Ultra-thin HP Advantages
Customization;
Even Temperature Distribution; Low Thermal Resistance; Fast Thermal Response; Fast Heat Transfer; Light & Small; Easy Installation; Long Life Cycle; Functions Without Power Supply or Other External Support.
High Accuracy (+/-0.01~0.05mm),Smooth Surface,reaches Ra1.6 at once;
Stable Quality; High Efficiency; Lower Cost in Mass Production.
Ultra-thin HP Advantages
Equipped with a bell annealing furnace with Taiwan Technologies, sintering products after shrinking in a high temperature made easy. The equipment comes with a heat-resistant stainless steel bell jar, which can completely seal between the jar and heat source, isolating the workpiece and material from the outside air. During the heating, heat preservation and cooling process, the materials are protected by highly purified nitrogen and hydrogen so that the surface is bright and free from oxidation. In addition, the powerful built-in fan keeps the air flowing resulting in even temperature distribution. The temperature variance at any given point in the furnace can be controlled within ±3 °C. As a result, the annealed material can maintain stable physical and mechanical properties.
Capillary fibers will be injected to the inner wall of the material in advance. The mechanical properties of the material will alter during annealing, so the fiber and the material will combine to provide good structural support.
• Liquid Injection & Degasification
A typical heat pipe consists of a tube shell, a liquid suction core and an end cap. Set pressure in the pipe to 1.3×(10-1-10-3)Pa and then filled with appropriate amount of working liquid. The capillary porous material of the wick, which is close to the inner wall of the tube, is filled with liquid and then sealed. One end of the tube is the evaporation section (heating section), and the other end is the condensation section (cooling section). According to the application, an adiabatic section can be arranged between the two sections. When one end of the heat pipe is heated, the liquid in the core evaporates and vaporizes, and the steam flows to the other end under a small pressure difference to release heat and condense into a liquid, and the liquid flows back to the evaporation section along the porous material by capillary force. Repeated cycles transfer heat from the evaporating end to the condensing end.
Degasification Machine
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