Ironing machine table body and ironing machine
By designing a separate receiving cavity and installation cavity structure in the ironing machine body, combined with the cover assembly and pump assembly, the problem of cumbersome water filling in existing ironing machines is solved, realizing convenient water filling and stable water supply, and improving the ironing machine's efficiency and user experience.
Patent Information
- Application Number
- CN202520662623.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-04-09
AI Technical Summary
The existing ironing machine has a cumbersome water filling process and the water tank is inconvenient to disassemble, which increases the complexity of operation and time cost for users, affecting the efficiency of ironing machine use and user experience.
Design an ironing machine platform body, including a base shell, a cover assembly, a pump assembly, and a control assembly. Through the separated receiving cavity and installation cavity structure, convenient water addition and stable water supply can be achieved. The pump assembly is connected to the ironing main unit, and the control assembly precisely controls the water flow and pressure.
The water-addition process is simplified, preventing water leakage and dust ingress, improving the stability and lifespan of the equipment, ensuring the uniformity and consistency of ironing results, and enhancing the user experience.
Smart Images

Figure CN223974390U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliances, and in particular to an ironing machine platform and an ironing machine. Background Technology
[0002] In the realm of everyday garment care, ironing machines are essential tools for maintaining the smoothness of clothing and enhancing the quality of wear. However, the design of many irons currently on the market reveals several issues that negatively impact user experience. One particularly prominent problem is the inconvenience of adding water to the iron's base. Most existing irons require the water tank to be removed before refilling. When users need to add water, they must carefully detach the water tank from the main body of the iron. This process is often cumbersome, and some irons have inconveniently designed water tank removal mechanisms, requiring considerable effort from the user and potentially damaging the tank if handled improperly. Furthermore, after removing the water tank, users must carry it to a water source to refill it, constantly monitoring the water level and preventing spills, further complicating and inconvenient the process. This method of refilling not only wastes time and effort but also reduces the iron's efficiency, contradicting the modern consumer's pursuit of a convenient and efficient lifestyle. Therefore, solving the problem of inconvenient water filling in the ironing machine base is of great significance for improving the user experience and market acceptance of ironing machines. Utility Model Content
[0003] Therefore, it is necessary to provide an ironing machine platform and an ironing machine to address the problem of inconvenient water tank disassembly.
[0004] An ironing machine platform, comprising:
[0005] The base housing has a receiving cavity and an installation cavity, the receiving cavity being separated from the installation cavity, a limiting groove being provided on the base housing, and a water inlet communicating with the receiving cavity being provided on the base housing;
[0006] A cover assembly is rotatably mounted on the base housing and located at the water inlet. The cover assembly can open or close the water inlet when it rotates.
[0007] A pump body assembly, which is disposed on the base housing and located within the mounting cavity, and communicates with the receiving cavity;
[0008] A control component is disposed on the base housing and is electrically connected to the pump body assembly.
[0009] This application discloses an ironing machine platform, which is separated from the receiving cavity and the installation cavity by a base shell. The receiving cavity is specifically used to store the water required for ironing, providing a continuous water supply for the ironing process. The installation cavity provides suitable installation space for components such as the pump body, avoiding mutual interference between different functional components, improving the rationality and compactness of the internal layout of the equipment, and contributing to the stability and reliability of the entire machine. A water inlet on the base shell communicates with the receiving cavity, making it convenient for users to add water to the receiving cavity. A cover assembly is rotatably mounted on the base shell and located at the water inlet. When the cover assembly closes the water inlet, it effectively prevents water leakage from the receiving cavity, avoiding short circuits or damage to other components caused by water leakage. In addition, when the ironing machine is not in use, the closed cover assembly also prevents dust and other impurities from entering the receiving cavity, ensuring the cleanliness of the stored water, thereby improving the ironing effect and extending the service life of the equipment. The rotating design of the cover assembly allows users to easily open or close the water inlet. When water needs to be added, simply rotate the cover assembly to open the water inlet; the operation is simple and convenient. After adding water, rotate the cover assembly to close the water inlet. The entire process is smooth and natural, enhancing the user experience. The pump assembly is located within the mounting cavity of the base housing and communicates with the receiving cavity. Its function is to deliver water from the receiving cavity to the ironing work area. The pump assembly can stably control the water flow and pressure according to the iron's working needs, ensuring a consistent water supply during ironing, thereby guaranteeing the uniformity and stability of the ironing effect. The control assembly is located on the base housing and is electrically connected to the pump assembly. It can precisely control the operating status of the pump assembly.
[0010] In one embodiment, the base housing includes a housing assembly and a limiting handle. The limiting handle is disposed on the housing assembly, and a limiting space is formed between the limiting handle and the housing assembly. By setting the limiting handle on the housing assembly, the limiting space formed between the limiting handle and the housing assembly can serve as an additional functional area for suspending some of the ironing machine's main unit's hoses. Winding the hoses around the limiting handle makes the overall structure neater and facilitates storage and movement.
[0011] In one embodiment, the limiting handle includes a first support plate, a second support plate, and a limiting block. The first support plate is disposed on the housing assembly, the second support plate is disposed on the first support plate, and the limiting block is disposed on the second support plate. The limiting space is formed between the first support plate, the second support plate, and the limiting block and the side wall of the housing assembly. The first support plate, disposed on the housing assembly, provides a stable mounting base for the entire limiting handle. It firmly connects the limiting handle to the housing assembly, ensuring the stability of the iron. The second support plate, together with the first support plate and the side wall of the housing assembly, constitutes part of the limiting space, enhancing the limiting effect of the limiting space. The limiting block, disposed on the second support plate, further refines the limiting function of the limiting space.
[0012] In one embodiment, the housing assembly includes a bottom shell assembly, a mounting shell, a water tank shell, and a top cover assembly. The mounting shell is disposed on the bottom shell assembly, and the mounting shell and the bottom shell assembly together form the mounting cavity. The water tank shell is disposed on the mounting shell, and the water tank shell and the mounting shell together form a receiving cavity. The water tank shell has a water inlet. The top cover assembly is disposed on the water tank shell, and the top cover assembly has the limiting groove. The bottom shell assembly serves as the bottom support for the entire ironing machine platform, providing a stable foundation for the equipment. The mounting shell is disposed on the bottom shell assembly, and the two together form the mounting cavity, providing a dedicated installation area for components such as the pump assembly. The presence of the mounting cavity allows these components to be installed in an orderly manner, avoiding mutual interference between components and improving the rationality and compactness of the internal layout of the equipment. Simultaneously, the combination of the bottom shell assembly and the mounting shell enhances the structural strength of the base housing, enabling it to withstand the vibration and pressure generated by components such as the pump assembly during operation, ensuring the stability and reliability of the equipment. The independent setting of the mounting cavity makes maintenance and repair of components such as the pump assembly installed within it more convenient. The water tank shell is mounted on the mounting shell, and the two together form a cavity that provides space for storing water for the iron. The well-designed cavity ensures sufficient water supply for the ironing process, meeting the needs of users in various usage scenarios. The housing assembly consists of a bottom shell assembly, a mounting shell, a water tank shell, and a top cover assembly. This modular design makes the assembly and production of the equipment more efficient. Each component can be manufactured and processed independently, and then combined into a complete base housing through simple installation and connection.
[0013] In one embodiment, the mounting housing includes a mounting base plate and a liquid outlet pipe. The mounting base plate is sandwiched between the bottom housing assembly and the water tank housing. The liquid outlet pipe is disposed on the mounting base plate and extends into the mounting cavity. The bottom housing assembly includes a base plate and a liquid passage pipe. The liquid passage pipe is disposed on the base plate, and the liquid outlet pipe extends into the liquid passage pipe. The pump assembly communicates with the liquid passage pipe. The mounting base plate effectively isolates the mounting cavity and the receiving cavity, preventing mutual interference between the two functional areas. Simultaneously, it provides stable support for the water tank housing, ensuring the shape and sealing of the receiving cavity. When water is stored in the receiving cavity, the mounting base plate can withstand the weight of the water, preventing the water tank housing from deforming due to uneven stress, thereby ensuring the normal water storage function of the receiving cavity and providing a continuous water supply for the ironing process. The liquid outlet pipe, disposed on the mounting base plate and extending into the mounting cavity, functions to precisely deliver water from the receiving cavity to the pump assembly. When the iron is working, water flows from the receiving chamber through the outlet pipe to the pump assembly. The diameter and position of the outlet pipe are designed to ensure stable water flow and velocity, meeting the pump assembly's water intake requirements. For example, by rationally designing the outlet pipe diameter, the water flow can be controlled, allowing the pump assembly to convert the appropriate amount of water into steam for ironing, thus ensuring the uniformity and stability of the ironing effect. The base plate, as the foundation of the base assembly, provides stable support for the entire base shell. The liquid passage pipe is located on the base plate and works in conjunction with the outlet pipe to guide water from the outlet pipe to the pump assembly. The presence of the liquid passage pipe ensures that the pump assembly can reliably obtain a water source.
[0014] In one embodiment, the housing assembly further includes a sealing ring sandwiched between the outlet pipe and the through pipe. The sealing ring has a notch positioned opposite the outlet of the through pipe. The primary function of the sealing ring, sandwiched between the outlet pipe and the through pipe, is to ensure a tight seal at their connection. During operation, water flows from the outlet pipe through the through pipe to the pump assembly. If the connection is not properly sealed, water may leak into other areas of the equipment, wasting water and potentially damaging internal electronic components or other parts. The sealing ring effectively fills the gap between the outlet pipe and the through pipe, forming a reliable sealing barrier to prevent water leakage and ensure the normal operation of the equipment and a dry and safe internal environment.
[0015] In one embodiment, the housing assembly further includes an induction wire sandwiched between the water tank shell and the mounting shell, surrounding the receiving cavity. By fusion-connecting the induction wire between the water tank shell and the mounting shell, and surrounding the receiving cavity, the gap between them can be effectively filled. During the operation of the ironing machine, the receiving cavity stores water for ironing. If the seal is poor, water may seep out from the gaps, wasting water resources and potentially damaging other internal components. The fused induction wire forms a reliable sealing barrier between the water tank shell and the mounting shell, ensuring that water in the receiving cavity does not leak, thus guaranteeing the normal operation of the equipment and a dry internal environment.
[0016] In one embodiment, a locking member is also included. A limiting piece is provided on one side of the limiting groove, and an opening is provided on the other side of the limiting groove. The locking member is disposed on the base housing, and a portion of the locking member is movable at the opening. When the locking member moves, it can move toward or away from the limiting piece. With a limiting piece on one side of the limiting groove and an opening on the other side, and the locking member disposed on the base housing, a portion of which can move at the opening and toward or away from the limiting piece, when the ironing unit is placed in the limiting groove, moving the locking member toward the limiting piece and pressing against the ironing unit prevents it from moving. Moving the locking member away from the limiting piece unlocks the ironing unit.
[0017] In one embodiment, the control assembly includes a control board and a circuit board, both of which are mounted on the base housing. The control board, mounted on the base housing, provides a direct and convenient user interface. Users can easily set and adjust various functions of the ironing machine using buttons, knobs, displays, and other operating elements on the control board. The circuit board, mounted on the base housing, is responsible for the precise circuit control of the various electrical components of the ironing machine.
[0018] The second aspect of this application discloses an ironing machine, comprising:
[0019] The aforementioned ironing machine body;
[0020] An ironing main unit is detachably mounted on the ironing machine platform. The ironing main unit is connected to the pump assembly and electrically connected to the ironing machine platform.
[0021] The second aspect of this application discloses an ironing machine in which the ironing main unit is connected to a pump assembly, which stably delivers water from a receiving chamber to the ironing main unit. During ironing, the ironing main unit uses this water to generate steam for ironing clothes. Because the pump assembly is precisely controlled by a control component on the ironing machine platform, it can be adjusted according to the working needs of the ironing main unit, ensuring that the ironing main unit continuously receives an appropriate amount of water, thereby generating stable and sufficient steam. The ironing main unit is detachably mounted on the ironing machine platform, facilitating its operation. Attached Figure Description
[0022] Figure 1 This is a first-dimensional view of an ironing machine;
[0023] Figure 2 This is a second perspective view of the ironing machine;
[0024] Figure 3 This is a third-dimensional view of the ironing machine;
[0025] Figure 4 This is a first perspective view of the ironing machine platform.
[0026] Figure 5 This is a second perspective view of the ironing machine platform;
[0027] Figure 6 This is a third-dimensional view of the ironing machine platform;
[0028] Figure 7 This is an exploded view of the ironing machine platform.
[0029] Figure 8 This is a cross-sectional view of the base shell;
[0030] Figure 9 for Figure 8 Enlarged view of region A;
[0031] Figure 10 This is an exploded view of the base shell;
[0032] Figure 11 This is a cross-sectional view of the exploded view of the base shell.
[0033] The correspondence between the reference numerals and the component names is as follows:
[0034] 100 ironing machine body;
[0035] 1. Base housing, 11. Housing assembly, 111. Bottom housing assembly, 1111. Bottom plate, 1112. Liquid pipe, 112. Mounting housing, 1121. Mounting bottom plate, 1122. Liquid outlet pipe, 113. Water tank housing, 114. Top cover assembly, 115. Sealing ring, 116. Induction wire, 12. Limiting handle, 121. First support plate, 122. Second support plate, 123. Limiting, 101. Receiving cavity, 102. Mounting cavity, 103. Limiting groove, 104. Water inlet, 105. Limiting space;
[0036] 2. Cover assembly;
[0037] 3. Pump body assembly;
[0038] 4. Control components, 41. Control board, 42. Circuit board;
[0039] 5. Locking components;
[0040] 200 ironing main unit. Detailed Implementation
[0041] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0042] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.
[0043] The following description, with reference to the accompanying drawings, describes some embodiments of the ironing machine platform and the ironing machine according to the present invention.
[0044] Example 1
[0045] like Figures 1 to 11 As shown, this embodiment discloses an ironing machine platform, comprising:
[0046] The base housing 1 has a receiving cavity 101 and an installation cavity 102, the receiving cavity 101 and the installation cavity 102 are separated, the base housing 1 has a limiting groove 103, and the base housing 1 has a water inlet 104 that communicates with the receiving cavity 101.
[0047] Cover assembly 2 is rotatably mounted on base housing 1. Cover assembly 2 is located at water inlet 104. When cover assembly 2 rotates, it can open or close water inlet 104.
[0048] Pump body assembly 3 is mounted on base housing 1 and located in mounting cavity 102. Pump body assembly 3 is connected to receiving cavity 101.
[0049] Control component 4 is mounted on the base housing 1 and is electrically connected to the pump body assembly 3.
[0050] This application discloses an ironing machine platform, which is separated from each other by a receiving cavity 101 and a mounting cavity 102 provided in the base housing 1. The receiving cavity 101 is specifically used to store water required for ironing, providing a continuous water supply for the ironing process. The mounting cavity 102 provides suitable installation space for components such as the pump assembly 3, avoiding mutual interference between different functional components, improving the rationality and compactness of the internal layout of the equipment, and helping to improve the stability and reliability of the whole machine. A water inlet 104 on the base housing 1 communicates with the receiving cavity 101, making it convenient for the user to add water to the receiving cavity 101. The cover assembly 2 is rotatably mounted on the base housing 1 and located at the water inlet 104. When the cover assembly 2 closes the water inlet 104, it can effectively prevent water from leaking out of the receiving cavity 101, avoiding short circuits or damage to other components caused by water leakage. In addition, when the ironing machine is not in use, the closed cover assembly 2 can also prevent dust and other impurities from entering the receiving cavity 101, ensuring the cleanliness of the stored water, thereby improving the ironing effect and extending the service life of the equipment. The rotating design of the cover assembly 2 allows users to easily open or close the water inlet 104. When water needs to be added, simply rotate the cover assembly 2 to open the water inlet 104; the operation is simple and convenient. After adding water, rotate the cover assembly 2 again to close the water inlet 104. The entire process is smooth and natural, enhancing the user experience. The pump assembly 3 is located within the mounting cavity 102 of the base housing 1 and communicates with the receiving cavity 101. Its function is to deliver water from the receiving cavity 101 to the ironing work area. The pump assembly 3 can stably control the water flow and pressure according to the ironing machine's working needs, ensuring a consistent and adequate water supply during ironing, thereby guaranteeing the uniformity and stability of the ironing effect. The control assembly 4 is located on the base housing 1 and electrically connected to the pump assembly 3. It can precisely control the operating status of the pump assembly 3.
[0051] like Figure 4 and Figure 5 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the base housing 1 includes a housing assembly 11 and a limiting handle 12, the limiting handle 12 is disposed on the housing assembly 11, and a limiting space 105 is formed between the limiting handle 12 and the housing assembly 11. By setting the limiting handle 12 on the housing assembly 11, the limiting space 105 formed between the limiting handle 12 and the housing assembly 11 can serve as an additional functional area for suspending some of the ironing machine's main unit's hoses. Winding the hoses around the limiting handle 12 makes the overall structure neater and facilitates storage and movement.
[0052] like Figure 4 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment further defines the following: the limiting handle 12 includes a first support plate 121, a second support plate 122, and a limiting block 123. The first support plate 121 is disposed on the housing assembly 11, the second support plate 122 is disposed on the first support plate 121, and the limiting block 123 is disposed on the second support plate 122. The first support plate 121, the second support plate 122, and the limiting block 123 form a limiting space 105 with the side wall of the housing assembly 11. The first support plate 121, disposed on the housing assembly 11, provides a stable mounting base for the entire limiting handle 12. It firmly connects the limiting handle 12 to the housing assembly 11, ensuring the stability of the iron. The second support plate 122, together with the first support plate 121 and the side wall of the housing assembly 11, constitutes part of the limiting space 105, enhancing the limiting effect of the limiting space 105. The limiting block 123 is set on the second support plate 122, which further refines the limiting function of the limiting space 105.
[0053] like Figure 8 , Figure 9 , Figure 10 and Figure 11As shown, in addition to the features of the above embodiments, this embodiment further defines: the housing assembly 11 includes a bottom housing assembly 111, a mounting housing 112, a water tank housing 113, and a top cover assembly 114. The mounting housing 112 is disposed on the bottom housing assembly 111, and the mounting housing 112 and the bottom housing assembly 111 enclose a mounting cavity 102. The water tank housing 113 is disposed on the mounting housing 112, and the water tank housing 113 and the mounting housing 112 enclose a receiving cavity 101. The water tank housing 113 has a water inlet 104. The top cover assembly 114 is disposed on the water tank housing 113 and has a limiting groove 103. The bottom housing assembly 111 serves as the bottom support for the entire ironing machine platform, providing a stable foundation for the equipment. The mounting housing 112 is disposed on the bottom housing assembly 111, and the two enclose the mounting cavity 102, providing a dedicated mounting area for components such as the pump assembly 3 that require mounting. The presence of the mounting cavity 102 allows these components to be installed in an orderly manner, avoiding mutual interference between components and improving the rationality and compactness of the internal layout of the equipment. Simultaneously, the combination of the bottom shell assembly 111 and the mounting shell 112 enhances the structural strength of the base housing 1, enabling it to withstand the vibrations and pressures generated by components such as the pump body assembly 3 during operation, ensuring the stability and reliability of the equipment. The independent setting of the mounting cavity 102 makes maintenance and repair of components such as the pump body assembly 3 installed within it more convenient. The water tank shell 113 is mounted on the mounting shell 112, and the two together form the receiving cavity 101, providing space for the ironing machine to store water. The rational design of the receiving cavity 101 ensures sufficient water supply for the ironing process, meeting the needs of users in different usage scenarios. The housing assembly 11 consists of the bottom shell assembly 111, the mounting shell 112, the water tank shell 113, and the top cover assembly 114. This modular design makes the assembly and production of the equipment more efficient. Each component can be produced and processed independently, and then combined into a complete base housing 1 through simple installation and connection.
[0054] like Figure 9 and Figure 10As shown, in addition to the features of the above embodiments, this embodiment further defines: the mounting shell 112 includes a mounting base plate 1121 and a liquid outlet pipe 1122. The mounting base plate 1121 is sandwiched between the bottom shell assembly 111 and the water tank shell 113. The liquid outlet pipe 1122 is disposed on the mounting base plate 1121 and extends into the mounting cavity 102. The bottom shell assembly 111 includes a base plate 1111 and a liquid passage pipe 1112. The liquid passage pipe 1112 is disposed on the base plate 1111, and the liquid outlet pipe 1122 extends into the liquid passage pipe 1112. The pump body assembly 3 communicates with the liquid passage pipe 1112. The mounting base plate 1121 effectively isolates the mounting cavity 102 and the receiving cavity 101, preventing mutual interference between the two functional areas. At the same time, it provides stable support for the water tank shell 113, ensuring the shape and sealing of the receiving cavity 101. With water stored in the receiving cavity 101, the mounting base plate 1121 can withstand the weight of the water, preventing the water tank shell 113 from deforming due to uneven stress, thus ensuring the normal water storage function of the receiving cavity 101 and providing a continuous water supply for the ironing process. The outlet pipe 1122 is located on the mounting base plate 1121 and extends into the mounting cavity 102. Its function is to accurately deliver the water in the receiving cavity 101 to the pump assembly 3. When the iron is working, water flows from the receiving cavity 101 to the pump assembly 3 through the outlet pipe 1122. The diameter and position design of the outlet pipe 1122 ensures stable water flow and velocity, meeting the water intake requirements of the pump assembly 3. For example, by rationally designing the diameter of the outlet pipe 1122, the water flow can be controlled, allowing the pump assembly 3 to convert an appropriate amount of water into steam for ironing, thereby ensuring the uniformity and stability of the ironing effect. The base plate 1111, as the foundation of the base shell assembly 111, provides stable support for the entire base shell 1. The liquid transfer pipe 1112 is installed on the base plate 1111 and cooperates with the liquid outlet pipe 1122 to guide water from the liquid outlet pipe 1122 to the pump body assembly 3. The presence of the liquid transfer pipe 1112 ensures that the pump body assembly 3 can stably obtain a water source.
[0055] like Figure 10 and Figure 11As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the housing assembly 11 also includes a sealing ring 115, which is sandwiched between the liquid outlet pipe 1122 and the liquid passage pipe 1112. The sealing ring 115 has a notch, which is positioned opposite to the outlet of the liquid passage pipe 1112. By sandwiching the sealing ring 115 between the liquid outlet pipe 1122 and the liquid passage pipe 1112, its primary function is to ensure the sealing of the connection between the two. When the ironing machine is working, water flows from the liquid outlet pipe 1122 through the liquid passage pipe 1112 to the pump body assembly 3. If the connection is not sealed well, water may leak into other areas inside the equipment, which will not only waste water resources but may also damage the electronic components or other parts inside the equipment. The presence of the sealing ring 115 effectively fills the gap between the liquid outlet pipe 1122 and the liquid passage pipe 1112, forming a reliable sealing barrier to prevent water leakage and ensure the normal operation of the equipment and the dryness and safety of the internal environment.
[0056] like Figure 10 and Figure 11 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the housing assembly 11 also includes an induction wire 116, which is sandwiched between the water tank housing 113 and the mounting housing 112, and surrounds the receiving cavity 101. By fusion-connecting the induction wire 116 sandwiched between the water tank housing 113 and the mounting housing 112, and surrounding the receiving cavity 101, the gap between the two can be effectively filled. During the operation of the ironing machine, the receiving cavity 101 stores water for ironing. If the seal is not good, water may seep out from the gaps, which not only wastes water resources but may also damage other components inside the equipment. After the induction wire 116 is fused, it forms a reliable sealing barrier between the water tank housing 113 and the mounting housing 112, ensuring that the water in the receiving cavity 101 does not leak, thus ensuring the normal operation of the equipment and the dryness of the internal environment.
[0057] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further includes a locking member 5. A limiting piece is provided on one side of the limiting groove 103, and an opening is provided on the other side of the limiting groove 103. The locking member 5 is disposed on the base housing 1, and a portion of the locking member 5 can move at the opening. When the locking member 5 moves, it can move towards or away from the limiting piece. Because the limiting groove 103 has a limiting piece on one side and an opening on the other side, and the locking member 5 is disposed on the base housing 1, a portion of which can move at the opening and towards or away from the limiting piece, when the ironing unit is placed in the limiting groove 103, the locking member 5 is moved towards the limiting piece and abuts against the ironing unit, preventing the ironing unit from moving. Moving the locking member 5 away from the limiting piece unlocks the ironing unit.
[0058] like Figure 7As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the control component 4 includes a control board 41 and a circuit board 42, both of which are mounted on the base housing 1. The control board 41, mounted on the base housing 1, provides a direct and convenient operating interface for the user. Users can easily set and adjust various functions of the ironing machine using buttons, knobs, displays, and other operating elements on the control board 41. The circuit board 42, mounted on the base housing 1, is responsible for precise circuit control of various electrical components of the ironing machine.
[0059] Example 2
[0060] like Figure 1 , Figures 2 to 3 As shown, this embodiment discloses an ironing machine, including:
[0061] The ironing machine table body 100 mentioned above;
[0062] The ironing main unit 200 is detachably mounted on the ironing machine platform 100. The ironing main unit 200 is connected to the pump assembly 3 and electrically connected to the ironing machine platform 100.
[0063] The second aspect of this application discloses an ironing machine, in which an ironing main unit 200 is connected to a pump assembly 3, which stably delivers water from a receiving cavity 101 to the ironing main unit 200. During ironing, the ironing main unit 200 uses this water to generate steam for ironing clothes. Since the pump assembly 3 is precisely controlled by a control component 4 of the ironing machine platform 100, it can be adjusted according to the working needs of the ironing main unit 200, ensuring that the ironing main unit 200 continuously receives an appropriate amount of water, thereby generating stable and sufficient steam. The ironing main unit 200 is detachably mounted on the ironing machine platform 100, allowing for convenient operation of the ironing main unit 200.
[0064] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0065] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. An ironing board body, characterized by, The ironing machine body comprises: A base shell (1) is provided with a containing cavity (101) and a mounting cavity (102), the containing cavity (101) is separated from the mounting cavity (102), a limiting groove (103) is arranged on the base shell (1), and a water inlet (104) in communication with the containing cavity (101) is formed in the base shell (1); A cover assembly (2) is rotationally arranged on the base shell (1), the cover assembly (2) is located at the water inlet (104), and the cover assembly (2) can open or close the water inlet (104) when rotating; A pump body assembly (3) is arranged on the base shell (1) and located in the mounting cavity (102), and the pump body assembly (3) is in communication with the containing cavity (101); A control assembly (4) is arranged on the base shell (1), and the control assembly (4) is electrically connected with the pump body assembly (3).
2. The ironing station according to claim 1, characterized in that The base shell (1) comprises a shell assembly (11) and a limiting handle (12), the limiting handle (12) is arranged on the shell assembly (11), and a limiting space (105) is formed between the limiting handle (12) and the shell assembly (11).
3. The ironing station according to claim 2, characterized in that The limiting handle (12) comprises a first supporting plate (121), a second supporting plate (122) and a limiting block (123), the first supporting plate (121) is arranged on the shell assembly (11), the second supporting plate (122) is arranged on the first supporting plate (121), the limiting block (123) is arranged on the second supporting plate (122), and the first supporting plate (121), the second supporting plate (122) and the limiting block (123) form the limiting space (105) with the side wall of the shell assembly (11).
4. The ironing station according to claim 2, characterized in that, The shell assembly (11) comprises a bottom shell assembly (111), a mounting shell (112), a water tank shell (113) and a top cover assembly (114), the mounting shell (112) is arranged on the bottom shell assembly (111), the mounting shell (112) and the bottom shell assembly (111) form the mounting cavity (102), the water tank shell (113) is arranged on the mounting shell (112), the water tank shell (113) and the mounting shell (112) form the containing cavity (101), the water tank shell (113) is provided with the water inlet (104), and the top cover assembly (114) is arranged on the water tank shell (113).
5. The ironing station according to claim 4, characterized in that, The mounting shell (112) comprises a mounting bottom plate (1121) and a liquid outlet pipe (1122), the mounting bottom plate (1121) is clamped between the bottom shell assembly (111) and the water tank shell (113), the liquid outlet pipe (1122) is arranged on the mounting bottom plate (1121) and extends into the mounting cavity (102), the bottom shell assembly (111) comprises a bottom plate (1111) and a liquid passing pipe (1112), the liquid passing pipe (1112) is arranged on the bottom plate (1111), the liquid outlet pipe (1122) extends into the liquid passing pipe (1112), and the pump body assembly (3) communicates with the liquid passing pipe (1112).
6. The ironing station according to claim 5, characterized in that, The shell assembly (11) further comprises a sealing ring (115), the sealing ring (115) is clamped between the liquid outlet pipe (1122) and the liquid passing pipe (1112), the sealing ring (115) is provided with a notch, and the notch is arranged opposite to the outlet of the liquid passing pipe (1112).
7. The ironing station according to claim 4, characterized in that, The shell assembly (11) further comprises an induction filament (116), the induction filament (116) is clamped between the water tank shell (113) and the mounting shell (112), the induction filament (116) surrounds the containing cavity (101), and the induction filament (116) is fusion connected with the water tank shell (113) and the mounting shell (112).
8. The ironing station according to claim 1, characterized in that Further comprising a locking piece (5), one side of the limiting groove (103) is provided with a limiting piece, the other side of the limiting groove (103) is provided with an opening, the locking piece (5) is arranged on the base shell (1), part of the locking piece (5) can move at the opening, and the locking piece (5) can move towards or away from the limiting piece when moving.
9. The ironing station according to claim 1, characterized in that, The control assembly (4) comprises a control plate (41) and a circuit board (42), and the control plate (41) and the circuit board (42) are arranged on the base shell (1).
10. An iron, characterized in that The ironing machine comprises: The ironing machine base (100) of any one of claims 1 to 9; An ironing main machine (200) is detachably arranged on the ironing machine base (100), the ironing main machine (200) communicates with the pump body assembly (3), and the ironing main machine (200) is electrically connected with the ironing machine base (100).