
SPS
Spark Plasma Sintering System
Designed for rapid sintering of ceramics, composites, metals, and functional materials under controlled pressure and atmosphere.
Advanced Vacuum Sintering Equipment
Product finder
Start with your application requirements and narrow the Haoyue product range before sending a technical inquiry. The results are a practical starting point for engineering review.
Recommended matches

SPS
Designed for rapid sintering of ceramics, composites, metals, and functional materials under controlled pressure and atmosphere.

Hot Pressing
Combines heating, vacuum, and mechanical pressure for high density materials and demanding thermal processes.

Vacuum Furnace
A versatile thermal platform for sintering, annealing, degassing, brazing, and heat treatment processes.

CVD/CVI
Built for coating, infiltration, and high temperature deposition processes used in carbon and ceramic composites.

Gas Pressure
Integrates positive pressure dewaxing, vacuum dewaxing, vacuum sintering, partial pressure sintering, pressure sintering, atmosphere control, and cooling for high-pressure nitrogen or argon sintering.

Gas Pressure
Supports pressure atmosphere sintering for materials that require controlled gas pressure and stable thermal processing.

Custom Systems
Engineering support for non-standard chamber size, pressure, atmosphere, fixtures, automation, and process integration.

HIP
I1 is available as an I Series HIP furnace detail page with product media and technical inquiry support for configuration review.

HIP
I2 is available as an I Series HIP furnace detail page with product media and technical inquiry support for configuration review.

HIP
I3 is available as an I Series HIP furnace detail page with product media and technical inquiry support for configuration review.

HIP
I5 is available as an I Series HIP furnace detail page with product media and technical inquiry support for configuration review.

HIP
I7 is available as an I Series HIP furnace detail page with product media and technical inquiry support for configuration review.

Hot Pressing
The equipment integrates vacuum/atmosphere control, hot pressing, and high-temperature sintering into one system, and is suitable for the preparation of a wide range of high-performance materials. It can process ceramic materials such as niobium oxide, silicon carbide, boron carbide, and boron nitride, as well as graphene carbon fiber, and high-temperature alloy metal powders, enabling high-temperature pressure, sintering and densification.

Hot Pressing
This equipment integrates vacuum/atmosphere control, hot pressing, and high-temperature sintering, making it suitable for the preparation of various high-performance materials. It can process ceramic materials such as niobium oxide, silicon carbide, boron carbide, and boron nitride, as well as graphene carbon fibers and high-temperature alloy metal powders, achieving high-temperature pressure sintering and densification. It is widely used in the thermal forming of new materials such as powder metallurgy and functional ceramics. It can also perform heat treatment on powders or compacts at temperatures below the melting point of the main components, significantly enhancing material strength through inter-particle metallurgical bonding. This equipment features high process integration and can effectively meet the needs of complex sintering processes in new material research and development and production. It has important application value in many fields such as aerospace and electronic devices.

CVD/CVI
High Equipment Stability / Good Temperature Uniformity / Fast Heating Speed / High Control Accuracy / Good Safety Performance Thermal induced chemical vapor dep...

CVD/CVI
High Equipment Stability / Good Temperature Uniformity / Fast Heating Speed / High Control Accuracy / Good Safety Performance Thermal induced chemical vapor dep...

Diffusion Bonding
Diffusion welding refers to a solid-state welding method in which workpieces are pressed under high temperature without visible deformation or relative movement. This process is particularly suitable for joining dissimilar metal materials, heat-resistant alloys, ceramics, intermetallic compounds, composite materials, and other new materials. Especially for materials that are difficult to weld using fusion welding methods, diffusion welding has obvious advantages.

Diffusion Bonding
Good Temperature Uniformity / Fast Heating Speed / High Pressure Accuracy /Good Safety Performance / Fast Cooling Speed Difusion welding refers to a solid-state...

Gas Pressure
Haoyue gas pressure sintering furnaces provide high-temperature pressure sintering for silicon nitride, ceramics and advanced materials requiring stable atmosphere control.

Gas Pressure
The furnace structure of the differential pressure impregnation equipment mainly consists of the furnace body, upper heating insulation system, lower heating in...

Hot Pressing
Good Design Optimization / Temperature Uniformity / Fast Heating Speed /High Pressure Accuracy / Good Safety Performance Continuous vacuum hot pressing furnace ...

Hot Pressing
The equipment integrates vacuum/atmosphere control, hot pressing, and high-temperature sintering into one system, and is suitable for the preparation of a wide range of high-performance materials. It can process ceramic materials such as niobium oxide, silicon carbide, boron carbide, and boron nitride, as well as graphene carbon fiber, and high-temperature alloy metal powders, enabling high-temperature pressure, sintering and densification.

Hot Pressing
Haoyue graphite vacuum hot pressing furnaces combine high temperature, vacuum atmosphere and precise pressure control for dense ceramics, composites and powder metallurgy parts.

Hot Pressing
Adopting a vertical and upward opening structure: high precision for loading and unloading molds, easy to operate; Fast heating: heating rate of 20°C/minute (<1...

Hot Pressing
Adopting a vertical and upward opening structure: high precision for loading and unloading molds, easy to operate; Fast heating: heating rate of 20°C/minute (<1...

Hot Pressing
Adopting a vertical and upward opening structure: high precision for loading and unloading molds, easy to operate; Fast heating: heating rate of 20°C/minute (<1...

Hot Pressing
Adopting a vertical and upward opening structure: high precision for loading and unloading molds, easy to operate; Fast heating: heating rate of 20°C/minute (<1...

Hot Pressing
Adopting a vertical and upward opening structure: high precision for loading and unloading molds, easy to operate; Fast heating: heating rate of 20°C/minute (<1...

Hot Pressing
Adopting a vertical and upward opening structure: high precision for loading and unloading molds, easy to operate; Fast heating: heating rate of 20°C/minute (<1...

Hydrogen Furnace
Good Safety Performance / Temperature Uniformity / Fast Heating Speed /High Temperature Control Accuracy Vacuum molybdenum strip hydrogen furnace is a vacuum re...

Hydrogen Furnace
Good Safety Performance / Temperature Uniformity / Fast Heating Speed /High Temperature Control Accuracy Vacuum molybdenum strip hydrogen furnace is a vacuum re...

SPS
High Production Efficiency / High Automation Program / Good Temperature Uniformity / Fast Heating Speed / High Pressure Accuracy / Good Safety Performance The S...

SPS
Fast Heating Rate / Short Sintering Time / Controllable Organizational Structure /Energy-saving and Environmental Protection The SPS (Spark Plasma Sintering) DC...

SPS
SPS (Spark Plasma Sintering) system is one of the most advanced sintering systems in the world. It is a new type of rapid sintering technology that achieves powder sintering and densification by applying pulsed current and axial pressure between two electrodes. It features fast heating rate, short sintering time, controllable micro structure, energy saving and environmental protection. It can be used to prepare metal materials, ceramic materials, composite materials, as well as nano bulk materials, amorphous bulk materials, functionally graded materials, etc. In addition, SPS equipment also enables the manufacturing of highly special new materials, such as nano materials, functionally graded materials, composite materials, tungsten carbide, silicon nitride, silicon carbide and other hard materials, structural ceramics and functional ceramics that can be sintered without significant grain growth.

SPS
SPS (Spark Plasma Sintering) system is one of the most advanced sintering systems in the world. It is a new type of rapid sintering technology that achieves powder sintering and densification by applying pulsed current and axial pressure between two electrodes. It features fast heating rate, short sintering time, controllable micro structure, energy saving and environmental protection. It can be used to prepare metal materials, ceramic materials, composite materials, as well as nano bulk materials, amorphous bulk materials, functionally graded materials, etc. In addition, SPS equipment also enables the manufacturing of highly special new materials, such as nano materials, functionally graded materials, composite materials, tungsten carbide, silicon nitride, silicon carbide and other hard materials, structural ceramics and functional ceramics that can be sintered without significant grain growth.

SPS
SPS (Spark Plasma Sintering) system is one of the most advanced sintering systems in the world. It is a new type of rapid sintering technology that achieves powder sintering and densification by applying pulsed current and axial pressure between two electrodes. It features fast heating rate, short sintering time, controllable micro structure, energy saving and environmental protection. It can be used to prepare metal materials, ceramic materials, composite materials, as well as nano bulk materials, amorphous bulk materials, functionally graded materials, etc. In addition, SPS equipment also enables the manufacturing of highly special new materials, such as nano materials, functionally graded materials, composite materials, tungsten carbide, silicon nitride, silicon carbide and other hard materials, structural ceramics and functional ceramics that can be sintered without significant grain growth.