Out of the speed of the arena, the accuracy of 3D printing is also a high ground for each family. The high complexity customization features of 3D printing itself place ever-increasing demands on the fine manufacturing of this technology, and smaller, more complex 3D printing patterns and structures are rapidly entering the field of vision.
The efforts of MIT Media Lab researchers have once again set a record for the challenge of 3D printing accuracy – they have recently successfully developed a method to program and 3D print a wool structure with a thickness of only 50 microns. . It is worth noting that these structures can serve as complex roles for adhesives, sensors, actuators, etc., thanks to clever design solutions.
This interesting project was shown last week at a human-computer interaction forum in San Jose, which is essentially a completely new way to print out the hair structure in 3D through a computing platform. The project name is Cilllia 3D printed micro-pillar structures for surface texture, actuation and sensing.
Project team members include several PhD students from the Tangible Media Group under the MIT Media Lab: Jifei Ou, Gershon Dublon, Chin-Yi Chen, Liang Zhou, Felix Heibeck, and Hiroshi Ishii. Jifei Ou said that this structure was born from the revelation of human hair. Human hair can have temperature, viscosity, adhesion, and even a natural "sensor" that detects nearby motion. Such a structure is programmed to be used on smart devices such as robots. Why not?
“We built a software platform that quickly defines the angle, thickness, density, and height of the hair structure. In this way, we can 3D print ultra-dense hair surfaces on a micron-density scale.â€
With such precision, it is possible to manufacture hair of any shape and print on an uneven surface. This will pave the way for many new applications, such as 3D printed dolls with lifelike hair for custom paint bristles.
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