![]() Users can sculpt the shape of their jewelry and control the density of the pattern. The Kinematics app allows for the creation of necklaces, bracelets and earrings. We are releasing two web-based applications: Kinematics and a simplified version called Kinematics Home which is completely free to use. The genesis of the project is discussed at length in The Making of Kinematics. This project evolved out of a collaboration with Motorola’s Advanced Technology and Projects group which challenged us to create in-person customization experiences for low cost 3D printers. Instead the hinge mechanisms are 3D printed in-place and work straight out of the machine. ![]() Though made of many distinct pieces, these designs require no assembly. Each component is rigid, but in aggregate they behave as a continuous fabric. Kinematics produces designs composed of 10’s to 1000’s of unique components that interlock to construct dynamic, mechanical structures. ![]() Kinematics is a branch of mechanics that describes the motion of objects, often described as the “geometry of motion.” We use the term Kinematics to allude to the core of the project, the use of simulation to model the movement of complex assemblages of jointed parts. We’re also releasing a free to use app for desktop 3D printers. Today we are releasing a jewelry collection and an accompanying customization app built upon our Kinematics concept. It also enables the production of intricately patterned wearables that conform flexibly to the body. Practically, Kinematics allows us to take large objects and compress them down for 3D printing through simulation. ![]() Kinematics combines computational geometry techniques with rigid body physics and customization. The system provides a way to turn any three-dimensional shape into a flexible structure using 3D printing. Kinematics is a system for 4D printing that creates complex, foldable forms composed of articulated modules. ![]()
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