What are the main features of Silicon carbide heat exchange block?
Release time:
2024-12-10 00:00
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The Silicon Carbide Heat Exchange Block is an innovative solution crafted using advanced manufacturing techniques such as direct isostatic pressing and pressureless sintering. Its design enables efficient heat transfer between two mediums through the walls of longitudinal and transverse channels, with customizable pore sizes and wall thicknesses. The minimum pore diameter can be as small as 6mm, while the thinnest wall can reach 2.5mm, offering unmatched precision and flexibility.
Key Features and Benefits of Silicon Carbide Heat Exchange Block
Exceptional Precision: The pore size accuracy of the Silicon Carbide Heat Exchange Block reaches ±1.0mm, with wall thickness precision of ±0.1mm. Customized solutions with even higher precision are available to meet specific client requirements.
High Thermal Conductivity: With a thermal conductivity of 140W/m•K, the Silicon Carbide Heat Exchange Block delivers outstanding heat exchange efficiency, making it ideal for demanding industrial applications.
Superior Corrosion Resistance: This heat exchange block demonstrates remarkable durability in harsh chemical environments, including sulfuric acid, hydrochloric acid, hydrofluoric acid, and various mixed acids. Its lifespan significantly outperforms graphite and metal-based alternatives, ensuring long-term reliability and reduced maintenance costs.
Robust Sealing Design: Equipped with a sealed water circuit system and corrosion-resistant sealing materials, the Silicon Carbide Heat Exchange Block ensures leak-free operation under challenging conditions.
Rigorous Quality Control: Each unit undergoes stringent inspections, including dimensional accuracy tests, water pressure resistance up to 20 BAR, gas pressure resistance up to 15 BAR, and surface fluorescence penetration testing, ensuring high reliability and safety.
Typical Applications
The Silicon Carbide Heat Exchange Block is widely utilized in industries that demand high performance under corrosive conditions. Key applications include:
Block-type heat exchangers for strong acid and alkali systems.
Industries such as fine chemicals, pharmaceuticals, and environmental engineering.
Its ability to withstand extreme chemical environments makes it indispensable for processes where conventional materials fail.
By incorporating advanced materials and precision manufacturing, the Silicon Carbide Heat Exchange Block represents a cutting-edge solution for modern industrial challenges. Its high thermal efficiency, robust corrosion resistance, and exceptional durability make it the preferred choice for engineers and industry professionals seeking reliable and cost-effective heat exchange systems.
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