Published May 26, 2021 | Version v1

Worn region size of shoe outsole impacts human slips: Testing a mechanistic model

Description

Shoe outsole tread wear has been shown to increase slip risk by reducing the tread's ability to channel fluid away from the shoe-floor interface. This study establishes a connection between geometric features of the worn region size and slipping. A mechanistic pathway that describes the relationship between the worn region size and slip risk is assessed. Specifically, it is hypothesized that an increased worn region size leads to an increase in under-shoe fluid pressure, which reduces friction, and subsequently increases slipping. The worn region size, fluid pressure, and slip outcome were recorded for 57 participants, who were exposed to an unexpected slip condition. Shoes were collected from each participant and the available coefficient of friction (ACOF) was measured using a tribometer. A greater shoe worn region size was associated with increased slip occurrence. Specifically, a 1 mm increase in the characteristic length of the worn region (geometric mean of its width and length) was associated with an increase in slip risk of ~10%. Fluid pressure and ACOF results supported the mechanistic model: an increase in worn region size correlated with an increase in peak fluid pressure; peak fluid pressures negatively correlated with ACOF; and increased ACOF correlated with decreased slip risk. This finding supports the use of worn region size as a metric to assess the risk of slipping.

Notes

Funding provided by: National Science Foundation
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000001
Award Number: DGE 1650115

Funding provided by: National Center for Research Resources
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000097
Award Number: S10RR027102

Funding provided by: National Institute for Occupational Safety and Health
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000125
Award Number: R01OH010940

Files

ReadMe.txt

Files (26.5 kB)

Name Size Download all
md5:167036f4675850e4101e9d88e64e532f
13.6 kB Download
md5:5d2ec00fc25466c34a3c55e3d6c2e70e
12.7 kB Download
md5:c798ae0808c2321109fcc8055e01b6ca
180 Bytes Preview Download

Additional details

Related works