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Original Articles

Process planning for product disassembly

Pages 1335-1355 | Published online: 14 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Junkai He, Feng Chu, Alexandre Dolgui, Feifeng Zheng & Ming Liu. (2022) Integrated stochastic disassembly line balancing and planning problem with machine specificity. International Journal of Production Research 60:5, pages 1688-1708.
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Godichaud Matthieu, Pérès François & Ayeley Tchangani. (2012) Optimising end-of-life system dismantling strategy. International Journal of Production Research 50:14, pages 3738-3754.
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Fabio Giudice. (2010) Disassembly depth distribution for ease of service: a rule-based approach. Journal of Engineering Design 21:4, pages 375-411.
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Hwai-En Tseng, Chien-Chen Chang & Chih-Jen Cheng. (2010) Disassembly-oriented assessment methodology for product modularity. International Journal of Production Research 48:14, pages 4297-4320.
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Min Jung Kwak, Yoo Suk Hong & Nam Wook Cho. (2009) Eco-architecture analysis for end-of-life decision making. International Journal of Production Research 47:22, pages 6233-6259.
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B. González & B. Adenso-Díaz . (2005) A bill of materials-based approach for end-of-life decision making in design for the environment. International Journal of Production Research 43:10, pages 2071-2099.
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Articles from other publishers (37)

Hwai-En Tseng, Chien-Cheng Chang, Shih-Chen Lee & Cih-Chi Chen. (2021) Connector-link-part-based disassembly sequence planning. Concurrent Engineering 30:1, pages 67-79.
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Hongguo Liu, Jingjing Hai, Lin Li & Fengfu Yin. (2022) An efficient disassembly process generation method for large quantities of waste smartphones. Procedia CIRP 105, pages 140-145.
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Ammar Ali, Christian Enyoghasi & Fazleena Badurdeen. 2022. Role of Circular Economy in Resource Sustainability. Role of Circular Economy in Resource Sustainability 73 84 .
Seda HEZER & Yakup KARA. (2021) Balancing Disassembly Line Under Hazardous Parts with Precise and Fuzzy Goals. Ömer Halisdemir Üniversitesi Mühendislik Bilimleri Dergisi.
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Parvez Alam Khan, Satirenjit Kaur Johl & Shireenjit K. Johl. (2021) Does adoption of ISO 56002‐2019 and green innovation reporting enhance the firm sustainable development goal performance? An emerging paradigm. Business Strategy and the Environment 30:7, pages 2922-2936.
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Imen Belhadj, Moncef Hammadi & Nizar Aifaoui. (2021) Parallel disassembly approach with recycling rate calculation of industrial products. The International Journal of Advanced Manufacturing Technology 113:9-10, pages 2969-2984.
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Yuan Wang, Sachin B. Modi & Tobias Schoenherr. (2021) Leveraging sustainable design practices through supplier involvement in new product development: The role of the suppliers' environmental management capability. International Journal of Production Economics 232, pages 107919.
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Omar Eduardo Omar Sánchez Estrada. 2021. Health and Well-Being Considerations in the Design of Indoor Environments. Health and Well-Being Considerations in the Design of Indoor Environments 228 242 .
Parvez Alam Khan, Satirenjit Kaur Johl Pritam Singh, Shireenjit Kaur Johl, Amjad Shamim, Yadi Nurhayadi, N. Wijiharjono & Ummu S. Al-Azizah. (2021) Injecting Green Innovation Reporting into Sustainability Reporting. SHS Web of Conferences 124, pages 05003.
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Samyeon Kim & Seung Ki Moon. (2020) A Part Consolidation Design Method for Additive Manufacturing based on Product Disassembly Complexity. Applied Sciences 10:3, pages 1100.
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Hwai-En Tseng, Chien-Cheng Chang, Shih-Chen Lee & Yu-Ming Huang. (2019) Hybrid bidirectional ant colony optimization (hybrid BACO): An algorithm for disassembly sequence planning. Engineering Applications of Artificial Intelligence 83, pages 45-56.
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Yang Hu & Gaurav Ameta. (2019) A Charts-Based Approach to Estimate Disassembly Time: Hypothesis, Model and Validation. Journal of Manufacturing Science and Engineering 141:2.
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Darshan P. Yadav, Deep N. Patel & Beshoy W. Morkos. (2018) Development of Product Recyclability Index Utilizing Design for Assembly and Disassembly Principles. Journal of Manufacturing Science and Engineering 140:3.
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Piotr Nowakowski. (2018) A novel, cost efficient identification method for disassembly planning of waste electrical and electronic equipment. Journal of Cleaner Production 172, pages 2695-2707.
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S. Harivardhini, K. Murali Krishna & Amaresh Chakrabarti. (2017) An Integrated Framework for supporting decision making during early design stages on end-of-life disassembly. Journal of Cleaner Production 168, pages 558-574.
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Krishnendu MukherjeeKrishnendu Mukherjee. 2017. Supplier Selection. Supplier Selection 67 99 .
Samyeon Kim, Seung Ki Moon, Su Min Jeon & Hyung Sool Oh. (2016) A disassmbly complexity assessment method for sustainable product design. A disassmbly complexity assessment method for sustainable product design.
SL Soh, S K Ong & A Y C Nee. (2016) Design for assembly and disassembly for remanufacturing. Assembly Automation 36:1, pages 12-24.
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H.C. Fang, S.K. Ong & A.Y.C. Nee. (2016) An Integrated Approach for Product Remanufacturing Assessment and Planning. Procedia CIRP 40, pages 262-267.
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S.L. Soh, S.K. Ong & A.Y.C. Nee. (2015) Application of Design for Disassembly from Remanufacturing Perspective. Procedia CIRP 26, pages 577-582.
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Nurhidayu Abdullah, Fairul Azni Jafar & Mohd Nazmin Maslan. (2014) Experimental Design for Reverse Assembly Based Disassembly Process. Applied Mechanics and Materials 660, pages 1062-1066.
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H.C. Fang, S.K. Ong & A.Y.C. Nee. (2014) Product Remanufacturability Assessment based on Design Information. Procedia CIRP 15, pages 195-200.
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Xi Vincent Wang, Lihui Wang & Liang Gao. (2013) From Cloud Manufacturing to Cloud Remanufacturing: A Cloud-Based Approach for WEEE. From Cloud Manufacturing to Cloud Remanufacturing: A Cloud-Based Approach for WEEE.
Miriam Pekarčíková & Peter Trebuňa. (2012) Modelling and Projecting of Disassembly Processes. Procedia Engineering 48, pages 557-561.
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Krishnendu Mukherjee, Bijan Sarkar & Ardhendu Bhattacharya. (2011) Comments on the erratum to “Supply planning model for remanufacturing system in reverse logistics environment” [Comput. Ind. Eng. 51 (2006) 279–287]. Computers & Industrial Engineering 61:4, pages 1349-1350.
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Hyun Bok Lee, Nam Wook Cho & Yoo Suk Hong. (2010) A hierarchical end-of-life decision model for determining the economic levels of remanufacturing and disassembly under environmental regulations. Journal of Cleaner Production 18:13, pages 1276-1283.
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M. Godichaud, F. Pérès & A. Tchangani. 2010. Engineering Asset Lifecycle Management. Engineering Asset Lifecycle Management 280 287 .
Fabio Giudice & Mohamad Kassem. (2009) End-of-life impact reduction through analysis and redistribution of disassembly depth: A case study in electronic device redesign. Computers & Industrial Engineering 57:3, pages 677-690.
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Rob Zuidwijk & Harold Krikke. (2008) Strategic response to EEE returns:. European Journal of Operational Research 191:3, pages 1206-1222.
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C Lu, H Z Huang, J Y H Fuh & Y S Wong. (2008) A multi-objective disassembly planning approach with ant colony optimization algorithm. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 222:11, pages 1465-1474.
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Ian M. Langella. (2007) Heuristics for demand-driven disassembly planning. Computers & Operations Research 34:2, pages 552-577.
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Beatriz González & Belarmino Adenso-Díaz. (2006) A scatter search approach to the optimum disassembly sequence problem. Computers & Operations Research 33:6, pages 1776-1793.
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F.S.Y. Wong, K.B. Chuah & P.K. Venuvinod. (2006) Automated inspection process planning: Algorithmic inspection feature recognition, and inspection case representation for CBR. Robotics and Computer-Integrated Manufacturing 22:1, pages 56-68.
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Fabio Giudice, Guido La Rosa & Antonino Risitano. 2006. Product Design for the Environment. Product Design for the Environment 347 373 .
S. Das, D. Yedlarajiah & S. Gurram. (2003) DISX: a procedure for the automated generation of disassembly process plans. DISX: a procedure for the automated generation of disassembly process plans.
S. Das, V. Mani, R. Caudill & K. Limaye. (2002) Strategies and economics in the disassembly of personal computers-a case study. Strategies and economics in the disassembly of personal computers-a case study.
S. Das & D. Yedlarajiah. (2002) An integer programming model for prescribing material recovery strategies. An integer programming model for prescribing material recovery strategies.

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