As an additive manufacturing process, 3D printing services help manufacturers to create three-dimensional objects physically based on three-dimensional digital files. The 3D printers create the consumer or industrial product by depositing thin layers of materials successfully according to the CAD/CAM-based design diagram. Hence, the 3D printers produce consumer and industrial products exactly when three important components of 3D printing – hardware, software and material – work in sync.
However, the 3D printing process and materials vary according to types of 3D printing technology. Each 3D printing technology makes the 3D printer produce the three-dimensional objects in a specific way and using specific materials. It is always important for manufacturers to choose the 3D printing technology and materials according to the precise nature and needs of the 3D-printed object or product. Many manufacturers avail 3D printing services to create three-dimensional objects without investing in 3D printers.
Aurum3D has expertise and capability to deliver 3D printed consumer and industrial products using commonly use 3D printing technologies and materials. We customize 3D printing services according to the precise needs of the model, prototype, or product by allowing clients to choose from a slew of 3D printing services according to their precise needs.
The dedicated and in-house team at Aurum3D believes in improving the three-dimensional product’s quality and usability by focusing on important phases in the 3D printing process – designing (customization), manufacturing, fabrication, verification and post processing. The team at Aurum3D has already created a wide variety of consumer and industrial products using commonly used 3D printing technologies like FDM, SLS, and SLA.
The engineers and manufacturers these days invest in 3D printers or avail 3D printing services to create a wide range of three-dimensional objects. But the use cases of 3D printing technology differ across enterprises and sectors. For instance, the automotive industry these days use 3D printing technology to design innovative cars, customize car designs, create complex parts, and speed up tooling styles. At the same time, the healthcare industry has been using 3D printing technology to produce medical devices and replacement organs with complex geometric designs.
Aurum3D uses Fused Deposition Modeling (FDM) technology to create three-dimensional objects by depositing thermoplastic filament layer by layer from bottom up. FDM is hugely popular among manufacturers as a cost-efficient 3D printing technology. In addition to reducing 3D printing cost, FDM enables manufacturers to create consumer and industrial products using a versatile material like production-grade thermoplastics. The chemical, thermal, and mechanical attributes of thermoplastics helps manufacturers to get high quality 3D-printed items.
Aurum uses Selective Laser Sintering (SLS) technology to produce solid three-dimensional objects by sintering powdered material using a high power laser. The high power laser fuse finds particles of plastic, glass, or ceramic tightly and seamlessly. The fusion makes SLS create three-dimensional items which are durable. Many manufacturers opt for SLS when they have to produce functional parts using high quality material in small quantities. The manufacturers can easily customize or extend the functional parts by making changes to the digital file or model.
Despite being the most mature 3D printing technology, Stereolithography (SLA) is still used widely by manufacturers and engineers. Aurum3D uses SLA technology to produce three-dimensional items using a photochemical process. The photochemical process forms layers of material by delivering ultraviolet (UV) laser to photopolymer resin. Many manufacturers these days opt for SLS to speed up production and delivery of functional parts. Its effectiveness in producing accurate 3D models makes SLS one of the widely used 3D printing technologies in the medical field.
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