Product Technical Highlights
Ultra-Fast Heating: Hundreds-of-millisecond heating; single experiment cycle ≤ 30 minutes, boosting research efficiency by several times.
Precise Temperature Control: Maximum temperature 3000 °C, meeting both ultra-high-temperature and precise temperature-control requirements.
Diverse Operating Modes: Six intelligent modes, including constant current, constant temperature, multi-stage ramping, and thermal shock, flexibly adapting to various experimental scenarios.
Wide Compatibility: Suitable for powder, bulk, and flake samples; supports vacuum, atmosphere, and ambient pressure environments.
High-Speed Data Acquisition: Millisecond-level high-frequency acquisition, synchronously recording temperature–current–voltage–time data to capture every transient detail.
Application:
1.High-Temperature Material
Synthesis Preparation of ultra-high-temperature ceramics (ZrB?, HfC), carbides, nitrides, borides, and other extreme-environment materials.
2.Catalyst Research & Development
Fabrication of high-activity catalysts and supports via rapid sintering, shortening the performance optimization cycle.
3.Energy Storage Materials
Rapid heat treatment and modification for Li-ion / Na-ion battery electrode materials, enhancing energy storage efficiency.
4.Nanomaterials
Instant synthesis and annealing of quantum dots, nanowires, and nanofilm, enabling precise control of microstructure and properties.
5.Basic Scientific Research
Support for high-temperature reaction mechanisms, phase transition kinetics, non-equilibrium thermodynamics, and other cutting-edge basic research.
6.Thermal Shock Testing
Simulation of extreme temperature environments in aerospace, nuclear industry, etc., to evaluate thermal shock resistance and service life.
7.Other Extended Fields
Superconductor preparation, rapid annealing of metallic materials, sintering of ceramic matrix composites, and more.
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