![]() ![]() This also reduces inventory and labor costs. By consolidating an assembly into a singular component, you can minimize the potential and common regions of failure or leakage, increasing the overall reliability of the design. Fabricate heat exchangers in one piece.Apply new shape optimization techniques to achieve specific performance requirements, like pressure drop or flow rate, and design highly optimized structures that would be impossible to manufacture with traditional means.Construct intricate Triply Periodic Minimal Surface (TPMS) lattices, which are ideal for designing heat exchanger cores - allowing you to pack the maximum surface area into the smallest volume possible while fulfilling size, weight, performance, and manufacturability requirements.Here are some of the key benefits that additive manufacturing can offer for thermal management and heat transfer applications: ![]() These new capabilities mean you can create novel additively manufactured heat exchanger designs featuring optimized internal geometry for varying heat transfer and flow conditions. The additive manufacturing process enables you to create a range of optimized geometries to increase energy efficiency, system performance, and heat transfer. Download guide Additive manufacturing for heat transferĬombustion engine cylinder heat sink of UAV drone designed by Cobra Aero, made from AlSi10Mg, an aluminum alloy.
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