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Gyroscope vacuum brazing annealing equipment

This series of equipment is mainly used for heat treatment of gyro preparation materials in a high vacuum atmosphere. It is a device characterized by high precision, high stability, high reliability, and the ability to operate continuously for long periods. It is also suitable for bright annealing of silicon steel sheets, soft magnetic materials, copper alloys, and for bright tempering of high-speed steel, die steel, tool steel, alloy steel, and titanium alloys after quenching. Additionally, it can eliminate residual internal stresses in forged parts, welded parts, cold-pressed parts, and workpieces after quenching, preventing deformation and cracking of the workpieces. It can be widely applied in the heat treatment of various components in production-oriented enterprises.


Product Details

Device Features

This series of equipment mainly realizes heat treatment of gyroscope preparation materials in a high vacuum atmosphere. It is a device with high precision, high stability, high reliability, and capable of long-term continuous operation. It is also suitable for bright annealing of silicon steel sheets, soft magnetic materials, copper alloys, etc.; bright tempering after quenching of high-speed steel, die steel, tool steel, alloy steel, titanium alloys, etc.; eliminating residual internal stress after quenching of forgings, welded parts, cold-stamped parts, and workpieces, preventing deformation and cracking of workpieces, and can be widely used in the heat treatment of various components in production enterprises.

  Technical Performance

1. System ultimate vacuum: ≤1×10-5Pa;

2. Working vacuum: reaches 1×10-4Pa within 1 hour, can reach 3×10-4Pa in a hot state;

3. System pressure rise rate: After stopping for 12 hours, static vacuum ≤3.6 Pa;

4. Heating temperature: Heating area φ300×H400(mm), maximum heating temperature is 1000℃, working temperature is 850℃, temperature uniformity in the working area ±5℃;

5. Working area heating temperature rate range: 1℃/min~25℃/min;

6. Temperature control accuracy: Constant temperature area ±3℃, inflection point ±5.

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