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Journal articles on the topic 'QFD e FMEA'

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1

Ginn, D. M., D. V. Jones, H. Rahnejat, and M. Zairi. "The “QFD/FMEA interface”." European Journal of Innovation Management 1, no. 1 (1998): 7–20. http://dx.doi.org/10.1108/14601069810198448.

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2

Shaker, Fatemeh, Arash Shahin, and Saeed Jahanyan. "Developing a two-phase QFD for improving FMEA: an integrative approach." International Journal of Quality & Reliability Management 36, no. 8 (2019): 1454–74. http://dx.doi.org/10.1108/ijqrm-07-2018-0195.

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Purpose The purpose of this paper is to propose an integrative approach for improving failure modes and effects analysis (FMEA). Design/methodology/approach An extensive literature review on FMEA has been performed. Then, an integrative approach has been proposed based on literature review. The proposed approach is an integration of FMEA and quality function deployment (QFD). The proposed approach includes a two-phase QFD. In the first phase, failure modes are prioritized based on failure effects and in the second phase, failure causes are prioritized based on failure modes. The proposed appro
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3

Altuntas, Serkan, and Semih Kansu. "An innovative and integrated approach based on SERVQUAL, QFD and FMEA for service quality improvement." Kybernetes 49, no. 10 (2019): 2419–53. http://dx.doi.org/10.1108/k-04-2019-0269.

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Purpose The purpose of this paper is to propose an innovative and integrated approach based on service quality measurement (SERVQUAL), quality function deployment (QFD) and failure modes and effects analysis (FMEA) for service quality improvement. Design/methodology/approach The SERVQUAL scale is used for service quality measurement, QFD is used for service design and FMEA is used to prevent possible failures during service delivery. Findings A case study in a public hospital in Turkey is performed to show how the proposed approach works in practice. The results of the study show that the prop
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Way, Yusof, Muhammad Ridhuan Kamarudin, and Noor Iliana Mohd Salimi. "The Application of Reverse Engineering Tools and Rapid Prototyping Technology in Developing Automotive Components." Advanced Materials Research 576 (October 2012): 633–36. http://dx.doi.org/10.4028/www.scientific.net/amr.576.633.

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The important of Reverse Engineering (RE) and Rapid Prototyping (RP) process in the automotive sector has made the knowledge of its operation vital to engineers and designers. The purpose of this research is to apply and implement the RE and RP process and also integrate advance quality tools in the development of automotive components. The advance quality tools that been implemented are Quality Function Deployment (QFD) and Failure Mode Effect Analysis (FMEA). To produce the final products, a machine that works under Fused Deposition Modeling (FDM) principle is used. A manual window crank as
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Fernandes, José Márcio Ramos, and Marcelo Giroto Rebelato. "Proposta de um método para integração entre QFD e FMEA." Gestão & Produção 13, no. 2 (2006): 245–59. http://dx.doi.org/10.1590/s0104-530x2006000200007.

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Nos dias atuais, dois métodos voltados ao planejamento da qualidade mostram reconhecimento mundial pela sua utilidade e pelos relatos de sucessos obtidos com seu uso: QFD (Quality Function Deployment), no desenvolvimento do produto e do processo; e FMEA (Failure Mode and Effects Analysis), na análise de falhas. Estes dois métodos, entretanto, são freqüentemente vistos como ferramentas sem inter-relação e sua integração, quando ocorre na prática, é tradicionalmente insuficiente e mal explorada. Neste contexto, este artigo tem o objetivo de propor um método para a integração entre QFD e FMEA. A
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6

Krusche, T. "Integrative Nutzung von QFD und FMEA beı Entwurfsprozessen." Zeitschrift für wirtschaftlichen Fabrikbetrieb 92, no. 10 (1997): 507–10. http://dx.doi.org/10.1515/zwf-1997-921012.

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7

Jiang, Xing Yu, Shi Jie Wang, Jia Qi Jin, and Wan Shan Wang. "A Method of Quality Control for Networked Collaborative Product Development." Advanced Materials Research 118-120 (June 2010): 866–70. http://dx.doi.org/10.4028/www.scientific.net/amr.118-120.866.

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To cope with the challenges of product quality design system applied in networked collaborative product development (NCPD), a new method of quality control for NCPD-collaborative quality design mode, which integrates voice of customer, quality function deployment (QFD) and failure modes and effect analysis (FMEA) , and corresponding functional modules and framework were all put forward. This mode dealt mainly with constructing and running collaborative quality design system, integrated several enabling technologies such as the integration of QFD and FMEA, task distribution of quality design, i
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8

Frank, Alejandro Germán, Danilo Cuzzuol Pedrini, Márcia Elisa Echeveste, and José Luis Duarte Ribeiro. "Integração do QFD e da FMEA por meio de uma sistemática para tomada de decisões no processo de desenvolvimento de produtos." Production 24, no. 2 (2013): 295–310. http://dx.doi.org/10.1590/s0103-65132013005000036.

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Este artigo apresenta uma sistemática que orienta as ações a serem tomadas no processo de desenvolvimento de produtos (PDP) quanto ao atendimento da qualidade e confiabilidade. A sistemática foi desenvolvida por meio de uma pesquisa-ação e propõe a integração do QFD e da FMEA, permitindo decidir quais características da qualidade e confiabilidade são prioritárias para o desenvolvimento dos componentes do produto. A proposta traz duas contribuições: (i) uma modificação na avaliação dos indicadores de risco da FMEA, reduzindo a subjetividade de atribuição dos valores, e (ii) a integração desses
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Jiang, Xing Yu, Long Zhen Xu, Ling Tong, and Xin Min Zhang. "Product Lifecycle Oriented Quality Design System into Supply Chain." Advanced Materials Research 468-471 (February 2012): 2707–11. http://dx.doi.org/10.4028/www.scientific.net/amr.468-471.2707.

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To cope with the challenges of conventional quality design system applied in supply chain, a new method of product lifecycle oriented quality design mode, which integrates voice of customer, quality function deployment (QFD) and failure modes and effect analysis (FMEA), and corresponding organization and function model were all put forward. This mode dealt mainly with constructing and running product lifecycle oriented quality design system, integrated several key technologies such as the integration of QFD and FMEA, task distribution of quality design, integrated technology of computer-suppor
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Saviotti, Uryan Augusto. "Métodos QFD e FMEA para o desenvolvimento de novo produto – conceituação e estudo de caso DOI: 10.5585/exacta.v9i1.2406." Exacta 9, no. 1 (2011): 29–40. http://dx.doi.org/10.5585/exactaep.v9i1.2406.

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Algumas ferramentas da qualidade são utilizadas e adaptadas para oferecer suporte às atividades de planejamento e desenvolvimento de novos produtos. Dessa forma, neste trabalho tem-se como objetivo utilizar os métodos QFD (Quality Function Deployment ou Desdobramento da Função Qualidade) e FMEA (Failure Mode and Effect Analysis ou Análise de Modo e Efeito de Falhas), visando o atendimento da qualidade exigida pelo cliente, oriundo do QFD, e da confiabilidade do produto, proveniente do FMEA. Neste estudo, mostra-se a importância de distribuir a garantia da qualidade durante o desenvolvimento de
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Saviotti, Uryan Augusto. "Métodos QFD e FMEA para o desenvolvimento de novo produto – conceituação e estudo de caso." Exacta 9, no. 1 (2011): 29–40. http://dx.doi.org/10.5585/exactaep.v9n1.2406.

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Algumas ferramentas da qualidade são utilizadas e adaptadas para oferecer suporte às atividades de planejamento e desenvolvimento de novos produtos. Dessa forma, neste trabalho tem-se como objetivo utilizar os métodos QFD (Quality Function Deployment ou Desdobramento da Função Qualidade) e FMEA (Failure Mode and Effect Analysis ou Análise de Modo e Efeito de Falhas), visando o atendimento da qualidade exigida pelo cliente, oriundo do QFD, e da confiabilidade do produto, proveniente do FMEA. Neste estudo, mostra-se a importância de distribuir a garantia da qualidade durante o desenvolvimento de
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12

Jiang, Xing Yu, Xue Yan Sun, Shi Jie Wang, and Wan Shan Wang. "A New Method of Quality Control for New Product Development." Applied Mechanics and Materials 29-32 (August 2010): 2386–91. http://dx.doi.org/10.4028/www.scientific.net/amm.29-32.2386.

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To cope with the challenges of product quality design system applied in new product development (NPD), a new method of quality control for NPD-collaborative quality design mode, which integrates voice of customer, quality function deployment (QFD) and failure modes and effect analysis (FMEA) , and corresponding functional modules and framework were all put forward. This mode dealt mainly with constructing and running collaborative quality design system, integrated several enabling technologies such as the integration of QFD and FMEA, task distribution of quality design, integrated technology o
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13

Aprianto, Tri, Indra Setiawan, and Humiras Hardi Purba. "Implementasi metode Failure Mode and Effect Analysis pada Industri di Asia – Kajian Literature." MATRIK 21, no. 2 (2021): 165. http://dx.doi.org/10.30587/matrik.v21i2.2084.

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FMEA adalah suatu alat yang secara sistematis mengidentifikasi akibat atau konsekuensi dari kegagalan sistem atau proses, serta mengurangi atau mengeliminasi peluang terjadinya kegagalan. Tujuan dari makalah ini adalah untuk mengidentifikasi mode kegagalan potensial dan dampaknya untuk meningkatkan keandalan dan keamanan sistem yang kompleks. Selain itu teknik ini juga berguna untuk mengumpulkan data yang dibutuhkan untuk pengambilan keputusan dan pengendalian risiko. FMEA merupakan sebuah alat yang diintegrasikan dengan banyak metode seperti Quality Function Deployment (QFD), Root Cause Analy
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14

Harikumar, Priya, and P. G. Saleeshya. "Integrating FMEA, QFD and Lean for Risk management in hospitals." IOP Conference Series: Materials Science and Engineering 577 (December 7, 2019): 012040. http://dx.doi.org/10.1088/1757-899x/577/1/012040.

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15

Prá, Flávio De Borba, and Paulo A. Cauchick Miguel. "Evolução na aplicação do QFD: análise de publicações qualificadas em periódicos." Exacta 11, no. 1 (2013): 89–100. http://dx.doi.org/10.5585/exactaep.v11n1.4066.

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O propósito principal deste trabalho é apresentar uma análise das publicações sobre o método QFD em periódicos no período de 2007 a 2012. Também objetiva comparar os resultados com uma análise realizada entre 2000 e 2006 para verificar a evolução da aplicação do método. A busca bibliográfica foi realizada em bases de dados disponíveis via portal Capes, para identificar aspectos relevantes quanto ao conteúdo das publicações. Quanto à abordagem metodológica de pesquisa utilizada nos artigos analisados, o “estudo de caso” foi usado em quase metade das publicações, indicando a aplicação do QFD em
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16

Vysotskaya, Maria V. "Improve the integrity testing process based on QFD, FMEA and TRIZ." IOP Conference Series: Materials Science and Engineering 986 (December 12, 2020): 012051. http://dx.doi.org/10.1088/1757-899x/986/1/012051.

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Gu, Ying-Kui, Zi-xin Cheng, and Guang-qi Qiu. "An improved FMEA analysis method based on QFD and TOPSIS theory." International Journal on Interactive Design and Manufacturing (IJIDeM) 13, no. 2 (2019): 617–26. http://dx.doi.org/10.1007/s12008-018-00523-w.

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18

Vysotskaya, M. V., and A. Ya Dmitriev. "Improve the integrity testing process based on QFD, FMEA and TRIZ." IOP Conference Series: Materials Science and Engineering 1027 (January 12, 2021): 012029. http://dx.doi.org/10.1088/1757-899x/1027/1/012029.

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19

Paprocki, Marcin. "The use of methods and computer aided systems in the ecological design of product development." Mechanik 91, no. 1 (2018): 73–75. http://dx.doi.org/10.17814/mechanik.2018.1.17.

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Presented are two concepts of the process planning design procedure and the cost estimation aided by CAPP systems. Methods aiding ecological design of the product development, such as DFMA, DFE, FMEA, QFD and LCA, are presented too. The Eco-indicator 99 method which is used in the assessment of product life cycle impact on the environment (LCIA) is discussed. The paper recommends complementing the strategic enterprise backbone with the environmental component of the product life cycle assessment (Ecological Backbone).
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20

Chun, Nami. "Integration of QFD and FMEA to Improve Safety Management Process in Healthcare Services." Journal of the Korea Management Engineers Society 23, no. 3 (2018): 125–38. http://dx.doi.org/10.35373/kmes.23.3.8.

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21

Hassan, Alaa, Ali Siadat, Jean-Yves Dantan, and Patrick Martin. "Conceptual process planning – an improvement approach using QFD, FMEA, and ABC methods." Robotics and Computer-Integrated Manufacturing 26, no. 4 (2010): 392–401. http://dx.doi.org/10.1016/j.rcim.2009.12.002.

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22

Guo, Qi, Kuangjie Sheng, Zheng Wang, Xilin Zhang, hengyi Yang, and Rui Miao. "Research on Element Importance of Shafting Installation Based on QFD and FMEA." Procedia Engineering 174 (2017): 677–85. http://dx.doi.org/10.1016/j.proeng.2017.01.205.

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23

Chen, Liang-Hsuan, and Wen-Chang Ko. "Fuzzy linear programming models for new product design using QFD with FMEA." Applied Mathematical Modelling 33, no. 2 (2009): 633–47. http://dx.doi.org/10.1016/j.apm.2007.11.029.

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24

Da Costa Neto, Ricardo Teixeira, Elias Dias Rossi Lopes, and Igor Lucas Reinaldo. "APLICAÇÃO DE FERRAMENTAS DE QUALIDADE EM PROJETO ESTUDANTIL." Semioses 13, no. 1 (2019): 97–117. http://dx.doi.org/10.15202/1981996x.2019v13n1p97.

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Este artigo tem por finalidade apresentar a aplicação de duas ferramentas da qualidade no Projeto de Suspensão de um veículo para a Competição Baja SAE Brasil: o Desdobramento da Função Qualidade (QFD) e a Análise dos Modos de Falha e seus Efeitos (FMEA). O objeto de estudo é um veículo off-road monotripulado e construído predominantemente por alunos. Utiliza-se o método de pesquisa quantitativo e bibliográfico, com obtenção de resultados que refletem a realidade do projeto e que contribuem para a sistematização de processos no desenvolvimento do trabalho.
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Jae-Ohk, Lee, Kwon Seung-Min, and Yang Young-Soon. "Quality Assessment of the Hatchway of a Bulk Carrier Using QFD and FMEA." Safety and Reliability 21, no. 2 (2001): 7–19. http://dx.doi.org/10.1080/09617353.2001.11690711.

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Tanık, Murat. "Improving “order handling” process by using QFD and FMEA methodologies: a case study." International Journal of Quality & Reliability Management 27, no. 4 (2010): 404–23. http://dx.doi.org/10.1108/02656711011035110.

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Ya Dmitriev, A., T. A. Mitroshkina, and I. V. Russkikh. "Synergy of QFD and FMEA methods to improve workplaces in aircraft wire manufacturing." IOP Conference Series: Materials Science and Engineering 1027 (January 12, 2021): 012003. http://dx.doi.org/10.1088/1757-899x/1027/1/012003.

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Pourmadadkar, Mahdad, Mohammad Ali Beheshtinia, and Kamran Ghods. "An integrated approach for healthcare services risk assessment and quality enhancement." International Journal of Quality & Reliability Management 37, no. 9/10 (2019): 1183–208. http://dx.doi.org/10.1108/ijqrm-11-2018-0314.

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Purpose The purpose of this paper is to introduce an integrated approach using failure modes and effects analysis (FMEA), multiple-criteria decision making (MCDM), mathematical modeling and quality function deployment (QFD) techniques, for risk assessment and service quality enhancement in coronary artery bypass grafting (CABG) as a treatment for cardiovascular diseases (CVDs). Design/methodology/approach First, the disruptions in the CABG process are identified and prioritized following FMEA instructions, using two MCDM techniques, called analytic hierarchy process (AHP) and TOPSIS. Consequen
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Tunga, Inès, Anna Garcia-Teruel, Donald R. Noble, and Jillian Henderson. "Addressing European Ocean Energy Challenge: The DTOceanPlus Structured Innovation Tool for Concept Creation and Selection." Energies 14, no. 18 (2021): 5988. http://dx.doi.org/10.3390/en14185988.

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The whole energy system requires renewables that scale and produce reliable, valuable energy at an acceptable cost. The key to increasing the deployment of ocean energy is bringing down development and operating costs. This paper proposes a structured approach to innovation in ocean energy systems that would spur innovation and expand the market for ocean energy. This approach can be used by a wide range of stakeholders—including technology and project developers and investors—when considering creating or improving designs. The Structured Innovation design tool within the DTOceanPlus suite is
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30

Mury, Luiz Gilberto Monclaro, and Flávio S. Fogliatto. "Adaptação de produtos para mercados diferenciados a partir da engenharia reversa." Production 11, no. 2 (2001): 5–22. http://dx.doi.org/10.1590/s0103-65132001000200001.

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Um dos maiores desafios das empresas exportadoras está na identificação e atendimento, de forma dinâmica, às exigências de mercados externos. Neste artigo, propõe-se uma metodologia para melhoria e adaptação de produtos destinados a mercados diferenciados. A metodologia, implementada em oito passos estruturados, parte de conceitos da Engenharia Reversa e seus habilitadores, bem como de ferramentas para melhoria de processos, tais como QFD - Quality Function Deployment, Cartas de Processo e FMEA - Failure Mode and Effects Analysis. A metodologia proposta é aplicada em um caso prático, onde o ob
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Chen, Shun-Hsing. "Determining the service demands of an aging population by integrating QFD and FMEA method." Quality & Quantity 50, no. 1 (2014): 283–98. http://dx.doi.org/10.1007/s11135-014-0148-y.

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32

Korayem, M. H., and A. Iravani. "Improvement of 3P and 6R mechanical robots reliability and quality applying FMEA and QFD approaches." Robotics and Computer-Integrated Manufacturing 24, no. 3 (2008): 472–87. http://dx.doi.org/10.1016/j.rcim.2007.05.003.

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Bhuvanesh Kumar, M., and R. Parameshwaran. "Fuzzy integrated QFD, FMEA framework for the selection of lean tools in a manufacturing organisation." Production Planning & Control 29, no. 5 (2018): 403–17. http://dx.doi.org/10.1080/09537287.2018.1434253.

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Hsiao, Yuan-Du, Ching-Chow Yang, Wen-Tsann Lin, and Wei-Cheng Lee. "A study on key failure factors for introducing enterprise resource planning." Human Systems Management 26, no. 2 (2007): 139–52. http://dx.doi.org/10.3233/hsm-2007-26206.

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ERP (enterprise resource planning) is a management information system that optimizes distribution of enterprise resources and helps a business to integrate all its resources for fast and effective application to improve its operational performance and enhance its competitiveness. Consequently, a failure evaluation model for introducing ERP, together with the factors and reasons for failures are presented in this research, acting as a reference for businesses when planning and making important decisions on ERP. This study uses the DMAIC of the 6-Sigma approach and a failure evaluation model for
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Matos, Vágner Souza, and Ivandro Cecconello. "Integração QFD / FMEA no desenvolvimento de produto: um estudo de caso de uma empresa de automação." Scientia cum Industria 7, no. 2 (2019): 108–16. http://dx.doi.org/10.18226/23185279.v7iss2p108.

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Almannai, B., R. Greenough, and J. Kay. "A decision support tool based on QFD and FMEA for the selection of manufacturing automation technologies." Robotics and Computer-Integrated Manufacturing 24, no. 4 (2008): 501–7. http://dx.doi.org/10.1016/j.rcim.2007.07.002.

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Braunsperger, M. "Designing for Quality—An Integrated Approach for Simultaneous Quality Engineering." Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 210, no. 1 (1996): 1–10. http://dx.doi.org/10.1243/pime_proc_1996_210_081_02.

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Automobile industry practice has shown that it is not sufficient merely to apply familiar quality control methods such as FMEA (failure mode and effects analysis) or QFD (quality function deployment), to introduce development process (DP) systems or to adopt project management procedures when an improvement in product quality is required. More than this has to be done: the product development procedure must be better arranged and made capable of achieving preventive quality assurance. This paper presents an all-areas quality assurance concept as drawn up in the body development area of the BMW
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Yang, Ming Shun, Yan Li, Yong Liu та Xin Qin Gao. "A Method for Problem Selection in the 6σ Definition Stage". Advanced Materials Research 139-141 (жовтень 2010): 1485–89. http://dx.doi.org/10.4028/www.scientific.net/amr.139-141.1485.

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6σ has proved numerous times that it can help any business to deliver products to meet or even exceed customer expectations. DMAIC (Define – Measure – Analyze – Improve - Control) is one of the Six Sigma methodologies used for a 6σ project that aims to improve and control quality of exiting products. Aiming at the drawbacks existed in the problem selection in definition stage, considering the fuzziness and uncertainty of problem analyzing, a method integrating fuzzy QFD (Quality Function Deployment), frequency-cost FMEA (Failure Mode Effect Analysis) and gray relation analysis is presented, in
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Hernández-Rangel, Francisco J., María Z. Saavedra-Leos, Josefa Morales-Morales, et al. "Continuous Improvement Process in the Development of a Low-Cost Rotational Rheometer." Processes 8, no. 8 (2020): 935. http://dx.doi.org/10.3390/pr8080935.

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The rheological characterization of fluids using a rheometer is an essential task in food processing, materials, healthcare or even industrial engineering; in some cases, the high cost of a rheometer and the issues related to the possibility of developing both electrorheological and magnetorheological tests in the same instrument have to be overcome. With that in mind, this study designed and constructed a low-cost rotational rheometer with the capacity to adapt to electro- and magneto-rheological tests. The design team used the method of continuous improvement through Quality Function Deploym
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Parameshwaran, R., and M. Bhuvanesh Kumar. "A comprehensive model to prioritise lean tools for manufacturing industries: a fuzzy FMEA, AHP and QFD-based approach." International Journal of Services and Operations Management 37, no. 2 (2020): 170. http://dx.doi.org/10.1504/ijsom.2020.10032455.

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Kumar, M. Bhuvanesh, and R. Parameshwaran. "A comprehensive model to prioritise lean tools for manufacturing industries: a fuzzy FMEA, AHP and QFD-based approach." International Journal of Services and Operations Management 37, no. 2 (2020): 170. http://dx.doi.org/10.1504/ijsom.2020.110337.

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Zheng, Pai, Víctor Hugo Torres, José Ríos, and Gang Zhao. "Integration of Conceptual Design and MOKA into CATIA v5: A Knowledge-Based Application for an Aircraft Y-Bolt Component." Applied Mechanics and Materials 271-272 (December 2012): 974–80. http://dx.doi.org/10.4028/www.scientific.net/amm.271-272.974.

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The design process comprises the Conceptual Phase, the Embodiment Phase and the Detail Design Phase in which commercial PLM/CAD systems mainly support the latter ones. This situation causes the discontinuity in the overall design information flow: Customer Needs (CNs) - Functional Requirements (FRs) – Design Parameters (DPs) – Key Characteristics (KCs) – Geometric Parameters (GPs). There is also a lack of knowledge reuse in routine design process, resulting in large cost-waste of the overall design process. Aiming to enhance the continuity of the design information flow and facilitate the know
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Ma, Hongzhan, Xuening Chu, Deyi Xue, and Dongping Chen. "Identification of to-be-improved components for redesign of complex products and systems based on fuzzy QFD and FMEA." Journal of Intelligent Manufacturing 30, no. 2 (2016): 623–39. http://dx.doi.org/10.1007/s10845-016-1269-z.

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44

Loan, Nguyễn Thúy Quỳnh. "Tái cấu trúc quá trình kinh doanh và các công cụ hỗ trợ: Tổng quan cơ sở lý thuyết". KINH TẾ VÀ QUẢN TRỊ KINH DOANH 14, № 1 (2020): 34–52. http://dx.doi.org/10.46223/hcmcoujs.econ.vi.14.1.495.2019.

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Mục tiêu của bài báo này là phân tích tổng quan cơ sở lý thuyết về tái cấu trúc quá trình kinh doanh (BPR) và các công cụ hỗ trợ nhằm tạo điều kiện thuận lợi cho các doanh nghiệp Việt Nam khi triển khai BPR. Tổng quan lý thuyết về BPR gồm các khái niệm, các quá trình kinh doanh, vai trò của công nghệ thông tin, khi nào thực hiện, so sánh giữa BPR và TQM, kinh nghiệm thực hiện trên thế giới và Việt Nam, các bước thực hiện. Ngoài ra, bài báo cũng tích hợp các công cụ và kỹ thuật hỗ trợ theo từng bước của BPR, đó là SWOT, bản đồ chiến lược, chuẩn đối sánh, DMAIC, FMEA, QFD, Kaizen, 5S, VSM, 7 côn
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Hayati (Politeknik APP), Dahliyah. "ANALISIS PENERAPAN SISTEM MONITORING PEMASOK." Jurnal Manajemen Industri dan Logistik 4, no. 1 (2020): 27–34. http://dx.doi.org/10.30988/jmil.v4i1.245.

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AbstractThe performance of suppliers both directly and indirectly determines several critical points for the company such as: product prices, product availability in the market, and product quality. It is very important for companies to monitor and improve the quality of raw materials obtained from suppliers, because this will determine the performance of the company, especially on the quality of products produced. The quality monitoring system implemented in the company must be responsive and consider every critical aspect of the non-conformity that occurs, not only using the Supplier Correct
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Yang, Yao Jung. "Web-Based Safety-Oriented Healthcare System Using Innovation Process for Patient Safety." Advanced Materials Research 677 (March 2013): 528–36. http://dx.doi.org/10.4028/www.scientific.net/amr.677.528.

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The U.S. Institute of Medicine (IOM) estimated that 44,000-98,000 Americans die annually from preventable errors in hospitals and that the cost of deaths and injuries is between $17 and $29 billion U.S. dollars per year in the U.S. Knowledge that healthcare systems and processes may be unreliable and lacks a consideration for safety. Patient safety is a global challenge that requires knowledge and skills in multiple areas, including human factors and systems engineering [12]. Patient safety has received attention by international health organizations. In 2004, the World Health Organization lun
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Yang, Yao Jung. "Web-Based Safety-Oriented Healthcare System Using Innovation Process for Patient Safety." Advanced Materials Research 680 (April 2013): 624–32. http://dx.doi.org/10.4028/www.scientific.net/amr.680.624.

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The U.S. Institute of Medicine (IOM) estimated that 44,000-98,000 Americans die annually from preventable errors in hospitals and that the cost of deaths and injuries is between $17 and $29 billion U.S. dollars per year in the U.S. Knowledge that healthcare systems and processes may be unreliable and lacks a consideration for safety. Patient safety is a global challenge that requires knowledge and skills in multiple areas, including human factors and systems engineering [12]. Patient safety has received attention by international health organizations. In 2004, the World Health Organization lun
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Tariq, Muhammad Usman. "Six Sigma based Risk Identification and Mitigation Framework for Projects Execution." Information Management and Business Review 4, no. 2 (2012): 79–85. http://dx.doi.org/10.22610/imbr.v4i2.967.

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Six Sigma being a project management methodology is used in the industries and corporate sectors to substantiate goal of near perfection in process implementation and execution. It is based on the impetus of Plan-Do-Check-Act and has myriads of applications in numerous organizational and business processes to attain significant performance improvement in different industrial and corporate sectors including the IT sector. Despite realization of profuse maturity in many business processes, Six Sigma still lacks across-theboard framework for effective risk management because root cause analysis (
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Phirouzabadi, Amir Mirzadeh. "Proposing a Practical Method for Conceptual Design Process in New Product Development: Medical Glasses as a Case Study." International Journal of Informatics and Communication Technology (IJ-ICT) 3, no. 2 (2014): 80. http://dx.doi.org/10.11591/ijict.v3i2.pp80-87.

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Nowadays,improving the quality of products, reducing cost and meeting customer’srequirements are necessary to shorten the time of new product development(NPD). NPD is used to describe the complete process of bringing a new product to market and conceptual design process(CDP) is at its early stage and has mostly changed from passive respond toaggressive one. Thus, this study proposed a practical method for CDP in NPDthrough three phases as Converting customers’ requirements to product specifications,Generating and selecting of concepts and Testing and finalizing the concepts byusing some differ
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Sumarna, Dani Leonidas, and Fauzaan Muhamad Nabil. "Analisis Risiko Flight Delay Pengiriman Barang Saat COVID-19 di PT Lesacho Logistics dengan Metode House of Risk." Jurnal Logistik Bisnis 10, no. 02 (2020): 25–30. http://dx.doi.org/10.46369/logistik.v10i02.953.

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Saat ini Indonesia sedang mengalami masa pandemi virus terbaru yaitu Coronavirus Disease -19 (Covid-19) yang telah merugikan beberapa sektor perekonomian seperti industri manufaktur, pariwisata, logistik, transportasi dan lain-lain. PT Leschaco merupakan perusahaan yang bergerak di bidang logistik freight forwarding yang menyediakan jasa pengiriman seperti air freight, sea freight, tank container, warehouse, dan contract logistic. Selama pandemi ada beberapa permasalahan yang timbul dalam pengiriman melalui air freight salah satunya yaitu flight delay yang mengakibatkan keterlambatan pengirima
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