Quick temperature sensing panel easy to assemble
By designing an annular groove and through hole structure on the induction cooker panel, combined with threaded connection and heat-resistant adhesive fixation, the problems of temperature detection lag and waterproofing of induction cookers are solved, achieving more accurate and sensitive temperature detection.
Patent Information
- Application Number
- CN202423014777.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-07
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-07
AI Technical Summary
Existing induction cookers suffer from temperature detection lag, making it impossible to accurately and in real-time provide feedback on the cookware temperature, especially due to the temperature sensor being too far from the cookware and the low thermal conductivity of the glass panel.
An easy-to-assemble rapid temperature sensing panel was designed. By opening an annular groove and a through hole on the panel, a threaded connection is achieved using the temperature-conducting cap of the temperature sensing probe and a connecting buckle. The temperature sensing element and the connecting part are filled with heat-resistant adhesive, and a gap is left between the support part and the panel to form an air resistance path for waterproofing.
It enables closer detection between the temperature sensing element and the cookware, improving the accuracy and sensitivity of temperature detection. At the same time, it is waterproof without the need for adhesive and can be installed on panels of different thicknesses.
Smart Images

Figure CN223727291U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electromagnetic cooking utensil temperature detection, especially easy to assemble's quick temperature sensing panel. BACKGROUND
[0002] Since electromagnetic heating technology is applied to the cooking industry, temperature control has been a big problem, and the mainstream electromagnetic oven structure is usually to set temperature sensor on the bottom surface of the panel, because the temperature sensor is too far away from the pot, and the heat conduction efficiency of the glass panel is low, therefore, the temperature detection of this structure cannot feedback the temperature of the pot in real time, and only the temperature of the pot can be inferred through the temperature change curve, but because of the different pot materials, pot thickness and food materials in the pot, the temperature curve changes a lot, so it is impossible to accurately detect the temperature of the pot. UTILITY MODEL CONTENT
[0003] The utility model discloses a kind of easy to assemble's quick temperature sensing panel, to solve the above problems.
[0004] To achieve this purpose, the utility model adopts the following technical solutions:
[0005] A kind of easy to assemble's quick temperature sensing panel, including panel and several temperature sensing probes;
[0006] The upper surface of the panel is provided with several annular grooves and through holes, and the through holes are located in the annular grooves;
[0007] The temperature sensing probe includes:
[0008] Temperature guide cap, the temperature guide cap includes support part and the connecting part matched with the through hole, the connecting part is the tubular cavity structure with opening in bottom, and the connecting part is equipped with first screw thread;The support part is set to the top outer edge of the connecting part, and the bottom surface of the support part is provided with the convex ring matched with the annular groove;
[0009] Connecting buckle, the connecting buckle includes screw rod part and limiting part, the screw rod part is the tubular structure with opening in both ends, and the screw rod part is equipped with second screw thread matched with the first screw thread;The limiting part is set to the outer wall of the screw rod part;
[0010] Temperature sensing element, the temperature sensing element is set in connecting part, and the temperature sensing element is in abutment with the top wall of the connecting part, and the connecting part is filled with temperature-resistant glue;
[0011] The temperature guide cap is installed on the upper surface of the panel, the connecting part is inserted into the through hole, and the convex ring is inserted into the annular groove; a gap is left between the bottom of the convex ring and the bottom of the annular groove, the bottom surface of the supporting part is supported on the panel, and a gap is left between the bottom surface of the area surrounded by the convex ring and the panel.
[0012] The connecting buckle is installed on the bottom surface of the panel, the screw rod part is inserted into the through hole and is screwed with the connecting part, and the connecting buckle is used for fixing the temperature guide cap on the panel and pressing the bottom surface of the supporting part against the panel.
[0013] Preferably, the panel is provided with a plurality of sunken grooves, and the through hole and the through hole are respectively located in each sunken groove; the temperature guide cap is installed in the sunken groove, and the outer wall of the supporting part is matched with the inner wall of the sunken groove; the top surface of the temperature guide cap is not lower than the top surface of the panel.
[0014] Preferably, the top of the supporting part is downwardly inclined around the periphery, so that the top surface edge of the supporting part is connected with the panel at the edge of the sunken groove.
[0015] Preferably, the inner wall of the connecting part is provided with the first screw thread, the outer wall of the screw rod part is provided with the second screw thread, and the screw rod part is inserted into the connecting part for screw connection.
[0016] Preferably, the inner wall of the connecting part or the outer wall of the screw rod part is provided with a step, and the step is used for limiting the depth of the screw rod part inserted into the connecting part.
[0017] Preferably, as a second embodiment, the inner wall of the screw rod part is provided with the second screw thread, the outer wall of the connecting part is provided with the first screw thread, and the connecting part is inserted into the screw rod part for screw connection.
[0018] Preferably, the outer wall of the connecting part is provided with a step, and the step is used for limiting the depth of the connecting part inserted into the screw rod part.
[0019] Preferably, the elastic sealing gasket is further included, and the bottom surface of the supporting part is upwardly recessed in the area surrounded by the convex ring.
[0020] The elastic sealing gasket is sleeved on the connecting part and located on the bottom surface of the recessed area surrounded by the convex ring, or the elastic sealing gasket is sleeved on the screw rod part and located on the upper surface of the limiting part.
[0021] Preferably, the inner top wall of the connecting part is at least partially in a thin-wall structure, and the temperature sensing element is abutted against the thin-wall structure.
[0022] One of the embodiments of the utility model has the following effects:
[0023] 1. The temperature sensing cap is capable of being installed on the upper surface of the panel by means of the annular groove and the through hole, and the temperature sensing cap is fixed relative to the panel in the horizontal direction, and the connecting buckle is screwed into the through hole from the bottom surface of the panel and is fixed with the temperature sensing cap, and the temperature sensing probe is capable of being installed on the panel with different thicknesses by means of the screwing fixation;
[0024] 2. The temperature sensing element is fixed by filling the temperature-resistant glue in the connecting part, and the air in the connecting part is discharged, so that the heat conduction effect between the temperature sensing element and the temperature sensing cap is better, and the temperature of the cooking container is more accurately and sensitively detected; the temperature sensing element abuts against the top of the connecting part, so that the temperature sensing element is closer to the cooking container, and the accuracy and sensitivity of the temperature detection are further improved;
[0025] 3. The convex ring is arranged on the bottom surface of the supporting part, and the annular groove is arranged on the upper surface of the panel, the annular groove is matched with the convex ring (that is, when the temperature sensing cap is assembled on the panel, the outer wall of the annular groove is matched with the outer wall of the convex ring, and / or the inner wall of the annular groove is matched with the inner wall of the convex ring), and the connecting part is matched with the through hole (that is, the outer wall of the connecting part is matched with the inner wall of the through hole), so that a plurality of curved paths are formed between the temperature sensing cap and the panel, and the paths are relatively narrow at one end on the upper surface of the panel and at one end in the through hole, so that the liquid on the panel is difficult to flow through; because the bottom of the convex ring and the bottom of the annular groove are spaced apart, and the bottom surface of the area surrounded by the convex ring and the upper surface of the panel are spaced apart, therefore, in the paths, there is a certain amount of air in the bottom of the annular groove and the area surrounded by the convex ring, so that the paths are relatively narrow at both ends, there are a plurality of bends in the middle, and there is a certain amount of air in two areas, so that the paths have a certain air resistance, and when the panel is splashed with liquid (such as water, soup or porridge water), because the paths between the temperature sensing cap and the panel have air resistance, the liquid on the panel cannot flow into the lower part of the panel without external pressure, so that the panel is waterproof without gluing between the temperature sensing cap and the panel. BRIEF DESCRIPTION OF DRAWINGS
[0026] The drawings further illustrate the present application, but the contents in the drawings do not constitute any limitation on the present application.
[0027] Figure 1 is a partial cross-sectional structure schematic view of one embodiment of the present application;
[0028] Figure 2 is a partial cross-sectional structure schematic view of another embodiment of the present application;
[0029] Figure 3is a partial sectional view structure schematic diagram of another embodiment of the utility model;
[0030] Figure 4 is a partial sectional view structure schematic diagram of another embodiment of the utility model;
[0031] Figure 5 is a partial sectional view structure schematic diagram of another embodiment of the utility model;
[0032] Figure 6 is a top view structure schematic diagram of one of the embodiments of the utility model;
[0033] In the drawing: 100 - panel, 11 - annular groove, 12 - through hole, 13 - sink groove, 200 - temperature sensing probe, 21 - temperature guide cap, 211 - connecting part, 2111 - thin wall structure, 212 - support part, 2121 - convex ring, 22 - connecting buckle, 221 - screw part, 2211 - step, 222 - limiting part, 23 - temperature sensing element, 24 - temperature resistant glue, 25 - elastic sealing gasket. DETAILED DESCRIPTION
[0034] The embodiments of the utility model are described in detail below, examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the utility model, and cannot be understood as the limitation of the utility model. In the description of the utility model, it is understood that the orientation or position relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" are based on the orientation or position relationship shown in the drawings, only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as the limitation of the utility model. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included one or more of the features. In the description of the utility model, the meaning of "multiple" is two or more than two, unless otherwise specifically limited.
[0035] In the description of the utility model, it is necessary to explain that, unless there is definite stipulation and limitation, the term "mount", "link", "connect" should be broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connect, can be mechanical connection, also can be electric connection or can communicate with each other, can be directly connected, also can be indirectly connected through intermediate medium, can be the intercommunication of two elements or the interaction of two elements. For ordinary skilled in the art, the specific meaning of the above-mentioned term in the utility model can be understood according to specific circumstances.
[0036] In the utility model, unless there is definite stipulation and limitation, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "on" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "under", "below" and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0037] The following disclosure provides many different embodiments or examples for implementing different structures of the utility model. In order to simplify the disclosure of the utility model, the components and settings of specific examples are described below. Of course, they are only examples, and the purpose is not to limit the utility model. In addition, the utility model can repeatedly refer to numbers and / or letters in different examples, and such repetition is for the purpose of simplification and clarity, which itself does not indicate the relationship between the various embodiments and / or settings discussed. In addition, the utility model provides examples of various specific processes and materials, but those skilled in the art can realize the application of other processes and / or the use of other materials.
[0038] The technical scheme of the utility model is further illustrated below by specific embodiments in conjunction with the drawings.
[0039] One kind of easy-to-assemble quick temperature sensing panel 100 of the embodiment, as shown in Figure 1 It includes panel 100 and several temperature sensing probes 200.
[0040] The upper surface of the panel 100 is provided with several annular grooves 11 and through holes 12, and the through holes 12 are located in the annular grooves 11.
[0041] The temperature sensing probe 200 includes:
[0042] A temperature guide cap 21 is provided, which comprises a supporting part 212 and a connecting part 211 matched with the through hole 12, the connecting part 211 is a tubular cavity structure with an opening at the bottom, and the connecting part 211 is provided with a first thread; the supporting part 212 is arranged at the top outer edge of the connecting part 211, and the bottom surface of the supporting part 212 is provided with a convex ring 2121 matched with the annular groove 11;
[0043] A connecting buckle 22 is provided, which comprises a screw rod part 221 and a limiting part 222, the screw rod part 221 is a tubular structure with openings at both ends, and the screw rod part 221 is provided with a second thread matched with the first thread; the limiting part 222 is arranged on the outer wall of the screw rod part 221;
[0044] A temperature sensing element 23 is arranged in the connecting part 211, and the temperature sensing element 23 abuts against the top wall of the connecting part 211, and the connecting part 211 is filled with temperature-resistant glue 24;
[0045] The temperature guide cap 21 is installed on the upper surface of the panel 100, the connecting part 211 is inserted into the through hole 12, and the convex ring 2121 is inserted into the annular groove 11; the bottom of the convex ring 2121 and the bottom of the annular groove 11 are left with a gap, the bottom surface of the supporting part 212 is supported on the panel 100, and the bottom surface of the area surrounded by the convex ring 2121 and the panel 100 is left with a gap;
[0046] The connecting buckle 22 is installed on the bottom surface of the panel 100, the screw rod part 221 is inserted into the through hole 12 and is threadedly connected with the connecting part 211, and the connecting buckle 22 is used for fixing the temperature guide cap 21 on the panel 100 and pressing the bottom surface of the supporting part 212 against the panel 100.
[0047] The annular groove 11 and the through hole 12 are formed on the panel 100, so that the temperature guide cap 21 can be installed on the upper surface of the panel 100, and the temperature guide cap 21 is fixed relative to the panel 100 in the horizontal direction. The connecting buckle 22 is inserted into the through hole 12 from the bottom surface of the panel 100 and is screwed and fixed with the temperature guide cap 21. The screwing and fixing mode is simple, and the temperature probe 200 can be installed on the panel 100 with different thicknesses, and has strong compatibility. In addition, since the thickness of the panel 100 has an error in the production and processing process, the temperature guide cap 21 and the connecting buckle 22 are screwed and connected. During the screwing process, the distance between the bottom surface of the supporting part 212 and the top surface of the limiting part 222 is continuously changed. Therefore, even if the thickness of the panel 100 has an error, the panel 100 can be clamped by the bottom surface of the supporting part 212 and the top surface of the limiting part 222, so that the temperature probe 200 can be firmly installed on the panel 100.
[0048] Before the temperature probe 200 is installed on the panel 100, the temperature sensing element 23 is placed in the connecting part 211, and the temperature sensing element 23 is fixed by filling the temperature-resistant glue 24 in the connecting part 211. The temperature-resistant glue 24 refers to glue that can meet the temperature requirements in actual application, such as silicone glue. Filling the temperature-resistant glue 24 in the connecting part 211 can not only fix the temperature sensing element 23, but also can exhaust the air in the connecting part 211, so that the heat conduction effect between the temperature sensing element 23 and the temperature guide cap 21 is better, so that the temperature of the cooking container can be more accurately and sensitively detected. The temperature sensing element 23 abuts against the top of the connecting part 211, so that the temperature sensing element 23 can be closer to the cooking container, so as to further improve the accuracy and sensitivity of temperature detection. As one of the embodiments, the temperature guide cap 21 can be made of metal materials such as aluminum, stainless steel, copper and the like, which has good heat conduction performance and is more wear-resistant. Of course, the temperature guide cap 21 can also be made of engineering plastics such as PEEK plastic.
[0049] Since the temperature guide cap 21 is installed on the upper surface of the panel 100, and the supporting part 212 has a certain thickness, the temperature guide cap 21 protrudes from the upper surface of the panel 100. In order to prevent the cooking container from shaking when placed on the panel 100, a plurality of rapid temperature probes 200 can be arranged on the panel 100, such as three, four, five or more rapid temperature probes 200, so that the cooking container can be supported by the plurality of rapid temperature probes 200 when placed on the panel 100, so that the cooking container is more stable when placed on the panel 100.
[0050] Because of the existence of the annular groove 11, the bottom of the annular groove 11 and the area surrounded by the annular groove 11 are relatively weak and the impact resistance is worse than the area outside the annular groove 11, in order to make the quick temperature sensing panel 100 have better impact resistance, the bottom surface of the support part 212 is supported on the upper surface of the panel 100, and the bottom of the convex ring 2121 is spaced apart from the bottom of the annular groove 11, and the support part 212 is spaced apart between the bottom surface of the area surrounded by the convex ring 2121 and the upper surface of the panel 100, so that the temperature sensing cap 21 is supported on the panel 100 in the area surrounded by the annular groove 11, thereby enabling the quick temperature sensing panel 100 to have better impact resistance.
[0051] Because the upper surface of the panel 100 is provided with the through hole 12, in order to make the quick temperature sensing panel 100 of the utility model have certain waterproof performance, the utility model sets the convex ring 2121 on the bottom surface of the support part 212, and sets the annular groove 11 on the upper surface of the panel 100, the annular groove 11 cooperates with the convex ring 2121 (that is, when the temperature sensing cap 21 is assembled on the panel 100, the outer wall of the annular groove 11 is fitted with the outer wall of the convex ring 2121 and / or the inner wall of the annular groove 11 is fitted with the inner wall of the convex ring 2121), and the connecting part 211 cooperates with the through hole 12 (that is, the outer wall of the connecting part 211 is fitted with the inner wall of the through hole 12), by setting in this way, the path between the temperature sensing cap 21 and the panel 100 is formed in multiple bends, and the path is relatively narrow at one end on the upper surface of the panel 100 and at one end in the through hole 12, so that the liquid spilled on the panel 100 is relatively difficult to pass through; because the bottom of the convex ring 2121 is spaced apart from the bottom of the annular groove 11, and the support part 212 is spaced apart between the bottom surface of the area surrounded by the convex ring 2121 and the upper surface of the panel 100, therefore in the path, there is certain air in the bottom of the annular groove 11 and the area surrounded by the convex ring 2121, so that the path is relatively narrow at both ends, there are multiple bends in the middle and there is certain air in two areas, by setting in this way, the path has certain air resistance, when the liquid (such as water, soup or porridge water, etc.) is spilled on the panel 100, because there is air resistance in the path between the temperature sensing cap 21 and the panel 100, the liquid on the panel 100 cannot flow into the area below the panel 100 without external pressure, thereby achieving the waterproof of the panel 100 without gluing between the temperature sensing cap 21 and the panel 100. Of course, in order to test the waterproof performance of the structure, a cylinder is set on the upper surface of the panel 100, each quick temperature sensing probe 200 installed on the panel 100 is enclosed in the cylinder, and glass glue is glued between the panel 100 and the cylinder for waterproof, then water is injected into the cylinder, after standing for 24 hours, no water is seen to seep out from the bottom surface of the panel 100.
[0052] As one of the embodiments, as shown in Figures 2-5As shown, the panel 100 is provided with a plurality of recessed grooves 13, and the through holes 12 and the through holes 12 are respectively located in each of the recessed grooves 13; the temperature guide cap 21 is installed in the recessed groove 13, and the outer wall of the supporting part 212 is matched with the inner wall of the recessed groove 13; the top surface of the temperature guide cap 21 is not lower than the top surface of the panel 100.
[0053] By providing the recessed grooves 13 on the panel 100, the temperature guide cap 21 can be embedded in the recessed grooves 13 for installation, and the recessed grooves 13 can be ring groove structures (as shown in Figure 2 and Figure 4 ) or circular groove structures (as shown in Figure 3 and Figure 5 ).
[0054] In order to enable the temperature sensing probe 200 to accurately detect the temperature of the cooking container, the temperature sensing probe 200 needs to be in contact with the cooking container, and for this purpose, after the temperature sensing probe 200 is installed to the panel 100, the top of the temperature sensing probe 200 is not lower than the top surface of the panel 100, that is, the temperature sensing probe 200 protrudes from the panel 100 (as shown in Figures 2-4 ) or the top surface of the temperature guide cap 21 is flush with the panel 100 (as shown in Figure 5 ) ; as one of the embodiments, the temperature sensing probe 200 protrudes from the panel 100, and in order to prevent the cooking container from shaking when placed on the panel 100, a plurality of temperature sensing probes 200, for example, three, four, five or more, can be arranged on the panel 100, so that when the cooking container is placed on the panel 100, it can be supported by multiple temperature sensing probes 200 at the same time, not only to make the cooking container more stable when placed on the panel 100, but also to more accurately detect the temperature of the cooking container through multi-point temperature measurement; as another embodiment, the top surface of the temperature guide cap 21 is flush with the panel 100, and at least one temperature sensing probe 200 is arranged, of course, in order to better detect the temperature of each part of the bottom surface of the cooking container, the number of temperature sensing probes 200 can also be increased accordingly, and more accurate temperature data can be obtained through multi-point temperature measurement.
[0055] Further, the top of the supporting part 212 is downwardly inclined around, so that the top edge of the supporting part 212 is connected to the edge of the recessed groove 13 of the panel 100.
[0056] In this way, the top surface of the temperature guide cap 21 and the panel 100 can be smoothly transitioned, and when the panel 100 is splashed with liquid at the temperature sensing probe 200, it can be easily cleaned, as one of the embodiments, as shown in Figure 3 and Figure 4As shown in the drawings, the top of the support part 212 is concave and tapered downward, and is smoothly connected with the panel 100, so that it is not easy to hide dirt. Figure 2 As shown in the drawings, the top of the support part 212 is tapered downward, and the support part 212 forms an obtuse angle with the panel 100, so that it is also relatively easy to clean.
[0057] As shown in the drawings, the top of the support part 212 is tapered downward, and the support part 212 forms an obtuse angle with the panel 100, so that it is also relatively easy to clean. Figures 1-3 and Figure 5 As shown in the drawings, the inner wall of the connecting part 211 is provided with the first screw thread, the outer wall of the screw rod part 221 is provided with the second screw thread, and the screw rod part 221 is inserted into the connecting part 211 to be screwed.
[0058] Further, the inner wall of the connecting part 211 or the outer wall of the screw rod part 221 is provided with a step 2211, which is used to limit the depth of the screw rod part 221 inserted into the connecting part 211.
[0059] Since the temperature sensing element 23 is arranged in the connecting part 211, and the temperature sensing element 23 is relatively fragile, if the depth of the screw rod part 221 inserted into the connecting part 211 is too large, the screw rod part 221 is easy to crush the temperature sensing element 23. In order to avoid this problem, the utility model sets a step 2211 on the outer wall of the screw rod part 221 or the inner wall of the connecting part 211, which can limit the depth of the screw rod part 221 inserted into the connecting part 211, so as to effectively prevent the temperature sensing element 23 from being crushed. In addition, since the panel 100 of the electromagnetic cooking appliance is usually made of glass, limiting the depth of the screw rod part 221 inserted into the connecting part 211 can also limit the distance between the bottom surface of the support part 212 and the top surface of the limiting part 222, so as to prevent the panel 100 from being crushed due to excessive tightening when the screw rod part 221 is screwed into the connecting part 211.
[0060] As shown in the drawings, the top of the support part 212 is tapered downward, and the support part 212 forms an obtuse angle with the panel 100, so that it is also relatively easy to clean. Figure 4 As shown in the drawings, the inner wall of the connecting part 211 is provided with the first screw thread, the outer wall of the screw rod part 221 is provided with the second screw thread, and the screw rod part 221 is inserted into the connecting part 211 to be screwed.
[0061] Further, the inner wall of the connecting part 211 or the outer wall of the screw rod part 221 is provided with a step 2211, which is used to limit the depth of the screw rod part 221 inserted into the connecting part 211.
[0062] Similarly, by setting the step 2211 on the outer wall of the connecting part 211, the depth of the screw rod part 221 inserted into the connecting part 211 can be limited, thereby preventing the panel 100 from being clamped and broken due to excessive tightening when the screw rod part 221 is screwed into the connecting part 211. In addition, the step 2211 on the outer wall of the connecting part 211 can make the outer wall of the step 2211 cooperate with the inner wall of the through hole 12, thereby limiting the temperature guide cap 21 in the horizontal direction, preventing the temperature guide cap 21 from shaking, and also making the gap between the connecting part 211 and the through hole 12 smaller to achieve the above-mentioned waterproof effect.
[0063] Preferably, an elastic sealing gasket 25 is further included, and the bottom surface of the supporting part 212 is recessed upward in the area surrounded by the convex ring 2121.
[0064] The elastic sealing gasket 25 is sleeved on the connecting part 211 and located on the bottom surface of the recessed area surrounded by the convex ring 2121, or the elastic sealing gasket 25 is sleeved on the screw rod part 221 and located on the upper surface of the limiting part 222.
[0065] Since the annular groove 11 needs to be opened on the panel 100 to cooperate with the convex ring 2121, the area in the annular groove 11 is lowered due to the existence of the annular groove 11. The utility model makes the bottom surface of the supporting part 212 have a height difference inside and outside the convex ring 2121 by recessing upward in the area surrounded by the convex ring 2121. When the temperature guide cap 21 is installed on the panel 100, the bottom surface of the supporting part 212 outside the convex ring 2121 is supported on the sunken groove 13, and the bottom surface of the supporting part 212 inside the convex ring 2121 is suspended on the upper surface of the panel 100. In this way, when the temperature guide cap 21 bears the weight of the cooking container, it is supported on the sunken groove 13 through the bottom surface outside the convex ring 2121, thereby avoiding the stress on the area surrounded by the annular groove 11, and further enabling the panel 100 to bear greater impact force.
[0066] By setting the elastic sealing gasket 25, the elastic sealing gasket 25 can be compressed after the temperature guide cap 21 and the connecting buckle 22 are tightened, and the elastic sealing gasket 25 is elastically deformed, thereby preventing the threaded connection between the temperature guide cap 21 and the connecting buckle 22 from loosening due to vibration and other reasons in long-term use. Of course, the elastic sealing gasket 25 can also play a waterproof role.
[0067] Preferably, the inner top wall of the connecting part 211 is at least partially in a thin-walled structure 2111, and the temperature sensing element 23 abuts against the thin-walled structure 2111.
[0068] The inner top wall of the connecting part 211 is at least partially in a thin-wall structure 2111, and the temperature sensing element 23 abuts against the thin-wall structure 2111. In this way, the temperature sensing element 23 can be further close to the cooking container, and the accuracy and sensitivity of temperature detection are further improved, while the temperature guide cap 21 has good strength.
[0069] In the description of the present specification, the description of the terms "one embodiment", "certain embodiments", "illustrative embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiments or examples are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0070] The technical principle of the present application is described above in combination with specific embodiments. These descriptions are only for explaining the principle of the present application, and cannot be interpreted as limiting the scope of protection of the present application in any way. Based on the explanation herein, those skilled in the art can think of other specific embodiments of the present application without creative labor, and these equivalent variations or replacements are included in the scope defined by the claims of the present application.
Claims
1. A quick temperature-sensing panel that is easy to assemble, characterized in that, Includes a panel and several temperature sensors; The upper surface of the panel is provided with several annular grooves and through holes, and the through holes are located in the annular grooves; The temperature sensing probe includes: A temperature-conducting cap, comprising a support portion and a connecting portion that matches the through hole, the connecting portion being a tubular structure with an opening at the bottom, and the connecting portion having a first thread; the support portion being disposed at the top outer edge of the connecting portion, and the bottom surface of the support portion having a convex ring that matches the annular groove; A connecting buckle, comprising a screw portion and a limiting portion, wherein the screw portion is a tubular structure with openings at both ends, and the screw portion is provided with a second thread that mates with the first thread; the limiting portion is disposed on the outer wall of the screw portion; A temperature sensing element is disposed within a connecting portion and abuts against the top wall of the connecting portion, the connecting portion being filled with heat-resistant adhesive. The temperature-conducting cap is installed on the upper surface of the panel, the connecting part is inserted into the through hole, and the convex ring is inserted into the annular groove; there is a gap between the bottom of the convex ring and the bottom of the annular groove, the bottom surface of the support part is supported on the panel, and there is a gap between the bottom surface of the area enclosed by the convex ring and the panel. The connecting buckle is installed on the bottom surface of the panel, the screw is inserted into the through hole and threadedly connected to the connecting part, and the connecting buckle is used to fix the temperature conducting cap to the panel and press the bottom surface of the support part against the panel.
2. A quick temperature sensing panel easy to assemble as claimed in claim 1 wherein, The panel has several recessed grooves, and the through hole is located in each of the recessed grooves; the temperature-conducting cap is installed in the recessed groove, and the outer wall of the support part is engaged with the inner wall of the recessed groove; the top surface of the temperature-conducting cap is not lower than the top surface of the panel.
3. A quick temperature sensing panel easy to assemble as claimed in claim 2 wherein, The top perimeter of the support slopes downwards so that the top edge of the support is in contact with the edge of the panel and the sinkhole.
4. A quick temperature sensing panel easy to assemble as claimed in claim 1 wherein, The inner wall of the connecting part is provided with the first thread, and the outer wall of the screw part is provided with the second thread. The screw part is inserted into the connecting part for threaded connection.
5. A quick temperature sensing panel easy to assemble as claimed in claim 4 wherein, The inner wall of the connecting part or the outer wall of the screw part is provided with a step, which is used to limit the depth of the screw part inserted into the connecting part.
6. A quick temperature sensing panel easy to assemble as claimed in claim 1 wherein, The inner wall of the screw portion is provided with the second thread, and the outer wall of the connecting portion is provided with the first thread. The connecting portion is inserted into the screw portion for threaded connection.
7. A quick temperature sensing panel easy to assemble as claimed in claim 6 wherein, The outer wall of the connecting part is provided with a step, which is used to limit the depth of the connecting part inserted into the screw part.
8. A quick temperature sensing panel easy to assemble as claimed in claim 1 wherein, It also includes an elastic sealing gasket, wherein the bottom surface of the support is recessed upward in the area surrounded by the convex ring; The elastic sealing gasket is sleeved on the connecting portion and located on the bottom surface of the recessed area surrounded by the convex ring, or the elastic sealing gasket is sleeved on the screw portion and located on the upper surface of the limiting portion.
9. A quick temperature sensing panel easy to assemble as claimed in claim 1 wherein, The inner top wall of the connection is at least partially thin-walled, and the temperature sensing element is pressed against the thin-walled structure.