Temperature and humidity sensor mounting bracket for battery workshop
By designing the bracket backplate and clamping components, the problem of convenient installation of integrated temperature and humidity probes of different diameters in battery workshops was solved, realizing efficient and stable installation of temperature and humidity sensors. This bracket is suitable for temperature and humidity sensor installation in battery production workshops.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JI NAN TIANFANG CLEAN ROOM ENG CO LTD
- Filing Date
- 2025-06-16
- Publication Date
- 2026-05-19
AI Technical Summary
Existing technologies make it difficult to easily install integrated temperature and humidity probes of different diameters in battery production workshops, affecting the installation efficiency and stability of temperature and humidity sensors.
A clamping assembly comprising a support back plate, an outer arc-shaped clamping plate, a folded edge, and an inner arc-shaped clamping plate was designed. By utilizing the elasticity of the outer arc-shaped clamping plate and the deformation of the inner arc-shaped clamping plate, the integrated temperature and humidity probes of different diameters can be clamped and limited. The clamping force is enhanced by using an elastic plate to provide a reverse force.
It enables convenient installation and stable clamping of integrated temperature and humidity probes of different diameters, improving the installation efficiency and reliability of temperature and humidity sensors in battery workshops.
Smart Images

Figure CN224262546U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of temperature and humidity sensor mounting brackets, specifically a temperature and humidity sensor mounting bracket for use in battery workshops. Background Technology
[0002] In battery production workshops, battery materials (such as electrodes and electrolytes) are sensitive to temperature and humidity. Improper conditions may lead to material oxidation, electrolyte evaporation, or moisture penetration, affecting performance and safety. In addition, processes such as coating, drying, and encapsulation require strict environmental control. Humidity deviations may result in uneven coating or incomplete drying. Therefore, temperature and humidity sensors are key equipment to ensure battery product quality and production safety.
[0003] Temperature and humidity sensors often use integrated temperature and humidity probes as temperature measuring elements to collect temperature and humidity signals. After processing by circuits such as voltage regulation and filtering, operational amplification, nonlinear correction, V / I conversion, constant current and reverse protection, the signals are converted into current or voltage signals that are linearly related to temperature and humidity. Alternatively, they can be directly output through interfaces such as 485 or 232 via the main control chip.
[0004] Different models of temperature and humidity sensors have varying outer diameters for their integrated temperature and humidity probes. Therefore, to facilitate the installation of integrated temperature and humidity probes of different diameters in battery production workshops, a mounting bracket for temperature and humidity sensors in battery workshops is provided. Utility Model Content
[0005] The purpose of this utility model is to provide a temperature and humidity sensor mounting bracket for battery workshops, so as to facilitate the installation of integrated temperature and humidity probes of different diameters.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a temperature and humidity sensor mounting bracket for a battery workshop, comprising a bracket back plate and mounting holes symmetrically opened at the front end of the bracket back plate, wherein the mounting holes completely penetrate to the rear end of the bracket back plate, and a clamping assembly is also provided at the front end of the bracket back plate, wherein the clamping assembly is used to limit and clamp integrated temperature and humidity probes of different diameters.
[0007] The clamping assembly includes an outer arc-shaped clamping plate, a folded edge, and an inner arc-shaped clamping plate;
[0008] Two outer arc-shaped clamps are provided. The two outer arc-shaped clamps are symmetrically fixed to the front end of the support back plate with the center line of the support back plate as the center. The folded edge is fixed to the front end of the outer arc-shaped clamps. The inner arc-shaped clamp is fixed to the end of the folded edge away from the outer arc-shaped clamp and extends to the inner side of the outer arc-shaped clamp.
[0009] The annular area formed by two inner arc-shaped clamps provides space for the installation of the integrated temperature and humidity probe, while the inward elasticity of the outer and inner arc-shaped clamps provides clamping force for the integrated temperature and humidity probe.
[0010] As a further embodiment of this utility model: a reinforcing elastic plate is fixed to one end of the inner arc-shaped clamp away from the folded edge. The reinforcing elastic plate is distributed between the inner arc-shaped clamp and the outer arc-shaped clamp, and the end of the reinforcing elastic plate away from the inner arc-shaped clamp is attached to the inner side of the outer arc-shaped clamp.
[0011] As a further improvement of this utility model: there is a gap between the end of the inner arc-shaped clamp away from the folded edge and the front end face of the support back plate.
[0012] As a further improvement of this utility model: the folded edge is inclined from the front end of the outer arc-shaped clamp towards the front end of the bracket back plate, and the distance between the two folded edge ends is less than the outer diameter of the integrated temperature and humidity probe.
[0013] As a further improvement of this utility model: the bracket back plate, mounting hole, outer arc-shaped clamping plate, folded edge, inner arc-shaped clamping plate, and reinforcing elastic plate are all injection molded from the same material;
[0014] The thickness of the support back plate is greater than the thickness of the outer arc-shaped clamping plate, the thickness of the folded edge is matched with the thickness of the outer arc-shaped clamping plate, and the thicknesses of the inner arc-shaped clamping plate and the reinforcing elastic plate are matched and less than the thickness of the folded edge.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] By setting up a clamping assembly, when the integrated temperature and humidity probe is installed inside the clamping assembly, the resetting of the outer arc-shaped clamp can squeeze the integrated temperature and humidity probe with a larger diameter to move towards the back plate of the bracket, so as to ensure the wrapping of the integrated temperature and humidity probe. The integrated temperature and humidity probe with a larger diameter further squeezes the inner arc-shaped clamp to deform. The inner arc-shaped clamp can clamp integrated temperature and humidity probes with different diameters. Attached Figure Description
[0017] Figure 1 This is a structural distribution diagram of the integrated temperature and humidity probe of this utility model installed in the clamping assembly;
[0018] Figure 2 This is a structural distribution diagram of the clamping assembly and the support back plate of this utility model;
[0019] Figure 3 This is a top view of the structure of this utility model.
[0020] In the diagram: 1. Support back plate; 2. Mounting hole; 3. Clamping assembly; 301. Outer arc-shaped clamping plate; 302. Folded edge; 303. Inner arc-shaped clamping plate; 304. Reinforcing elastic plate; 4. Integrated temperature and humidity probe. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figures 1-3 In this embodiment of the present invention, a temperature and humidity sensor mounting bracket for a battery workshop includes a bracket back plate 1 and mounting holes 2 symmetrically opened at the front end of the bracket back plate 1. The mounting holes 2 completely penetrate to the rear end of the bracket back plate 1. A clamping component 3 is also provided at the front end of the bracket back plate 1. The clamping component 3 is used to limit and clamp integrated temperature and humidity probes 4 of different diameters.
[0023] The clamping assembly 3 includes an outer arc-shaped clamping plate 301, a folded edge portion 302, and an inner arc-shaped clamping plate 303;
[0024] Two outer arc-shaped clamps 301 are provided. The two outer arc-shaped clamps 301 are symmetrically fixed to the front end of the support back plate 1 with the center line of the support back plate 1 as the center. The folded edge 302 is fixed to the front end of the outer arc-shaped clamps 301. The inner arc-shaped clamp 303 is fixed to the end of the folded edge 302 away from the outer arc-shaped clamps 301 and extends to the inner side of the outer arc-shaped clamps 301.
[0025] The annular area formed by the two inner arc-shaped clamps 303 provides space for the installation of the integrated temperature and humidity probe 4, and the inward elasticity of the outer arc-shaped clamp 301 and the inner arc-shaped clamp 303 provides clamping force for the integrated temperature and humidity probe 4.
[0026] In this embodiment, it should be noted that the integrated temperature and humidity probe 4 is a common temperature and humidity sensor probe on the market.
[0027] The installation of the integrated temperature and humidity probe 4 in the battery workshop is performed as follows:
[0028] Drill holes corresponding to mounting holes 2 on the wall at a designated location in the battery workshop. Then, fix the bracket back plate 1 to the wall at the designated location using plastic expansion tubes and screws.
[0029] Then, the integrated temperature and humidity probe 4 can be installed inside the clamping assembly 3:
[0030] Place the integrated temperature and humidity probe 4 vertically and align it with the middle notch of the two folded edges 302. Then press the integrated temperature and humidity probe 4 into the notch. When the integrated temperature and humidity probe 4 comes into contact with the folded edges 302, it will compress them. This compressive force is transmitted to the outer arc-shaped clamps 301, causing the two outer arc-shaped clamps 301 to deform outward, thereby widening the notch. Finally, the integrated temperature and humidity probe 4 passes through the notch and enters the middle area of the two inner arc-shaped clamps 303.
[0031] At this time, the outer arc-shaped clamp 301 will reset under the elastic force of its own material, while the integrated temperature and humidity probe 4 will squeeze the two inner arc-shaped clamps 303, so that the distance between the two inner arc-shaped clamps 303 matches the outer diameter of the integrated temperature and humidity probe 4, thereby realizing the clamping operation of the integrated temperature and humidity probe 4, thus completing the installation of the integrated temperature and humidity probe 4.
[0032] During the above operation, the resetting of the outer arc-shaped clamp 301 can squeeze the larger diameter integrated temperature and humidity probe 4 towards the support back plate 1 to ensure the wrapping of the integrated temperature and humidity probe 4. The larger diameter integrated temperature and humidity probe 4 further squeezes the inner arc-shaped clamp 303 to deform. The inner arc-shaped clamp 303 can clamp integrated temperature and humidity probes 4 of different diameters.
[0033] Please refer to this carefully. Figures 1-3 A reinforcing elastic plate 304 is fixed to one end of the inner arc-shaped clamping plate 303 away from the folded edge 302. The reinforcing elastic plate 304 is distributed between the inner arc-shaped clamping plate 303 and the outer arc-shaped clamping plate 301, and the end of the reinforcing elastic plate 304 away from the inner arc-shaped clamping plate 303 is attached to the inner side of the outer arc-shaped clamping plate 301.
[0034] There is a gap between the end of the inner arc-shaped clamp 303 away from the folded edge 302 and the front end face of the bracket back plate 1.
[0035] In this embodiment: when the integrated temperature and humidity probe 4 deforms by pressing the inner arc-shaped clamping plate 303, the inner arc-shaped clamping plate 303 deforms by pressing the reinforcing elastic plate 304. The deformed reinforcing elastic plate 304 has a reverse force on the inner arc-shaped clamping plate 303. This reverse force is transmitted to the notches of the two inner arc-shaped clamping plates 303, thereby making the notches of the two inner arc-shaped clamping plates 303 have a larger clamping force, thereby improving the clamping force on the integrated temperature and humidity probe 4.
[0036] In addition, the space between the inner arc-shaped clamping plate 303 and the front end face of the frame back plate 1 can provide space for the deformation of the inner arc-shaped clamping plate 303.
[0037] Please refer to this carefully. Figures 1-3The folded edge 302 is inclined from the front end of the outer arc-shaped clamp 301 toward the front end of the bracket back plate 1, and the distance between the close end faces of the two folded edges 302 is less than the outer diameter of the integrated temperature and humidity probe 4.
[0038] The bracket back plate 1, mounting hole 2, outer arc-shaped clamping plate 301, folded edge 302, inner arc-shaped clamping plate 303, and reinforcing elastic plate 304 are all injection molded from the same material;
[0039] The thickness of the support back plate 1 is greater than the thickness of the outer arc-shaped clamp 301, the thickness of the folded edge 302 matches the thickness of the outer arc-shaped clamp 301, and the thicknesses of the inner arc-shaped clamp 303 and the reinforcing elastic plate 304 match and are less than the thickness of the folded edge 302.
[0040] In this embodiment: the inclined surface structure of the folded edge 302 can provide guidance for the installation of the integrated temperature and humidity probe 4, and smoothly transmit the extrusion force from the integrated temperature and humidity probe 4 to the outer arc-shaped clamp 301, so that the outer arc-shaped clamp 301 deforms into the shape.
[0041] By varying the thickness of the support back plate 1, the outer arc-shaped clamp 301, the folded edge 302, the inner arc-shaped clamp 303, and the reinforcing elastic plate 304, the support back plate 1 will not deform and will have sufficient strength. The compressive strength of the outer arc-shaped clamp 301 and the folded edge 302 is greater than that of the inner arc-shaped clamp 303 and the reinforcing elastic plate 304. When the inner arc-shaped clamp 303 and the reinforcing elastic plate 304 are deformed by the integrated temperature and humidity probe 4, the outer arc-shaped clamp 301 and the folded edge 302 can remain stable.
[0042] When the outer diameter of the integrated temperature and humidity probe 4 is large enough to completely compress and shrink the inner arc-shaped clamping plate 303 and the reinforcing elastic plate 304, and there is still an outward compressive force, the outer arc-shaped clamping plate 301 deforms to match the large outer diameter of the integrated temperature and humidity probe 4, thereby making the clamping component 3 more widely applicable.
[0043] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A temperature and humidity sensor mounting bracket for a battery workshop, comprising a bracket back plate (1) and mounting holes (2) symmetrically provided at the front end of the bracket back plate (1), the mounting holes (2) being completely penetrated to the rear end of the bracket back plate (1), characterized in that, The front end of the bracket back plate (1) is also provided with a clamping component (3), which is used to limit and clamp the temperature and humidity integrated probes (4) of different diameters. The clamping assembly (3) includes an outer arc-shaped clamping plate (301), a folded edge (302), and an inner arc-shaped clamping plate (303). Two outer arc-shaped clamps (301) are provided. The two outer arc-shaped clamps (301) are symmetrically fixed to the front end of the support back plate (1) with the center line of the support back plate (1) as the center. The folded edge (302) is fixed to the front end of the outer arc-shaped clamp (301). The inner arc-shaped clamp (303) is fixed to the end of the folded edge (302) away from the outer arc-shaped clamp (301) and extends to the inner side of the outer arc-shaped clamp (301). The annular area formed by the two inner arc-shaped clamps (303) provides space for the installation of the integrated temperature and humidity probe (4), and the inward elasticity of the outer arc-shaped clamp (301) and the inner arc-shaped clamp (303) provides clamping force for the integrated temperature and humidity probe (4).
2. The temperature and humidity sensor mounting bracket for use in a battery plant according to claim 1, wherein The inner arc-shaped clamp (303) is fixed with a reinforcing elastic plate (304) at one end away from the folded edge (302). The reinforcing elastic plate (304) is distributed between the inner arc-shaped clamp (303) and the outer arc-shaped clamp (301), and the end of the reinforcing elastic plate (304) away from the inner arc-shaped clamp (303) is attached to the inner side of the outer arc-shaped clamp (301).
3. The temperature and humidity sensor mounting bracket for use in a battery shop according to claim 1, wherein The end of the inner arc-shaped clamp (303) away from the folded edge (302) has a gap space between it and the front end face of the support back plate (1).
4. The temperature and humidity sensor mounting bracket for use in a battery shop according to claim 1, characterized by The folded edge (302) is inclined from the front end of the outer arc-shaped clamp (301) toward the front end of the bracket back plate (1), and the distance between the two folded edge (302) near the end face is less than the outer diameter of the temperature and humidity integrated probe (4).
5. The temperature and humidity sensor mounting bracket for use in a battery shop according to claim 2, characterized by The bracket back plate (1), mounting hole (2), outer arc-shaped clamp (301), folded edge (302), inner arc-shaped clamp (303), and reinforcing elastic plate (304) are all injection molded from the same material; The thickness of the support back plate (1) is greater than the thickness of the outer arc-shaped clamp (301), the thickness of the folded edge (302) matches the thickness of the outer arc-shaped clamp (301), and the thicknesses of the inner arc-shaped clamp (303) and the reinforcing elastic plate (304) match and are less than the thickness of the folded edge (302).