Supermaterials and nanorobots. Materials with fantastic properties,
metal alloys and materials technology from deep space.



9 September 2020

Supermaterials obtained through nanotechnological processing represent the future of materials technology itself. Other allotropic forms, or materials such as metallic hydrogen, could have the potential to radically change the reality of civilization. Strange materials, metal alloys with unusual and even fantastic properties, sometimes exhibiting shape memory, and thin foils that cannot be broken, crushed, or cut with a sharp tool, arouse astonishment wherever humans encounter alien technology from outer space, technology originating from other intelligent civilizations in space. Metal alloys with gold that demonstrate impermeability to gamma radiation and X-rays, and shield corpuscular radiation, which have been mentioned after UFO crashes and close encounters with aliens, are nothing new. Certain facts, however, are not made public immediately after contact with alien technology and its remnants from crashed vehicles on Earth and in the sea, for reasons of maintaining public control. However, this information doesn't arise spontaneously; there are always leaks, which slowly inform public opinion. Force fields compressed into thin foils, foils made of allotropic forms of elements nowhere found on Earth, incombustible, conducting the highest currents, high-temperature superconductors, and capacitors with virtually unlimited electrical capacity?all of this is found during reconnaissance near UFO wrecks. Where does this type of technology come from? Do the UFO crews come from extra-galaxy locations or from nearby star systems? How technologically advanced are they, and how many years ahead of Earth's technology? The UFO phenomenon confirms the assumption that travel at speeds faster than the speed of light is possible; otherwise, they would never have reached our planet. If they hadn't made mistakes, no one would have ever been able to penetrate wrecks with dead crew members. Gold and its alloys are a little-explored niche of current technology for a simple reason: gold is a material, a metal scarce on Earth, which likely complicates research on gold alloys. Adding gold can improve the parameters of, for example, titanium, increasing its mechanical load-bearing capacity several times over. On the other hand, the widely known nickel-titanium alloy, which exhibits incredible shape-memory properties, is nothing new today and is, admittedly, rarely used, for example, in robotics. UFOs are equipped with shields made of a compressed force field or magnetic field. These vehicles utilize incredibly lightweight materials, likely alloys of metallic hydrogen or homogeneous metallic hydrogen. As we know, despite numerous attempts to obtain metallic hydrogen in the laboratory, it remains beyond human technological capabilities. Other materials include materials that conduct high currents without heating, materials utilizing high-temperature superconductivity, or a similar physical phenomenon. Some materials found in or near wrecks exhibited shape memory without heating or cooling, unlike the nickel-titanium alloy.It's possible that some UFOs utilize gravity shielding through the use of gravity-shielding materials. Such materials seem to be entirely fictional, but no one on Earth can predict the true capabilities of highly advanced civilizations, as there is no contact with the technological resources that could serve this purpose. It's also possible, however, that certain technologies from other worlds, where intelligent civilizations have developed, have interfered, and even are currently interfering, with Earth's technology through the actions of certain individuals and organizations. Since ancient times, there has been evidence of alien contact with humans, mysterious forces moving stone blocks, assistance in the construction of structures beyond the capabilities of the builders of the time, and other devices whose design exceeds the capabilities of the technology of that time, found in archaeological excavations worldwide. After contact with aliens from the stars, contactees sometimes possess various objects with strange properties, which they present to them as a memento of their visit. Sometimes these are fragments of UFO construction materials, or other objects made of substances not found on Earth, which often later disappear under unclear circumstances. Another application of supermaterials would be construction, namely carbon nanotubes and graphene. Carbon tubes with a wall thickness equal to one carbon atom, similar to graphene, are created by rolling graphene into a tube. Carbon tubes would make sense if long sections of the order of 10 cm could be obtained, which means they would have to be hundreds of billions of carbon atoms longitudinally in each tube. This is currently technically impossible, but will likely become achievable over time. If such nanotubes could be obtained for construction purposes, bridges and buildings of enormous strength could be constructed, including string ropes and other urban structures. It would also be possible to construct such tubes. Space elevators and buildings suspended from orbit, tens of kilometers long, would self-sustain in the air, not touching the ground. They would utilize centrifugal forces, specifically their balance with gravity. Their other end could extend beyond the Earth's atmosphere. The planet's rotation would cause forces acting on the entire building to levitate above the ground. Combined with metallic hydrogen technology, it would be possible to create so-called hanging cities, which would be sustained by atmospheric buoyancy and by being made of ultra-light material, metallic hydrogen, which could prove to be as light as air or even lighter.