Mounting structure of temperature sensor and steaming and baking all-in-one machine

By installing a temperature sensor on the outside of the bottom of the inner cavity of the steam oven, the residual water in the evaporation section is detected and the heating element is controlled, which solves the problem of condensation and water accumulation at the bottom of the inner cavity of steam ovens with external steam generators. This achieves accurate temperature detection, simplifies assembly, and improves the user experience.

CN223810570UActive Publication Date: 2026-01-20HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Application Number
CN202423216001.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-20
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing steam ovens with external steam generators cannot effectively reduce condensation at the bottom of the inner pot, affecting the user experience. This is especially true in integrated cooktops, where the inner pot is large and located low, increasing the difficulty of cleaning.

Method used

A temperature sensor is installed on the outside of the bottom of the inner tank, with the probe pressed against the corresponding position of the evaporation section at the bottom of the inner tank. The residual water volume is obtained by detecting the temperature, and the heating time and power of the heating element are controlled. Combined with the design of the heating element and heat insulation element at the bottom of the inner tank, it is ensured that the sensor is in close contact with the inner tank, thereby improving the detection accuracy.

Benefits of technology

It effectively reduces residual water at the bottom of the inner tank, prevents dry burning, improves temperature detection accuracy, simplifies assembly, facilitates operation, reduces cleaning difficulty, and enhances the user experience.

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Abstract

The utility model relates to the technical field of cooking equipment, and particularly discloses a mounting structure of a temperature sensor and a steaming and baking all-in-one machine. The position, abutting against the inner container, of the temperature sensor installed on the outer side of the bottom of the inner container corresponds to the evaporation part on the inner side of the bottom of the inner container, the temperature sensor is used for detecting the temperature of the evaporation part, the residual water amount of the evaporation part is obtained through the detected temperature, and then the heating time and the heating power of the first heating piece can be controlled according to the residual water amount. The problem of dry burning or excessive residual water of the evaporation part is avoided; the second fixing part can be bent relative to the first fixing part so that the probe of the temperature sensor can abut against the inner container, it is ensured that the probe of the temperature sensor is tightly attached to the inner container, the temperature detection accuracy is improved, and then the residual water amount at the bottom of the inner container can be effectively reduced according to the temperature detected by the temperature sensor; and the temperature sensor can be fixed on the inner container by manually bending the second fixing piece, so that the operation is convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cooking equipment technical field especially, relates to a temperature sensor's installation structure and steam baking integrated machine. BACKGROUND

[0002] Steam baking integrated machine is a kind of cooking equipment containing steam mode and baking mode simultaneously, and steam baking integrated machine is generally divided into built-in evaporation tray and external steam generator.Too much condensate water is formed in the bottom of inner container when the existing steam baking integrated machine uses steam mode for a long time.

[0003] In order to reduce the condensate water in the bottom of inner container, the existing steam baking integrated machine usually sets a group of bottom heating pipes below the outer side of inner container to evaporate the condensate water condensed in the bottom of inner container.For the steam baking integrated machine with built-in evaporation tray, the residual water amount in the bottom of inner container is controlled by the water amount set by logic and the temperature sensor arranged on the evaporation tray.However, for the steam baking integrated machine with external steam generator, the high-temperature steam entering the inner container will condense on the inner container wall and form water accumulation in the bottom of inner container, but the residual water amount in the bottom of inner container will also change due to different factors such as food load, food temperature (normal temperature or frozen, etc.) and food water content, and the residual water amount after actual use of the user cannot be well simulated by the residual water amount after conventional cavity or some recipe tests, so that the control logic for controlling the heating time and heating power of the bottom heating pipe according to the residual water amount cannot be established, and in actual application, the steam baking integrated machine with external steam generator cannot effectively reduce the condensate water in the bottom of inner container.Especially for integrated cooker integrated with steam baking integrated machine, the position of the steam baking integrated machine is low and the volume of the inner container is large, and after steaming, too much residual water will increase the cleaning difficulty of the user and seriously affect the user experience. SUMMARY

[0004] The utility model aims at providing a temperature sensor's installation structure and steam baking integrated machine, can obtain the residual water amount in the bottom of inner container according to actual use, can effectively reduce the residual water amount in the bottom of inner container, and further solve the problem that too much condensate water in the bottom of inner container after steaming affects the user experience.

[0005] To achieve this purpose, the utility model adopts the following technical scheme:

[0006] In a first aspect, a temperature sensor mounting structure is provided, comprising:

[0007] A first fixing member is used for fixed connection with the outer side of the bottom of the inner container.

[0008] A second fixing member is connected with the first fixing member.

[0009] A temperature sensor, a probe of the temperature sensor is directed to outside of a bottom of the inner container, and corresponds to an evaporation part of the inner container bottom, the second fixing part is capable of being bent relative to the first fixing part to press against the temperature sensor in a first direction, so that the probe of the temperature sensor is pressed against the inner container.

[0010] As an alternative technical solution of the installation structure of the temperature sensor, the temperature sensor is provided with the second fixing part on at least two opposite sides, and the two second fixing parts are oppositely arranged and are bent towards each other.

[0011] As an alternative technical solution of the installation structure of the temperature sensor, the first fixing part comprises a frame, the temperature sensor is arranged in the frame, an opening is arranged on a side wall of the frame, the opening is arranged one by one corresponding to the second fixing part, the second fixing part is connected with an edge of the opening, and the opening is used for accommodating the second fixing part before being bent.

[0012] As an alternative technical solution of the installation structure of the temperature sensor, the size of the second fixing part is smaller than the inner diameter of the opening.

[0013] As an alternative technical solution of the installation structure of the temperature sensor, the frame is a rectangular structure, and 2-4 second fixing parts are arranged along the circumference of the frame.

[0014] As an alternative technical solution of the installation structure of the temperature sensor, the second fixing part is a plate structure, one end of the second fixing part is connected with the edge of the opening, and the other end of the second fixing part is provided with a circular arc corner.

[0015] As an alternative technical solution of the installation structure of the temperature sensor, opposite sides of one end of the frame are respectively provided with a connecting plate, the connecting plate extends towards the outside of the frame, and the connecting plate is used for fixedly connecting with the inner container.

[0016] As an alternative technical solution of the installation structure of the temperature sensor, the temperature sensor has a stepped surface, and the second fixing part is pressed against the stepped surface.

[0017] In a second aspect, an integrated steaming and baking machine is provided, comprising an inner container and the installation structure of the temperature sensor according to any one of the above, the bottom of the inner container is provided with an evaporation part, a lower part outside of the bottom of the inner container is provided with a first heating part, and the first heating part is arranged around the temperature sensor.

[0018] As an alternative technical solution of the integrated steaming and baking machine, a heat insulation part is arranged between the temperature sensor and the first heating part.

[0019] The utility model discloses the beneficial effect of:

[0020] The utility model provides a temperature sensor's mounting structure and steaming and baking integrated machine, the position of temperature sensor that the installation is in the bottom outside of inner bag and presses on on inner bag with the evaporation portion of the bottom inside of inner bag is correspondingly set, and temperature sensor is used for detecting the temperature at evaporation portion, and the residual water amount of evaporation portion is obtained through the temperature of detection, and then the heating time and heating power of first heating piece can be controlled according to residual water amount, avoid appearing dry burning or the problem of the residual water amount of evaporation portion is too much, first fixed part sets up on the inner bag, and second fixed part is connected with first fixed part, and second fixed part can be bent relative to first fixed part to make the probe of temperature sensor be pressed on on the inner bag, ensure that the probe of temperature sensor keeps close to the inner bag, improve the accuracy of temperature detection, and then the residual water amount of the bottom of inner bag can be effectively reduced according to the temperature of temperature sensor detection, and the structure of fixed temperature sensor is simple, and easy to assemble, and manual bending second fixed part can fix temperature sensor on the inner bag, convenient operation. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is the first axonometric view of the inner bag mounting structure provided by the utility model embodiment;

[0022] Figure 2 It is the structure schematic view of temperature sensor and inner bag connection provided by the utility model embodiment;

[0023] Figure 3 It is the second axonometric view of the inner bag mounting structure provided by the utility model embodiment;

[0024] Figure 4 It is the axonometric view of temperature sensor's mounting structure provided by the utility model embodiment;

[0025] Figure 5 It is the plan view of temperature sensor's mounting structure provided by the utility model embodiment;

[0026] Figure 6 It is the structure schematic view of first fixed part and second fixed part provided by the utility model embodiment.

[0027] In the drawing:

[0028] 1, first fixed part;2, second fixed part;3, temperature sensor;

[0029] 11, frame;12, connecting plate;13, opening;

[0030] 31, step surface;

[0031] 100, liner; 101, evaporation part; 102, drainage part; 103, liner coaming; 104, liner backboard; 200, first heating piece; 300, second heating piece; 400, support; 500, door frame support; 600, lower door frame support. DETAILED DESCRIPTION

[0032] The utility model will be described in further detail below in combination with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the utility model, and not limit the utility model. In addition, it should be noted that, for the convenience of description, only the parts related to the utility model are shown in the drawings, not all the structures.

[0033] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; 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 internal communication of two elements or the interaction relationship of two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0034] In the utility model, unless otherwise explicitly specified and limited, the "upper" or "lower" of the first feature to 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 "upper", "upper" and "upper" of the first feature to the second feature include 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 "below", "below" and "below" of the first feature to the second feature include 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.

[0035] In the description of the embodiment, the terms "upper", "lower", "right", etc. orientation or position relationship is based on the orientation or position relationship shown in the drawings, only for the convenience of description and simplification of operation, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the utility model. In addition, the terms "first", "second" are only used to distinguish in the description, and have no special meaning.

[0036] As Figures 1 to 4As shown, the embodiment provides a steaming and baking integrated machine, which can be applied to integrated stove or used as an independent device. The steaming and baking integrated machine comprises an inner container 100, a bottom of the inner container 100 is provided with an evaporation part 101 and a drainage part 102, the drainage part 102 is used for quickly draining the condensed water of the left side wall, the right side wall and the rear side wall opposite to the door of the inner container 100 to the evaporation part 101 at the center position of the bottom of the inner container 100, so that each side wall has almost no condensed water.

[0037] In order to obtain the water amount of the residual water at the bottom of the inner container 100 according to the actual use of the steaming and baking integrated machine, the residual water amount at the bottom of the inner container 100 can be effectively reduced, a temperature sensor 3 is arranged outside the inner container 100, the temperature of the evaporation part 101 is detected by the temperature sensor 3 to obtain the residual water amount of the evaporation part 101, and the mounting structure of the temperature sensor comprises a first fixing part 1, a second fixing part 2 and the temperature sensor 3. The first fixing part 1 is used for fixedly connecting the outside of the bottom of the inner container 100, and the second fixing part 2 is connected with the first fixing part 1. The probe of the temperature sensor 3 faces the outside of the bottom of the inner container 100 and corresponds to the evaporation part 101 of the bottom of the inner container 100, the second fixing part 2 can be bent relative to the first fixing part 1 to abut against the temperature sensor 3 in the first direction, so that the probe of the temperature sensor 3 abuts against the inner container 100, and the position of the temperature sensor 3 abutting against the inner container 100 is arranged to correspond to the evaporation part 101 of the bottom of the inner container 100. A first heating part 200 is further arranged below the outside of the inner container 100, and the first heating part 200 surrounds the temperature sensor 3. Preferably, the probe of the temperature sensor 3 is arranged opposite to the center position of the evaporation part 101.

[0038] The temperature sensor 3 installed outside the bottom of the inner container 100 is pressed against the inner container 100 at a position corresponding to the evaporation portion 101 on the inside of the bottom of the inner container 100, and is used to detect the temperature at the evaporation portion 101, so as to obtain the residual water amount of the evaporation portion 101 through the detected temperature, and then control the heating time and heating power of the first heating member 200 according to the residual water amount, so as to avoid the problems of dry burning or excessive residual water amount of the evaporation portion 101; the first fixing member 1 is arranged on the inner container 100, the second fixing member 2 is connected with the first fixing member 1, and the second fixing member 2 can be bent relative to the first fixing member 1 so that the probe of the temperature sensor 3 is pressed against the inner container 100, so as to ensure that the probe of the temperature sensor 3 is closely attached to the inner container 100, improve the accuracy of temperature detection, and then effectively reduce the residual water amount at the bottom of the inner container 100 according to the temperature detected by the temperature sensor 3; and the structure for fixing the temperature sensor 3 is simple and easy to assemble, and the temperature sensor 3 can be fixed on the inner container 100 by manually bending the second fixing member 2, which is convenient to operate. When the temperature sensor 3 needs to be disassembled, the second fixing member 2 is manually bent to the initial position so that the second fixing member 2 does not exert force on the temperature sensor 3, and then the temperature sensor 3 can be disassembled.

[0039] As shown in Figure 2 and Figure 3 , the inner container 100 includes an inner container surrounding plate 103, the inner container surrounding plate 103 is a U-shaped structure, the inner container surrounding plate 103 is the left side wall, the right side wall and the bottom of the inner container 100, and the temperature sensor 3 is arranged at the middle position of the inner container surrounding plate 103 so as to be correspondingly arranged with the evaporation portion 101. The evaporation portion 101 and the drainage portion 102 are arranged on the inner container surrounding plate 103. The inner container top plate is connected between the two ends of the inner container surrounding plate 103, the inner container rear plate 104 is arranged on one side of the inner container surrounding plate 103, and the other side of the inner container surrounding plate 103 is open.

[0040] The first heating member 200 is arranged around the temperature sensor 3, and the first heating member 200 is arranged below the evaporation portion 101 and is used to heat the residual water at the evaporation portion 101. Since the distance between the first heating member 200 and the first fixing member 1, the second fixing member 2 and the temperature sensor 3 is relatively close, in order to prolong the service life of the first fixing member 1, the second fixing member 2 and the temperature sensor 3, a heat insulation member is arranged between the temperature sensor 3 and the first heating member 200. The heat insulation member can be heat insulation cotton, which is not limited here. The first fixing member 1, the second fixing member 2 and the temperature sensor 3 can be optionally made of high-temperature resistant materials to prolong the service life.

[0041] The second heating element 300 is located below the drainage portion 102 and at least partially below the evaporation portion 101, and can heat the condensed water flowing through the drainage portion 102, that is, evaporate part of the condensed water before the condensed water is gathered to the evaporation portion 101, so as to reduce the amount of condensed water in the evaporation portion 101. At the same time, the second heating element 300 can also assist in heating the residual water in the evaporation portion 101, so as to accelerate the evaporation speed of the residual water, thereby reducing the amount of residual water gathered in the evaporation portion 101.

[0042] The first heating element 200 and the second heating element 300 are both heating pipe structures, and can also be other heating structures, which are not limited here.

[0043] The bracket 400 is arranged below the outer side of the bottom of the inner container 100, and the first heating element 200 and the second heating element 300 are fixed on the bracket 400. The front side of the inner container 100 is provided with a door frame bracket 500, and the door frame bracket 500 is connected with a door frame lower bracket 600. The bracket 400 is fixedly connected with the door frame lower bracket 600 and the rear plate 104 of the inner container 100.

[0044] As shown in Figures 4 to 6 The temperature sensor 3 is provided with the second fixing element 2 on at least two opposite sides, and the two second fixing elements 2 are bent towards each other, so that the temperature sensor 3 is uniformly stressed and stably pressed on the inner container 100.

[0045] In some embodiments, the first fixing element 1 includes a frame 11, and the temperature sensor 3 is arranged in the frame 11. The sidewall of the frame 11 is provided with an opening 13 corresponding to the second fixing element 2. The second fixing element 2 is connected with the edge of the opening 13, and the opening 13 is used for accommodating the second fixing element 2 before being bent. The second fixing element 2 is accommodated in the opening 13 before fixing the temperature sensor 3, and does not affect the placement of the temperature sensor 3 in the frame 11. After the temperature sensor 3 is placed in the frame 11, the second fixing element 2 can be bent inward from the opening 13 outside the frame 11, so that the second fixing element 2 is pressed on the temperature sensor 3, and the temperature sensor 3 is fixed. Preferably, the angle of the second fixing element 2 is greater than 0° and less than or equal to 90°, so as to increase the contact area of the second fixing element 2 and the temperature sensor 3, and further increase the force applied by the second fixing element 2 to the temperature sensor 3 in the first direction.

[0046] Optionally, the second fixing element 2 and the edge of the opening 13 are integrally connected, that is, the second fixing element 2 is formed at the same time as the opening 13 is punched, which simplifies the processing technology and reduces the number of parts.

[0047] Further optionally, the size of the second fixing member 2 is smaller than the inner diameter of the opening 13, that is, there is a gap between the second fixing member 2 and the edge of the opening 13, so as to facilitate the use of a tool to bend the second fixing member 2, and to bend the second fixing member 2 from the state of pressing against the temperature sensor 3 into the opening 13, that is, to facilitate the resetting of the second fixing member 2.

[0048] The second fixing member 2 is in a plate structure, one end of the second fixing member 2 is connected with the edge of the opening 13, and the other end of the second fixing member 2 is provided with a circular arc corner, so as to avoid scratching the operator when the operator bends the second fixing member 2.

[0049] The above-mentioned frame 11 is in a rectangular structure, and the second fixing member 2 is arranged at intervals along the circumference of the frame 11, and the number of the second fixing member 2 is 2-4. Exemplarily, the second fixing member 2 is arranged in two, and the two second fixing members 2 are arranged on the opposite two side walls of the frame 11. Alternatively, the second fixing member 2 is arranged in three, and the second fixing member 2 is arranged on each of the three side walls of the frame 11. Alternatively, the second fixing member 2 is arranged in four, and the second fixing member 2 is arranged on each of the four side walls of the frame 11. In other embodiments, the frame 11 is in a cylindrical structure, and the second fixing member 2 is arranged at equal intervals along the circumference of the frame 11 in the cylindrical structure.

[0050] The opposite two sides of one end of the frame 11 are respectively provided with the connecting plate 12, the connecting plate 12 extends towards the outside of the frame 11, the connecting plate 12 is fixedly connected with the inner container 100, the connecting area of the frame 11 and the inner container 100 is increased, and then the stability of the frame 11 being fixed is improved.

[0051] In some embodiments, in order to improve the stability of the installation of the temperature sensor 3, the temperature sensor 3 has a stepped surface 31, the second fixing member 2 is pressed on the stepped surface 31, and the stability of the connection between the second fixing member 2 and the temperature sensor 3 is increased. Based on the above-mentioned second fixing member 2 in a plate structure, the second fixing member 2 is pressed on the stepped surface 31, and the second fixing member 2 is preferably bent by 90°, so that the side surface of the second fixing member 2 is attached to the stepped surface 31.

[0052] Obviously, the above-mentioned embodiments of the present application are only examples for clearly illustrating the present application, and are not intended to limit the embodiments of the present application. For those skilled in the art, various obvious changes, re-adjustments and replacements can be made without departing from the protection scope of the present application. Here, it is not necessary and also impossible to enumerate all the embodiments. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the claims of the present application.

Claims

1. A mounting structure for a temperature sensor, characterized by, The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure.

2. The temperature sensor mounting structure according to claim 1, characterized by The application relates to a temperature sensor mounting structure.

3. The temperature sensor mounting structure according to claim 2, characterized by The application relates to a temperature sensor mounting structure.

4. The temperature sensor mounting structure according to claim 3, characterized by The application relates to a temperature sensor mounting structure.

5. The temperature sensor mounting structure according to claim 3, wherein The application relates to a temperature sensor mounting structure.

6. The temperature sensor mounting structure according to claim 3, wherein The application relates to a temperature sensor mounting structure.

7. The temperature sensor mounting structure according to claim 3, wherein The application relates to a temperature sensor mounting structure.

8. The temperature sensor mounting structure according to any one of claims 1 to 7, characterized by, The application relates to a temperature sensor mounting structure.

9. The combination steaming and baking machine characterized by, The application relates to a temperature sensor mounting structure.

10. The combination steaming and roasting machine of claim 9, wherein, The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. The application relates to a temperature sensor mounting structure. 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