Says the company: "We will open source the DIWire in the coming weeks, we will post the code, and description of how it's made with a bill of materials. Those wanting a DIWire need to wait a little bit longer. Some of the bended wire creations by the DIWire Bender. "In principal, the machine could bend other materials, including colored electrical wires, some plastics, memory metals, even light pipes to create small light forms," Pensa said. Creating a design for the DIwire requires a simple vector file (Adobe Illustrator, for example), or merely a set of commands in a text file. The printing possibilities seem endless once you see the DIWire in action, as it can bend metal wire into nearly any 2D or 3D shape. Before the next step, test the Arduino and Processing programs to make sure the gears turn and the solenoid moves as expected. Dont put the nylon gear on the Z-bend motor yet. Put the steel gear on the bender motor, and the knurled knob on the feeder motor. Why create the DIWire? "Wire models are often needed in design, whether they are for furniture (chair leg scale models), art, jewelery, housewares projects (wire baskets), or even engineering parts (custom springs)," a Pensa representative noted in a blog post. Connect the Normally Open (NO) lead to the power supply and the other side to the solenoid.
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