We have much experience with hardware prototyping of plastic parts, metal parts and electronic parts. Electro-mechanical prototypes typically require software prototyping, which we also have much experience with.
We are confident we can deliver rapid prototyping solutions for you. The following sections outline some key phases.
Our core business is focused on projects that have a break-even point, such as resale via mass production. To learn more about this see our page on Weetangera New Product Development.
During this phase we assess your requirements to determine if we are best to design your model from scratch using 3D CAD tools, 3D animations tools, or perform a 3D scan an mock up model.
While 3D scanning sounds like an easy option, it is not perfect, and requires much cleaning up of the model. Further it produces a file with point cloud data, which then must be converted to a typical CAD file (e.g. .igs, .stp, and/or .stl). It is because of these reasons, it is generally quicker to create the design from scratch (unless the target requirement is just to reprint the scanned object without any additional design features - which is a service we're not keen on providing).
In terms of electronics - generally we design custom electronics to get the unit cost down, but in some cases we might use off-the-shelve electronics (e.g. Proof-of-concept prototype).
Plastic mechanical parts will likely be 3D printed via various methods such as Fused Deposition Modeling (FDM), Stereolithography (SLA), Selective Laser Sintering (SLS), Multi Jet Fusion (MJF) or CNC'ed in some cases. The material options are kinda endless from rigid to rubbers, such as ABS, PLA, Polycarbonate (PC), Acrylic (PMMA), PET, PEEK, Polyamide aka Nylon (PA), Glass reinforced nylon (PA66+GF), Polyurethane (PU), Polypropylene (PP), Polyvinyl Chloride (PCV), Thermoplastic Elastomer (TPE), Thermoplastic Olefin (TPO), Thermoplastic Polyurethane (TPU), PEBA 2301, Nitrile Rubber (NBR), Polytetrafluoroethylene aka Teflon (PTFE) and more. There are also various finish options such as transparent, transulent, colours, electro-plating, reflective mirror, and screen-printing graphics.
Metal mechanical parts can be 3D printed also, however in our opinion CNC is still the better option. The material options are also kinda endless such as aluminum (AL), steel, stainless steel (SS), brass, etc. There are also various finish options such as blackening, electro-plating (Chrome-plating, Nickel-chrome plating, Zinc-plating, Galvanizing), anodized (black, matte clear), and chromating conversion.
We've also made prototypes using materials such as Carbon Fiber, Fibreglass, Glass wool, DuPont, Vectran, conductive thread, and look forward to playing with Graphene one day.
Electronic parts will involve manufacturing of bare PCBs, then assembling PCB surface-mount (SMT) and through-hole (THT) components via soldering methods such as a stencils, reflow oven, IR heat lamp, hotair rework station, soldering iron, etc.
Hardware bugs are likely, and we'd hack things to make the working prototype. During this process we'll make notes on the design changes required for the next revision.
At COLETEK, we empower businesses in Weetangera, Canberra, and across the Australian Capital Territory with rapid 3D prototyping solutions. Our experienced engineers can help you transform innovative ideas into tangible products with speed and efficiency.
Our rapid 3D prototyping process starts with a deep understanding of your project requirements. We collaborate closely with you to capture your vision, identify potential challenges, and suggest feasible design solutions. Our engineers then utilize advanced 3D modeling and printing technologies to bring your ideas to life in a matter of days or weeks.
We understand the importance of iterative design and testing during the prototyping phase. Our in-house prototyping lab facilitates regular design reviews, allowing us to refine your product rapidly and efficiently. We also offer comprehensive testing services to ensure your prototypes meet your functional and aesthetic expectations.
Beyond physical prototypes, our services include production-readiness planning, ensuring a smooth transition from development to manufacturing. We can also assist with integration planning, ensuring your prototypes seamlessly integrate with your existing systems and workflows. Our team is committed to supporting your entire product development journey, from initial concept to market launch.
Whether you need to validate design concepts, test functionality, or accelerate your time to market, COLETEK's rapid 3D prototyping solutions are tailored to meet your specific needs. Contact us today to discuss your project and discover how we can help you bring your innovative ideas to life.
This is a sample of public feedback from a broader range of client work.
We've worked with Luke and the team on and off for the past two years. We've found them very accessible and extremely thorough in their dealings. Their documentation is second to none and we’d have no hesitation recommending them on this basis alone.
Delivered excellence on time, great work and great team, thanks!
Skykraft is a Canberra based company designing and developing spacecraft for the delivery of global space-based services. Luke and the team have been very responsive with quotes and delivery of machined parts for our company. Looking forward to working with COLETEK on our space programmes.
COLETEK have been absolutely fantastic in their support and manufacture of various components for us. Our designs are always bespoke, intricate and low volume and it’s great to have an Australian company like COLETEK as a trusted and quality manufacturer for our spacecraft mechanical components and assemblies – which have been flight proven through successful mission operations. Keep up the great work!
We had the opportunity to work with Coletek on the re-work of some complex SMD PCB assemblies during 2019. The work was carried out to a very high standard and we were extremely pleased with the outcome. We would not hesitate to recommend COLETEK for any type of complex technology work requiring high accuracy and professionalism.