A drying rod and a clothes drying machine
Patent Information
- Application Number
- CN202522081788.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-28
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-09-28
AI Technical Summary
然而,这种设计存在明显缺陷:由于限位凸条的阻挡,在装配防滑条时,无法从安装槽侧面直接嵌入
[0015]The beneficial effects of this application are as follows: This utility model provides a drying rack that, based on the cooperation of the anti-slip strip body, the stop hook, and the edge, forms a stable connection structure, ensuring the reliability of the anti-slip strip installation, effectively preventing the anti-slip strip from falling off, ensuring that the drying rack performs well in terms of anti-slip and noise reduction during use, and improving the user experience. When installing the anti-slip strip, the deformation installation method of the anti-slip strip components makes installation not limited by the length of the drying rack. During installation, the stop hook of the anti-slip strip can be directly inserted into the installation groove from the side of the drying rack body, eliminating the need to gradually insert the anti-slip strip from the end of the drying rack. This avoids tedious operations such as precise alignment, overcoming large frictional resistance, and long-distance pushing, significantly reducing installation difficulty, improving installation efficiency, and saving installation time.
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Figure CN224754769U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of clothes drying equipment, and more particularly to a clothes drying rod and a clothes drying machine. Background Technology
[0002] In modern home life, clotheslines are a common tool for drying clothes, and their structural design directly affects the user experience. Currently, some clotheslines incorporate a mounting groove on the top side to address issues such as hangers sliding along the rod and friction noise between the hangers and the rod during drying. An anti-slip strip is installed within this groove. This anti-slip strip is typically made of elastic silicone or rubber, and its textured surface effectively increases friction with the hangers, thus achieving anti-slip and noise reduction functions.
[0003] To ensure the reliability of anti-slip strip installation, existing technologies typically include limiting protrusions on both sides of the mounting groove on the clothesline. The portion of the anti-slip strip that engages with the mounting groove engages with these limiting protrusions, forming a stable assembly structure. However, this design has a significant drawback: due to the obstruction of the limiting protrusions, the anti-slip strip cannot be directly inserted from the side of the mounting groove during assembly. In practice, the anti-slip strip must be gradually pushed into the mounting groove from the end of the clothesline. This installation method requires the operator to first precisely align the anti-slip strip with the mounting groove, and then apply considerable force to overcome frictional resistance to push the anti-slip strip in. The entire pushing distance is equal to the length of the anti-slip strip, and as the anti-slip strip is pushed in, the friction between it and the clothesline gradually increases. For longer clotheslines, this presents significant challenges in terms of installation difficulty and time consumption. Utility Model Content
[0004] The purpose of this utility model embodiment is to provide a drying rack and clothes drying machine that can solve the above-mentioned problems existing in the prior art.
[0005] To achieve the above objectives, this application adopts the following technical solution: On the one hand, a drying rack is provided, including: The main body of the drying rod has a mounting groove extending along the length of the main body on at least one side, and the two opposite sidewalls of the mounting groove are respectively provided with retaining edges; An anti-slip strip includes an anti-slip strip body and a stop hook. The anti-slip strip body abuts against the side of the guard edge facing away from the bottom of the mounting groove. The stop hook is connected to the side of the anti-slip strip body facing the bottom of the mounting groove. The stop hook is provided in two rows, and the two rows of stop hooks respectively overlap the side of the guard edge facing the bottom of the mounting groove. The anti-slip strip body and / or the stop hook are deformed by compression, allowing the stop hook to pass over the guard edge and enter the mounting groove.
[0006] Optionally, the stop hook includes a connecting part and a hook part. The connecting part is connected to the anti-slip strip body and extends toward the bottom of the mounting groove relative to the anti-slip strip body. The hook part is connected to the connecting part and extends toward the side wall of the mounting groove. The hook part overlaps the side of the stop edge facing the bottom of the mounting groove.
[0007] Optionally, two connecting portions are spaced apart along a direction perpendicular to the length of the anti-slip strip body, forming a deformation space between the two connecting portions. The area on the anti-slip strip body corresponding to the deformation space is the deformation portion. Through the compression deformation of the deformation portion, the hook portion can pass over the stop edge and enter the mounting groove.
[0008] Optionally, the connecting portions on both sides abut against the opposing sidewalls of the two retaining edges.
[0009] Optionally, the hook portion extends obliquely away from the bottom of the mounting groove, and through the compression deformation of the hook portion, the hook portions on both sides can simultaneously pass over the guard edge and enter the mounting groove.
[0010] Optionally, the connecting portions on both sides are spaced apart from the retaining edge.
[0011] Optionally, the anti-slip strip body has a limiting part protruding on one side facing the bottom of the mounting groove, which is opposite to the hook parts on both sides, and the limiting parts on both sides abut against the opposing sidewalls of the two guard edges respectively.
[0012] Optionally, the two stop hooks are connected to a spring-loaded part on their opposing sides, and the spring-loaded part abuts against the bottom of the mounting groove.
[0013] Optionally, one stop hook is provided in each of the two rows of stop hooks, and the stop hook is in the shape of a long strip that matches the length of the anti-slip strip body; Alternatively, in each of the two rows of stop hooks, a plurality of stop hooks are provided at intervals along the length direction of the anti-slip strip body.
[0014] On the other hand, a clothes drying rack is provided, including the aforementioned drying rod.
[0015] The beneficial effects of this application are as follows: This utility model provides a drying rack that, based on the cooperation of the anti-slip strip body, the stop hook, and the edge, forms a stable connection structure, ensuring the reliability of the anti-slip strip installation, effectively preventing the anti-slip strip from falling off, ensuring that the drying rack performs well in terms of anti-slip and noise reduction during use, and improving the user experience. When installing the anti-slip strip, the deformation installation method of the anti-slip strip components makes installation not limited by the length of the drying rack. During installation, the stop hook of the anti-slip strip can be directly inserted into the installation groove from the side of the drying rack body, eliminating the need to gradually insert the anti-slip strip from the end of the drying rack. This avoids tedious operations such as precise alignment, overcoming large frictional resistance, and long-distance pushing, significantly reducing installation difficulty, improving installation efficiency, and saving installation time. Attached Figure Description
[0016] The present application will now be described in further detail with reference to the accompanying drawings and embodiments.
[0017] Figure 1 This is a schematic diagram of one embodiment of the drying rack described in this application. Figure 2 for Figure 1 A schematic diagram of the main body of the drying rack shown; Figure 3 for Figure 1 The diagram shows the structure of the anti-slip strip in the drying rack. Figure 4 for Figure 1 The diagram shows the installation process of the anti-slip strips in the drying rack. Figure 5 This is a schematic diagram of another embodiment of the drying rack described in this application. Figure 6 for Figure 5 A schematic diagram of the main body of the drying rack shown; Figure 7 for Figure 5 The diagram shows the structure of the anti-slip strip in the drying rack. Figure 8 for Figure 5 The diagram shows the installation process of the anti-slip strips in the drying rack.
[0018] In the picture: 1. Drying rod body; 11. Mounting groove; 12. Edge guard; 2. Anti-slip strip; 21. Anti-slip strip body; 211. Deformation part; 22. Stop hook; 221. Connecting part; 222. Hook part; 23. Limiting part; 24. Rebound part. Detailed Implementation
[0019] To make the technical problems solved by this application, the technical solutions adopted, and the technical effects achieved clearer, the technical solutions of the embodiments of this application are further described in detail below. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0020] In the description of this application, unless otherwise expressly specified and limited, the terms "connected," "linked," and "fixed" 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 mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication 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 based on the specific circumstances.
[0021] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature being directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature being directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0022] In modern home life, clotheslines are a common tool for drying clothes, and their structural design directly affects the user experience. Currently, some clotheslines incorporate a mounting groove on the top side to address issues such as hangers sliding along the rod and friction noise between the hangers and the rod during drying. An anti-slip strip is installed within this groove. This anti-slip strip is typically made of elastic silicone or rubber, and its textured surface effectively increases friction with the hangers, thus achieving anti-slip and noise reduction functions.
[0023] To ensure the reliability of anti-slip strip installation, existing technologies typically include limiting protrusions on both sides of the mounting groove on the clothesline. The portion of the anti-slip strip that engages with the mounting groove engages with these limiting protrusions, forming a stable assembly structure. However, this design has a significant drawback: due to the obstruction of the limiting protrusions, the anti-slip strip cannot be directly inserted from the side of the mounting groove during assembly. In practice, the anti-slip strip must be gradually pushed into the mounting groove from the end of the clothesline. This installation method requires the operator to first precisely align the anti-slip strip with the mounting groove, and then apply considerable force to overcome frictional resistance to push the anti-slip strip in. The entire pushing distance is equal to the length of the anti-slip strip, and as the anti-slip strip is pushed in, the friction between it and the clothesline gradually increases. For longer clotheslines, this presents significant challenges in terms of installation difficulty and time consumption.
[0024] To overcome the above technical problems, refer to Figure 1 or Figure 5 This application provides a drying rack, comprising: The main body of the drying rod 1 has a mounting groove 11 extending along the length direction of the main body of the drying rod 1 on at least one side, and the two opposite side walls of the mounting groove 11 are respectively provided with baffles 12; The anti-slip strip 2 includes an anti-slip strip body 21 and a stop hook 22. The anti-slip strip body 21 abuts against the side of the guard edge 12 facing away from the bottom of the mounting groove 11. The stop hook 22 is connected to the side of the anti-slip strip body 21 facing the bottom of the mounting groove 11. The stop hook 22 is provided in two rows, and the two rows of stop hooks 22 respectively overlap the side of the guard edge 12 facing the bottom of the mounting groove 11. The anti-slip strip body 21 and / or the stop hook 22 are deformed by compression, allowing the stop hook 22 to pass over the stop edge 12 and enter the mounting groove 11.
[0025] In the structure of the main body 1 of the drying rod, an installation groove 11 is provided on at least one side. The installation groove 11 serves as the installation base for the anti-slip strip 2. Generally, the top side of the main body 1 of the drying rod is usually the surface that directly contacts the clothes rack. Therefore, an installation groove 11 is provided on at least the top side of the main body 1 of the drying rod. Of course, depending on the actual situation, an installation groove 11 can also be provided on other surfaces that may come into contact with the clothes rack.
[0026] Taking the installation groove 11 set on the top side of the main body 1 of the drying rod as an example, the groove opening of the installation groove 11 faces upward, and the bottom of the installation groove 11 is the bottom wall opposite to the groove opening; assuming that the length direction of the main body 1 of the drying rod extends along the front-back direction, the two opposite side walls of the installation groove 11 are its left and right side walls; a stop edge 12 is set on the two opposite sides of the installation groove 11 respectively. Since the stop hook 22 needs to be attached to the lower surface of the baffle, the stop edge 12 needs to maintain a certain distance from the bottom of the installation groove 11.
[0027] The anti-slip strip 2 includes an anti-slip strip body 21 and stop hooks 22. The side of the anti-slip strip body 21 facing away from the mounting groove 11 is the anti-slip surface, which is used to directly contact the items being dried to provide anti-slip function. The anti-slip strip body 21 abuts against the side of the side guard 12 facing away from the bottom of the mounting groove 11, that is, it abuts against the upper surface of the side guard 12. Two rows of stop hooks 22 are respectively attached to the side of the side guard 12 facing the bottom of the mounting groove 11, forming an embedded mating structure, so that the anti-slip strip 2 is firmly attached to the drying rod body 1, preventing the problem of slippage and displacement during use.
[0028] Anti-slip strips are typically made of elastic materials, such as silicone or rubber.
[0029] During installation, an external force is applied to the anti-slip strip body 21 and / or the stop hook 22. Because the anti-slip strip 2 is made of an elastic material, the stop hook 22 can deform under force, thus crossing the edge 12 and entering the mounting groove 11. When the stop hook 22 reaches the predetermined position, the external force is released, and the anti-slip strip 2 returns to its original shape due to its own elasticity. The stop hook 22 and the edge 12 form a stable overlapping relationship, completing the installation and fixing of the anti-slip strip 2.
[0030] The drying rack provided in this embodiment forms a stable connection structure based on the cooperation of the anti-slip strip body 21, the stop hook 22, and the edge 12. This ensures the reliability of the anti-slip strip 2 installation, effectively prevents the anti-slip strip 2 from falling off, and ensures that the drying rack performs well in terms of anti-slip and noise reduction during use, thus improving the user experience. When installing the anti-slip strip 2, the deformation installation method of the anti-slip strip 2 component makes the installation not limited by the length of the drying rack. During installation, the stop hook 22 of the anti-slip strip 2 can be directly inserted into the installation groove 11 from the side of the drying rack body 1, eliminating the need to gradually insert the anti-slip strip 2 from the end of the drying rack. This avoids tedious operations such as precise alignment, overcoming large frictional resistance, and long-distance pushing, significantly reducing the installation difficulty, improving installation efficiency, and saving installation time.
[0031] In one embodiment, reference is made to Figure 3 or Figure 7 The stop hook 22 includes a connecting part 221 and a hook part 222. The connecting part 221 is connected to the anti-slip strip body 21 and extends toward the bottom of the mounting groove 11 relative to the anti-slip strip body 21. The hook part 222 is connected to the connecting part 221 and extends toward the side wall of the mounting groove 11. The hook part 222 overlaps the side of the stop edge 12 toward the bottom of the mounting groove 11.
[0032] The connecting part 221 is tightly connected to the anti-slip strip body 21 on one side and extends towards the bottom of the mounting groove 11 relative to the anti-slip strip body 21, forming a stable connection base and providing support for the entire stop hook 22; the hook part 222 is connected to the end of the connecting part 221 and extends towards the side wall of the mounting groove 11. Its shape is similar to a hook and it can accurately hook onto the side of the guard edge 12 facing the bottom of the mounting groove 11.
[0033] During installation, since both the connecting part 221 and the hook part 222 are made of elastic materials, when an external force is applied to the anti-slip strip 2, the connecting part 221 can bend and deform to a certain extent under the force, causing the hook part 222 to also deform. At this time, the hook part 222 can smoothly pass over the retaining edge 12 and enter the predetermined position in the mounting groove 11. When the external force is removed, the connecting part 221 and the hook part 222 return to their original shape due to the elasticity of the materials, and the hook part 222 is firmly attached to the side of the retaining edge 12 facing the bottom of the mounting groove 11, thus fixing the anti-slip strip 2.
[0034] In this structure, by extending the connecting part 221, the hook part 222 can be smoothly attached to the inner side of the guard edge 12 (i.e. the side facing the bottom of the mounting groove 11) to form a larger area of overlap structure, which enhances the connection stability between the stop hook 22 and the guard edge 12, and can withstand greater external force and impact, effectively preventing the anti-slip strip 2 from loosening or falling off during use.
[0035] In one embodiment, combined with Figures 1-3 Along the direction perpendicular to the length of the anti-slip strip body 21, two connecting parts 221 are spaced apart, forming a deformation space between the two connecting parts 221. The area on the anti-slip strip body 21 corresponding to the deformation space is the deformation part 211. Through the compression deformation of the deformation part 211, the hook part 222 can pass over the guard edge 12 and enter the mounting groove 11.
[0036] Reference Figure 4 During installation, one of the stop hooks 22 is first tilted and inserted into the mounting groove 11, and the stop hook 22 is then engaged with one of the side guards 12. Next, the anti-slip strip body 21 is pressed from the other side, causing the middle deformable portion 211 to bend and deform to allow sufficient space. Then, the stop hook 22 on the other side is pressed down into the mounting groove 11. After the external force is removed, the anti-slip strip body 21 returns to its original shape, and the two stop hooks 22 overlap the side guards 12 on both sides within the mounting groove 11. The entire process utilizes the controllable deformation characteristics of the deformable portion 211, achieving a smooth transition from single-sided fixing to double-sided fixing without the need for complete insertion from the end.
[0037] In this embodiment, the structure utilizes two spaced-apart stop hooks 22 to reserve sufficient space on the anti-slip strip body 21 as a deformation part 211, so that during installation, one side can be fixed first, and then squeezed to insert the stop hook 22 on the other side. The whole operation process is simple, and the structure of the anti-slip strip 2 is also simple and easy to form.
[0038] In one embodiment, reference is made to Figure 1 The connecting portions 221 on both sides abut against the opposing sidewalls of the two retaining edges 12 respectively.
[0039] The two connecting portions 221 respectively abut against the opposing sidewalls of the two sidewalls 12. That is, the left connecting portion 221 contacts the inner sidewall of the left sidewall 12 (the side facing the right sidewall 12), and the right connecting portion 221 contacts the inner sidewall of the right sidewall 12 (the side facing the left sidewall 12), forming a mating relationship where the two connecting portions 221 are sandwiched between the two sidewalls 12. When the anti-slip strip 2 is subjected to the lateral pushing force of the clothes hanger or the lateral force generated by the shaking of the drying rod, the contact surface between the connecting portion 221 and the sidewall 12 will generate a reaction force to counteract the lateral displacement tendency.
[0040] In this embodiment, the lateral abutment and longitudinal overlap form a three-dimensional fixed structure, which effectively prevents the anti-slip strip 2 from shifting or wobbling during use, and solves the problem of lateral loosening that may occur when fixed only by the hook part 222.
[0041] In one embodiment, reference is made to Figures 5-7 The hook portion 222 extends obliquely away from the bottom of the mounting groove 11. Through the compression deformation of the hook portion 222, the hook portions 222 on both sides can simultaneously pass over the guard edge 12 and enter the mounting groove 11.
[0042] The hook portion 222 extends at an angle away from the bottom of the mounting groove 11. This angled structure gives the hook portion 222 a natural guiding characteristic, and its free end forms a smooth transition surface with the initial contact point of the flange 12.
[0043] Reference Figure 8 During installation, the two hooks 222 are directly aligned with the opening of the mounting groove 11. Utilizing their tilted angle, the hooks 222 naturally contact the edge 12. A pressing force perpendicular to the bottom of the mounting groove 11 is applied to the anti-slip strip body 21. Simultaneously, the hooks 222 on both sides experience a counterforce from the edge 12. Due to this force, the hooks 222 deform under pressure, reducing their overall width and allowing them to pass over the edge 12 synchronously. Once the hooks 222 are fully inside the mounting groove 11, the external pressure is released, and the hooks 222 elastically return to their original tilted state, forming a stable connection with the inner side of the edge 12. This process utilizes the tilted structure of the hooks 222 to achieve simultaneous pressure application and installation, eliminating the need for step-by-step operations.
[0044] In this embodiment, the pre-fixing step on one side is omitted, enabling one-step installation, making installation simpler and faster. Furthermore, the symmetrical force-bearing design avoids localized fatigue that may result from unilateral force, extending the service life of the anti-slip strip 2.
[0045] In one embodiment, reference is made to Figure 5 The connecting portions 221 on both sides maintain a distance from the retaining edge 12.
[0046] During installation, pressure is applied to the anti-slip strip 2. The hooks 222 on both sides need to overcome the obstruction of the edge 12 and undergo shrinkage deformation. Since the connecting part 221 maintains a distance from the edge 12 after installation, when the hook 222 deforms, the connecting part 221 will not be blocked by contact with the edge 12. It can slightly shift with the deformation of the hook 222, providing sufficient room for the bending and shrinkage of the hook 222. This avoids the hook 222 from being obstructed due to limited space, or the connecting part 221 from rubbing and getting stuck with the edge 12 due to forced compression, ensuring that the hooks 222 on both sides can smoothly pass over the edge 12.
[0047] In this embodiment, the distance between the connecting part 221 and the edge 12 avoids frictional interference between the two during installation. The hook part 222 has no additional obstruction during deformation, and the operator can complete the installation without applying excessive pressure, effectively reducing the jamming and sticking phenomenon during installation. Especially for the anti-slip strip 2 material with slightly weak elasticity, this design can significantly reduce the installation difficulty and make the installation process easier and more efficient.
[0048] In one embodiment, reference is made to Figure 5 and Figure 7 The anti-slip strip body 21 is provided with a limiting part 23 on one side facing the bottom of the mounting groove 11, which is opposite to the hook part 222 on both sides. The limiting part 23 on both sides abuts against the opposing sidewalls of the two guard edges 12 respectively.
[0049] The limiting part 23 is located on the side of the anti-slip strip body 21 near the bottom of the mounting groove 11, and forms an upper and lower corresponding relationship with the hook part 222; the limiting part 23 extends towards the side wall of the mounting groove 11, and its end is in close contact with the opposite side wall of the edge 12.
[0050] In this embodiment, the two limiting parts 23 respectively abut against the opposite sidewalls of the corresponding sidewalls 12, and the elastic tension of the anti-slip strip 2 itself forms a lateral constraint, which restricts the left and right displacement of the anti-slip strip 2 along the length of the drying rod, thereby enhancing the stability of the anti-slip strip 2 after installation.
[0051] In one embodiment, reference is made to Figure 5 The two stop hooks 22 are connected to the opposite sides by a spring-loaded part 24, which abuts against the bottom of the mounting groove 11.
[0052] The opposing sides of the two stop hooks 22 are connected by a spring-loaded part 24. The spring-loaded part 24 has an elastic structure such as an arc or wave. After installation, the spring-loaded part 24 is tightly abutted against the bottom of the mounting groove 11. This structure cleverly combines the spring-loaded part 24 with the stop hooks 22, which not only does not change the overlapping relationship between the stop hooks 22 and the edge 12, but also adds extra elastic support, making the installation and fixation of the anti-slip strip 2 more three-dimensional.
[0053] During the installation of the anti-slip strip 2, as the stop hook 22 is inserted into the mounting groove 11, the spring-loaded part 24 undergoes elastic deformation due to the pressure from the bottom of the mounting groove 11, accumulating elastic potential energy. Simultaneously, it does not obstruct the stop hook 22 from passing over the retaining edge 12 and entering the mounting groove 11. After installation, the spring-loaded part 24, due to its tendency to return to its original shape, generates an upward elastic force. This force directly acts on the two stop hooks 22, slightly lifting them upwards, causing the stop hooks 22 to abut tightly against the side wall of the retaining edge 12 facing the bottom of the groove, enhancing the friction and connection tightness between them.
[0054] In this embodiment, the elastic force of the rebound part 24 increases the tightness between the stop hook 22 and the edge 12. Compared with the structure without the rebound part 24, the anti-slip strip 2 has a significantly enhanced ability to resist loosening by external force. Even under conditions such as long-term frequent use and heavy clothing, it can effectively prevent the anti-slip strip 2 from falling off and extend the service life of the drying rack.
[0055] In one embodiment, one stop hook 22 is provided in each of the two rows of stop hooks 22, and the stop hook 22 is a long strip that matches the length of the anti-slip strip body 21.
[0056] One stop hook 22 is provided in each of the two rows of stop hooks 22. The stop hook 22 is long and the length matches the length of the anti-slip strip body 21. The long stop hooks 22 are continuously distributed along the length of the anti-slip strip body 21 to form an integral blocking structure.
[0057] The continuous contact area allows for more even force distribution on the anti-slip strip 2. Its elongated structure inherently possesses high rigidity, making it suitable for applications requiring high-strength fixation and better resisting plastic deformation caused by long-term use. Furthermore, the continuous anti-slip strip 2 can be extruded in a single process, resulting in simple and rapid molding.
[0058] In one embodiment, each of the two rows of stop hooks 22 is provided with a plurality of stop hooks 22 arranged at intervals along the length direction of the anti-slip strip body 21.
[0059] Multiple stop hooks 22 are provided in each of the two rows of stop hooks 22. The multiple stop hooks 22 are arranged at intervals along the length direction of the anti-slip strip body 21, and a certain gap is left between adjacent stop hooks 22 to form a segmented blocking structure.
[0060] The total deformation resistance of multiple small-sized stop hooks 22 is less than that of the overall long strip structure, reducing installation difficulty; compared with the long strip structure, the spaced arrangement can reduce the amount of raw materials used and reduce production costs.
[0061] On the other hand, a clothes drying rack is provided, including the aforementioned drying rod.
[0062] Similarly, in the clothes drying rack of this embodiment, the drying rod has anti-slip and noise reduction functions, and the anti-slip strip 2 is simple and quick to install.
[0063] In the description herein, it should be understood that the terms "upper," "lower," "left," "right," and other orientations or positional relationships are used only for ease of description and simplification of operation, 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, and therefore should not be construed as a limitation of this application. Furthermore, the terms "first" and "second" are used merely for descriptive distinction and have no special meaning.
[0064] In the description of this specification, references to terms such as "an embodiment," "example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example.
[0065] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
[0066] The technical principles of this application have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of this application and should not be construed as limiting the scope of protection of this application in any way. Based on this explanation, those skilled in the art can readily conceive of other specific embodiments of this application without inventive effort, and these embodiments will all fall within the scope of protection of this application.
Claims
1. A drying rack, characterized in that, include: The main body of the drying rod has a mounting groove extending along the length of the main body on at least one side, and the two opposite sidewalls of the mounting groove are respectively provided with retaining edges; An anti-slip strip includes an anti-slip strip body and a stop hook. The anti-slip strip body abuts against the side of the guard edge facing away from the bottom of the mounting groove. The stop hook is connected to the side of the anti-slip strip body facing the bottom of the mounting groove. The stop hook is provided in two rows, and the two rows of stop hooks respectively overlap the side of the guard edge facing the bottom of the mounting groove. The anti-slip strip body and / or the stop hook are deformed by compression, allowing the stop hook to pass over the guard edge and enter the mounting groove.
2. The drying rack according to claim 1, characterized in that, The stop hook includes a connecting part and a hook part. The connecting part is connected to the anti-slip strip body and extends towards the bottom of the mounting groove relative to the anti-slip strip body. The hook part is connected to the connecting part and extends towards the side wall of the mounting groove. The hook part overlaps the side of the stop edge facing the bottom of the mounting groove.
3. The drying rack according to claim 2, characterized in that, Along a direction perpendicular to the length of the anti-slip strip body, two connecting parts are spaced apart, forming a deformation space between the two connecting parts. The area on the anti-slip strip body corresponding to the deformation space is the deformation part. Through the compression deformation of the deformation part, the hook part can pass over the stop edge and enter the mounting groove.
4. The drying rack according to claim 3, characterized in that, The connecting portions on both sides abut against the opposing sidewalls of the two retaining edges, respectively.
5. The drying rack according to claim 2, characterized in that, The hook portion extends obliquely away from the bottom of the mounting groove. Through the compression deformation of the hook portion, the hook portions on both sides can simultaneously pass over the guard edge and enter the mounting groove.
6. The drying rack according to claim 5, characterized in that, The connecting portions on both sides maintain a distance from the retaining edge.
7. The drying rack according to claim 6, characterized in that, The anti-slip strip body has a limiting part protruding on one side of the groove bottom facing the mounting groove, which is opposite to the hook part on both sides. The limiting parts on both sides abut against the opposing side walls of the two guard edges respectively.
8. The drying rack according to claim 5, characterized in that, The two stop hooks are connected to a spring-loaded part on their opposite sides, and the spring-loaded part abuts against the bottom of the mounting groove.
9. The drying rack according to any one of claims 1-8, characterized in that, In each of the two rows of stop hooks, there is one stop hook, and the stop hook is a long strip that matches the length of the anti-slip strip body; Alternatively, in each of the two rows of stop hooks, a plurality of stop hooks are provided at intervals along the length direction of the anti-slip strip body.
10. A clothes drying rack, characterized in that, Including the drying rack as described in any one of claims 1-9.