Portable real-time pipeline temperature measuring device
By designing a portable real-time pipeline temperature measurement device, the existing equipment is solved by large size and insufficient real-time performance, and the equipment is small, portable and real-time temperature measurement, improving flexibility and safety in different places.
Patent Information
- Application Number
- CN202422042277.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-22
AI Technical Summary
The existing pipeline temperature measurement equipment is large in size and complex in structure, which is not convenient for portability and rapid installation on site, and cannot achieve real-time temperature measurement, resulting in limited use in wild or space-constrained places, and the inability to respond to temperature changes in time, increasing safety risks.
A portable real-time pipeline temperature measurement device is designed, including pipeline fixing rings, anti-slip pads, temperature measurement devices and temperature display screens. It adopts a compact structural design, using a thermocouple, thermal resistor, infrared or laser thermometer for real-time temperature measurement, and is equipped with a solar-powered temperature display screen, which is removable and easy to replace.
It realizes the compact portability and real-time temperature measurement function of the equipment, improves flexibility and safety in various places, ensures that operators can timely understand pipeline temperature changes and reduce safety risks.
Smart Images

Figure CN223091399U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of temperature measurement, and particularly relates to a portable real-time pipeline temperature measuring device. Background Art
[0002] In modern industry and daily life, pipeline systems are widely used in various fields, such as petrochemical industry, energy transmission, building heating, and water supply and drainage, etc. Accurately measuring the pipeline temperature is crucial for ensuring the safe operation of the pipeline system, optimizing the process flow, and improving the energy utilization efficiency.
[0003] Currently, the traditional pipeline temperature measurement methods mainly have the following deficiencies: on the one hand, many existing temperature measurement devices are large in size and complex in structure, which are not convenient to carry and quickly install and use on-site. In some places where the temperature measurement position needs to be frequently moved or the space is limited, the use of these devices is greatly restricted. For example, in the field pipeline inspection, temporary construction sites and other environments, large temperature measurement devices are difficult to meet the actual needs.
[0004] On the other hand, some temperature measurement devices cannot achieve real-time temperature measurement, and there is a lag in data acquisition. This makes the operator unable to timely understand the change of the pipeline temperature, which may lead to the inability to quickly respond when the temperature is abnormal, increasing the potential safety risks and the possibility of production accidents.
[0005] In summary, the existing pipeline temperature measurement technologies have certain defects in terms of portability, real-time performance, etc., and there is an urgent need for a portable real-time pipeline temperature measuring device to meet the needs of accurately and real-time measuring the pipeline temperature at any time in different scenarios. Summary of the Utility Model
[0006] The purpose of the utility model is to solve the certain defects existing in the existing pipeline temperature measurement technologies in terms of portability, real-time performance and accuracy, etc., so as to meet the needs of accurately and real-time measuring the pipeline temperature at any time in different scenarios.
[0007] The technical solution adopted by the utility model to solve the above problems is as follows:
[0008] A portable real-time pipeline temperature measuring device includes a pipeline fixing ring 1, an anti-slip pad 2, a temperature measuring device 3 and a temperature display screen 4. Among them, the pipeline fixing ring 1 has a certain recoverable deformation range. The anti-slip pad 2 is fixed inside the pipeline fixing ring 1. The temperature display screen 4 is fixed on the back of the temperature measuring device 3, receives the data of the temperature measuring device 3 and displays the real-time temperature data on the display screen. The fixed end 5 of the pipeline fixing ring is connected to the temperature measuring device 3, and the movable end 6 of the pipeline fixing ring fits with the temperature measuring device 3 under the state of no external force influence.
[0009] The anti-slip mat 2 is at least one of rubber, sponge, PVC, silica gel and textiles.
[0010] The temperature measuring device 3 is at least one of a thermocouple thermometer, a resistance thermometer, an infrared thermometer and a laser thermometer.
[0011] The anti-slip mat 2 is fixed inside the pipeline fixing ring 1 by one of bonding or hot melt bonding.
[0012] The temperature display screen 4 is one of an LED tube digital display screen or a liquid crystal display screen.
[0013] A solar receiving panel is installed on the temperature display screen 4, enabling simultaneous power supply by solar energy and battery.
[0014] The temperature display screen 4 can be detached from the back of the temperature measuring device 3, facilitating operations such as battery replacement or display screen replacement.
[0015] The present utility model has the following beneficial effects compared with the prior art:
[0016] It has a compact structure design, small size, light weight, and is convenient to carry to various different workplaces. Whether it is field pipeline inspection, temporary construction sites or areas with limited space, it can easily handle, greatly improving the flexibility and convenience of temperature measurement work.
[0017] It is equipped with advanced sensing technology and data transmission system, capable of accurately measuring the pipeline temperature in real time and quickly transmitting the temperature data to the display terminal, enabling the operator to understand the change of pipeline temperature in the first time, so as to quickly respond when the temperature is abnormal, effectively reducing the probability of potential safety risks and production accidents. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a front axonometric view of a portable real-time pipeline temperature measuring device of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] DETAILED DESCRIPTION OF THE EMBODIMENT 1: In combination with Figure 1 This embodiment is described, including a pipeline fixing ring 1, an anti-slip mat 2, a temperature measuring device 3 and a temperature display screen 4. Among them, the pipeline fixing ring 1 has a certain recoverable deformation range. The anti-slip mat 2 is fixed inside the pipeline fixing ring 1. The temperature display screen 4 is fixed on the back of the temperature measuring device 3, receives the data of the temperature measuring device 3 and displays the real-time temperature data on the display screen. The fixed end 5 of the pipeline fixing ring is connected to the temperature measuring device 3, and the movable end 6 of the pipeline fixing ring fits with the temperature measuring device 3 under the state of no external force influence.
[0020] The anti-slip mat 2 is made of rubber, the temperature measuring device 3 is a thermocouple thermometer, the anti-slip mat 2 is fixed inside the pipe fixing ring 1 by bonding, and the temperature display screen 4 is an LED digital display screen.
[0021] The temperature display screen 4 can be detached from the back of the temperature measuring device 3, facilitating operations such as battery replacement or display screen replacement.
[0022] Specific Embodiment 2: In combination with Figure 1 Describe this embodiment, including a pipe fixing ring 1, an anti-slip mat 2, a temperature measuring device 3, and a temperature display screen 4. Among them, the pipe fixing ring 1 has a certain recoverable deformation range. The anti-slip mat 2 is fixed inside the pipe fixing ring 1. The temperature display screen 4 is fixed on the back of the temperature measuring device 3, receives the data of the temperature measuring device 3, and displays the real-time temperature data on the display screen. The fixed end 5 of the pipe fixing ring is connected to the temperature measuring device 3, and the movable end 6 of the pipe fixing ring fits with the temperature measuring device 3 under the state of no external force influence.
[0023] The anti-slip mat 2 is made of sponge, the temperature measuring device 3 is a resistance thermometer, the anti-slip mat 2 is fixed inside the pipe fixing ring 1 by hot melt bonding, and the temperature display screen 4 is one of the liquid crystal display screens.
[0024] A solar energy receiving board is installed on the temperature display screen 4, which can realize power supply by both solar energy and battery.
[0025] The temperature display screen 4 can be detached from the back of the temperature measuring device 3, facilitating operations such as battery replacement or display screen replacement.
[0026] Specific Embodiment 3: In combination with Figure 1 Describe this embodiment, including a pipe fixing ring 1, an anti-slip mat 2, a temperature measuring device 3, and a temperature display screen 4. Among them, the pipe fixing ring 1 has a certain recoverable deformation range. The anti-slip mat 2 is fixed inside the pipe fixing ring 1. The temperature display screen 4 is fixed on the back of the temperature measuring device 3, receives the data of the temperature measuring device 3, and displays the real-time temperature data on the display screen. The fixed end 5 of the pipe fixing ring is connected to the temperature measuring device 3, and the movable end 6 of the pipe fixing ring fits with the temperature measuring device 3 under the state of no external force influence.
[0027] The anti-slip mat 2 is made of PVC material, the temperature measuring device 3 is an infrared thermometer, the anti-slip mat 2 is fixed inside the pipe fixing ring 1 by bonding, and the temperature display screen 4 is an LED digital display screen.
[0028] The temperature display screen 4 can be detached from the back of the temperature measuring device 3, facilitating operations such as battery replacement or display screen replacement.
Claims
1. A portable real-time pipeline temperature measuring device, characterized in that: The described portable real-time pipeline temperature measuring device includes a pipeline fixing ring (1), an anti-slip pad (2), a temperature measuring device (3), and a temperature display screen (4). Among them, the pipeline fixing ring (1) has a certain recoverable deformation range. The anti-slip pad (2) is fixed inside the pipeline fixing ring (1). The temperature display screen (4) is fixed on the back of the temperature measuring device (3), receives the data of the temperature measuring device (3), and displays the real-time temperature data on the display screen. The fixed end (5) of the pipeline fixing ring is connected to the temperature measuring device (3), and the movable end (6) of the pipeline fixing ring fits with the temperature measuring device (3) under the state of no external force influence.
2. The portable real-time pipeline temperature measuring device according to claim 1, wherein: The anti-slip pad (2) is at least one of rubber, sponge, PVC, silica gel, and textiles.
3. The portable real-time pipeline temperature measuring device according to claim 1, characterized in that: The temperature measuring device (3) is at least one of a thermocouple thermometer, a resistance thermometer, an infrared thermometer, and a laser thermometer.
4. A portable real-time pipeline temperature measuring device according to claim 1, characterized in that: The fixing method of the anti-slip pad (2) inside the pipeline fixing ring (1) is one of bonding or hot melt bonding.
5. A portable real-time pipeline temperature measuring device according to claim 1, characterized in that: The temperature display screen (4) is one of an LED tube digital display screen or a liquid crystal display screen.
6. The portable real-time pipeline temperature measuring device according to claim 1, wherein: A solar receiving panel is installed on the temperature display screen (4), which can realize power supply by both solar energy and battery.
7. A portable real-time pipeline temperature measuring device according to claim 1, characterized in that: The temperature display screen (4) can be detached from the back of the temperature measuring device (3) for easy battery replacement or display screen replacement.