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详情描述
Vacuum Furnace Introduction
Vacuum furnaces are widely used and come in a variety of models. Here, we mainly introduce the batch-type pre-evacuated vacuum furnace.
This type of vacuum furnace is assembled from steel plates and shaped steel bars into a well-type or box-type furnace shell, with full-fiber insulation structure for the furnace lining.
Electric heating elements are made of high-temperature resistant alloy components arranged around the furnace chamber, and the furnace pot is automatically sealed and rolled from high-temperature resistant stainless steel plates.
The furnace lid is a double-water-cooled vacuum rubber-sealed stainless steel inner-insulated lid, equipped with a vacuum sealing fan as required by the process.

Application of vacuum furnace
The vacuum furnace can be used across various temperature ranges, from high temperatures up to 1200°C, to medium temperatures, and even low temperatures down to 650°C, depending on the specific process requirements.
Suitable for aerospace, nuclear power, automotive parts, precision machinery manufacturing, and other industries.
Achieve heat treatments such as light oxidation-free decarburization heating, quenching, annealing, tempering, and spheroidizing annealing for precision machine parts.
Also used in non-ferrous metal industries for copper material bright annealing, and in oil machinery industries for vacuum sintering of metal or non-metal materials and parts.


Excellent thermal insulation properties
The furnace chamber is constructed with high-grade, high-purity ceramic fiber modules, utilizing high-pressure masonry and multiple anchoring to ensure superior thermal insulation properties in the lining manufacturing process.
Energy-saving and emission-reducing technology, all-fiber structure, fast internal heating rate. Low thermal conductivity, low heat capacity, excellent corrosion resistance.

Expertly designed heating elements
The heating element is a specially made high-temperature alloy resistive tape, logically arranged around the furnace chamber in an even-temperature design.
Excellent antioxidant properties, high-temperature resistance, and high load capacity. Heat without cracking at ultra-high temperatures, maintenance-free year-round.
When applied in aerospace precision heat treatment and similar applications, combined with a high-precision temperature control system, it ensures uniformity of the furnace temperature within ±3-5°C, meeting the AMS2750E standard.

High-temperature-resistant stainless steel vacuum vessel
Imported SUS310S high-temperature resistant stainless steel vacuum vessel, X-ray inspected, no leakage.
Custom-designed sealed vacuum fan for specific applications, featuring high-pressure internal hot air circulation.

Good sealing, high vacuum level
From the furnace lid to the vacuum vessel, all exhaust and intake interfaces are tightly sealed.
Quickly achieves vacuum, reaches the specified negative pressure vacuum state, and maintains the heat treatment process for a long duration.

Multiple configurations, customizable atmosphere interfaces
Thick double water-cooled vacuum furnace lid, heat-insulating and durable, easy to customize various auxiliary equipment.
According to customer requirements, various intake and exhaust atmosphere interfaces can also be configured.

Specialty crates, enhancing production efficiency
Design and manufacture various component crates, featuring quick and easy loading and unloading.
All types of work holding tools, fixtures, and trays are available.

A variety of vacuum heat treatment furnaces to meet customer requirements
Available for vacuum heat treatment with protective atmosphere, resulting in a bright, non-oxidized finish.
Suitable for vacuum annealing, quenching, tempering, and sintering applications.
300-1200°C, various temperature ranges, highly adaptable.

Precision automated temperature control
Hankou Furnace Co. self-developed touch screen graphical interface temperature control system, high-quality power adjustment module, precise process curve control.
Automated process control ensures high-precision execution of the ideal vacuum heat treatment process curve in practical applications, with a temperature control accuracy of ±1°C.















