Our Services

Schedule a consultation with our experienced design team to explore innovative solutions tailored to your unique needs. Click below to book an appointment and take the first step toward elevating your design project.

3D laser Scanning

At Alchemy Yield, we utilise the power of cutting-edge 3D scanning technology to infuse precision and efficiency into every project. Our state-of-the-art 3D scanning services capture high-resolution point cloud data, which we expertly craft into detailed 3D models through specialist software. The digital representation reflects real-world conditions, streamlining reverse engineering and design validation by ensuring every element is measured and modelled to exact specifications.

The rapid and precise nature of our scanning process significantly reduces the time and cost associated with traditional measurement methods. By providing immediate, detailed feedback on spatial relationships and dimensions, we enable swift iteration and optimisation of design concepts. this agile, data-driven approach not only fosters innovation but minimises design errors, ensuring that each product benefits from reliable, high-quality final designs

Quicksurface mesh Processing

Quicksurface streamlines scan data processing workflows as purpose-built reverse engineering software, offering the most effective way to transform raw data into functional CAD models.

By translating real-world legacy products into precise digital representations, it empowers engineers to preserve original design integrity while opening the door to innovate enhancements. This seamless conversion process not only modernises existing designs but also accelerates the evolution of products, ensuring that every model is primed for future advancements.

Parametric modelling

Our parametric modelling process empowers you to design with flexibility and precision. By leveraging advanced parametric design principles, we create models where every dimension, feature, and constraint is intelligently linked. This means that a change to one parameter automatically updates the entire design, ensuring consistency and saving time during iterative development. Ideal for rapid prototyping and design optimisation, our service accelerates project timelines, allowing you to innovate with confidence and efficiency.

Integrating the latest in additive manufacturing with conventual CNC machining creates a powerful synergy for developing functional prototypes and production-ready products. Additive manufacturing allows for rapid fabrication of complex geometries and customised components that can be quickly iterated upon, significantly reducing lead times during the prototyping phase. Meanwhile, CNC machining delivers precision and reliability, ensuring that critical components meet strict quality standards and all aspects of the design criteria giving the best outcome in the final product possible.

By combining these technologies, companies can benefit from the flexibility of 3D printing to explore innovative designs and the robust capabilities of CNC machining for high-tolerance parts. This hybrid approach not only accelerates the development process but also minimises cost and waste materials, making it an ideal strategy for industries looking to innovate while maintaining product efficiency and production reliability.

Simulation

Prototyping and Production

Using the simulation space in the product development process helps allow engineers to test and optimise designs before manufacturing, reducing costs and development time. By simulating real-world conditions such as stress strain, thermal performance, fluid dynamics, and motion, designers can identify potential failures early, to adapt and overcome ensuring products meet performance and safety requirements. This approach minimises the need for physical prototypes, streamlining the iterative process and enhancing overall efficiency.

Simulations depend on the accuracy of the input data and the skill to interpret results when effectively integrated, simulations within CAD improve product reliability, innovation and compliance with industry standards, making it a critical tool in modern engineering and manufacturing.

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