Heater
By designing a control component that can be rotated independently on the heater, the problem of the control component being inconvenient to operate after the heating device is rotated is solved, and a user-friendly temperature control experience is achieved.
Patent Information
- Application Number
- PCT/CN2025/093651
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-05-20
- Filing Date
- 2025-05-09
- Publication Date
- 2025-11-27
AI Technical Summary
The control components on existing heaters change position and angle when the heating element rotates, making them inconvenient for users to control.
The control component is designed to rotate independently. By setting first and second rotation axes, it is ensured that the control component can still face the user after the heating device rotates, making it easy to operate.
Users can individually adjust the angle of the control components to ensure convenient temperature control even after the heating device has rotated.
Smart Images

Figure CN2025093651_27112025_PF_FP_ABST
Abstract
Description
Warmer
[0001] The priority of the Chinese utility model with the patent number "202421096353.1" is claimed, and the priority date is May 20, 2024. TECHNICAL FIELD
[0002] The present application relates to the field of heating equipment, in particular to a warmer. BACKGROUND
[0003] In order to ensure the healthy growth of poultry and pets, it is crucial to provide a suitable temperature growth environment. During the breeding process, people usually use a warmer to create a comfortable environment, and the warmer heats up by heat radiation. In order to adapt to various use cases, the heating device in the existing warmer is usually rotatably arranged, so that the heating surface of the heating device can face the poultry or pets for irradiation. A control assembly for controlling the heating device is usually arranged on the warmer, and the user can control the temperature of the heating device through the control assembly.
[0004] However, the control assembly on the existing warmer is arranged in a fixed structure on the heating device, and when the heating device rotates, the control assembly will also rotate and change its position and angle, which is inconvenient for the user to control. SUMMARY
[0005] Therefore, the present application provides a warmer to solve the problem that the control assembly is inconvenient for the user to control after the heating device rotates in the prior art.
[0006] In order to achieve one or part or all of the above purposes or other purposes, the present application provides:
[0007] The warmer comprises a heating device and a control assembly, and the control assembly is rotatably arranged on the heating device.
[0008] The implementation of the present application will have the following beneficial effects:
[0009] After the above-mentioned warmer is adopted, since the control assembly can rotate alone, even if the angle of the heating device is changed after rotation, the user can also adjust the angle of the control assembly alone to ensure that the control assembly faces the user, thereby facilitating the user's control operation on the control assembly. BRIEF DESCRIPTION OF DRAWINGS
[0010] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0011] Fig. 1 is a schematic diagram of the overall structure of one embodiment, in which the heating device is shown in a first state.
[0012] Fig. 2 is a schematic diagram of the overall structure of one embodiment.
[0013] Fig. 3 is a schematic diagram of the overall structure of one embodiment, in which the first rotation axis and the second rotation axis are shown.
[0014] Fig. 4 is a schematic diagram of the mounting structure between the rotating shell and the support arm in one embodiment.
[0015] Fig. 5 is a schematic diagram of the mounting structure between the rotating shell and the support arm in one embodiment.
[0016] Fig. 6 is a schematic diagram of the control assembly structure of one embodiment.
[0017] Fig. 7 is a schematic diagram of the support arm structure of one embodiment.
[0018] Fig. 8 is a schematic diagram of the exploded assembly structure of one embodiment.
[0019] Fig. 9 is a schematic diagram of the vertical cross-sectional structure of the heating device of one embodiment.
[0020] Fig. 10 is a schematic diagram of the heating device structure of one embodiment, in which the blowing member is shown.
[0021] Fig. 11 is a schematic diagram of the heating device in a second state in one embodiment.
[0022] Fig. 12 is a schematic diagram of the installation of the rope onto the hanging boss in one embodiment.
[0023] Fig. 13 is a schematic diagram of the installation of the heating device onto the wall by means of a hanging nail in one embodiment.
[0024] Wherein: the heating device 1, the first rotating shaft 10, the shell 11, the heat generating part 12, the support arm 13, the partition 14, the blowing part 15, the second limiting structure 111, the second wire hole 112, the heating cavity 113, the hanging hole 114, the hanging boss 115, the mounting hole 121, The air hole 122, the connecting cover 131, the holding space 132, the opening 1131, the gap 1132, the through hole 1151, the connecting hole 1301, the avoiding space 1302, The inner wall of the avoiding space 13021, the second limiting boss 13022; the control assembly 2, the second rotating shaft 20, the rotating shell 21, the control element 22, the connecting shaft table 211, The first limiting structure 212, the first wire hole 213, the display panel 221, the control button 222, the flange 2111, the first limiting boss 2112; The bracket 3; The angle adjusting part 4, the first end 41, the second end 42; The rope 5, the hanging nail 6. DETAILED DESCRIPTION
[0025] 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 application belongs; the terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application; the present application will be described with reference to the drawings in which is shown by way of illustration the application in accordance with embodiments described herein using exemplary terminology. The terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application. The words "comprising," "including," "containing," and "having," and variations thereof, are inclusive and do not exclude other moieties, steps or components. The words "preferably," "preferred," "desired," or "desirable," and languages having a similar meaning refer to embodiments of the application that are desirable or particularly advantageous.
[0026] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase "in one embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily all referring to a common embodiment, or an embodiment that is preferred over other embodiments. It will be explicitly understood that the application as described herein can be combined with another application, even though the two applications can not be explicitly described as a combination.
[0027] In order to make the technical personnel in the art better understand the scheme of the application, the technical solutions in the embodiments of the application will be clearly and completely described below in conjunction with the drawings.
[0028] Referring to FIGS. 1-11, the present application provides a warmer, which comprises a heating device 1 and a control assembly 2. The heating device 1 has a heating surface. The heating device 1 is rotatable and has a first state in which the heating surface is vertical and a second state in which the heating surface is horizontal. The control assembly 2 is rotatably arranged on the heating device 1. The control assembly 2 has a control element 22. The control element 22 is electrically connected to the heating device 1. The control element 22 can be one or both of a display panel 221 and a control button 222. The display panel 221 can be a touch screen or a digital display screen. The display panel 221 is mainly used to display the heating temperature of the warmer. The control button 222 is used to adjust the heating temperature of the warmer.
[0029] Therefore, the control assembly 2 of the present embodiment can be rotated independently. Even if the angle of the heating device 1 is changed after being rotated, the user can still independently adjust the angle of the control assembly 2. For example, when the heating device 1 is in the first state, the display panel 221 and / or the control button 222 are arranged horizontally and face upward, as shown in FIG. 1. When the heating device 1 is in the second state, the display panel 221 and / or the control button 222 should face forward along with the rotation of the heating device 1, but the user can rotate the control assembly 2 by himself / herself, so that the display panel 221 and / or the control button 222 are arranged horizontally and face upward again, as shown in FIG. 11. The warmer can ensure that the control assembly 2 faces the user, that is, the display panel 221 and / or the control button 222 on the control assembly 2 are rotated to a position that is convenient for observation and operation, so as to facilitate the user to observe and adjust the control assembly 2.
[0030] Specifically, as shown in FIG. 3, the heating device 1 has a first rotation axis 10, and the heating device 1 rotates around the first rotation axis 10. The control assembly 2 has a second rotation axis 20, and the control assembly 2 rotates around the second rotation axis 20. The second rotation axis 20 is parallel to the first rotation axis 10, and the second rotation axis 20 and the first rotation axis 10 are arranged horizontally. Of course, in other embodiments, the first rotation axis 10 can be horizontal, and the second rotation axis 20 can be perpendicular to the first rotation axis 10. This other embodiment is not shown in the drawings.
[0031] Regarding the rotation structure between the control assembly 2 and the heating device 1, as shown in FIGS. 4-7, the control assembly 2 comprises a rotating shell 21 and a control element 22 arranged on the rotating shell 21. The rotating shell 21 extends in the length direction thereof and is provided with a connecting shaft table 211. The axis of the connecting shaft table 211 constitutes the second rotation axis 20. The heating device 1 is provided with a connecting hole 1301. The connecting shaft table 211 rotates in the connecting hole 1301.
[0032] Further, in order to prevent the control assembly 2 from being detached from the heating device 1, in the embodiment, the heating device 1 is provided with a relief space 1302, the connecting hole 1301 is communicated to the relief space 1302, the flange 2111 is arranged on the end of the connecting shaft base 211 away from the rotating shell 21, the flange 2111 extends along the circumference of the connecting shaft base 211, the flange 2111 is located in the relief space 1302 and can abut against the inner wall 13021 of the relief space 1302, thereby preventing the connecting shaft base 211 from being pulled out of the connecting hole 1301.
[0033] Further, the rotating shell 21 is provided with a first limiting structure 212, and the heating device 1 is provided with a second limiting structure 111, the first limiting structure 212 can be connected with the second limiting structure 111 to limit the rotation angle of the connecting shaft base 211. Preferably, the control assembly 2 can only rotate within a range of 180 degrees, and in this way, the problem of internal cable winding caused by the control assembly 2 rotating multiple turns can be effectively prevented.
[0034] Specifically, the first limiting structure 212 is a first limiting boss 2112 arranged on the circumference of the connecting shaft base 211, and the second limiting structure 111 is a second limiting boss 13022 arranged in the relief space 1302, the first limiting boss 2112 can abut against the second limiting boss 13022. In addition, the second limiting structure 111 can also exist in other forms, for example, a groove is arranged around the connecting hole 1301 on the inner wall 13021 of the relief space 1302, the first limiting boss 2112 is located in the groove, and the second limiting boss 13022 is formed in the groove.
[0035] Further, referring to Figs. 2 and 8, in the embodiment, the heating device 1 comprises a shell 11, a heat generating element 12 located in the shell 11, and at least one support arm 13 installed on the outside of the shell 11, and the rotating shell 21 is rotatably installed on the at least one support arm 13. The at least one support arm 13 is provided with a connecting hole 1301 and a avoiding space 1302. The heat generating element 12 is electrically connected with the control element 22. Preferably, the number of the support arms 13 is two. The two support arms 13 are each provided with the connecting hole 1301 and the avoiding space 1302. The two ends of the rotating shell 21 are each provided with a connecting shaft table 211. The two connecting shaft tables 211 are coaxially arranged. The two connecting shaft tables 211 are respectively rotatably connected with the two support arms 13, so that the force on the control assembly is more balanced. In the embodiment, the support arms 13 mainly serve to separate the control assembly 2 from the shell 11 and exist independently. The rotating shell 21 is in the shape of a column. The rotating shell 21 is arranged between the two support arms 13, so that the rotating shell 21, the two support arms 13, and the shell 11 jointly form a holding space 132. That is, the rotating shell 21 can also be used as a handle. A user can hold the rotating shell 21 to lift the warmer. Of course, in other embodiments, the rotating shell 21 can be rotatably embedded on the shell 11, and the support arms 13 are not needed.
[0036] Further, due to the presence of the flange 2111, the connecting shaft table 211 cannot be directly inserted into the connecting hole 1301. As shown in Figs. 4 and 5, in order to facilitate the installation between the rotating shell 21 and the shell 11, each support arm 13 is split into two connecting covers 131. The two connecting covers 131 are connected by bolts. One of the two connecting covers 131 is fixedly connected with the shell 11. Each connecting cover 131 is provided with a connecting gap 1312. The two connecting gaps 1312 are combined to form the connecting hole 1301. The connecting shaft table 211 is clamped between the two connecting covers 131. When the rotating shell 21 is installed, first, the two connecting covers 131 in the support arm 13 are separated. The connecting shaft table 211 is placed in one of the connecting gaps 1312. The flange 2111 is located in the avoiding space 1302. Then, the two connecting covers 131 are fixed by bolts.
[0037] Further, a connecting cavity 1311 is formed between the two connecting covers 131. The rotating shell 21 is provided with a first wire passing hole 213 penetrating the connecting shaft table 211. The shell 11 is provided with a second wire passing hole 112. The first wire passing hole 213 and the second wire passing hole 112 are in communication with the connecting cavity 1311. The control element 22 and the heat generating element 12 can be electrically connected by penetrating the first wire passing hole 213, the connecting cavity 1311, and the second wire passing hole 112 with a wire, so as to prevent the wire from being exposed. The connecting cavity 1311 can be an extension of the avoiding space 1302, or the connecting cavity 1311 is the avoiding space 1302 itself.
[0038] In addition, an external power cord can be arranged on the support arm to supply power to the control assembly 2 and the heat generating device 1.
[0039] Further, to prevent the poultry or pet from being scalded by directly touching the heat generating element 12 when the warmer is working, the present embodiment refers to Figs. 8 and 9, and the heat generating device 1 further comprises a partition 14, the housing 11 has a heating cavity 113, the heating cavity 113 is provided with an opening 1131, the heat generating element 12 is installed in the heating cavity 113, the partition 14 is installed at the opening 1131, and a gap 1132 is formed between the partition 14 and the heat generating element 12. The partition 14 can be made of heat insulation material or metal material, and the partition 14 is hollow and provided with a plurality of holes for emitting heat, and the heat emitted by the heat generating element 12 can pass through the partition 14. Since the gap is formed between the partition 14 and the heat generating element 12, the temperature of the partition 14 itself will not be too high, and even if the poultry or pet directly touches the partition 14, it will not be scalded, which plays a protective role.
[0040] In addition, the heat generating element 12 in the present embodiment can be in the form of a heating wire, a heating tube, or a heating plate combined with a heating wire.
[0041] Further, as shown in Fig. 10, the heat generating device 1 further comprises a blowing element 15, the heat generating element 15 is provided with a through mounting hole 121 and a ventilation hole 122, and the mounting hole 121 and the ventilation hole 122 are connected to the heating cavity 113 and the outside. The blowing element 15 is located in the mounting hole 121. The blowing element is electrically connected to the control assembly, and after the heat generating element is started, the air in the heating cavity starts to heat up, and after the blowing element is started, the heated air in the heating cavity can be blown to the outside, and at the same time, the outside air enters the heating cavity through the ventilation hole to balance the air pressure. The present embodiment utilizes the blowing element to accelerate the warming process.
[0042] In the present embodiment, the warmer further comprises at least one support 3, and the heat generating device 1 is rotatably installed on the at least one support 3, and the support 3 can be used to support on the ground. Preferably, the number of supports 3 is two, and the two supports 3 can be arranged to be mirror-symmetric to each other, and the heat generating device 1 is located between the two supports 3 to maintain the balance of the heat generating device 1.
[0043] Further, in the present embodiment, referring to Figs. 3 and 8, the warmer further comprises an angle adjusting element 4, a first end 41 of the angle adjusting element 4 penetrates the support 3 and is threadedly connected to the heat generating device 1, and a second end 42 of the angle adjusting element 4 can abut against the support 3. The angle adjusting element 4 adopts a hand-tightening bolt type, and the axis of the angle adjusting element 4 constitutes the first rotation axis 10. Preferably, the number of angle adjusting elements 4 is also two, and the two angle adjusting elements 4 are arranged to penetrate the two supports 3 respectively, and the two angle adjusting elements 4 are coaxially arranged.
[0044] In other embodiments, a plurality of hanging holes 114 and a plurality of hanging bosses 115 can be provided on the back of the casing 11 of the heating device 1, and a through hole 1151 can be provided on the hanging boss 115, so that the heating device 1 can be hung on the wall by the rope 6, and used horizontally, obliquely or vertically, as shown in FIG. 12. In this embodiment, the casing 11 is generally square or rectangular, and the hanging bosses 115 are provided in four groups, respectively at the four corners of the casing 11. When only two of the hanging bosses 115 are connected with the rope 6, the heating device 1 is in a first state; when all the four hanging holes 114 / hanging bosses 115 are connected with the rope, the heating device 1 is in a second state. In addition, as shown in FIG. 13, the hanging hole 114 is in the form of a gourd hole, and a nail 6 can be installed on the wall, which can be inserted into the hanging hole 114 to vertically install the heating device 1 on the wall.
[0045] Obviously, the above-described embodiments are only some of the embodiments of the present application, but not all the embodiments. The preferred embodiments of the present application are shown in the drawings, but the patent scope of the present application is not limited. The present application can be implemented in many different forms, and the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive. Although the present application 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 embodiments, or equivalently replace some of the technical features. Any equivalent structure made by using the content of the specification and drawings, directly or indirectly used in other related technical fields, is also within the scope of the patent protection of the present application.
Claims
1. A warmer comprising a heating device (1) and a control assembly (2), characterized in that, The control assembly (2) is rotatably arranged on the heat generating device (1).
2. The warmer of claim 1, wherein The heat generating device (1) comprises a shell (11), a heat generating element (12) arranged in the shell (11), and at least one support arm (13) arranged on the outer side of the shell (11), the control assembly (2) is rotatably arranged on the at least one support arm (13), and the control assembly (2) is electrically connected with the heat generating element (12).
3. The warmer of claim 2, wherein The support arm (13) comprises two connecting covers (131), and the two connecting covers (131) are detachably connected. The control assembly (2) is provided with a connecting shaft base (211), and the connecting shaft base (211) is clamped between the two connecting covers (131).
4. The warmer of claim 3, wherein The control assembly (2) comprises a rotating shell (21) and a control element (22) arranged on the rotating shell (21), and the connecting shaft base (211) is arranged on the rotating shell (21). The two connecting covers (131) form a connecting cavity (1311) therebetween, the rotating shell (21) is provided with a first wire passing hole (213) penetrating through the connecting shaft base (211), the shell (11) is provided with a second wire passing hole (112), and the first wire passing hole (213) and the second wire passing hole (112) are both communicated with the connecting cavity (1311).
5. The warmer of claim 2, wherein, The support arm (13) is provided in two, and the two ends of the control assembly (2) are connected with the two support arms (13) respectively.
6. The warmer of claim 5, wherein, The control assembly (2) is in the shape of a column, and the control assembly (2) is arranged between the two support arms (13) so as to form a holding space (132) together with the two support arms (13) and the shell (11).
7. The warmer of claim 1, wherein The heat generating device (1) has a first rotation axis (10), and the heat generating device (1) rotates around the first rotation axis (10); the control assembly (2) has a second rotation axis (20), and the control assembly (2) rotates around the second rotation axis (20), and the second rotation axis (20) is parallel or perpendicular to the first rotation axis (10).
8. The warmer of claim 1, wherein, The control assembly (2) comprises a rotating shell (21) and a control element (22) arranged on the rotating shell (21), and the rotating shell (21) is provided with a connecting shaft base (211). The heat generating device (1) is provided with a connecting hole (1301), and the connecting shaft base (211) rotates in the connecting hole (1301).
9. The warmer of claim 8, wherein, The heat generating device (1) is provided with an avoiding space (1302), the connecting hole (1301) is communicated to the avoiding space (1302), the connecting shaft base (211) is provided with a flange (2111), and the flange (2111) is located in the avoiding space (1302) and can abut against the inner wall (13021) of the avoiding space (1302).
10. The warmer of claim 9, wherein, The rotating shell (21) is provided with a first limiting structure (212), and the heating device (1) is provided with a second limiting structure (111), the first limiting structure (212) can be connected with the second limiting structure (111) to limit the rotation angle of the connecting shaft table (211).
11. The warmer of claim 10, wherein, The first limiting structure (212) is a first limiting boss (2112) arranged circumferentially on the connecting shaft table (211), and the second limiting structure (111) is a second limiting boss (13022) arranged in the avoiding space (1302), and the first limiting boss (2112) can abut against the second limiting boss (13022).
12. The warmer of claim 8, wherein, The control element (22) comprises a display panel (221) and / or a control button (222).
13. The warmer of claim 1, wherein The heating device (1) comprises a shell (11), a heat generating element (12) and a partition (14), the shell (11) and the partition (14) jointly enclose a heating cavity (113), the heat generating element (12) is installed in the heating cavity (113), the heat generating element (12) is electrically connected with the control assembly (2), and the partition (14) has a gap (1132) with the heat generating element (12), and the partition (14) is provided in a hollow manner.
14. The warmer of claim 1, wherein, The heating device (1) comprises a shell (11), a heat generating element (12) and a blowing element (15), the shell (11) and the heat generating element (12) enclose a heating cavity (113), the heat generating element (12) is provided with a through mounting hole (121) and a ventilation hole (122), the mounting hole (121) and the ventilation hole (122) are connected with the heating cavity (113) and the outside, and the blowing element (15) is located in the mounting hole (121).
15. The warmer of claim 14, wherein, The heating device (1) further comprises a partition (14), the partition (14) is installed on the shell (11), and the partition (14) and the heat generating element (12) have a gap (1132), and the partition (14) is provided in a hollow manner.
16. The warmer of claim 1, wherein At least one support (3) is further included, and the heating device (1) is rotatably installed on at least one support (3).
17. The warmer of claim 16, wherein An angle adjusting element (4) is further included, a first end (41) of the angle adjusting element (4) penetrates at least one support (3) and is threadedly connected to the heating device (1), a second end (42) of the angle adjusting element (4) can abut against the support (3), and an axis of the angle adjusting element (4) constitutes the first rotation shaft (10).
18. The warmer of claim 17, wherein, The number of the supports (3) is two, the number of the angle adjusting elements (4) is two, the heating device (1) is located between the two supports (3), and the two angle adjusting elements (4) penetrate the two supports (3) respectively.
19. The warmer of claim 1, wherein, The heating device (1) is provided with a plurality of hanging holes (114).
20. The warmer of claim 1, wherein, The heating device (1) is provided with a plurality of hanging bosses (115), and the hanging bosses are provided with through holes (1151).
Citation Information
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