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filler@godaddy.com
Signed in as:
filler@godaddy.com
Our reverse engineering service creates precise CAD models from your physical parts, making them ready for inspection, design analysis, modification, and manufacturing. This process ensures accurate digital replicas for seamless integration into your projects.
We use advanced 3D scanning technology to capture precise geometric data of your part in the form of a point cloud.
This provides the foundation for reverse engineering analysis. Our 3D scanning services are available both in-house and on-site, utilising metrology-grade equipment to deliver precise, high-quality results.
Using the scan data, we create a detailed 3D CAD model.
Throughout the process, we verify alignment between the scan and the CAD model to maintain exceptional accuracy. Depending on your project and budget, we offer both auto-surfaced and parametric modelling options.
Once the CAD model is complete, we offer cost-effective 3D printing and ensure the resulting CAD files are fully compatible with any CAD package or CNC machining. Our engineers can also produce accurate 2D drawings, adhering to BS8888 standards and applying expert GD&T practices for precise manufacturing.
Our reverse engineering services can digitally restore minor wear or damage, ensuring the resulting 3D model aligns with the original design intent.
If required, we can use our engineering expertise to design stronger replacement parts, analysing data from the worn part to identify areas for reinforcement or improvement, ensuring enhanced durability and performance.
Businesses relying on handmade products are at risk without technical drawings or digital records, as recreating lost or damaged items can be costly and time-consuming.
Reverse engineering to create precise CAD models helps safeguard your inventory and enables quicker, more efficient production. Engineering drawings also allow for cost-effective manufacturing, improving efficiency and scalability. Parametric CAD models allow for rapid iterative design improvements.
By combining 3D scanning, reverse engineering, and 3D printing, businesses can adopt an iterative design approach that speeds up development and cuts costs.
3D scanning captures precise dimensions, while reverse engineering allows for quick design modifications. With 3D printing, low-cost prototypes can be produced rapidly, enabling fast iteration and refinement. This approach accelerates the design process and ensures the final product meets all requirements before full-scale production.
Recreate obsolete or unavailable parts, optimise designs for better performance, or improve manufacturing processes for critical components.
Digitally recreate parts for aging aircraft, ensuring safety and compliance while enabling cost-effective repairs or upgrades.
Reverse engineer and refine high-performance parts to gain competitive advantages, enhance durability, and reduce weight.
Improve production efficiency by reverse engineering tools, molds, or machinery for redesign, optimisation, or replication.
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