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Introduction:
Type B thermocouple bare wire is a commonly used thermocouple temperature measurement device, widely used in industrial fields and laboratory environments. It consists of two alloy wires of different metals and measures temperature changes through the thermoelectric effect.
The structure of type B thermocouple bare wire is relatively simple. It consists of two alloy wires of different metals. One end of the two wires is connected together to form a measurement point, and the other end is connected to a temperature measurement device, such as a temperature transmitter or data sensor. Acquisition System. Type B thermocouple bare wire usually uses platinum-rhodium alloy wire (platinum 90%, rhodium 10%) and platinum-rhodium alloy wire (platinum 94%, rhodium 6%) as thermocouple materials. This combination has high accuracy. and stability. Platinum, rhodium and their alloy materials have become a classic thermocouple material in modern industry due to their unique physical and chemical properties. They have high temperature measurement accuracy, wide range and easy use. They are widely used in metallurgy, petrochemical industry, glass fiber, It is widely used in electronic industry, aerospace and other fields. It has good thermoelectric properties and thermoelectric potential stability and high precision; it can be used to make various types of thermocouples used at 0℃-1800℃.
During the temperature measurement process, the measuring point of
the Type B thermocouple bare wire is exposed to the environment to
be measured, and temperature changes will cause a slight potential
difference between the alloy wires. There is a specific
relationship between this potential difference and temperature,
known as the thermoelectric effect. By measuring this potential
difference, the temperature of the environment can be accurately
calculated.
Type B thermocouple bare wire has many advantages, such as a wide temperature measurement range (usually from 0 degrees Celsius to 1820 degrees Celsius), higher accuracy and reliability, and faster response time. It also has good corrosion resistance and low thermocouple resistance drift, making it suitable for applications requiring high accuracy and long-term stability.
Characteristic:
Advantage:
Relevant specific parameters:
ASTM | ANSI | IEC | DIN | BS | NF | JIS | GOST |
(American Society for Testing and Materials) E 230 | (American National Standard Institute) MC 96.1 | (European Standard by the International Electrotechnical Commission 584)-1/2/3 | (Deutsche Industrie Normen) EN 60584 -1/2 | (British Standards) 4937.1041, EN 60584 - 1/2 | (Norme Française) EN 60584 -1/2 - NFC 42323 - NFC 42324 | (Japanese Industrial Standards) C 1602 - C 1610 | (Unification of the Russian Specifications) 3044 |
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Specific application areas:
Industrial field: B-type thermocouple bare wire is widely used in
high-temperature ambient temperature measurement and control in
industrial automation control, oil refining, chemical industry and
other fields.
Gas Thermal Power Station: Type B thermocouple bare wire can be
used for temperature monitoring and control in gas thermal power
stations to ensure efficient and safe operation.
Research laboratories: Type B thermocouple bare wires are widely
used in scientific research and laboratory environments for high
temperature experiments, materials research and other fields.
Q&A:
What is the temperature range of type B thermocouple bare wire?
Type B thermocouple bare wire typically has a temperature range
between 0°C and 1,820°C.
What are the advantages of type B thermocouple bare wire?
Type B thermocouple bare wire has the advantages of high
temperature performance, high precision and wide temperature range.
What applications are type B thermocouple bare wire suitable for?
Type B thermocouple bare wire is suitable for industrial fields,
gas thermal power stations, research laboratories and other
applications.