Showing posts with label 3D design pinterest. Show all posts
Showing posts with label 3D design pinterest. Show all posts

Monday, 7 November 2016

Top 10 Benefits of 3D Printing

1. Time-to-Market: 3D printing allows ideas to develop faster than ever. Being able to 3D print a concept the same day it was designed shrinks a development process from what might have been months to a matter of days, helping companies stay one step ahead of the competition.
2. Save Money: Prototyping injection mold tools and production runs are expensive investments. The 3D printing process allows the creation of parts and/or tools through additive manufacturing at rates much lower than traditional machining.
3. Mitigate Risk: Being able to verify a design before investing in an expensive molding tool is worth its weight in 3D printed plastic, and then some. Printing a production-ready prototype builds confidence before making these large investments. It is far cheaper to 3D print a test prototype then to redesign or alter an existing mold.
4. Clear Communication: Describing the product you are going to deliver is often misinterpreted since it leaves construction up to the imagination. A conceptual picture of the product is better than the description since it is worth 1,000 words, but getting to hold the tangible product-to-be, in hand, clears all lines of communication. There is no ambiguity when holding the exact, or at least a very close, representation of the product.
5. Feedback: With a prototype you can test the market by unveiling it at a trade-show, showing it to potential buyers or investors, or raising capital by pre-selling on Indiegogo or Kickstarter. Getting buyers response to the product before it actually goes into production is a valuable way to verify the product has market potential.
6. Get the Feel: One thing you can’t get from a picture or virtual prototype on the computer screen is the way something feels in your hand. If you want to ensure the ergonomics and fit of a product are just right, you must actually hold it, use it and test it.
7. Personalize It: With standard mass-production, all parts come off the assembly line or out of the mold the same. With 3D printing, one can personalize, customize and tweak a part to uniquely fit their needs, which allows for custom fits in the medical and dental industries and helps set people apart in the fashion and jewelry world.
8. Build your Imagination: In the modern boom of digital art and design, the possibilities are not only accelerating but limitless. One can now 3D print almost anything they imagine after drawing it up virtually. In a relatively short time, an idea, concept, dream or invention can go from a simple thought to a produced part that you can hold.
9. Square Holes?… No Problem: The limitations of standard machining have constrained product design for years. With the improvements in additive manufacturing, now the possibilities are endless. Geometry that has been historically difficult or impossible to build; like holes that change direction, unrealistic overhangs, or square interior cavities, is now possible and actually simple to construct.
10. Fail Fast, Fail Cheap: Being able to test ideas quickly and discover what doesn’t work accelerates discovery leading to an ideal solution. 3D printing allows a product developer to make breakthroughs at early stages that are relatively inexpensive leading to better products and less expensive dead-ends.
For more information on 3D printing call us today 
www.3dinnovation.co.nz

Road front showroom:
74c Maleme Street
Greerton
Tauranga 3112
New Zealand

Ph: 07 929 7278
info@3dinnovation.co.nz



Wednesday, 11 May 2016

What is rapid prototyping

What is rapid prototyping? 




Rapid Prototyping (RP) can be defined as a group of techniques used to quickly fabricate a scale model of a part or assembly using three-dimensional computer aided design (CAD) data. What is commonly considered to be the first RP technique, Stereolithography, was developed by 3D Systems of Valencia, CA, USA. The company was founded in 1986, and since then, a number of different RP techniques have become available

Rapid prototyping

Rapid Prototyping has also been referred to as solid free-form manufacturing, computer automated manufacturing, and layered manufacturing. RP has obvious use as a vehicle for visualization. In addition, RP models can be used for testing, such as when an airfoil shape is put into a wind tunnel. RP models can be used to create male models for tooling, such as silicone rubber molds and investment casts. In some cases, the RP part can be the final part, but typically the RP material is not strong or accurate enough. When the RP material is suitable, highly convoluted shapes (including parts nested within parts) can be produced because of the nature of RP.




FDM (Fused deposit modelling)


Rapid Prototyping

FDM is an additives' manufacturing process where plastic filament is heated and extruded through a nozzle. This extruded plastic is precisely placed layer upon layer to create a 3 dimensional model. With a large amount of materials available such as ABS, PLA, polycarbonate, polyamides, polystyrene, lignin, among many others, there are different trade-offs between strength and temperature properties.

Prototyping with materials like PLA can be used for lost-wax (investment) castings. Reducing mould manufacturing time by creating accurate models with the tree assembly in one process, removing the need to create individual art moulds getting your product to the market quicker with reduced cost. PLA is rigid and aesthetically smooth making it great for small end parts and prototype components that must not flex.

ABS plastic has great strength and flexibility for creating working prototypes. It has good impact strength and is dimensionally very accurate.


SLA (Stereolithography)


Rapid Prototyping

SLA is a rapid prototyping process that uses a vat of liquid UV-curable photopolymer resin and a UV laser to build parts one layer at a time. SLA rapid prototyping is a great process for concept models, master patterns and tradeshow models.

Maximum dimensions available: 635mm x 635mm x 533mm


SLS (Selective laser sintering)


Rapid Prototyping

A rapid prototyping process that uses a high power laser to fuse small particles of powder to build parts one layer at a time. SLS rapid prototyping is a great process for functional testing and for low volume manufacturing.

SLS is ideal for durable, functional parts with a variety of applications. SLS is capable of producing snap fits and living hinges.

Maximum dimension available: 711mm x 482mm x 482mm.


CNC milling

Rapid Prototyping

Subtractive modelling uses CNC machines to remove material to achieve a 3 dimensional part. This process can be used for both prototyping and end part manufacture. Items can be produced in almost any material making the parts suitable for real life applications including product validations and testing. This process is more suited to the final design stages as manufacture can be expensive.





Colour InkJet printing


Rapid Prototyping

Colour InkJet Printing (CJP) is an additive manufacturing technology which involves two major components – core and binder. The Core™ material is spread in thin layers over the build platform with a roller. After each layer is spread, colour binder is selectively jetted from inkjet print heads over the core layer, which causes the core to solidify. The build platform lowers with every subsequent layer which is spread and printed, resulting in a full-colour three-dimensional model.

Whether printed with colour or in standard white, parts can be additionally clear coated to add a hard smooth coating or wax coated to smooth out the surface finish.

Maximum dimensions available: 381mm x 304mm x 254mm


for information on 3dprinting see our website 

Wednesday, 30 March 2016

3design .pinterest


3D design pinterest

We empower people to create designs that enrich their life and to share their sense of beauty with the people around them, by adding unique touches to their environment, by creating a truly personal gift for the ones they love, by taking the opportunity to crystallize ideas they can truly be proud of.


From Design to reality. Let 3Design help you along the way! Pinterest is a visual discovery tool that you can use to find ideas for all your projects




for more information click here