Artificial Womb Waste System Design
Budget: $10 – $30 USD
This project revolves around refining the functional-component layout of my prototype artificial womb. The area demanding the greatest attention is the waste-management system, and every decision we make for it must integrate seamlessly with the nutrient delivery, monitoring, and control subsystems already drafted.
I will provide the current CAD files, fluid-routing diagrams, and interface specifications for the existing modules. Your task is to redesign the waste-removal loop so that it:
• fits within the spatial envelope defined in the main chassis model
• couples mechanically and digitally with the sensor suite (temperature, pH, and flow) without adding new panels or ports
• maintains sterile pathways while allowing routine cleaning through the service bay already allocated
Deliverables should include an updated 3-D model (STEP or SolidWorks native), a brief bill of materials highlighting any new fittings or valves required, and a one-page integration note that shows the connection points to the adjacent systems.
Acceptance will be based on clash-free insertion into the full assembly, alignment with the existing controller I/O map, and confirmation that routine maintenance can be performed from the single front access panel.
I will provide the current CAD files, fluid-routing diagrams, and interface specifications for the existing modules. Your task is to redesign the waste-removal loop so that it:
• fits within the spatial envelope defined in the main chassis model
• couples mechanically and digitally with the sensor suite (temperature, pH, and flow) without adding new panels or ports
• maintains sterile pathways while allowing routine cleaning through the service bay already allocated
Deliverables should include an updated 3-D model (STEP or SolidWorks native), a brief bill of materials highlighting any new fittings or valves required, and a one-page integration note that shows the connection points to the adjacent systems.
Acceptance will be based on clash-free insertion into the full assembly, alignment with the existing controller I/O map, and confirmation that routine maintenance can be performed from the single front access panel.