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3.2mmK Thermocouple wire

Our factory primarily specializes in the production of precious metal products, including platinum rhodium lines for divisions S, R, and B, as well as a wide range of laboratory testing products such as platinum, yellow gold, and silver. Additionally, we manufacture nickel-chromium alloys, iron-chromium alloys, wires, tapes, and foils used in electric heating treatments (such as heat storage furnaces and other industrial heat treatment furnaces), automotive industry applications, glass industry applications, and various high and low-temperature measurement couple lines of K, T, N, J types.

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A “3.2mm K Thermocouple wire” refers to a type of thermocouple wire specifically designed for use with Type K thermocouples. Here’s what the specifications typically mean:

  • 3.2mm: This indicates the diameter of the thermocouple wire, which is 3.2 millimeters. This measurement represents the thickness of the wire.
  • K Thermocouple: The “K” designation refers to the type of thermocouple. Type K thermocouples are among the most commonly used thermocouple types and are composed of a positive leg made of chromel (an alloy of nickel and chromium) and a negative leg made of alumel (an alloy of nickel, aluminum, and silicon). Type K thermocouples are known for their wide temperature range, high sensitivity, and durability.

Thermocouple wires are used to measure temperature in various applications across industries such as manufacturing, aerospace, automotive, and food processing. They work based on the principle of the Seebeck effect, where a voltage is generated when two dissimilar metals are joined together at two different temperatures.

The 3.2mm diameter indicates that this thermocouple wire is relatively thick, likely suitable for applications where robustness and durability are required, such as in industrial environments.

When using thermocouple wires, it’s essential to ensure proper installation and connection to the temperature monitoring system to achieve accurate temperature measurements. Additionally, considerations such as insulation, temperature range, and environmental conditions should be taken into account to select the appropriate thermocouple wire for the specific application.

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