Towel warming bucket

CN224733835UActive Publication Date: 2026-09-08广州汉宋拓疆科技有限公司
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Patent Information

Application Number
CN202521361660.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2026-09-08
Estimated Expiration
2035-06-30

AI Technical Summary

Technical Problem

[0004]有鉴于此,本实用新型提供了毛巾加热桶,用于解决毛巾不易拿取、用户容易被烫伤的问题

Benefits of technology

[0027]采用了上述毛巾加热桶之后,可利用支撑件将加热腔内的毛巾顶起来,用以方便用户拿取,并且用户无需将手过于伸入到加热腔中,降低用户被烫伤的风险。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a towel heating barrel, including heating barrel mechanism, heating assembly and support piece, heating assembly distributes in the heating barrel mechanism, be equipped with heating cavity in the heating barrel mechanism, and heating cavity includes cavity bottom wall and extends and sets up the cavity side wall on cavity bottom wall, and the support piece is installed in the cavity bottom wall of heating cavity and extends and sets up upward, and the support piece is used for supporting the towel.
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Description

Technical Field

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

[0002] Towel heating tubs are mainly used to hold towels and heat them. They can quickly heat towels to a suitable temperature, allowing people to feel a more comfortable towel temperature when using them after showering or washing their face.

[0003] However, the towels placed inside the existing towel heating tank are not easy to take out, which makes it easy for users to touch the wall of the heating chamber and get burned while taking out the towel. Utility Model Content

[0004] In view of this, the present invention provides a towel heating bucket to solve the problems of towels being difficult to handle and users being easily burned.

[0005] To achieve one, some, or all of the above objectives, or other objectives, this utility model proposes:

[0006] A towel heating barrel includes a heating barrel mechanism, a heating component, and a support member. The heating component is distributed within the heating barrel mechanism, which has a heating chamber. The heating chamber includes a bottom wall and a side wall extending from the bottom wall. The support member is installed on the bottom wall of the heating chamber and extends upward. The support member is used to support the towel.

[0007] In some embodiments, the support member includes an upper end and a lower end, the lower end of the support member is connected to the bottom wall of the cavity, the upper end of the support member extends upward, the support member is spaced apart from the side wall of the cavity to form a flow gap, and the support member extends in width along the width direction or length direction of the heating cavity.

[0008] In some embodiments, the support member is hollow inside, and the heating components are also distributed inside the support member.

[0009] In some embodiments, the height of the support is between one-third and two-thirds of the depth of the heating cavity.

[0010] In some embodiments, an opening is provided at the top of the heating chamber;

[0011] The towel heating bucket also includes a sealing mechanism, which is rotatably connected to the heating bucket mechanism and can open or close the opening.

[0012] In some embodiments, the heating barrel mechanism includes an outer barrel, an inner barrel, a connecting ring, a receiving member, and a bottom tray. The receiving member is installed at the bottom of the outer barrel, an inner cavity is provided inside the outer barrel, the inner barrel is disposed in the inner cavity, and the bottom tray is installed at the bottom of the inner barrel. The inner barrel and the bottom tray together enclose a heating cavity with a top opening, wherein the inner barrel constitutes the side wall of the cavity, the bottom tray constitutes the bottom wall of the cavity, and the support member is connected to the bottom tray.

[0013] A connecting ring is installed on the top of the outer tub and connects the inner tub and the outer tub. A first wire passage is provided on the connecting ring. A capping mechanism is rotatably connected to the outer tub or the connecting ring. An installation cavity is provided inside the capping mechanism. A second wire passage is provided on the side of the capping mechanism that is connected to the heating tub mechanism. The second wire passage is provided corresponding to the first wire passage. The installation cavity communicates with the inner cavity through the second wire passage and the first wire passage.

[0014] The towel heating tank also includes a first power module and a second power module. The first power module is at least partially installed in the inner cavity, and the second power module is at least partially disposed in the mounting cavity. The first power module and the second power module are electrically connected by a wire, which passes through the second wire passage and the first wire passage.

[0015] In some embodiments, the towel heating barrel further includes a stop, which includes a rotating end and a swinging end. The rotating end is rotatably disposed on the connecting ring and is at least partially located in the first wire passage. The swinging end passes through the second wire passage and extends into the mounting cavity, so that the rotation of the sealing mechanism can drive the swinging end to rotate around the rotating end. When the sealing mechanism opens the opening, the stop can close the first wire passage.

[0016] In some embodiments, the heating barrel mechanism includes an outer barrel and a receiving member. The heating chamber is located inside the outer barrel, the receiving member is installed at the bottom of the outer barrel, and a light-emitting cavity is provided on the receiving member. The light-emitting cavity is arranged in a ring around the receiving member.

[0017] The towel heating bucket also includes light-emitting units, which are distributed in the light-emitting cavity.

[0018] In some embodiments, the capping mechanism includes an upper wall and a lower wall connected to each other, and a mounting groove is provided on the lower wall, which extends to the upper wall.

[0019] The towel heating tank also includes an aroma box, which is embedded in the mounting groove. When the sealing mechanism closes the opening, the lower wall closes the opening, and the aroma box connects to the heating chamber.

[0020] In some embodiments, the sealing mechanism includes a first end and a second end, the first end being rotatably mounted on the heating barrel mechanism, and the second end being able to swing about the first end to open or close the opening.

[0021] The towel heating barrel also includes a locking component, which is installed on the second end. When the second end closes the opening, the locking component connects the second end and the heating barrel mechanism.

[0022] The heating barrel mechanism is equipped with a locking port, and the upper edge of the locking port is a locking flange.

[0023] The locking assembly includes a pressing member, a locking hook, and an elastic member. The pressing member is slidably disposed on the sealing mechanism. The locking hook includes a driving end, a locking end, and a rotating part. The rotating part is rotatably disposed within the sealing mechanism. The driving end is connected to the pressing member. The locking end can swing out of the sealing mechanism and into the locking port. The sliding pressing member can drive the driving end to swing around the rotating end, which in turn causes the locking end to swing around the rotating part, so that the locking end can be inserted into or disengaged from the locking port.

[0024] When the locking end extends into the locking port, the swing of the second end will drive the locking end to abut against the locking edge;

[0025] The elastic element connects the sealing mechanism and the locking hook, and the elastic force of the elastic element is used to drive the locking end into the locking port.

[0026] Implementing the embodiments of this utility model will have the following beneficial effects:

[0027] After adopting the above-mentioned towel heating bucket, the towels inside the heating chamber can be lifted up by the support, making it convenient for users to take them out. Furthermore, users do not need to put their hands too far into the heating chamber, reducing the risk of users being burned. Attached Figure Description

[0028] 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.

[0029] Figure 1 A schematic diagram of the overall structure of one embodiment Figure 1 The capping mechanism is shown closing the opening;

[0030] Figure 2 A schematic diagram of the overall structure of one embodiment Figure 2 The diagram shows the sealing mechanism opening the opening;

[0031] Figure 3 This is a structural schematic diagram of a heating tank mechanism and its internal support components, according to one embodiment.

[0032] Figure 4 This is a cross-sectional structural diagram of one embodiment;

[0033] Figure 5 for Figure 4 Enlarged view of point A in the middle;

[0034] Figure 6 for Figure 4 Enlarged view of point B in the middle;

[0035] Figure 7 Schematic diagram of an explosive assembly structure in one embodiment Figure 1 ;

[0036] Figure 8 Schematic diagram of an explosive assembly structure in one embodiment Figure 2 ;

[0037] Figure 9 This is a vertical cross-sectional view of one embodiment;

[0038] Figure 10 for Figure 9 Enlarged view of point C in the middle;

[0039] Figure 11 This is a schematic diagram of the lower wall and its installation structure with the aroma box in one embodiment;

[0040] Figure 12 This is a partial structural diagram of one embodiment, showing the locking end passing through the locking port;

[0041] Figure 13 This is a schematic diagram of a locking hook structure according to one embodiment;

[0042] in:

[0043] 1-Heating barrel mechanism; 100-Heating chamber; 1001-Opening; 1002-Flow gap; 101-Bottom wall of the chamber; 102-Side wall of the chamber; 103-Front side wall, 104-Rear side wall; 105-Transition wall; 11-Outer barrel; 12-Inner barrel; 13-Connecting ring; 14-Supporting component; 15-Bottom tray; 110-Inner cavity; 111-Light-emitting cavity; 131-Rotating structure; 132-Rotating shaft; 133-First wire passage; 134-Locking port; 135-Locking edge; 136-Second inclined surface; 137-Bearing component; 1371-Through groove;

[0044] 2-Capping mechanism; 200-Mounting cavity; 201-Second wire passage; 21-Upper wall; 22-Lower wall; 23-Connecting part; 221-Mounting groove; 222-First inclined surface; 2001-First end; 2002-Second end; 202-Slot; 2021-Entry section; 2022-Snap-fit ​​section; 2023-Guide boss; 203-Mounting boss;

[0045] 3-Supporting component; 31-Upper end; 32-Lower end;

[0046] 4-First power-consuming module; 41-Heating component;

[0047] 5-Secondary power supply module; 51-Control board; 52-Bluetooth speaker;

[0048] 45-Wire;

[0049] 6-Stop; 61-Rotating end; 62-Swinging end;

[0050] 7-Light-emitting unit;

[0051] 8-Aroma box; 81-Bottom cover; 82-Connecting wall; 811-Ventilation hole; 821-Hook;

[0052] 9-Locking component; 91-Pressing element; 92-Locking hook; 93-Elastic element; 921-Drive end; 922-Locking end; 923-Rotating part. Detailed Implementation

[0053] 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.

[0054] 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.

[0055] 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.

[0056] See appendix Figures 1 to 13This utility model proposes a towel heating barrel, which includes a heating barrel mechanism 1 and a sealing mechanism 2. The heating barrel mechanism 1 has a heating chamber 100, and the top of the heating chamber 100 has an opening 1001 to allow the user to place a towel into the heating chamber 100 through the opening 1001. A heating element is also provided inside the heating barrel mechanism 1 to heat the heating chamber 100 and the towel inside. The sealing mechanism 2 is rotatably mounted on the heating barrel mechanism 1 and can open or close the opening 1001.

[0057] In addition, the towel heating bucket also includes a support component 3, as shown in the attached document. Figure 3 , 4 As shown in Figure 9, the heating chamber 100 includes a bottom wall 101 and a side wall 102 extending from the bottom wall 101. A support member 3 is installed on the bottom wall 101 of the heating chamber 100 and extends upwards, that is, the support member 3 extends towards the opening 1001. The support member 3 is used to support a towel. In other words, when a user places a towel into the heating chamber 100, the towel can be placed or hung on the support member 3, which raises the towel's position for easy access, reducing the risk of burns by preventing the user from having to extend their hand too far into the heating chamber 100.

[0058] In some embodiments, the support member 3 includes an upper end 31 and a lower end 32. The lower end 32 of the support member 3 is connected to the bottom wall 101 of the cavity, and the upper end 31 of the support member 3 is flat. The support member 3 extends in width or length along the heating cavity 100, that is, the support member 3 is designed in a plate shape, which can increase the contact area between the support member 3 and the towel, making the towel less likely to slip off. At the same time, the support member 3 is spaced apart from the side wall 102 of the cavity, that is, the support member 3 is only connected to the bottom wall 101 of the cavity, while there is a flow gap 1002 between the support member 3 and the side wall 102 of the cavity. The flow gap 1002 is used to enhance the air circulation on both sides of the support member 3, so that the air in the heating cavity 100 is heated more evenly, avoiding the problem of local temperature differences in the heating cavity 100.

[0059] Furthermore, the support member 3 is hollow inside, and heating components 41 are also distributed inside the support member 3 to improve the heating efficiency of the towels. Furthermore, the height of the support member 3 is between one-third and two-thirds of the depth of the heating cavity 100, for example, half the depth of the heating cavity 100. This prevents the support member 3 from being too low, which would increase the extent to which the user's hand needs to reach into the heating cavity 100, and also prevents the support member 3 from being too high, which would result in too few towels that can be placed on it.

[0060] In some embodiments, the towel tub mechanism is generally arranged in the form of an elliptical cylinder. The heating tub mechanism 1 includes a front sidewall 103, a rear sidewall 104, and two transition walls 105 connecting the front sidewall 103 and the rear sidewall 104. The surfaces of the front sidewall 103 and the rear sidewall 104 are generally flat, which facilitates the placement of the towel heating tub against a wall, that is, either the front sidewall 103 or the rear sidewall 104 can be placed against a wall. The surface of the transition wall 105 is an arc-shaped surface. The presence of the transition wall can eliminate the sharp corners at the connection between the rear sidewall 104 and the front sidewall 103, making the entire outer wall of the heating tub mechanism 1 more rounded.

[0061] For the connection structure between the sealing mechanism 2 and the heating barrel mechanism 1, please refer to the appendix. Figure 3 , 7 8. In some embodiments, the towel heating bucket also includes a rotating structure 131, which is directly or indirectly connected to the top of the heating bucket mechanism 1. The vertical projection of the rotating structure 131 is located within the vertical projection range of the heating bucket mechanism 1. The sealing mechanism 2 includes an upper wall 21, a lower wall 22, and a connecting part 23 disposed near the upper wall 21. The connecting part 23 is connected to the upper wall 21 or the lower wall 22. The upper wall 21 and the lower wall 22 are connected by bolts or a snap-fit ​​structure, and an installation cavity 200 is formed between them. The upper wall 21 is away from the heating bucket mechanism 1, and the lower wall 22 faces the heating bucket mechanism 1. The connecting part 23 is rotatably connected to the rotating structure 131 via a rotating shaft 132. Similarly, the purpose of this arrangement is also to place the towel heating bucket against the wall, so that the rotating shaft 132 is closer to the center of the heating bucket mechanism 1, preventing excessive conflict between the opening action of the sealing mechanism 2 and the wall it is against.

[0062] In some embodiments, see Appendix Figure 4 The heating barrel mechanism 1 includes an outer barrel 11, an inner barrel 12, a connecting ring 13, a receiving member 14, and a bottom tray 15. Both the outer barrel 11 and the inner barrel 12 are vertically continuous cylindrical structures. The aforementioned front sidewall, rear sidewall, and transition wall together constitute the outer barrel 11. The bottom of the outer barrel 11 is connected to the receiving member 14, so that the outer barrel 11 and the receiving member 14 together enclose an open-topped inner cavity 110. The receiving member 14 is used to rest against the ground. In other embodiments, the inner cavity 110 can also be a cavity independently of its core cavity. The bottom tray 15 is connected to the bottom of the inner barrel 12. The bottom tray 15 and the inner barrel 12 together enclose the aforementioned heating cavity 100. The bottom tray 15 constitutes the aforementioned cavity bottom wall 101, and the inner barrel 12 constitutes the aforementioned cavity sidewall 102. That is, the support member 3 is actually fixedly installed on the bottom tray 15. For example, see attached... Figure 4 and 9As shown, a through hole is opened in the center of the bottom tray 15. The upper end 31 of the support member 3 passes through the through hole and is located in the heating cavity. The lower end 32 of the support member 3 is fixed to the lower surface of the bottom tray, specifically by bolt locking. The inner tub 12 is installed in the inner cavity 110, and the bottom tray 15 is fixed on the receiving member 14. The heating element is placed in the inner cavity 110 and attached to the outer wall of the inner tub 12. Both the outer tub 11 and the inner tub 12 are made of rigid materials. For example, the outer tub 11 is made of plastic or wood, and the inner tub 12 is preferably made of metal, which facilitates heat conduction. The connecting ring 13 is installed on the top of the outer tub 11 and connects the inner tub 12 and the outer tub 11, so that the inner cavity 110 is closed. The aforementioned opening 1001 is formed on the connecting ring 13, and the aforementioned rotating structure 131 is provided on the connecting ring 13. The lower wall 22 has a first inclined surface 222 at its edge, and the connecting ring 13 has a second inclined surface 136 at its edge of the opening 1001. When the lower wall 22 closes the opening 1001, the first inclined surface 222 and the second inclined surface 136 are approximately parallel and abut against each other. Of course, in other embodiments, the aforementioned rotating structure 131 can also be installed on the outer barrel 11.

[0063] Among them, as attached Figure 3 , 4 As shown in Figures 5, 7, and 10, the connecting ring 13 has a first wire passage 133, which connects to the inner cavity 110. Specifically, the first wire passage 133 passes through the rotating structure 131. The sealing mechanism 2 is rotatably connected to the rotating structure 131 on the connecting ring 13. The sealing mechanism 2 has a second wire passage 201 on the side connected to the connecting ring 13, which connects to the mounting cavity 200. The second wire passage 201 is positioned corresponding to the first wire passage 133 and faces the connecting part 23, so that the mounting cavity 200 communicates with the inner cavity 110 through the second wire passage 201 and the first wire passage 133. The towel heating bucket includes a first power module 4 and a second power module 5. The first power module 4 is at least partially installed in the inner cavity 110. The first power module 4 includes the aforementioned heating element and power supply device. The power supply device is used to supply power, and the power supply device can be a built-in power supply or the aforementioned power cord. The second power module 5 is at least partially disposed within the mounting cavity 200. The second power module 5 and the first power module 4 are electrically connected via a wire 45, which passes through the second wire passage 201 and the first wire passage 133. The second power module 5 includes a control board 51 and at least one Bluetooth speaker 52 electrically connected to the control board 51. The control board 51 is electrically connected to the heating element, the power supply, and other electrical components. A control panel and a sound outlet are correspondingly provided on the sealing mechanism 2. The control panel is used to facilitate user adjustment of the operating status of the heating element and the Bluetooth speaker 52.

[0064] Because the first wire passage 133 is located on the surface of the connecting ring 13, when the sealing mechanism 2 is opened, the wire 45 will be exposed from the first wire passage 133, which is unsightly. Therefore, please refer to the appendix. Figure 4 , 5 In some embodiments, the towel heating barrel further includes a stop 6, which is rotatably disposed at the first wire passage 133. When the sealing mechanism 2 opens the opening 1001, the stop 6 can close the first wire passage 133.

[0065] Specifically, the stop 6 includes a rotating end 61 and a swinging end 62. The rotating end 61 is rotatably mounted on the connecting ring 13 and is at least partially located in the first wire passage 133. A bearing 137 is fixedly installed in the first wire passage 133 by bolts. The bearing 137 has a rotating groove along the rotation axis of the rotating end 61, and the rotating end 61 is placed in the rotating groove. A through groove 1371 is formed on the side of the bearing 137 away from the stop 6, for the wire 45 to pass through. The bearing is provided to reduce the exposed area of ​​the first wire passage 133 and to support the weight of the stop 6. The swinging end 62 passes through the second wire passage 201 and extends into the mounting cavity 200. After the sealing mechanism 2 rotates, the swing end 62 will abut against the edge of the second wire passage 201 of the sealing mechanism 2, and the swing end 62 will rotate around the rotating end 61 as the sealing mechanism 2 rotates. Finally, when the sealing mechanism 2 is in a vertical state, the stop 6 blocks the first wire passage 133.

[0066] In some embodiments, the receiving member 14 is provided with a light-emitting cavity 111, which is arranged in a ring around the receiving member 14 and is connected to the outside. The towel heating bucket also includes light-emitting units 7, such as LED light strips, which are distributed within the light-emitting cavity 111 and electrically connected to the control board 51. The light-emitting units 7 can emit neon lights, primarily for aesthetic purposes.

[0067] In some embodiments, the lower wall 22 of the sealing mechanism 2 has a mounting boss 203 on the side facing the mounting cavity 200, and a mounting groove 221 is formed on the side of the lower wall 22 away from the upper wall 21. The mounting groove 221 extends to the upper wall 21 and into the mounting boss 203. The towel heating container also includes an aroma box 8, which is embedded in the mounting groove 221 and engages with the mounting boss 203. When the sealing mechanism 2 closes the opening 1001, the lower wall 22 closes the opening 1001, the lower surface of the aroma box 8 is flush with the lower wall 22, and the aroma box 8 communicates with the heating cavity 100. The aroma box 8 is used to hold fragrance to make the towels in the heating cavity 100 smell fresher.

[0068] Specifically, the fragrance box 8 includes a bottom cover 81 and a connecting wall 82 formed on the bottom cover 81. The connecting wall 82 and the bottom cover 81 together form an enclosing space for placing the fragrance. The bottom cover 81 has several ventilation holes 811, and a protrusion is provided on the side of the bottom cover 81 facing the heating chamber 100 for easy user application of force. The connecting wall 82 is provided with a hook 821, which engages with the mounting protrusion. Specifically, as shown in the attached... Figure 11 As shown, the mounting boss is provided with at least two slots 202 communicating with the mounting groove 221. Each slot 202 includes an entry section 2021 and a snap-fit ​​section 2022. The width of the snap-fit ​​section 2022 is smaller than the width of the entry section 2021, allowing the hook 821 to extend into the mounting cavity 200 from the entry section 2021. The hook 821 slides along the slot 202 to hook onto the snap-fit ​​section 2022, thus preventing the hook 821 from disengaging from the slot 202. Furthermore, a guide boss 2023 can be provided within the mounting cavity 200 at the corresponding snap-fit ​​section 2022. The guide boss 2023 is inclined towards one end of the entry section 2021. When the entry section 2021 moves towards the snap-fit ​​section 2022, the hook 821 can move upward along the guide boss 2023 and abut against it, ensuring that the connecting wall 82 is tightly against the mounting groove 221.

[0069] To prevent children from opening the sealing mechanism 2 and suffering burns, in some embodiments, see Appendix Figure 4 , 6 From 11 to 13, the towel heating tub also includes a locking assembly 9. The sealing mechanism 2 includes a first end 2001 and a second end 2002. A connecting part 23 is located at the first end 2001, allowing the first end 2001 to be rotatably mounted on the rotating structure 131. The second end 2002 can swing around the first end 2001 to open or close the opening 1001. The locking assembly 9 is mounted on the second end 2002. When the second end 2002 closes the opening 1001, the locking assembly 9 connects the second end 2002 and the connecting ring 13.

[0070] Specifically, a locking opening 134 is provided on the connecting ring 13, specifically on the second inclined surface 136. The locking opening 134 is connected to the inner cavity 110, and its upper edge forms a locking edge 135. The locking assembly 9 includes a pressing member 91, a locking hook 92, and an elastic member 93. The pressing member 91 is slidably disposed on the upper wall 21 of the sealing mechanism 2, and the sliding direction of the pressing member 91 is the thickness direction of the sealing mechanism 2. The locking hook 92 includes a driving end 921, a locking end 922, and a rotating part 923. The rotating part 923 is rotatably disposed within the sealing mechanism 2, and the locking end 922 can swing out of the sealing mechanism 2 and into the locking opening 134. After the pressing member 91 is pressed down and moves downward, it can abut against the driving end 921, thereby driving the driving end 921 to swing around the rotating end 61, correspondingly causing the locking end 922 to swing around the rotating part 923, so that the locking end 922 can extend into or disengage from the locking opening 134.

[0071] When the locking end 922 is inserted into the locking port 134, if a user drives the second end 2002 to swing without pressing the pressing member 91, the driving locking end 922 will abut against the locking edge 135, thereby preventing the second end 2002 from continuing to swing and preventing the opening 1001 from being opened.

[0072] The elastic element 93 is located within the mounting cavity 200. The elastic element 93 connects the capping mechanism 2 and the locking hook 92. The elastic force of the elastic element 93 drives the locking end 922 to swing away from the capping mechanism 2, that is, to drive the locking end 922 into the locking port 134. In other words, after the user releases the external force applied to the pressing member 91, the elastic element 93 will drive the locking end 922 back into the locking port 134. Therefore, the locking assembly 9 prevents the capping mechanism 2 from being accidentally opened by a child.

[0073] 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; rather, 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 barrel, comprising a heating barrel mechanism (1) and a heating assembly (41), the heating assembly (41) is distributed in the heating barrel mechanism (1), a heating cavity (100) is arranged in the heating barrel mechanism (1), the heating cavity (100) comprises a cavity bottom wall (101) and a cavity side wall (102) extendingly arranged on the cavity bottom wall (101), characterized in that, The towel heating barrel also includes a support member (3), which is installed on the bottom wall (101) of the heating chamber (100) and extends upward. The support member (3) is used to support the towel.

2. The towel warming cabinet of claim 1, wherein The support member (3) includes an upper end (31) and a lower end (32). The lower end (32) of the support member (3) is connected to the bottom wall (101) of the cavity. The upper end (31) of the support member (3) is flat. The support member (3) is spaced apart from the side wall (102) of the cavity to form a flow gap (1002). The support member (3) extends in width along the width or length direction of the heating cavity (100).

3. The towel warming cabinet of claim 1, wherein The support member (3) is hollow inside, and the heating component (41) is also distributed inside the support member (3).

4. The towel warming cabinet of claim 1, wherein The height of the support member (3) is between one-third and two-thirds of the depth of the heating cavity (100).

5. The towel warming cabinet of claim 1, wherein, An opening (1001) is provided at the top of the heating chamber (100); The towel heating bucket also includes a sealing mechanism (2), which is rotatably connected to the heating bucket mechanism (1) and can open or close the opening (1001).

6. The towel warming cabinet of claim 5, wherein, The heating barrel mechanism (1) includes an outer barrel (11), an inner barrel (12), a connecting ring (13), a receiving member (14), and a bottom tray (15). The receiving member (14) is installed at the bottom of the outer barrel (11). An inner cavity (110) is provided inside the outer barrel (11). The inner barrel (12) is located inside the inner cavity (110). The bottom tray (15) is installed at the bottom of the inner barrel (12). The inner barrel (12) and the bottom tray (15) together enclose the heating chamber (100) with a top opening (1001). The inner barrel (12) forms the side wall (102) of the chamber, and the bottom tray (15) forms the bottom wall (101) of the chamber. The support member (3) is connected to the bottom tray (15). The connecting ring (13) is installed on the top of the outer barrel (11) and connects the inner barrel (12) and the outer barrel (11). The connecting ring (13) has a first wire passage (133). The sealing mechanism (2) is rotatably connected to the outer barrel (11) or the connecting ring (13). The sealing mechanism (2) has an installation cavity (200). The sealing mechanism (2) has a second wire passage (201) on the side connected to the heating barrel mechanism (1). The second wire passage (201) is corresponding to the first wire passage (133). The installation cavity (200) communicates with the inner cavity (110) through the second wire passage (201) and the first wire passage (133). The towel heating barrel also includes a first power module (4) and a second power module (5). The first power module (4) is at least partially installed in the inner cavity (110), and the second power module (5) is at least partially disposed in the mounting cavity (200). The first power module (4) and the second power module (5) are electrically connected by a wire (45), which passes through the second wire passage (201) and the first wire passage (133).

7. The towel warming cabinet of claim 6, wherein The towel heating barrel also includes a baffle (6), which includes a rotating end (61) and a swinging end (62). The rotating end (61) is rotatably disposed on the connecting ring (13) and is at least partially located in the first wire passage (133). The swinging end (62) passes through the second wire passage (201) and extends into the mounting cavity (200), so that the rotation of the sealing mechanism (2) can drive the swinging end (62) to rotate around the rotating end (61). When the sealing mechanism (2) opens the opening (1001), the baffle (6) can close the first wire passage (133).

8. The towel warming cabinet of claim 1, wherein, The heating barrel mechanism (1) includes an outer barrel (11) and a receiving member (14). The heating chamber (100) is located inside the outer barrel (11). The receiving member (14) is installed at the bottom of the outer barrel (11), and a light-emitting cavity (111) is provided on the receiving member (14). The light-emitting cavity (111) is arranged in a ring around the receiving member (14). The towel heating bucket also includes a light-emitting unit (7), which is distributed in the light-emitting cavity (111).

9. The towel warming cabinet of claim 5 wherein, The sealing mechanism (2) includes an upper wall (21) and a lower wall (22) connected to each other. The lower wall (22) has an installation groove (221) that extends toward the upper wall (21). The towel heating barrel also includes an aroma box (8), which is embedded in the mounting groove (221). When the sealing mechanism (2) covers the opening (1001), the lower wall (22) closes the opening (1001), and the aroma box (8) is connected to the heating chamber (100).

10. The towel warming cabinet of claim 5, wherein, The sealing mechanism (2) includes a first end (2001) and a second end (2002). The first end (2001) is rotatably mounted on the heating barrel mechanism (1), and the second end (2002) can swing around the first end (2001) to open or close the opening (1001). The towel heating tub also includes a locking component (9), which is installed on the second end (2002). When the second end (2002) covers the opening (1001), the locking component (9) connects the second end (2002) and the heating tub mechanism (1). The heating barrel mechanism (1) is provided with a locking port (134), and the upper edge of the locking port (134) is a locking edge (135); The locking component (9) includes a pressing member (91), a locking hook (92), and an elastic member (93). The pressing member (91) is slidably disposed on the sealing mechanism (2). The locking hook (92) includes a driving end (921), a locking end (922), and a rotating part (923). The rotating part (923) is rotatably disposed within the sealing mechanism (2). The driving end (921) is connected to the pressing member (91). The locking end (922) can swing out of the sealing mechanism (2) and into the locking port (134). Sliding the pressing member (91) can drive the driving end (921) to swing around the rotating part (923), correspondingly causing the locking end (922) to swing around the rotating part (923), so that the locking end (922) can extend into or disengage from the locking port (134). When the locking end (922) is inserted into the locking port (134), the swinging of the second end (2002) will cause the locking end (922) to abut against the locking edge (135); The elastic element (93) connects the sealing mechanism (2) and the locking hook (92), and the elastic force of the elastic element (93) is used to drive the locking end (922) into the locking port (134).