RedEye Australasia is Australia's largest FDM build centre, and part of Stratasys and RedEye On Demand worldwide - the world’s leading rapid prototype and parts builders. Facilitated by RapidPro in Melbourne, RedEye On Demand Australasia produces high quality thermoplastic parts and prototypes by employing the latest in Rapid Prototyping technology … Fused Deposition Modelling (FDM).

A true direct digital manufacturing solution, FDM easily converts 3D CAD files into fully operational working parts using a range of engineering thermoplastic materials, such as a 140+ degree C polyphenylsulfone and pc/iso, a material approved for medical applications (ISO 10993-1).

Managing complex part geometry with ease, FDM removes prior design limitations and tooling constraints producing high quality, fully repeatable parts in one piece. And because FDM prototypes are working parts, it streamlines product development, getting finished products to market faster. It is a tue Direct Digital Manufacturing solution with online instant quoting.

RedEye On Demand - The Factory of The Future
Showing posts with label Direct Digital Manufacturing. Show all posts
Showing posts with label Direct Digital Manufacturing. Show all posts

Thursday, June 14, 2012

FDM end use parts break land speed record

Not sure of the end use applications of FDM? Read about how durable parts can be in the following article where FDM parts were used on a custom built motorcycle to break the land speed record.


When the Discovery Channel set the task of building a custom bike in 10 days for viewing by die-hard cyclists at the annual Sturgis Motorcycle Rally for their Biker Build-Off, no-one expected that bike to be able to break the AMA Land speed record.

Klock Werks Kustom Cycles, South Dakota, took on the Biker Build off challenge and won with 'Best bike at the show'. They followed up their win by setting an AMA Land Speed Record (147 mph) at the Bonneville salt flats.

“Direct Digital Manufacturing gave us a major edge in the competition,” says Jesse Hanssen, Klock Werks mechanical engineer. With only a five-day filming schedule, one-of-a-kind components with complex geometries and strict functional requirements were created with direct digital manufacturing using polycarbonate. “FDM enabled us to build anything we could imagine. FDM put no limits on our imagination,” says Hanssen.

“Many of the parts on this bike could not have been produced by any other method in the time-frame required. FDM saved us a considerable amount of money and made a major contribution to our winning the Biker Build-Off,” says Klock Werks partner Todd Snedeker.
 
In building a custom bike for the competition, Klock Werks called upon their own line of bagger parts, purchased some components, and others were one-of-a-kind creations that could not be purchased off the shelf. Most of these unique parts had complex geometries and many also needed to also meet strict functional requirements such as a gauge pod which had to withstand cyclical vibrations without breaking.
“Normally, these parts would be produced from injection molded plastic or machined aluminum,” says Hanssen. “But it takes three to four weeks to build parts using either of these methods because they require tooling. Klock Werks had to fabricate all of the components during a five-day filming segment.” In addition, the cost of building the parts needed for the competition would have been between $15,000 and $20,000, which would have been far too expensive.

Klock Werks engineers designed the gauge pod, fork tube covers, headlight bezel, floorboard mounts, floorboard undercovers, and wheel spacer cover in SolidWorks. “FDM put no limits on our imagination,” says Hanssen. “We built all of these parts in a quarter of the cost to injection mold or cast them."
"The finished parts met all of our requirements for both geometric accuracy and mechanical strength," says Klock Werks partner Todd Snedeker. "The ability to produce fully functional parts using direct digital manufacturing methods was instrumental to our success. Many of the parts on this bike could not have been produced by any other method in the time-frame required. FDM saved us a considerable amount of money and made a major contribution to our winning the Biker Build-Off at Sturgis Week."
After winning the competition, the Klock Werks team raced the bike at the Bonneville salt flats, where they set an AMA Land Speed Record. "The WFB (World’s Fastest Bagger) proves the durability of FDM polycarbonate parts at 147 mph.," says partner Brian Klock.

Wednesday, December 28, 2011

Get the Freedom to Redesign

Direct digital manufacturing (DDM) can benefit nearly every discipline within a manufacturing organization, and sometimes changes fundamental business processes. In this series of white papers, the unrecognized benefits of DDM will be disclosed to reveal the huge potential that the process offers.

In Part 1: Freedom to Redesign, you'll learn how you can redesign or alter products while in production.

To read the entire White Paper, click here.

Monday, January 17, 2011

Learn about Direct Digital Manufacturing

The use of additive manufacturing processes is what differentiates direct digital manufacturing (DDM) from conventional manufacturing methods, and it is from these technologies that unique advantages and opportunities arise. Direct from 3D digital data, a component is manufactured - layer-by-layer - without machining, molding or casting.

Presentations are viewable in 4 separate sections:

•Part 1: What is Direct Digital Manufacturing (DDM)?

•Part 2: DDM - Advantages and Considerations

•Part 3: How to Identify Potential DDM Opportunities

•Part 4: How Companies are Using DDM

WHAT YOU WILL LEARN

•What direct digital manufacturing is

•6 major benefits of using direct digital manufacturing

•5 common traits of successful DDM implementations

•4 successful examples of DDM

WHO SHOULD WATCH:

•Manufacturing Engineers

•Operations Manager

•Design Engineers

•Tooling Designers


To view webinars, click here.

Monday, October 25, 2010

Gearheads Boycott Scrap Yards and Swap Meets

It's a problem that's all too familiar for custom automobile enthusiasts - finding replacement parts. Featured in this month’s edition of Street Thunder magazine, Eric Anderson reveals how FDM (Fused Deposition Modeling) gives you the power to print your own parts and put the fun back in restoring vintage and muscle cars.

Depending on size and complexity, most parts can be produced with FDM in less than 24hours. Because FDM uses real thermoplastics, you can create strong parts that hold up under high pressure and temperatures - perfect for automobile components. Ultimately, it means you can design a part today and have a real part shipped to you the next morning.

If you like restoring cars, but hate chasing down replacement parts - read the entire article. It'll give you the inside scoop on how you can use direct digital manufacturing services (sometimes called 3D printing services) to get parts fast.

Direct Digital Manufacturing vs. Rapid Tooling: Seven Key Considerations

Let us help you take the guesswork out of choosing the right low-volume manufacturing technique for your project. Direct Digital Manufacturing has distinct advantages and disadvantages. And so does Rapid Tooling. Find out how engineers just like you are saving time and money by choosing between these technologies.

We are definitely seeing an exciting trend towards the use of Fused Deposition Modeling (FDM) technology for production parts.

•25% of RedEye customers order parts for end-use applications

•42% of Fortus 3D Production System owners use their system for manufacturing parts (in some frequency)

•Even Dimension 3D Printers are sometimes used for manufacturing

The key advantages of using Direct Digital Manufacturing (DDM) apply only to low and sometimes mid-volume production applications. Because of this, DDM is often compared to rapid tooling which produces aluminum cores and cavities intended for injection molding.

When considering which process to use for your product, Rapid Tooling (RT) vs. Direct Digital Manufacturing; here are the 7 key things to consider:

1.Quantity - Do you need 100 or 5,000? Even if you need thousands of parts, DDM is a great way to get product to market faster using it as a bridge-to-tooling.

2.Geometry Complexity - The more complex your part, the more complex and costly it is to produce a rapid tool.

3.Material Options - With rapid tooling you're open to a broad range of materials, but with FDM it's limited material choices still offers the benefit of production-grade thermoplastics.

4.Tight Tolerances - For simple geometries RT is ideal, but FDM has shown to produce parts with accuracies up to 0.003 of an inch.

5.Revisions/Modifications - If there's any risk, especially in the early phases of product production you can't beat DDM. Because there's no tool to be modified, simply continue production with revised digital files.

6.Surface Smoothness - nothing beats an injected molded part, but if the application is an internal component or surface aesthetics don't require a perfectly smooth surface, then DDM is an excellent alternative.

7.On Demand - in a digital world, nothing beats the benefits of direct digital manufacturing. DDM allows you to produce parts directly from the digitally created 3D files.

To watch the Webinar click here