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Ergonomic Evaluation of Different Working Posture and Handle Designs of Mason Trowel during Wall Plastering Work based on Shoulder and Arm Muscle Activity


Affiliations
1 Department of Mechanical Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
2 Department of Civil Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
3 Department of Mechatronics Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
4 School of Mechanical Engineering, Lovely Professional University, Phagwara, Punjab, India
 

This study aims to identify the impact of the three ergonomically designed mason trowel handles at two working postures on the arm and shoulder muscles activation through experimental and subjective analysis. Prolonged usage, poor ergonomic design of trowels, and working at awkward postures results in Work-related Musculoskeletal Disorders (WMSD) among workers performing wall plastering task. Three mason trowels with different handle shapes were designed by modifying existing mason trowels and developed with 3D printing technology. Twelve student volunteers took part in this experimental study and simulated the wall plastering work at two commonly adopted working postures. Muscle activation and fatigue characteristics of five muscles on the arms and shoulder region were studied using Electromyography sensor (sEMG) sensors. Borg’s CR-10 scale was employed to carry out the subjective analysis to find mean discomfort among the models. The results revealed that handle shape and working position have an influence on the shoulder muscle engagement and less effect on the arm muscles. Subjective analysis results revealed that Model B and Model C were rated with higher preference by the participants. Results have revealed that shoulder muscle is activated more and subjected high muscle fatigue while performing wall plastering tasks. Also, circular-shaped handles with varying cross sections and curved shape handles were rated as highly compared to wall plastering work. Findings from this study can be used for studying the relationship between mason trowel designs and working posture with muscle activation.

Keywords

Construction workers, Muscle activity, Plastering work, Surface electromyography, WMSD.
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  • Goldsheyder D, Weiner S S, Nordin M & Hiebert R, Musculoskeletal symptom survey among cement and concrete workers, Work, 23(2) (2004) 111–121.
  • Zhou Z, Goh Y M & Li Q, Overview and analysis of safety management studies in the construction industry, Saf Sci, 72 (2015) 337–350.
  • Chakraborty T, Das S K, Pathak V & Mukhopadhyay S, Occupational stress, musculoskeletal disorders and other factors affecting the quality of life in Indian construction workers, Int J Constr Manag, 18(2) (2018) 144-150.
  • Yang K, Ahn C R & Kim H, Deep learning-based classification of work-related physical load levels in construction, Adv Eng Informatics, 45 (2020) 101104.
  • Basahel A M, From the prospective of ergonomics: Estimating overall stressors and task demands in the construction sites in Saudi Arabia Using an Analytical Hierarchy Process (AHP), J Sci Ind Res (India), 78(10) (2019) 651–658.
  • Ekpenyong C E & Inyang U C, Associations between worker characteristics, workplace factors, and work-related musculoskeletal disorders: A cross-sectional study of male construction workers in Nigeria, Int J Occup Saf Ergon, 20(3) (2014) 447–462.
  • Antwi-afari M F, Li H, Edwards D J, Pärn E A, Seo J & Wong A Y L, Automation in construction biomechanical analysis of risk factors for work-related musculoskeletal disorders during repetitive lifting task in construction workers, Autom Constr, 83 (2017) 41–47.
  • Zubar H A & Alamoudi R, Analysis of body postures of employees in manufacturing industry by using ergonomic tools, J Sci Ind Res (India), 78(3) (2019) 144–147.
  • Anton D, Rosecrance J C, Gerr F, Merlino L A & Cook T M, Effect of concrete block weight and wall height on electromyographic activity and heart rate of masons, Ergonomics, 48(10) (2005) 1314–1330.
  • Hess J A, Kincl L, Amasay T & Wolfe P, Ergonomic evaluation of masons laying concrete masonry units and autoclaved aerated concrete, Appl Ergon, 41(3) (2010) 477–483.
  • Karmegam K, Ismail M Y, Sapuan S M & Ismail N, Conceptual design and prototype of an ergonomic backleaning posture support for motorbike riders, J Sci Ind Res (India), 67(8) (2008) 599–604.
  • Rahman M N A, Rani M R A & Rohani J M, Investigation of work-related musculoskeletal disorders in wall plastering jobs within the construction industry, Work, 43(4) (2012) 507–514.
  • Nugent R & Fallon E, Temporal patterns of discomfort reported by plasterers over a five-day workweek, Work, 51(4) (2015) 683–701.
  • Mital A & Kilbom A, Design, selection and use of hand tools to alleviate trauma of the upper extremities: Part II - The scientific basis (knowledge base) for the guide, Int J Ind Ergon, 10(1-2) (1992) 7–21.
  • Veisi H, Choobineh A, Ghaem H & Shafiee Z, The effect of hand tools’ handle shape on upper extremity comfort and postural discomfort among hand-woven shoemaking workers, Int J Ind Ergon, 74 (2019) 102833.
  • Jain R, Sain M K, Meena M L, Dangayach G S & Bhardwaj A K, Non-powered hand tool improvement research for prevention of work-related problems: A review, Int J Occup Saf Ergon, 24(3) (2018) 347–357.
  • Lohasiriwat H & Chaiwong W, Ergonomic Design for Sausage Packing Hand Tool. In: Procedia CIRP. Vol 91, 2020 789–795.
  • Bakhtiari N, Dianat I & Nedaei M, Electromyographic evaluation of different handle shapes of masons’ trowels, Int J Occup Saf Ergon, 27(1) (2021) 106–111.
  • Dianat I, Bakhtiari N, Nedaei M & Afshari D, Ergonomic design and evaluation of masons’ trowels for construction work, Int J Hum Factors Ergon, 6(1) (2019) 18–34.
  • Dianat I, Nedaei M & Mostashar N M A, The effects of tool handle shape on hand performance, usability and discomfort using masons’ trowels, Int J Ind Ergon, 45 (2015) 13–20.
  • Shankar S, Kumar N, Raman S J, Hariharan C P S & Raja S K, Ergonomic evaluation of ergonomically designed chalkboard erasers on shoulder and hand-arm muscle activity among college professors. Int J Ind Ergon, 84 (2021) 103170.
  • Kong Y K & Lowe B D, Optimal cylindrical handle diameter for grip force tasks, Int J Ind Ergon, 35(6) (2005) 495–507.
  • Subramanian S, Raju N, Srinivasan P, Jeganathan K & Jayaraman S, Low back pain assessment using surface electromyography among industry workers during the repetitive bending tasks, Int J Hum Factors Ergon, 5(4) (2018) 277–292.
  • Ekstrom R A, Soderberg G L & Donatelli R A, Normalization procedures using maximum voluntary isometric contractions for the serratus anterior and trapezius muscles during surface EMG analysis, J Electromyogr Kinesiol, 15(4) (2005) 418–428.
  • Boettcher C E, Ginn K A & Cathers I, Standard maximum isometric voluntary contraction tests for normalizing shoulder muscle EMG, J Orthop Res, 26(12) (2008) 1591–1597.
  • Fischer S L, Belbeck A L & Dickerson C R, The influence of providing feedback on force production and withinparticipant reproducibility during maximal voluntary exertions for the anterior deltoid, middle deltoid, and infraspinatus, J Electromyogr Kinesiol, 20(1) (2010) 68–75.
  • Rota S, Rogowski I, Champely S & Hautier C, Reliability of EMG normalisation methods for upper-limb muscles, J Sports Sci, 31(15) (2013) 1696–1704.
  • Meldrum D, Cahalane E, Conroy R, Fitzgerald D & Hardiman O, Maximum voluntary isometric contraction: Reference values and clinical application, Amyotroph Lateral Scler, 8(1) (2007) 47–55 .
  • Jensen C, Vasseljen O & Westgaard R H, The influence of electrode position on bipolar surface electromyogram recordings of the upper trapezius muscle, Eur J Appl Physiol Occup Physiol, 67(3) (1993) 266–273.
  • Ahamed N U, Sundaraj K, Badlisha A R, Rahman M, Islam A & Ali A, Analysis of the effect on electrode placement on an adolescent’s biceps brachii during muscle contractions using a wireless EMG sensor, J Phys Ther Sci, 24(7) (2012) 609–611.
  • Dickerson C R, Meszaros K A, Cudlip A C, Chopp-Hurley J N & Langenderfer J E, The influence of cycle time on shoulder fatigue responses for a fixed total overhead workload, J Biomech, 48(11) (2015) 2911–2918.
  • Arendt-Nielsen L & Mills K R, The relationship between mean power frequency of the EMG spectrum and muscle fibre conduction velocity, Electroencephalogr Clin Neurophysiol, 60(2) (1985) 130–134.
  • Balasubramanian V & Jayaraman S, Surface EMG based muscle activity analysis for aerobic cyclist, J Bodyw Mov Ther, 13(1) (2009) 34–42.
  • McGorry R W, Lin J H, Dempsey P G & Casey J S, Accuracy of the Borg CR10 scale for estimating grip forces associated with hand tool tasks, J Occup Environ Hyg, 7(5) (2010) 298–306.
  • Halim I, Omar A R, Saman A M & Othman I, Assessment of muscle fatigue associated with prolonged standing in the workplace, Saf Health Work, 3(1) (2012) 31–42.
  • Lee K S & Jung M C, Ergonomic evaluation of biomechanical hand function, Saf Health Work, 6(1) (2015) 9–17.
  • Gaudet S, Tremblay J & Dal Maso F, Evolution of muscular fatigue in periscapular and rotator cuff muscles during isokinetic shoulder rotations, J Sports Sci, 36(18) (2018) 2121–2128.
  • Amar M R, Cochran D & Woldstad J, The effect of singlehanded lifting tasks on the activation of the neck-shoulder shared musculature, Int Biomech, 4(1) (2017) 1–8.
  • Antony N T & Keir P J, Effects of posture, movement and hand load on shoulder muscle activity, J Electromyogr Kinesiol, 20(2) (2010) 191–198.
  • Voight M L, Allen Hardin J, Blackburn T A, Tippett S & Canner G C, The effects of muscle fatigue on and the relationship of arm dominance to shoulder proprioception, J Orthop Sports Phys Ther, 23(6) (1996) 348–352.
  • Ebaugh D D, McClure P W & Karduna A R, Effects of shoulder muscle fatigue caused by repetitive overhead activities on scapulothoracic and glenohumeral kinematics, J Electromyogr Kinesiol, 16(3) (2006) 224–235.
  • Yumeng L, Surface EMG analysis of biceps brachii fatigue during isometric contraction: A preliminary study, J Bone Muscles Study, (2017) Published online 2017 41–44.

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  • Ergonomic Evaluation of Different Working Posture and Handle Designs of Mason Trowel during Wall Plastering Work based on Shoulder and Arm Muscle Activity

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Authors

R. Naveen Kumar
Department of Mechanical Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
S. Venkatachalam
Department of Civil Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
S. Shankar
Department of Mechatronics Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
R. Nithyaprakash
Department of Mechatronics Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
A. J. Elavarasan
Department of Civil Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
E. Krishnashankar
Department of Civil Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
K. Dharmadurai
Department of Civil Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
T. V. Srinivasan
Department of Civil Engineering, Kongu Engineering College, Erode, Tamil Nadu, India
C. Prakash
School of Mechanical Engineering, Lovely Professional University, Phagwara, Punjab, India

Abstract


This study aims to identify the impact of the three ergonomically designed mason trowel handles at two working postures on the arm and shoulder muscles activation through experimental and subjective analysis. Prolonged usage, poor ergonomic design of trowels, and working at awkward postures results in Work-related Musculoskeletal Disorders (WMSD) among workers performing wall plastering task. Three mason trowels with different handle shapes were designed by modifying existing mason trowels and developed with 3D printing technology. Twelve student volunteers took part in this experimental study and simulated the wall plastering work at two commonly adopted working postures. Muscle activation and fatigue characteristics of five muscles on the arms and shoulder region were studied using Electromyography sensor (sEMG) sensors. Borg’s CR-10 scale was employed to carry out the subjective analysis to find mean discomfort among the models. The results revealed that handle shape and working position have an influence on the shoulder muscle engagement and less effect on the arm muscles. Subjective analysis results revealed that Model B and Model C were rated with higher preference by the participants. Results have revealed that shoulder muscle is activated more and subjected high muscle fatigue while performing wall plastering tasks. Also, circular-shaped handles with varying cross sections and curved shape handles were rated as highly compared to wall plastering work. Findings from this study can be used for studying the relationship between mason trowel designs and working posture with muscle activation.

Keywords


Construction workers, Muscle activity, Plastering work, Surface electromyography, WMSD.

References