Description
The split furnace chamber design facilitates rapid sample handling, making loading, unloading, and monitoring processes much more efficient. This innovative feature enhances operational flexibility, allowing users to swiftly access the furnace chamber without compromising the system's overall performance. Additionally, the design simplifies the observation of samples, ensuring accurate and convenient monitoring throughout the experimental procedure.
The standard configuration features a stainless steel vacuum seal flange, complete with a valve and pressure gauge. This setup ensures reliable and efficient vacuum sealing, providing accurate pressure monitoring and control. The high-quality stainless steel construction enhances durability and resistance to various operating conditions, making it ideal for precise and demanding applications.
The microprocessor-based autotuning PID control, featuring 50-segment heating programs, facilitates intricate and advanced procedures. This sophisticated control system ensures precise temperature regulation and adaptability, allowing for complex thermal processes to be executed seamlessly. The autotuning capability optimizes performance by automatically adjusting PID parameters for optimal temperature control.
The system supports multiple atmospheric treatments within a single cycle, such as burning off binders in air, followed by sintering components in a rough vacuum or inert gas environment. This versatile capability allows for comprehensive processing in one continuous operation, enhancing efficiency and flexibility in material treatment.
The furnace is equipped with a built-in computer interface, allowing for seamless integration with external systems for enhanced data management and control. This feature enables real-time monitoring, remote operation, and easy access to detailed operational data.
The S-type thermocouple, known for its durability and extended lifespan, ensures precise and reliable temperature measurements. Its robust design is ideal for high-temperature applications, providing accurate data over extended periods.
Options
The SCR (Silicon-Controlled Rectifier) regulates current output, effectively controlling power levels to ensure they remain within safe limits as dictated by the control logic. This enhances the protection of the system by preventing overcurrent situations and ensuring stable operation.
The touchscreen temperature controller offers a user-friendly interface for monitoring temperature curves, tracking real-time data, reviewing historical records, and generating detailed reports.
The temperature controller features USB interfaces for seamless communication and data transfer.
The system includes a flange ring, which facilitates the vertical suspension of samples into the tube, making it ideal for sintering processes.
An optional vacuum pump and oil mist filtration system are available to boost the efficiency of the vacuuming process.
A float flowmeter is a device used to measure the flow rate of a liquid or gas in a pipe. It operates on the principle of buoyancy: as the flow rate increases, the float rises in the metering tube. The position of the float is then read off a scale to determine the flow rate.
Safety
Overheat Protection: The furnace is designed with an automatic shutdown feature that activates if the temperature surpasses predefined limits or if a thermocouple failure is detected, ensuring safe operation at all times.
Overload Protection: The system is designed to automatically disconnect the circuit if the current exceeds the rated value, protecting against overheating and potential damage to the equipment.
Short Circuit Protection: In the event of a short circuit, the system swiftly disconnects the power to protect both the equipment and the wiring.
Power Failure Protection: Upon restoration of power, the furnace automatically resumes operation to ensure uninterrupted processing.
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