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SLS Rapid Prototyping Techniques: Automating Manufacturing Processes Traditional methods of building functional prototypes and visual models involved manual labor, which was not only time-consuming but also added to the overall product development costs. But with the advent of automated manufacturing technologies, such as 3D printing, the process has become much more efficient. These technologies allow designers and engineers to transform their ideas into tangible models for analysis and testing in a cost-effective manner. One highly effective method is SLS rapid prototyping, which utilizes selective laser sintering, an additive manufacturing technology. SLS is particularly beneficial for prototyping designs with complex geometries. It involves using a high-powered laser to selectively fuse powdered PA 12 (nylon) layer by layer without the need for support structures. This results in durable and accurate parts. Not only does SLS save time by minimizing or even eliminating the need for extensive post-processing, but it also offers the flexibility to reinforce the material with glass fibers, producing even stronger and more durable parts. SLS rapid prototyping technology is capable of building functional and aesthetic prototypes on a scale as large as 400 x 400 x 450 mm, making it suitable for a wide range of applications in various industries. Should you choose SLS 3D printing? SLS rapid prototyping is a great choice for building parts with complex features because it builds from powdered material. Plus, it does this without additional costs while ensuring rapid turnaround in about three to four days. As such, product development costs can be minimized, and design iterations can be faster to accelerate time to market.
Make high-quality end-use parts. Another advantage to SLS 3D printing is that it can deliver end-use parts on demand to boost throughput. The process remains scalable as it is versatile enough to make one or multiple parts and meet exact requirements. Prototyping with SLS Most manufacturers use nylon (PA 12) in SLS rapid prototyping due to its qualities. Also known as Polyamide 12, the robust and versatile material that can meet requirements for durable parts and complex assemblies. Plus, its high environmental stability allows prototypes to keep up with the demands of product testing. Some manufacturers also offer materials like carbon-fiber-filled nylon, aluminum-filled nylon, or PA 11 (polyamide 11). Not sure which material to use? The experts at HLH Proto can help you make informed choices. Connect with an SLS 3D printing specialist. SLS rapid prototyping is one of the specialties at HLH Proto, so you can count on them to deliver prototypes to your exact requirements. Visit HLHProto.com for a free project review.