Protection device of temperature detector

By adopting a multi-segment assembled probe structure and storage protection design, the problem of fixed probe length in traditional methods is solved, enabling flexible assembly and convenient maintenance, reducing the risk of damage and maintenance costs, and improving the versatility and reliability of the temperature detector.

CN224262641UActive Publication Date: 2026-05-19DALIAN NUOHAO LIANHENG ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DALIAN NUOHAO LIANHENG ELECTRONIC TECH CO LTD
Filing Date
2025-03-17
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional insertion-type temperature detectors have a fixed probe length, which cannot meet the diverse length requirements of different application scenarios. They are also prone to damage during transportation and storage due to excessive length, making maintenance inconvenient and costly.

Method used

It adopts a multi-segment assembled probe structure, including a connecting segment, an extension segment, and a probe segment. The design is detachable through threaded connections and is equipped with a storage and protection mechanism to avoid physical damage, supporting flexible assembly and individual replacement of damaged parts.

Benefits of technology

It improves the versatility and practicality of temperature detectors, reduces usage costs and equipment management complexity, reduces the risk of component damage, simplifies maintenance processes, and extends service life.

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Abstract

The utility model relates to the technical field of temperature detection, in particular to a protection device of a temperature detector, which comprises a display, a top seat is arranged on the left side wall of the display, a base is arranged on the bottom end wall of the top seat, a fixing seat is arranged on the bottom end wall of the base, and a connecting section is arranged on the bottom end wall of the fixing seat. A first connecting seat is arranged on the top end wall of the extension section, and the first connecting seat is in threaded connection with the bottom end wall of the connecting section; a second connecting seat is arranged on the top end wall of the probe section, and the second connecting seat is in threaded connection with the bottom end wall of the extension section. According to the plug-in temperature detector protection device, a multi-section assembly type probe structure is adopted, a user can conveniently select and assemble a proper number of extension sections and probe sections according to the requirements of different application scenes, the problems that the length of a traditional integrated probe is fixed, and diversified measurement depth requirements cannot be met are effectively solved, and the plug-in temperature detector protection device is suitable for popularization and application. And the universality and the practicability of the instrument are greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of temperature detection technology, and specifically to a protection device for a temperature detector. Background Technology

[0002] Temperature detectors are essential instruments widely used in numerous fields such as industry, medicine, and scientific research. They achieve precise temperature measurement by directly contacting the object or environment being measured through an insertion probe. In industry, they are used to monitor the temperature inside furnaces, reactors, and pipelines to ensure production safety and product quality. In the medical field, they are commonly used to measure the temperature of human bodies or experimental samples. In scientific research, they provide accurate temperature data support for various experiments.

[0003] Currently, the probes of insertion temperature sensors are typically integrated, with a fixed length. However, this design presents several inconveniences and shortcomings in practical applications. First, different application scenarios often require probes of varying lengths. For example, in large industrial furnaces, longer probes may be needed to measure temperatures at different depths; while shorter probes are more suitable for temperature detection in smaller devices. Traditional integrated probes cannot meet these diverse length requirements, potentially forcing users to purchase multiple temperature sensors of different lengths, which undoubtedly increases operating costs and the complexity of equipment management.

[0004] Secondly, integrated probes are easily damaged during transportation and storage due to their length, caused by external factors such as collisions and compression. This is especially true for probes containing high-precision temperature-sensitive elements (such as thermocouples and resistance temperature detectors). Damage to these probes can lead to high repair costs and may even cause the entire temperature detector to malfunction.

[0005] Furthermore, with the development of technology and the diversification of usage needs, people have placed higher demands on the maintainability and scalability of insertion temperature sensors. When the internal temperature-sensitive element malfunctions or its performance degrades, the integrated probe structure often requires replacing the entire probe, which not only wastes resources but also is cumbersome to operate. Utility Model Content

[0006] To address the aforementioned problems, this invention provides a protective device for a temperature detector.

[0007] To achieve the above-mentioned technical objectives and effects, this utility model is implemented through the following technical solution:

[0008] A protective device for a temperature detector includes a display, a top seat on the left side wall of the display, a base on the bottom wall of the top seat, a fixing seat on the bottom wall of the base, and a connecting section on the bottom wall of the fixing seat.

[0009] The extension section has a connecting seat on its top wall, and the connecting seat is threaded to the bottom wall of the extension section.

[0010] The probe section has a connecting seat two on its top wall, and the connecting seat two is threaded to the bottom wall of the extension section.

[0011] A storage and protection mechanism is threadedly connected to the outer wall of the fixed base.

[0012] Furthermore, the storage and protection mechanism includes a cylinder with a cap threadedly locked to the top wall of the cylinder, a round seat interference fit to the outer wall of the cylinder, a handle between the left side walls of the round seat, and a connecting cylinder through a connecting block on the right side wall of the round seat, and the connecting cylinder is threadedly connected to the outer wall of the fixed seat.

[0013] Furthermore, the connecting section, extension section, and probe section are all hollow structures.

[0014] Furthermore, the probe segment is equipped with a wireless temperature-sensitive element.

[0015] The beneficial effects of this utility model are:

[0016] The insertion-type temperature detector protection device of this utility model adopts a multi-segment assembled probe structure. Users can conveniently select and assemble an appropriate number of extension segments and probe segments according to the needs of different application scenarios. This effectively solves the problem that the traditional integrated probe has a fixed length and cannot meet the diverse measurement depth requirements. It greatly improves the versatility and practicality of the instrument and reduces the high operating costs and complex equipment management difficulties caused by the need to equip multiple temperature detectors of different lengths.

[0017] By housing the multi-segment assembled probes within a specially designed cylinder and connecting block, external damage such as collisions and compression, which are easily caused by excessive probe length, is effectively avoided during transportation and storage. This protection mechanism minimizes the risk of component damage due to physical damage, thereby reducing repair costs and ensuring that the entire temperature detector is always in good working order. This strongly guarantees the stability and reliability of the instrument and extends its service life.

[0018] With a multi-segment assembled probe structure, when one of the extension sections or probe sections is damaged or its performance degrades, only the damaged part needs to be disassembled and replaced. Unlike traditional integrated probes, which require replacing the entire probe, this design is simple and easy to implement. This not only greatly simplifies the maintenance process and reduces maintenance time and labor costs, but also significantly improves resource utilization. It avoids the waste of resources caused by discarding the entire probe due to a partial failure, fully demonstrating the superior advantages of this protection device in terms of maintainability and scalability. It meets the requirements of modern technological development for the efficient use and sustainability of instruments and equipment. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the main body unfolded structure of this utility model.

[0022] The attached diagram lists the components represented by each number as follows:

[0023] 1. Monitor, 2. Top mount, 3. Base, 4. Fixing mount, 5. Connecting section, 6. Extension section, 7. Connecting mount one, 8. Probe section, 9. Connecting mount two, 10. Cylinder, 11. Cover, 12. Round seat, 13. Handle, 14. Connecting block, 15. Connecting cylinder. Detailed Implementation

[0024] 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 skilled in the art without creative effort are within the protection scope of the present utility model.

[0025] See Figure 1-2 As shown, a protective device for a temperature detector includes a display 1, a top seat 2 on the left side wall of the display 1, a base 3 on the bottom wall of the top seat 2, a fixing seat 4 on the bottom wall of the base 3, and a connecting section 5 on the bottom wall of the fixing seat 4.

[0026] The extension section 6 has a connecting seat 7 on its top wall, and the connecting seat 7 is threaded to the bottom wall of the connecting section 5.

[0027] The probe section 8 has a connecting seat 9 on its top wall, and the connecting seat 9 is threaded to the bottom wall of the extension section 6.

[0028] The storage and protection mechanism is threadedly connected to the outer wall of the fixed base 4.

[0029] Furthermore, the storage and protection mechanism includes a cylinder 10, a cap 11 threadedly locked on the top wall of the cylinder 10, a round seat 12 interference fit connected to the outer wall of the cylinder 10, a handle 13 provided between the left side walls of the round seat 12, and a connecting cylinder 15 provided on the right side wall of the round seat 12 through a connecting block 14, and the connecting cylinder 15 is threadedly connected to the outer wall of the fixed seat 4.

[0030] Furthermore, connecting section 5, extension section 6, and probe section 8 are all hollow structures.

[0031] Furthermore, the probe segment 8 is equipped with a wireless temperature-sensitive element.

[0032] For those skilled in the art, all electrical components and parts in this case are general standard parts or parts known to those skilled in the art. Their structures and principles can be known to those skilled in the art through technical manuals or conventional experimental methods. All models are compatible with this solution and can operate normally. All electrical components in this case are connected to their compatible power supplies through wires. According to the actual situation, a suitable controller is selected to meet the control requirements. The specific connection and control sequence should refer to the working principle below, and the electrical connection is completed by the sequential operation of each electrical component. The detailed connection method is a well-known technology in the art, and the electrical control will not be described further.

[0033] One specific application of this embodiment is:

[0034] In use, multiple extension sections 6 and probe sections 8 are placed into the cylinder 10, the cap 11 is screwed onto the top of the cylinder 10, the connecting section 5 is inserted into the connecting cylinder 15, and the fixing seat 4 is screwed onto the top of the connecting cylinder 15. The segmented probes are stored in the cylinder 10 and the connecting block 14 to protect the segmented probes. The device is then assembled into a whole for movement and carrying.

[0035] Rotate the connecting cylinder 15 off the fixed base 4 and rotate the cover 11 off the top of the cylinder 10. Take out the extension section 6 and probe section 8 inside the cylinder 10. Tighten the extension section 6 and assemble it at the bottom of the connecting section 5. Select the number of extension sections 6 to install according to the usage requirements. Tighten the probe section 8 and install it at the bottom of the extension section 6 to complete the assembly of the probe body. When a section of extension section 6 or probe section 8 is damaged, disassemble and replace it.

[0036] Of course, the above description is not intended to limit the present utility model, nor is the present utility model limited to the examples given above. Any changes, alterations, additions or substitutions made by those skilled in the art within the scope of the present utility model should be protected by the present utility model.

Claims

1. A protection device for a temperature detector, characterized by: Including display (1), The left side wall of the display (1) is provided with a top seat (2), the bottom end wall of the top seat (2) is provided with a bottom seat (3), the bottom end wall of the bottom seat (3) is provided with a fixing seat (4), the bottom end wall of the fixing seat (4) is provided with a connecting section (5); The top end wall of the extension section (6) is provided with a connecting seat one (7), and the connecting seat one (7) is threadedly connected to the bottom end wall of the connecting section (5); The top end wall of the probe section (8) is provided with a connecting seat two (9), and the connecting seat two (9) is threadedly connected to the bottom end wall of the extension section (6); The storage protection mechanism is threadedly connected to the outer wall of the fixing seat (4).

2. The protection device for a temperature detector according to claim 1, wherein: The storage protection mechanism includes a cylinder (10), the top end wall of the cylinder (10) is threadedly locked with a cover (11), the outer wall of the cylinder (10) is interference fit connected with a round seat (12), the left side wall of the round seat (12) is provided with a handle (13), the right side wall of the round seat (12) is provided with a connecting cylinder (15) through a connecting block (14), and the connecting cylinder (15) is threadedly connected to the outer wall of the fixing seat (4).

3. The protection device for a temperature detector according to claim 1, wherein: The connecting section (5), the extension section (6) and the probe section (8) are all hollow structures.

4. The protection device for a temperature detector according to claim 1, wherein: The probe section (8) is internally provided with a wireless temperature sensitive element.