Literature DB >> 22046720

The effect of transverse shear force on the required coefficient of friction for level walking.

Wen-Ruey Chang1, Chien-Chi Chang, Simon Matz.   

Abstract

OBJECTIVE: An enhanced methodology to extract the required coefficient of friction (RCOF) value was used to investigate the effects of the transverse shear component of the ground reaction force (GRF) on the RCOF.
BACKGROUND: The RCOF is an important indicator for slip incidents. However,the extraction of the RCOF from GRF is not standardized. The transverse shear force is usually ignored in calculating the RCOF value.
METHOD: For this study, 40 participants performed four walking conditions. The RCOF values both with (RCOF2) and without (RCOF1) the transverse shear force were identified from each strike by the use of an enhanced method and were compared.
RESULTS: A total of 24,851 strikes were collected. The transverse component increased the RCOF value by more than 10% in 7.2% of the strikes. In 10.4% of the strikes, the RCOF2 occurred at least 20 ms earlier and the RCOF value was on average 8.9% larger than RCOF1.
CONCLUSION: With this method, we were able to successfully identify the RCOF in a significantly large number of strikes across 40 participants. In a portion of the strikes, the transverse shear force increased the RCOF significantly. In a significant portion of the strikes, the RCOF2 occurred much earlier than RCOF1. APPLICATION: Better estimates of the RCOF magnitude and instant of occurrence could potentially improve risk assessment and identification of critical instants in gait.

Entities:  

Mesh:

Year:  2011        PMID: 22046720     DOI: 10.1177/0018720811414885

Source DB:  PubMed          Journal:  Hum Factors        ISSN: 0018-7208            Impact factor:   2.888


  11 in total

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2.  Effects of upper body strength, hand placement and foot placement on ladder fall severity.

Authors:  Erika M Pliner; N J Seo; Viswanathan Ramakrishnan; Kurt E Beschorner
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3.  Influence of averaging time-interval on shoe-floor-contaminant available coefficient of friction measurements.

Authors:  Kurt E Beschorner; Arian Iraqi; Mark S Redfern; Brian E Moyer; Rakié Cham
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4.  Worn region size of shoe outsole impacts human slips: Testing a mechanistic model.

Authors:  Vani H Sundaram; Sarah L Hemler; Arnab Chanda; Joel M Haight; Mark S Redfern; Kurt E Beschorner
Journal:  J Biomech       Date:  2020-04-18       Impact factor: 2.712

5.  Predicting slips based on the STM 603 whole-footwear tribometer under different coefficient of friction testing conditions.

Authors:  Kurt E Beschorner; Arian Iraqi; Mark S Redfern; Rakié Cham; Yue Li
Journal:  Ergonomics       Date:  2019-02-26       Impact factor: 2.778

6.  Kinematics and kinetics of the shoe during human slips.

Authors:  Arian Iraqi; Rakié Cham; Mark S Redfern; Natasa S Vidic; Kurt E Beschorner
Journal:  J Biomech       Date:  2018-04-25       Impact factor: 2.712

7.  Coefficient of friction testing parameters influence the prediction of human slips.

Authors:  Arian Iraqi; Rakié Cham; Mark S Redfern; Kurt E Beschorner
Journal:  Appl Ergon       Date:  2018-03-20       Impact factor: 3.661

8.  Factors affecting fall severity from a ladder: Impact of climbing direction, gloves, gender and adaptation.

Authors:  Erika M Pliner; Na Jin Seo; Kurt E Beschorner
Journal:  Appl Ergon       Date:  2016-12-07       Impact factor: 3.661

9.  Gait kinetics impact shoe tread wear rate.

Authors:  Sarah L Hemler; Jessica R Sider; Mark S Redfern; Kurt E Beschorner
Journal:  Gait Posture       Date:  2021-03-08       Impact factor: 2.840

Review 10.  State of science: occupational slips, trips and falls on the same level.

Authors:  Wen-Ruey Chang; Sylvie Leclercq; Thurmon E Lockhart; Roger Haslam
Journal:  Ergonomics       Date:  2016-03-30       Impact factor: 2.778

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