The validity and reliability of a portable slip meter for determining floor slipperiness during simulated heel strike
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Andres, 1985, Ergonomic analysis of slip-resistance measurement devices, Ergonomics, 28, 1065, 10.1080/00140138508963228
Cappozzo, A., 1991. The mechanics of human walking. In: Patla, A.E. (Ed.), Adaptability of Human Gait: Implications for the Control of Locomotion. Elsevier, Amsterdam, pp. 167–186.
Chang, W.R., Grönqvist, R., Leclercq, S., Brungraber, R., Mattke, U., Strandberg, L., Thorpe, S., Myung, R., Makkonen, L., Courtney, T., 2001. The role of friction in the measurement of slipperiness. Part II. Survey of friction measurement devices, Ergonomics 44 (13), 1233–1261.
European Committee for Standardization, Safety, protective and occupational footwear for professional use: test method and specification for the determination of slip resistance, European standard, draft prEN 13287, July 1998, Central Secretariat, Brussels, 12 p.
Grönqvist, R., 1995. A dynamic method for assessing pedestrian slip resistance. People and Work, Research Reports 2, Doctoral Dissertation. Finnish Institute of Occupational Health, Hakapaino Oy, Helsinki, 156 p.
Grönqvist, R., 1997. On transitional friction measurement and pedestrian slip resistance. In: Seppälä, P., Luopajärvi, T., Nygård, C.-H., Mattila, M. (Eds.), Proceedings of the 13th Triennial Congress of the International Ergonomics Association, From Experience to Innovation. Finnish Institute of Occupational Health, Vol. 3. Helsinki, pp. 383–385.
Grönqvist, R., Hirvonen, M., Rajamäki, E., 1998. A new portable test device for assessing on-site floor slipperiness. In: Proceedings of the Presentation at the International Conference on Slipping, Tripping and Falling Accidents, 3 June. University of Surrey, Guildford, Surrey, UK.
Grönqvist, R., Chang, W.R., Hirvonen, M., Rajamäki, E., Tohv, A., 2000. Validity and reliability of transitional floor friction tests: the effect of normal load and sliding velocity. In: Proceedings of the IEA 2000/HFES 2000 Congress, Safety and Health, Aging, Vol. 4. San Diego, CA, pp. 502–505.
Grönqvist, R., Abeysekera, J., Gard, G., Hsiang, S., Leamon, T., Newman, D., Gielo-Perczak, K., Lockhart, T., Pai, Y.-C., 2001a. Human-centred approaches in slipperiness measurement, Ergonomics 44 (13), 1167–1199.
Grönqvist, R., Chang, W.R., Courtney, T., Leamon, T., Redfern, M., Strandberg, L., 2001b. Measurement of slipperiness: fundamental concepts and definitions, Ergonomics 44 (13), 1102–1117.
Grönqvist, R., Hirvonen, M., Matz, S., 2001c. Walking safety and contact time related variation in shoe-floor traction. In: Proceedings of the International Conference on Computer-Aided Ergonomics and Safety, Slips and Falls Tribology, 29 July–1 August 2001. Outrigger Wailea Resort, Maui, HI, USA.
Grönqvist, 2001, Development of a portable test device for assessing on-site floor slipperiness: an interim report, Appl. Ergonom., 32, 163, 10.1016/S0003-6870(00)00053-3
Grönqvist, 1999, Evaluation of three portable floor friction testers, Int. J. Ind. Ergonom., 25, 85, 10.1016/S0169-8141(98)00101-2
Grönqvist, 1993, Slipperiness of the shoe-floor interface: comparison of objective and subjective assessments, Appl. Ergonom., 24, 258, 10.1016/0003-6870(93)90460-Q
Lanshammar, H., Strandberg, L., 1983. Horizontal floor reaction forces and heel movements during the initial stance phase. In: Matsui, H., Kobayashi, K. (Eds.), Biomechanics, Vol. VIII. University Park Press, Baltimore, pp. 1123–1128.
Leclercq, 1999, The prevention of slipping accidents: a review and discussion of work related to the methodology of measuring slip resistance, Safety Sci., 31, 95, 10.1016/S0925-7535(98)00064-2
Leclercq, 1993, Quantification of the slip resistance of floor surfaces at industrial sites. Part II. Choice of optimal measurement conditions, Safety Sci., 17, 41, 10.1016/0925-7535(93)90019-A
Moore, D.F., 1972. The friction and lubrication of elastomers. In: Raynor, G.V. (Ed.), International Series of Monographson, Material Science and Technology, Vol. 9. Pergamon Press, Oxford, 288 p.
Myung, 1997, The effect of load carrying and floor contaminants on slip and fall parameters, Ergonomics, 40, 235, 10.1080/001401397188323
Morach, B., 1993. Quantifierung des Ausgleitvorganges beim menschlichen Gang unter besonderer Berücksichtigung der Aufsetzphases des Fusses, Doctoral Dissertation. Fachbereich Sicherheits-technik der Bergischen Universität, Gesamthochschule Wuppertal, 181 p. (in German).
Perkins, P.J., 1978. Measurement of slip between the shoe and ground during walking. In: Anderson, C., Senne, J. (Eds.), Walkway Surfaces: Measurement of Slip Resistance, STP 649. American Society for Testing and Materials (ASTM), Baltimore, pp. 71–87.
Proctor, 1988, Slipping, tripping, and falling accidents in Great Britain: present and future, J. Occup. Acc., 9, 269, 10.1016/0376-6349(88)90018-1
Rabinowicz, 1958, The intrinsic variables affecting the stick-slip process, J. Appl. Phys., 29, 668
Scheil, M., 1993. Analyse und Verlgleich von instationären Reibzahlmessgeräten (Analysis and comparison of transportable measuring instruments for determination of the coefficient of friction), Doctoral Dissertation. Fachbereich Sicherheitstechnik der Bergischen Universität, Gesamthochschule Wuppertal, 115 p. (in German with English summary).
Strandberg, L., 1983. Ergonomics applied to slipping accidents. In: Kvålseth, T.O. (Ed.), Ergonomics of Workstation Design, Butterworths, London, pp. 201–208 (Chapter 14).
Strandberg, 1985, The effect of conditions underfoot on falling and overexertion accidents, Ergonomics, 28, 131, 10.1080/00140138508963123
Strandberg, L., Hildeskog, L., Ottoson, A.-L., 1985. Footwear friction assessed by walking experiments. VTI rapport 300 A. Swedish Road Traffic Research Institute, Linköping, 12 p.
Strandberg, 1981, The dynamics of slipping accidents, J. Occup. Acc., 3, 153, 10.1016/0376-6349(81)90009-2
Tisserand, 1985, Progress in the prevention of falls caused by slipping, Ergonomics, 28, 1027, 10.1080/00140138508963225
Winter, D.A., 1991. The biomechanics and Motor Control of Human Gait: Normal, Elderly and Pathological, 2nd Edition. University of Waterloo, Waterloo, 143 p.