Heating device, energy storage power supply, electromagnetic oven and energy storage electric appliance
By setting hooks, slots, or magnetic components between the heating device and the energy storage power source, the problem of ineffective cooperation between the heating device and the energy storage power source is solved, achieving a stable power supply connection and convenient outdoor cooking.
Patent Information
- Application Number
- CN202310968402.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-31
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2043-07-31
AI Technical Summary
Existing heating devices and energy storage power supplies cannot be used effectively together, resulting in unstable power supply during outdoor camping.
By setting up fittings and electrical connectors between the heating device and the energy storage power source, a detachable connection is achieved using structures such as hooks, slots, or magnetic components, and a stable power supply is achieved through the electrical connectors.
It achieves a stable connection and power supply between the heating device and the energy storage power source, ensuring the stability and convenience of the cooking process when camping outdoors.
Smart Images

Figure CN116817328B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of portable energy storage technology, in particular to a heating device, an energy storage power supply, an induction cooker and an energy storage electrical appliance. BACKGROUND
[0002] Outdoor camping has become a popular lifestyle today. People usually bring an outdoor energy storage power supply to power a heating device and other electrical appliances when camping outdoors, so as to cook and carry out other activities. However, the current heating device cannot be well used with the energy storage power supply. SUMMARY
[0003] The embodiments of the present application provide a heating device, an energy storage power supply, an induction cooker and an energy storage electrical appliance, at least to solve the problem that the heating device cannot be well used with the energy storage power supply.
[0004] The energy storage electrical appliance of the embodiments of the present application comprises a heating device and an energy storage power supply capable of charging and discharging. The heating device is provided with an assembly part and an electrical connection part, and is used for cooking food. The heating device is combined with the energy storage power supply, which is provided with a mounting part and an electrical connection part. The assembly part and the mounting part cooperate to limit the relative movement of the heating device and the energy storage power supply along the combined surface. The electrical connection part is used for electrical connection with the electrical connection part, so that the energy storage power supply supplies power to the heating device.
[0005] In some embodiments, the assembly part and the mounting part cooperate to make the heating device connectable.
[0006] In some embodiments, the assembly part and the mounting part make the heating device and the energy storage power supply detachably connectable through the snap-fit mode.
[0007] In some embodiments, the heating device comprises a first side and a second side opposite to each other, and the energy storage power supply comprises a top wall and a side wall connected to each other, the second side of the heating device and the top wall of the energy storage power supply are opposite to each other; the assembly part is a snap-fit part rotatably arranged on the second side of the heating device, and the mounting part is a snap-fit groove arranged on the side wall of the energy storage power supply, and the snap-fit part and the snap-fit groove are snap-fitted.
[0008] In some embodiments, the heating device comprises a first side and a second side opposite to each other, and the energy storage power supply comprises a top wall and a side wall connected to each other, the second side of the heating device and the top wall of the energy storage power supply are opposite to each other; the assembly part is a snap-fit groove arranged on the side wall of the heating device, and the mounting part is a snap-fit part rotatably arranged on the second side of the energy storage power supply, and the snap-fit part and the snap-fit groove are snap-fitted.
[0009] In some embodiments, the clasp comprises a connecting portion and a clamping portion which are bent to connect with each other, the clamping portion is used to clamp with the clamping groove, the clasp is rotatable to switch between a first state and a second state; in the case that the assembling part is a clasp rotatably arranged on the second side of the heating device and the mounting part is a clamping groove arranged on the side wall of the energy storage power supply: if the clasp is in the first state, the clamping portion clamps with the clamping groove, if the clasp is in the second state, the connecting portion is attached to the second side of the heating device; or, if the clasp is in the first state, the clamping portion is clamped in the clamping groove, if the clasp is in the second state, the clamping portion is located outside the clamping groove; in the case that the assembling part is a clamping groove arranged on the side wall of the heating device and the mounting part is a clasp rotatably arranged on the second side of the energy storage power supply: if the clasp is in the first state, the clamping portion clamps with the clamping groove, if the clasp is in the second state, the connecting portion is attached to the second side of the energy storage power supply; or, if the clasp is in the first state, the clamping portion is clamped in the clamping groove, if the clasp is in the second state, the clamping portion is located outside the clamping groove.
[0010] In some embodiments, the heating device comprises a first side and a second side which are opposite to each other, the energy storage power supply comprises a first side and a second side which are opposite to each other, the second side of the heating device and the second side of the energy storage power supply are opposite to each other; the second side of the heating device is provided with a positioning part, the second side of the energy storage power supply is provided with a limiting part, the positioning part and the limiting part cooperate to limit the assembling position of the heating device and the energy storage power supply.
[0011] In some embodiments, the positioning part is a protrusion and the limiting part is a groove.
[0012] In some embodiments, the positioning part is a groove and the limiting part is a protrusion.
[0013] In some embodiments, one of the positioning part and the limiting part is a magnetic part and the other is a metal which can be magnetized.
[0014] In some embodiments, both the positioning part and the limiting part are magnetic parts.
[0015] In some embodiments, one of the electric connecting part and the electric connecting part is a plug and the other is an interface, the plug and the interface are plugged to electrically connect the heating device and the energy storage power supply.
[0016] In some embodiments, the electric connecting part is a receiving coil and the electric connecting part is a transmitting coil, the transmitting coil and the receiving coil cooperate to make the energy storage power supply supply power to the heating device.
[0017] In some embodiments, the electrical connection is an electrical connection terminal, and the electrical connection terminal is in contact with the electrical connection terminal of the energy storage power supply to electrically connect the heating device and the energy storage power supply.
[0018] In some embodiments, at least one of the heating device and the energy storage power supply is provided with a handle for a user to hold.
[0019] In some embodiments, at least one of the heating device and the energy storage power supply is provided with a heat dissipation member for dissipating heat of the heating device and / or the energy storage power supply and / or a heat dissipation through hole in communication with the outside for transmitting heat to the outside.
[0020] In some embodiments, the heating device comprises any one of an induction cooker, an electric rice cooker, an electric oven, an electric baking tray, and an electric fryer.
[0021] The heating device of the embodiments of the present application is used for cooking food, and comprises an assembly member and an electrical connection member. The assembly member is used to engage with a mounting member of an energy storage power supply to limit relative movement of the heating device and the energy storage power supply along a joint surface. The electrical connection member is used to electrically connect with an electrical connection member of the energy storage power supply to enable the energy storage power supply to supply power to the heating device.
[0022] The energy storage power supply of the embodiments of the present application is used for charging and discharging, and comprises a mounting member and an electrical connection member. The mounting member is used to engage with an assembly member of a heating device to limit relative movement of the heating device and the energy storage power supply along a joint surface. The electrical connection member is used to electrically connect with an electrical connection member of the heating device to enable the energy storage power supply to supply power to the heating device.
[0023] The induction cooker of the embodiments of the present application comprises an assembly member and an electrical connection member. The assembly member is used to engage with a mounting member of an energy storage power supply to limit relative movement of the induction cooker and the energy storage power supply along a joint surface. The electrical connection member is used to electrically connect with an electrical connection member of the energy storage power supply to enable the energy storage power supply to supply power to the induction cooker.
[0024] In the heating device, the energy storage power supply, the induction cooker, and the energy storage electrical appliance of the present application, the assembly member of the heating device engages with the mounting member of the energy storage power supply, so that the heating device can be stably placed on the energy storage power supply when cooking is needed, and the heating device and the energy storage power supply do not move relative to each other along the joint surface. Meanwhile, when the heating device is placed on the energy storage power supply, the energy storage power supply supplies power to the heating device through the electrical connection of the electrical connection member and the electrical connection member. Compared with the current energy storage electrical appliance, the heating device and the energy storage power supply in the energy storage electrical appliance of the present application can better cooperate with each other.
[0025] Additional aspects and advantages of the present application will be in part apparent and in part pointed out below in the description. BRIEF DESCRIPTION OF DRAWINGS
[0026] The above and / or additional aspects and advantages of the present application will become apparent and be readily appreciated from the following description, including the appended drawings, wherein:
[0027] Figure 1 is a structural schematic diagram of the energy storage electric appliance of some embodiments of the present application;
[0028] Figure 2 is a structural exploded schematic diagram of the energy storage electric appliance of Figure 1 ;
[0029] Figure 3 is a structural schematic diagram of the heating device in the energy storage electric appliance of some embodiments of the present application;
[0030] Figure 4 is a connection schematic diagram of the heating device and the energy storage power supply of some embodiments of the present application;
[0031] Figure 5 is a structural schematic diagram of the heating device and the energy storage power supply of some embodiments of the present application, which are provided with positioning members and limiting members.
[0032] Explanation of main element symbols:
[0033] 1000, energy storage electric appliance;
[0034] 100, heating device; 10, first side of the heating device; 20, second side of the heating device; 30, assembling member; 37, clamping hook; 371, connecting part; 373, clamping part; 39, clamping groove; 40, positioning member; 50, electric connecting member; 60, handle; 70, heat dissipation member; 80, heat dissipation through hole;
[0035] 300, energy storage power supply; 301, first side of the energy storage power supply; 302, second side of the energy storage power supply; 303, top wall; 304, side wall; 305, mounting member; 3051, first mounting surface; 3053, second mounting surface; 307, limiting member; 309, power connecting member. DETAILED DESCRIPTION
[0036] Embodiments of the present application are described below in detail, embodiments of which are shown in the accompanying drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary, only for explaining the present application, and cannot be understood as limiting the present application.
[0037] In the description of the embodiments of the present application, the terms "first", "second" are only for descriptive purpose, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the embodiments of the present application, the meaning of "multiple" is two or more, unless otherwise explicitly and specifically limited.
[0038] Outdoor camping has become a popular lifestyle today. People usually take outdoor energy storage power supply to power the heating device and other electrical appliances when camping outdoors, so as to cook and carry out other activities. However, the current heating device cannot be well used with the energy storage power supply. To solve this problem, the present application provides a heating device 100, an energy storage power supply 300, an induction cooker and an energy storage electrical appliance 1000 (as shown). Figure 1
[0039] Please refer to Figure 1 , Figure 3 and Figure 4 The energy storage electrical appliance 1000 of the embodiments of the present application includes a heating device 100 and an energy storage power supply 300 capable of charging and discharging. The heating device 100 is provided with a fitting part 30 and an electrical connecting part 50, and is used for cooking food. The heating device 100 is combined with the energy storage power supply 300, the energy storage power supply 300 is provided with a mounting part 305 and an electrical connecting part 309, the fitting part 30 and the mounting part 305 cooperate to limit the relative movement of the heating device 100 and the energy storage power supply 300 along the combined surface, and the electrical connecting part 50 is used for electrical connection with the electrical connecting part 309, so that the energy storage power supply 300 supplies power to the heating device 100. Among them, the heating device 100 includes any one of an induction cooker, an electric rice cooker, an electric oven, an electric baking tray and an electric fryer. The heating device 100 of the embodiments of the present application is an induction cooker.
[0040] In the energy storage electrical appliance 1000 of the present application, the fitting part 30 of the heating device 100 cooperates with the mounting part 305 of the energy storage power supply 300, so that the heating device 100 can be stably placed on the energy storage power supply 300 when cooking is needed, and the heating device 100 and the energy storage power supply 300 will not move relatively along the combined surface. At the same time, in the case that the heating device 100 is placed on the energy storage power supply 300, the energy storage power supply 300 supplies power to the heating device 100 through the electrical connection of the electrical connecting part 50 and the electrical connecting part 309. Compared with the current energy storage electrical appliance, the heating device 100 and the energy storage power supply 300 in the energy storage electrical appliance 1000 of the present application can be better used together.
[0041] The energy storage electrical appliance 1000 will be further described below in combination with the drawings.
[0042] Please refer to Figure 4 In some embodiments, the assembly member 30 and the mounting member 305 are engaged by a snap-fit manner to detachably connect the heating device 100 and the energy storage power supply 300.
[0043] Please refer to Figure 2 and Figure 4 In some embodiments, the heating device 100 comprises a first side 10 and a second side 20 opposite to each other, and the energy storage power supply 300 comprises a top wall 303 and a side wall 304, the second side 20 of the heating device 100 is opposite to the top wall 303 of the energy storage power supply 300. When the heating device 100 is combined with the energy storage power supply 300, the combined surface is the surface of the second side 20 of the heating device 100 and the second side 302 of the energy storage power supply 300.
[0044] In one embodiment, the assembly member 30 is a snap hook 37 rotatably arranged on the second side 20 of the heating device 100, and the mounting member 305 is a snap groove 39 arranged on the side wall 304 of the energy storage power supply 300, the snap hook 37 is engaged with the snap groove 39.
[0045] The assembly member 30 and the second side 20 of the heating device 100 can be connected by a rotating shaft, and the number of the assembly member 30 can be but not limited to two, three, four or more. In one example, the number of the assembly member 30 is two, and the two assembly members 30 are arranged on opposite sides of the second side 20 of the heating device 100. At this time, the number of the mounting member 305 is two, and the two mounting members 305 are arranged on opposite sides of the side wall 304 of the energy storage power supply 300, and the assembly member 30 is engaged with the corresponding mounting member 305. In another example, the number of the assembly member 30 is four, and the four assembly members 30 are arranged on opposite sides of the second side 20 of the heating device 100 in pairs. At this time, the number of the mounting member 305 can be two or four. In the case of two mounting members 305, the two mounting members 305 are arranged on opposite sides of the side wall 304 of the energy storage power supply 300, and the two assembly members 30 on the same side are engaged with one mounting member 305. In the case of four mounting members 305, the four mounting members 305 are arranged on opposite sides of the side wall 304 of the energy storage power supply 300 in pairs, and each assembly member 30 is engaged with the corresponding mounting member 305.
[0046] Please continue to refer to Figure 4 The snap hook 37 comprises a connecting portion 371 and an engaging portion 373, the engaging portion 373 is used for engaging with the snap groove 39, and the snap hook 37 can rotate to switch between the first state and the second state. The connecting portion 371 can rotate relative to the second side 20 of the heating device 100 to make the engaging portion 373 engage with the snap groove 39 or make the engaging portion 373 separate from the snap groove 39.
[0047] In one example, if the clamping hook 37 is in the first state, the clamping portion 373 is clamped with the clamping groove 39, and if the clamping hook 37 is in the second state, the connecting portion 371 is attached to the second side 20 of the heating device 100. In the case that the connecting portion 371 is attached to the second side 20 of the heating device 100, the space occupied by the heating device 100 as a whole is smaller, which is convenient for storage.
[0048] In some embodiments, the clamping portion 373 and the connecting portion 371 can be relatively stationary connected, for example, the clamping portion 373 and the connecting portion 371 are integrated structure; or the clamping portion 373 and the connecting portion 371 are relatively motionless connected through the connecting member. At this time, in the case that the clamping hook 37 is in the first state, the connecting portion 371 is perpendicular to the second side 20 of the heating device 100, the included angle between the clamping portion 373 and the connecting portion 371 is a right angle or an acute angle, and the clamping portion 373 cooperates with the clamping groove 39 to connect the heating device 100 and the energy storage power supply 300. In the case that the clamping hook 37 is in the second state, the included angle between the clamping portion 373 and the connecting portion 371 remains a right angle or an acute angle, and the included angle between the connecting portion 371 and the second side 20 of the heating device 100 can be 0° or 180°, at this time the heating device 100 is separated from the energy storage power supply 300.
[0049] In some embodiments, the clamping portion 373 and the connecting portion 371 can be relatively stationary connected, for example, the clamping portion 373 and the connecting portion 371 are integrated structure; or the clamping portion 373 and the connecting portion 371 are relatively motionless connected through the connecting member. At this time, in the case that the clamping hook 37 is in the first state, the connecting portion 371 is perpendicular to the second side 20 of the heating device 100, the included angle between the clamping portion 373 and the connecting portion 371 is a right angle or an acute angle, and the clamping portion 373 cooperates with the clamping groove 39 to connect the heating device 100 and the energy storage power supply 300. In the case that the clamping hook 37 is in the second state, the included angle between the clamping portion 373 and the connecting portion 371 remains a right angle or an acute angle, and the included angle between the connecting portion 371 and the second side 20 of the heating device 100 can be 0° or 180°, at this time the heating device 100 is separated from the energy storage power supply 300.
[0050] In another example, if the clamping hook 37 is in the first state, the clamping portion 373 is clamped in the clamping groove 39, and if the clamping hook 37 is in the second state, the clamping portion 373 is located outside the clamping groove 39. In the case that the clamping hook 37 is in the first state, the connecting portion 371 is perpendicular to the second side 20 of the heating device 100, the included angle between the clamping portion 373 and the connecting portion 371 is a right angle or an acute angle, and the clamping portion 373 cooperates with the clamping groove 39 to connect the heating device 100 and the energy storage power supply 300. In the case that the clamping hook 37 is in the second state, the connecting portion 371 can rotate around its own central axis (rotation), so that the clamping portion 373 is separated from the clamping groove 39, thereby the heating device 100 is separated from the energy storage power supply 300.
[0051] In another embodiment, the assembling part 30 is a clamping groove 39 arranged on the side wall 304 of the heating device 100, and the mounting part 305 is a clamping hook 37 rotatably arranged on the second side 302 of the energy storage power supply 300, the clamping hook 37 being clamped with the clamping groove 39.
[0052] The mounting part 305 and the second side 302 of the energy storage power supply 300 can be arranged with a rotating shaft for connection. The number of the mounting parts 305 can be, but is not limited to, two, three, four or more. In one example, the number of the mounting parts 305 is two, and the two mounting parts 305 are arranged on opposite sides of the second side 302 of the energy storage power supply 300. At this time, the number of the assembling parts 30 is two, and the two assembling parts 30 are arranged on opposite sides of the side wall 304 of the heating device 100, and the mounting parts 305 are clamped with the corresponding assembling parts 30. In another example, the number of the mounting parts 305 is four, and the four mounting parts 305 are arranged on opposite sides of the second side 302 of the energy storage power supply 300 in pairs. At this time, the number of the assembling parts 30 can be two or four. In the case of two assembling parts 30, the two assembling parts 30 are arranged on opposite sides of the side wall 304 of the heating device 100, and the two mounting parts 305 on the same side are clamped with one assembling part 30. In the case of four assembling parts 30, the four assembling parts 30 are arranged on opposite sides of the side wall 304 of the heating device 100 in pairs, and each mounting part 305 is clamped with one corresponding assembling part 30.
[0053] The clamping hook 37 comprises a connecting part 371 and a clamping part 373 which are bent and connected, and the clamping part 373 is used for clamping with the clamping groove 39. The clamping hook 37 can be rotated to switch between the first state and the second state. The connecting part 371 can be rotated relative to the second side 302 of the energy storage power supply 300 to make the clamping part 373 clamped with the clamping groove 39 or the clamping part 373 separated from the clamping groove 39.
[0054] In one example, if the clamping hook 37 is in the first state, the clamping part 373 is clamped with the clamping groove 39, and if the clamping hook 37 is in the second state, the connecting part 371 is attached to the second side 302 of the energy storage power supply 300. In the case of the connecting part 371 attached to the second side 302 of the energy storage power supply 300, the space occupied by the energy storage power supply 300 as a whole is smaller, which is convenient for storage.
[0055] In some embodiments, the engaging portion 373 and the connecting portion 371 can be connected relatively stationary, for example, the engaging portion 373 and the connecting portion 371 are integrated structure; or the engaging portion 373 and the connecting portion 371 are connected relatively stationary by the connecting member. At this time, in the case that the hook 37 is in the first state, the connecting portion 371 is perpendicular to the second side 302 of the energy storage power supply 300, the angle between the engaging portion 373 and the connecting portion 371 is a right angle or an acute angle, the engaging portion 373 cooperates with the clamping groove 39 to connect the heating device 100 and the energy storage power supply 300. In the case that the hook 37 is in the second state, the angle between the engaging portion 373 and the connecting portion 371 remains a right angle or an acute angle, the angle between the connecting portion 371 and the second side 302 of the energy storage power supply 300 can be 0° or 180°, at this time the heating device 100 is separated from the energy storage power supply 300.
[0056] In other embodiments, the engaging portion 373 can be connected relatively movable to the connecting portion 371, for example, the engaging portion 373 and the connecting portion 371 are connected relatively rotatable by the connecting member. At this time, in the case that the hook 37 is in the first state, the connecting portion 371 is perpendicular to the second side 302 of the energy storage power supply 300, the angle between the engaging portion 373 and the connecting portion 371 is a right angle or an acute angle, the engaging portion 373 cooperates with the clamping groove 39 to connect the heating device 100 and the energy storage power supply 300. In the case that the hook 37 is in the second state, the angle between the connecting portion 371 and the second side 302 of the energy storage power supply 300 can be 0° or 180°, the engaging portion 373 can rotate relative to the connecting portion 371, the angle between the engaging portion 373 and the connecting portion 371 can be 0° or 180°, at this time the heating device 100 is separated from the energy storage power supply 300.
[0057] In another example, if the hook 37 is in the first state, the engaging portion 373 is engaged in the clamping groove 39, if the hook 37 is in the second state, the engaging portion 373 is located outside the clamping groove 39. In the case that the hook 37 is in the first state, the connecting portion 371 is perpendicular to the second side 302 of the energy storage power supply 300, the angle between the engaging portion 373 and the connecting portion 371 is a right angle or an acute angle, the engaging portion 373 cooperates with the clamping groove 39 to connect the heating device 100 and the energy storage power supply 300. In the case that the hook 37 is in the second state, the connecting portion 371 can rotate around its own central axis (rotation), so that the engaging portion 373 is separated from the clamping groove 39, thereby the heating device 100 is separated from the energy storage power supply 300.
[0058] Please refer to Figure 5 In some embodiments, the second side 20 of the heating device 100 is provided with a positioning member 40, the second side 302 of the energy storage power supply 300 is provided with a limiting member 307, the positioning member 40 cooperates with the limiting member 307 to limit the assembly position of the heating device 100 and the energy storage power supply 300.
[0059] The positioning member 40 and the assembling member 30 can be spaced apart, and the number of the positioning member 40 can be one or more. The limiting member 307 and the mounting member 305 can be spaced apart, and the number of the limiting member 307 is the same as the number of the positioning member 40. In an embodiment, the number of the positioning member 40 is one, and the positioning member 40 can be arranged at any position on the second side 20 of the heating device 100 except the assembling member 30. The number of the limiting member 307 is also one, and the position of the limiting member 307 corresponds to the position of the positioning member 40. At this time, the number of the positioning member 40 and the limiting member 307 is small, which can save cost and make the overall structure of the heating device 100 and the energy storage power supply 300 lighter. In another embodiment, the number of the positioning member 40 is more than one, and the plurality of positioning members 40 can be evenly or unevenly distributed at any position on the second side 20 of the heating device 100 except the assembling member 30. The number of the limiting member 307 is also more than one, and the position of the limiting member 307 corresponds to the position of the positioning member 40. At this time, the positioning of the heating device 100 and the energy storage power supply 300 is more accurate, and the connection is more stable.
[0060] In an embodiment, the positioning member 40 is a protrusion, and the limiting member 307 is a groove. The cross-sectional shape of the positioning member 40 can be, but is not limited to, a circle, an ellipse, a rectangle, or other polygons, etc., and the cross-sectional shape of the limiting member 307 corresponds to the cross-sectional shape of the positioning member 40, so that the positioning member 40 and the limiting member 307 can be stably matched. The positioning member 40 and the heating device 100 can be a one-piece structure or a split structure. In the case of the one-piece structure, the positioning member 40 extends from the second side 20 of the heating device 100. In the case of the split structure, the positioning member 40 can be detachably or non-detachably connected to the second side 20 of the heating device 100. The detachable mounting mode includes, but is not limited to, threaded connection, screw connection, or buckle connection, etc. The non-detachable mounting mode includes, but is not limited to, welding, glue connection, or interference fit, etc.
[0061] In another embodiment, the positioning member 40 is a groove and the limiting member 307 is a protrusion. The limiting member 307 can have a cross-sectional shape that is, but is not limited to, circular, elliptical, rectangular, or other polygonal shape, and the positioning member 40 has a cross-sectional shape that corresponds to the cross-sectional shape of the limiting member 307, so that the positioning member 40 and the limiting member 307 can be stably fitted. The limiting member 307 and the energy storage power supply 300 can be a unitary structure or a separate structure. In the case of the limiting member 307 and the energy storage power supply 300 being a unitary structure, the limiting member 307 extends from the second side 302 of the energy storage power supply 300. In the case of the limiting member 307 and the energy storage power supply 300 being a separate structure, the limiting member 307 is detachably or non-detachably connected to the second side 302 of the energy storage power supply 300. The detachable mounting method includes, but is not limited to, threaded connection, screw connection, or snap connection. The non-detachable mounting method includes, but is not limited to, welding, adhesive connection, or interference fit.
[0062] In still another embodiment, one of the positioning member 40 and the limiting member 307 is a magnetic member, and the other is a metal that can be magnetized. The positioning member 40 can have a cross-sectional shape that is, but is not limited to, circular, elliptical, rectangular, or other polygonal shape, and the limiting member 307 has a cross-sectional shape that corresponds to the cross-sectional shape of the positioning member 40. In one example, the positioning member 40 is a magnetic member, and the limiting member 307 is a metal that can be magnetized. The metal that can be magnetized can be, for example, iron, cobalt, or nickel. In another example, the positioning member 40 is a metal that can be magnetized, and the limiting member 307 is a magnetic member.
[0063] In yet another embodiment, both the positioning member 40 and the limiting member 307 are magnetic members. In one example, the S-pole of the positioning member 40 faces the second side 302 of the energy storage power supply 300, and the N-pole of the limiting member 307 faces the second side of the heating device 100. In the case of the heating device 100 being connected to the energy storage power supply 300, the S-pole of the positioning member 40 and the N-pole of the limiting member 307 are attracted to each other. In another example, the N-pole of the positioning member 40 faces the second side 302 of the energy storage power supply 300, and the S-pole of the limiting member 307 faces the second side of the heating device 100. In the case of the heating device 100 being connected to the energy storage power supply 300, the N-pole of the positioning member 40 and the S-pole of the limiting member 307 are attracted to each other.
[0064] Please refer to Figure 2 and Figure 3In one embodiment, one of the electrical connector 50 and the electrical contact 309 is a plug, and the other is a socket, and the plug and the socket are plugged to electrically connect the heating device 100 and the energy storage power supply 300. In one example, the electrical connector 50 is a plug with a wire, and the electrical contact 309 is a socket. The heating device 100 can be provided with a receiving slot for receiving the plug and the wire, so that the heating device 100 is more tidy and has a higher integration. When the heating device 100 is not working, the plug is received in the receiving slot. When the heating device 100 needs to work and is connected with the energy storage power supply 300, the plug is extended from the receiving slot and plugged with the socket. In another example, the electrical connector 50 is a socket, and the electrical contact 309 is a plug with a wire. The energy storage power supply 300 can be provided with a receiving slot for receiving the plug and the wire, so that the energy storage power supply 300 is more tidy. When the heating device 100 is not working, the plug is received in the receiving slot. When the heating device 100 needs to work and is connected with the energy storage power supply 300, the plug is extended from the receiving slot and plugged with the socket.
[0065] In another embodiment, the electrical connector 50 is a receiving coil, and the electrical contact 309 is a transmitting coil, and the transmitting coil and the receiving coil cooperate to supply power from the energy storage power supply 300 to the heating device 100. The electrical connector 50 can be arranged on the second side 20 of the heating device 100, and the electrical contact 309 can be arranged on the second side 302 of the energy storage power supply 300. When the heating device 100 is not connected with the energy storage power supply 300, the transmitting coil fails to detect the receiving coil, and the energy storage power supply 300 does not supply power to the heating device 100. When the heating device 100 is connected with the energy storage power supply 300, the transmitting coil can detect the receiving coil, and the energy storage power supply 300 supplies power to the heating device 100.
[0066] In still another embodiment, the electrical connector 50 is an electrical connection terminal, and the electrical contact 309 is an electrical contact terminal, and the electrical connection terminal and the electrical contact terminal are in contact to electrically connect the heating device 100 and the energy storage power supply 300. In one example, the electrical connector 50 is arranged on the second side 20 of the heating device 100, and the electrical contact 309 is also arranged on the second side 302 of the energy storage power supply 300, and the positions of the electrical connector 50 and the electrical contact 309 correspond. In another example, the electrical connector 50 is arranged on the side wall 304 of the heating device 100, and the electrical contact 309 is also arranged on the side wall 304 of the energy storage power supply 300, and the positions of the electrical connector 50 and the electrical contact 309 correspond. When the heating device 100 is not connected with the energy storage power supply 300, the electrical connection terminal and the electrical contact terminal are not in contact, and the energy storage power supply 300 does not supply power to the heating device 100. When the heating device 100 is connected with the energy storage power supply 300, the electrical connection terminal and the electrical contact terminal are in contact, and the energy storage power supply 300 supplies power to the heating device 100.
[0067] Please see Figure 3 In some embodiments, at least one of the heating device 100 and the energy storage power supply 300 is provided with a handle 60 for a user to grip. In one embodiment, the heating device 100 is provided with a handle 60, which is disposed on a side wall 304 of the heating device 100. There may be one or two handles 60. If there is one handle 60, it is disposed on any one side wall 304 of the heating device 100. If there are two handles 60, they are respectively disposed on opposite side walls 304 of the heating device 100. In another embodiment, the energy storage power supply 300 is provided with a handle 60, which is disposed on a side wall 304 of the energy storage power supply 300. There may be one or two handles 60. If there is one handle 60, it is disposed on any one side wall 304 of the energy storage power supply 300. If there are two handles 60, they are respectively disposed on opposite side walls 304 of the energy storage power supply 300. In another embodiment, both the heating device 100 and the energy storage power supply 300 are provided with handles 60 to facilitate the taking and placing of the heating device 100 and the energy storage power supply 300.
[0068] Please see Figure 2 and Figure 3 In some embodiments, at least one of the heating device 100 and the energy storage power supply 300 is provided with a heat dissipation component 70 and / or a heat dissipation through hole 80 communicating with the outside. The heat dissipation component 70 is used to dissipate heat from the heating device 100 and / or the energy storage power supply 300, and the heat dissipation through hole 80 is used to transfer heat to the outside.
[0069] In one embodiment, the heating device 100 is provided with a heat dissipation member 70. The heat dissipation member 70 can be, but is not limited to, a fan, a blower, a heat conduction member, a heat sink, or the like. In another embodiment, the heating device 100 is provided with the heat dissipation member 70 and a heat dissipation through hole 80. The heat dissipation through hole 80 is formed in the side wall 304 of the heating device 100. The heat dissipation through hole 80 can be, but is not limited to, circular, elliptical, rectangular, polygonal, or the like. The number of the heat dissipation through hole 80 can be one or more. In still another embodiment, the energy storage power supply 300 is provided with the heat dissipation member 70. In yet another embodiment, the energy storage power supply 300 is provided with the heat dissipation member 70 and the heat dissipation through hole 80. The heat dissipation through hole 80 is formed in the side wall 304 of the energy storage power supply 300. The heat dissipation through hole 80 can be, but is not limited to, circular, elliptical, rectangular, polygonal, or the like. The number of the heat dissipation through hole 80 can be one or more. In still another embodiment, the heating device 100 and the energy storage power supply 300 are both provided with the heat dissipation member 70. The heat dissipation member 70 of the heating device 100 and the heat dissipation member 70 of the energy storage power supply 300 can be the same or different. In still another embodiment, the heating device 100 and the energy storage power supply 300 are both provided with the heat dissipation member 70 and the heat dissipation through hole 80. The heat dissipation through hole 80 of the heating device 100 and the heat dissipation through hole 80 of the energy storage power supply 300 can be the same or different.
[0070] In the energy storage electric appliance 1000 of the present application, the assembly member 30 of the heating device 100 cooperates with the mounting member 305 of the energy storage power supply 300, so that the heating device 100 can be stably placed on the energy storage power supply 300 when cooking is needed, and the heating device 100 and the energy storage power supply 300 cannot move relative to each other along the joint surface. At the same time, when the heating device 100 is placed on the energy storage power supply 300, the energy storage power supply 300 is electrically connected through the electrical connection member 50 and the electrical connection member 309 to supply power to the heating device 100. Compared with the current energy storage electric appliance, the heating device 100 and the energy storage power supply 300 in the energy storage electric appliance 1000 of the present application can better cooperate with each other.
[0071] The technical features of the above-mentioned embodiments can be combined in any manner. In order to make the description concise, all possible combinations of the technical features in the above-mentioned embodiments are not described, but as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present disclosure. Meanwhile, other embodiments can be derived from the above-mentioned embodiments, so that structural and logical replacements and changes can be made without departing from the scope of the present disclosure.
[0072] The above-described embodiments are merely illustrative of several embodiments of the present application, which are described in more detail and in a specific manner, but should not be construed as limiting the scope of the patent. It should be noted that for those skilled in the art, several modifications and improvements can be made without departing from the concept of the present application, and these all belong to the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.
Claims
1. An energy storage appliance, characterized by, include: A heating device, comprising fittings and electrical connections, for cooking food, comprising a first side and a second side facing away from each other, and a third side and a fourth side facing away from each other, wherein the third side and the fourth side are connected to both the first side and the second side of the heating device; and An energy storage power supply capable of charging and discharging includes a top wall and side walls connected to each other. A heating device is connected to the energy storage power supply, with a second side of the heating device facing the top wall of the energy storage power supply. The energy storage power supply is provided with a mounting component and a connecting component. The mounting component and the mounting component are engaged by a hook to restrict the relative movement of the heating device and the energy storage power supply along the joint surface. The electrical connector is used to electrically connect with the connecting component so that the energy storage power supply can supply power to the heating device. In a first direction from the third side to the fourth side of the heating device, the second side of the heating device extends beyond the top wall of the energy storage power source. The mounting part is a hook rotatably disposed on the second side of the heating device, and the mounting component is a slot disposed on the side wall of the energy storage power source. The hook engages with the slot. The hook includes a bent connecting part and a engaging part. The engaging part is used to engage with the slot. The hook can rotate to switch between a first state and a second state. If the hook is in the first state, the connecting part is perpendicular to the second side of the heating device, and the engaging part engages with the slot. If the hook is in the second state, the connecting part is attached to the second side of the heating device, and the angle between the connecting part and the second side of the heating device is 0° or 180°.
2. The energy storage appliance of claim 1, wherein, The assembly and the mounting components allow the heating device to be detachably connected to the energy storage power source via a snap-fit mechanism.
3. The energy storage appliance of any of claims 1-2, wherein, The heating device includes a first side and a second side opposite to each other, and the energy storage power supply includes a first side and a second side opposite to each other, with the second side of the heating device and the second side of the energy storage power supply facing each other. The heating device is provided with a positioning member on its second side, and the energy storage power supply is provided with a limiting member on its second side. The positioning member and the limiting member cooperate to limit the assembly position of the heating device and the energy storage power supply.
4. The energy storage device according to claim 3, characterized in that, The positioning element is a protrusion, and the limiting element is a groove; or The positioning element is a groove, and the limiting element is a protrusion; or One of the positioning element and the limiting element is a magnetic element, and the other is a metal that can be magnetized; or Both the positioning element and the limiting element are magnetic.
5. The energy storage electrical appliance according to any one of claims 1-2, characterized in that, One of the electrical connector and the power receiving component is a plug, and the other is an interface. The plug is inserted into the interface to electrically connect the heating device and the energy storage power source; or The electrical connector is a receiving coil, and the energizing component is a transmitting coil. The transmitting coil and the receiving coil cooperate to enable the energy storage power supply to power the heating device; or The electric connection member is an electric connection terminal, and the electricity connection member is an electricity connection terminal. The electric connection terminal is in contact with the electricity connection terminal to electrically connect the heating device and the energy storage power supply.
6. The energy storage appliance of any of claims 1-2, wherein, At least one of the heating device and the energy storage power supply is provided with a handle for a user to hold.
7. The energy storage appliance of any of claims 1-2, wherein, At least one of the heating device and the energy storage power supply is provided with a heat dissipation member for dissipating heat of the heating device and / or the energy storage power supply and / or a heat dissipation through hole in communication with the outside for transmitting heat to the outside.
8. The energy storage appliance of claim 1, wherein, The heating device includes any one of an induction cooker, an electric rice cooker, an electric oven, an electric baking tray, and an electric fryer.
9. A heating device for cooking food, characterized by, The heating device includes: opposite first and second sides, and opposite third and fourth sides, the third side of the heating device and the fourth side of the heating device are connected with the first side of the heating device and the second side of the heating device; an assembly member for cooperating with a mounting member of an energy storage power supply through a clamping hook mode to limit relative movement of the heating device and the energy storage power supply along a bonding surface; and an electric connection member for electrically connecting with an electricity connection member of the energy storage power supply to enable the energy storage power supply to supply power to the heating device; In a first direction from the third side of the heating device to the fourth side of the heating device, the second side of the heating device exceeds the top wall of the energy storage power supply. The assembly member is a clamping hook rotatably arranged on the second side of the heating device. The mounting member is a clamping groove arranged on the side wall of the energy storage power supply. The clamping hook and the clamping groove are clamped together. The clamping hook includes a connecting part and a clamping part bent to connect each other. The clamping part is used to clamp the clamping groove. The clamping hook can be rotated to switch between a first state and a second state. If the clamping hook is in the first state, the clamping part is clamped with the clamping groove, and the connecting part is perpendicular to the second side of the heating device. If the clamping hook is in the second state, the connecting part is attached to the second side of the heating device, and the included angle between the connecting part and the second side of the heating device is 0° or 180°.
10. An electromagnetic oven, characterized by, The induction cooker includes: opposite first and second sides, and opposite third and fourth sides, the third side of the induction cooker and the fourth side of the induction cooker are connected with the first side of the induction cooker and the second side of the induction cooker; an assembly member for cooperating with a mounting member of an energy storage power supply through a clamping hook mode to limit relative movement of the heating device and the energy storage power supply along a bonding surface; and an electric connection member for electrically connecting with an electricity connection member of the energy storage power supply to enable the energy storage power supply to supply power to the heating device; In a first direction from a third side of the electromagnetic cooker to a fourth side of the electromagnetic cooker, a second side of the assembling piece exceeds a top wall of the energy storage power supply, the assembling piece is a clamping hook rotatably arranged on the second side of the electromagnetic cooker, the mounting piece is a clamping groove arranged on a side wall of the energy storage power supply, the clamping hook is clamped with the clamping groove, the clamping hook comprises a connecting part and a clamping part which are bent and connected, the clamping part is used for clamping with the clamping groove, and the clamping hook can rotate to switch between a first state and a second state; if the clamping hook is in the first state, the clamping part is clamped with the clamping groove, and the connecting part is perpendicular to the second side of the electromagnetic cooker; if the clamping hook is in the second state, the connecting part is attached to the second side of the electromagnetic cooker, and the included angle between the connecting part and the second side of the electromagnetic cooker is 0° or 180°.
Citation Information
Patent Citations
Multipurpose induction cooker
CN213872791U
Outdoor electric oven with energy storage power supply
CN219000096U
Heating device, energy storage power supply, induction cooker and energy storage electric appliance
CN220397601U