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The technologies described herein provides for the High Temperature Carbonization (HTC) in the manufacturing of carbon fibers (CF). The conventional method for HTC is based in thermal radiation and this technology uses in a liquid medium.

A novel manufacturing method which integrates additive technologies for forming, selective reinforcement and functionalization of thermoformed components.

Molecular Beam Epitaxy is a traditional technique for the synthesis of thin film materials used in the semiconducting and microelectronics industry. In its essence, the MBE technique heats crucibles filled with ultra-pure atomic elements under ultra high vacuum condition

The intensified, modular packing device can be used to enhance mass and heat transfer for exothermic or endothermic systems, with the objective to reduce the size required of process equipment, which can lead to significant cost reduction.

We have designed, manufactured, and tested the two-layer structured cathodes with solid polymer electrolytes. The cathodes are designed to have two layers: denser "energy layer" facing the metallic current collector and high porosity/low tortuosity "power layer".

Carbon-fiber-reinforced polymers (CFRPs) play a major role in enabling highly efficient energy usage in various applications ranging from aerospace to automobiles and sporting goods, because of their lightweight and robust mechanical properties.

This invention enables utilization of multiple primary energy sources such as electricity, natural gas, hydrogen, propane, biogas in industrial and commercial heating equipment.

Using the current invention one may design composite parts with No based refractory alloys for hotter sections (needing more high temperature strength and creep resistance) while opting for relatively low cost and low gamma prime containing IN718 at zones operating below 1400F