Kitchen appliance fixing structure and kitchen appliance
By combining the design of the plug-in part and the connection port with the reinforcing plate, the problem of poor installation stability of traditional kitchen appliances is solved, achieving higher installation stability and safety, simplifying the installation process, and enhancing the reliability of the structure.
Patent Information
- Application Number
- CN202423187311.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Traditional kitchen appliance installation methods rely on nails or screws for fixing, resulting in poor stability and safety hazards, especially when subjected to the weight of the appliance itself and vibration, it is easy to loosen or fall off.
The design employs a plug-in and connector joint, combined with a reinforcing plate. The cooperation between the plug-in and connector joint ensures the stability of the back panel on the installation foundation. The reinforcing plate increases the strength of the back panel, reduces the risk of loosening, and simplifies the installation process.
It improves the installation stability and safety of kitchen appliances, simplifies the installation process, enhances the overall structural strength, reduces the risk of loosening and falling off due to vibration or load changes, and facilitates use and maintenance.
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Figure CN223745086U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of household appliances, and more particularly to the mounting structure of kitchen appliances and kitchen appliances. Background Technology
[0002] In modern kitchen design, the installation and layout of kitchen appliances play a crucial role in the overall aesthetics and practicality of the space. Traditional kitchen appliance installation methods typically involve directly fixing the back panel of the appliance to the wall, a method that usually relies on fasteners such as nails or screws.
[0003] However, this installation method has some significant drawbacks. The stability of directly fixing with nails or screws is poor, which affects the safety of fixing kitchen appliances. Utility Model Content
[0004] This application provides a kitchen appliance fixing structure and a kitchen appliance to solve the problem of poor stability when fixing kitchen appliances.
[0005] In a first aspect, embodiments of this application provide a kitchen appliance fixing structure, including a fixing member, a back plate, and a reinforcing plate;
[0006] The fastener includes a main body and a plug-in portion; the main body is used for fixed connection with the mounting base; the first end of the plug-in portion is connected to the main body.
[0007] The second end of the plug portion is bent relative to the main body, and the plug portion and the surface of the main body facing the back plate form a bearing groove;
[0008] The back plate is provided with a connection port, and the plug-in part is inserted into the connection port so that the upper edge of the connection port abuts against the bottom surface of the bearing groove. The back plate is installed on the mounting base by the fastener.
[0009] The reinforcing plate is disposed on the surface of the back plate opposite to the main body, and the surface of the reinforcing plate opposite to the back plate abuts against the insertion part.
[0010] In some embodiments of this application, the lower edge of the reinforcing plate is located within the bearing groove, and the lower edge of the reinforcing plate abuts against the bottom surface of the bearing groove.
[0011] In some embodiments of this application, the back plate is provided with a bending structure, and at least a portion of the bending structure protrudes away from the main body;
[0012] The connection port is located in the bent structure, the reinforcing plate is attached to the bent structure, and the bottom end of the reinforcing plate is adjacent to the connection port.
[0013] In some embodiments of this application,
[0014] On the side opposite to the main body, the bending structure includes a recess and a protrusion;
[0015] The lower edge of the recess is provided with the connection port, which is inclined relative to the back plate 200, and the insertion direction of the connection port is inclined upward.
[0016] In some embodiments of this application, the number of recesses is two, one of which is located above the protrusion and the other is located below the protrusion.
[0017] In some embodiments of this application, the reinforcing plate is provided with a reinforcing portion, which is connected to the end of the reinforcing plate;
[0018] The reinforcing part is located on the surface of the reinforcing plate opposite to the main body; when the plug-in part is inserted into the connection port, the plug-in part abuts against the reinforcing part.
[0019] In some embodiments of this application, the reinforcing part is integrally formed with the reinforcing plate;
[0020] The first end of the reinforcing part is connected to the end of the reinforcing plate, and the second end of the reinforcing part extends toward the inside of the reinforcing plate.
[0021] In some embodiments of this application, the number of connection ports is multiple, and the multiple connection ports are arranged sequentially at intervals;
[0022] The number of the plug-in parts is multiple, and the multiple plug-in parts are provided with a corresponding multiple connection ports.
[0023] In some embodiments of this application, the main body is provided with a connecting portion, and the main body is fixedly connected to the mounting base through the connecting portion. Secondly, embodiments of this application provide a kitchen appliance, including a kitchen appliance body and the aforementioned kitchen appliance fixing structure connected to the kitchen appliance body.
[0024] The kitchen appliance fixing structure and kitchen appliance provided in this application embodiment ensure the stability of the back panel on the installation foundation through the design of the plug-in part and the connection port. The bearing groove provides additional support and reduces the risk of loosening due to vibration or load changes. The setting of the reinforcing plate increases the strength of the back panel, making the support at the connection stronger and further increasing the stability of the structure. It ensures that it can effectively prevent loosening and falling off when bearing the weight of the appliance and the vibration generated during use. The design of the plug-in part and the connection port also simplifies the installation process, eliminating the need to rely on traditional nails or screws, reducing installation time and complexity. Due to the plug-in fixing method, the use and maintenance of kitchen appliances are more flexible and convenient to handle. Attached Figure Description
[0025] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0026] Figure 1 An exploded view showing the connection between the kitchen appliance fixing structure and the kitchen appliance provided in the embodiments of this application;
[0027] Figure 2 This is an exploded view of the kitchen appliance fixing structure provided in the embodiments of this application;
[0028] Figure 3 for Figure 2 Enlarged view of section B;
[0029] Figure 4 for Figure 2 Enlarged view of section A;
[0030] Figure 5 This is a cross-sectional view of the kitchen appliance fixing structure and the kitchen appliance provided in the embodiments of this application.
[0031] Explanation of reference numerals in the attached figures:
[0032] 100. Fasteners;
[0033] 110. Main body;
[0034] 111. Connecting part;
[0035] 120. Connector;
[0036] 130. Bearing groove;
[0037] 200. Back panel;
[0038] 210. Connection port;
[0039] 220. Bending structure;
[0040] 221. Depression;
[0041] 222. Protrusion;
[0042] 300. Reinforced board;
[0043] 310. Strengthening Department.
[0044] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation
[0045] As described in the background section, traditional kitchen appliance installation methods typically use fasteners such as nails or screws to directly fix the appliance's back panel to the wall. However, this traditional installation method has several drawbacks, particularly in terms of safety and stability. Nail or screw fixing offers poor stability. Due to the variety of wall materials, such as plasterboard, concrete, or brick walls, different materials have varying gripping strength on nails, easily leading to insecure fixing. Especially when subjected to the appliance's own weight and vibrations generated during daily use, the nail-fixed back panel may loosen or even detach, posing a safety hazard to the user. Therefore, existing kitchen appliance installation methods suffer from poor installation stability and low safety. Thus, there is an urgent need for an improved installation solution to enhance the safety and stability of kitchen appliance installations and meet the high standards of modern families for kitchen space.
[0046] In view of this, this application provides a kitchen appliance fixing structure. The design of the plug-in part and the connection port ensures the stability of the back panel on the installation foundation. The bearing groove provides additional support, reducing the risk of loosening due to vibration or load changes. The setting of the reinforcing plate increases the strength of the back panel, making the support at the connection stronger and further increasing the stability of the structure. This ensures that it can effectively prevent loosening and falling off when bearing the weight of the appliance and the vibration generated during use. The design of the plug-in part and the connection port also simplifies the installation process, eliminating the need for traditional nails or screws, reducing installation time and complexity. Due to the plug-in fixing method, the use and maintenance of kitchen appliances are more flexible and convenient to access.
[0047] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.
[0048] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.
[0049] Reference Figures 1-5 This application provides a kitchen appliance fixing structure, including a fixing member 100, a back plate 200 and a reinforcing plate 300;
[0050] The fastener 100 includes a main body 110 and a plug-in portion 120; the main body 110 is used for fixed connection with the mounting base; the first end of the plug-in portion 120 is connected to the main body 110.
[0051] The second end of the plug-in portion 120 is bent relative to the main body 110, and the plug-in portion 120 and the surface of the main body 110 facing the back plate form a bearing groove 130.
[0052] The back plate 200 is provided with a connection port 210, and the plug part 120 is inserted into the connection port 210 so that the upper edge of the connection port 210 abuts against the bottom surface of the bearing groove 130. The back plate 200 is installed on the mounting base by the fastener 100.
[0053] The reinforcing plate 300 is disposed on the surface of the back plate 200 away from the main body 110, and the surface of the reinforcing plate 300 away from the back plate 200 abuts against the insertion part 120.
[0054] It is important to understand that the installation base can refer to a supporting structure such as a wall, cabinet, or ceiling. The main body 110 is used for fixed connection with the installation base to ensure the stability of the entire structure; the plug-in part 120 and the surface of the main body 110 facing the back panel 200 form a bearing groove 130 for supporting and fixing the back panel 200; the upper edge of the connection port 210 abuts against the bottom surface of the bearing groove 130 to ensure that the back panel is firmly installed on the installation base by the fastener 100; the design of the reinforcing plate 300 increases the strength and stability of the back panel 200.
[0055] The design of the plug-in part 120 and the connection port 210 ensures the stability of the back panel on the mounting base. The support groove 130 provides additional support, reducing the risk of loosening due to vibration or load changes. The reinforcement plate 300 increases the strength of the back panel 200, making the connection stronger and further increasing the stability of the structure. This ensures that it can effectively prevent loosening and falling off when bearing the weight of the appliance and the vibration generated during use. The design of the plug-in part 120 and the connection port 210 also simplifies the installation process, eliminating the need for traditional nails or screws and reducing installation time and complexity. Due to the plug-in fixing method, the use and maintenance of kitchen appliances are more flexible and convenient to access.
[0056] The plug-in connection between the connector 120 and the back plate 200 avoids the shortcomings of traditional nail or screw fixing methods, which result in low single-point support and reduces the risk of loosening and falling off. The reinforcement plate 300 strengthens the connection between the fastener 100 and the kitchen appliance, making the connection stronger and further enhancing the stability of the structure. This ensures the safety of the appliance during use, especially when it is subjected to the weight of the appliance and the vibration generated during use, effectively preventing loosening and falling off. Because of the plug-in fixing method, the use and maintenance of kitchen appliances are more flexible and convenient to access.
[0057] In some possible implementations, the lower edge of the reinforcing plate 300 is located within the bearing groove 130, and the lower edge of the reinforcing plate 300 abuts against the bottom surface of the bearing groove 130.
[0058] It is understood that the bearing groove 130 is a structure formed by the insertion part 120 of the fastener 100 and the main body 110, which is used to support and fix the back plate 200 and the reinforcing plate 300. The lower edge of the reinforcing plate 300 is located inside the bearing groove 130, which means that the lower edge of the reinforcing plate 300 is inserted into the bearing groove 130, providing a physical constraint and support. The contact between the lower edge of the reinforcing plate 300 and the bottom surface of the bearing groove 130 provides a stable contact surface, ensuring the stability of the reinforcing plate 300 in the vertical direction.
[0059] The lower edge of the reinforcing plate 300 abuts against the bottom surface of the bearing groove 130, providing additional support and stability and reducing the risk of loosening due to vibration or load changes. At the same time, the lower edge of the reinforcing plate 300 is placed inside the bearing groove, increasing the overall strength of the structure.
[0060] In some possible implementations, the back panel 200 is provided with a bending structure 220, at least a portion of which protrudes away from the body 110.
[0061] The connection port 210 is located in the bending structure 220, the reinforcing plate 300 is attached to the bending structure 220, and the bottom end of the reinforcing plate 300 is adjacent to the connection port 210.
[0062] The bent structure 220 protrudes at least partially away from the main body 110. This bent design provides additional support to the back plate 200 when connected to the fastener 100, thus providing support and stability at the connection point. This allows the back plate 200 to better withstand the weight of the appliance and vibrations during use. Combined with the fit of the reinforcing plate 300, the overall stability of the structure is significantly improved, reducing the risk of loosening and detachment. The connection port 210 is located on the bent structure 220. This layout allows the plug-in portion 120 to fit more tightly with the back plate 200. The plug-in portion 120 can better distribute the weight of the appliance and vibrations generated during use during installation, reducing the risk of loosening. The reinforcing plate 300 fits against the bent structure 220, with its bottom end adjacent to the connection port 210. This fit not only enhances the overall strength of the back plate 200 but also further improves the stability of the appliance during use through the support of the reinforcing plate 300. The presence of the reinforcing plate 300 effectively prevents deformation of the bent structure under load, ensuring the reliability of the entire fixing structure.
[0063] In some possible implementations, on the side opposite to the main body 110, the bending structure 220 includes a recessed portion 221 and a protruding portion 222.
[0064] A connection port 210 is provided at the lower edge of the recess 221. The connection port 210 is inclined relative to the back plate 200, and the insertion direction of the connection port 210 is inclined upward.
[0065] The design of the recessed portion 221 and the protruding portion 222 makes the bent structure 220 form a polyhedral structure on the side away from the main body 110. This geometry has higher strength and rigidity in mechanics, which can effectively improve its resistance to deformation and better distribute and bear the weight from the electrical appliance and the vibration generated during use. The inclined setting of the connection port 210 relative to the back plate 200 helps to enhance the stability of the connection by utilizing gravity and friction. The inclined insertion direction of the connection port 210 is designed to be inclined upward. This design allows the back plate 200 to fit more tightly against the fastener 100 when subjected to gravity during installation, reducing the possibility of loosening.
[0066] It's important to understand that polyhedral structures effectively distribute externally applied forces across their faces and vertices. By distributing stress in multiple directions, they reduce stress concentration in single areas, lowering the risk of material fatigue and fracture. Polyhedral structures provide multidirectional support, resisting forces from different directions—compression, tension, and shear—offering effective resistance under varying loads. Due to their geometric properties, polyhedral structures can provide high strength and rigidity without significantly increasing material usage. This efficient material utilization allows polyhedral structures to achieve a good balance between weight and strength. The closed shape of a polyhedron provides overall structural integrity. This integrity prevents the structure from easily disintegrating or collapsing under external forces, increasing its durability and reliability. The geometry of a polyhedron allows its faces and edges to interlock, forming a unified whole. This geometric locking effect further enhances the structure's rigidity, enabling it to better maintain its shape under external forces. Therefore, this geometry contributes to its superior strength and rigidity in mechanics.
[0067] In some possible implementations, there are two recesses 221, one of which is located above the protrusion 222 and the other is located below the protrusion 222.
[0068] By providing two recesses 221 above and below the protrusion 222, the bending structure 220 provides additional support and stability, enabling the back panel 200 to better withstand the weight of the appliance and vibrations during use. Combined with the multi-point bonding of the reinforcing plate 300, the overall stability of the structure is significantly improved, reducing the risk of loosening and detachment. This geometric design allows the bending structure 220 to distribute the load more evenly, enhancing the load-bearing capacity of the back panel 200, making the appliance more stable during use, and further improving safety.
[0069] In some possible implementations, the reinforcing plate 300 is provided with a reinforcing portion 310, which is connected to the end of the reinforcing plate 300.
[0070] The reinforcing part 310 is located on the surface of the reinforcing plate 300 away from the main body 110; when the plug-in part 120 is inserted into the connection port 210, the plug-in part 120 abuts against the reinforcing part 310.
[0071] It is known that the reinforcing part 310 is connected to the end of the reinforcing plate 300 and is located on the surface of the reinforcing plate 300 away from the main body 110. This design increases the thickness and strength of the contact between the reinforcing plate 300 and the plug-in part 120, providing an additional support layer so that the reinforcing plate can better disperse stress when subjected to external force, and can better withstand the weight of the electrical appliance and the vibration generated during use.
[0072] The connector 120 passes through the connector 210 and abuts against the reinforcing part 310. This abutment provides a direct force transmission path, allowing the connector 120 to effectively transmit force to the reinforcing part 310 under load. The force applied by the connector 120 to the bottom of the reinforcing plate 300 may cause localized stress concentration. To address this localized stress, the reinforcing part 310 provides additional support and rigidity, enhancing the load-bearing capacity of that area. Through the reinforcing part 310, the force can be more evenly distributed across the entire reinforcing plate 300. This even force distribution reduces stress concentration in individual areas, improving the structural durability. The back plate 200 and the reinforcing plate 300, through the design of the reinforcing part 310 and the connector 120, form an integrated support structure. This synergy ensures that the entire system can share the load when subjected to external forces, reducing localized stress concentration that could cause the support material to fail, thus reducing the safety factor of fixing the kitchen appliance. At the same time, an additional support point is provided, which allows the connector 120 to remain more securely in place when bearing a load, reducing the possibility of loosening.
[0073] The presence of the reinforcement section 310 not only enhances the strength of the structure but also improves the durability of the entire installation system, reducing structural fatigue and damage caused by long-term use by providing additional support and stability.
[0074] In some possible implementations, the reinforcing part 310 is integrally formed with the reinforcing plate 300.
[0075] The first end of the reinforcing part 310 is connected to the end of the reinforcing plate 300, and the second end of the reinforcing part 310 extends toward the inside of the reinforcing plate 300.
[0076] It should be noted that the reinforcing part 310 and the reinforcing plate 300 can be made of materials with good elasticity and toughness, which allows them to deform moderately without permanent damage when subjected to external forces.
[0077] In some possible implementations, the reinforcing part 310 and the reinforcing plate 300 can be integrally formed from metal materials, such as steel alloys, which have high strength and good elasticity and are suitable for applications that need to withstand large loads and impacts; or aluminum alloys, which are lightweight, have good corrosion resistance and moderate strength and are suitable for applications that require weight reduction.
[0078] The reinforcing section 310 and the reinforcing plate 300 can be made of glass fiber reinforced plastic (GFRP), a composite material that combines the high strength of glass fiber with the toughness of plastic, providing good elasticity and durability.
[0079] The reinforcing section 310 and the reinforcing plate 300 can also be made of polycarbonate (PC), an engineering plastic with good toughness and transparency, which can deform moderately when subjected to impact without easily breaking.
[0080] It should be noted that as long as the reinforcing part 310 and the reinforcing plate 300 can withstand the fixing of the kitchen appliance by the plug-in part 120, the specific materials used for the reinforcing part 310 and the reinforcing plate 300 in this embodiment of the application are not subject to too many restrictions.
[0081] The reinforcing section 310 and the reinforcing plate 300 are integrally molded, meaning they are manufactured as a single unit. This design eliminates weaknesses that might arise from connectors or welding, ensuring the integrity and strength of the entire structure. The extended design of the reinforcing section 310 gives it pre-deformation capabilities, allowing the structure to elastically deform under external forces, thus dispersing stress concentrated at one point to a larger area. This stress dispersion reduces localized stress concentration, lowering the risk of material fatigue and fracture, and enabling the reinforcing section 310 to better maintain its durability when bearing the weight of electrical appliances and vibrations generated during use. Simultaneously, the pre-deformation capability of the reinforcing section 310 can absorb some of the energy from external forces. This energy absorption capability is highly effective in mitigating impacts and vibrations, protecting the structure from damage caused by sudden excessive loads. The integral molding design also simplifies the manufacturing process, reduces errors and defects during manufacturing, improves product consistency and reliability, lowers production costs, and makes mass production more economical.
[0082] In some possible implementations, there are multiple connection ports 210, which are arranged sequentially at intervals.
[0083] There are multiple plug-in parts 120, and multiple plug-in parts 120 are provided corresponding to multiple connection ports 210.
[0084] With multiple plug-in parts 120 corresponding to and connected to multiple connection ports 210, it is ensured that each plug-in part 120 can be firmly engaged with the connection port 210, thereby providing stable support and fixation. The design of multiple plug-in parts 120 enhances the load-bearing capacity of the entire structure, distributes the weight of kitchen appliances, makes the appliances more stable during fixation, and further improves safety.
[0085] In this embodiment, multiple plug-in parts 120 may not be connected to multiple connection ports 210. This selective connection allows users to select different connection ports 210 for plugging during installation, thereby adjusting the installation position and height of the appliance according to actual needs. This flexibility makes the layout of the appliance more diverse and can better adapt to different kitchen spaces and user needs.
[0086] In some possible implementations, the main body 110 is provided with a connecting part 111, through which the main body 110 is fixedly connected to the mounting base.
[0087] The connector 111 provides a reliable fixing method, allowing the main body 110 to be firmly connected to the mounting base, effectively distributing the weight of the electrical appliance and vibrations generated during use, reducing the risk of loosening and detachment. The design of the connector 111 simplifies and speeds up the installation process, reducing reliance on specialized tools and techniques. Users can easily fix the main body 110 to the mounting base, improving installation efficiency. Because the connector 111 can use non-destructive fixing methods (such as clips or hooks), it reduces the need for drilling into the wall, protecting the integrity and aesthetics of the wall. This design also reduces the risk of accidentally damaging internal pipes and cables. The versatile design of the connector 111 allows the main body 110 to adapt to different mounting bases and needs, providing greater flexibility. Users can choose different connection methods according to their actual needs, meeting personalized usage requirements.
[0088] In some possible implementations, the connecting part 111 is configured as a connecting hook.
[0089] Alternatively, the connecting part 111 may be provided with a plurality of connecting screws, and the connecting part 111 may be fixedly connected to the mounting base by the plurality of connecting screws.
[0090] What we can know is that both the design of the connecting hooks and the multiple connecting screws provide a reliable way to secure the device.
[0091] The hook design reduces the risk of loosening, while the multiple screws enhance overall stability through multi-point fixing. The hook design eliminates the need for drilling into the wall, protecting its integrity and aesthetics. Even when using screws, their evenly distributed design ensures uniform load distribution, reducing the risk of single-point stress and minimizing damage to the wall. By offering both hooks and screws, users can choose the appropriate installation method based on their needs. The hook design provides greater adjustment flexibility, while the screw design is suitable for applications requiring higher stability. The hook design simplifies and speeds up installation, requiring no specialized tools. While the screw design requires some tools, its stability and safety ensure a more reliable installation.
[0092] This application provides a kitchen appliance, including a kitchen appliance body and the aforementioned kitchen appliance fixing structure connected to the kitchen appliance body.
[0093] During use, the main body 110 is fixed to the mounting base via the connecting part 111, depending on the installation location of the kitchen appliance. The connecting part 111 can be a hook or a screw; the appropriate fixing method should be selected based on the material and structure of the mounting base. If using a connecting hook, ensure that the hook is securely attached to the supporting structure of the mounting base. If using screws, drill holes in the mounting base using a drilling machine, and then fix the main body 110 with screws.
[0094] Align the connector 210 with the plug-in portion 120, and place the kitchen appliance from top to bottom along the second end of the plug-in portion 120, so that the back panel 200 is plugged into the plug-in portion 120 through the connector 210. Ensure that the second end of the plug-in portion 120 is correctly inserted into the connector 210, so that the back panel 200 is firmly fixed on the plug-in portion 120. At this time, the reinforcing plate 300 is provided on the surface of the back panel 200 facing away from the main body 110, and the second end of the plug-in portion 120 extends towards the bottom end of the reinforcing plate 300. The plug-in portion 120 abuts against the reinforcing portion 310 to provide additional support.
[0095] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0096] In the description of this utility model, it should be understood that the terms "comprising" and "having" as used herein, and any variations thereof, are intended to cover non-exclusive inclusion, for example, a process, method, system, product, or device that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to such process, method, product, or device.
[0097] Unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features.
[0098] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. A kitchen appliance fixing structure, characterized in that, The fixing piece (100), the back plate (200) and the reinforcing plate (300) are included. The fixing piece (100) includes a main body (110) and a plug-in part (120); the main body (110) is used for being fixedly connected with a mounting base; a first end of the plug-in part (120) is connected to the main body (110), A second end of the plug-in part (120) is deflected relative to the main body (110), and the plug-in part (120) and the main body (110) form a bearing groove (130) towards the surface of the back plate. The back plate (200) is provided with a connecting port (210), the plug-in part (120) is inserted into the connecting port (210), so that the upper edge of the connecting port (210) abuts against the groove bottom surface of the bearing groove (130), and the back plate (200) is mounted on the mounting base through the fixing piece (100). The reinforcing plate (300) is arranged on the surface of the back plate (200) away from the main body (110), and the surface of the reinforcing plate (300) away from the back plate (200) abuts against the plug-in part (120).
2. The kitchen appliance fixture structure according to claim 1, characterized in that, The lower edge of the reinforcing plate (300) is located in the bearing groove (130), and the lower edge of the reinforcing plate (300) abuts against the groove bottom surface of the bearing groove (130).
3. The kitchen appliance fixture structure of claim 1, wherein, The back plate (200) is provided with a bending structure (220), at least part of the bending structure (220) is arranged protruding away from the main body (110); The connecting port (210) is located in the bending structure (220), the reinforcing plate (300) is attached to the bending structure (220), and the bottom end of the reinforcing plate (300) is adjacent to the connecting port (210).
4. The kitchen appliance fixture structure of claim 3, wherein, On the side away from the above-mentioned main body (110), the bending structure (220) includes a recessed part (221) and a protruding part (222); The lower edge of the recessed part (221) is provided with the connecting port (210), and the connecting port (210) is arranged inclined relative to the back plate (200), and the insertion direction of the connecting port (210) is inclined upward.
5. The kitchen appliance fixture structure according to claim 4, characterized in that, The number of the recessed part (221) is two, one of the recessed part (221) is located above the protruding part (222), and the other of the recessed part (221) is located below the protruding part (222).
6. The kitchen appliance fixture of claim 1, wherein, The reinforcing plate (300) is provided with a reinforcing part (310), and the reinforcing part (310) is connected with the end part of the reinforcing plate (300); The reinforcing part (310) is located on the surface of the reinforcing plate (300) away from the main body (110); when the plug-in part (120) is inserted into the connecting port (210), the plug-in part (120) abuts against the reinforcing part (310).
7. The kitchen appliance fixture structure of claim 6, wherein, The reinforcing part (310) is integrally formed with the reinforcing plate (300); The first end of the reinforcing part (310) is connected with the end part of the reinforcing plate (300), and the second end of the reinforcing part (310) extends towards the inner side of the reinforcing plate (300).
8. The kitchen appliance fixture of claim 1, wherein, The number of the connecting ports (210) is multiple, and the multiple connecting ports (210) are sequentially and spacedly arranged; The number of the plug-in parts (120) is multiple, and the multiple plug-in parts (120) are arranged in correspondence with the multiple connecting ports (210).
9. The kitchen appliance fixture structure according to any one of claims 1-8, characterized in that, The main body (110) is provided with a connecting part (111), and the main body (110) is fixedly connected with a mounting base through the connecting part (111).
10. A kitchen appliance characterized in that, The kitchen appliance fixing structure according to any one of claims 1-9 is connected with a kitchen appliance body.