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Vacuum Arc Furnace
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High-Temperature Vacuum Brazing Furnace
This equipment is primarily used for vacuum brazing of stainless steel plate-fin radiators, automotive EGR systems, oil coolers, diamond tools, high-temperature alloys, plate-fin titanium alloy radiators, and other heat-resistant alloys. It is also suitable for welding dissimilar or similar refractory metals such as zirconium, niobium, molybdenum, and tantalum.
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Vacuum Heat Treatment Brazing Equipment
Vacuum Hot Pressing and Pressure Sintering Equipment
High-Vacuum Multi-Target Magnetron Sputtering Coating Equipment
1. Product Description Hard, corrosion-resistant and friction-reducing films, superconducting films, magnetic films, optical films, decorative coatings, and various surface-modified materials with specialized functionalities are prepared using high-vacuum multi-target magnetron sputtering technology. 2. Equipment Features and Advantages The anode-layer ion source enhances the ionization rate, enabling highly efficient and high-quality film deposition. Additionally, pulsed bias reverse sputtering/etching is employed to clean the substrate surface, while a bias electric field further supports the deposition process. The system is equipped with 4 sets of sputtering targets and 1 set of anode-layer ion sources.
ZG Series Vacuum Induction Melting and Casting Equipment
Electrode-Induced Inert Gas Atomization Powder-Making Equipment (QEIGA)
In a high-vacuum environment, high-purity inert gas is introduced, and the pre-fabricated alloy rod is fed into the conical induction coil inside the furnace via an external lifting and rotating mechanism for inductive heating and melting. The molten droplets are then directly injected into a specially designed atomizer nozzle system, where they are atomized into fine powder using high-pressure inert gas. This complete equipment setup offers advantages such as zero crucible contamination of materials and superior sphericity of the resulting powder. By combining electrode induction melting with inert-gas atomization technology, it is possible to produce ultra-pure metal powders.
Vacuum Induction Inert Gas Atomization Powder-Making Equipment (QVIGA)
The system employs crucible-based vacuum induction melting technology to melt and refine metal raw materials, then uses a casting mechanism to pour the molten metal into a preheated intermediate ladle. From there, the molten metal flows through a liquid guide tube into an atomization nozzle system, where it is broken into fine metal streams by high-pressure inert gas jets. The combination of molten metal and gas jets generates atomized droplets, which solidify inside an atomization tower, ultimately forming spherical fine powders. The resulting powder material boasts advantages such as low oxygen content, high fine powder recovery rate, and excellent flowability.