Yuantuo's titanium bar induction heating equipment utilizes advanced medium-frequency induction heating technology and is specifically designed for heating industrial pure titanium and titanium alloy bars. This equipment can rapidly and uniformly heat titanium bars to the required temperature and is widely used in the heat treatment of titanium materials in aerospace, automotive, chemical, and other high-tech fields.
Yuantuo's titanium bar induction heating equipment utilizes advanced medium-frequency induction heating technology and is specifically designed for heating industrial pure titanium and titanium alloy bars. This equipment can rapidly and uniformly heat titanium bars to the required temperature and is widely used in the heat treatment of titanium materials in aerospace, automotive, chemical, and other high-tech fields. Yuantuo's induction heating solution integrates efficient heating, precise temperature control, and an automated control system, capable of meeting the heating requirements of various titanium bar billets. Applications Yuantuo's titanium billet induction heating equipment is suitable for the heat treatment of various titanium materials, including: ● Industrial pure titanium billets and titanium alloy billets: Widely used in the production of titanium alloy materials in aerospace, military, chemical, and automotive fields. ● High-end manufacturing: Suitable for the heat treatment of high-precision, high-strength titanium materials, improving the mechanical properties and surface quality of titanium billets.
Product Feature
Heating and Production Process Titanium Rod Heating: Titanium rods are uniformly heated to the required temperature using a medium-frequency induction heating furnace. During the heating process, the equipment monitors and adjusts the power supply in real time to ensure uniform heating of each titanium rod, achieving optimal physical and mechanical properties. Temperature Monitoring and Regulation: The heating furnace is equipped with an infrared temperature sensor, allowing real-time monitoring of the heating temperature of each titanium rod. Feedback is relayed to the PLC system to ensure temperature stability and uniformity. The equipment can also generate temperature curves for traceability and analysis as needed. Automated Discharge and Cooling: After heating, the titanium rods are automatically fed into a cooling zone, ensuring they are not subjected to temperature shocks during cooling, thus guaranteeing the stability of the heated titanium rods' morphology and properties.
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