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High-Pressure Hot Presses|Up to 2800°C & 0.99 MPa for Advanced Material Research & Processing
Product Info
This high-pressure hot press operates at up to 2800°C and 0.99 MPa, enabling advanced material research, property evaluation, and continuous processing of high-alloy and magnetic materials.
The High-Pressure Hot Press is a high-performance system designed for R\&D, new material development, and precision material processing. Operating continuously under extreme conditions—up to 2800°C and 0.99 MPa—it provides excellent stability thanks to its thick, precision-machined plates and robust press frame structure, which resists warping and deformation even in long-duration operations.
This device features a movable assembly chamber for improved safety and usability. With support for high-alloy steels, magnetic alloys, and chemical reaction research, it is a critical tool for cutting-edge research and manufacturing environments.
■ Features
・ Continuous operation at high temperature (2800°C) and high pressure (0.99 MPa)
・ Precise density control with independent cylinder system
・ Durable press frame maintains stability during long-term use
・ Prevents evaporation of alloy elements in high-temperature conditions
・ Compact roller hearth transport system saves floor space
・ Safe, operator-friendly design with movable assembly chamber
■ Specifications
・ Max Temperature: 2800°C
・ Max Pressure: 0.99 MPa
・ Press Models: Twin hot press, single hot press, box-type transformer
・ Key Functions: High-pressure processing, density control, advanced safety features
■ Applications
This system is ideal for:
・ New material development under extreme thermal and pressure conditions
・ Material property evaluation for scientific research
・ High-alloy steel and magnetic alloy processing
・ Chemical reaction studies in controlled high-pressure environments
The multifunctional high-pressure hot press significantly improves outcomes in specialized research, experimental processing, and high-spec production, combining durability, safety, and cutting-edge performance.
■ For more details, please download the PDF or contact us directly.
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