Assemblable aromatherapy structure and aromatherapy iron
By using interference fit design of positioning blocks and tooling, combined with a dual filter chamber structure, the assembly problem of aromatherapy structure in aromatherapy ironing machine is solved, realizing a stable connection of aromatherapy components and a scientific design of liquid flow path, thereby improving production efficiency and ironing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG WANMO TECH CO LTD
- Filing Date
- 2025-07-15
- Publication Date
- 2026-05-29
AI Technical Summary
The aromatherapy structure is difficult to assemble inside the aromatherapy ironing machine, resulting in low production efficiency, increased labor and time costs, and problems such as loosening and leakage are prone to occur, affecting the normal flow path of the aromatherapy liquid and causing uneven aromatherapy effect.
The design employs an interference fit of positioning blocks, first tooling, and second tooling, combined with the dual-chamber structure of the filter assembly, to ensure a stable connection between the aromatherapy component and the filter assembly, and to construct a scientific liquid flow path.
It improves production efficiency, reduces assembly difficulty and error rate, ensures the stability and sealing of aromatherapy components, guarantees the uniform release of aromatherapy liquid, and enhances the ironing experience.
Smart Images

Figure CN224299666U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electrical appliances, and in particular to an assemblable aromatherapy structure and an aromatherapy ironing machine. Background Technology
[0002] In existing technologies, it is difficult to assemble the aromatherapy structure inside the aromatherapy ironing machine, resulting in low production efficiency, increased labor and time costs, and even improper installation of parts due to the high difficulty of operation. This can cause the interference fit between the aromatherapy component and the filter component to fail, resulting in loosening, leakage and other problems. This affects the normal flow path of the aromatherapy liquid, causing the aromatherapy block to not fully blend with the liquid, which in turn results in insufficient or uneven fragrance concentration during ironing and reduces the aromatherapy effect. Utility Model Content
[0003] Therefore, it is necessary to provide an assemblable aromatherapy structure and an aromatherapy ironing machine to address the problem of the difficulty in assembling aromatherapy structures inside aromatherapy ironing machines.
[0004] An assemblable aromatherapy structure includes: a filter assembly having a first filter chamber and a second filter chamber; a positioning block disposed on the filter assembly and located in the second filter chamber; an aromatherapy assembly disposed on the filter assembly and located in the second filter chamber; a first tooling detachably disposed on the filter assembly; and a second tooling detachably disposed on the filter assembly, wherein the first tooling and the second tooling are used to interference fit the aromatherapy assembly onto the filter assembly.
[0005] The above discloses an assemblable aromatherapy structure for use in an aromatherapy ironing machine. The positioning block, the first fixture, and the second fixture provide reliable assurance for the assembly of the aromatherapy component and the filter component. The interference fit ensures that the aromatherapy component is securely mounted on the filter component. This connection method not only ensures the tightness of the structure and effectively prevents the aromatherapy component from loosening or falling off during use, but also ensures the overall stability of the aromatherapy structure. At the same time, the interference fit design creates a good sealing effect, avoiding liquid leakage and ensuring that the aromatherapy liquid flows in the designated water path, laying the foundation for the full interaction between water and the aromatherapy block. Especially in the case of frequent movement and vibration of the aromatherapy ironing machine, the stability of the interference fit ensures that the aromatherapy structure always works normally, avoiding the impact of component displacement on the aromatherapy effect. The setting of the first and second filter chambers in the filter component, as well as the separation of the aromatherapy component from the second filter chamber, constructs a scientific and reasonable liquid flow path. The liquid first enters the first filter chamber for preliminary filtration to remove impurities, then flows into the second filter chamber, and then enters the aromatherapy chamber through the aromatherapy inlet to contact the aromatherapy block. The aromatherapy chamber is specifically designed to hold the aromatherapy blocks, providing ample space for their complete blending. During this process, the active ingredients in the aromatherapy blocks dissolve fully in the liquid. Afterward, the liquid mixed with the aromatherapy components is discharged, completing the entire blending process with the aromatherapy blocks. This interconnected water channel structure allows for thorough material exchange between the liquid and the aromatherapy blocks within a 49*16.6*14.8mm space, ensuring the aromatherapy liquid fully absorbs the fragrance components from the blocks. When the aromatherapy iron is in operation, the steam containing rich aromatherapy components evenly penetrates the clothing fibers during the ironing process, effectively removing odors and leaving clothes with a pleasant fragrance, enhancing the ironing experience.
[0006] In one embodiment, the first tooling has at least a first assembly position relative to the aromatherapy component, and the second tooling has at least a second assembly position relative to the aromatherapy component. The aromatherapy component includes a first mounting member and a second mounting member. When the first tooling is in the first assembly position, the second tooling is disassembled from the filter component, and the first tooling interference-fits the first mounting member to the filter component. When the second tooling is in the second assembly position, the first tooling is disassembled from the filter component, and the second tooling interference-fits the second mounting member to the filter component. The first mounting member and the second mounting member are arranged opposite to each other and cooperate with the filter component to form the aromatherapy chamber. By utilizing the interference fit of the first tooling and the second tooling corresponding to the first mounting member and the second mounting member respectively, and adopting a step-by-step installation method, the assembly difficulty is greatly reduced. Compared to assembling the entire complex aromatherapy component at once, this component assembly mode allows operators to more accurately control the installation position and force of each component, avoiding assembly difficulties caused by limited space and component interference during overall assembly, significantly improving production efficiency, reducing the error rate during assembly, reducing component damage caused by improper installation, and saving production costs. The first and second mounting components are positioned opposite each other and cooperate with the filter assembly to form the aromatherapy chamber. This design uses two tooling fixtures to interference fit the corresponding components, ensuring a tight connection between all parts of the aromatherapy chamber and maintaining a stable shape and spatial structure during use. Even when the aromatherapy iron operates under complex conditions such as high-frequency vibration and continuous high temperature, the aromatherapy chamber is not prone to deformation or cracking, ensuring that the aromatherapy block can be stably stored in the chamber and that the liquid can smoothly contact the aromatherapy block, thereby ensuring the stable release of the aroma components in the aromatherapy liquid and maintaining the continuous and efficient operation of the aromatherapy iron.
[0007] In one embodiment, the first tooling includes a first push block and a first fixing block. The first fixing block is disposed on the first push block, and one side of the first fixing block is recessed and arc-shaped. When the first tooling is in the first assembly position, the first fixing block abuts against the first mounting component. By disposing the first fixing block on the first push block, the first push block acts as a force-applying and guiding element. By pushing the first push block, the operator can accurately transmit the force to the first fixing block, conveniently and quickly pressing the first mounting component into the filter assembly to complete the interference fit. The special design of the first fixing block having one side recessed and arc-shaped in the aromatherapy structure assembly process of the aromatherapy ironing machine cleverly solves the problem of the first tooling being difficult to remove after assembly due to obstruction by the second mounting component. The arc-shaped recess provides a slanted or arc-shaped exit space for disassembling the first tooling. When it is necessary to disassemble the first tooling, the operator can use this arc-shaped notch to easily separate the first tooling from the filter assembly at a specific angle without worrying about interference from the second mounting component.
[0008] In one embodiment, the second tooling includes a second push block and a second fixing block. The second fixing block is disposed on the second push block. When the second tooling is in the second assembly position, the second fixing block abuts against the second mounting component. By disposing the second fixing block on the second push block, the operator can precisely transmit force to the second fixing block by manipulating the second push block, conveniently and quickly pressing the second mounting component into the filter assembly, forming a complete aromatherapy chamber together with the first mounting component. Compared to manual operation or using simple tools, the second push block and the second fixing block ensure uniform force application, avoiding deformation or damage to the second mounting component due to excessive local force, thereby improving assembly quality.
[0009] In one embodiment, the aromatherapy component includes a first mounting member, a connector, and a second mounting member. One end of the connector is disposed on the first mounting member, and the second mounting member is disposed on the other end of the connector. The first and second mounting members are interference-fitted onto the filter assembly. The first mounting member cooperates with the positioning block to form the aromatherapy outlet, and the second mounting member has the aromatherapy inlet. The first, second, and filter assemblies cooperate to form the aromatherapy chamber. By utilizing the aromatherapy inlet of the second mounting member and the aromatherapy outlet formed by the cooperation of the first mounting member and the positioning block, a scientifically ordered liquid transmission channel is constructed, echoing the structural design of the connector and the filter assembly. The liquid enters the aromatherapy chamber through the aromatherapy inlet, fully integrates with the aromatherapy block, and then flows out through the aromatherapy outlet. The entire process is smooth and controllable. This precise path design avoids disorderly flow or leakage of liquid within the chamber, ensuring that every drop of liquid fully absorbs the aroma components of the aromatherapy block and is then evenly distributed onto the clothing during the ironing process, improving the quality and stability of the aromatherapy effect. The interference fit between the first mounting component, connector, and second mounting component and the filter assembly forms a tight and stable connection. This high-strength interference fit ensures that the aromatherapy assembly maintains its structural integrity even under complex operating conditions such as frequent vibrations and high-temperature steam impacts from the aromatherapy iron, preventing components from loosening, falling off, or deforming. Simultaneously, the connector, acting as a bridge between the first and second mounting components, not only enhances the overall structural continuity but also disperses external forces to a certain extent, further improving the aromatherapy assembly's impact resistance, ensuring long-term stable operation of the aromatherapy function, and extending the service life of the aromatherapy iron.
[0010] In one embodiment, the first mounting component also has a notch, which, in conjunction with the positioning block, forms the aromatherapy outlet. By utilizing the notch in the first mounting component to form the aromatherapy outlet, the performance and user experience of the device are significantly improved. The combination of the notch and the positioning block constitutes a precise liquid outflow channel. After the aromatherapy liquid is fully integrated with the aromatherapy block within the aromatherapy chamber, the notch guides the mixed liquid to flow orderly towards the aromatherapy outlet, preventing liquid stagnation or disordered flow within the chamber. By specifically designing the shape and size of the notch, the outflow speed and flow rate of the liquid can be precisely controlled, ensuring that the aromatherapy liquid enters the outlet chamber at an appropriate rate, thereby evenly releasing the fragrance during ironing. This ensures the aromatherapy effect while avoiding waste due to excessively fast outflow or reduced fragrance concentration due to excessively slow outflow. Simultaneously, the notch provides a clear installation marker and positioning reference for the cooperation between the first mounting component and the positioning block. During assembly, operators can quickly and accurately install the first mounting component to the predetermined position based on the fit between the notch and the positioning block, reducing assembly difficulty and improving assembly efficiency. At the same time, this combination method makes the connection between the first mounting component and the positioning block tighter, enhances the stability of the aromatherapy component structure, effectively prevents the aromatherapy outlet from being blocked or the liquid from leaking due to the relative displacement of the components, and ensures the stable operation of the aromatherapy system.
[0011] In one embodiment, the first mounting component, the connector, and the second mounting component are integrally formed. By designing the first mounting component, connector, and second mounting component as an integral unit, the number of assembly steps is significantly reduced, and the probability of errors is greatly decreased. Traditional split structures require the separate installation of each component, and each component may be installed backwards or misaligned. Multiple steps further increase the probability of assembly errors. In contrast, the integrally formed aromatherapy component combines the three components into a single unit. Operators only need to focus on the installation and fit of the whole with the filter component, eliminating the need to repeatedly check the orientation and positional relationships between individual components. This effectively avoids confusion caused by cumbersome steps, simplifies the assembly process, and improves assembly accuracy.
[0012] In one embodiment, the filter assembly includes a filter housing and a rear cover, the rear cover being detachable from the filter housing. A positioning block is disposed on the filter housing. The filter housing has a first filter chamber and a second filter chamber. When the rear cover is removed from the filter housing, the first and second toolings interference-fit the aromatherapy component onto the filter housing, positioning it within the second filter chamber. By making the rear cover detachable from the filter housing, ample operating space is provided for the installation of the aromatherapy component. During assembly, after removing the rear cover from the filter housing, the second filter chamber is open. At this time, the first and second toolings are used to interference-fit the aromatherapy component, allowing the operator to clearly observe and operate precisely, avoiding assembly difficulties or errors due to limited space. This method of removing the rear cover before assembling the aromatherapy component significantly improves assembly efficiency and reduces manual operation difficulty compared to assembly in a closed space. It also reduces the risk of damage to components due to inconvenient operation, ensuring that the aromatherapy component can be accurately and securely installed on the filter housing. Simultaneously, the detachable structure significantly improves maintenance convenience. When a malfunction occurs in the aromatherapy unit or filter chamber, simply removing the back cover quickly exposes the internal structure, making it convenient for maintenance personnel to inspect, clean, or replace components such as the first filter chamber, second filter chamber, and aromatherapy unit.
[0013] In one embodiment, the filter housing includes a main housing and a partition plate. The partition plate is disposed on the main housing, and the first filter chamber and the second filter chamber are located on opposite sides of the partition plate. One end of the aromatherapy component is interference-fitted with the main housing, and the other end of the aromatherapy component is interference-fitted with the partition plate. By using the partition plate to divide the interior of the main housing into a first filter chamber and a second filter chamber, the liquid processing is ordered and refined. The first filter chamber, as the initial treatment area for the liquid, can perform preliminary filtration of the incoming liquid, removing larger particulate impurities to prevent them from entering the subsequent aromatherapy process and affecting the aromatherapy effect or clogging the pipes. The second filter chamber focuses on the storage of the aromatherapy liquid and the fusion of aromatherapy components, providing a stable working environment for the aromatherapy component. This clear functional zoning makes the liquid flow process within the filter component distinct, effectively improving the liquid processing efficiency and the overall performance of the aromatherapy system. The interference fit between one end of the aromatherapy component and the main housing, and the interference fit between the other end and the partition plate, greatly enhances the installation firmness of the aromatherapy component. Compared to using a single component, the double-fixation design constrains the aromatherapy unit in multiple directions, better resisting external forces such as vibration and shaking generated during the operation of the aromatherapy iron, preventing loosening or displacement. At the same time, this robust connection method also ensures the seal between the aromatherapy unit and the filter housing, preventing liquid leakage and ensuring the aromatherapy liquid flows along the predetermined path, maintaining the stable operation of the aromatherapy system.
[0014] The second aspect of this application discloses an assemblable aromatherapy structure, the assemblable aromatherapy structure comprising: a filter assembly having a first filter chamber and a second filter chamber; a positioning block disposed on the filter assembly and located in the second filter chamber; and an aromatherapy assembly disposed on the filter assembly and located in the second filter chamber.
[0015] The second aspect disclosed above discloses an assemblable aromatherapy structure. The filter assembly achieves graded liquid treatment through the setting of a first filter chamber and a second filter chamber. The first filter chamber can perform preliminary filtration on the incoming liquid to remove impurities to avoid clogging subsequent structures, while the second filter chamber provides a stable working space for the aromatherapy assembly. The positioning block in the second filter chamber provides precise positioning for the installation of the aromatherapy assembly, ensuring accurate matching between the aromatherapy assembly and the filter assembly and ensuring smooth liquid flow. The aromatherapy assembly is set in the second filter chamber, which can not only cooperate with the positioning block to form a reasonable liquid inlet and outlet structure, allowing the liquid to enter smoothly and fully contact and blend with the aromatherapy block, but also achieve the stability of the overall structure through assembly with the filter assembly. The three work together to efficiently complete liquid filtration, aroma blending and stable transmission in the aromatherapy ironing machine, providing the equipment with continuous and stable aromatherapy steam and improving the ironing experience.
[0016] In one embodiment, the aromatherapy component includes a first mounting member, a connector, and a second mounting member. One end of the connector is disposed on the first mounting member, and the second mounting member is disposed on the other end of the connector. The first and second mounting members are interference-fitted onto the filter assembly. The first mounting member cooperates with the positioning block to form an aromatherapy outlet, and the second mounting member has an aromatherapy inlet. The first, second, and filter components cooperate to form an aromatherapy chamber. By utilizing the aromatherapy inlet of the second mounting member and the aromatherapy outlet formed by the cooperation of the first mounting member and the positioning block, a scientifically ordered liquid transmission channel is constructed, echoing the structural design of the connector and the filter assembly. The liquid enters the aromatherapy chamber through the aromatherapy inlet, fully integrates with the aromatherapy block, and then flows out through the aromatherapy outlet. The entire process is smooth and controllable. This precise path design avoids disorderly flow or leakage of liquid within the chamber, ensuring that every drop of liquid fully absorbs the aroma components of the aromatherapy block and is then evenly distributed onto the clothing during the ironing process, improving the quality and stability of the aromatherapy effect. The interference fit between the first mounting component, connector, and second mounting component and the filter assembly forms a tight and stable connection. This high-strength interference fit ensures that the aromatherapy assembly maintains its structural integrity even under complex operating conditions such as frequent vibrations and high-temperature steam impacts from the aromatherapy iron, preventing components from loosening, falling off, or deforming. Simultaneously, the connector, acting as a bridge between the first and second mounting components, not only enhances the overall structural continuity but also disperses external forces to a certain extent, further improving the aromatherapy assembly's impact resistance, ensuring long-term stable operation of the aromatherapy function, and extending the service life of the aromatherapy iron.
[0017] In one embodiment, the first mounting component also has a notch, which, in conjunction with the positioning block, forms the aromatherapy outlet. By utilizing the notch in the first mounting component to form the aromatherapy outlet, the performance and user experience of the device are significantly improved. The combination of the notch and the positioning block constitutes a precise liquid outflow channel. After the aromatherapy liquid is fully integrated with the aromatherapy block within the aromatherapy chamber, the notch guides the mixed liquid to flow orderly towards the aromatherapy outlet, preventing liquid stagnation or disordered flow within the chamber. By specifically designing the shape and size of the notch, the outflow speed and flow rate of the liquid can be precisely controlled, ensuring that the aromatherapy liquid enters the outlet chamber at an appropriate rate, thereby evenly releasing the fragrance during ironing. This ensures the aromatherapy effect while avoiding waste due to excessively fast outflow or reduced fragrance concentration due to excessively slow outflow. Simultaneously, the notch provides a clear installation marker and positioning reference for the cooperation between the first mounting component and the positioning block. During assembly, operators can quickly and accurately install the first mounting component to the predetermined position based on the fit between the notch and the positioning block, reducing assembly difficulty and improving assembly efficiency. At the same time, this combination method makes the connection between the first mounting component and the positioning block tighter, enhances the stability of the aromatherapy component structure, effectively prevents the aromatherapy outlet from being blocked or the liquid from leaking due to the relative displacement of the components, and ensures the stable operation of the aromatherapy system.
[0018] In one embodiment, the first mounting component, the connector, and the second mounting component are integrally formed. By designing the first mounting component, connector, and second mounting component as an integral unit, the number of assembly steps is significantly reduced, and the probability of errors is greatly decreased. Traditional split structures require the separate installation of each component, and each component may be installed backwards or misaligned. Multiple steps further increase the probability of assembly errors. In contrast, the integrally formed aromatherapy component combines the three components into a single unit. Operators only need to focus on the installation and fit of the whole with the filter component, eliminating the need to repeatedly check the orientation and positional relationships between individual components. This effectively avoids confusion caused by cumbersome steps, simplifies the assembly process, and improves assembly accuracy.
[0019] In one embodiment, the filter assembly includes a filter housing and a rear cover, the rear cover being detachable from the filter housing. A positioning block is disposed on the filter housing. The filter housing has a first filter chamber and a second filter chamber. When the rear cover is removed from the filter housing, the first and second toolings interference-fit the aromatherapy component onto the filter housing, positioning it within the second filter chamber. By making the rear cover detachable from the filter housing, ample operating space is provided for the installation of the aromatherapy component. During assembly, after removing the rear cover from the filter housing, the second filter chamber is open. At this time, the first and second toolings are used to interference-fit the aromatherapy component, allowing the operator to clearly observe and operate precisely, avoiding assembly difficulties or errors due to limited space. This method of removing the rear cover before assembling the aromatherapy component significantly improves assembly efficiency and reduces manual operation difficulty compared to assembly in a closed space. It also reduces the risk of damage to components due to inconvenient operation, ensuring that the aromatherapy component can be accurately and securely installed on the filter housing. Simultaneously, the detachable structure significantly improves maintenance convenience. When a malfunction occurs in the aromatherapy unit or filter chamber, simply removing the back cover quickly exposes the internal structure, making it convenient for maintenance personnel to inspect, clean, or replace components such as the first filter chamber, second filter chamber, and aromatherapy unit.
[0020] In one embodiment, the filter housing includes a main housing and a partition plate. The partition plate is disposed on the main housing, and the first filter chamber and the second filter chamber are located on opposite sides of the partition plate. One end of the aromatherapy component is interference-fitted with the main housing, and the other end of the aromatherapy component is interference-fitted with the partition plate. By using the partition plate to divide the interior of the main housing into a first filter chamber and a second filter chamber, the liquid processing is ordered and refined. The first filter chamber, as the initial treatment area for the liquid, can perform preliminary filtration of the incoming liquid, removing larger particulate impurities to prevent them from entering the subsequent aromatherapy process and affecting the aromatherapy effect or clogging the pipes. The second filter chamber focuses on the storage of the aromatherapy liquid and the fusion of aromatherapy components, providing a stable working environment for the aromatherapy component. This clear functional zoning makes the liquid flow process within the filter component distinct, effectively improving the liquid processing efficiency and the overall performance of the aromatherapy system. The interference fit between one end of the aromatherapy component and the main housing, and the interference fit between the other end and the partition plate, greatly enhances the installation firmness of the aromatherapy component. Compared to using a single component, the double-fixation design constrains the aromatherapy unit in multiple directions, better resisting external forces such as vibration and shaking generated during the operation of the aromatherapy iron, preventing loosening or displacement. At the same time, this robust connection method also ensures the seal between the aromatherapy unit and the filter housing, preventing liquid leakage and ensuring the aromatherapy liquid flows along the predetermined path, maintaining the stable operation of the aromatherapy system.
[0021] A third aspect of this application discloses an aromatherapy ironing machine, comprising: the aforementioned assemblable aromatherapy structure; a water tank assembly, wherein the assemblable aromatherapy structure is disposed on the water tank assembly, the water tank assembly having a water storage chamber, a water tank outlet, and a water tank overflow outlet; a water pump, wherein the water pump has a water pump inlet and a water pump outlet; a heating assembly, wherein the heating assembly has a heating inlet and a heating outlet, and the aromatherapy assembly divides the second filter chamber into a second filter chamber body and an outlet chamber, the aromatherapy assembly having an aromatherapy inlet and an aromatherapy chamber, wherein... The aromatherapy component and the positioning block cooperate to form an aromatherapy outlet. The aromatherapy chamber is used to store the aromatherapy block. The first filter chamber, the second filter chamber body, the aromatherapy inlet, the aromatherapy chamber, the aromatherapy outlet, and the outlet chamber are connected in sequence. The water storage chamber, the water tank outlet, the water tank overflow port, the first filter chamber, the second filter chamber body, the aromatherapy inlet, the aromatherapy chamber, the aromatherapy outlet, the outlet chamber, the water pump inlet, the water pump outlet, the heating inlet, and the heating outlet are connected in sequence.
[0022] The third aspect disclosed above discloses an aromatherapy ironing machine, in which the sequential connection of various components constructs a complete liquid circulation system. The water storage chamber of the water tank component serves as the liquid source, providing the basic water supply for the entire system. The design of the water tank outlet and water tank outlet ensures that the liquid can flow out stably and smoothly transition into the assemblable aromatherapy structure. Within the aromatherapy structure, the first and second filter chambers filter impurities from the liquid. Subsequently, the aromatherapy inlet, aromatherapy chamber, and aromatherapy outlet allow the liquid to fully blend with the aromatherapy block, imparting fragrance to the liquid. The aromatherapy-treated liquid enters the outlet chamber, and is then pressurized and transported through the water pump inlet and outlet, finally entering the heating inlet and outlet of the heating component for heating. This complete and continuous liquid flow path enables the aromatherapy ironing machine to convert ordinary water into high-temperature steam with aromatherapy scents, achieving fully automated operation from basic water supply to aromatherapy treatment, pressurization, and heating vaporization, ensuring that each component performs its function and cooperates efficiently.
[0023] In one embodiment, the water tank assembly includes a water tank body and a connecting support. The connecting support is disposed on the water tank body, and the filter assembly is disposed on the connecting support. The water tank body has the water storage chamber, and the connecting support has the water tank outlet and the water tank through-hole. By utilizing the water tank body and the connecting support, the water tank body focuses on constructing the water storage chamber, providing a large-capacity and stable water storage space to meet the water supply needs of the aromatherapy ironing machine for extended use. Its independent design allows for flexible adjustment of the shape and volume of the water storage chamber according to actual usage scenarios, adapting to different sizes of water tank bodies, and also allows users to intuitively view the water level and perform water addition operations. The connecting support acts as a liquid transmission hub, with the water tank outlet and water tank through-hole precisely controlling the liquid flow rate and direction, ensuring that the liquid in the water storage chamber can be stably and orderly delivered to the filter assembly. This provides a reliable liquid supply foundation for subsequent aromatherapy treatment, heating, and other stages, avoiding problems such as fluctuations in aromatherapy effects or insufficient ironing steam caused by unstable liquid transmission. Attached Figure Description
[0024] Figure 1 A first perspective view of the aromatherapy components;
[0025] Figure 2 This is a second perspective view of the aromatherapy components;
[0026] Figure 3 A 3D view of the filter components;
[0027] Figure 4 This is a first cross-sectional view of the filter assembly;
[0028] Figure 5 This is a second cross-sectional view of the filter assembly;
[0029] Figure 6 This is a third cross-sectional view of the filter assembly;
[0030] Figure 7 for Figure 6 A magnified view of a portion of region A;
[0031] Figure 8 Cross-sectional view of the filter assembly and the first tooling;
[0032] Figure 9 Cross-sectional view of the filter assembly and the second tooling;
[0033] Figure 10 A three-dimensional view of the first tooling;
[0034] Figure 11 This is a 3D view of the second tooling;
[0035] Figure 12 A first-dimensional view of an aromatherapy ironing machine;
[0036] Figure 13 This is the first 3D view of an aromatherapy ironing machine.
[0037] The correspondence between the reference numerals and the component names is as follows:
[0038] 1 Filter assembly, 11 Filter housing, 111 Main housing, 112 Divider plate, 12 Rear cover, 101 First filter chamber, 102 Second filter chamber, 1021 Second filter chamber body, 1022 Liquid outlet chamber.
[0039] 2 positioning blocks;
[0040] 3. Aromatherapy components, 31. First mounting component, 32. Connector, 33. Second mounting component, 301. Aromatherapy inlet, 302. Aromatherapy chamber, 303. Aromatherapy outlet, 304. Notch;
[0041] 4. First tooling; 41. First push block; 42. First fixing block;
[0042] 5 Second tooling, 51 Second push block, 52 Second fixing block;
[0043] 6. Water tank assembly, 61. Water tank body, 62. Connecting support, 601. Water storage chamber, 602. Water tank outlet, 603. Water tank overflow port;
[0044] 7 water pump, 701 water pump inlet, 702 water pump outlet;
[0045] 8 heating components, 801 heating inlet, 802 heating outlet. Detailed Implementation
[0046] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model 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.
[0047] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0048] The following describes some embodiments of the assembleable aromatherapy structure and aromatherapy ironing machine according to the accompanying drawings.
[0049] Example 1
[0050] like Figures 1 to 13As shown, this embodiment discloses an assemblable aromatherapy structure, including: a filter assembly 1, which has a first filter chamber 101 and a second filter chamber 102; a positioning block 2, which is disposed on the filter assembly 1 and located in the second filter chamber 102; an aromatherapy assembly 3, which is disposed on the filter assembly 1 and located in the second filter chamber 102; a first tooling 4, which is detachable from the filter assembly 1; and a second tooling 5, which is detachable from the filter assembly 1. The first tooling 4 and the second tooling 5 are used to interference fit the aromatherapy assembly 3 onto the filter assembly 1.
[0051] This application discloses an assemblable aromatherapy structure for use in an aromatherapy ironing machine. The positioning block 2, the first tooling 4, and the second tooling 5 provide a reliable guarantee for the assembly of the aromatherapy component 3 and the filter component 1. The interference fit ensures that the aromatherapy component 3 is securely mounted on the filter component 1. This connection method not only ensures the tightness of the structure and effectively prevents the aromatherapy component 3 from loosening or falling off during use, but also ensures the overall stability of the aromatherapy structure. At the same time, the interference fit design creates a good sealing effect, avoiding liquid leakage and ensuring that the aromatherapy liquid flows in the designated water path, laying the foundation for the full cooperation between water and the aromatherapy block. Especially in the case of frequent movement and vibration of the aromatherapy ironing machine, the stability of the interference fit ensures that the aromatherapy structure always works normally and avoids the aromatherapy effect being affected by component displacement. The arrangement of the first filter chamber 101 and the second filter chamber 102 in the filter component 1 constructs a scientific and reasonable liquid flow path. The liquid first enters the first filter chamber 101 for preliminary filtration to remove impurities, then flows into the second filter chamber 102, and then enters the aromatherapy chamber 302 through the aromatherapy inlet 301 to contact the aromatherapy block. The aromatherapy chamber 302 is specifically designed to store the aromatherapy block, providing space for the two to fully blend. During this process, the active ingredients of the aromatherapy block can fully dissolve in the liquid. Afterwards, the liquid mixed with the aromatherapy ingredients is discharged through the aromatherapy outlet, completing the entire process of interaction with the aromatherapy block. This sequentially connected water channel structure allows the liquid to fully exchange substances with the aromatherapy block within a 49*16.6*14.8mm space during flow, ensuring that the aromatherapy liquid can fully absorb the fragrance components of the aromatherapy block. When the aromatherapy ironing machine is working, the water vapor containing rich aromatherapy ingredients evenly penetrates the clothing fibers during the ironing process, not only effectively removing odors from clothes but also leaving clothes with a pleasant fragrance, enhancing the ironing experience.
[0052] like Figure 6 , Figure 8 and Figure 9As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first tooling 4 has at least a first assembly position relative to the aromatherapy component 3, and the second tooling 5 has at least a second assembly position relative to the aromatherapy component 3. The aromatherapy component 3 includes a first mounting member 31 and a second mounting member 33. When the first tooling 4 is in the first assembly position, the second tooling 5 is disassembled from the filter component 1, and the first tooling 4 interference-fits the first mounting member 31 to the filter component 1. When the second tooling 5 is in the second assembly position, the first tooling 4 is disassembled from the filter component 1, and the second tooling 5 interference-fits the second mounting member 33 to the filter component 1. The first mounting member 31 and the second mounting member 33 are arranged opposite to each other and cooperate with the filter component 1 to form an aromatherapy chamber 302. By utilizing the interference fit of the first tooling 4 and the second tooling 5 corresponding to the first mounting member 31 and the second mounting member 33 respectively, a step-by-step installation method is adopted, which greatly reduces the assembly difficulty. Compared to assembling the entire complex aromatherapy component 3 at once, this component-based assembly method allows operators to more precisely control the installation position and force of each component, avoiding assembly difficulties caused by limited space and component interference during overall assembly. This significantly improves production efficiency, reduces the error rate during assembly, minimizes component damage due to improper installation, and saves production costs. The first mounting component 31 and the second mounting component 33 are positioned opposite each other and cooperate with the filter component 1 to form the aromatherapy chamber 302. This design uses two tooling fixtures to perform interference fits on the corresponding components, ensuring that all components of the aromatherapy chamber 302 are tightly connected, maintaining a stable shape and spatial structure during use. Even when the aromatherapy ironing machine operates under complex conditions such as high-frequency vibration and continuous high temperature, the aromatherapy chamber 302 is not prone to deformation or cracking, ensuring that the aromatherapy block can be stably stored in the chamber and that the liquid can smoothly contact the aromatherapy block, thereby ensuring the stable release of the aroma components in the aromatherapy liquid and maintaining the continuous and efficient operation of the aromatherapy ironing machine.
[0053] like Figure 8 and Figure 10As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first tooling 4 includes a first push block 41 and a first fixing block 42. The first fixing block 42 is disposed on the first push block 41. One side of the first fixing block 42 is recessed into the interior of the first fixing block 42 and is arc-shaped. When the first tooling 4 is in the first assembly position, the first fixing block 42 abuts against the first mounting member 31. By disposing the first fixing block 42 on the first push block 41, the first push block 41 plays a role in applying force and guiding. By pushing the first push block 41, the operator can accurately transmit the force to the first fixing block 42, conveniently and quickly pressing the first mounting member 31 into the filter assembly 1 to complete the interference fit. The special design of the first fixing block 42, with one side recessed and arc-shaped, cleverly solves the problem of the first fixture 4 being difficult to remove after the first mounting part 31 is blocked by the second mounting part 33 in the assembly process of the aromatherapy structure of the aromatherapy iron. The arc-shaped recessed design provides a slanted or arc-shaped exit space for the disassembly of the first fixture 4. When it is necessary to disassemble the first fixture 4, the operator can use the arc-shaped notch to easily separate the first fixture 4 from the filter assembly 1 at a specific angle without worrying about the interference caused by the second mounting part 33.
[0054] like Figure 9 and Figure 11 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the second tooling 5 includes a second push block 51 and a second fixing block 52. The second fixing block 52 is disposed on the second push block 51. When the second tooling 5 is in the second assembly position, the second fixing block 52 abuts against the second mounting member 33. By disposing of the second fixing block 52 on the second push block 51, the operator can accurately transmit the force to the second fixing block 52 by manipulating the second push block 51, conveniently and quickly pressing the second mounting member 33 into the filter assembly 1, which together with the first mounting member 31 forms a complete aromatherapy chamber 302. Compared to manual operation or using simple tools, the second push block 51 and the second fixing block 52 can ensure uniform force application, avoiding deformation or damage to the second mounting member 33 due to excessive local force, thereby improving assembly quality.
[0055] like Figure 1 , Figure 2 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the aromatherapy component 3 includes a first mounting member 31, a connector 32, and a second mounting member 33. One end of the connector 32 is disposed on the first mounting member 31, and the second mounting member 33 is disposed on the other end of the connector 32. The first mounting member 31 and the second mounting member 33 are interference-fitted onto the filter component 1. The first mounting member 31 cooperates with the positioning block 2 to form an aromatherapy outlet 303, and the second mounting member 33 is provided with an aromatherapy inlet 301. The first mounting member 31, the second mounting member 33, and the filter component 1 cooperate to form an aromatherapy chamber 302. By utilizing the aromatherapy inlet 301 provided by the second mounting member 33 and the aromatherapy outlet 303 formed by cooperating with the first mounting member 31 and the positioning block 2, a scientifically ordered liquid transmission channel is constructed, echoing the structural design of the connector 32 and the filter component 1. The liquid enters the aromatherapy chamber 302 through the aromatherapy inlet 301, fully blends with the aromatherapy block, and then flows out through the aromatherapy outlet 303. The entire process is smooth and controllable. This precise path design avoids disordered flow or leakage of the liquid within the chamber, ensuring that every drop of liquid fully absorbs the aroma components of the aromatherapy block and is then evenly distributed onto the clothing during the ironing process, improving the quality and stability of the aromatherapy effect. The interference fit between the first mounting component 31, the connector 32, and the second mounting component 33 and the filter assembly 1 forms a tight and stable connection. The high-strength connection of the interference fit allows the aromatherapy assembly 3 to maintain its structural integrity even under complex operating conditions such as frequent vibration and high-temperature steam impact of the aromatherapy iron, preventing parts from loosening, falling off, or deforming. At the same time, the connector 32, as a bridge connecting the first mounting component 31 and the second mounting component 33, not only enhances the overall structural continuity but also disperses external forces to a certain extent, further improving the impact resistance of the aromatherapy assembly 3, ensuring long-term stable operation of the aromatherapy function, and extending the service life of the aromatherapy iron.
[0056] like Figure 2 , Figure 6 and Figure 7As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first mounting member 31 is also provided with a notch 304, and the first mounting member 31 uses the notch 304 to cooperate with the positioning block 2 to form an aromatherapy liquid outlet 303. By using the notch 304 of the first mounting member 31 to cooperate with the positioning block 2 to form the aromatherapy liquid outlet 303, the performance and user experience of the device are significantly improved. The combination of the notch 304 and the positioning block 2 constitutes a precise liquid outflow channel. When the aromatherapy liquid is fully mixed with the aromatherapy block in the aromatherapy cavity 302, the notch can guide the mixed liquid to flow orderly to the aromatherapy liquid outlet 303, avoiding liquid stagnation or disorderly flow in the cavity. By specifically designing the shape and size of the notch 304, the outflow speed and flow rate of the liquid can be precisely controlled to ensure that the aromatherapy liquid can enter the outlet cavity 1022 at a suitable rate, thereby evenly dispersing the fragrance during the ironing process, ensuring the aromatherapy effect, and avoiding waste due to excessively fast liquid outflow or affecting the fragrance concentration due to excessively slow liquid outflow. Meanwhile, the presence of notch 304 provides a clear installation marker and positioning reference for the engagement of the first mounting component 31 and the positioning block 2. During assembly, operators can quickly and accurately install the first mounting component 31 into the predetermined position based on the fit between notch 304 and positioning block 2, reducing assembly difficulty and improving assembly efficiency. Furthermore, this engagement method makes the connection between the first mounting component 31 and positioning block 2 tighter, enhancing the stability of the aromatherapy component structure and effectively preventing blockage or liquid leakage at the aromatherapy outlet 303 due to relative displacement of components, ensuring stable operation of the aromatherapy system.
[0057] like Figure 2 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the first mounting component 31, the connecting component 32, and the second mounting component 33 are integrally formed. By designing the first mounting component 31, the connecting component 32, and the second mounting component 33 as an integral unit, the assembly steps are significantly reduced, and the probability of errors is significantly lowered. Traditional split structures require the separate installation of each component, and each component may be installed backwards or misaligned. The multiple steps further increase the probability of assembly errors. However, the integrally formed aromatherapy component 3 combines the three components into a whole. The operator only needs to focus on the installation and fit of the whole with the filter component 1, without having to repeatedly check the orientation and positional relationship between the components. This effectively avoids orientation confusion caused by cumbersome steps, simplifies the assembly process, and improves assembly accuracy.
[0058] like Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the filter assembly 1 includes a filter housing 11 and a rear cover 12, the rear cover 12 is detachable from the filter housing 11, the positioning block 2 is disposed on the filter housing 11, the filter housing 11 is provided with a first filter chamber 101 and a second filter chamber 102, when the rear cover 12 is removed from the filter housing 11, the first tooling 4 and the second tooling 5 interference fit the aromatherapy assembly 3 onto the filter housing 11 and place it in the second filter chamber 102. By making the rear cover 12 detachable from the filter housing 11, sufficient operating space is provided for the installation of the aromatherapy assembly 3. During assembly, after the rear cover 12 is removed from the filter housing 11, the second filter chamber 102 is in an open state. At this time, the aromatherapy assembly 3 is interference fitted using the first tooling 4 and the second tooling 5, allowing the operator to clearly observe and operate accurately, avoiding assembly difficulties or errors due to narrow space. This method of disassembling the back cover before assembling the aromatherapy component 3 significantly improves assembly efficiency and reduces the difficulty of manual operation compared to assembly in a closed space. It also reduces the risk of damage to components due to inconvenient handling, ensuring that the aromatherapy component 3 can be accurately and securely installed on the filter housing 11. Simultaneously, the detachable structure significantly improves maintenance convenience. When a malfunction occurs in the aromatherapy component 3 or the filter chamber, simply removing the back cover 12 quickly exposes the internal structure, facilitating maintenance personnel to inspect, clean, or replace components such as the first filter chamber 101, the second filter chamber 102, and the aromatherapy component 3.
[0059] like Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the filter housing 11 includes a main housing 111 and a partition plate 112. The partition plate 112 is disposed on the main housing 111, and the first filter chamber 101 and the second filter chamber 102 are respectively disposed on both sides of the partition plate 112. One end of the aromatherapy component 3 is interference-fitted with the main housing 111, and the other end of the aromatherapy component 3 is interference-fitted with the partition plate 112. By using the partition plate 112 to divide the interior of the main housing 111 into the first filter chamber 101 and the second filter chamber 102, the orderly and refined liquid processing is achieved. The first filter chamber 101, as the initial processing area for the liquid, can perform preliminary filtration on the incoming liquid, removing larger particulate impurities and preventing them from entering the subsequent aromatherapy stage and affecting the aromatherapy effect or clogging the pipes; while the second filter chamber 102 focuses on the storage of aromatherapy liquid and the fusion of aromatherapy components, providing a stable working environment for the aromatherapy component 3. This clear functional division makes the liquid flow process in the filter component distinct, effectively improving the liquid processing efficiency and the overall performance of the aromatherapy system. One end of the aromatherapy component 3 is press-fitted with the main housing 111, and the other end is press-fitted with the partition plate 112. This double press-fit greatly enhances the installation stability of the aromatherapy component 3. Compared to fitting with only a single component, the double fixation restrains the aromatherapy component 3 in multiple directions, better resisting the vibration, shaking, and other external forces generated during the operation of the aromatherapy iron, preventing it from loosening or shifting. At the same time, this stable connection method also ensures the sealing between the aromatherapy component 3 and the filter housing 11, preventing liquid leakage and ensuring that the aromatherapy liquid flows along the predetermined path, maintaining the stable operation of the aromatherapy system.
[0060] Example 2
[0061] like Figures 1 to 13 As shown, this embodiment discloses an assemblable aromatherapy structure, including: a filter assembly 1, which has a first filter chamber 101 and a second filter chamber 102; a positioning block 2, which is disposed on the filter assembly 1 and located in the second filter chamber 102; and an aromatherapy assembly 3, which is disposed on the filter assembly 1 and located in the second filter chamber 102.
[0062] The second aspect of this application discloses an assemblable aromatherapy structure. The filter assembly 1 achieves graded liquid treatment through the arrangement of a first filter chamber 101 and a second filter chamber 102. The first filter chamber 101 can perform preliminary filtration on the incoming liquid to remove impurities and avoid clogging subsequent structures. The second filter chamber 102 provides a stable working space for the aromatherapy assembly 3. The positioning block in the second filter chamber 102 provides precise positioning for the installation of the aromatherapy assembly 3, ensuring accurate matching position between the aromatherapy assembly 3 and the filter assembly 1 and ensuring smooth liquid flow path. The aromatherapy assembly 3 is set in the second filter chamber 102, which can not only cooperate with the positioning block 2 to form a reasonable liquid inlet and outlet structure, allowing the liquid to enter smoothly and fully contact and blend with the aromatherapy block, but also achieve overall structural stability through assembly with the filter assembly 1. The three work together to efficiently complete liquid filtration, aroma blending and stable transmission in the aromatherapy ironing machine, providing continuous and stable aromatherapy steam for the equipment and improving the ironing experience.
[0063] like Figure 1 , Figure 2 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the aromatherapy component 3 includes a first mounting member 31, a connector 32, and a second mounting member 33. One end of the connector 32 is disposed on the first mounting member 31, and the second mounting member 33 is disposed on the other end of the connector 32. The first mounting member 31 and the second mounting member 33 are interference-fitted onto the filter component 1. The first mounting member 31 cooperates with the positioning block 2 to form an aromatherapy outlet 303, and the second mounting member 33 is provided with an aromatherapy inlet 301. The first mounting member 31, the second mounting member 33, and the filter component 1 cooperate to form an aromatherapy chamber 302. By utilizing the aromatherapy inlet 301 provided by the second mounting member 33 and the aromatherapy outlet 303 formed by cooperating with the first mounting member 31 and the positioning block 2, a scientifically ordered liquid transmission channel is constructed, echoing the structural design of the connector 32 and the filter component 1. The liquid enters the aromatherapy chamber 302 through the aromatherapy inlet 301, fully blends with the aromatherapy block, and then flows out through the aromatherapy outlet 303. The entire process is smooth and controllable. This precise path design avoids disordered flow or leakage of the liquid within the chamber, ensuring that every drop of liquid fully absorbs the aroma components of the aromatherapy block and is then evenly distributed onto the clothing during the ironing process, improving the quality and stability of the aromatherapy effect. The interference fit between the first mounting component 31, the connector 32, and the second mounting component 33 and the filter assembly 1 forms a tight and stable connection. The high-strength connection of the interference fit allows the aromatherapy assembly 3 to maintain its structural integrity even under complex operating conditions such as frequent vibration and high-temperature steam impact of the aromatherapy iron, preventing parts from loosening, falling off, or deforming. At the same time, the connector 32, as a bridge connecting the first mounting component 31 and the second mounting component 33, not only enhances the overall structural continuity but also disperses external forces to a certain extent, further improving the impact resistance of the aromatherapy assembly 3, ensuring long-term stable operation of the aromatherapy function, and extending the service life of the aromatherapy iron.
[0064] like Figure 2 , Figure 6 and Figure 7As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first mounting member 31 is also provided with a notch 304, and the first mounting member 31 uses the notch 304 to cooperate with the positioning block 2 to form an aromatherapy liquid outlet 303. By using the notch 304 of the first mounting member 31 to cooperate with the positioning block 2 to form the aromatherapy liquid outlet 303, the performance and user experience of the device are significantly improved. The combination of the notch 304 and the positioning block 2 constitutes a precise liquid outflow channel. When the aromatherapy liquid is fully mixed with the aromatherapy block in the aromatherapy cavity 302, the notch can guide the mixed liquid to flow orderly to the aromatherapy liquid outlet 303, avoiding liquid stagnation or disorderly flow in the cavity. By specifically designing the shape and size of the notch 304, the outflow speed and flow rate of the liquid can be precisely controlled to ensure that the aromatherapy liquid can enter the outlet cavity 1022 at a suitable rate, thereby evenly dispersing the fragrance during the ironing process, ensuring the aromatherapy effect, and avoiding waste due to excessively fast liquid outflow or affecting the fragrance concentration due to excessively slow liquid outflow. Meanwhile, the presence of notch 304 provides a clear installation marker and positioning reference for the engagement of the first mounting component 31 and the positioning block 2. During assembly, operators can quickly and accurately install the first mounting component 31 into the predetermined position based on the fit between notch 304 and positioning block 2, reducing assembly difficulty and improving assembly efficiency. Furthermore, this engagement method makes the connection between the first mounting component 31 and positioning block 2 tighter, enhancing the stability of the aromatherapy component structure and effectively preventing blockage or liquid leakage at the aromatherapy outlet 303 due to relative displacement of components, ensuring stable operation of the aromatherapy system.
[0065] like Figure 2 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the first mounting component 31, the connecting component 32, and the second mounting component 33 are integrally formed. By designing the first mounting component 31, the connecting component 32, and the second mounting component 33 as an integral unit, the assembly steps are significantly reduced, and the probability of errors is significantly lowered. Traditional split structures require the separate installation of each component, and each component may be installed backwards or misaligned. The multiple steps further increase the probability of assembly errors. However, the integrally formed aromatherapy component 3 combines the three components into a whole. The operator only needs to focus on the installation and fit of the whole with the filter component 1, without having to repeatedly check the orientation and positional relationship between the components. This effectively avoids orientation confusion caused by cumbersome steps, simplifies the assembly process, and improves assembly accuracy.
[0066] like Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the filter assembly 1 includes a filter housing 11 and a rear cover 12, the rear cover 12 is detachable from the filter housing 11, the positioning block 2 is disposed on the filter housing 11, the filter housing 11 is provided with a first filter chamber 101 and a second filter chamber 102, when the rear cover 12 is removed from the filter housing 11, the first tooling 4 and the second tooling 5 interference fit the aromatherapy assembly 3 onto the filter housing 11 and place it in the second filter chamber 102. By making the rear cover 12 detachable from the filter housing 11, sufficient operating space is provided for the installation of the aromatherapy assembly 3. During assembly, after the rear cover 12 is removed from the filter housing 11, the second filter chamber 102 is in an open state. At this time, the aromatherapy assembly 3 is interference fitted using the first tooling 4 and the second tooling 5, allowing the operator to clearly observe and operate accurately, avoiding assembly difficulties or errors due to narrow space. This method of disassembling the back cover before assembling the aromatherapy component 3 significantly improves assembly efficiency and reduces the difficulty of manual operation compared to assembly in a closed space. It also reduces the risk of damage to components due to inconvenient handling, ensuring that the aromatherapy component 3 can be accurately and securely installed on the filter housing 11. Simultaneously, the detachable structure significantly improves maintenance convenience. When a malfunction occurs in the aromatherapy component 3 or the filter chamber, simply removing the back cover 12 quickly exposes the internal structure, facilitating maintenance personnel to inspect, clean, or replace components such as the first filter chamber 101, the second filter chamber 102, and the aromatherapy component 3.
[0067] like Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the filter housing 11 includes a main housing 111 and a partition plate 112. The partition plate 112 is disposed on the main housing 111, and the first filter chamber 101 and the second filter chamber 102 are respectively disposed on both sides of the partition plate 112. One end of the aromatherapy component 3 is interference-fitted with the main housing 111, and the other end of the aromatherapy component 3 is interference-fitted with the partition plate 112. By using the partition plate 112 to divide the interior of the main housing 111 into the first filter chamber 101 and the second filter chamber 102, the orderly and refined liquid processing is achieved. The first filter chamber 101, as the initial processing area for the liquid, can perform preliminary filtration on the incoming liquid, removing larger particulate impurities and preventing them from entering the subsequent aromatherapy stage and affecting the aromatherapy effect or clogging the pipes; while the second filter chamber 102 focuses on the storage of aromatherapy liquid and the fusion of aromatherapy components, providing a stable working environment for the aromatherapy component 3. This clear functional division makes the liquid flow process in the filter component distinct, effectively improving the liquid processing efficiency and the overall performance of the aromatherapy system. One end of the aromatherapy component 3 is press-fitted with the main housing 111, and the other end is press-fitted with the partition plate 112. This double press-fit greatly enhances the installation stability of the aromatherapy component 3. Compared to fitting with only a single component, the double fixation restrains the aromatherapy component 3 in multiple directions, better resisting the vibration, shaking, and other external forces generated during the operation of the aromatherapy iron, preventing it from loosening or shifting. At the same time, this stable connection method also ensures the sealing between the aromatherapy component 3 and the filter housing 11, preventing liquid leakage and ensuring that the aromatherapy liquid flows along the predetermined path, maintaining the stable operation of the aromatherapy system.
[0068] Example 3
[0069] like Figures 1 to 13As shown, this embodiment discloses an aromatherapy ironing machine, including: the aforementioned assemblable aromatherapy structure; a water tank assembly 6, on which the assemblable aromatherapy structure is disposed, the water tank assembly 6 having a water storage chamber 601, a water tank outlet 602, and a water tank overflow outlet 603; a water pump 7, having a water pump inlet 701 and a water pump outlet 702; a heating assembly 8, having a heating inlet 801 and a heating outlet 802; and an aromatherapy assembly 3 dividing the second filter chamber 102 into a second filter chamber body 1021 and an outlet chamber 1022, the aromatherapy assembly 3 having an aromatherapy inlet 301 and an aromatherapy chamber 302, the aromatherapy... Component 3 and positioning block 2 cooperate to form aromatherapy liquid outlet 303. Aromatherapy cavity 302 is used to store aromatherapy blocks. First filter cavity 101, second filter cavity body 1021, aromatherapy liquid inlet 301, aromatherapy cavity 302, aromatherapy liquid outlet 303 and liquid outlet cavity 1022 are connected in sequence. Water storage cavity 601, water tank outlet 602, water tank overflow 603, first filter cavity 101, second filter cavity body 1021, aromatherapy liquid inlet 301, aromatherapy cavity 302, aromatherapy liquid outlet 303, liquid outlet cavity 1022, water pump inlet 701, water pump outlet 702, heating inlet 801 and heating outlet 802 are connected in sequence.
[0070] The third aspect of this application discloses an aromatherapy ironing machine, in which the sequential connection of various components constructs a complete liquid circulation system. The water storage chamber 601 of the water storage tank assembly 6 serves as the liquid source, providing the basic water source for the entire system. The arrangement of the water tank outlet 602 and water tank outlet 603 ensures that the liquid can flow out stably and smoothly transition into the assemblable aromatherapy structure. Within the aromatherapy structure, the first filter chamber 101 and the second filter chamber body 1021 filter impurities from the liquid. Subsequently, the aromatherapy inlet 301, aromatherapy chamber 302, and aromatherapy outlet 303 fully blend the liquid with the aromatherapy block, imparting fragrance to the liquid. The aromatherapy-treated liquid enters the outlet chamber 1022, and is then pressurized and transported by the water pump inlet 701 and water pump outlet 702 of the water pump 7, finally entering the heating inlet 801 and heating outlet 802 of the heating assembly 8 for heating. This complete, continuous liquid flow path enables the aromatherapy iron to transform ordinary water into high-temperature steam with an aromatherapy scent, achieving fully automated operation from basic water supply to aromatherapy treatment, pressurized delivery, and heating vaporization, ensuring that each component performs its function and works together efficiently.
[0071] like Figure 12As shown, in addition to the features of the above embodiments, this embodiment further defines: the water tank assembly 6 includes a water tank body 61 and a connecting support 62. The connecting support 62 is disposed on the water tank body 61, and the filter assembly 1 is disposed on the connecting support 62. The water tank body 61 has a water storage cavity 601, and the connecting support 62 has a water tank outlet 602 and a water tank inlet 603. By utilizing the water tank body 61 and the connecting support 62, the water tank body 61 focuses on the construction of the water storage cavity 601, providing a large-capacity and stable water storage space to meet the water supply needs of the aromatherapy ironing machine for long-term use. Its independent design allows for flexible adjustment of the shape and volume of the water storage cavity 601 according to actual usage scenarios, adapting to different specifications of the water tank body 61, and also makes it convenient for users to intuitively view the water level and perform water addition operations. The connecting support 62 serves as a liquid transmission hub. The water tank outlet 602 and water tank inlet 603 on it precisely control the liquid flow rate and direction, ensuring that the liquid in the water storage chamber 601 can be stably and orderly transported to the filter component 1. This provides a reliable liquid supply foundation for subsequent aromatherapy treatment, heating and other processes, avoiding problems such as fluctuations in aromatherapy effect or insufficient ironing steam caused by unstable liquid transmission.
[0072] 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.
[0073] 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 assemblable aromatherapy structure, characterized in that, The assemblable aromatherapy structure includes: A filter assembly (1) is provided with a first filter chamber (101) and a second filter chamber (102); Positioning block (2), the positioning block (2) is disposed on the filter assembly (1) and located in the second filter chamber (102); Aromatherapy component (3), wherein the aromatherapy component (3) is disposed on the filter component (1) and located in the second filter chamber (102); The first tooling (4) is detachable from the filter assembly (1); The second tooling (5) is detachable from the filter assembly (1). The first tooling (4) and the second tooling (5) are used to press-fit the aromatherapy component (3) onto the filter assembly (1).
2. The assemblable aromatherapy structure according to claim 1, characterized in that, The first tooling (4) has at least a first assembly position relative to the aromatherapy component (3), and the second tooling (5) has at least a second assembly position relative to the aromatherapy component (3). The aromatherapy component (3) includes a first mounting member (31) and a second mounting member (33). When the first tooling (4) is located in the first assembly position, the second tooling (5) is disassembled from the filter component (1). The first tooling (4) presses the first mounting member (31) onto the filter component (1). When the second tooling (5) is located in the second assembly position, the first tooling (4) is disassembled from the filter component (1), and the second tooling (5) presses the second mounting member (33) onto the filter component (1). The first mounting member (31) and the second mounting member (33) are arranged opposite to each other and cooperate with the filter component (1) to form an aromatherapy chamber (302).
3. The assemblable aromatherapy structure according to claim 2, characterized in that, The first tooling (4) includes a first push block (41) and a first fixing block (42). The first fixing block (42) is disposed on the first push block (41). One side of the first fixing block (42) is recessed into the interior of the first fixing block (42) and is arc-shaped. When the first tooling (4) is located in the first assembly position, the first fixing block (42) abuts against the first mounting part (31). And / or the second tooling (5) includes a second push block (51) and a second fixing block (52), the second fixing block (52) is disposed on the second push block (51), and when the second tooling (5) is in the second assembly position, the second fixing block (52) abuts against the second mounting part (33).
4. An assemblable aromatherapy structure, characterized in that, The assemblable aromatherapy structure includes: A filter assembly (1) is provided with a first filter chamber (101) and a second filter chamber (102); Positioning block (2), the positioning block (2) is disposed on the filter assembly (1) and located in the second filter chamber (102); Aromatherapy component (3), which is disposed on the filter component (1) and located in the second filter chamber (102).
5. The assemblable aromatherapy structure according to any one of claims 1 to 4, characterized in that, The aromatherapy component (3) includes a first mounting member (31), a connector (32), and a second mounting member (33). One end of the connector (32) is disposed on the first mounting member (31), and the second mounting member (33) is disposed on the other end of the connector (32). The first mounting member (31) and the second mounting member (33) are interference-fitted onto the filter component (1). The first mounting member (31) cooperates with the positioning block (2) to form an aromatherapy outlet (303). The second mounting member (33) is provided with an aromatherapy inlet (301). The first mounting member (31), the second mounting member (33), and the filter component (1) cooperate to form an aromatherapy chamber (302).
6. The assemblable aromatherapy structure according to claim 5, characterized in that, The first mounting component (31) is also provided with a notch (304), and the first mounting component (31) uses the notch (304) to cooperate with the positioning block (2) to form the aromatherapy liquid outlet (303); And / or the first mounting member (31), the connector (32) and the second mounting member (33) are integrally formed.
7. The assemblable aromatherapy structure according to any one of claims 1 to 4, characterized in that, The filter assembly (1) includes a filter housing (11) and a rear cover (12). The rear cover (12) is detachable from the filter housing (11). The positioning block (2) is disposed on the filter housing (11). The filter housing (11) is provided with a first filter chamber (101) and a second filter chamber (102). When the rear cover (12) is removed from the filter housing (11), the first tooling (4) and the second tooling (5) can press-fit the aromatherapy assembly (3) into the filter housing (11) and place it in the second filter chamber (102).
8. The assemblable aromatherapy structure according to claim 7, characterized in that, The filter housing (11) includes a main housing (111) and a partition plate (112). The partition plate (112) is disposed on the main housing (111). The first filter chamber (101) and the second filter chamber (102) are respectively disposed on both sides of the partition plate (112). One end of the aromatherapy component (3) is press-fitted with the main housing (111), and one end of the aromatherapy component (3) is press-fitted with the partition plate (112).
9. An aromatherapy ironing machine, characterized in that, The aromatherapy ironing machine includes: The assemblable aromatherapy structure according to any one of claims 5 to 6; A water tank assembly (6) is provided, and the assemblable aromatherapy structure is provided on the water tank assembly (6). The water tank assembly (6) is provided with a water storage chamber (601), a water tank outlet (602) and a water tank overflow outlet (603). A water pump (7) is provided with a water pump inlet (701) and a water pump outlet (702); The heating component (8) is provided with a heating inlet (801) and a heating outlet (802). The aromatherapy component (3) divides the second filter chamber (102) into a second filter chamber body (1021) and an outlet chamber (1022). The water storage chamber (601), the water tank outlet (602), the water tank overflow port (603), the first filter chamber (101), the second filter chamber body (1021), the aromatherapy inlet (301), the aromatherapy chamber (302), the aromatherapy outlet (303), the outlet chamber (1022), the water pump inlet (701), the water pump outlet (702), the heating inlet (801), and the heating outlet (802) are connected in sequence.
10. The aromatherapy ironing machine according to claim 9, characterized in that, The water storage tank assembly (6) includes a water tank body (61) and a connecting support (62). The connecting support (62) is disposed on the water tank body (61), and the filter assembly (1) is disposed on the connecting support (62). The water tank body (61) is provided with the water storage chamber (601), and the connecting support (62) is provided with the water tank outlet (602) and the water tank through outlet (603).