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Metal powder equipment Pipe forming equipment Induction heating equipment Vacuum metallurgy equipment Railway engineering equipment and automation Metal powder customization

Water atomization powder equipment

The specific process of WA water atomization powder making equipment is that the alloy (metal) is melted and refined in an induction furnace

The molten metal liquid is poured into a heat-preserving crucible and then enters the flow guide tube

A high-pressure water stream is ejected from the spray disk, impacting and breaking the metal liquid into extremely fine droplets

The metal droplets solidify and fall in the atomization tower, then fall into the powder collecting tank for collection

The collected slurry is pressed, dewatered, and finally dried and screened

Vacuum atomization powder system (VIGA method)

During the descent, the droplets solidify rapidly, overcoming segregation and resulting in a uniform structure.

Alloy materials are melted using medium-frequency induction heating in ceramic or graphite crucibles, and effectively purified through refining and clean flow technology.

Using supersonic tight-coupling and restricted atomization nozzle technology, the preparation of various alloy materials in fine powder form can be achieved.

A two-stage cyclone classification and collection system design is employed to improve the fine powder yield and reduce or eliminate the emission of fine dust.

Electrode Induction Gas Atomization Powder Production System (EIGA method)

Without contacting the water-cooled crucible and the guide tube, the material will not be contaminated. EIGA technology is suitable for the preparation of almost all active materials, refractory metal powders, etc.

Technical optimization enables effective control of technical indicators such as powder particle size distribution, sphericity, and oxygen enrichment.

Secondary cyclone classification and collection system design improves powder recovery rate and reduces or eliminates the emission of fine dust.

Imported European professional nozzle technology and production processes.

Centrifugal atomization powder equipment

Primarily used in the production of high-grade, high-tech metal powders;

High sphericity, high purity, low oxygen content, rapid solidification, uniform microstructure.

Plasma spheroidizing powder equipment

High heating temperature, fast cooling speed, and no electrode contamination;

The reactant materials are dynamically dispersed in the plasma, which can avoid the agglomeration and growth of the powder, suitable for the melting and spheroidization of the powder;

It can be used to prepare high-temperature refractory metals such as tungsten, molybdenum, Ti, W, WC, alumina, silica, and zirconia, and other compound powder materials;

The powder has a regular shape, high spheroidization rate, smooth surface, and good fluidity; the density and packing density of the powder are increased.

WGYC Series Four-Axis CNC Induction Heating Pipe Bending Machine

For hot bending of various round or square steel pipes, stainless steel pipes, and I-beams.

Suitable for projects in petroleum, chemical engineering, metallurgy, steel structures, boilers, and more.

WGY Series Medium-Frequency Induction Heating Pipe Bending Machine

Used for hot bending of various round or square steel pipes, stainless steel pipes, and I-beams.

Suitable for projects such as petroleum, chemical engineering, metallurgy, steel structures, and boilers.

WGYJ series mechanical induction heating pipe bending machine

Used for various round or square steel pipes, stainless steel pipes, and I-beam hot bending

Suitable for petroleum, chemical, metallurgical, steel structure, boiler and other engineering projects

WGYD Series Two-Axis CNC Induction Heating Bending Machine

Used for various round or square steel pipes, stainless steel pipes, and I-beam hot bending

Suitable for petroleum, chemical, metallurgical, steel structure, boiler and other projects

Medium Frequency Quenching Equipment

Fast heating speed, low oxidation and decarburization, low energy consumption.

High degree of automation, capable of fully automatic unmanned operation.

Uniform heating, high temperature control accuracy.

Provides pneumatic/hydraulic step pushing and roller continuous conveying methods for workpieces.

Motor End Ring Induction Brazing Equipment

Using transistor induction heating power supply, high heating efficiency, good brazing quality;

Suitable for integral brazing and segmented brazing;

Process support, reducing many brazing problems for users.

Meets the heating requirements of silver-based and copper-based alloy brazing materials, with strength and electrical conductivity both meeting the process requirements;

Motor Lead Induction Brazing Equipment

The motor lead induction brazing equipment uses the principle of electromagnetic induction and is widely used in heat treatment, melting metal materials, quenching, bending, etc.

Less manual labor; less burn loss; fast heating speed; stable operation.

Ultrasonic Power Supply

Fully digital control, fiber optic signal transmission. Circuit resonance mode: parallel resonance, suitable for various heating processes.

Transistor power supply efficiency can reach over 95%, saving 45% energy compared to tube power supplies and 15% compared to silicon-controlled rectifier mid-frequency power supplies, resulting in low operating costs.

Brazing equipment for generator stator and rotor coils

This complete set of equipment is used for induction heating brazing of copper electrodes in stator coils of medium and large motors or generators. The heating power supply of this product adopts an internationally advanced high-speed IGBT transistor frequency conversion device, which converts 50Hz three-phase power frequency electrical energy into single-phase high-frequency electrical energy.

Composite Pot Bottom Brazing Equipment

Electron tube GGP frequency conversion power supply, stable electrical performance, high efficiency, using local induction heating brazing, less polishing work.

The temperature of the middle and edge of the sensor can be adjusted, heating is uniform, overall electromechanical design, easy to install.

Induction Heating CVD Chemical Vapor Deposition Furnace

The induction heating CVD chemical vapor deposition furnace equipment uses medium-frequency induction heating. The equipment is vertical, with a furnace bottom lifting structure for loading and unloading materials. The temperature control system uses a Shimaden (or equivalent top-tier brand) intelligent program temperature controller. The complete set of equipment includes the furnace body, medium-frequency power supply, electrical control system, gas control system, water cooling system, and other components.

Quartz sand melting furnace

The quartz sand melting furnace is a medium-frequency electric heating vacuum furnace.

It uses electromagnetic induction to heat the graphite crucible under vacuum or a protective atmosphere.

The quartz sand placed inside the crucible is heated through heat conduction.

Degassing and melting are carried out in a vacuum or inert gas, and the quartz melt is poured into a mold using a crucible tilting device, completing the melting and casting of the quartz sand material.

Heat-conducting graphite membrane vacuum carbonization furnace

High temperature of 1600℃, temperature uniformity ≤5℃

High temperature measurement accuracy, temperature control accuracy ±1℃

The ultimate vacuum degree can be set according to process needs

The furnace atmosphere is controllable and can pass propylene/methane/high-purity nitrogen/argon

Medium-frequency induction sintering furnace for bottom-loading materials

Employ a reasonable vacuum unit to meet the process requirements of vacuum sintering.

Equipped with an intelligent temperature control instrument, it can set a 148-segment heating curve, with high temperature control accuracy and automatic programmed heating.

Using advanced medium-frequency power supply and induction coil, the output power is large, the heating speed is fast, and the temperature is high.

The atmosphere inside the furnace is controllable, the temperature is uniform, and hydrogen, nitrogen, argon, etc. can be introduced into the furnace.

Directional solidification furnace for polysilicon

High control precision, adjustable crystallization speed

Using graphite resistance or induction heating melting method, increasing solution stirring, fast melting speed

Special heating power supply is used for directional solidification insulation

With three-phase current balance, low maintenance cost

High-temperature graphitization furnace

3000℃ high temperature, temperature uniformity ≤10℃

High temperature measurement accuracy, temperature control accuracy ±1℃

The vacuum degree can be set according to the process requirements

The furnace atmosphere is controllable and can pass propylene/methane/high-purity nitrogen/argon

Medium-Frequency Brazing Equipment for Shield Machine Cutters

Using a transistor-based induction heating power supply ensures high heating efficiency and excellent quality.

Suitable for both full-brazing and segmented brazing;

To meet the heating requirements for silver-based and copper-based alloy brazing materials, both their strength and electrical conductivity fully satisfy the process needs.

Superior craftsmanship support reduces many brazing issues for users.

Spherical titanium powder

Electrode Induction Gas Atomization (EIGA) is a highly efficient process for producing high-performance titanium alloy powder.

Aluminum-based alloy powder AISi10Mg for additive manufacturing

AISi10Mg superfine spherical aluminum powder is a powder material made from aluminum ingots through a special atomization process under nitrogen protection. It is mainly used in chemical raw materials, metallic coatings, metallic pigments, solid rocket propellants, paints, fireworks, and also in the metallurgical industry.

High-purity titanium powder

Our company's titanium powder is prepared using electrode induction gas atomization (EIGA), a highly efficient process for producing high-performance titanium alloy powder.

Centrifugal casting alloy powder

The company's supplied alloy powders are produced using internationally advanced atomization/water atomization technology. They are characterized by uniform composition, low oxygen content, good sphericity, and a full range of specifications. As a result, the powders exhibit good flowability, ensuring smooth and stable powder feeding during welding and spraying, preventing clogging, beading, and nozzle sticking. The powder quality has reached an internationally advanced level, earning high praise from customers both domestically and internationally.

Laser cladding alloy powder

The company's supplied alloy powders are produced using internationally advanced atomization/water atomization technology. They are characterized by uniform composition, low oxygen content, good sphericity, and a full range of specifications. As a result, the powders exhibit good flowability, ensuring smooth and stable powder feeding during welding and spraying, preventing clogging, beading, and nozzle sticking. The powder quality has reached an internationally advanced level, earning high praise from customers both domestically and internationally.

Iron-based alloy powder

The company's supplied alloy powders are produced using internationally advanced atomization/water atomization technology. They are characterized by uniform composition, low oxygen content, good sphericity, and a full range of specifications. As a result, the powders exhibit good flowability, ensuring smooth and stable powder feeding for welding and spraying applications. There is no clogging, beading, or sticking to the gun barrel. The powder quality has reached an internationally advanced level, earning high praise from customers both domestically and internationally.
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Construction machinery

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Semiconductor Manufacturing

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Corporate Advantages

Why choose us

Outstanding technical strength and reliable quality Energy saving, environmental protection, and efficient production Customized solutions Perfect after-sales service and industry reputation High cost performance and long-term value

Outstanding technical strength and reliable quality

Core process advantagesHanhe Industry's equipment uses advanced vacuum atomization technology (such as electrode induction melting gas atomization EIGA, vacuum induction melting gas atomization VIGA, etc.), which can efficiently prepare high-purity, low-oxygen metal powders (such as titanium alloys, superalloys, aluminum alloys, etc.) to meet the stringent requirements of high-end fields such as aerospace and 3D printing on material properties.

Controllable particle size distributionThrough optimizing nozzle design and process parameters (such as atomization pressure and temperature control), the equipment can achieve precise control of powder particle size (such as micrometer or nanometer level) to meet the needs of different application scenarios.

Automation and stabilityEquipped with an intelligent control system to reduce human error and ensure the stability and repeatability of the production process.

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Technically advanced and reliable quality

Energy saving, environmental protection, and efficient production

Low energy consumption designUsing efficient induction heating and vacuum systems to reduce energy consumption and production costs.

Environmentally friendly processThe fully enclosed vacuum environment avoids metal oxidation, reduces waste and pollution emissions, and conforms to the trend of green manufacturing.

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Technically advanced and reliable quality

Customized solutions

Flexible adaptation to needsHanhe can provide customized equipment (such as production capacity from laboratory level to industrial level) according to customer needs, supporting the research and development and mass production of various metal materials (such as precious metals, rare earth materials, and special alloys).

Process optimization supportProvide full-process technical support from equipment selection to process parameter debugging to help customers quickly achieve their target products.

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Technically advanced and reliable quality

Perfect after-sales service and industry reputation

Service networkHanhe has technical support teams at home and abroad, providing quick response and equipment maintenance services to reduce downtime risks.

Rich casesThe equipment has been widely used in research institutes (such as the Chinese Academy of Sciences, university laboratories) and well-known enterprises (such as aerospace and medical device manufacturers), accumulating a large amount of mature application experience.

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Technically advanced and reliable quality

High cost performance and long-term value

Compared with imported equipment, Hanhe equipment has lower cost under the same performance, and is easy to maintain, and the comprehensive benefits of long-term use are significant.

The equipment is durable, and the modular design is easy to upgrade, adapting to future technological iteration needs.

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Technically advanced and reliable quality

About Hanhe

Metal powder atomization equipment solution provider

Do what you want, do what can create value for you
Hanhe Industry will work with you to create a better future!

Zhuzhou Hanhe Industrial Equipment Co., Ltd. is headquartered in Zhuzhou, the core area of Changzhutan National Two-type Society Experiment Zone. It is a professional high-tech enterprise engaged in the design, production and sales of pipe forming equipment, induction heating equipment and non-standard electric heating equipment, vacuum metallurgy equipment, high-performance metal powder production lines and processes.

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