243
Views
7
CrossRef citations to date
0
Altmetric
Articles

Risk-based quality accident ranking approach using failure mechanism and Axiomatic domain mapping

ORCID Icon, , &

References

  • Ahn, K. I., Shin, J. U., & Kim, W. T. (2016). Severe accident analysis of plant-specific spent fuel pool to support a SFP risk and accident management. Annals of Nuclear Energy, 89, 70–83. doi: 10.1016/j.anucene.2015.11.024
  • Arezes, P. M. (2015). Analysis of integrated management systems from various perspectives. Total Quality Management & Business Excellence, 26(12), 1311–1334.
  • Buldyrev, S. V. (2012). Cascading failures in interdependent lattice networks: The critical role of the length of dependency links. Physical Review Letters, 108(22), 1778–1782.
  • Chang, S. C. (1999). Fuzzy production inventory for fuzzy product quantity with triangular fuzzy number. Fuzzy Sets and Systems, 107(1), 37–57. doi: 10.1016/S0165-0114(97)00350-3
  • Chemweno, P., Pintelon, L., De Meyer, A. M., Muchiri, P. N., Van Horenbeek, A., & Wakiru, J. (2017). A dynamic risk assessment methodology for maintenance decision support. Quality and Reliability Engineering International, 33(3), 551–564. doi: 10.1002/qre.2040
  • Curkovic, S., & Sroufe, R. (2007). Total quality environmental management and total cost assessment: An exploratory study. International Journal of Production Economics, 105(2), 560–579. doi: 10.1016/j.ijpe.2006.04.021
  • Gavious, A., Mizrahi, S., Shani, Y., & Minchuk, Y. (2009). The costs of industrial accidents for the organization: Developing methods and tools for evaluation and cost–benefit analysis of investment in safety. Journal of Loss Prevention in the Process Industries, 22(4), 434–438. doi: 10.1016/j.jlp.2009.02.008
  • He, Y. H., Gu, C. C., He, Z. Z., & Cui, J. M. (2018). Reliability-oriented quality control approach for production process based on RQR chain. Total Quality Management & Business Excellence, 29(5–6), 652–672. doi: 10.1080/14783363.2016.1224086
  • He, Y. H., Tang, X. Q., & Chang, W. B. (2010). Technical decomposition approach of critical to quality characteristics for product design for Six Sigma. Quality and Reliability Engineering International, 26(4), 325–339.
  • He, Y. H., Wang, L. B., He, Z. Z., & Xie, M. (2016). A fuzzy TOPSIS and rough set based approach for mechanism analysis of product infant failure. Engineering Applications of Artificial Intelligence, 47, 25–37. doi: 10.1016/j.engappai.2015.06.002
  • He, Y. H., Zhu, C. L., He, Z. Z., Gu, C. C., & Cui, J. M. (2017). Big data oriented root cause identification approach based on Axiomatic domain mapping and weighted association rule mining for product infant failure. Computers & Industrial Engineering, 109, 253–265. doi: 10.1016/j.cie.2017.05.012
  • Jenkins, D. P., Salmon, P. M., Stanton, N. A., & Walker, G. H. (2010). A systemic approach to accident analysis: A case study of the Stockwell shooting. Ergonomics, 53(1), 1–17. doi: 10.1080/00140130903311625
  • Karanikas, N. (2015). An introduction of accidents’ classification based on their outcome control. Safety Science, 72, 182–189. doi: 10.1016/j.ssci.2014.09.006
  • Lee, S., & Halpin, D. W. (2003). Predictive tool for estimating accident risk. Journal of Construction Engineering and Management, 129(4), 431–436. doi: 10.1061/(ASCE)0733-9364(2003)129:4(431)
  • Li, Y. W., Su, G. F., Zhang, X. L., Zhang, S. M., & Yuan, H. Y. (2015). Analysis of school bus accidents in China. Natural Hazards, 79(2), 723–734. doi: 10.1007/s11069-015-1867-7
  • Liu, H. C., Chen, Y. Z., You, J. X., & Li, H. (2016). Risk evaluation in failure mode and effects analysis using fuzzy digraph and matrix approach. Journal of Intelligent Manufacturing, 27(4), 805–816. doi: 10.1007/s10845-014-0915-6
  • Liu, G. Y., & Yokoyama, S. (2015). Proposal for a quantitative skill risk evaluation method using fault tree analysis. IEEE Transactions On Engineering Management, 62(2), 266–279. doi: 10.1109/TEM.2015.2413357
  • Martins, M. R., & Maturana, M. C. (2013). Application of Bayesian belief networks to the human reliability analysis of an oil tanker operation focusing on collision accidents. Reliability Engineering & System Safety, 110, 89–109. doi: 10.1016/j.ress.2012.09.008
  • Nishikawa, M., Kato, T., Homma, T., & Takahara, S. (2016). Changes in risk perceptions before and after nuclear accidents: Evidence from Japan. Environmental Science & Policy, 55, 11–19. doi: 10.1016/j.envsci.2015.08.015
  • Pehrsson, L., Ng, A. H. C., & Stockton, D. (2013). Industrial cost modelling and multi-objective optimisation for decision support in production systems development. Computers & Industrial Engineering, 66(4), 1036–1048. doi: 10.1016/j.cie.2013.08.011
  • Roy, R., Souchoroukov, P., & Griggs, T. (2008). Function-based cost estimating. International Journal of Production Research, 46(10), 2621–2650. doi: 10.1080/00207540601094440
  • Ruan, S. J., Liu, J. H., & Zhuang, C. B. (2014). Multi-dimensional assembly process data management method based on workflow. Advanced Materials Research, 1061–1062, 696–700. doi: 10.4028/www.scientific.net/AMR.1061-1062.696
  • Samani, M. A., Ismail, N., Leman, Z., & Zulkifli, N. (2017). Development of a conceptual model for risk-based quality management system. Total Quality Management & Business Excellence. doi: 10.1080/14783363.2017.1310617
  • Shi, J. (2013). Data fusion for in-process quality improvement. Proceedings of the 5th Manufacturing Engineering Society International Conference, Zaragoza, Spain.
  • Simonsen, I., Buzna, L., Peters, K., Bornholdt, S., & Helbing, D. (2008). Transient dynamics increasing network vulnerability to cascading failures. Physical Review Letters, 100(21), 2539–2541. doi: 10.1103/PhysRevLett.100.218701
  • Snieska, V., Daunoriene, A., & Zekeviciene, A. (2013). Hidden costs in the evaluation of quality failure costs. Inzinerine Ekonomika-Engineering Economics, 24(3), 176–186.
  • Suh, N. P. (2001). Axiomatic design: Advances and applications. New York: Oxford university press.
  • Supciller, A. A., & Abali, N. (2015). Occupational health and safety within the scope of risk analysis with fuzzy proportional risk assessment technique (fuzzy PRAT). Quality and Reliability Engineering International, 31(7), 1137–1150. doi: 10.1002/qre.1908
  • Thekdi, S., & Aven, T. (2016). An enhanced data-analytic framework for integrating risk management and performance management. Reliability Engineering & System Safety, 156, 277–287. doi: 10.1016/j.ress.2016.07.010
  • Veil, S. R., Buehner, T., & Palenchar, M. J. (2011). A work-in-process literature review: Incorporating social media in risk and crisis communication. Journal of Contingencies and Crisis Management, 19(2), 110–122. doi: 10.1111/j.1468-5973.2011.00639.x
  • Wang, F., Li, J., & Shi, Y. H. (2009). Research on grading of traffic response and traffic organization countermeasure for urban emergency. Journal of Transportation Enterprise Management, 24(9), 3–4.
  • Wang, Y. F., Xie, M., Chin, K. S., & Fu, X. J. (2013). Accident analysis model based on Bayesian network and evidential reasoning approach. Journal of Loss Prevention in the Process Industries, 26(1), 10–21. doi: 10.1016/j.jlp.2012.08.001
  • Wang, C. N., Xing, L. D., & Levitin, G. (2015). Probabilistic common cause failures in phased-mission systems. Reliability Engineering & System Safety, 144, 53–60. doi: 10.1016/j.ress.2015.07.004
  • Xing, L., Boddu, P., Sun, Y., & Wang, W. (2010). Reliability analysis of static and dynamic fault-tolerant systems subject to probabilistic common-cause failures. Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability, 224(1), 43–53.
  • Xing, L., Meshkat, L., & Donohue, S. (2007). Reliability analysis of hierarchical computer-based systems subject to common-cause failures. Reliability Engineering & System Safety, 92(6), 351–359. doi: 10.1016/j.ress.2006.04.010
  • Zio, E. (2009). Reliability engineering: Old problems and new challenges. Reliability Engineering & System Safety, 94(2), 125–141. doi: 10.1016/j.ress.2008.06.002

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.