Chapter 6 References with Links

Akande, Fatai, D. Ahmad, O. B. Jamarie, Shamsuddin Sulaiman, and A. B. Fashina. 2010. “Empirical determination of the motion resistance of pneumatic bicycle wheels for on and off-road performance.” African Journal of Agricultural Research. 5(23): 3322–32. DOI: 10.5897/AJAR10.427 https://www.researchgate.net/publication/267252027_Empirical_determination_of_the_motion_resistance_of_pneumatic_bicycle_wheels_for_on_and_off-road_performance

Baldissera, Paolo, and Cristiana Delprete. 2016. “Rolling Resistance, Vertical Load and Optimal Number of Wheels in HPV Design.” Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology 231, no. 1 (February). https://www.researchgate.net/publication/293015309

Bekker, M. G. 1956. Theory of Land Locomotion. Ann Arbor: University of Michigan Press. https://babel.hathitrust.org/cgi/pt?id=mdp.49015002826726

Biermann, Jarno. 2014. “Tubeless vs Latex Tube vs Butyl Tube, Rolling Resistance Compared.”
Bicycle Rolling Resistance (website). https://www.bicyclerollingresistance.com/specials/tubeless-latex-butyl-tubes

Brandt, Jobst. 1998. Post to the internet newsgroup rec.bicycles.tech, March 3. Linked from: http://terrymorse.com/bike/rolres.html and http://yarchive.net/bike/rolling_resistance.html

Clark, S. K., ed. 1981. Mechanics of Pneumatic Tires. DOT HS 805 952. Washington, DC: US Government Printing Office, for US Department of Transportation, National Highway Traffic Safety Administration. https://www.worldcat.org/title/mechanics-of-pneumatic-tires/oclc/560250787 (libraries) and https://babel.hathitrust.org/cgi/pt?id=mdp.39015006417417&view=1up&seq=1 (full view)

Cossalter, Vittore. 2006. Motorcycle Dynamics. 2d ed. Lulu.com. https://books.google.ch/books?id=rJTQxITnkbgC&pg

Dressel, Andrew E. 2013. “Measuring and Modeling the Mechanical Properties of Bicycle Tires.” PhD diss., University of Wisconsin-Milwaukee. http://dc.uwm.edu/etd/386/

Dressel, Andrew E., and A. Rahman. 2010. “Measuring Dynamic Properties of Bicycle Tires.” In Proceedings, Bicycle and Motorcycle Dynamics 2010: Symposium on the Dynamics and Control of Single Track Vehicles, 20–22 October 2010, Delft, The Netherlands.http://www.bicycle.tudelft.nl/ProceedingsBMD2010/papers/dressel2010measuring.pdf

Datza, Leonardi. 2015. “Reifenlatsch rein theoretisch genau berechnen” [Theoretical Calculation of Contact Patch]. Velomobil Forum (website). https://www.velomobilforum.de/forum/index.php?threads/reifenlatsch-rein-theoretisch-genau-berechnen.42777/

Dupuit, Jules. 1837. Essai et expériences sur le tirage des voitures [Experiments and Experiences on the Traction of Carriages]. https://archive.org/download/essaietexprienc00dupugoog/essaietexprienc00dupugoog.pdf

Engineering Toolbox. 2008. “Rolling Resistance.” The Engineering Toolbox (website). https://www.engineeringtoolbox.com/rolling-friction-resistance-d_1303.html

Foale, Tony. 1997. “Camber Thrust.” Motochassis (website). https://motochassis.com/Articles/Tyres/TYRES.htm

Foale, Tony. 2006. Motorcycle Handling and Chassis Design: The Art and Science. Tony Foale Designs. See also (1997). https://www.worldcat.org/title/motorcycle-handling-and-chassis-design-the-art-and-science

Freudenmann, T., H. J. Unrau, and M. El-Haji. 2009. “Experimental Determination of the Effect of the Surface Curvature on Rolling Resistance Measurements.” Tire Science and Technology 37, no. 4 (December): 254–78.

https://www.worldcat.org/title/experimental-determination-of-the-effect-of-the-surface-curvature-on-rolling-resistance-measurements/oclc/506057492

Gordon, John, James J. Kauzlarich, and John G. Thacker. 1989. “A Technical Note: Tests of Two New Polyurethane Foam Wheelchair Tires.” Journal of Rehabilitation Research and Development 26, no. 1 (Winter): 33–46. https://www.rehab.research.va.gov/jour/89/26/1/pdf/Gordon.pdf

Grappe, F., R. Candau, B. Barbier, M. D. Hoffman, A. Belli, and J.-D. Rouillon. 1999. “Influence of Tyre Pressure and Vertical Load on Coefficient of Rolling Resistance and Simulated Cycling Performance.” Ergonomics 42, no. 10: 1361–71. https://www.doi.org/10.1080/001401399185009

Grujicic, M., H. Marvi, G. Arakere, and I. Haque. 2010. “A Finite Element Analysis of Pneumatic-Tire/Sand Interactions during Off-Road Vehicle Travel.” Multidiscipline Modeling in Materials and Structures 6, no. 2: 284–308. https://www.scribd.com/document/359559935/FEM-Analysis-of-Pneumatic-tire-sand-Interactions

Hadland, Tony. 2012. “Small Wheels for Adult Bicycles.” Hadland’s Blog. June 25, 2012. https://hadland.wordpress.com/2012/06/25/small-wheels-for-adult-bicycles/

Harris, Tedric A. 1991. Rolling Bearing Analysis. New York: Wiley. https://www.worldcat.org/title/rolling-bearing-analysis-volume-1-essential-concepts-of-bearing-technology/oclc/1109465849

Henry, Charles. 2015. “Fahrtwiderstände beim Birk Comet im Vergleich zu Rollwiderstandsmessungen auf Rollenprüfstand” [Birk Comet Resistances compared to Drum-Measured Rolling Resistance]. http://www.velomobil.ch/ch/en/node/477

Johnson, K. 1996. Contact Mechanics. Cambridge, UK: Cambridge University Press. https://www.worldcat.org/title/contact-mechanics/oclc/1131523611

Joukowsky Institute for Archaeology. 2010. “Building an Egyptian Chariot.” Fighting Pharaohs: Ancient Egyptian Warfare (online course). https://www.brown.edu/Departments/Joukowsky_Institute/courses/fightingpharaohs10/9985.html

Kauzlarich, James and John Thacker. 1985. “Wheelchair tire rolling resistance and fatigue.” Journal of Rehabilitation Research and Development Vol. 22 (3):25–41. https://www.worldcat.org/title/wheelchair-tire-rolling-resistance-and-fatigue/oclc/114717696

Kumar, Prashant, D. K. Sarkar, and Sharad Chandra Gupta. 1988. “Rolling Resistance of Elastic Wheels on Flat Surfaces.” Wear 126, no. 2 (September 1): 117–29. https://doi.org/10.1016/0043-1648(88)90133-0

Kunz, Johannes, and Mario Studer. 2006. “Component Design: Determining the Modulus of Elasticity in Compression via the Shore A Hardness.” Kunststoffe International 2006/06. https://www.kunststoffe.de/en/journal/archive/article/component-design-determining-the-modulus-of-elasticity-in-compression-via-the-shore-a-hardness-588533.html

Larson, Kent. 2016. “Can You Estimate Modulus from Durometer Hardness for Silicones?” Dow Corning. http://web.archive.org/web/20170713183219/http://www.dowcorning.com/content/publishedlit/11-3716-01_durometer-hardness-for-silicones.pdf

Lippert, Dave, and Jeff Spektor. 2013. “Rolling Resistance and Industrial Wheels.” Hamilton White Paper No. 11, Hamilton, Hamilton, OH. http://www.hamiltoncaster.com/Portals/0/blog/White%20Paper%20Rolling%20Resistance.pdf

McConica, Chuck. 1985. “Rolling Drag: three is less than two?.” Human Power 5(1):12-13. http://www.ihpva.org/HParchive/PDF/15-v5n1-1985.pdf

Mesys. 2019. “Contact Stress: Calculation of Contact Stress” (Universal Hertzian online calculator). Mesys AG, Zurich. https://www.mesys.ag/?page_id=1220

MontyPythagoras. 2014. “Rollwiderstand von Fahrradreifen” [Rolling Resistance of Bicycle Tires]. Mathroids Matheplanet [Mathroid's Maths Planet], May 29. https://matheplanet.com/matheplanet/nuke/html/print.php?sid=1620

Reynolds, Osborne. 1876. “Rolling Friction.” Philosophical Transactions 166: 155–56. http://www.pdftitles.com/download/4936

Sandberg, Ulf, ed. 2011. Rolling Resistance—Basic Information and State-of-the-Art on Measurement Methods. Report MIRIAM SP1. MIRIAM (Models for rolling resistance In Road Infrastructure Asset Management Systems). http://miriam-co2.net/Publications/MIRIAM_SoA_Report_Final_110601.pdf

Schermer, Wim. 2013. Bandentesten deel 1. [Tire Testing Part 1.] https://www.ligfiets.net/news/4584/bandentesten-deel-1.html

Schuring, D. J. 1977. “The Energy Loss of Tires on Twin Rolls, Drum, and Flat
Roadway: A Uniform Approach.” SAE Technical Paper 770875, Society of Automotive Engineers, Warrendale, PA. https://doi.org/10.4271/770875 ($33.00)

Senkel, Thomas. 1992. “Plädoyer für einen guten Reifen” [A Plea for a Good Tire]. Pro Velo 32. http://www.forschungsbuero.de/PV32_S15_19.pdf

Senkel, Thomas. 1994. “Federungseigenschaften von Fahrradreifen” [Springing Characteristics of Bicycle Tires]. Pro Velo 38. http://www.forschungsbuero.de/PV38_S6_8.pdf

Schwalbe North America. 2019. “Rolling Resistance: Why Do Wide Tires Roll Better Than Narrow Ones?” Schwalbe North America, Ferndale, WA. https://www.schwalbetires.com/tech_info/rolling_resistance

Sharp, Archibald. 1896. Bicycles and Tricycles. London: Longmans, Green. Reprint, Cambridge, MA: MIT Press, 1977. https://www.worldcat.org/title/bicycles-and-tricycles/oclc/256302630

SKF Group. 2018a. “Bearing Friction, Power Loss and Starting Torque.” SKF Group, Gothenburg, Sweden. http://web.archive.org/web/20190106163205/http://www.skf.com/group/products/bearings-units-housings/principles/bearing-selection-process/operating-temperature-and-speed/friction-powerloss-startingtorque/index.html

SKF Group. 2020. “SKF Bearing Select—New.” SKF Group, Gothenburg, Sweden. https://www.skfbearingselect.com

Tetz, John. 2005. “Crr vs Temperature.” Metro Area Recumbent Society. Recumbents.com. http://www.recumbents.com/mars/pages/proj/tetz/other/Crr.html

Trautwine, John C., and John C. Trautwine, Jr. 1937. The Civil Engineer’s Reference Book. 21st ed., edited by John C. Trautwine 3rd. Philadelphia: National. https://babel.hathitrust.org/cgi/pt?id=coo.31924004585646&view=1up&seq=5

Unrau, Hans-Joachim. 2013. “Der Einfluss der Fahrbahnoberflächenkrümmung.” [The Influence of the Road Curvature.] Karlsruhe: KIT Scientific Publishing. https://books.google.de/books?id=KSS9Ls-rv2IC

Vander Wiel, Jonathan, Boice Harris, Carl Jackson, and Norman Reese. 2016. “Exploring the Relationship of Rolling Resistance and Misalignment Angle in Wheelchair Rear Wheels.” Paper presented at RESNA /NCART 2016, Arlington, VA, July 12–14. http://www.resna.org/sites/default/files/conference/2016/wheelchair_seating/wiel.html

Wright, Chris. 2019. “Chapter 2020: The Contact Patch.” The Contact Patch (website). http://the-contact-patch.com/book/road/c2020-the-contact-patch