High - Temperature Vacuum Annealing Furnace
Engineered for precise heat treatment, this high - temperature vacuum annealing furnace supports soft magnetic material processing in vacuum and strong magnetic fields.
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Vectomag HTA Series furnace provides precise high-temperature magnetic field annealing with vacuum control for magnetic materials research.
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The Vectomag HTA Series High Temperature Magnetic Field Annealing Furnace is a precision system designed for advanced magnetic material research.
It enables controlled annealing processes under strong magnetic fields, high vacuum, and high temperature conditions—individually or in combination.
This system supports multiple magnet configurations, including solenoids, electromagnets, and superconducting magnets, providing flexible field strength options for different experimental needs.
It features excellent temperature uniformity, precise control, and high vacuum stability, making it ideal for studying soft magnetic materials, magnetic phase transitions, and thermally induced microstructure evolution.
| Parameter | Value |
|---|---|
| Vacuum Chamber Material | 304 Stainless Steel |
| Vacuum Acquisition System | Molecular Pump System |
| Vacuum Measurement | Digital Vacuum Gauge |
| Ultimate Vacuum (Cold State) | 5 × 10⁻⁴ Pa |
| Leak Rate | < 1 × 10⁻⁸ Pa·L/s |
| Max. Heating Temperature | 1000 °C |
| Temperature Control Accuracy | ± 1 °C |
| Cooling Mode | Natural or Inert Gas Assisted |
| Magnetic Field Options | Solenoid, Electromagnet, or Superconducting Magnet |
| Optional Atmosphere | Inert Gas Protection |
The HTA system integrates temperature, field, and vacuum controls into a unified closed-loop automation platform.
Users can directly set field values through software.
The Gaussmeter reads real-time magnetic field strength and feeds back to the controller, adjusting the constant-current power supply output automatically to maintain a stable magnetic field.
The temperature is set via software, measured by precision sensors, and stabilized through automatic control of the high-temperature furnace and heating controller.
A molecular pump system ensures high vacuum; a digital vacuum gauge continuously monitors pressure and provides feedback to the control interface.
Samples are heated under a strong (or zero) magnetic field to a target temperature, then held for a preset duration under a constant magnetic field.
Afterward, the furnace cools naturally or rapidly via inert gas injection until the sample reaches room temperature.
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