Towel heating barrel

By introducing support components and heating elements with higher rigidity than the flexible wrapping material into the towel heating barrel, the problems of collapse and deformation at the folds of existing towel heating barrels have been solved, achieving better uprightness and heating effect.

CN224178320UActive Publication Date: 2026-04-28广州汉宋拓疆科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
广州汉宋拓疆科技有限公司
Filing Date
2025-04-25
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing towel heating tubs lack support at the folds, leading to problems such as wall collapse and deformation.

Method used

A foldable assembly was designed, comprising a flexible wrapper and multiple support members. The support members are more rigid than the flexible wrapper and are distributed along the unfolding direction. The flexible wrapper can be bent at the folding gaps and is equipped with a heating component to maintain its shape.

Benefits of technology

It effectively prevents significant collapse and deformation of the foldable components while maintaining the foldable effect and improving uprightness and heating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a towel heating barrel which comprises two main body pieces, a foldable assembly and a heating assembly, the two main body pieces are oppositely arranged, the two main body pieces can be close to or far away from each other, and the direction in which the two main body pieces are close to or far away from each other is the folding and unfolding direction; the foldable assembly comprises a flexible wrapping piece and a plurality of supporting pieces, the flexible wrapping piece is connected with the two main body pieces, the supporting pieces are wrapped in the flexible wrapping piece, and the hardness of the supporting pieces is larger than that of the flexible wrapping piece; wherein the multiple supporting pieces are distributed in the folding and unfolding direction, folding gaps are formed between the adjacent supporting pieces, and the flexible wrapping pieces can be bent at the folding gaps; the heating assembly is distributed on the foldable assembly and / or the at least one main body piece.
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Description

Technical Field

[0001] This utility model relates to the field of bathroom products, and more particularly to towel heating tubs. Background Technology

[0002] Some existing towel heating tubs can be folded, but the folding parts are usually made of flexible structures without support, which makes them not upright enough. When towels are put in, problems such as wall collapse and deformation may occur. Utility Model Content

[0003] In view of this, the present invention provides a towel heating bucket to solve the problems of insufficient wall rigidity, easy collapse and deformation in the prior art.

[0004] To achieve one, some, or all of the above objectives, or other objectives, this utility model proposes:

[0005] Towel heating tub, including:

[0006] Two main components are arranged opposite each other. The two main components can move closer to each other or further away from each other, and the direction in which they move closer to or further away from each other is the retraction direction.

[0007] The foldable component includes a flexible wrapping element and multiple support elements. The flexible wrapping element connects two main components, and the support elements are wrapped inside the flexible wrapping element. The rigidity of the support elements is greater than that of the flexible wrapping element. The multiple support elements are distributed along the unfolding direction, and there are folding gaps between adjacent support elements. The flexible wrapping element can be bent at the folding gaps.

[0008] Heating components are distributed on the foldable component and / or at least one main body component.

[0009] In some embodiments, two main body members and a flexible wrapping member enclose a heating cavity. The flexible wrapping member includes a first section, a second section, and a third section connected sequentially along the length direction. The first section and the second section can be bent toward each other, and the second section and the third section can be bent toward each other. The first section and the third section constitute two opposite sidewalls of the heating cavity, and the second section constitutes the bottom wall of the heating cavity.

[0010] Multiple support members extend along the length of the flexible wrapping member and include at least two first support members, at least two second support members and at least two third support members. At least two first support members are distributed in the first section along the retraction direction, at least two second support members are distributed in the second section along the retraction direction, and at least two third support members are distributed in the third section along the retraction direction.

[0011] In some embodiments, the heating assembly includes a control board and a flexible heating element. The control board is mounted on any main body or on the foldable assembly, and the flexible heating element is mounted on the foldable assembly and electrically connected to the control board.

[0012] In some embodiments, the two main components and the flexible enclosure form a heating cavity;

[0013] The flexible wrapping component includes an inner layer of fabric and an outer layer of fabric. The inner layer of fabric faces the heating cavity, while the outer layer of fabric faces away from the heating cavity. The flexible heating element and the support are sandwiched between the inner and outer layers of fabric. The support is located on the side of the flexible heating element facing away from the heating cavity. Both the inner and outer layers of fabric are antibacterial fabrics.

[0014] In some embodiments, the inner fabric, outer fabric, support member and flexible heating element are connected by thermo-pressing, and the bonding surfaces are bonded and fixed together.

[0015] In some embodiments, the flexible heating element includes an insulation layer, a heat-conducting layer, and a heating wire. The insulation layer is connected to a support member, the heat-conducting layer is connected to an inner fabric layer, and the heating wire is located between the insulation layer and the heat-conducting layer. The insulation layer, the heat-conducting layer, and the heating wire are bonded together with adhesive.

[0016] In some embodiments, the two main components are a first main component and a second main component, and the control board is mounted on the first main component;

[0017] The heating assembly also includes two heating plates, which are respectively mounted on the first main body and the second main body, and both heating plates are electrically connected to the control board.

[0018] The towel heating barrel also includes a first connecting wire, which has a first end and a second end. The first end is connected to a control board in the first main body, the first connecting wire passes through a flexible wrapping member, and the second end is connected to a heating plate in the second main body, so that the heating plate in the second main body is electrically connected to the control board through the first connecting wire.

[0019] In some embodiments, the foldable component is provided with two hot-pressing areas, and the flexible wrapping member, the support member and the flexible heating element are connected by hot pressing at the hot-pressing areas. An avoidance area is provided between the two hot-pressing areas, and a first connecting line is provided through the avoidance area.

[0020] The towel heating barrel also includes a second connecting line, through which the flexible heating element is electrically connected to the control board. The second connecting line is located in the avoidance area.

[0021] The flexible heating element includes an insulation layer, a heat-conducting layer, and a heating wire. A second connecting wire connects to the heating wire, and the heating wire, the second connecting wire, and the first connecting wire are all sandwiched between the insulation layer and the heat-conducting layer.

[0022] In some embodiments, two main body members and a flexible wrapping member enclose a heating cavity. The flexible wrapping member includes a first section, a second section, and a third section connected sequentially along the length direction. The first section and the second section can be bent toward each other, and the second section and the third section can be bent toward each other. The first section and the third section constitute two opposite sidewalls of the heating cavity, and the second section constitutes the bottom wall of the heating cavity.

[0023] The multiple support components include at least two first support components, at least two second support components, and at least two third support components. The at least two first support components are distributed in the first section along the retraction direction, the at least two second support components are distributed in the second section along the retraction direction, and the at least two third support components are distributed in the third section along the retraction direction.

[0024] The number of second support members located on the second partition is four. The four second support members are distributed in a field shape, and the intervals in the length direction of the flexible wrapping member constitute a clearance area.

[0025] In some embodiments, the towel heating barrel further includes a scissor bracket that connects two main body members and folds as the two main body members approach each other or unfolds as the two main body members move away from each other.

[0026] The scissor lift bracket includes two intersecting support legs, each of which connects two main components. The support legs are made of bamboo.

[0027] Implementing the embodiments of this utility model will have the following beneficial effects:

[0028] After adopting the above-mentioned towel heating bucket, a support is set to maintain the shape of the foldable component and allow the foldable component to bend at the folding gap. This setting makes the appearance of the foldable component more upright to prevent large collapse or deformation, and also maintains the foldable effect of the foldable component. Attached Figure Description

[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1 This is a schematic diagram of the overall structure of one embodiment.

[0031] Figure 2 This is an exploded assembly diagram of a portion of the structure in one embodiment;

[0032] Figure 3 This is a schematic diagram of the heating cavity in one embodiment;

[0033] Figure 4 This is a schematic diagram of the distribution structure of multiple support members in a flexible wrapping component according to one embodiment;

[0034] Figure 5 This is a schematic diagram showing the distribution of the hot-pressing area and the avoidance area in one embodiment.

[0035] Figure 6 This is a schematic diagram of the distribution structure of the first support member, the second support member, and the third support member in a flexible package according to one embodiment;

[0036] Figure 7 This is a schematic diagram of a foldable component in one embodiment when unfolded.

[0037] Figure 8 This is a schematic diagram of a foldable component in one embodiment when folded.

[0038] Figure 9 This is a schematic diagram of a foldable assembly in a folded state after two main components are brought close together in one embodiment.

[0039] Figure 10 This is a schematic diagram of a flexible heating element structure according to one embodiment;

[0040] Figure 11 This is a schematic diagram of the hierarchical structure of a foldable component and a flexible heating element according to one embodiment;

[0041] Figure 12 This is an exploded assembly diagram of the main components of one embodiment;

[0042] in:

[0043] 1-Main body component; 11-Outer shell; 12-Mounting frame; 100-Heating cavity; 1001-Side wall; 1002-Bottom wall; 110-Mounting cavity; 101-First main body component; 102-Second main body component; 121-Insulation mesh;

[0044] 2-Foldable component; 21-Flexible wrapping component; 22-Support component; 211-Inner fabric; 212-Outer fabric; 221-First support component; 222-Second support component; 223-Third support component; 2001-Folding gap; 2002-Hot-pressed area; 2003-Avoidance area; 2101-First partition; 2102-Second partition; 2103-Third partition;

[0045] 3-Heating component; 31-Control panel; 32-Flexible heating element; 33-Heating plate; 321-Insulation layer; 322-Heat-conducting layer; 323-Heating wire;

[0046] 4-First connecting line; 41-First end; 42-Second end;

[0047] 5-Second connecting line;

[0048] 6-Ground wire;

[0049] 7-Scissor lift bracket; 71-Support leg;

[0050] 8-Lid body;

[0051] X - Expansion / Contraction direction; Y - Length direction of the flexible package. Detailed Implementation

[0052] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings of this invention are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or accompanying drawings of this invention are used to distinguish different objects, not to describe a particular order.

[0053] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0054] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

[0055] See appendix Figures 1 to 12 This utility model proposes a towel heating tube, comprising two main components 1, a foldable component 2, and a heating component 3. The two main components 1 are arranged opposite each other, and the two main components 1 can move closer to or further away from each other, and the direction in which they move closer to or further away from each other is defined as the unfolding direction X.

[0056] The foldable component 2 includes a flexible wrapping element 21 and multiple support elements 22. The flexible wrapping element 21 connects two main body components 1. The shape of the flexible wrapping element 21 is not limited here. For example, three flexible wrapping elements 21 can be used to connect the bottom and side ends of the two main body components 1 respectively, or for example, a U-shaped flexible wrapping element 21 can be used to connect the two main body components 1 directly. Specifically, a connecting portion is formed at the edge of the flexible wrapping element 21, and the connecting portion is locked to the main body component 1 by bolts.

[0057] The support member 22 is enclosed within the flexible wrapping member 21. The rigidity of the support member 22 is greater than that of the flexible wrapping member 21, and the support member 22 is used to maintain the shape of the flexible wrapping member 21. Specifically, the support member 22 and the flexible wrapping member 21 are attached and fixed together, for example, by adhesive bonding or hot pressing, to prevent the position of the support member 22 relative to the flexible wrapping member 21 from shifting. Multiple support members 22 are distributed along the unfolding direction X, and there is a folding gap 2001 between adjacent support members 22, allowing the flexible wrapping member 21 to bend at the folding gap 2001. That is, as shown in the attached diagram... Figure 1 , 4 Figure 7 shows the unfolded state of the foldable component. When the two main components 1 are far apart, the flexible wrapping component 21 is fully unfolded, and all support components 22 are on the same plane. (See attached diagram.) Figure 8 and 9 The diagram shows the folded state of the foldable component. When the two main components 1 approach each other, the flexible wrapping component 21 bends at the folding gap 2001 and forms an attachment. Figure 8 The state shown is such that the two adjacent support members 21 in the unfolding direction X are folded together with the folding gap 2001 as the center (see attached). Figure 8 (The support members are not shown in the figure), and when the two main body members 1 move to the closest position, the support members 22 can overlap or tend to overlap in the retraction direction X.

[0058] Heating components 3 are distributed on the foldable component 2 and / or at least one main body 1, for example, distributed inside the flexible wrapping component 21 and inside the main body 1. The two main body 1 and the foldable component 2 together enclose a heating cavity 100, which is used to place towels or other items, and the heating components 3 are used to heat the heating cavity 100 and its contents.

[0059] Therefore, the towel heating bucket maintains the shape of the foldable component 2 by setting the support 22 and allows the foldable component 2 to bend at the folding gap 2001. This setting makes the appearance of the foldable component 2 more upright to prevent large collapse or deformation, and also maintains the foldable effect of the foldable component 2.

[0060] As attached Figure 4As shown, the expansion and contraction direction X is actually the width direction of the flexible package 21, while the support member 22 extends along the length direction Y of the flexible package 21. That is, the support member 22 can be distributed in the flexible package 21 over a larger range, so that all parts of the flexible package 21 are supported.

[0061] In some embodiments, the foldable component 2 includes a first partition 2101, a second partition 2102, and a third partition 2103 sequentially connected along the length Y direction of the flexible wrapping member 21. The first partition 2101 and the second partition 2102 are foldable towards each other, and the second partition 2102 and the third partition 2103 are foldable towards each other, causing the flexible wrapping member 21 to bend into a "U" shape. The second partition 2102 forms the bottom wall 1002 of the heating cavity 100, and the first partition 2101 and the third partition 2103 form two opposing side walls 1001 of the heating cavity 100. The two main body members 1 respectively form the other two side walls 1001 of the heating cavity 100. That is, after the two main body members 1 and the foldable component 2 are connected, a heating cavity 100 with an open top is finally formed, which can be configured as shown in the attached figure. Figure 1 The cover 8 shown is used to open or close the opening.

[0062] As attached Figure 6 As shown, the multiple support members 22 include at least two first support members 221, at least two second support members 222, and at least two third support members 223. The at least two first support members 221 are distributed along the unfolding direction X in the first partition 2101, the at least two second support members 222 are distributed along the unfolding direction X in the second partition 2102, and the at least two third support members 223 are distributed along the unfolding direction X in the third partition 2103. The support members 22 are preferably epoxy resin boards, which have strong toughness and can undergo a certain degree of elastic deformation, improving durability. Specifically, the first support members 221, second support members 222, and third support members 223 are each used to support one partition, reducing the interference of the rigid support members 22 on the folding process of the flexible wrapping member 21 and reserving space for the deformation of the flexible wrapping member 21.

[0063] In some embodiments, the flexible wrapping member 21 includes an inner layer fabric 211 and an outer layer fabric 212, both of which are antibacterial fabrics. The inner layer fabric 211 faces the heating cavity 100, and the outer layer fabric 212 faces away from the heating cavity 100.

[0064] Regarding the distribution structure of the heating component 3, in one embodiment, the heating component 3 may be distributed only on the foldable component 2. Specifically, the heating component 3 includes a control board 31 and a flexible heating element 32. The control board 31 is a circuit board, and the flexible heating element 32 is electrically connected to the control board 31. The control board 31 is mounted on any main body 1 or on the foldable component 2, preferably on one of the main body 1. The main body 1 may also be provided with a control panel, which is electrically connected to the control board 31. The user can adjust the working state of the flexible heating element 32 through the control panel. The flexible heating element 32 is mounted on the foldable component 2. Specifically, the flexible heating element 32 and the support member 22 are sandwiched between the inner fabric 211 and the outer fabric 212, and the support member 22 is located on the side of the flexible heating element 32 away from the heating cavity 100. That is, the support member 22 is attached to the outer fabric 212, while the flexible heating element 32 is attached to the inner fabric 211.

[0065] See appendix Figure 11 The inner fabric 211, outer fabric 212, support member 22, and flexible heating element 32 are bonded and connected together, with the bonding surfaces fully bonded and fixed to lock the position of the flexible heating element 32 and the foldable component 2. Specifically, one outer surface of the support member is completely bonded to the outer fabric, the other outer surface of the support member is completely bonded to the flexible heating element, and the outer surface of the flexible heating element away from the support member is completely bonded to the inner fabric. Preferably, the inner fabric 211, outer fabric 212, support member 22, and flexible heating element 32 are connected by heat pressing, and the edges of the inner fabric 211 and outer fabric 212 are sewn together to ensure that the flexible wrapping layer does not fall apart.

[0066] The flexible heating element 32 includes an insulation layer 321, a heat-conducting layer 322, and a heating wire 323. The insulation layer 321 connects to the support member 22, and the heat-conducting layer 322 connects to the inner fabric 211. The heat-conducting layer 322 is an aluminum foil sheet. The heating wire 323 is located between the insulation layer 321 and the heat-conducting layer 322, and the insulation layer 321, the heat-conducting layer 322, and the heating wire 323 are fixed together by adhesive. Specifically, the heat generated by the heating wire 323 is conducted to the aluminum foil sheet, which has a larger surface area, and the aluminum foil sheet dissipates the heat into the heating cavity 100, resulting in higher heating efficiency. The insulation cotton is mainly used to reduce the rate at which the heating cavity loses heat to the outside.

[0067] Regarding the distribution structure of the heating component 3, in another embodiment, referring to Annexes 2 and 12, the heating component 3 can be simultaneously distributed on the foldable component 2 and the two main body components 1. That is, based on the previous embodiment, the heating component 3 further includes two heating plates 33, which are respectively mounted on the two main body components 1, and both heating plates 33 are electrically connected to the control board 31. The main body component 1 includes a housing 11 and a mounting frame 12 installed in the housing 11. The housing 11 has a mounting cavity 110, and the control board 31 is disposed in the mounting cavity 110. The mounting frame 12 is used to mount the heating plates 33. In addition, a heat insulation mesh 121 can be added to the mounting frame 12. The heat insulation mesh 121 is arranged in a honeycomb pattern and is located on the side of the heating plate 33 facing the heating cavity 100.

[0068] Specifically, the towel heating tub also includes a first connecting line 4, which has a first end 41 and a second end 42. The two main components 1 are a first main component 1011 and a second main component 1021, respectively, and correspondingly, two heating plates 33 are installed on the first main component 1011 and the second main component 1021. When the control board 31 is installed on the first main component 1011, the heating plates 33 on the first main component 1011 are directly electrically connected to the control board 31 via wires. The first end 41 is connected to the control board 31 in the first main component 1011, and the first connecting line 4 is passed through the flexible wrapping member 21. Then, the second end 42 is connected to the heating plate 33 inside the second main component 1021, so that the heating plate 33 in the second main component 1021 is electrically connected to the control board 31 via the first connecting line 4.

[0069] See appendix Figure 5 , 6 7. 10. Because the flexible wrapping component 21, the flexible heating element 32, and the support component 22 are fixed by heat pressing, in order to prevent damage to the first connecting line 4 during the heat pressing process, the heat pressing process must avoid the first connecting line 4. Specifically, the foldable component 2 is provided with two heat pressing areas 2002. The flexible wrapping component 21, the support component 22, and the flexible heating element 32 are connected by heat pressing at the heat pressing areas 2002, and an avoidance area 2003 is provided between the two heat pressing areas 2002. That is, the avoidance area 2003 is a non-heat pressing area 2002. The first connecting line 4 is set through the avoidance area 2003, which can prevent the first connecting line 4 from being damaged by heat pressing.

[0070] Similarly, for the electrical connection between the heating wire 323 and the control board 31, the towel heating tube also includes a second connecting wire 5, which allows the heating wire 323 to be electrically connected to the control board 31 via the second connecting wire 5. The second connecting wire 5 is also located in the avoidance area 2003 and can penetrate the flexible wrapping 21 to enter the main body 1 and connect to the control board 31. Specifically, the heating wire 323, the second connecting wire 5, and the first connecting wire 4 are all sandwiched between the insulation layer 321 and the heat-conducting layer 322. That is, after the flexible heating element 32 is laminated into the flexible wrapping 21, the first end 41 and the second end 42 of the first connecting wire 4 are located outside the flexible wrapping 21. After the flexible wrapping 21 is connected to the two main body 1, the first end 41 and the second end 42 are then connected respectively. The aforementioned first connecting wire 4 and second connecting wire 5 are actually wires.

[0071] In addition, a ground wire 6 can be installed in the avoidance area 2003. One end of the ground wire 6 is connected to the grounding terminal of the heating plate 33 on the second main body 1021, and the other end of the ground wire 6 is connected to the grounding terminal of the heating plate 33 on the first main body 1011 and the grounding terminal of the control board 31.

[0072] As attached Figure 6 As shown, the aforementioned support member 22 is correspondingly set with the avoidance area 2003. Specifically, there are four second support members 222 located at the bottom wall 1002 of the heating cavity. These four second support members 222 are distributed in a field shape, and the intervals on the length direction Y of the flexible wrapping member 21 constitute the aforementioned avoidance area 2003. That is, the first connecting line 4 does not contact any support member 22, and is mainly used to keep the surface of the bottom wall 1002 flat.

[0073] In some embodiments, as shown in the appendix Figure 1 As shown, the towel heating bucket also includes a scissor bracket 7, which connects the two main body parts 1 and folds as the two main body parts 1 move closer to each other or unfolds as the two main body parts 1 move further apart. In this embodiment, the scissor bracket 7 is used to press against the ground to lift the two main body parts 1 and the foldable component 2 off the ground, preventing the flexible wrapping layer of the fabric material from being contaminated by water stains on the ground.

[0074] Specifically, the scissor lift bracket 7 includes two intersecting support legs 71, each support leg 71 connecting to two main body components 1. Each support leg 71 includes a rotating end and an adapting end. The rotating end is rotatably connected to one of the main body components 1, while the adapting end is both rotatably and slidably connected to the other main body component 1. This arrangement primarily aims to provide physical structural support for the folding / unfolding movements of the scissor lift bracket 7 and the two main body components 1. Preferably, the support legs 71 are made of bamboo, which offers both greater durability and lower cost.

[0075] Obviously, the embodiments described above are only some embodiments of this utility model, not all embodiments. The accompanying drawings show preferred embodiments of this utility model, but do not limit the patent scope of this utility model. This utility model can be implemented in many different forms; conversely, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this utility model specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the patent protection scope of this utility model.

Claims

1. A towel heating bucket, characterized in that, include: Two main body components (1) are arranged opposite each other. The two main body components (1) can move closer to each other or further away from each other, and the direction in which they move closer to or further away from each other is the retraction direction (X). A foldable component (2) includes a flexible wrapping element (21) and multiple support elements (22). The flexible wrapping element (21) connects two main body elements (1). The support elements (22) are wrapped inside the flexible wrapping element (21). The rigidity of the support elements (22) is greater than that of the flexible wrapping element (21). The multiple support elements (22) are distributed along the unfolding direction (X). There is a folding gap (2001) between adjacent support elements (22). The flexible wrapping element (21) can be bent at the folding gap (2001). Heating component (3) is distributed on the foldable component (2) and / or at least one main body component (1).

2. The towel heating bucket according to claim 1, characterized in that, The two main components (1) and the flexible wrapping component (21) enclose a heating cavity (100). The flexible wrapping component (21) includes a first partition (2101), a second partition (2102), and a third partition (2103) connected sequentially along the length direction (Y). The first partition (2101) and the second partition (2102) can be bent towards each other, and the second partition (2102) and the third partition (2103) can be bent towards each other. The first partition (2101) and the third partition (2103) constitute two opposite sidewalls (1001) of the heating cavity (100), and the second partition (2102) constitutes the bottom wall (1002) of the heating cavity (100). The plurality of support members (22) extend along the length direction (Y) of the flexible wrapping member (21) and include at least two first support members (221), at least two second support members (222) and at least two third support members (223). The at least two first support members (221) are distributed in the first partition (2101) along the retraction direction (X), the at least two second support members (222) are distributed in the second partition (2102) along the retraction direction (X), and the at least two third support members (223) are distributed in the third partition (2103) along the retraction direction (X).

3. The towel heating bucket according to claim 1, characterized in that, The heating component (3) includes a control board (31) and a flexible heating element (32). The control board (31) is mounted on any main body (1) or on the foldable component (2). The flexible heating element (32) is mounted on the foldable component (2) and is electrically connected to the control board (31).

4. The towel heating bucket according to claim 3, characterized in that, The two main body components (1) and the flexible wrapping component (21) enclose each other to form a heating cavity (100); The flexible wrapping component (21) includes an inner fabric (211) and an outer fabric (212). The inner fabric (211) faces the heating cavity (100), and the outer fabric (212) faces away from the heating cavity (100). The flexible heating element (32) and the support member (22) are sandwiched between the inner fabric (211) and the outer fabric (212). The support member (22) is located on the side of the flexible heating element (32) facing away from the heating cavity (100). Both the inner fabric (211) and the outer fabric (212) are antibacterial fabrics.

5. The towel heating bucket according to claim 4, characterized in that, The inner fabric (211), outer fabric (212), support member (22) and flexible heating element (32) are connected by hot pressing, and the bonding surfaces are bonded and fixed on the whole surface.

6. The towel heating bucket according to claim 4, characterized in that, The flexible heating element (32) includes a heat insulation layer (321), a heat-conducting layer (322), and a heating wire (323). The heat insulation layer (321) is connected to the support member (22), the heat-conducting layer (322) is connected to the inner fabric (211), and the heating wire (323) is located between the heat insulation layer (321) and the heat-conducting layer (322). The heat insulation layer (321), the heat-conducting layer (322), and the heating wire (323) are bonded together.

7. The towel heating bucket according to claim 3, characterized in that, The two main components (1) are a first main component (101)(1) and a second main component (102)(1), respectively, and the control board (31) is mounted on the first main component (101)(1); The heating assembly (3) further includes two heating plates (33), which are respectively mounted on the first main body (101)(1) and the second main body (102)(1), and both heating plates (33) are electrically connected to the control board (31); The towel heating bucket also includes a first connecting line (4), which includes a first end (41) and a second end (42). The first end (41) is connected to the control board (31) in the first main body (101)(1). The first connecting line (4) passes through the flexible wrapping member (21) and connects the second end (42) to the heating plate (33) in the second main body (102)(1), so that the heating plate (33) in the second main body (102)(1) is electrically connected to the control board (31) through the first connecting line (4).

8. The towel heating bucket according to claim 7, characterized in that, The foldable component (2) is provided with two hot-pressing areas (2002). The flexible wrapping component (21), the support component (22) and the flexible heating element (32) are connected by hot pressing at the hot-pressing areas (2002). An avoidance area (2003) is provided between the two hot-pressing areas (2002). The first connecting line (4) passes through the avoidance area (2003). The towel heating barrel also includes a second connecting line (5), through which the flexible heating element (32) is electrically connected to the control board (31), and the second connecting line (5) is located in the avoidance area (2003); The flexible heating element (32) includes a heat insulation layer (321), a heat conduction layer (322), and a heating wire (323). The second connecting line (5) connects the heating wire (323). The heating wire (323), the second connecting line (5), and the first connecting line (4) are all sandwiched between the heat insulation layer (321) and the heat conduction layer (322).

9. The towel heating bucket according to claim 8, characterized in that, The two main components (1) and the flexible wrapping component (21) enclose a heating cavity (100). The flexible wrapping component (21) includes a first partition (2101), a second partition (2102), and a third partition (2103) connected sequentially along the length direction (Y). The first partition (2101) and the second partition (2102) can be bent towards each other, and the second partition (2102) and the third partition (2103) can be bent towards each other. The first partition (2101) and the third partition (2103) constitute two opposite sidewalls (1001) of the heating cavity (100), and the second partition (2102) constitutes the bottom wall (1002) of the heating cavity (100). The plurality of support members (22) include at least two first support members (221), at least two second support members (222) and at least two third support members (223), wherein at least two first support members (221) are distributed in the first partition (2101) along the retraction direction (X), at least two second support members (222) are distributed in the second partition (2102) along the retraction direction (X), and at least two third support members (223) are distributed in the third partition (2103) along the retraction direction (X); The number of second support members (222) located on the second partition (2102) is four. The four second support members (222) are distributed in a field shape, and the spacing in the length direction (Y) of the flexible wrapping member (21) constitutes the avoidance area (2003).

10. The towel heating bucket according to claim 1, characterized in that, The towel heating bucket also includes a scissor bracket (7), which connects the two main body parts (1) and folds as the two main body parts (1) approach each other or unfolds as the two main body parts (1) move away from each other; The scissor bracket (7) includes two intersecting support legs (71), each of which is used to connect the two main body parts (1), and the support legs (71) are made of bamboo.