Hanging rod assembly and clothes airing machine
By designing the staggered slide support and connection portion in the hanging rod assembly, the maximum spacing of the hanging seat is increased when unfolded and the minimum spacing is reduced when retracted, the problem of inappropriate spacing of the hanging seat in the prior art is solved, and the drying effect and convenience of use are improved.
Patent Information
- Application Number
- CN202422550556.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-21
AI Technical Summary
When the existing hanging rod assembly is closed, the spacing between adjacent slides is large, which leads to too large spacing between hanging seats, which is inconvenient for hanging or taking off clothes. The spacing between hanging seats is too small when unfolded, affecting the drying effect.
A hanging rod assembly is designed, wherein the support part and the connecting part of the slide seat are dislocated along the sliding path and are connected in a coordinated manner. The support part is evenly spaced when deployed, and the connecting part partially overlaps when closed, reducing the distance between the hanging seats.
The maximum spacing of the hanging seat is increased when unfolded, and the minimum spacing is reduced when retracted, which improves the drying effect and convenience of use.
Smart Images

Figure CN223202102U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of household items, in particular to a hanging rod assembly and a clothes drying machine. Background Art
[0002] Household items are often hung on hanging rods for drying clothes or hanging curtains. Some existing hanging rod assemblies include a rod body and multiple hangers fixed to the rod body, which makes it difficult to deploy and deploy the hangers. Other hanging rod assemblies include a rod body and a slide slidably mounted on the rod body. The hangers are mounted on the slides, and when the multiple slides slide, they can respectively drive the hangers toward or away from each other to deploy or deploy the hangers. When existing slides are installed, adjacent slides are linked together, resulting in a large spacing between adjacent slides when deployed, which in turn results in a large spacing between the hangers when deployed. Utility Model Content
[0003] The purpose of the embodiments of the present utility model is to provide a hanging rod assembly and a clothes drying machine, wherein the hanging rod assembly can reduce the distance between the hanging seats when the hanging seats are folded.
[0004] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0005] In one aspect, a hanging rod assembly is provided, comprising a rod body and a plurality of slide seats movably disposed on the rod body;
[0006] The slide seat includes a fixedly connected support portion and a connecting portion, the support portion is slidably arranged on the rod body, the connecting portion and the support portion are arranged in sequence along the sliding path of the support portion, and the connecting portion of any slide seat is linked to the support portion of the adjacent slide seat, so that in the unfolded state, the support portions of each slide seat are evenly spaced and distributed on the rod body;
[0007] The connection parts of two adjacent slides are staggered along the width direction of the sliding path of the support portion, so that in the folded state, the connection parts of the two adjacent slides at least partially overlap.
[0008] Optionally, the hanging rod assembly further includes a hanging seat having a hanging portion; the hanging seat is installed on the supporting portion of the slide seat, and there are multiple hanging seats and they correspond one-to-one to multiple slide seats.
[0009] Optionally, in the same slide, a first limit platform is provided at one end of the support portion, and the other end of the support portion is connected to the connecting portion, and the first limit platform is located on the sliding path of the connecting portion of the adjacent slide to prevent the connecting portion of the slide from separating from the supporting portion of the adjacent slide.
[0010] Optionally, the support portion is connected to the connection portion to form a second limit platform, the first limit platform and the second limit platform are arranged at intervals along the sliding path of the support portion, and the first limit platform and the second limit platform on the same slide are staggered;
[0011] The connecting portion of any one of the slides is slidably disposed between the first limiting platform on the adjacent slide and the second limiting platform on the separated slide.
[0012] Optionally, the connecting portion is provided with a sliding groove extending along the sliding path of the supporting portion, and the connecting portion of any one of the slides is sleeved on the first limiting platform on the adjacent slide through the sliding groove.
[0013] Optionally, the slide further has a second buffer portion, one end of which is connected to the connecting portion, and the other end of which extends in a direction close to the interior of the slide groove and is located on the moving path of the first limit platform.
[0014] Optionally, a first buckle is provided on the first limiting platform, a second buckle adapted to the first buckle is provided on the inner wall of the sliding groove, and the first buckle is located on the sliding path of the second buckle.
[0015] Optionally, at least two adjacent support portions jointly form a sliding channel, and the connecting portion of any one of the slides is slidably disposed in the sliding channel jointly formed by the support portions of a plurality of adjacent slides, and the slides all satisfy the following formula:
[0016] A≥L / (N+1);
[0017] Among them, A is the center distance between the support parts of the two adjacent slides when the two adjacent slides are close to each other to the minimum distance, L is the center distance between the support parts of the two adjacent slides when the two adjacent slides are away from each other to the maximum distance, N is the number of the support parts forming the sliding channel, N≥2.
[0018] Optionally, the length of the hanger along the sliding direction of the support portion is H, A≥H, N≤L / H-1.
[0019] Optionally, the length of the supporting portion along its own sliding direction is X, and the length of the connecting portion along the sliding direction of the supporting portion is Y, then L=X+Y.
[0020] Optionally, when A=X, Y=NX and L=(N+1)X.
[0021] Optionally, each of the slides further includes a first buffer portion provided on the support portion, and the first buffer portion of any of the slides is located on a sliding path of the support portion of an adjacent slide.
[0022] Optionally, one end of the first buffer portion is connected to the support portion, and the other end of the first buffer portion is spaced apart from the support portion and forms a buffer gap with the support portion.
[0023] Optionally, the hanging portion is provided with a hanging hole or a hook.
[0024] Optionally, a guide groove and an extension port connected to the guide groove are provided on the rod body, the guide groove is connected to the outside of the rod body through the extension port, each of the sliding seats is slid in the guide groove in turn, and a part of the hanging seat extends to the outside of the rod body through the extension port.
[0025] Optionally, the hanging rod assembly also includes a first pushing seat and a second pushing seat; the first pushing seat and the second pushing seat are slidably arranged in the guide groove at intervals along the sliding path of the support part, a part of the first pushing seat and a part of the second pushing seat both pass through the protruding port and extend to the outside of the rod body, each of the sliding seats is located between the first pushing seat and the second pushing seat, the first pushing seat is connected to the supporting part of the sliding seat at one end, and the second pushing seat is connected to the connecting part of the sliding seat at the other end.
[0026] On the other hand, a clothes drying machine is provided, comprising the above-mentioned hanging rod assembly.
[0027] The beneficial effects of the present invention are as follows: the multiple slides of the hanging rod assembly are all slidably mounted on the rod body. The slides are used to install the hanging rods, and the adjacent slides are linked and connected to facilitate the expansion of each slide to drive the hanging rod. The expansion of each hanging rod is achieved by moving the slides away from each other. In the expanded state, the support parts of each slide are evenly spaced. The connection parts and support parts of two adjacent slides are staggered. When the slide drives the hanging rod to switch to the folded state, the connection part of each slide can at least slide on the support parts of the two adjacent slides. The connection parts of the two adjacent slides at least partially overlap, so that the sliding path of each slide when folded is longer, so that the distance between each hanging rod can be smaller when each slide is close to each other and folded, thereby reducing the spacing between each hanging rod when folded, and facilitating hanging.
[0028] The clothes drying machine adopts the above-mentioned hanging rod assembly, which makes it easy for each hanging seat to be unfolded while reducing the distance between the hanging seats when they are folded, making it convenient to hang clothes. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments.
[0030] Figure 1Schematic diagram of the structure of the hanging rod assembly;
[0031] Figure 2 for Figure 1 The main view;
[0032] Figure 3 This is an exploded view of the hanging rod assembly;
[0033] Figure 4 This is a schematic diagram of the coordination of multiple slides, in which the hanging seat is in the unfolded state;
[0034] Figure 5 This is a schematic diagram of the coordination of multiple slides, in which the hanging seat is in a retracted state;
[0035] Figure 6 and Figure 7 They are all structural diagrams of multiple slides;
[0036] Figure 8 Schematic diagram of the cooperation between the slide seat and the first push seat;
[0037] Figure 9 Schematic diagram of the cooperation between the slide seat and the second push seat;
[0038] Figure 10 A schematic structural diagram of a top view of the first type of slide;
[0039] Figure 11 A schematic structural diagram of a top view of the second type of slide;
[0040] Figure 12 This is a simplified structural diagram of the slide seat when the hanger is folded, in which adjacent support parts abut against each other;
[0041] Figure 13 This is a simplified structural diagram of the slide seat when the hanger is folded, in which the connecting parts located on the same straight line abut against each other;
[0042] Figure 14 This is a simplified structural diagram of the slide seat when the hanger is folded. In the figure, adjacent support parts abut against each other and connecting parts located on the same straight line abut against each other.
[0043] Description of the accompanying drawings:
[0044] 11. Rod body; 12. Sliding seat; 13. Hanging seat; 14. First push seat; 15. Second push seat;
[0045] 111. guide groove; 112. extension opening;
[0046] 1201, support portion; 1202, connection portion; 1203, limit portion; 1204, sliding channel; 1205, first buffer portion; 1206, buffer gap; 1207, first limit platform; 1208, second limit platform; 1209, slide groove; 1210, second buffer portion; 1211, first buckle; 1212, second buckle;
[0047] 131. hanging portion; 132. mounting portion; 133. hanging hole;
[0048] 141, first card slot;
[0049] 151. Second card slot. DETAILED DESCRIPTION
[0050] To make the technical problems solved by the present invention, the technical solutions adopted, and the technical effects achieved more clearly, the technical solutions of the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative work shall fall within the scope of protection of the present invention.
[0051] In the description of this utility model, unless otherwise expressly specified or limited, the terms "connected," "fixed," "connected," "communicated," "abutted," "clamped," etc. should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integration; mechanical connections, electrical connections; direct connections, or indirect connections through an intermediate medium; internal communication between two components, or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0052] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.
[0053] In the description herein, it should be understood that terms such as "upper," "lower," "left," and "right" are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely for ease of description and simplified operation. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meaning.
[0054] Throughout this specification, references to terms such as "one embodiment" and "example" indicate that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example.
[0055] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
[0056] Unless specifically stated or defined otherwise, the term “and / or” used in the present invention includes any and all combinations of one or more of the associated listed items.
[0057] For the convenience of description, unless otherwise specified, the up and down directions mentioned below are the same as Figure 2 The up and down directions are consistent with the Figure 2 The left and right directions are consistent with the Figure 2 The projection direction itself is consistent.
[0058] Existing household items such as clothes drying racks and curtain racks typically hang clothes or curtains via a hanging rod assembly. The hanging rod assembly's hanging rod assembly is mounted on a rod body via a sliding slide. Taking a clothes drying rack as an example, the hanging rod assembly of a clothes drying rack currently utilizes multiple hanging rods spaced apart on the rod body to dry clothes. The slides can slide, driving the hanging rods toward or away from each other. Adjacent slides are linked, meaning that a slide can slide relative to an adjacent slide while also driving adjacent slides to slide left and right along the rod body. Currently, the slide comprises a support portion and a connection portion connected to the support portion. The connecting portion of any slide is slidably mounted on the support portion of an adjacent slide. The distance between two adjacent slides depends on the lengths of the support portion and the connecting portion. When the lengths of the support portion and the connecting portion are long, the path that the connecting portion slides left and right along the support portion is long, resulting in a larger distance between the multiple hangers when the multiple hangers are deployed, and a better drying effect. However, because the support portions of adjacent slides abut against each other when they approach each other, the distance between the multiple hangers when the multiple hangers are folded is also relatively large when the lengths of the support portion and the connecting portion are long. In other words, the distance between two adjacent hangers is too large, making it inconvenient to hang or remove clothes. When the lengths of the support portion and the connecting portion are short, although it is convenient to hang or remove clothes, the distance between the hangers when the multiple hangers are deployed is small, resulting in a poor drying effect.
[0059] like Figures 1 to 9 As shown, this embodiment provides a hanging rod assembly, which can be applied to household appliances such as clothes drying machines or electric curtain machines. In this embodiment, the hanging rod assembly is applied to the clothes drying machine as an example.
[0060] The hanging rod assembly includes a rod body 11 and multiple slides 12. Slides 12 are used to mount hangers 13, which are used to hang items such as clothing and curtains. The rod body 11 provides support for these two hangers 13. Slides 12 slide left and right on the rod body 11. Each slide 12 can be equipped with a hanger 13. When the slide 12 slides, the hangers 13 slide with it.
[0061] At least part of the slide 12 includes a support portion 1201 and a connection portion 1202 connected to the support portion 1201. Multiple slides 12 are arranged in sequence, and the slide 12 located at one end may not be provided with the connection portion 1202. For example, the slides 12 are arranged in sequence from left to right, and the support portion 1201 and the connection portion 1202 of the same slide 12 are connected in sequence from left to right. The slide 12 located at the rightmost end may not be provided with the connection portion 1202. The connection portion 1202 is located above the support portion 1201, and the hanger 13 is provided on the support portion 1201. The hanger 13 can be detachably mounted on the support portion 1201 or can be integrally formed with the support portion 1201. The hanger 13 is provided on the lower end surface of the support portion 1201 and extends downward. There are multiple slides 12, and the support portions 1201 of the multiple slides 12 are slidably mounted on the rod body 11 in sequence. The support portions 1201 of the plurality of slides 12 are slid onto the rod body 11 in sequence from left to right. The connection portion 1202 of any slide 12 is linked to the support portion 1201 of the adjacent slide 12 so that when the hanging rod assembly is in the unfolded state, the support portions 1201 of each slide 12 are evenly spaced and distributed on the rod body 11. The linked connection means that when the slides 12 are close to each other, any slide 12 can push or pull the adjacent slide 12 to slide until the slides 12 are gathered together and the distance between the support portions 1201 is minimized, thereby achieving complete retraction of the hanging rod assembly. When the slides 12 are away from each other to a certain distance, any slide 12 can push or pull the adjacent slide 12 to slide so that the support portions 1201 of each slide 12 are evenly spaced and distributed, thereby achieving complete unfolding of the hanging rod assembly.
[0062] Combine Figure 2 and Figure 6 In the same slide 12, the connecting portion 1202 and the supporting portion 1201 are arranged in sequence along the sliding path of the supporting portion 1201, and the right end of the supporting portion 1201 is fixedly connected to the left end of the connecting portion 1202. The connecting portion 1202 and the supporting portion 1201 can be integrally formed to improve the strength of the slide 12.
[0063] The connecting portions 1202 of two adjacent slides 12 are staggered along the width direction of the sliding path of the support portion 1201, that is, the connecting portion 1202 of one slide 12 is not on the sliding path of the connecting portion 1202 of the other adjacent slide 12, and the connecting portions 1202 of adjacent slides 12 are arranged in sequence from front to back, so that in the retracted state, the connecting portions 1202 of two or more adjacent slides 12 at least partially overlap, that is, the projections of the connecting portions 1202 of the two adjacent slides 12 along the width direction of the sliding path of the support portion 1201 partially overlap, thereby avoiding interference when the connecting portions 1202 of the two adjacent slides 12 slide.
[0064] The connection portion 1202 of any slide 12 of this embodiment can partially overlap with the connection portion 1202 of an adjacent slide 12, or can partially overlap with the connection portions 1202 of multiple adjacent and continuous slides 12. The connection portion 1202 of any slide 12 can at least slide on two or more adjacent support portions 1201. In this way, the present application can realize the deployment of the hanging seat 13 by driving the slides 12 to separate from each other, and can adjust the spacing between each hanging seat according to the hanging needs, thereby improving the hanging effect. When it is necessary to fold up each hanging seat 13, the connection portion 1202 of the slide 12 can at least slide on two or more adjacent support portions 1201, which increases the sliding distance of the connection portion 1202 when each slide 12 approaches each other, so that the spacing between each hanging seat 13 is smaller after folding, making it more convenient to hang or remove hanging objects on the hanging seat 13.
[0065] Optionally, each slide 12 further includes a first buffer portion 1205 disposed on the support portion 1201. The first buffer portion 1205 is located at the left end of the support portion 1201 and is integrally formed with the support portion 1201. The first buffer portion 1205 of any slide 12 is located in the sliding path of the support portion 1201 of an adjacent slide 12. The first buffer portion 1205 may be an elastic strip or a flexible block. When adjacent slides 12 approach each other, the first buffer portion 1205 of any slide 12 abuts against the support portion 1201 of the adjacent slide 12, preventing the support portions 1201 of the adjacent slides 12 from causing a rigid collision.
[0066] Furthermore, one end of the first buffer portion 1205 is connected to the support portion 1201, and the other end of the first buffer portion 1205 is spaced apart from the support portion 1201 and forms a buffer gap 1206 with the left end of the support portion 1201. The first buffer portion 1205 is an elastic strip, and buffering is achieved by utilizing the elastic deformation of the elastic strip. When a collision occurs, the elastic strip bends into the buffer gap 1206 to achieve buffering.
[0067] In one embodiment, the slide 12 also includes a limiting portion 1203 provided on the support portion 1201. At least two adjacent support portions 1201 together form a sliding channel 1204. The limiting portion 1203 is located on the sliding path of the connecting portion 1202 of the slide 12 to prevent the connecting portion 1202 of the slide 12 from disengaging from the sliding channel 1204, thereby realizing the linkage between adjacent slides 12. In this way, the present application can increase the maximum spacing between multiple hanging seats 13 when unfolded by increasing the length of the connecting portion 1202, thereby further improving the hanging effect. When it is necessary to fold each hanging seat 13, the connecting portion 1202 of the slide 12 can at least remain sliding on two or more adjacent support portions 1201, thereby increasing the sliding distance of the connecting portion 1202 when each slide 12 approaches each other, so that the spacing between each hanging seat 13 is smaller after folding, making it more convenient to hang or remove hanging objects on the hanging seat 13.
[0068] Furthermore, in the same slide 12, a first limiting platform 1207 is provided at one end of the support portion 1201. The first limiting platform 1207 is located at the left end of the support portion 1201. The first limiting platform 1207 and the first buffer portion 1205 are arranged in sequence along the front-to-back direction. The right end of the support portion 1201 is connected to the connecting portion 1202 to form a second limiting platform 1208. Both the first limiting platform 1207 and the second limiting platform 1208 are provided with limiting portions 1203. The limiting portions 1203 are located on the sides of the first limiting platform 1207 and the second limiting platform 1208. The limiting portions 1203 on the first limiting platform 1207 are arranged opposite to the limiting portions 1203 on the second limiting platform 1208. The first limit platform 1207 and the second limit platform 1208 are arranged at intervals along the sliding path of the support part 1201, the limit part 1203 on the first limit platform 1207 and the limit part 1203 on the second limit platform 1208 are arranged at intervals along the sliding path of the support part 1201, and the first limit platform 1207 and the second limit platform 1208 on the same slide 12 are staggered to avoid the second limit platform 1208 interfering with the sliding of the connecting part 1202.
[0069] The connecting portion 1202 of any slide 12 is slidably disposed between the first limiting platform 1207 on the adjacent slide 12 and the second limiting platform 1208 on the separated slide 12. The separated slides 12 may be one slide 12 separated, or two or more slides 12 separated. For example, when the connecting portion 1202 of any slide 12 slides between the first limiting platform 1207 on the adjacent slide 12 and the second limiting platform 1208 on the separated slide 12, the connecting portion 1202 of the slide 12 may slide on the support portions 1201 of the two adjacent slides 12. When the connecting portion 1202 of any slide 12 slides between the first limiting platform 1207 on the adjacent slide 12 and the second limiting platform 1208 on the separated slide 12, the connecting portion 1202 of the slide 12 may slide on the support portions 1201 of the three adjacent slides 12.
[0070] Optionally, each connecting portion 1202 is provided with a sliding groove 1209 extending along the sliding path of the support portion 1201, and the sliding groove 1209 is located on the lower end surface of the connecting portion 1202. The connecting portion 1202 of any slide 12 is sleeved on the first limiting platform 1207 of the adjacent slide 12 via the sliding groove 1209, and the sliding groove 1209 and the first limiting platform 1207 cooperate to achieve sliding guidance and position limiting of the connecting portion 1202.
[0071] Furthermore, each slide 12 further includes a second buffer portion 1210. One end of the second buffer portion 1210 is connected to the connecting portion 1202. The second buffer portion 1210 is located at the right end of the connecting portion 1202. The second buffer portion 1210 and the second limiting platform 1208 are spaced apart in the front-to-back direction. The other end of the second buffer portion 1210 extends in a direction close to the interior of the slide groove 1209 and is located in the movement path of the first limiting platform 1207. The working principle and function of the second buffer part 1210 are the same as those of the first buffer part 1205. When the support parts 1201 of adjacent slides 12 approach and abut each other, the first buffer part 1205 is used to achieve buffering. When the support parts 1201 of adjacent slides 12 move away from each other so that the second limit platform 1208 abuts against the inner wall of the slide groove 1209, the second buffer part 1210 is used to achieve buffering, and then the slide 12 drives another adjacent slide 12 to slide together, and finally each hanging seat 13 is unfolded one by one.
[0072] Optionally, a first snap 1211 is provided on the first limiting platform 1207, and a second snap 1212 is provided on the inner wall of the slide groove 1209 to match the first snap 1211. The first snap 1211 is located on the sliding path of the second snap 1212. When the support portions 1201 of adjacent slides 12 move away from each other so that the second limiting platform 1208 abuts against the inner wall of the slide groove 1209, the first snap 1211 and the second snap 1212 engage, preventing the connection portion 1202 of the slide 12 from separating from the support portion 1201 of the adjacent slide 12, thereby achieving linkage between the slides 12.
[0073] In one embodiment, the hanger assembly further includes a hanger 13. There are multiple hangers 13, each corresponding one-to-one with each of the slides 12. Each hanger 13 has a hanging portion 131 and a mounting portion 132, with the mounting portion 132 mounted on the support portion 1201 of the slide 12. In this embodiment, each slide 12 is mounted with a hanger 13, making the hanger assembly more compact and the hangers 13 more stable.
[0074] Furthermore, the hanging portion 131 is provided with a hanging hole 133 or a hook for conveniently hanging clothes or hanging a hanger for supporting clothes.
[0075] refer to Figures 10 to 14 As shown, in one embodiment, at least two adjacent support portions 1201 together form a sliding channel 1204. The connecting portion 1202 of any slide 12 is slidably disposed in the sliding channel 1204 together formed by the support portions 1201 of multiple adjacent slides 12. Exemplarily, when two adjacent support portions 1201 together form the sliding channel 1204, the connecting portions 1202 of the two adjacent slides 12 are arranged sequentially from front to back. The connecting portion 1202 of any slide 12 is slidably disposed in the sliding channel 1204 together formed by the support portions 1201 of two adjacent slides 12. When three adjacent support portions 1201 together form the sliding channel 1204, the connecting portions 1202 connected to the three support portions 1201 are arranged sequentially from front to back, and the connecting portion 1202 of any slide 12 is slidably disposed in the sliding channel 1204 together formed by the support portions 1201 of the three adjacent slides 12. That is, in the present application, the sliding channels 1204 formed by at least two adjacent support portions 1201 are arranged sequentially along the front-to-back direction, and the adjacent sliding channels 1204 are staggered, thereby avoiding interference between two or more adjacent connecting portions 1202 .
[0076] Furthermore, there are many ways to distribute the connection portion 1202 of the slide 12, for example, Figure 10 As shown, the connecting portions 1202 of adjacent slides 12 are staggered, and the connecting portions 1202 of two slides 12 separated by one slide 12 are located on the same straight line.
[0077] It is understandable that, Figure 11 As shown, the connecting portions 1202 of two slides 12 separated by two slides 12 may also be located on the same straight line. In other embodiments, the connecting portions 1202 of two slides 12 separated by more than two slides 12 may also be located on the same straight line.
[0078] In one embodiment, each slide 12 satisfies the following formula:
[0079] A≥L / (N+1);
[0080] A is the center-to-center distance between the support portions 1201 of two adjacent slides 12 when they are at their minimum distance. Therefore, when the slides 12 are equipped with hangers 13, A can also be the center-to-center distance between the hangers 13 on the two slides 12 when they are at their minimum distance. L is the center-to-center distance between the support portions 1201 of two adjacent slides 12 when they are at their maximum distance. Therefore, when the slides 12 are equipped with hangers 13, A can also be the center-to-center distance between the hangers 13 on the two slides 12 when they are at their maximum distance. N is the number of support portions 1201 forming the sliding channel 1204.
[0081] Alternatively, the length of the support portion 1201 along its own sliding direction is X, and the length of the connecting portion 1202 along the sliding direction of the support portion 1201 is Y, then L = X + Y, further reducing the distance between the hanging seats 13 when they are retracted. When adjacent slides 12 are linked together, L is the length of the slide.
[0082] When the hanging seat 13 is folded, the sliding seat 12 has three folded states.
[0083] The first folded state is Figure 12 As shown, the support portions 1201 of each slide 12 abut against each other, but one or more connecting portions 1202 do not abut, meaning that the connecting portions 1202 located on the same straight line are spaced apart. Assuming that the length of a support portion 1201 is X = 2, and the connecting portion 1202 slides on three adjacent support portions, that is, N = 3, then A = 2, and the length of the connecting portion 1202 is 4 < Y < 6, so L is greater than 4 and less than 8. In this case, the minimum retracted distance A = 2, and the maximum extended distance and the length of the slide 12, L, are greater than 4 and less than 8, satisfying the formula A > L / (N+1).
[0084] The second folded state is Figure 13As shown, the support portions 1201 of each slide 12 are spaced apart, and one or more connecting portions 1202 abut against each other, i.e., connecting portions 1202 located on the same straight line abut against each other. If X = 2 and N = 3, then Y > 3X = 6. In this case, the minimum retracted distance A ≥ 2, the maximum extended distance and the length of the slide 12 L ≥ 8, satisfying the formula A > L / (N+1).
[0085] The third folded state is as follows Figure 14 As shown, the supporting parts 1201 of each slide 12 abut against each other, and the connecting parts 1202 located on the same straight line abut against each other, where X=2, N=3, Y=3X=6. At this time, the minimum folding distance A=2, the maximum unfolding distance and the length of the slide 12 L=8 satisfy the formula A=L / (N+1).
[0086] From the three retracted states described above, it can be seen that the third retracted state has the smallest retracted distance and the largest extended distance, making it the most preferred. In the third retracted state, if two adjacent support portions 1201 form a sliding channel 1204, when one end of the connecting portion 1202 of any slide 12 slides within the sliding channel 1204, when the two adjacent slides 12 move away from each other to their maximum distance, the center distance between the hanging seats 13 on the two slides 12 is L. Then, when the two adjacent slides 12 move closer to each other to their minimum distance, the center distance between the hanging seats 13 on the two slides 12 is A = L / (2+1) = L / 3, that is, the minimum distance between the two adjacent hanging seats 13 when retracted is one-third of the distance between the two adjacent hanging seats 13 when extended to their maximum distance. If three adjacent support portions 1201 form a sliding channel 1204, the minimum distance between the two adjacent hanging seats 13 when retracted is one-quarter of the distance between the two adjacent hanging seats 13 when extended to their maximum distance.
[0087] Furthermore, the length of the hanger 13 along the sliding direction of the support portion 1201 is H, then A≥H, and N≤L / H-1, thereby avoiding interference between adjacent hangers 13 .
[0088] Furthermore, when A=X, Y=NX and L=(N+1)X are satisfied, that is, when the conditions of the third folded state mentioned above are met, a better drying effect is achieved while making it convenient to hang and remove the hanging objects.
[0089] In one embodiment, a guide groove 111 and an extension port 112 communicating with the guide groove 111 are provided on the rod body 11, and the rod body 11 is a sheet metal profile. The guide groove 111 penetrates the rod body 11 from left to right, and has slots on both the left and right sides of the guide groove 111. The slide 12, the first push seat 14, and the second push seat 15 are all slidably installed in the guide groove 111 through the slots. The extension port 112 is located at the bottom of the guide groove 111, and the guide groove 111 is communicated with the outside of the rod body 11 through the extension port 112. Each slide 12 is slidably installed in the guide groove 111 in sequence, and a portion of each hanger 13 extends through the extension port 112 to the outside of the rod body 11. The hanging portion 131 of each hanger 13 extends through the extension port 112 to the outside of the rod body 11, making it convenient to hang clothes.
[0090] Optionally, the hanging rod assembly further includes a first pushing seat 14 and a second pushing seat 15. The first pushing seat 14 and the second pushing seat 15 are slidably arranged in the guide groove 111 at intervals along the sliding path of the support portion 1201. A portion of the first pushing seat 14 and a portion of the second pushing seat 15 both extend to the outside of the rod body 11 through the extension opening 112. Each slide 12 is located between the first pushing seat 14 and the second pushing seat 15. The first pushing seat 14 is connected to the support portion 1201 of the slide 12 at one end, and the second pushing seat 15 is connected to the connecting portion 1202 of the slide 12 at the other end. Specifically, the first push seat 14 is provided with a first slot 141, and the first limiting platform 1207 on the support portion 1201 located at the left end of the rod body 11 is clamped in the first slot 141, thereby connecting the first push seat 14 with the slide seat 12 located at the left end of the rod body 11. The second push seat 15 is provided with a second slot 151, and the second limiting platform 1208 and the second buffer portion 1210 on the connecting portion 1202 located at the right end of the rod body 11 are both clamped in the first slot 141, thereby connecting the second push seat 15 with the slide seat 12 located at the right end of the rod body 11. When the hanging rod assembly is in use, the hanging seat 13 can be folded or unfolded by driving the first pushing seat 14 and the second pushing seat 15 to move.
[0091] This embodiment also provides a clothes drying machine, including the aforementioned hanging rod assembly. Specifically, the rod body 11 of the hanging rod assembly is connected to a lifting frame to enable the hanging rod assembly to be raised and lowered. The hanging rod assembly can be the main drying rod of the clothes drying machine or a crossbar of the clothes drying machine. When the hanging rod assembly serves as a crossbar, the crossbar is used to connect multiple spaced main drying rods.
[0092] In addition, this embodiment can also provide a curtain machine, comprising the above-mentioned hanging rod assembly. The curtain body such as a curtain is hung on the hanging portion 131 of the hanging seat 13 of the hanging rod assembly.
[0093] The technical principles of the present invention have been described above with reference to specific embodiments. These descriptions are intended solely to illustrate the principles of the present invention and should not be construed in any way as limiting the scope of protection of the present invention. Based on the explanations herein, those skilled in the art will be able to devise other specific implementations of the present invention without inventive effort, and such implementations will fall within the scope of protection of the present invention.
Claims
1. A hanging rod assembly, characterized in that: include: A rod body and a plurality of slides movably arranged on the rod body; The slide seat includes a fixedly connected support portion and a connecting portion, the support portion is slidably arranged on the rod body, the connecting portion and the support portion are arranged in sequence along the sliding path of the support portion, and the connecting portion of any slide seat is linked to the support portion of the adjacent slide seat, so that in the unfolded state, the support portions of each slide seat are evenly spaced and distributed on the rod body; The connection parts of two adjacent slides are staggered along the width direction of the sliding path of the support portion, so that in the folded state, the connection parts of the two adjacent slides at least partially overlap.
2. The hanging rod assembly according to claim 1, characterized in that In the same slide, a first limit platform is provided at one end of the support portion, and the other end of the support portion is connected to the connecting portion. The first limit platform is located on the sliding path of the connecting portion of the adjacent slide to prevent the connecting portion of the slide from separating from the supporting portion of the adjacent slide.
3. The hanging rod assembly according to claim 2, characterized in that: The support portion is connected to the connection portion to form a second limit platform, the first limit platform and the second limit platform are arranged at intervals along the sliding path of the support portion, and the first limit platform and the second limit platform on the same slide are staggered; The connecting portion of any one of the slides is slidably disposed between the first limiting platform on the adjacent slide and the second limiting platform on the separated slide.
4. The hanging rod assembly according to claim 3, characterized in that: The connecting portion is provided with a sliding groove extending along the sliding path of the supporting portion, and the connecting portion of any one of the slides is sleeved on the first limiting platform on the adjacent slide through the sliding groove.
5. The hanging rod assembly according to claim 4, characterized in that: Each of the slides further has a second buffer portion, one end of which is connected to the connecting portion, and the other end of which extends in a direction close to the interior of the slide groove and is located on the moving path of the first limit platform.
6. The hanging rod assembly according to claim 4, characterized in that A first buckle is provided on the first limiting platform, a second buckle adapted to the first buckle is provided on the inner wall of the sliding groove, and the first buckle is located on the sliding path of the second buckle.
7. The hanging rod assembly according to any one of claims 1 to 6, characterized in that: At least two adjacent support portions jointly form a sliding channel, and the connecting portion of any one of the slides is slidably disposed in the sliding channel jointly formed by the support portions of the adjacent plurality of slides, and the slide satisfies the following formula: A≥L / (N+1); Among them, A is the center distance between the support parts of the two adjacent slides when the two adjacent slides are close to each other to the minimum distance, L is the center distance between the support parts of the two adjacent slides when the two adjacent slides are away from each other to the maximum distance, N is the number of the support parts forming the sliding channel, N≥2.
8. The hanging rod assembly according to claim 7, characterized in that: It also includes a hanging seat with a hanging portion; the hanging seat is installed on the supporting portion of the slide, and there are multiple hanging seats and they correspond one to one with multiple slides; The length of the hanging seat along the sliding direction of the supporting portion is H, A≥H, N≤L / H-1.
9. The hanging rod assembly according to claim 7, characterized in that: The length of the supporting portion along its own sliding direction is X, and the length of the connecting portion along the sliding direction of the supporting portion is Y, then L=X+Y.
10. The hanging rod assembly according to claim 9, characterized in that: When A=X, Y=NX and L=(N+1)X.
11. The hanging rod assembly according to any one of claims 1 to 6, characterized in that: The slide further includes a first buffer portion provided on the support portion, and the first buffer portion of any slide is located on a sliding path of the support portion of an adjacent slide.
12. The hanging rod assembly according to claim 11, characterized in that One end of the first buffer portion is connected to the support portion, and the other end of the first buffer portion is spaced apart from the support portion to form a buffer gap with the support portion.
13. The hanging rod assembly according to claim 8, characterized in that The rod body is provided with a guide groove and an extension port connected to the guide groove, the guide groove is connected to the outside of the rod body through the extension port, each of the sliding seats is slidably arranged in the guide groove in turn, and a part of each of the hanging seats passes through the extension port and extends to the outside of the rod body.
14. The hanging rod assembly according to claim 13, wherein: It also includes a first pushing seat and a second pushing seat; the first pushing seat and the second pushing seat are slidably arranged in the guide groove at intervals along the sliding path of the support portion, a portion of the first pushing seat and a portion of the second pushing seat both pass through the protruding port and extend to the outside of the rod body, each of the sliding seats is located between the first pushing seat and the second pushing seat, the first pushing seat is connected to the supporting portion of the sliding seat at one end, and the second pushing seat is connected to the connecting portion of the sliding seat at the other end.
15. A clothes drying machine, characterized in that: The utility model comprises the hanging rod assembly according to any one of claims 1 to 14.