TY - GEN
T1 - Methodology for Vibration Analysis Produced by Heavy Machinery and its Effect on the Human Body
AU - Urbano, Kitty
AU - Auccahuasi, Wilver
AU - Meza, Sandra
AU - Castro-Mejia, Parcy
AU - Takahashi-Martinez, Yoshiro
AU - Espindola-Milla, Armando
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - The works related to heavy machinery, mainly those related to the mining and construction industry, cause different types of vibrations such as mechanical and acoustic, these cause significant effects on the human body, which depend on intensity, frequency and exposure time; which can cause disorders in the musculoskeletal system, muscle fatigue, damage to the nervous and circulatory system, back pain and posture problems. Reducing these risks allows an adequate control in the design, handling of heavy equipment, as well as working conditions, in order to mitigate these effects. In the present work we carried out a methodology based on the application of the ISO/TC 108/SC 4 standard, to evaluate the exposure time and the exposure values that workers of heavy machinery are subjected to, through the evaluation of the limit values allowed for each type of heavy equipment. As a result we present an application made in LabView, which allows to evaluate the maximum exposure times and exposure values, in order to recommend the working times in the machines, to mitigate the effects caused by vibration, we conclude by indicating how you can apply the recommendations of ISO/TC 108/SC 4, through the possible mechanisms to mitigate the effects of vibration.
AB - The works related to heavy machinery, mainly those related to the mining and construction industry, cause different types of vibrations such as mechanical and acoustic, these cause significant effects on the human body, which depend on intensity, frequency and exposure time; which can cause disorders in the musculoskeletal system, muscle fatigue, damage to the nervous and circulatory system, back pain and posture problems. Reducing these risks allows an adequate control in the design, handling of heavy equipment, as well as working conditions, in order to mitigate these effects. In the present work we carried out a methodology based on the application of the ISO/TC 108/SC 4 standard, to evaluate the exposure time and the exposure values that workers of heavy machinery are subjected to, through the evaluation of the limit values allowed for each type of heavy equipment. As a result we present an application made in LabView, which allows to evaluate the maximum exposure times and exposure values, in order to recommend the working times in the machines, to mitigate the effects caused by vibration, we conclude by indicating how you can apply the recommendations of ISO/TC 108/SC 4, through the possible mechanisms to mitigate the effects of vibration.
KW - Acceleration
KW - Frequency
KW - Impact
KW - Risk
KW - Vibration
UR - https://www.scopus.com/pages/publications/105045709321
U2 - 10.1109/I-SMAC65734.2025.11597780
DO - 10.1109/I-SMAC65734.2025.11597780
M3 - Conference contribution
AN - SCOPUS:105045709321
T3 - Proceedings of the 9th International Conference on I-SMAC (IoT in Social, Mobile, Analytics and Cloud), I-SMAC 2025
SP - 1059
EP - 1065
BT - Proceedings of the 9th International Conference on I-SMAC (IoT in Social, Mobile, Analytics and Cloud), I-SMAC 2025
T2 - 9th International Conference on I-SMAC (IoT in Social, Mobile, Analytics and Cloud), I-SMAC 2025
Y2 - 8 October 2025 through 10 October 2025
ER -