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Abstracts

Designing shoe tread for friction performance: a hierarchical approach

ORCID Icon, , & ORCID Icon
Pages S97-S99 | Received 19 Feb 2021, Accepted 06 Apr 2021, Published online: 13 Jul 2021

References

  • Chang, W.-R., Leclercq, S., Lockhart, T. E., & Haslam, R. (2016). State of science: Occupational slips, trips and falls on the same level. Ergonomics, 59(7), 861–883. https://doi.org/10.1080/00140139.2016.1157214
  • Hemler, S., Charbonneau, D., Iraqi, A., Redfern, M. S., Haight, J. M., Moyer, B. E., & Beschorner, K. E. (2019). Changes in under-shoe traction and fluid drainage for progressively worn shoe tread. Applied Ergonomics, 80(October 2019), 35–42. https://doi.org/10.1016/j.apergo.2019.04.014
  • Iraqi, A., Cham, R., Redfern, M. S., & Beschorner, K. E. (2018). Coefficient of friction testing parameters influence the prediction of human slips. Applied Ergonomics, 70, 118–126. https://doi.org/10.1016/j.apergo.2018.02.017
  • Iraqi, A., Vidic, N. S., Redfern, M. S., & Beschorner, K. E. (2020). Prediction of coefficient of friction based on footwear outsole features. Applied Ergonomics, 82, 102963. https://doi.org/10.1016/j.apergo.2019.102963
  • Jones, T. G., Iraqi, A., & Beschorner, K. E. (2018). Performance testing of work shoes labeled as slip resistant. Applied Ergonomics, 68, 304–312. https://doi.org/10.1016/j.apergo.2017.12.008

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