Resources
Information about Rapid Fluidics is available for view or download, any questions let us know

Case Study: Revolutionizing Pneumatics via Automated Design and Additive Manufacturing
Rapid Fluidics and nureo collaborate to value-engineer a pneumatic subsystem to overcome a significant existing manufacturing bottleneck

Bridging the Gap
In microfluidics, moving from design to physical prototype has traditionally been a slow and expensive process. Through the integration of Eden Materials FLUI'DEVICE’s intuitive microfluidic design platform and Rapid Fluidics’ high-precision 3D printing service using Asiga technology, microfluidic projects now have a seamless and efficient solution for prototyping.

Design for Additive Manufacturing (DfAM)
Design for Additive Manufacturing is a design methodology focused on creating parts specifically optimized for 3D printing/additive manufacturing processes rather than just adapting designs meant for traditional machining or molding.
This document highlights some of the key design points that should be considered when designing parts for 3D printing, also considerations when specifically designing microfluidic devices.
The Evolution of 3D Printing Driving Innovation
In this blog post, CEO Paul Marshall explores changes in how additive manufacturing has been perceived and adopted to drive innovation. Included are recent case studies from Rapid Fluidics. Read it here .
System picture couresty of Bartels Mikrotechnik
Setting up the MMS System
Short video on how to set up the Modular Microfluidic System (MMS) available in our Shop
Turning a Side Hustle into a Main Hustle
30 min Podcast iwth Procurement Express , Paul Marshall joins the Gross Profit Podcast to share his experience building a thriving business in the microfluidics space. Learn how he identified a market need, secured funding through grants and angel investors, and navigated the challenges of competing with larger companies. Plus, discover how 3D printing is revolutionizing the development of medical diagnostic devices.





