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Manufacturing Technology Insights | Wednesday, February 12, 2020
Additive manufacturing can be employed in various sectors and applications, from prototyping to fine-tuning rocket engines.
Fremont, CA: Additive manufacturing, alternatively referred to as 3D printing, is a process for generating a three-dimensional object from a digital 3D or CAD model. As hinted by the name, additive manufacturing is a process that involves layering materials to create an object. Metal powders, plastics, and ceramics are all examples of these materials. Additive manufacturing can supplement and completely replace traditional methods of object creation like machining, cutting, turning, shaping, and milling. The additive manufacturing process begins with the design of an object using CAD (Computer-Aided Design) software or by scanning the thing to be printed. The software can convert the scan to a precise framework that the 3D printing machine can work within layer by layer.
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Here are some of the topmost advantages of additive manufacturing:
Reduced development cost
Advanced manufacturing technology has a reputation of being fairly expensive due to its initial investment; nevertheless, the long-term cost savings associated with lower development expenses result in financial savings. One of the main benefits of 3D printing is the reduction in labor costs. Apart from post-processing, the majority of printers are self-contained and require little operator intervention. As a result, labor costs connected with additive manufacturing are negligible in comparison to traditional manufacturing techniques, which frequently require highly qualified operators. Additionally, additive manufacturing is cost-competitive with conventional production at low volume.
Lowered product waste
By creating drafts in a computer program and then printing them, the time required to develop and produce new designs is significantly reduced with less waste; this digital-to-digital process eliminates the additional intermediate steps associated with traditional prototyping, which can result in material waste. This reduction can also result in significant cost savings, depending on the material utilized. In general, additive manufacturing enables a more effective and efficient design process that results in less waste and lower costs.
Advanced prototyping
Manufacturers can design and manufacture a prototype on a 3D printer in hours, not weeks, using additive manufacturing. Rather than designing for manufacture, manufacturers can now design for usefulness and use. Additionally, components can be manufactured to intricate customer specifications; this is a game-changer for prototyping. Additive manufacturing enables rapid prototyping of new products and the production of parts to fill a specific market niche, which may result in the production of high-profit margin products. The overall production process is reduced further when additive manufacturing is used from start to finish.
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