Dehumidifying and drying device of armored temperature sensor

By designing an armored temperature sensor dewetting and drying device with centering, clamping and drying mechanisms, the problem of low fixation efficiency in large-scale production is solved, and the simultaneous clamping and efficient dewetting and drying of multiple sensors is achieved, which improves production efficiency and dewetting effect.

CN223295211UActive Publication Date: 2025-09-02CHANGZHOU JINGPORCELAIN INSTR TECH CO LTD
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Patent Information

Application Number
CN202422074347.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-09-02
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing armored temperature sensor dewetting and drying devices have problems such as low fixed efficiency and high time cost in large-scale production, especially when multiple sensors are processed.

Method used

A dewetting and drying device including a centering mechanism, a clamping mechanism and a drying mechanism is designed. The simultaneous clamping and fixing of multiple sensors is realized through a semi-circular annular plate and a centering mechanism. The clamping mechanism ensures stable clamping of the hot end components, and the drying mechanism is uniformly heated and baked through the heating ring.

Benefits of technology

It realizes simultaneous clamping and efficient dewetting and drying of multiple temperature sensors, which significantly improves production efficiency and dewetting effect, and is suitable for large-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dehumidifying and drying device for an armored temperature sensor, which relates to the technical field of armored temperature sensor drying and comprises a bottom plate, the upper surface of the bottom plate is fixedly connected with a semi-circular plate, a group of sensor entities are placed on the semi-circular plate, one end of the semi-circular plate is fixedly connected with a semi-circular barrier strip, and the other end of the semi-circular barrier strip is fixedly connected with a rotating shaft. A centering mechanism is arranged in the sensor entity. Through arrangement of a semi-annular plate and a centering mechanism, a plurality of temperature sensors are clamped and fixed at the same time, a group of sensor entities can be stably placed on the semi-annular plate, and through cooperative use of a third electric push rod, a second mounting batten, a telescopic rod, a spring, a centering batten and a third protective pad, the centering mechanism is used for clamping and fixing the temperature sensors at the same time. According to the sensor fixing device, a plurality of sensor entities can be stably fixed at the same time, the working efficiency is remarkably improved through the design, the sensor fixing device is particularly suitable for the large-scale production process, and the problems of time cost and efficiency caused by fixing sensors one by one are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of drying armored temperature sensors, in particular to a dehumidification and drying device for armored temperature sensors. Background Art

[0002] In existing technology, armored temperature sensors require dehumidification and drying during production to improve insulation resistance and accuracy. Conventional methods involve baking the hot end in a conventional electric furnace or placing the entire product in an oven. However, these methods suffer from low efficiency, high energy consumption, and unsatisfactory dehumidification.

[0003] Although patent application number 201821497493.4 provides a dehumidification and drying device for armored temperature sensors, the device achieves effective fixation and heating and dehumidification of the temperature sensor through the cooperation of components such as a mold clamp, a clamping cylinder, a pressure head, and a heating ring, thereby improving work efficiency and dehumidification effect. However, when multiple temperature sensors need to be clamped and fixed, the device needs to fix them one by one, which to a certain extent affects work efficiency. Especially in large-scale production, this one-by-one fixing method will significantly increase production time and cost.

[0004] Therefore, although existing dehumidification and drying devices have achieved certain technological progress, they still face the problems of cumbersome operation and low efficiency when facing large-scale production needs. To solve this problem, this utility model proposes a new dehumidification and drying device for armored temperature sensors, which aims to achieve simultaneous clamping and fixing of multiple temperature sensors, further improving production efficiency and dehumidification effect. Utility Model Content

[0005] The purpose of the utility model is to make up for the deficiencies of the prior art and to provide a dehumidification and drying device for an armored temperature sensor.

[0006] To achieve the above-mentioned objectives, the utility model provides the following technical solutions: a dehumidification and drying device for an armored temperature sensor, comprising a base plate, a semicircular ring plate fixedly connected to the upper surface of the base plate, a group of sensor entities placed on the semicircular ring plate, one end of the semicircular ring plate fixedly connected to a semicircular ring baffle, a centering mechanism is provided inside the sensor entity, a clamping mechanism is provided on the outer surface of the hot end component of the sensor entity, a drying mechanism is provided above the hot end component of the sensor entity, the centering mechanism comprises a third electric push rod, an end of the third electric push rod close to the sensor entity is fixedly connected to a second mounting strip plate, a side of the second mounting strip plate close to the sensor entity is fixedly connected to a telescopic rod and a spring, a side of the telescopic rod close to the sensor entity is fixedly connected to a centering strip plate, a side of the centering strip plate close to the telescopic rod is fixedly connected to the spring, and a third protective pad is installed on a side of the centering strip plate close to the sensor entity.

[0007] Furthermore, the upper surface of the base plate is fixedly connected to a first fixing frame, an inverted L-shaped plate, and a second fixing frame, the first fixing frame is fixedly connected to a central frame, the position of the central frame is located at the axis inside the sensor entity, and the third electric push rod is installed on the central frame.

[0008] Furthermore, the clamping mechanism includes an L-shaped plate and a fixed strip, the L-shaped plate is fixedly connected to the inverted L-shaped plate, a first electric push rod is installed on a side of the L-shaped plate close to the sensor entity, the first electric push rod is fixedly connected to the clamping strip at one end close to the sensor entity, and a first protective pad is installed on a side of the clamping strip close to the sensor entity.

[0009] Furthermore, the fixed strip is fixedly connected to the second fixed frame, and a second protective pad is installed on the side of the fixed strip close to the hot end component of the sensor entity. The side of the second protective pad close to the first protective pad contacts the hot end component of the sensor entity and limits the hot end component of the sensor entity.

[0010] Furthermore, the drying mechanism includes a group of second electric push rods fixedly connected to the inner top wall of the inverted L-shaped plate, and the bottom ends of the group of second electric push rods are fixedly connected to the first mounting strip.

[0011] Furthermore, a group of heating rings is installed on the bottom surface of the first mounting strip, and the position of the group of heating rings is located above the hot end component of the sensor entity.

[0012] Compared with the existing technology, the dehumidification and drying device of the armored temperature sensor has the following beneficial effects:

[0013] 1. The utility model realizes the simultaneous clamping and fixation of multiple temperature sensors by providing a semicircular ring plate and a centering mechanism. The semicircular ring plate can stably place a group of sensor entities, and the centering mechanism can simultaneously firmly fix multiple sensor entities through the coordinated use of the third electric push rod, the second mounting strip, the telescopic rod, the spring, the centering strip and the third protective pad. This design significantly improves work efficiency, is particularly suitable for large-scale production processes, and solves the time cost and efficiency problems brought about by fixing sensors one by one.

[0014] 2. The utility model realizes effective clamping and efficient drying of the hot end component of the temperature sensor by setting a clamping mechanism and a drying mechanism. The first electric push rod, clamping strip, first protective pad, fixed strip and second protective pad in the clamping mechanism cooperate to ensure the firm clamping of the hot end component of the sensor. The drying mechanism can evenly and efficiently heat and bake the hot end component of the sensor through the coordinated action of the second electric push rod, the first mounting strip and the heating ring, thereby improving the dehumidification and drying effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the three-dimensional front view structure of the utility model;

[0016] Figure 2 This is a schematic diagram of the three-dimensional side structure of the utility model;

[0017] Figure 3 For this utility model Figure 2 A magnified schematic diagram of point A in the middle;

[0018] Figure 4 It is a three-dimensional structural diagram of the semicircular ring plate, sensor entity and semicircular ring baffle of the utility model.

[0019] In the figure: 1. Base plate; 2. Semicircular ring plate; 3. Sensor entity; 4. Semicircular ring baffle; 5. Clamping mechanism; 501. L-shaped plate; 502. First electric push rod; 503. Clamping strip; 504. First protective pad; 505. Fixed strip; 506. Second protective pad; 6. Inverted L-shaped plate; 7. Drying mechanism; 701. Second electric push rod; 702. First mounting strip; 703. Heating coil; 8. First fixing frame; 9. Centering mechanism; 901. Third electric push rod; 902. Second mounting strip; 903. Centering strip; 904. Third protective pad; 905. Telescopic rod; 906. Spring; 10. Second fixing frame; 11. Center strip. DETAILED DESCRIPTION

[0020] The principles and features of the present invention are described below in conjunction with the accompanying drawings. The examples given are only used to explain the present invention and are not used to limit the scope of the present invention.

[0021] This embodiment provides a dehumidification and drying device for armored temperature sensors, which is used to dehumidify and dry armored temperature sensors. By providing a centering mechanism 9, a clamping mechanism 5, and a drying mechanism 7, multiple sensor bodies 3 can be securely clamped and fixed, while also being effectively heated and baked by a heating coil 703, thereby improving production efficiency and dehumidification effectiveness.

[0022] See also Figures 1 to 4 , a dehumidification and drying device for an armored temperature sensor, comprising a base plate 1, a semicircular ring plate 2 is fixedly connected to the upper surface of the base plate 1, a group of sensor entities 3 are placed on the semicircular ring plate 2, one end of the semicircular ring plate 2 is fixedly connected to a semicircular ring baffle 4, a centering mechanism 9 is provided inside the sensor entity 3, a clamping mechanism 5 is provided on the outer surface of the hot end component of the sensor entity 3, a drying mechanism 7 is provided above the hot end component of the sensor entity 3, the centering mechanism 9 comprises a third electric push rod 901, an end of the third electric push rod 901 close to the sensor entity 3 is fixedly connected to a second mounting strip plate 902, a side of the second mounting strip plate 902 close to the sensor entity 3 is fixedly connected to a telescopic rod 905 and a spring 906, a side of the telescopic rod 905 close to the sensor entity 3 is fixedly connected to a centering strip plate 903, a side of the centering strip plate 903 close to the telescopic rod 905 is fixedly connected to the spring 906, and a third protective pad 904 is installed on the side of the centering strip plate 903 close to the sensor entity 3.

[0023] The upper surface of the base plate 1 is fixedly connected with a first fixing frame 8, an inverted L-shaped plate 6, and a second fixing frame 10. The first fixing frame 8 is fixedly connected with a central frame 11. The position of the central frame 11 is located at the axis inside the sensor entity 3. The third electric push rod 901 is installed on the central frame 11.

[0024] The clamping mechanism 5 includes an L-shaped plate 501 and a fixed strip 505. The L-shaped plate 501 is fixedly connected to the inverted L-shaped plate 6. A first electric push rod 502 is installed on the side of the L-shaped plate 501 close to the sensor entity 3. The end of the first electric push rod 502 close to the sensor entity 3 is fixedly connected to a clamping strip 503. A first protective pad 504 is installed on the side of the clamping strip 503 close to the sensor entity 3.

[0025] The fixed strip 505 is fixedly connected to the second fixed frame 10. A second protective pad 506 is installed on the side of the fixed strip 505 close to the hot end component of the sensor entity 3. The side of the second protective pad 506 close to the first protective pad 504 is in contact with the hot end component of the sensor entity 3 and limits the hot end component of the sensor entity 3.

[0026] The drying mechanism 7 includes a set of second electric push rods 701 fixedly connected to the inner top wall of the inverted L-shaped plate 6 , and the bottom ends of the set of second electric push rods 701 are fixedly connected to the first mounting strip plate 702 .

[0027] A set of heating coils 703 is installed on the bottom surface of the first installation strip 702 , and the position of the set of heating coils 703 is located above the hot end component of the sensor entity 3 .

[0028] Example 1

[0029] This embodiment provides a dehumidification and drying device for an armored temperature sensor, characterized in that it includes a base plate 1, a semicircular ring plate 2 is fixed on the base plate 1, and eleven sensor entities 3 are neatly arranged on the semicircular ring plate 2. A semicircular ring retaining bar 4 is connected to one end of the semicircular ring plate 2 to prevent the sensor entity 3 from falling out. The base plate 1 is also fixed with a first fixing frame 8, an inverted L-shaped plate 6 and a second fixing frame 10. The centering mechanism 9 includes two symmetrically arranged components, each component includes three third electric push rods 901, and each third electric push rod 901 is connected to a second mounting strip 902. A telescopic rod 905 and a spring 906 are installed on the second mounting strip 902. The front end of the telescopic rod 905 is connected to the centering strip 903, and the centering strip 903 is covered with a third protective pad 904.

[0030] During implementation, the sensor entity 3 is first placed on the semicircular ring plate 2 , and then the extension of the third electric push rod 901 is controlled so that the centering strip 903 and the third protective pad 904 tightly clamp the sensor entity 3 to achieve firm fixation.

[0031] Example 2

[0032] This embodiment further details the structure and operation of the clamping mechanism 5, building upon the first embodiment. The clamping mechanism 5 comprises an L-shaped plate 501 and a fixed strip 505. Three first electric push rods 502 are mounted on the L-shaped plate 501. Each first electric push rod 502 is connected to a clamping strip 503, which is covered with a first protective pad 504. A second protective pad 506 is mounted on the fixed strip 505.

[0033] During implementation, after the sensor entity 3 is fixed by the centering mechanism 9, by controlling the extension of the first electric push rod 502, the clamping strip 503 and the first protective pad 504 cooperate with the fixed strip 505 and the second protective pad 506 to firmly clamp the hot end component of the sensor entity 3.

[0034] Example 3

[0035] This embodiment, based on the first and second embodiments, adds a detailed description of the drying mechanism 7. The drying mechanism 7 includes a set of second electric push rods 701, each of which is connected to a first mounting strip 702, and a set of heating coils 703 is installed at the bottom of the first mounting strip 702.

[0036] During the implementation process, after the sensor entity 3 is firmly fixed by the centering mechanism 9 and the clamping mechanism 5, the heating coil 703 is moved to the top of the hot end component of the sensor entity 3 by controlling the extension of the second electric push rod 701, and then the heating coil 703 is started for heating and baking, thereby completing the dehumidification and drying operation.

[0037] The above three embodiments together constitute a complete implementation method of the present invention. Through the coordinated action of the centering mechanism 9, the clamping mechanism 5 and the drying mechanism 7, the simultaneous clamping, fixing and dehumidification and drying processing of multiple temperature sensors is achieved, which significantly improves the production efficiency and dehumidification effect.

[0038] There are two centering mechanisms 9, both of which are set on the central frame 11 and are in a symmetrical state. When working, the two sets of centering mechanisms 9 will move toward the inner side of the sensor entity 3 at the same time, so that the two centering strips 903 and the third protective pad 904 can firmly fix one set of sensor entities 3.

[0039] There are three telescopic rods 905 and three springs 906 in each centering mechanism 9, which are all arranged between the second installation strip 902 and the centering strip 903 in a linear array state.

[0040] There are three third electric push rods 901 in each centering mechanism 9, which are all arranged between the central frame 11 and the second mounting strip 902 in a linear array state.

[0041] There are three first electric push rods 502 , all of which are arranged between the L-shaped plate 501 and the clamping strip 503 , forming a linear array.

[0042] The specific number of a group of sensor entities 3, the second electric push rod 701, and the heating ring 703 is set to eleven.

[0043] The clamping strip 503 and the first protective pad 504 cooperate with the fixing strip 505 and the second protective pad 506 during operation, thereby firmly clamping and fixing the hot end component of the sensor entity 3 .

[0044] Working principle: When the present invention is in use, first a group of sensor entities 3 are placed on the semicircular ring plate 2. At this time, the semicircular ring baffle 4 will limit the sensor entity 3 to prevent it from falling out. At the same time, the fixed strip 505 can limit the hot end component of the sensor entity 3 so that the hot end component is in a vertical state. Then, the third electric push rod 901 in the two centering mechanisms 9 is controlled to start extending. The third electric push rod 901 will push the second mounting strip 902, the telescopic rod 905, the spring 906, the centering strip 903 and the third protective pad 904 to approach the sensor entity 3 until the third protective pad 904 contacts the inner side of the sensor entity 3. At this time, under the action of the telescopic rod 905 and the spring 906, the two third protective pads 904 will tightly clamp the sensor entity 3. At the same time, the two centering mechanisms 9 will move at the same time, thereby completing the firm fixation of a group of sensor entities 3.

[0045] Then, the first electric push rod 502 in the clamping mechanism 5 is controlled to begin to extend, and the first electric push rod 502 pushes the clamping strip 503 and the first protective pad 504 to move toward the hot end component of the sensor entity 3 until the first protective pad 504 contacts the hot end component of the sensor entity 3. At this time, the clamping strip 503 and the first protective pad 504 cooperate with the fixed strip 505 and the second protective pad 506, thereby completing the stable clamping of the hot end component of the sensor entity 3.

[0046] Finally, the second electric push rod 701 in the drying mechanism 7 is controlled to start extending. The second electric push rod 701 will push the first mounting strip 702 and the heating coil 703 to move downward until the heating coil 703 moves above the hot end component of the sensor entity 3. At this time, the heating coil 703 is controlled to start working. The heating coil 703 generates heat to heat and bake the hot end component of the sensor entity 3, thereby completing the dehumidification and drying operation.

[0047] Through the above steps, the utility model can simultaneously clamp and fix multiple temperature sensors, and achieve dehumidification and drying of the temperature sensors by heating and baking, thereby improving production efficiency and dehumidification effect.

[0048] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A dehumidification and drying device for an armored temperature sensor, comprising a base plate (1), characterized in that: A semicircular ring plate (2) is fixedly connected to the upper surface of the bottom plate (1), a group of sensor entities (3) are placed on the semicircular ring plate (2), one end of the semicircular ring plate (2) is fixedly connected to a semicircular ring retaining bar (4), a centering mechanism (9) is provided inside the sensor entity (3), a clamping mechanism (5) is provided on the outer surface of the hot end component of the sensor entity (3), a drying mechanism (7) is provided above the hot end component of the sensor entity (3), the centering mechanism (9) includes a third electric push rod (901), the third electric push rod (90 1) A second mounting strip (902) is fixedly connected to one end close to the sensor entity (3); a telescopic rod (905) and a spring (906) are fixedly connected to one side of the second mounting strip (902) close to the sensor entity (3); a centering strip (903) is fixedly connected to one side of the telescopic rod (905) close to the sensor entity (3); a spring (906) is fixedly connected to one side of the centering strip (903) close to the telescopic rod (905); and a third protective pad (904) is installed on one side of the centering strip (903) close to the sensor entity (3).

2. The dehumidification and drying device for an armored temperature sensor according to claim 1, characterized in that: The upper surface of the base plate (1) is fixedly connected to a first fixing frame (8), an inverted L-shaped plate (6), and a second fixing frame (10); the first fixing frame (8) is fixedly connected to a central frame (11); the central frame (11) is located at the axis inside the sensor entity (3); and the third electric push rod (901) is installed on the central frame (11).

3. The dehumidification and drying device for an armored temperature sensor according to claim 1, characterized in that: The clamping mechanism (5) comprises an L-shaped plate (501) and a fixed strip (505), wherein the L-shaped plate (501) is fixedly connected to the inverted L-shaped plate (6), a first electric push rod (502) is installed on a side of the L-shaped plate (501) close to the sensor entity (3), an end of the first electric push rod (502) close to the sensor entity (3) is fixedly connected to a clamping strip (503), and a first protective pad (504) is installed on a side of the clamping strip (503) close to the sensor entity (3).

4. The dehumidification and drying device for an armored temperature sensor according to claim 3, characterized in that: The fixed strip (505) is fixedly connected to the second fixed frame (10), and a second protective pad (506) is installed on a side of the fixed strip (505) close to the hot end component of the sensor entity (3). The second protective pad (506) is in contact with the hot end component of the sensor entity (3) on a side close to the first protective pad (504) and limits the hot end component of the sensor entity (3).

5. The dehumidification and drying device for an armored temperature sensor according to claim 1, characterized in that: The drying mechanism (7) comprises a group of second electric push rods (701) fixedly connected to the inner top wall of the inverted L-shaped plate (6), and the bottom ends of the group of second electric push rods (701) are fixedly connected to the first mounting strip plate (702).

6. The dehumidification and drying device for an armored temperature sensor according to claim 5, characterized in that: A group of heating rings (703) is installed on the bottom surface of the first installation strip (702), and the position of the group of heating rings (703) is located above the hot end component of the sensor entity (3).

Citation Information

Patent Citations

  • Dehumidifying and drying device for armored temperature sensor

    CN208817873U