0029] Figure 6 is an exploded structural schematic diagram of the drying air duct of the present invention.
[0030] In the figures:
[0031] 1, washing machine body; 121, outer cylinder; 1211, positioning protrusion; 122, inner cylinder; 123, front cylinder; 124, first gas-liquid channel; 125, second gas-liquid channel; 131, door glass; 160, water inlet part; 161, water inlet; 162, channel; 163, diversion part; 1631, diversion channel; 164, positioning groove; 165, temperature sensor; 1651, first fixing hole; 166, through hole; 167, second fixing hole; 168, third fixing hole; 1010, drying air duct; 1011, first drying air duct; 1012, second drying air duct; 1013, first housing; 1014, second housing; 1020, door seal; 1021, first opening; 1022, first connecting pipe; 1023, second connecting pipe; 1024, clamping part; 1025, second clamping groove. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] The present invention will be further described in detail below with reference to the accompanying drawings. The foregoing and other objects, features, aspects, and advantages of the present invention will become more apparent, so that those skilled in the art can implement it according to the description in the specification. In the drawings, for clarity, the shapes and dimensions may be enlarged, and the same reference numerals will be used in all the figures to indicate the same or similar components. In the following description, terms such as center, thickness, height, length, front, back, rear, left, right, top, bottom, upper, lower, etc. are based on the orientation or positional relationship shown in the drawings. In particular, "height" corresponds to the dimension from the top to the bottom, "width" corresponds to the dimension from the left to the right, and "depth" corresponds to the dimension from the front to the back. These relative terms are for convenience of description and generally do not intend to require a specific orientation. Terms related to attachment, connection, etc. (e.g., "connect" and "attach") refer to the relationship in which these structures are directly or indirectly fixed or attached to each other through an intermediate structure, as well as a movable or rigid attachment or relationship, unless otherwise explicitly stated.
[0033] Next, with reference to the accompanying drawings and specific embodiments, the present invention will be further described. It should be noted that, on the premise of no conflict, the following-described embodiments or technical features can be arbitrarily combined to form new embodiments.
[0034] Embodiment 1
[0035] The present invention provides a water inlet structure for a mini drying washing machine, as Figures 1 to 4 shown, which includes a water inlet member 160 for injecting water into the drum assembly of the washing machine body 1; the water inlet member 160 is provided with a water inlet 161; the water inlet 161 is communicated with the end of the drying air duct 1010 of the washing machine body 1, so that the water inlet water path of the drum assembly shares a channel with the air path at the end of the drying air duct 1010 to introduce water or drying air. That is, the drying air path at the end of the drying air duct 1010 is used to form the water inlet water path of the drum assembly, making full use of the space of the drying air path in the washing machine body 1 to arrange the water inlet water path of the drum assembly, reasonably planning the layout of the air path and water path in the washing machine body, which is beneficial to the miniaturization design of the washing machine body.
[0036] Further, the water inlet member 160 is provided with a channel 162; the water inlet 161 is used to inject water into the channel 162; both ends of the channel 162 are respectively communicated with the drying air duct 1010 and the gas-liquid channel of the cylinder assembly; when the washing machine body 1 performs drying, the channel 162 is used to introduce dry air (dry air) into the gas-liquid channel; when the washing machine body 1 performs washing, the channel 162 is used to inject water into the gas-liquid channel. Specifically, the washing machine body 1 is a drum washing machine, and the cylinder assembly includes an inner cylinder 122, an outer cylinder 121, and a front cylinder 123. The inner cylinder 122 is used to hold clothes. The front cylinder 123 is fixed to the front end of the outer cylinder 121. The surface formed by the front cylinder 123 and the inner wall of the outer cylinder 121 faces the outer wall of the inner cylinder 122 to form a water storage space. When the washing machine body 1 performs drying, the drying assembly of the washing machine body 1 is turned on and operated, and the water inlet member 160 stops supplying water. The wet air in the inner cylinder 122 enters the drying air duct 1010, is heated and dehumidified by the heater of the drying assembly to obtain dry air. Under the action of the fan of the drying assembly, the dry air in the drying air duct 1010 enters the gas-liquid channel of the cylinder assembly through the channel 162 of the water inlet member 160, and is introduced into the inner cylinder 122 through the gas-liquid channel to dry the clothes. When the washing machine body 1 performs washing, the drying assembly stops operating, and the water inlet 161 of the water inlet member 160 introduces water into the channel 162, and finally the water is introduced into the inner cylinder 122 through the gas-liquid channel to wash the clothes. Through the setting of the water inlet member 160, the washing water inlet is arranged on the drying air path, making full use of the space of the drying air path. The water pipe communicated with the water inlet member 160 is arranged in the vacant space around the drying assembly, making full use of the space inside the washing machine body 1 box, which is beneficial to the miniaturization design of the washing machine body 1; among them, the drying air path refers to the path through which the dry air flows, and the drying air duct refers to the channel formed by the drying assembly to form the dry air. In addition, by setting the water inlet member 160 to replace the traditional technical solution of opening a water inlet on the door seal or the cylinder assembly to achieve water inlet, the complexity of the door seal or cylinder assembly mold caused by opening a water inlet on the door seal or the cylinder assembly is reduced, so as to reduce the production cost, and it can be applied to any mini washing machine, with a wide application range.
[0037] In one embodiment, as Figure 2 、 Figure 3 、 Figure 5As shown, one end of the channel 162 passes through the door seal 1020 of the washing machine body 1 to communicate with the gas-liquid channel. Specifically, when the door of the washing machine body 1 is closed, the door glass 131 of the door abuts against the front end of the door seal 1020, and the rear end of the door seal 1020 abuts against the front cylinder 123. That is, the door seal 1020 is used to form a sealed space between the door of the washing machine body 1 and the cylinder assembly to form a gas-liquid passage of the cylinder assembly for subsequent washing or drying procedures. Specifically, the door seal 1020 is provided with a first opening 1021, and one end of the channel 162 of the water inlet member 160 communicates with the first opening 1021, so that one end of the channel 162 passes through the door seal 1020 to communicate with the gas-liquid channel. Among them, the gas-liquid channel includes a first gas-liquid channel 124 formed between the inner wall of the front cylinder 123, the inner wall of the outer cylinder 121, and the outer wall of the inner cylinder 122, and a second gas-liquid channel 125 formed between the door glass 131, the inner wall of the door seal 1020, and the inner wall of the inner cylinder 122. The water or drying air discharged from the channel 162 of the water inlet member 160 flows to the first gas-liquid channel 124 and the second gas-liquid channel 125 respectively after passing through the first opening 1021, and finally reaches the inside of the inner cylinder 122. While the water inlet member 160 realizes water injection, part of the water flows along the contact portion between the door seal 1020 and the door glass 131 to the door glass 131, flushing the door of the washing machine body 1 and playing a role in cleaning the door body.
[0038] In one embodiment, the channel 162 is arranged to incline downward along the direction away from the drying air duct 1010 to accelerate the speed of the drying air or water passing through the channel 162 and prevent water from flowing back into the drying air duct 1010 when the water inlet member 160 is used for water passing. Further, in order for the water inlet member 160 to inject water smoothly, the water inlet member 160 is located above the cylinder assembly.
[0039] In one embodiment, as Figure 1 shown, the water inlet member 160 is provided with a temperature sensor 165. Specifically, the water inlet member 160 is provided with a through hole 166, and the temperature sensor 165 is snapped into the through hole 166 to extend into the channel 162, and the assembly portion of the temperature sensor and the through hole 166 is ensured to be sealed to prevent air leakage. Further, the temperature sensor 165 is provided with a first fixing hole 1651, and the water inlet member 160 is provided with a second fixing hole 167. The temperature sensor 165 is fixed by passing fasteners through the first fixing hole 1651 and the second fixing hole 167 in sequence. During the drying process of the washing machine body 1, temperature sensors are usually arranged at the outlet and inlet of the drying air duct 1010 respectively to judge drying. By arranging the temperature sensor 165 on the water inlet member 160 to detect the temperature at the outlet of the drying air duct 1010, compared with the drying air duct 1010, the structure of the water inlet member 160 is simple. The water inlet member 160 only needs to open corresponding assembly holes to install the temperature sensor, and the corresponding mold is simple, reducing the processing cost and the installation and replacement of the temperature sensor are simple.
[0040] In one embodiment, the number of the water inlets 161 is at least two. Since the washing machine body 1 is used to wash small items such as inner clothes and socks, the overall size of the washing machine body 1 is small, and the internal space of its cabinet is small. Therefore, the size of the water inlet member 160 is small. By increasing the number of the water inlets 161 opened on the water inlet member 160, it is ensured that the water inlet member 160 has a certain water inflow, and the water inlet speed of the water inlets 161 is reduced, so as to avoid too fast water inlet at the water inlets 161. When the water inlet member 160 cannot timely introduce the water led out from the water inlets 161 into the gas-liquid channel, the water in the channel 162 flows back into the drying air duct 1010, which affects the use of the drying assembly.
[0041] Further, a diversion part 163 is arranged in the channel 162; the diversion part 163 is provided with a diversion channel 1631 for guiding water to the gas-liquid channel. That is, the outlet end of the diversion channel 1631 extends along a direction away from the drying air duct 1010 to guide the water flow direction. Further, as Figure 3 shown, one end of the diversion channel 1631 is communicated with the water inlet 161, and the inner wall of the diversion channel 1631 and the inner wall of the channel 162 form a semi-closed channel structure with only one end open. The open end of the diversion channel 1631 faces away from the drying air duct 1010, so that the water in the diversion channel 1631 flows to the gas-liquid channel. Further, the side of the diversion part 163 facing the water inlet 161 is connected to the inner wall of the channel 162, and a distance is provided between the remaining outer surface of the diversion part 163 and the inner wall of the channel 162 to reduce the degree of obstruction of the setting of the diversion part 163 to the ventilation speed of the channel 162 when the washing machine body 1 performs drying.
[0042] Further, the outlet end of the diversion channel 1631 extends out of the channel 162. The internal space of the channel 162 is small. When the water inlet member 160 conducts water, the outlet end of the diversion channel 1631 extends out of the channel 162 so that the water led out by the diversion channel 1631 directly enters the gas-liquid channel, so as to prevent the water introduced from the water inlet 161 from accumulating in the space between the outer wall of the diversion channel 1631 and the inner wall of the channel 162 and flowing back into the drying air duct 1010. In addition, the space of the gas-liquid channel is large, and the water led out by the diversion channel 1631 directly enters the gas-liquid channel, which can accelerate the water inlet speed of the water inlets 161.
[0043] Further, the diversion channel 1631 is arranged to be inclined downward along a direction away from the drying air duct 1010 to accelerate the water flow to the gas-liquid channel.
[0044] In one embodiment, the number of the water inlets 161 is at least two, and the number of the diversion channels 1631 is the same as the number of the water inlets 161. One diversion channel 1631 is arranged corresponding to one water inlet 161 to accelerate the water inlet speed of the water inlet member 160.
[0045] In one embodiment, as Figure 3 、 Figure 4 shown, a positioning groove 164 is provided at the bottom of the water inlet member 160 for engaging with a positioning projection 1211 provided on the outer side of the cylinder assembly to achieve positioning and installation, thereby reducing the assembly difficulty of the water inlet member 160. Further, since the internal space of the washing machine body 1 is small, in order to reduce the space occupied by the cylinder assembly, in one embodiment, the front cylinder 123 has a small and compact structure and is in a bent structure; the front cylinder 123 is fixed to the outer peripheral wall of the front end of the outer cylinder 121, and a first clamping groove is formed between the inner wall of the front cylinder 123 and the front surface of the front end of the outer cylinder 121; the rear end of the door seal 1020 is bent to form a clamping portion 1024, which is snapped into the first clamping groove to seal the assembly portion of the front cylinder 123 and the outer cylinder 121, and an additional sealing ring structure for sealing the assembly portion of the front cylinder 123 and the outer cylinder 121 is omitted, which is beneficial to the miniaturized design of the washing machine body 1. Since the front cylinder 123 has a small and compact structure, the positioning projection 1211 is provided on the outer surface of the outer cylinder 121. Further, the water inlet member 160 is provided with a third fixing hole 168, and the outer cylinder 121 is provided with a fourth fixing hole, and the water inlet member 160 and the outer cylinder 121 are fixed by fasteners.
[0046] In one embodiment, a spraying structure is provided at the water inlet of the water inlet member 160 so that the water inlet member 160 injects water into the gas-liquid passage in a spraying form to increase the water spraying coverage area.
[0047] Embodiment 2
[0048] The present invention provides a mini drying washing machine, as Figures 1 to 6 shown, including a washing machine body 1, and the washing machine body 1 includes:
[0049] A cylinder assembly for processing small items of clothing; the cylinder assembly includes an inner cylinder 122, an outer cylinder 121, and a front cylinder 123; the inner cylinder 122 is used for holding clothes;
[0050] A drying assembly for performing drying; the drying assembly includes a drying air duct 1010, and a heater and a blower are provided in the drying air duct 1010. The heater is used for heating and dehumidifying the wet air introduced from the inner cylinder 122 into the drying air duct 1010 to form dry air, and the blower is used for blowing the dry air into the inner cylinder 122;
[0051] The water inlet structure for a mini drying washing machine as described above is used to introduce water or the dry air provided by the drying assembly into the gas-liquid passage of the cylinder assembly. By fully utilizing the space of the drying air path in the washing machine body 1 to arrange the water inlet member 160 and reasonably planning the layout of the air path and the water path in the washing machine body 1, it is beneficial to the miniaturized design of the washing machine body 1.
[0052] In one embodiment, as Figure 2 、Figure 3 , Figure 5 As shown, the washing machine body 1 includes a door seal 1020; one end of the door seal 1020 is used to abut against the door body of the washing machine body 1, and the other end is used to abut against the front barrel 123 of the barrel assembly, so as to form a sealed cavity between the door body and the barrel assembly, and further form an air-liquid channel of the barrel assembly; the door seal 1020 is provided with a first opening 1021, and the water outlet end of the channel 162 is connected to the first opening 1021, and the water inlet part 160 is passed through the first opening 1021 to realize the introduction of water or dry air into the air-liquid channel.
[0053] Specifically, in one embodiment, the washing machine body 1 is provided with a frame for supporting the box and its internal components, the frame is provided with a door frame plate, and the door frame plate is provided with a second opening to form an opening for placing items in the drum assembly. The rear end of the door seal 1020 is bent to form a clamping portion 1024, which is clamped into a first clamping groove formed between the inner wall of the front drum 123 and the front end surface of the outer drum 121 to achieve the fixation of the rear end of the door seal 1020; the front end of the door seal 1020 is bent to form a second clamping groove 1025 to clamp the second opening of the door frame plate of the washing machine body 1 to achieve the fixation of the front end of the door seal 1020.
[0054] Specifically, Figure 3 As shown, the gas-liquid passage includes a first gas-liquid passage 124 formed between the inner wall of the front cylinder 123, the inner wall of the outer cylinder 121, and the outer wall of the inner cylinder 122, and a second gas-liquid passage 125 from the inner wall of the door seal 1020 to the inner space of the inner cylinder 122. The water or dry air guided out of the passage 162 of the water inlet member 160 flows through the first opening 1021 to the first gas-liquid passage 124 and the second gas-liquid passage 125, respectively, and finally reaches the inner cylinder 122.
[0055] Furthermore, if Figure 2 , Figure 5 As shown, the door seal 1020 is provided with a first connecting pipe 1022; the outlet end of the first connecting pipe 1022 forms the first opening 1021. The provision of the first connecting pipe 1022 facilitates the assembly of the door seal 1020 with one end of the water inlet member 160, and the inner surface of the first connecting pipe 1022 and the outer surface of the water inlet member 160 have a large abutment area to improve the assembly firmness of the water inlet member 160 and the door seal 1020. Furthermore, the drying assembly is arranged close to the barrel assembly, and the first connecting pipe 1022 is bent in a direction toward the drying assembly, so that the two ends of the water inlet member 160 are respectively connected with the first connecting pipe 1022 and the drying air duct 1010, and the outer space of the barrel assembly is reasonably utilized. In one embodiment, the guide channel 1631 of the water inlet member 160 extends into an opening above one end of the first connecting pipe 1022, and the inner wall of the outlet end of the first connecting pipe 1022 covers the opening above the guide channel 1631, so that water in the guide channel 1631 can only flow out from its end, extending the guide path.
[0056] In one embodiment, the first connecting pipe 1022 is disposed above the door seal 1020 so that the water inlet member 160 injects water into the first connecting pipe 1022.
[0057] In one embodiment, as Figure 2 , Figure 3 shown, the water inlet member 160 and the drying air duct 1010 are communicated through a second connecting pipe 1023 to simplify the assembly of the water inlet member 160 and the drying air duct 1010, and facilitate adjusting the relative positions of the water inlet member 160 and the drying air duct 1010 by adjusting the shape and length of the second connecting pipe 1023, so that the water inlet structure and the drying assembly in the washing machine body 1 are arranged compactly, which is beneficial to the miniaturized design of the washing machine body 1.
[0058] Further, the second connecting pipe 1023 is disposed obliquely downward along the direction away from the drying air duct 1010 to further prevent the water in the water inlet member 160 from flowing back into the drying air duct 1010 when the washing machine body 1 performs washing.
[0059] Further, the second connecting pipe 1023 is a corrugated pipe and has a certain elasticity to reduce the influence of the vibration generated by the water inlet member 160 on the drying assembly. In one embodiment, the water inlet member 160 is fixed on the outer cylinder 121. When the inner cylinder 122 rotates to process clothes, the water inlet member 160 has a certain vibration amplitude, and the corrugated pipe structure is used to slow down the influence of the vibration of the water inlet member 160 on the drying assembly. In addition, the inner wall of the second connecting pipe 1023 is in a continuous bending structure, which can prevent the water in the water inlet member 160 from flowing back into the drying air duct 1010 to a certain extent.
[0060] In one embodiment, as Figure 2 shown, the drying air duct 1010 is bent to form a first drying air duct 1011 and a second drying air duct 1012. The water inlet member 160 is communicated with the first drying air duct 1011, and the fan of the drying assembly is disposed in the second drying air duct 1012 to reasonably plan the layout of the components of the drying assembly, which is beneficial to the miniaturized design of the washing machine body 1.
[0061] In one embodiment, as Figure 6 shown, the drying air duct 1010 includes a first housing 1013 and a second housing 1014. The first housing 1013 and the second housing 1014 jointly clamp to form the drying air duct 1010. Further, the first housing 1013 and the second housing 1014 are initially installed by snap connection or buckling, and then fixedly installed by fasteners, and the assembly is convenient. When a fault occurs in the internal components of the drying air duct 1010, it is convenient to disassemble and replace them in time.
[0062] The above are only the preferred embodiments of the present invention, and do not impose any form of limitation on the present invention; any ordinary technician in the industry can smoothly implement the present invention according to the instructions in the accompanying drawings and the above; however, any minor changes, modifications, and equivalent variations made by those skilled in the art within the scope of the technical solution of the present invention by using the technical content disclosed above are all equivalent embodiments of the present invention; at the same time, any equivalent changes, modifications, and evolutions made to the above embodiments based on the essential technology of the present invention still fall within the protection scope of the technical solution of the present invention.
Claims
1. An inlet water structure for a mini drying washing machine, including an inlet water component (160) for injecting water into the cylinder component of the washing machine body (1); Characterized in that, The inlet water component (160) is provided with an inlet (161); the inlet (161) is communicated with the end of the drying air duct (1010) of the washing machine body (1), so that the water inlet water path of the cylinder component shares a channel with the air path at the end of the drying air duct (1010) to inlet water or pass dry air; The inlet water component (160) is provided with a channel (162); both ends of the channel (162) are respectively communicated with the drying air duct (1010) and the gas-liquid channel of the cylinder component; when the washing machine body (1) performs drying, the channel (162) is used to pass dry air into the gas-liquid channel; when the washing machine body (1) performs washing, the channel (162) is used to inject water into the gas-liquid channel; A diversion part (163) is arranged in the channel (162); the diversion part (163) is provided with a diversion channel (1631) for guiding water to the gas-liquid channel; the outlet end of the diversion channel (1631) extends out of the channel (162); one end of the diversion channel (1631) is communicated with the inlet (161), and the inner wall of the diversion channel (1631) and the inner wall of the channel (162) form a semi-closed channel structure with only one end open, and the open end of the diversion channel (1631) faces away from the drying air duct (1010), so that the water in the diversion channel (1631) flows into the gas-liquid channel.
2. An inlet water structure for a mini drying washing machine according to claim 1, Characterized in that, One end of the channel (162) passes through the door seal (1020) of the washing machine body (1) to communicate with the gas-liquid channel.
3. An inlet water structure for a mini drying washing machine according to claim 1, Characterized in that, The inlet water component (160) is provided with a temperature sensor (165).
4. An inlet water structure for a mini drying washing machine according to claim 1, Characterized in that, The number of the inlets (161) is at least two.
5. An inlet water structure for a mini drying washing machine according to claim 1, Characterized in that, One diversion channel (1631) is arranged corresponding to one inlet (161).
6. An inlet water structure for a mini drying washing machine according to claim 1, Characterized in that, The bottom of the inlet water component (160) is provided with a positioning groove (164) for engaging with a positioning protrusion (1211) arranged on the outside of the cylinder component to realize positioning installation.
7. A mini drying washing machine, including a washing machine body (1), Characterized in that, The washing machine body (1) includes: A cylinder component for processing small pieces of clothing; A drying component for performing drying; An inlet water structure for a mini drying washing machine according to any one of claims 1-6, for injecting water into the air path at the end of the drying air duct (1010).
Citation Information
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