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PDEng positions in Maintenance: Design and prototype of lab test surfaces representative for real wet tyre braking test
Published(1069 days ago)
Deadline for applications(1031 days ago)
University of Twente (UT)Enschede (Niederlande)
PDEng positions in Maintenance: Design and prototype of lab test surfaces representative for real wet tyre braking test.
PhD positions, Research, Development, Innovation
38.0 hours per week
maximum € 1803
University of Twente (UT)
Are you interested in high-end technological design?
Then, the Professional Doctorate in Engineering (PDEng) programme Maintenance is very interesting for you. The PDEng
programme is a 2-year post MSc technological programme with a focus on technological design. This programme at the
University of Twente contains an educational part that will be followed at the University, and a design project that
will be carried out at Apollo Vredestein in Enschede. The educational programme will have an in-depth and broadening
character with ample attention for professional development and will be partly tailored to the design project. In
collaboration with Apollo, high level, creative and new designs for complex issues will be aimed at.
The tyre traction ability plays a crucial role for safety on roads (especially wet), as the tyre is the only contact
between the vehicle and the road. Tyre manufactures test the braking distance and wet grip label of tyres intensively
at different locations to ensure safety of their products. It is well known that the tyre grip ability depends on the
test surface and can vary quite a lot. The interaction between wet road and tyre can be divided into two contributions:
a tread pattern and macro roughness play important role in the removal of water from the contact patch and tread material
and micro roughness responsible for grip between each other. The prediction of material friction ability at early stage
of tyre development is very important. There is a variety of equipment for measuring of material friction ability. The
types of surfaces on which (lab) friction can be tested are very limited and not representative for real test tracks.
The stability and durability of test surface are other important issues, including initial running for removal of the
bitumen. The design and development of laboratory friction test with durable surfaces replicated real different test
tracks will be a great advantage for the quick and correct material friction prediction.
Goal and prototype deliverable of the Project
The PDEng needs to design new durable test surfaces and compare with real wet test tracks.
Characterization of reference surfaces including macro and micro roughness. Is equal characterisation of road surface of ATP (Papenburg) full scale test section.
Review of existing simple test devices for rubber-(road)surface friction characterization and propose, which will be used for validation.
Design of a test procedure for chosen friction device on reference surface.
Design of test surface prototypes.
Design of a test procedure for bitumen removal and initial polishing or preparation of test surfaces.
Validation of lab test surface prototypes against full-scale reference surfaces, including friction tests for different rubber compounds with wet conditions.
Design a procedure for deducing the effects of polishing the road surface (by running traffic or artificial) in such a way that lab tests can be compared to full-scale tests on real roads.
Design a procedure how to proceed that at wet frictions tests an imposed amount of water is on top of the test sample road surface.
We are searching for the best MSc graduated candidates (or graduates with several years of experience) in the field of Mechanical Engineering,
Material Sciences, Industrial Design Engineering or a related discipline. Candidates should have a demonstrable affinity with design and
multidisciplinary assignments. Besides, you must have the ambition and talent to accelerate in finding solutions/creating designs for
complex technological issues with a multidisciplinary character. Important professional skills are English language skills, communication
and interpersonal skills, teamwork, initiative and self-reflection. An interview will be part of the selection procedure.
Please send your letter of motivation, with a curriculum vitae, a list with grades of courses attended, references and, if applicable,
a list of publications before 30-04-2017 through the link below.
If you have any further questions about this vacancy of the PDEng programme in Maintenance, please contact Dr.Ir. H.L. (Henny)
ter Huerne: email: email@example.com / telephone: +31 53 489 2499 / +31 53 489 4254
General information about PDEng programmes you can find at our
Conditions of employment
We offer a contract for 24 months. During these two years you follow a tailor made post-master design programme with a combination
of education (~50%) and working on a design project (~50%). The salary will be € 1.803 gross per month. Additionally, the
University of Twente provides excellent facilities for professional and personal development, a holiday allowance and an end-of-year bonus.
On successfully completing the programme, you will receive a certified degree. You will be entitled to use the academic degree
Professional Doctorate in Engineering (PDEng) and will be registered as a Technological Designer in the Dutch register kept by
the Royal Institution of Engineers in the Netherlands (KIVI).
The University of Twente. We stand for life sciences and technology. High tech and human touch. Education and research that matter. New technology which drives change, innovation and progress in society. The University of Twente is the only campus university in the Netherlands; divided over five faculties we provide more than fifty educational programmes. The University of Twente has a strong focus on personal development and talented researchers are given scope for carrying out pioneering research.
The Faculty of Engineering Technology (ET) is one of the five faculties of the University of Twente. ET combines Mechanical Engineering, Civil Engineering and Industrial Design Engineering. Our faculty has approximately 1800 bachelor and master students, 400 employees and 150 PhD candidates. The departments of the faculty cooperatively conduct the educational programmes and participate in interdisciplinary research projects, programmes and the research institutes: MIRA, CTIT, SBE and IGS.
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