
Arthur Hornburg developed end-to-end cooling system CAD components for the FormulaRacingatUCDavis/FE12_CAD repository, focusing on both radiator and powertrain subsystems. He designed and modeled 3D assemblies such as radiator mounting tabs, a tube adapter, and a pressure relief valve, using CAD and SLDASM formats to ensure manufacturability and integration readiness. His approach emphasized clear commit-based documentation, enabling traceability and efficient collaboration. By improving the cooling system’s reliability and supporting rapid prototyping, Arthur demonstrated strong skills in 3D modeling, CAD design, and mechanical engineering. The work addressed integration risks and established a robust foundation for future system enhancements.

Monthly summary for 2024-11: Delivered end-to-end cooling system CAD components in FormulaRacingatUCDavis/FE12_CAD, enabling integration and prototyping. Features delivered include radiator cooling system CAD components and powertrain cooling valve components. Key commits associated with design work include 00bc9fa3a84d24ccc2b830f5d9c6213748b0a930 (Radiator Assembly and Mounting Tabs), 21c05fa00ac4c15e686c1a4cd535e4c5ecf3b53f (Tube Adapter, 0.75-0.375 inches), and 4a3a932cf3403fc1782e8f9aa8c7ebadfaf9853e (Pressure Relief Valve Components and Assembly). Impact: reduces integration risk, improves cooling reliability, and accelerates prototyping. Demonstrated CAD modeling, assembly design, and commit-based documentation for traceability and manufacturing readiness.
Monthly summary for 2024-11: Delivered end-to-end cooling system CAD components in FormulaRacingatUCDavis/FE12_CAD, enabling integration and prototyping. Features delivered include radiator cooling system CAD components and powertrain cooling valve components. Key commits associated with design work include 00bc9fa3a84d24ccc2b830f5d9c6213748b0a930 (Radiator Assembly and Mounting Tabs), 21c05fa00ac4c15e686c1a4cd535e4c5ecf3b53f (Tube Adapter, 0.75-0.375 inches), and 4a3a932cf3403fc1782e8f9aa8c7ebadfaf9853e (Pressure Relief Valve Components and Assembly). Impact: reduces integration risk, improves cooling reliability, and accelerates prototyping. Demonstrated CAD modeling, assembly design, and commit-based documentation for traceability and manufacturing readiness.
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