Temperature detection assembly and cooking utensil
By designing rotatable sensor and push rod assemblies, the problem of limited detection range of infrared temperature sensors has been solved, enabling more accurate food temperature detection and lower production costs, thus improving the practicality and competitiveness of cooking appliances.
Patent Information
- Application Number
- CN202520270550.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-19
AI Technical Summary
The infrared temperature sensors in existing cooking appliances can only detect the temperature of food within a fixed range, resulting in inaccurate detection and an inability to adapt to temperature changes in different locations.
Design a temperature detection component, including a bracket, a sensor component, and a push rod assembly. The push rod assembly drives the sensor component to rotate, adjusts the sensing direction, expands the sensing range, and utilizes elastic elements to provide reset and damping functions, ensuring the reliability and accuracy of the sensor component.
This technology enables the sensor component to have a variable sensing range, improving the accuracy of food temperature detection, reducing manufacturing costs, enhancing the product's practicality and market competitiveness, while also simplifying the structure and reducing the space it occupies.
Smart Images

Figure CN223695618U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of cooking utensils, in particular to a temperature detection assembly and a cooking utensil. BACKGROUND
[0002] At present, in the related art, the cooking utensil is provided with an infrared temperature sensor, and the temperature of food in the cooking cavity is detected through the infrared temperature sensor. However, due to the limitation of the sensing range of the infrared temperature sensor, the infrared temperature sensor can only detect the temperature in a fixed part of the cooking cavity. If the food is not within the sensing range, the infrared temperature sensor cannot accurately detect the temperature of the food, reducing the accuracy of temperature detection of the infrared temperature sensor. SUMMARY
[0003] The utility model aims at least to solve one of the technical problems existing in the prior art or related art.
[0004] Therefore, the first aspect of the utility model provides a temperature detection assembly.
[0005] The second aspect of the utility model provides a cooking utensil.
[0006] Therefore, the first aspect of the utility model provides a temperature detection assembly.
[0007] In the technical scheme, a temperature detection assembly for a cooking utensil is provided, which includes a support, a sensor assembly and a push rod assembly. The support is fixed on the cooking utensil and is used to support the sensor assembly and the push rod assembly. The sensor assembly is used to monitor the temperature of food in real time and provide accurate temperature data for the cooking utensil. The sensor assembly is installed on the support and can rotate relative to the support, so that the sensing direction of the sensor assembly can be adjusted. The push rod assembly provides the kinetic energy for the rotation of the sensor assembly. One end of the push rod is abutted with the sensor assembly, and the push rod is used to drive the rotation of the sensor assembly. Compared with the sensor that can only detect the food in a fixed range, the sensor assembly can adjust the sensing direction by driving the rotation of the sensor assembly, so that the sensing range of the sensor assembly can be changed as needed, the sensing range of the sensor assembly is expanded, and the temperature of the food can be more accurately detected, the accuracy of food temperature detection is improved, and the practicability of the product is enhanced.
[0008] Meanwhile, the sensor assembly is rotated by the driving of the push rod assembly, so that the sensor assembly has a larger sensing angle, the temperature detection function in a large range can be realized without replacing the expensive sensor assembly, the manufacturing cost of the cooking utensil is reduced, and the market competitiveness of the product is improved.
[0009] Meanwhile, the push rod assembly is used for driving the rotation of the sensor assembly, compared with the scheme of driving the rotation of the sensor assembly by the motor, the motor has a large size, occupies a large space, and has a complex structure and high cost, while the push rod assembly has a small size and occupies a small space, so that the cooking utensil has more space for placing food materials, and the practicability of the product is improved.
[0010] In addition, the temperature detection assembly in the above technical scheme of the utility model can also have the following additional technical features:
[0011] In some technical schemes of the utility model, the temperature detection assembly further comprises an elastic member, one end of the elastic member is connected with the sensor assembly, and the other end of the elastic member is connected with the support; when the first end of the push rod is at the first position relative to the body, the elastic member is in an extension state or a compression state; when the first end of the push rod is at the second position relative to the body, the elastic member is in an original state, and the second position is closer to the body relative to the first position.
[0012] In the technical scheme, the temperature detection assembly further comprises an elastic member, the elastic member is stretched between the sensor assembly and the support, so that the sensor assembly has a reset function. When the push rod is extended relative to the body, the sensor assembly is driven to rotate, and then the elastic member has an extension force or a compression force. After the push rod is retracted, the push rod does not act on the sensor assembly, and the extension force or the compression force of the elastic member makes the sensor assembly rotate, so that the sensor assembly is reset, the sensor assembly cannot rotate back to the initial position is avoided, and the reliability of the temperature detection assembly is improved.
[0013] Meanwhile, the sensor assembly is fixed in position by the force of the elastic member when the sensor assembly is not working, so that unnecessary damage caused by the rotation of the sensor assembly during the carrying or vibration of the cooking utensil is avoided.
[0014] Meanwhile, when the push rod assembly drives the rotation of the sensor assembly, the reverse force of the elastic member makes the rotation of the sensor assembly have a damping property, so that the sensor assembly and the push rod always abut, and the reliability of the temperature detection assembly is further improved.
[0015] In some technical schemes of the utility model, the sensor assembly comprises a shell, a sensor and a cover plate. The shell has a mounting cavity; the sensor is arranged in the mounting cavity; and the cover plate is arranged on the mounting cavity and connected with the shell.
[0016] In the technical scheme, the sensor assembly comprises a shell, a sensor and a cover plate.
[0017] Specifically, the cover plate can be fixed on the shell by screws, can be fixed on the shell by buckling or other fixing manners.
[0018] In some technical schemes of the utility model, optionally, the cover plate is provided with a first hanging part, the support is provided with a second hanging part, the first end of the elastic piece is hung on the first hanging part, and the second end of the elastic piece is hung on the second hanging part.
[0019] In the technical scheme, the hanging parts are arranged on the cover plate and the support respectively, the two ends of the elastic piece are connected to the first hanging part and the second hanging part respectively, the sensor assembly can be reset through the action force of the elastic piece.
[0020] Meanwhile, grooves can also be arranged on the sensor assembly and the support respectively, the two ends of the elastic piece are arranged in the grooves of the sensor assembly and the support respectively, and the sensor assembly can be reset through the action force of the elastic piece.
[0021] In some technical schemes of the utility model, optionally, the support is provided with an axle hole, and the shell is provided with a rotating shaft which is arranged in the axle hole.
[0022] In the technical scheme, the sensor assembly can rotate relative to the support, specifically, the axle hole is arranged on the support, the rotating shaft is arranged on the two sides of the shell, the rotating shaft is arranged in the axle hole, so that the sensor assembly can rotate, and the sensing direction of the sensor assembly can be adjusted, the sensing range of the sensor assembly can be changed according to needs, the sensing range of the sensor assembly is expanded, and the accuracy of food material temperature detection is improved.
[0023] In some technical schemes of the utility model, optionally, the sensor is an infrared temperature sensor, the shell is provided with a first opening, and the infrared temperature sensor is opposite to the first opening.
[0024] In the technical scheme, the sensor is an infrared temperature sensor, the infrared temperature sensor can detect infrared spectrum changes of the outside world, and then the temperature of the food material in the cooking cavity is calculated. The shell is provided with a first opening, and the heat signal can pass through the first opening to reach the infrared temperature sensor detection lens, and then the temperature of the food material is detected.
[0025] Further, the sensor can also be a thermocouple sensor, a thermal resistance sensor, a semiconductor temperature sensor or a fiber optic temperature sensor, etc.
[0026] In some technical schemes of the utility model, optionally, the support is provided with a first mounting groove and a second opening, the second opening is arranged on the bottom wall of the first mounting groove; at least part of the sensor assembly is located in the first mounting groove, and the second opening is opposite to the first opening.
[0027] In the technical scheme, the support is provided with a first mounting groove and a second opening, wherein the first mounting groove is used for mounting the sensor assembly, so that part of the structure of the sensor assembly is located in the mounting groove, thereby reducing the overall structure of the temperature detection assembly.
[0028] The bottom wall of the first mounting groove is provided with a second opening, and the position of the second opening is opposite to the position of the first opening, the sensor assembly realizes temperature detection of the food material through the second opening, avoids shielding of the infrared temperature sensor, and improves the accuracy of food material temperature detection.
[0029] When the food material is cooked, the infrared radiation of the food material can pass through the first opening and the second opening to reach the infrared temperature sensor, and then be converted into a temperature signal, the temperature signal is fed back to the cooking utensil, and the accuracy of food material temperature detection is improved.
[0030] In some technical schemes of the utility model, optionally, the shell is provided with a buckle position; the cover plate is provided with a clamping part, and the clamping part is clamped in the buckle position.
[0031] In the technical scheme, the shell and the cover plate are connected and fixed by using the buckle position and the clamping part, the assembly structure of the shell and the cover plate is simplified, the operator can more easily open the cover plate, and convenient conditions are provided for subsequent maintenance.
[0032] In some technical schemes of the utility model, optionally, the support is provided with a second mounting groove, and at least part of the body is embedded in the second mounting groove.
[0033] In the technical scheme, the second mounting groove is arranged on the support, and the body of the push rod assembly is embedded therein, the overall structure of the temperature detection assembly is reduced, and the space occupied by the cooking utensil is reduced.
[0034] The body of the push rod assembly can be partially embedded in the second mounting groove, or can be entirely embedded in the second mounting groove.
[0035] Optionally, the bracket is provided with at least two mounting columns, and the at least two mounting columns are arranged on the two sides of the second mounting groove; the push rod assembly further comprises at least two mounting portions, the at least two mounting portions are arranged on the body, and abut against the at least two mounting columns; and the temperature detection assembly further comprises at least two connecting pieces, the at least two connecting pieces are respectively arranged in the at least two mounting portions, and are respectively connected with the at least two mounting columns.
[0036] In the technical scheme, the mounting columns are arranged on the bracket on the two sides of the second mounting groove, the number of the mounting columns is not less than two, the mounting portions are arranged on the two sides of the body of the push rod assembly, and the number of the mounting portions is not less than two, the mounting portions are fixed on the mounting columns by the connecting pieces, the number of the fixing points is not less than two, and the fixing points are distributed on the two sides of the body, so that the push rod assembly is fixed on the bracket, the push rod assembly does not move when the push rod assembly pushes the sensor assembly, the overall structure of the temperature detection assembly is enhanced, and the stability of the product is improved.
[0037] Meanwhile, the push rod assembly is fixed on the bracket by the connecting pieces, the push rod assembly is convenient to disassemble and assemble, the assembly structure of the temperature detection assembly is simplified, and convenient conditions are provided for later maintenance.
[0038] Optionally, the push rod assembly is a push-pull electromagnet or an electric push rod.
[0039] In the technical scheme, the push rod assembly is a push-pull electromagnet or an electric push rod, the push rod can push the sensor assembly to rotate after the push rod assembly is powered on, the sensing range of the sensor assembly can be changed as required, the sensing range of the sensor assembly is expanded, and the accuracy of food material temperature detection is improved.
[0040] Specifically, the push-pull electromagnet attracts the iron core after being powered on, pushes the sensor assembly to rotate, adjusts the sensing direction of the infrared temperature sensor, and senses the temperature of food materials at another position. When the push-pull electromagnet is powered off, the iron core is retracted, and the elastic member drives the sensor assembly to reset.
[0041] The utility model discloses a second aspect provides a kind of cooking utensil, including the temperature detection assembly of any one of above-mentioned technical solutions. Therefore this kind of cooking utensil, possess the overall beneficial effect of the temperature detection assembly of any one of above-mentioned technical solutions.
[0042] Optionally, the cooking utensil further comprises a shell, and the shell has a cooking cavity; the bracket is connected to the shell, and the sensor assembly can detect the temperature in the cooking cavity.
[0043] In the technical solution, the cooking utensil further comprises a box body provided with a cooking cavity, and food is placed in the cooking cavity for heating and cooking.
[0044] The additional aspects and advantages of the present application will be in part apparent and in part pointed out hereinafter in the description of the application. BRIEF DESCRIPTION OF DRAWINGS
[0045] 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 accompanying drawings.
[0046] Figure 1 An exploded structural view of a temperature detection assembly according to one embodiment of the present application is shown;
[0047] Figure 2 A schematic view of a temperature detection assembly according to one embodiment of the present application is shown;
[0048] Figure 3 A schematic view of a cooking utensil according to one embodiment of the present application is shown.
[0049] Wherein, Figures 1 to 3 The correspondence between the reference signs and the component names in the above table is as follows:
[0050] 100 temperature detection assembly, 110 bracket, 112 second hanging part, 114 shaft hole, 116 first installation slot, 118 second opening, 120 bottom wall of the first installation slot, 122 second installation slot, 124 installation column, 130 sensor assembly, 132 shell, 134 sensor, 136 cover plate, 138 installation cavity, 140 first hanging part, 142 rotating shaft, 144 first opening, 146 buckle position, 148 clamping part, 150 push rod assembly, 152 body, 154 push rod, 156 first end of the push rod, 158 installation part, 160 elastic member, 170 connecting piece, 200 cooking utensil, 202 box body, 204 cooking cavity. DETAILED DESCRIPTION
[0051] In order to more clearly understand the above purpose, features and advantages of the present application, the present application will be further described in detail below in combination with the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0052] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, however, the present application can also be implemented in other manners different from those described herein, therefore, the protective scope of the present application is not limited by the specific embodiments disclosed below.
[0053] The following description refers to the accompanying drawings. Figures 1 to 3 A temperature detection assembly and a cooking appliance according to some embodiments of the present application are described below.
[0054] In one embodiment of the present application, a temperature detection assembly 100 is provided, as shown in Figure 1 、 Figure 2 and Figure 3 , the temperature detection assembly 100 is used in a cooking appliance 200, and the temperature detection assembly 100 comprises a bracket 110, a sensor assembly 130 and a push rod assembly 150. The sensor assembly 130 is connected with the bracket 110 and can rotate relative to the bracket 110; the push rod assembly 150 comprises a body 152 and a push rod 154, the body 152 is connected with the bracket 110, and the push rod 154 is arranged on the body 152, a first end 156 of the push rod 154 abuts against the sensor assembly 130, and the push rod 154 can slide relative to the body 152 to drive the sensor assembly 130 to rotate relative to the bracket 110.
[0055] In this embodiment, a temperature detection assembly 100 for a cooking appliance 200 is provided, which comprises a bracket 110, a sensor assembly 130 and a push rod assembly 150. The bracket 110 is fixed on the cooking appliance 200 and is used to support the sensor assembly 130 and the push rod assembly 150. The sensor assembly 130 is used to monitor the temperature of food in real time and provide accurate temperature data for the cooking appliance 200. The sensor assembly 130 is installed on the bracket 110 and can rotate relative to the bracket 110, so that the sensing direction of the sensor assembly 130 can be adjusted. The push rod assembly 150 provides the sensor assembly 130 with rotational kinetic energy. The push rod 154 can be extended and retracted relative to the body 152, one end of the push rod 154 abuts against the sensor assembly 130, and the sensor assembly 130 is rotated by the extension and retraction of the push rod 154. Compared with the sensor 134 which can only detect food in a fixed range, the sensor assembly 130 in this embodiment can adjust the sensing direction by driving the sensor assembly 130 to rotate, so that the sensing range of the sensor assembly 130 can be changed as needed, the sensing range of the sensor assembly 130 is expanded, and the temperature of the food can be more accurately detected, the accuracy of food temperature detection is improved, and the practicability of the product is enhanced.
[0056] Meanwhile, the sensor assembly 130 is driven to rotate in this embodiment, so that the sensor assembly 130 has a larger sensing angle, and the temperature detection function in a large range can be realized without replacing the expensive sensor assembly 130, the manufacturing cost of the cooking utensil 200 is reduced, and the market competitiveness of the product is improved.
[0057] Meanwhile, the push rod assembly 150 is used to drive the sensor assembly 130 to rotate in this scheme, compared with the scheme of driving the sensor assembly to rotate by the motor, the motor has a large size, occupies a large space, and has a complex structure and high cost. The push rod assembly 150 has a small size and occupies a small space, so that the cooking utensil 200 has more space to place food materials, and the practicability of the product is improved. Meanwhile, the push rod assembly 150 has a simple structure and low cost, so that the production cost of the cooking utensil 200 is reduced, and the competitiveness of the product is improved.
[0058] The temperature detection assembly 100 provided in this embodiment further comprises the following technical features in addition to the technical features of the above embodiments.
[0059] As shown in Figure 1 and Figure 2 , the temperature detection assembly 100 further comprises an elastic member 160, one end of the elastic member 160 is connected with the sensor assembly 130, and the other end of the elastic member 160 is connected with the bracket 110; wherein when the first end 156 of the push rod 154 is at the first position relative to the body 152, the elastic member 160 is in an extension state or a compression state; when the first end 156 of the push rod 154 is at the second position relative to the body 152, the elastic member 160 is in an original state, and the second position is closer to the body 152 than the first position.
[0060] In this embodiment, the temperature detection assembly 100 further comprises the elastic member 160, the elastic member 160 is stretched between the sensor assembly 130 and the bracket 110, so that the sensor assembly 130 has a reset function. When the push rod 154 is extended relative to the body 152, the sensor assembly 130 is driven to rotate, and then the elastic member 160 has an extension force or a compression force. After the push rod 154 is retracted, the push rod 154 does not act on the sensor assembly 130, and the extension force or the compression force of the elastic member 160 drives the sensor assembly 130 to rotate, so that the sensor assembly 130 is reset, the sensor assembly 130 cannot rotate back to the initial position is avoided, and the reliability of the temperature detection assembly 100 is improved.
[0061] Meanwhile, the sensor assembly 130 is fixed in position by the force of the elastic member 160 when the sensor assembly 130 does not work, so that unnecessary damage caused by the rotation of the sensor assembly 130 during the transportation or vibration of the cooking utensil 200 is avoided.
[0062] Meanwhile, when the push rod assembly 150 pushes the sensor assembly 130 to rotate, the reverse force of the elastic member 160 makes the rotation of the sensor assembly 130 have damping property, so that the sensor assembly 130 and the push rod 154 are always in abutment, and the reliability of the temperature detection assembly 100 is further improved.
[0063] The embodiment provides a temperature detection assembly 100, and in addition to the technical features of the above embodiment, the embodiment further comprises the following technical features.
[0064] As shown in Figure 1 and Figure 2 , the sensor assembly 130 comprises a housing 132, a sensor 134 and a cover plate 136. The housing 132 has a mounting cavity 138; the sensor 134 is arranged in the mounting cavity 138; and the cover plate 136 is arranged on the mounting cavity 138 and connected with the housing 132.
[0065] In this embodiment, the sensor assembly 130 comprises the housing 132, the sensor 134 and the cover plate 136. The sensor 134 is arranged in the housing 132 provided with the mounting cavity 138, and the housing 132 is closed by the cover plate 136, so that the sensor 134 is in an independent space, the risk of damage of the sensor 134 caused by external collision is reduced, and the waterproof and dustproof effects are also achieved.
[0066] Specifically, the cover plate 136 can be fixed on the housing 132 by screws, or can be fixed on the housing 132 by a buckle or other fixing modes. When the sensor 134 is maintained, the cover plate 136 can be opened to quickly operate, and the assembly structure of the sensor assembly 130 is simplified.
[0067] The embodiment provides a temperature detection assembly 100, and in addition to the technical features of the above embodiment, the embodiment further comprises the following technical features.
[0068] As shown in Figure 1 and Figure 2 , the cover plate 136 is provided with a first hanging part 140; the bracket 110 is provided with a second hanging part; a first end of the elastic member 160 is hung on the first hanging part 140, and a second end of the elastic member 160 is hung on the second hanging part.
[0069] In this embodiment, the hanging parts are arranged on the cover plate 136 and the bracket 110 respectively, the two ends of the elastic member 160 are connected to the first hanging part 140 and the second hanging part respectively, the sensor assembly 130 can be reset by the action force of the elastic member 160, the rotation of the sensor assembly 130 has damping property by the action force of the elastic member 160, the sensor assembly 130 and the push rod 154 are always in abutment, and the reliability of the temperature detection assembly 100 is further improved.
[0070] Meanwhile, grooves can also be arranged on the sensor assembly 130 and the bracket 110 respectively, and the two ends of the elastic member 160 are arranged in the grooves of the sensor assembly 130 and the bracket 110 respectively, so that the sensor assembly 130 can be reset by the force of the elastic member 160.
[0071] The embodiment provides a temperature detection assembly 100, and in addition to the technical features of the above embodiment, the embodiment further comprises the following technical features.
[0072] As shown in Figure 1 The bracket 110 is provided with an axle hole 114, and the shell 132 is provided with an axle 142 which is arranged in the axle hole 114.
[0073] In this embodiment, the sensor assembly 130 can rotate relative to the bracket 110, specifically, the bracket 110 is provided with an axle hole 114, and the shell 132 is provided with an axle 142 which is arranged in the axle hole 114, so that the sensor assembly 130 can rotate, and the sensing direction of the sensor assembly 130 can be adjusted, so that the sensing range of the sensor assembly 130 can be changed as required, the sensing range of the sensor assembly 130 is expanded, and the accuracy of food temperature detection is improved.
[0074] The embodiment provides a temperature detection assembly 100, and in addition to the technical features of the above embodiment, the embodiment further comprises the following technical features.
[0075] As shown in Figure 1 and Figure 2 The sensor 134 is an infrared temperature sensor 134, and the shell 132 is provided with a first opening 144, and the infrared temperature sensor 134 is opposite to the first opening 144.
[0076] In this embodiment, the sensor 134 is an infrared temperature sensor 134, the infrared temperature sensor 134 can detect the change of infrared spectrum of the outside world, and then calculate the temperature of food in the cooking cavity 204. The shell 132 is provided with a first opening 144, and a heat signal can pass through the first opening 144 to reach the detection lens of the infrared temperature sensor 134, and then the temperature of food can be detected.
[0077] Further, the sensor 134 can also be a thermocouple sensor, a thermal resistance sensor, a semiconductor temperature sensor or a fiber-optic temperature sensor.
[0078] The embodiment provides a temperature detection assembly 100, and in addition to the technical features of the above embodiment, the embodiment further comprises the following technical features.
[0079] As shown in Figure 1 andFigure 2 As shown in the figures, the bracket 110 is provided with a first mounting groove 116 and a second opening 118, the second opening 118 is arranged on the bottom wall 120 of the first mounting groove 116; at least part of the sensor assembly 130 is located in the first mounting groove 116, and the second opening 118 is opposite to the first opening 144.
[0080] In this embodiment, the bracket 110 is provided with a first mounting groove 116 and a second opening 118, wherein the first mounting groove 116 is used to mount the sensor assembly 130, so that part of the structure of the sensor assembly 130 is located in the mounting groove, thereby reducing the overall structure of the temperature detection assembly 100.
[0081] The second opening 118 is arranged on the bottom wall 120 of the first mounting groove 116, and the position of the second opening 118 is opposite to the position of the first opening 144. The sensor assembly 130 realizes temperature detection of the food material through the second opening 118, avoiding shielding of the infrared temperature sensor 134, and improving the accuracy of food material temperature detection.
[0082] When cooking food material, the infrared radiation of the food material can pass through the first opening 144 and the second opening 118 to reach the infrared temperature sensor 134, and then be converted into a temperature signal, which is fed back to the cooking appliance 200, improving the accuracy of food material temperature detection.
[0083] The embodiment provides a temperature detection assembly 100, in addition to the technical features of the above-mentioned embodiments, the embodiment further includes the following technical features.
[0084] As shown in the figures, the bracket 110 is provided with a first mounting groove 116 and a second opening 118, the second opening 118 is arranged on the bottom wall 120 of the first mounting groove 116; at least part of the sensor assembly 130 is located in the first mounting groove 116, and the second opening 118 is opposite to the first opening 144. Figure 1 Figure 2 As shown in the figures, the bracket 110 is provided with a first mounting groove 116 and a second opening 118, the second opening 118 is arranged on the bottom wall 120 of the first mounting groove 116; at least part of the sensor assembly 130 is located in the first mounting groove 116, and the second opening 118 is opposite to the first opening 144.
[0085] In this embodiment, the bracket 110 is provided with a first mounting groove 116 and a second opening 118, wherein the first mounting groove 116 is used to mount the sensor assembly 130, so that part of the structure of the sensor assembly 130 is located in the mounting groove, thereby reducing the overall structure of the temperature detection assembly 100.
[0086] The embodiment provides a temperature detection assembly 100, in addition to the technical features of the above-mentioned embodiments, the embodiment further includes the following technical features.
[0087] As shown in the figures, the bracket 110 is provided with a first mounting groove 116 and a second opening 118, the second opening 118 is arranged on the bottom wall 120 of the first mounting groove 116; at least part of the sensor assembly 130 is located in the first mounting groove 116, and the second opening 118 is opposite to the first opening 144. Figure 1 Figure 2 As shown in the figures, the bracket 110 is provided with a first mounting groove 116 and a second opening 118, the second opening 118 is arranged on the bottom wall 120 of the first mounting groove 116; at least part of the sensor assembly 130 is located in the first mounting groove 116, and the second opening 118 is opposite to the first opening 144.
[0088] In this embodiment, the second mounting groove 122 is arranged on the support 110, and the body 152 of the push rod assembly 150 is embedded in the second mounting groove 122, so that the overall structure of the temperature detection assembly 100 is reduced, and the space occupied by the cooking appliance 200 is reduced.
[0089] In this embodiment, the body 152 of the push rod assembly 150 can be partially embedded in the second mounting groove 122 or fully embedded in the second mounting groove 122.
[0090] In addition to the technical features of the above-mentioned embodiments, the temperature detection assembly 100 of the present embodiment further comprises the following technical features.
[0091] As shown in Figure 1 , the support 110 is provided with at least two mounting columns 124 arranged on both sides of the second mounting groove 122, and the push rod assembly 150 further comprises at least two mounting portions 158 arranged on the body 152 and abutting against the at least two mounting columns 124. The temperature detection assembly 100 further comprises at least two connecting members 170 respectively penetrating the at least two mounting portions 158 and respectively connected with the at least two mounting columns 124.
[0092] In this embodiment, the mounting columns 124 are arranged on the support 110 on both sides of the second mounting groove 122, and the number of the mounting columns 124 is not less than two. The mounting portions 158 are arranged on both sides of the body 152 of the push rod assembly 150, and the number of the mounting portions 158 is not less than two. The connecting members 170 are used to fix the mounting portions 158 on the mounting columns 124, and the number of the fixing points is not less than two and is distributed on both sides of the body 152. Thus, the push rod assembly 150 is fixed on the support 110, so that the push rod assembly 150 does not move when pushing the sensor assembly 130. The overall structure of the temperature detection assembly 100 is enhanced, and the stability of the product is improved.
[0093] Meanwhile, the push rod assembly 150 is fixed on the support 110 by the connecting members 170, which facilitates the disassembly and assembly of the push rod assembly 150, simplifies the assembly structure of the temperature detection assembly 100, and provides convenient conditions for later maintenance.
[0094] In addition to the technical features of the above-mentioned embodiments, the temperature detection assembly 100 of the present embodiment further comprises the following technical features.
[0095] As shown in Figure 1 and Figure 2 , the push rod assembly 150 is a push-pull electromagnet or an electric push rod.
[0096] In this embodiment, the push rod assembly 150 is a push-pull electromagnet or an electric push rod. After the push rod assembly 150 is powered on, the push rod 154 can push the sensor assembly 130 to rotate, so that the sensing range of the sensor assembly 130 can be changed as needed, the sensing range of the sensor assembly 130 is expanded, and the accuracy of the food material temperature detection is improved.
[0097] Specifically, after the push-pull electromagnet is powered on, the iron core is attracted, the sensor assembly 130 is pushed to rotate, the sensing direction of the infrared temperature sensor 134 is adjusted, and the temperature of the food material at another position is sensed. When the push-pull electromagnet is powered off, the iron core is retracted, and the elastic member 160 drives the sensor assembly 130 to reset.
[0098] In one embodiment of the utility model, a kind of cooking utensil 200 is provided, including temperature detection assembly 100 as any of the above embodiments. Therefore the cooking utensil 200, possess the whole beneficial effect of temperature detection assembly 100 as any of the above embodiments.
[0099] The embodiment provides a cooking utensil 200, in addition to the technical features of the above embodiments, the embodiment further includes the following technical features.
[0100] As shown in Figure 1 , Figure 2 and Figure 3 , the cooking utensil 200 further includes a housing 132, the housing 132 has a cooking cavity 204; the bracket 110 is connected with the housing 132, and the sensor assembly 130 can detect the temperature in the cooking cavity 204.
[0101] In this embodiment, the cooking utensil 200 further includes a box body 202, the box body 202 is provided with the cooking cavity 204, and food materials are placed in the cooking cavity 204 for heating and cooking. During the heating and cooking of the food materials, the sensor assembly 130 can detect the temperature of the food materials in the cooking cavity 204, and then feed back the temperature detection result to the cooking utensil 200.
[0102] Among them, the bracket 110 is fixed at least two places on the box body 202, and the fixed points are distributed on different sides of the bracket 110, so that the bracket 110 is firmly connected with the box body 202, the stability of the cooking utensil 200 is enhanced, and the market competitiveness is improved.
[0103] The terms "first", "second" in the specification and claims of the present application can explicitly or implicitly include one or more features. In the literal description of the utility model, unless otherwise specified, the meaning of "multiple" is two or more. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / ", generally indicates that the front and rear associated objects are in an "or" relationship.
[0104] In the literal description of the utility model, it can be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like is the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the technical scheme of the utility model and simplifying the description of the technical scheme of the utility model, and does not indicate or imply that the structures, devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore these descriptions cannot be understood as limiting the utility model.
[0105] In the literal description of the utility model, it can be understood that, except for explicit provisions and limitations, the terms "mounting", "connection", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For a person skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0106] In the claims, the description and the drawings of the utility model, the term "a plurality of" refers to two or more than two, unless there is an additional explicit limitation, the orientation or positional relationship indicated by the terms "upper", "lower" and the like is the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the utility model and making the description process more simple, and is not intended to indicate or imply that the devices or elements indicated must have the specific orientation described, be constructed and operated in a particular orientation, and therefore these descriptions cannot be understood as limiting the utility model; the terms "connection", "mounting", "fixing" and the like should be understood broadly, for example, "connection" can be fixed connection between multiple objects, or it can be detachable connection between multiple objects, or it can be integrally connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For a person skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances of the above data.
[0107] In the claims, the specification, and the drawings of the present application, terms such as "one embodiment", "an embodiment", "certain embodiments" and the like mean that the particular feature, structure, material, or characteristic being referred to is included in at least one embodiment of the present application. The appearances of such phrases in various places in the specification are not necessarily all referring to the same embodiment. Further, the description as used herein is intended to be illustrative of at least one embodiment of the present application and is not intended to be limiting. Still further, any one or more of the features, structures, materials, or characteristics could be combined in any suitable manner in one or more embodiments or examples.
[0108] The above descriptions are merely some embodiments of the present application, and are not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A temperature detection assembly, characterized by, The temperature detection assembly is used for a cooking utensil, and comprises: a bracket; a sensor assembly connected with the bracket and capable of rotating relative to the bracket; a push rod assembly comprising a body connected with the bracket and a push rod arranged on the body, a first end of the push rod abutting against the sensor assembly, the push rod being capable of sliding relative to the body to drive the sensor assembly to rotate relative to the bracket.
2. The temperature detection assembly of claim 1, wherein, Further comprising: a resilient member, one end of the resilient member being connected with the sensor assembly and the other end of the resilient member being connected with the bracket; wherein when the first end of the push rod is at a first position relative to the body, the resilient member is in an extended state or a compressed state; when the first end of the push rod is at a second position relative to the body, the resilient member is in an original state, the second position being closer to the body relative to the first position.
3. The temperature detection assembly of claim 2, wherein, The sensor assembly comprises: a housing having a mounting cavity; a sensor arranged in the mounting cavity; a cover plate covering the mounting cavity and connected with the housing.
4. The temperature detection assembly of claim 3, wherein, The cover plate is provided with a first hanging part; the bracket is provided with a second hanging part; the first end of the resilient member is hung on the first hanging part, and the second end of the resilient member is hung on the second hanging part.
5. The temperature detection assembly of claim 3, wherein, The bracket is provided with a shaft hole; the housing is provided with a rotating shaft, and the rotating shaft is arranged in the shaft hole.
6. The temperature detection assembly of claim 3, wherein, The sensor is an infrared temperature sensor; the housing is provided with a first opening, and the infrared temperature sensor is opposite to the first opening.
7. The temperature detection assembly of claim 6, wherein, The bracket is provided with a first mounting groove and a second opening, and the second opening is arranged on the bottom wall of the first mounting groove; at least part of the sensor assembly is located in the first mounting groove, and the second opening is opposite to the first opening.
8. The temperature detection assembly of claim 3, wherein, The housing is provided with a buckle position; the cover plate is provided with a clamping part, and the clamping part is clamped in the buckle position.
9. The temperature detection assembly of any one of claims 1 to 8, wherein, The bracket is provided with a second mounting groove, and at least part of the body is embedded in the second mounting groove.
10. The temperature detection assembly of claim 9, wherein, The bracket is provided with at least two mounting columns, and at least two mounting columns are arranged on both sides of the second mounting groove; the push rod assembly further comprises at least two mounting parts, and at least two mounting parts are arranged on the body and abut against at least two mounting columns; the temperature detection assembly further comprises at least two connecting members, and at least two connecting members are respectively arranged in at least two mounting parts and are respectively connected with at least two mounting columns.
11. The temperature detection assembly of any one of claims 1 to 8, wherein, The push rod assembly is a push-pull electromagnet or an electric push rod.
12. A cooking appliance characterized by, The temperature detection assembly comprises any one of claims 1 to 11.
13. The cooking appliance of claim 12, wherein, Further comprising: a box body having a cooking cavity; the bracket is connected with the box body, and the sensor assembly is capable of detecting the temperature in the cooking cavity.