Poka-Yoke Method Implementation in Industries: A Systematic Literature Review
DOI:
https://doi.org/10.22441/ijiem.v1i1.8803Keywords:
Poka yoke, Quality, Manufacturing industry, Services industryAbstract
The use of this poka-yoke approach is influential in preventing human error and can increase machine utilization and efficiency levels, to reduce breakdowns and product defects. The fundamental principle of the successful implementation of Poka Yoke is when everyone in the organization places quality attributes as important. This study aimed to determine the level of success of the Poka-Yoke method in improving quality in the manufacturing and service industries. The technique used is to conduct a review of research papers. The only 33 journals (around 69%) use the implementation of Poka-Yoke. And 15 journals (31%) as a review of the method. The method used is to review research papers that consistently apply Poka-Yoke. The obtained six similarities in the function and purpose of improvisation from the application of the poka-yoke method, namely reducing defects, improving the design, saving costs, increasing productivity, reducing losses, and saving time. Poka-Yoke method can improve the quality of the manufacturing and service industry in future research.Downloads
References
Abu, F., Gholami, H., Mat Saman, M. Z., Zakuan, N., & Streimikiene, D. (2019). The implementation of lean manufacturing in the furniture industry: A review and analysis on the motives, barriers, challenges, and the applications. Journal of Cleaner Production, 234, 660–680. https://doi.org/10.1016/j.jclepro.2019.06.279
Ahmad, A. A., Rashid, A. A., Wong, F. R., & Iqbal, M. (2017). Worker safety improvement at paper pleating production line using poka-yoke concept - A case study in automotive industry. Journal of Mechanical Engineering, SI 4(5), 183–196. https://jmeche.uitm.edu.my/wp-content/uploads/bsk-pdf-manager/16_SI_Vol_4_5_ID_243_140.pdf
Aikhuele, D. O., & Turan, F. M. (2016). Proposal for a Conceptual Model for Evaluating Lean Product Development Performance: A Study of LPD Enablers in Manufacturing Companies. IOP Conference Series: Materials Science and Engineering, 114(1). https://doi.org/10.1088/1757-899X/114/1/012047
Antonelli, D., & Stadnicka, D. (2019). Predicting and preventing mistakes in human-robot collaborative assembly. IFAC-PapersOnLine, 52(13), 743–748. https://doi.org/10.1016/j.ifacol.2019.11.204
Azzat, H. N. (2018). Application of Poka-Yoke in industrial organizations A field study on the Karungi Group of Companies. Journal of University of Babylon for Engineering Sciences, 26(9), 268-286. https://journalofbabylon.com/index.php/JUBES/article/view/1755
Bălan, E., & Janłă, L. M. (2019). Solving Quality Problems With the Poka-Yoke Tool Assistance. Case Study. Annals of the Academy of Romanian Scientists Series on Engineering Sciences, 11(1), 5. http://aos.ro/wp-content/anale/TVol11Nr1Art.1.pdf
Baseer, K. K., Reddy, A. R. M., & Bindu, C. S. (2017). FPYM: Development and application of a fuzzy-based Poka-Yoke model for the improvement of software performance. International Journal of Innovative Computing and Applications, 8(2), 65–80. https://doi.org/10.1504/IJICA.2017.084889
Belu, N., Ionescu, L. M., Misztal, A., & Mazəre, A. (2015). Poka Yoke system based on image analysis and object recognition. IOP Conference Series: Materials Science and Engineering, 95(1). https://doi.org/10.1088/1757-899X/95/1/012138
Biswas, S., & Chakraborty, A. (2016). Using Poka -Yoke for the Development of SMEs American Journal of Engineering Research (AJER). 9, 15–18. http://www.ajer.org/papers/v5(09)/C0509015018.pdf
Chandra, K., Kr, P., & Alok, V. (2017). Implementation of Torque Wrench Poka-Yoke in Automobile Industry , International Journal for Scientific Research and Development. 5(01), 1284–1286. http://ijsrd.com/Article.php?manuscript=IJSRDV5I10971
Che-Ani, M. N., Sapian, A. S., Azid, I. A., & Kamaruddin, S. (2017). Solving production processes disparity issue through implementation of Poka-Yoke concept. International Journal of Materials, Mechanics and Manufacturing, 5(4), 278-281. https://doi.org/10.18178/ijmmm.2017.5.4.333
Dewita, H., Ali Tosa, F., Santoso, Y., Herliani Kusumah, L., & Yetti, H. (2019). Application Poka-Yoke to Capture Defect (A Case Study in Industry Component Otomotive). International Journal of Industrial Engineering, 6(1), 14–17. https://doi.org/10.14445/23499362/ijie-v6i1p103
Diego, B., Silva, D. S., Antonio, N., Sampaio, D. S., Wilson, J., Silva, D. J., & Bastos, B. (2018). Implementation of Poka-Yoke System in an Automotive Company. International Journal of Research Studies in Science, Engineering and Technology 5(3), 26–32. http://ijrsset.org/pdfs/v5-i3/5.pdf
Girase, K., Jain, A., Yavankar, S., & Kokate, P. M. D. (2016). Filter Rod Detection by using Poka Yoke. International Journal for Scientific Research and Development. .3(11), 466–469. http://ijsrd.com/Article.php?manuscript=IJSRDV3I110193
Gupta, U. S., Nainani, S., Hora, R., Saxena, P., Patel, S., & Rathoure, S. (2017). Static Analysis of Pokayoke for Stud and Push Rod Holes Present on Cylinder Head. International Journal of Engineering Trends and Technology, 46(9), 483–486. https://doi.org/10.14445/22315381/ijett-v46p285
Hudori, M. (2013). Implementation of Poka Yoke On Administration of The Palm Oil Mill. In Proceeding 8th International Seminar on Industrial Engineering Management, QM (pp. 21-25). https://isiem.net/wp-content/uploads/2015/09/QM-5-M-Hudori-2015.pdf
Jamal, A., Kumar, U., Ansari, A. A., & Singh, B. (2015). Poka-Yoke and Quality Control on Traub Machine for Kick Starter Driven Shaft. Journal of Material Science and Mechanical Engineering. 2(7), 10–15. https://www.krishisanskriti.org/vol_image/22Jul20150507155.pdf
Khandare, N. H., & Deshmukh, S. S. (2018). An elimination type of Pokayoke-a game changer tool in the propeller shaft assembly. International Journal of Mechanical and Production Engineering Research and Development, 8(5), 223–232. https://doi.org/10.24247/ijmperdoct201825
Khorasani, S. T., Feizi, R., & Tohidi, H. (2018). The effect of poka-yoke implementation on intravenous medication error in hospital inpatient pharmacy. IISE Annual Conference and Expo 2018, March 2019, 449–454. http://www.eh-cloud.com/foreign_meeting_index/view/88c0474f770c449eaefd3b5c23c65e79.htm
Kumar, B., & Rakesh, P. (2017). Kumar: Implementation of Poka Yoke in Needle Bearing Assembly Process. International Journal of Engineering Science Invention, 6(11), 1-10. http://www.ijesi.org/papers/Vol(6)11/Version-3/A0611030110.pdf
Kurhade, A. J. (2015). Review on “Poka-Yoke: Technique to Prevent Defects.” International Journal Of Engineering Science & Research Technology, 4(11), 652–659. http://www.ijesrt.com/November-2015.html
Lazarevic, M., Mandic, J., Sremcev, N., Vukelic, D., & Debevec, M. (2019). A systematic literature review of poka-yoke and novel approach to theoretical aspects. Strojniski Vestnik/Journal of Mechanical Engineering, 65(7–8), 454–467. https://doi.org/10.5545/sv-jme.2019.6056
Lopez-Perea, E. M., Mariscal Saldaña, M. A., & García Herrero, S. (2016). New ways to evaluate learning. Assessing teamwork using TPM and a Poka-Yoke design. 287–294. https://doi.org/10.4995/head16.2016.2703
Malega, P. (2018). Poka-Yoke-solution to human errors in the production process. The International Journal of Business Management and Technology, 2(5), 207–213. http://www.theijbmt.com/archive/0923/1129673523.pdf
Muharam, M., & Latif, M. (2019). Design of poka-yoke system based on fuzzy neural network for rotary-machinery monitoring. IOP Conference Series: Materials Science and Engineering, 602(1). https://doi.org/10.1088/1757-899X/602/1/012003
Mura, M. D., Dini, G., & Failli, F. (2016). An Integrated Environment Based on Augmented Reality and Sensing Device for Manual Assembly Workstations. Procedia CIRP, 41, 340–345. https://doi.org/10.1016/j.procir.2015.12.128
Niranjan, & Sharma, Y. (2015). Implementation of poka-yoke in Indian manufacturing industry by: enablers, barriers and questionnaire based survey. International Journal of R&D in Engineering, Science and Managemen, 1(Vii), 147–155. https://www.rndpublications.com/journal
Patria, R., Wulandari, A., Tyas, S. K., & Hasibuan, S. (2019). Poka Yoke In Collaborative Inventory Practice To Reduce Action In Automotive Manufacturing. 10(6), 1196–1201. https://www.ijser.org/researchpaper/Poka-Yoke-In-Collaborative-Inventory-Practice-To-Reduce-Action-In-Automotive-Manufacturing.pdf
Pekin, E., & Çil, İ. Kauçuk sektörü Poka-Yoke uygulaması. Sakarya University Journal of Science, 19(2), 163-170. http://www.saujs.sakarya.edu.tr/en/pub/issue/20704/220648
Poladia, V. P., & Shinde, D. D. K. (2017). A Review on use of Mistake Proof (Poka Yoke) Locating Fixture on Ultra SD Cartridge Assembly Line. International Journal of Advanced Engineering Research and Science, 4(1), 164–167. https://doi.org/10.22161/ijaers.4.1.26
Premanand, D. N., V, D. K., P, S., & Umamaheswari, D. S. (2018). A Study On Implementation Of Poka– Yoke Technique In Improving The Operational Performance By Reducing The Rejection Rate In Thr Assembly Line. International Journal of Pure and Applied Mathematics, 119(17), 2177–2191. https://acadpubl.eu/hub/2018-119-17/2/180.pdf
Rismawan, E., Suroso, A., & Sirait, J. S. P. (2018). Tool Design Process Finishing Work Part Bottom Cover With Foka-Yoke and Model Kano. International Journal of Engineering and Technology, 10(5), 1422–1433. https://doi.org/10.21817/ijet/2018/v10i5/181005050
Rodrigues, A. P. (2019). Aplicação do dispositivo poka yoke para melhoria de qualidade na segurança do trabalho : um estudo de caso Application of the poka yoke device for quality improvement in work safety : a case study. Journal of Lean Systems. 4 (2), 71–90. http://www.nexos.ufsc.br/index.php/lean/article/view/2549
Sachin RS, Ravikumar Beeranur, & Sharavanan. (2015). Design and Automation of HSU Assembly Station by Poka Yoke. International Journal of Engineering Research And, V4(06), 984–990. https://doi.org/10.17577/ijertv4is060920
Sancheti, S. (2018). Improving Quality and Productivity in Switchgear Tank Welding through Poka-Yoke and Waste Elimination in Robotic Welding Shop. International Research Journal of Engineering and Technology (IRJET). 5(12),1611–1616. https://www.irjet.net/archives/V5/i12/IRJET-V5I12305.pdf
Sarai, N., Hosana, E., & Sarai, N. (2018). Impact of using Computerised Shigeo Shingo Poka Yoke on Risk Management in Zimbabwe ’ s Petroleum Industry. International Journal of Scientific Research in Computer Science, Engineering and Information Technology. 3(6), 85–91. http://ijsrcseit.com/CSEIT1835273
Shelke, G. D., Javed, M., & Walde, S. D. (2007). Implementation of total productive maintenance in food industry: A case study. Journal of Quality in Maintenance Engineering, 13(1), 5–18. https://doi.org/10.1108/13552510710735087
Soni, P., & Yadav, T. (2018). Review Paper on Productivity Improvement by using Poka-Yoke. International Research Journal of Engineering and Technology (IRJET). 5(12),761–763. https://www.irjet.net/archives/V5/i12/IRJET-V5I12139.pdf
Sundaramali, G., Abinav Shankar, S., & Manoj Kummar, M. (2018). Non-conformity recovery and safe disposal by Poka Yoke and hallmarking in a piston unit. International Journal of Productivity and Quality Management, 24(4), 460–474. https://doi.org/10.1504/IJPQM.2018.093445
Tak, P. D., & Wagh, S. S. (2015). Poka Yoke Implimentation on Punching Machine: a Case Study. International Journal of Research in Engineering and Technology, 04(02), 98–106. https://doi.org/10.15623/ijret.2015.0402014
Thareja, P. (2016). Poka Yoke: Poking into Mistakes for Total Quality!. OmniScience: A Multi-disciplinary Journal, 6(2), 46-53. http://www.stmjournals.com/index.php?journal=OSMJ&page=article&op=view&path%5B%5D=7725
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