3D modeling software has become essential. It’s a good way to get a detailed visualization of projects for clients. You can use a lot of different materials and textures. It further allows a photorealistic rendering. Using software gives good solutions. You can edit, do and re-do models to match client expectations faster.
Through CAD, the designer is able to import real imagery from a satellite view.
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2D plans are used to create 3D designs. The worst part would be having to draw these by hand especially when there are many revisions. A look at 3D models from different angles is being studied before showcasing the draft.
CAD made the revisions easier and quicker. The production speed and turnaround time of the drafting process are impressive. The software also made industries achieve higher degrees of accuracy in their designs.
With CAD, architects and engineers may offer internal object placement to their clients. They could easily show the interior of a structure. It also lets them render 3D models and previews of projects.
Over the years, CAD has proven to be of great advantage.
Scope of errors from architects and engineers are much lower compared to using the traditional way of drawing. Files are easily edited and printed whenever required. Parts of the drawing can also be mass-produced for future uses. CAD templates save time by providing all information needed. Lastly, CAD is more accurate for it provides a mini version of the complete structure.
Architects and engineers could now focus on other things such as what materials are more stable for the structure. They could work on the safety measures needed before and after construction. They have less to worry about as CAD ensures the accuracy of all information.
With all these advantages, the finished product would be able to meet the expectations of its stability as a well-structured building.
Another feature is the animation CAD offers. It adds life and color to the prototypes, making them fun and interactive for virtual tours.
Used for creating:
These are being printed in a layer-by-layer fashion using photochemical processes. The light causes chemical monomers and oligomers to cross-link together to form polymers. Those polymers then make up the body of a three-dimensional solid. Focuses on ultraviolet (UV) laser onto a vat of photopolymer resin. With the help of CAM or CAD software, the UV laser is being used. A pre-programmed design or shape is then drawn on the surface of a photopolymer vat.
Extrusion of thermoplastic material is easily the most common process. The process works by melting plastic filament. It is being deposited via a heated extruder. One layer at a time is being printed onto a platform according to the 3D data supplied to the printer. Each layer then hardens. Lastly, it bonds to the previous layer. This process requires support structures for any applications. Breakaway support materials are also possible. These are then removed by manually snapping them off the part. The process can be slow for some geometries. Layer-to-layer adhesion can also be a problem. But post-processing using Acetone can resolve these issues.
Similar process to SLA. It also works with photopolymers. One advantage of DLP over SLA is that only a shallow vat of resin is being required for the process. Meanwhile, the difference is the light source. DLP uses a more conventional light source. Examples are:
Arc lamp with a liquid crystal display panel
Deformable mirror device (DMD)
It is then applied to the entire surface of the vat of photopolymer resin in a single pass.
To give you the best output, we use quality equipment. Softwares and programs are being trusted by other companies in the industry.
3D2GO is not only for personalized entertainment purposes of 3D printing. We have also partnered with professionals and offered our end-to-end 3D printing service.
Get in touch with us by sending us files in .obj or .stil format in our email address management@my3d.com.ph. You can also reach us through our Facebook and Instagram pages today!