APLICAÇÃO DO QFD PARA SUPORTE A GESTÃO DE CADEIA DE SUPRIMENTOS: LEVANTAMENTO TEÓRICO

Autores

  • Fernanda Paes Arantes Universidade Estácio de Sá, São Luiz/MA, Brasil
  • Emanoela Moura Toscano Universidade Estácio de Sá, São Luiz/MA, Brasil

DOI:

https://doi.org/10.22408/reva702022108050-66

Resumo

A gestão da cadeia de suprimentos (SCM) exige das empresas uma reestruturação organizacional, integrando suas atividades com os demais membros a fim de aumentar a eficiência nos processos. A utilização de ferramentas de outras áreas tem sido proposta para auxiliar no alinhamento dos fluxos ao longo da cadeia, entre elas destaca-se o QFD, que permite traduzir demandas logísticas em características de processos correspondentes, proporcionando rapidez e eficiência na comunicação entre os membros. Assim, o presente artigo objetiva fazer uma análise teórica das publicações de SCM que utilizaram QFD, identificando como este método pode contribuir para a SCM. Identificou-se que a utilização do QFD pode ser dividida em quatro abordagens: ao longo da cadeia de suprimentos, em um membro isolado, para toda a cadeia, e em um elo. As aplicações em diferentes contextos da SCM indicam que existem muitas possibilidades para esta combinação, reduzindo importantes lacunas no conhecimento desta área. Palavras-chave: gestão da cadeia de suprimentos, qualidade, QFD.

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Referências

AHMED, S.; AMAGOH, F. Application of QFD in product development of a glass manufacturing company in Kazakhstan. Benchmarking, v. 17, n. 2, p. 195-213, 2010.

AKAO, Y. Quality Function Deployment: integrating customer requirements into product design. Cambridge, MA: Productivity Press, 1990.

AMIN, S. H.; ZHANG, G. A three-stage model for closed-loop supply chain configuration under uncertainty. International Journal of Production Research, v. 51, n. 5, p. 1405-1425,

AYAG, Z.; SAMANLIOGLU, F.; BUYUKOZKAN, G. A fuzzy QFD approach to determine supply chain management strategies in the dairy industry. Journal of Intelligent Manufacturing, v. 24, n. 6, p. 1111-1122, Dec 2013.

BARAD, M. Flexibility development: a personal retrospective. International Journal of Production Research, v. 51, n. 23-24, p. 6803-6816, 2013.

BARAMICHAI, M.; ZIMMERS JUNIOR, E. W.; MARANGOS, C. A. Agile supply chain transformation matrix: an integrated tool for creating an agile enterprise. Supply Chain Management-an International Journal, v. 12, n. 5, p. 334-348, 2007 2007.

BEREKETLI, I.; GENEVOIS, M. E.; ULUKAN, H. Z. Green product design for mobile phones. World Academy of Science, Engineering and Technology, v. 58, p. 213-217, 2009.

BOTTANI, E. A fuzzy QFD approach to achieve agility. International Journal of Production Economics, v. 119, n. 2, p. 380-391, Jun 2009.

BOTTANI, E.; RIZZI, A. Strategic management of logistics service: A fuzzy QFD approach. International Journal of Production Economics, v. 103, n. 2, p. 585-599, Oct 2006.

BUYUKOZKAN, G.; BERKOL, C. Designing a sustainable supply chain using an integrated analytic network process and goal programming approach in quality function deployment.

Expert Systems with Applications, v. 38, n. 11, p. 13731-13748, 2011.

BUYUKOZKAN, G.; CIFCI, G. An integrated QFD framework with multiple formatted and incomplete preferences: A sustainable supply chain application. Applied Soft Computing, v. 13, n. 9, p. 3931-3941, Sep 2013a.

______. An integrated QFD framework with multiple formatted and incomplete preferences: A sustainable supply chain application. Applied Soft Computing Journal, v. 13, n. 9, p. 3931-3941, 2013b.

CARDOSO, J. D. F.; CASAROTTO FILHO, N.; MIGUEL, P. A. C. Application of Quality Function Deployment for the development of an organic product. F ood Quality and Preference, v. 40, p. 180-190, 2015.

CARNEVALLI, J. A.; MIGUEL, P. A. C. Revisão, análise e classificação da literatura sobre QFD: tipos de pesquisa, dificuldades de uso e benefícios do método. Gestão & Produção, v. 14, n. 3, p. 557-579, 2007.

CARNEVALLI, J. A.; SASSI, A. C.; MIGUEL, P. A. C. Aplicação do QFD no

desenvolvimento de produtos: levantamento sobre seu uso e perspectivas para pesquisas futuras. Gestão & Produção, v. 11, n. 1, p. 33-49, 2004.

CHAN, L.-K.; WU, M.-L. Quality function deployment: A literature review. European Journal of Operational Research, v. 143, p. 463-497, 2002.

CHOW, W. S. et al. Supply chain management in the US and Taiwan: An empirical study. Omega, v. 36, p. 665-679, 10// 2008.

DILL, M. D. et al. Procedural priorities of the pork loin supply chain. Journal of Technology Management and Innovation, v. 9, n. 1, p. 84-92, 2014.

ELO, S.; KYNGAES, H. The qualitative content analysis process. Journal of Advanced Nursing, v. 62, n. 1, p. 107-115, Apr 2008.

FAWCETT, S. E.; MAGNAN, G. M.; MCCARTER, M. W. Benefits, barriers, and bridges to effective supply chain management. Supply Chain Management-an International Journal, v. 13, p. 35-48, 2008 2008.

FLYNN, B. B.; HUO, B.; ZHAO, X. The impact of supply chain integration on performance:

A contingency and configuration approach. Journal of Operations Management, v. 28, n. 1,

p. 58-71, Jan 2010.

FORMÁGGIO, I. A.; MIGUEL, P. A. C. Múltiplo estudo de casos sobre a inserção do qfd no

processo de desenvolvimento de novos produtos. Produto & Produção, v. 10, n. 2, p. 62-86,

FROHLICH, M. T.; WESTBROOK, R. Arcs of integration: an international study of supply

chain strategies. Journal of Operations Management, v. 19, n. 2, p. 185-200, Feb 2001.

GE, X.; GU, Y. Research on functional logistics provider selection based on QFD modeling.

Journal of Applied Sciences, v. 13, n. 17, p. 3563-3568, 2013.

GERMANI, M.; MENGONI, M.; PERUZZINI, M. A QFD-based method to support SMEs in

benchmarking co-design tools. Computers in Industry, v. 63, n. 1, p. 12-29, Jan 2012.

GUNASEKARAN, N. et al. Optimizing supply chain management using fuzzy approach.

Journal of Manufacturing Technology Management, v. 17, n. 6, p. 737-749, 2006.

HAUSER, J. R.; CLAUSING, D. The House of Quality. Harvard Business Review, v. 66, n. 5/6, p. 63-73, 1988.

HO, W.; DEY, P. K.; LOCKSTROM, M. Strategic sourcing: a combined QFD and AHP approach in manufacturing. Supply Chain Management-an International Journal, v. 16, n. 6, p. 446-461, 2011 2011.

HSIEH, H. F.; SHANNON, S. E. Three approaches to qualitative content analysis. Qualitative Health Research, v. 15, n. 9, p. 1277-1288, Nov 2005.

HSU, C. H.; CHANG, A. Y.; KUO, H. M. Data mining QFD for the dynamic forecasting of life cycle under green supply Chain. WSEAS Transactions on Computers, v. 11, n. 1, p. 1- 10, 2012.

JIANG, J. C.; SHIU, M. L.; TU, M. H. Quality function deployment (QFD) technology designed for contract manufacturing. TQM Magazine, v. 19, n. 4, p. 291-307, 2007.

KARSAK, E. E.; DURSUN, M. An integrated supplier selection methodology incorporating QFD and DEA with imprecise data. Expert Systems with Applications, v. 41, p. 6995-7004, 2014.

KUBOTA, F. I.; MIGUEL, P. A. C. Modularidade e desdobramento da função qualidade: uma análise teórica de publicações. Revista Gestão Industrial, v. 9, n. 3, p. 700-726, 2013.

KUEI, C. H. et al. Developing supply chain strategies based on the survey of supply chain quality and technology management. International Journal of Quality and Reliability Management, v. 19, n. 7, p. 889-901, 2002.

LAI, C. J.; HSU, C. H.; KUO, H. M. An empirical study of constructing a dynamic mining and forecasting system for the life cycle assessment-based green supply chain. WSEAS Transactions on Systems, v. 11, n. 4, p. 129-139, 2012.

LAI, C. J.; HSU, C. H.; OU-YANG, F. A hybrid mining and predicting system based on quadratic exponential smoothing model and grey relational analysis for green supply chain.

WSEAS Transactions on Systems, v. 11, n. 8, p. 336-348, 2012.

LI, D. et al. A Webbased tool and a heuristic method for cooperation of manufacturing supply chain decisions. Journal of Intelligent Manufacturing, v. 12, n. 5-6, p. 433-453, 2001 2001.

LIAO, C.-N.; KAO, H.-P. An evaluation approach to logistics service using fuzzy theory, quality function development and goal programming. Computers & Industrial Engineering,

v. 68, n. 1, p. 54-64, Feb 2014.

MAROUŠEK, R. Possible application of quality house in industrial supply chain resilience assessment. Metal 2013: 22nd International Conference on Metallurgy and Materials, 2013. Czech Republic. p.1722-1728.

MENTZER, J. T. et al. Defining supply chain management. Journal of Business Logistics, v. 22, p. 1-25, 2001.

NASPETTI, S.; ALBERTI, F.; SOLFANELLI, F. Quality determinants in the organic cheesesupply chain: A Quality Function Deployment approach. New Medit, v. 11, n. 4 SPECIAL, p.

-64, 2012.

NI, M.; XU, X.; DENG, S. Extended QFD and data-mining-based methods for supplier

selection in mass customization. International Journal of Computer Integrated

Manufacturing, v. 20, n. 2-3, p. 280-291, 2007.

OU, C. S. et al. A structural model of supply chain management on firm performance.

International Journal of Operations & Production Management, v. 30, p. 526-545, 2010

PALANISAMY, P.; ZUBAR, H. A. Hybrid MCDM approach for vendor ranking. Journal of

Manufacturing Technology Management, v. 24, n. 6, p. 905-928, 2013.

PAN, T. Value Chain Analysis method of Smart Logistics using fuzzy theory. Information

Technology Journal, v. 11, n. 4, p. 441-445, 2012.

PRAJOGO, D.; OLHAGER, J. Supply chain integration and performance: The effects of

long-term relationships, information technology and sharing, and logistics integration.

International Journal of Production Economics, v. 135, n. 1, p. 514-522, Jan 2012.

PRASAD, K. G. D.; SUBBAIAH, K. V.; RAO, K. N. Supply chain design through QFDbased optimization. Journal of Manufacturing Technology Management, v. 25, n. 5, p.

-733, 2014.

PUJAWAN, I. N.; GERALDIN, L. H. House of risk: A model for proactive supply chain risk

management. Business Process Management Journal, v. 15, n. 6, p. 953-967, 2009.

RANGEL, D. A.; OLIVEIRA, T. K. D.; LEITE, M. S. A. Supply chain risk classification:

discussion and proposal. International Journal of Production Research, 2014.

RICH, N.; HINES, P. Supply-chain management and time-based competition: the role of the

supplier association. International Journal of Physical Distribution & Logistics

Management, v. 27, p. 210 - 225, 1997.

SCHELLER, A.; MIGUEL, P. A. C. Aplicação do método QFD na proposição de nova matriz

curricular para um curso de graduação de uma universidade pública do Sul do Brasil. Revista

de Ensino de Engenharia, v. 31, n. 2, p. 1-16, 2012.

SCOTT, J. A.; HO, W.; DEY, P. K. Strategic sourcing in the UK bioenergy industry.

International Journal of Production Economics, v. 146, n. 2, p. 478-490, Dec 2013.

SOHN, S. Y.; CHOI, I. S. Fuzzy QFD for supply chain management with reliability

consideration. Reliability Engineering & System Safety, v. 72, n. 3, p. 327-334, Jun 2001.

SOROOR, J. et al. An advanced adoption model and an algorithm of evaluation agents in

automated supplier ranking. Computers & Mathematics with Applications, v. 62, n. 10, p.

-3662, Nov 2011.

SOROOR, J.; TAROKH, M. J.; ABEDZADEH, M. Automated bid ranking for decentralized

coordination of construction logistics. Automation in Construction, v. 24, p. 111-119, Jul

SOROOR, J. et al. Intelligent evaluation of supplier bids using a hybrid technique in

distributed supply chains. Journal of Manufacturing Systems, v. 31, n. 2, p. 240-252, Apr

TANIK, M. Improving "order handling" process by using QFD and FMEA methodologies: A

case study. International Journal of Quality and Reliability Management, v. 27, n. 4, p.

-423, 2010.

TIDWELL, A.; SUTTERFIELD, J. S. Supplier selection using QFD: A consumer products

case study. International Journal of Quality and Reliability Management, v. 29, n. 3, p.

-294, 2012.

TOLOIE-ESHLAGHI, A.; ASADOLLAHI, A.; POOREBRAHIMI, A. The role of Enterprise Resources Planning (ERP) in the contribution and integration of the information in the Supply

Chain. European Journal of Social Sciences, v. 20, n. 1, p. 16-27, 2011.

TSENG, Y.-H.; LIN, C.-T. Enhancing enterprise agility by deploying agile drivers, capabilities and providers. Information Sciences, v. 181, n. 17, p. 3693-3708, Sep 1 2011.

YANG, C.-L.; HUANG, R.-H.; KE, W.-C. Applying QFD to build green manufacturing system. Production Planning & Control, v. 23, n. 2-3, p. 145-159, 2012.

ZAREI, M.; FAKHRZAD, M. B.; PAGHALEH, M. J. Food supply chain leanness using a developed QFD model. Journal of Food Engineering, v. 102, n. 1, p. 25-33, Jan 2011.

ZHANG, Z.; AWASTHI, A. Modelling customer and technical requirements for sustainable

supply chain planning. International Journal of Production Research, v. 52, n. 17, p. 5131-

, 2014.

ZOKAEI, K.; HINES, P. Achieving consumer focus in supply chains. International Journal of Physical Distribution and Logistics Management, v. 37, n. 3, p. 223-247, 2007

Publicado

2022-03-21

Como Citar

Arantes, F. P., & Toscano, E. M. (2022). APLICAÇÃO DO QFD PARA SUPORTE A GESTÃO DE CADEIA DE SUPRIMENTOS: LEVANTAMENTO TEÓRICO. Revista Valore, 7, 50–66. https://doi.org/10.22408/reva702022108050-66