![]() ![]() ![]() The presented jewellery is finished with a reflective appearance, hence rendering into reality a seamless image of the virtual model. The shape is generated using computational means and is 3d printed into a positive mold that is used in a state-of-the-art silver casting technique. The Aggregate collection is born from a process based on feedback between concept, geometry and material, all of which are translated into code. Material: 925 silver – glossy finish on the exterior, satin finish on the interiorĭimension for each without the wire hook: 16x16x40 mm The ES1 earrings are designed in the computational environment by algorithmic generation and are materialized by 3d printing in resin and casted in silver. The filiform structures are generated in the virtual environment and are 3d printed into a positive mold that is used in a state-of-the-art silver casting technique. The SWIRL collection explores the jewellery adornment quality and tests the connection between parametric design and the potential of digital fabrication methods. ![]() The grip mechanism is done with a silver hook wire. Material: 925 silver – grained glossy finishĭimension for each without the wire hook: 47x17x17 mm The A6 earrings are designed in the computational environment by parametric generation and are materialized by 3d printing in resin and casted in silver. Thus, diffuse structures are obtained, which rely on transparency, gradients, overlaps and reflections to remind the form they come from. The Sequence collection translates into the physical environment the virtual algorithmic process of formal generation that is implied into the materialized jewellery. Silver-casted from 3D printed moulds, hand-finished – non-uniform glossy appearance ģd printed black ABS plastic – mat fine finish We have two types of endpieces available: Material: Transparent / coloured plexiglass combinations - 3mm thick The piece of jewellery is obtained by interlacing two volumes with a section varying from circular to elliptical, which are distinguished by the combination of different materials. You’ll then also lose the ability to log in to the associated Rhino account and thus lose access to any personal licenses within.An opulent jewellery, the L2_c pendant is algorithmically generated in the digital environment and is materialized by stringing together variable laser cut two-dimensional sections. The risk is that when you stop with TU Delft you lose access to your NetID. If you own the licenses personally then you should consider moving them to another Rhino account that uses a personal email address. What to do if I already have personal licenses in my account? When logging in, and you already have a Rhino account associated with a TU Delft (student) email address, you will be guided through the process of configuring the new login method and joining the team. Now, if you haven’t already, you can start Rhino and log in. A new Rhino account will be created and automatically added to the “TU Delft University Licenses” team. Those of you without existing Rhino accounts associated with a TU Delft email address will be prompted straightaway to log in with your NetID. This process can also be initiated from Rhino 6 or 7 by choosing to log in when asked for a license. Instead, whether you have an existing Rhino account or not, you should start by going to and entering your TU Delft email address (not your NetID). However you will not be able to request a license code if you have lost yours. Your current Rhino 6 and/or 7 license will remain valid until 1 October 2021. Same manuals are also available on the software portal of TU Delft. If you have never used Rhino and the introduction above does not ring a bell with you, then please follow the installation manuals for Rhino 6 or 7 for Windows or macOS on our manuals pages. ![]() The special TU download pages on where you entered your TU (student) email address to get a serial code for Rhino 6 or 7 do not work anymore. A change has been made in how to get a personal Rhino license with your TU (student) email address. ![]()
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