Detection equipment of temperature controller for electric kettle

By designing a thermostat testing device for electric kettles that allows testing even when the thermostat is not mounted on its base, the device simulates the kettle environment using a conveyor belt and a test block on a lifting platform. Combined with a temperature sensor and a thermistor bimetallic strip, it solves the problem of low maintenance efficiency in existing technologies and achieves efficient testing and flexible adaptation to the testing of different thermostat models.

CN223664946UActive Publication Date: 2025-12-12ZHEJIANG ZHONGTENG ELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202520033321.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-12-12
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

Existing electric kettle thermostat testing equipment requires the thermostat to be installed on the base before testing can be performed, resulting in low repair efficiency.

Method used

A testing device for electric kettle thermostats was designed, allowing for maintenance when the thermostat and base are not installed. The thermostat is transported to a lifting platform via a conveyor belt, and the test block and heating block on the lifting platform simulate the kettle environment. The device is then tested using a temperature sensor and a thermistor bimetallic strip, achieving base-free testing.

Benefits of technology

It improves testing efficiency, shortens the time for repairing defective products, increases production efficiency, and can flexibly adapt to different models of temperature controllers.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223664946U_ABST
Patent Text Reader

Abstract

The utility model discloses a detection device of a temperature controller for an electric kettle. The technical key points are as follows: the device comprises a rack and a test bench arranged on the rack, the test bench is provided with a transmission belt, the transmission belt is provided with a test seat, the test seat is used for connecting a temperature controller, the rack is provided with a liftable test bench, the test bench is provided with a first test block and a second test block, and the first test block and the second test block are arranged on the rack. The distance between the first test block and the second test block is equal to the distance between the adjacent test seats, the first test block is provided with a first heating block, the second test seat is provided with a second heating block, the rack is provided with a first temperature sensor and a second temperature sensor, and the first temperature sensor and the second temperature sensor are arranged on the rack. According to the utility model, the temperature controller does not need to be detected after being mounted on the base, thereby facilitating the maintenance of defective products, shortening the maintenance time of the defective products, and improving the production efficiency.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of electric kettle, more specifically relates to a detection equipment for temperature controller of electric kettle. BACKGROUND

[0002] The existing temperature controller of electric kettle needs to be detected before leaving factory to ensure that the leaving factory product is qualified. However, the current detection equipment needs to install the temperature controller and the base to detect, and for the defective product, needs to disassemble to repair, and after repairing, needs to assemble with the base to detect again, and the efficiency is low. UTILITY MODEL CONTENTS

[0003] In view of the deficiencies in the prior art, the utility model aims at providing a detection equipment for temperature controller of electric kettle can repair when the temperature controller and the base are not installed to solve the above technical problems.

[0004] To achieve the above object, the utility model provides the following technical scheme: the detection equipment for temperature controller of electric kettle, including frame and test table being arranged on the frame, be equipped with the conveying belt on the test table, be equipped with test seat on the conveying belt, the test seat is used for connecting temperature controller, be equipped with the liftable lifting platform on the frame, be equipped with the first test block, second test block on the lifting platform, the interval between the first test block, second test block is equal to the interval between adjacent test seat, be equipped with the first heating block on the first test block, be equipped with the second heating block on the second test block, be equipped with the first temperature sensor, second temperature sensor on the frame, the first temperature sensor gathers the temperature data of the first test block, the second temperature sensor gathers the temperature data of the second test block.

[0005] As a further improvement of the utility model, the test seat is equipped with detection block, the position of detection block corresponds to the position of heat sensitive bimetallic strip, the test seat is equipped with indicating lamp, when heat sensitive bimetallic strip is deformed, heat sensitive bimetallic strip is connected with detection block, and indicating lamp is lit.

[0006] As a further improvement of the utility model, the bottom of the first test block and the second test block is equipped with the connecting portion, and the connecting portion is consistent with the upper end of the temperature controller.

[0007] As a further improvement of the utility model, the test seat is equipped with fixed mold, the fixed mold is detachably connected with the test seat, the fixed mold has several kinds, respectively corresponding different models of temperature controller, the fixed mold is equipped with through -hole, and the detection block passes through the through -hole.

[0008] As a further improvement of the utility model, the positioning frame is rotatably arranged on the test seat, and a torsion spring is arranged between the positioning frame and the test seat.

[0009] As a further improvement of the utility model, the positioning frame is rotatably arranged on the test seat, and a torsion spring is arranged between the positioning frame and the test seat.

[0010] The utility model discloses the beneficial effect, need not the temperature controller with the base detection again, the maintenance of convenient substandard product, shorten the maintenance time of substandard product, improve production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0011] Figure 1 It is whole structure schematic diagram of the utility model;

[0012] Figure 2 It is the top view local structure schematic diagram of test table.

[0013] Marking explanation: 1, rack;2, test table;3, conveying belt;4, test seat;41, detection block;42, pilot lamp;43, fixed mould;431, through -hole;44, positioning frame;441, drive rod;5, lifting platform;51, first test block;511, first heating block;52, second test block;521, second heating block;61, first temperature sensor;62, second temperature sensor;7, connecting portion;81, first guide block;82, second guide block. DETAILED DESCRIPTION

[0014] The utility model will be further detailed in the embodiment combining with the drawing.

[0015] Refer to Figure 1 — Figure 2 As shown in the figure, the detection equipment of the temperature controller for electric kettle of the embodiment, including the rack 1 and setting test table 2 on the rack 1, the test table 2 is equipped with conveying belt 3, the conveying belt 3 is equipped with test seat 4, the test seat 4 is used to connect temperature controller, the rack 1 is equipped with liftable lifting platform 5, the lifting platform 5 is equipped with first test block 51, second test block 52, the interval between first test block 51, second test block 52 is equal to the interval between adjacent test seat 4, the first test block 51 is equipped with first heating block 511, the second test block 52 is equipped with second heating block 521, the rack 1 is equipped with first temperature sensor 61, second temperature sensor 62, the first temperature sensor 61 gathers the temperature data of first test block 51, and the second temperature sensor 62 gathers the temperature data of second test block 52.

[0016] Through the technical scheme, when the temperature controller is detected by using the device, the temperature controller is first mounted on the test seat 4, and then the device is started. At this time, the conveying belt 3 intermittently runs. During the running of the conveying belt 3, the operator continuously mounts the temperature controller on the test seat 4 passing by. When the test seat 4 carrying the temperature controller passes below the lifting platform 5, the conveying belt 3 stops running, the lifting platform 5 descends, and then drives the first test block 51 and the second test block 52 to descend. The first test block 51 and the second test block 52 respectively abut against the temperature controller below, and the first heating block 511 and the second heating block 521 run to keep the temperature. The temperature of the first heating block 511 is lower than the deformation temperature of the thermosensitive bimetallic strip, and the temperature of the second heating block 521 is higher than the deformation temperature of the thermosensitive bimetallic strip, and both are close to the deformation temperature. The temperature controller does not deform when passing through the first test block 51, and deforms when passing through the second test block 52, which is a qualified product. The detection result can be obtained by judging the deformation of the thermosensitive bimetallic strip, and the temperature controller does not need to be mounted on the base for detection, which is convenient for repairing the defective products, shortens the repair time of the defective products, and improves the production efficiency.

[0017] The first temperature sensor 61 and the second temperature sensor 62 respectively collect the temperatures of the first test block 51 and the second test block 52, so as to ensure the temperature accuracy of the first test block 51 and the second test block 52 during the test, and improve the accuracy during the detection.

[0018] As an improved specific embodiment, the test seat 4 is provided with a detection block 41, the position of the detection block 41 corresponds to the position of the thermosensitive bimetallic strip, and the test seat 4 is provided with an indicator lamp 42. When the thermosensitive bimetallic strip deforms, the thermosensitive bimetallic strip is connected with the detection block 41, and the indicator lamp 42 is turned on.

[0019] Through the technical scheme, when the deformation temperature is reached, the thermosensitive bimetallic strip deforms and triggers the detection block 41, so that the indicator lamp 42 is turned on. It is more convenient to observe whether the temperature controller is qualified, and it is convenient to distinguish and has high efficiency.

[0020] As an improved specific embodiment, the bottom of the first test block 51 and the second test block 52 is provided with a connecting part 7, and the connecting part 7 is matched with the upper end of the temperature controller.

[0021] Through the technical scheme, when the first test block 51 and the second test block 52 descend and abut against the temperature controller, the connecting part 7 at the lower side of the first test block 51 and the second test block 52 extends into the temperature controller to simulate a kettle, thereby further improving the accuracy of the test.

[0022] As a specific embodiment of the improvement, the test seat 4 is provided with a fixed mold 43, the fixed mold 43 is detachably connected with the test seat 4, the fixed mold 43 has several kinds, respectively corresponding to different models of temperature controllers, the fixed mold 43 is provided with a through hole 431, and the detection block 41 passes through the through hole 431.

[0023] Through the above technical scheme, different models of temperature controllers can be processed by replacing the fixed mold 43, the use is flexible, and the use range is wide. After the fixed mold 43 is replaced, the detection block 41 passes through the through hole 431 and corresponds to the heat-sensitive bimetallic strip on the temperature controller, and the detection accuracy is high.

[0024] As a specific embodiment of the improvement, the test seat 4 is provided with a positioning frame 44, the positioning frame 44 is rotatably arranged on the test seat 4, and the positioning frame 44 is provided with a torsional spring between the test seat 4.

[0025] Through the above technical scheme, when the temperature controller is arranged on the test seat 4, the positioning frame 44 is first rotated, and the torsional spring is compressed at this time, then the temperature controller is placed on the test seat 4, and then the positioning frame 44 is loosened, the torsional spring is reset to drive the positioning frame 44 to rotate and abut against the temperature controller, so that the temperature controller is fixed on the test seat 4, the temperature controller is prevented from loosening during the test process, and the accuracy of the test structure is improved.

[0026] As a specific embodiment of the improvement, the positioning frame 44 is provided with a driving rod 441, the test table 2 is provided with a first guide block 81 and a second guide block 82, the first guide block 81 and the second guide block 82 are respectively located on the two sides of the test table 2, and the positions of the first guide block 81 and the second guide block 82 correspond to the position of the driving rod 441.

[0027] Through the above technical scheme, the test seat 4 is sequentially passed below the lifting table 5 by the operation of the conveying belt 3, in the process of passing through the first guide block 81 and the second guide block 82, the driving rod 441 abuts against the first guide block 81 / second guide block 82 and is guided to rotate, thereby driving the positioning frame 44 to rotate, and when the test seat 4 leaves the position of the first guide block 81 / second guide block 82, the torsional spring is reset to drive the positioning frame 44 to reset; with the operation of the conveying belt 3, the positioning frame 44 on the test seat 4 can be automatically opened and closed, the use is more convenient, and the test efficiency is improved.

[0028] The preferred embodiments of the utility model are described above, the protection scope of the utility model is not only limited to the above-mentioned embodiments, and all technical schemes under the idea of the utility model belong to the protection scope of the utility model. It should be noted that for ordinary technical personnel in the technical field, some improvements and decorations without departing from the principle of the utility model can also be regarded as the protection scope of the utility model.

Claims

1. A testing device for a thermostat used in an electric kettle, comprising a frame (1) and a test platform (2) mounted on the frame (1), characterized in that: The test bench (2) is provided with a conveyor belt (3), and the conveyor belt (3) is provided with a test seat (4). The test seat (4) is used to connect a temperature controller. The frame (1) is provided with a liftable lifting platform (5). The lifting platform (5) is provided with a first test block (51) and a second test block (52). The distance between the first test block (51) and the second test block (52) is equal to the distance between adjacent test seats (4). The first test block (51) is provided with a first heating block (511), and the second test block (52) is provided with a second heating block (521). The frame (1) is provided with a first temperature sensor (61) and a second temperature sensor (62). The first temperature sensor (61) collects the temperature data of the first test block (51), and the second temperature sensor (62) collects the temperature data of the second test block (52).

2. The testing device for the thermostat of an electric kettle according to claim 1, characterized in that: The test base (4) is provided with a detection block (41), the position of the detection block (41) corresponds to the position of the thermistor bimetallic strip, and the test base (4) is provided with an indicator light (42). When the thermistor bimetallic strip is deformed, the thermistor bimetallic strip is connected to the detection block (41), and the indicator light (42) lights up.

3. The testing device for the thermostat of an electric kettle according to claim 1 or 2, characterized in that: The bottom of the first test block (51) and the second test block (52) are provided with a connecting part (7), which matches the upper end of the temperature controller.

4. The testing device for the thermostat of an electric kettle according to claim 2, characterized in that: The test base (4) is provided with a fixed mold (43), which is detachably connected to the test base (4). There are several types of fixed molds (43), each corresponding to a different model of temperature controller. The fixed mold (43) is provided with a through hole (431), through which the detection block (41) passes.

5. The testing device for the thermostat of an electric kettle according to claim 1 or 2, characterized in that: The test base (4) is provided with a positioning frame (44), which is rotatably mounted on the test base (4), and a torsion spring is provided between the positioning frame (44) and the test base (4).

6. The testing device for the thermostat of an electric kettle according to claim 5, characterized in that: The positioning frame (44) is provided with a drive rod (441), and the test platform (2) is provided with a first guide block (81) and a second guide block (82). The first guide block (81) and the second guide block (82) are located on both sides of the test platform (2), and the positions of the first guide block (81) and the second guide block (82) correspond to the positions of the drive rod (441).