Development and Testing of Advanced Door Opening and Closing Function
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Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
Utgivare
Sammanfattning
The increasing electrification and digitalization of heavy-duty vehicles have created new opportunities
to improve both vehicle functionality and aerodynamic performance. Reducing
aerodynamic drag is an important criterion identified for lowering energy consumption and
increasing vehicle range, and the integration of flush exterior components, such as door
handles, can contribute to reducing surface discontinuities. This thesis investigates the development
of a power-operated side-door system for a heavy-duty truck, with a focus on
integrating power release, soft-close functionality and a flush exterior handle interface while
retaining the existing latch mechanism and mechanical release as a backup.
A structured product development process was used to gauge the user needs and understand
contemporary door entry systems to then develop and evaluate the prototype. The
existing door system was integrated with an electric linear actuator in place of the door
checker to enable a multi-functional solution. The actuator mounting geometry, required
stroke, opening angle and operating forces were determined through kinematic and force calculations.
Furthermore, a geared motor-driven mechanism was developed for power release
and cinching. The multi-stage gear system was developed to provide the required output
torque to the latch, and the drivetrain was verified using Romax. The housing, gears and
opening interface were subsequently refined through several prototype iterations and functional
testing. A preliminary communication and control system was also developed and
tested using an Arduino-based setup to coordinate the different components and demonstrate
the operating sequence.
The final prototype combined the developed actuator, latch interface, cinching and powerrelease
functions, exterior handle interface and supporting test fixture into a functional system.
The iterative development and testing process identified several practical limitations
related to packaging, structural strength, electrical interface and component integration,
which were addressed through successive design modifications. The results demonstrate the
feasibility of integrating an electrically operated door system around an existing heavy-duty
vehicle door, while the developed prototype provides a technical foundation for further refinement
and integration toward a production-ready power-operated door system for heavy-duty
vehicles.
Beskrivning
Ämne/nyckelord
Heavy-duty trucks, advanced door system, power release, cinching, door handle, actuator, Arduino, prototyping
