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A Cluster Analysis Study on the Relevance of Innovation Design and Development Influencing Factors in Dehua Ceramics Industry

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05 nov 2024
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Harizanov, A. (2019). Bridging the Gap: Continuity and Innovation in Ceramic Kiln Technology from the 6th c. BC to the Beginning of the 7th c. AD in the Territory of Bulgaria. Archaeologia Bulgarica, 23(3). Search in Google Scholar

Zubayer, M. A. A., Mithun Ali, S., & Kabir, G. (2019). Analysis of supply chain risk in the ceramic industry using the TOPSIS method under a fuzzy environment. Journal of Modelling in Management, 14(3), 792-815. Search in Google Scholar

Tang, S., & Hu, C. (2017). Design, preparation and properties of carbon fiber reinforced ultra-high temperature ceramic composites for aerospace applications: a review. Journal of Materials Science & Technology, 33(2), 117-130. Search in Google Scholar

Issaoui, M., & Limousy, L. (2019). Low-cost ceramic membranes: Synthesis, classifications, and applications. Comptes Rendus Chimie, 22(2-3), 175-187. Search in Google Scholar

Otitoju, T. A., Okoye, P. U., Chen, G., Li, Y., Okoye, M. O., & Li, S. (2020). Advanced ceramic components: Materials, fabrication, and applications. Journal of industrial and engineering chemistry, 85, 34-65. Search in Google Scholar

Lakhdar, Y., Tuck, C., Binner, J., Terry, A., & Goodridge, R. (2021). Additive manufacturing of advanced ceramic materials. Progress in Materials Science, 116, 100736. Search in Google Scholar

Peng, Q., & Chen, J. (2018). Research on the popular style design of daily use ceramics in creative economy. DEStech T ransactions on Economics, Business, and Management (accessed). Search in Google Scholar

Ros-Dosda, T., Fullana-i-Palmer, P., Mezquita, A., Masoni, P., & Monfort, E. (2018). How can the European ceramic tile industry meet the EU’s low-carbon targets? A life cycle perspective. Journal of Cleaner Production, 199, 554-564. Search in Google Scholar

Buchanan, R. C. (Ed.). (2018). Ceramic materials for electronics. CRC press. Search in Google Scholar

Delpech, B., Milani, M., Montorsi, L., Boscardin, D., Chauhan, A., Almahmoud, S., ... & Jouhara, H. (2018). Energy efficiency enhancement and waste heat recovery in industrial processes by means of the heat pipe technology: Case of the ceramic industry. Energy, 158, 656-665. Search in Google Scholar

Boltakova, N. V., Faseeva, G. R., Kabirov, R. R., Nafikov, R. M., & Zakharov, Y. A. (2017). Utilization of inorganic industrial wastes in producing construction ceramics. Review of Russian experience for the years 2000-2015. Waste management, 60, 230-246. Search in Google Scholar

Del Rio, D. D. F., Sovacool, B. K., Foley, A. M., Griffiths, S., Bazilian, M., Kim, J., & Rooney, D. (2022). Decarbonizing the ceramics industry: A systematic and critical review of policy options, developments and sociotechnical systems. Renewable and Sustainable Energy Reviews, 157, 112081. Search in Google Scholar

Su, H., Li, H. M., Wang, X. C., Wang, Z. S., & Tan, Y. F. (2021, April). Research on advanced available techniques of air pollution prevention and control in building ceramics industry in China. In IOP Conference Series: Earth and Environmental Science (Vol. 728, No. 1, p. 012010). IOP Publishing. Search in Google Scholar

Monteiro, H., Cruz, P. L., & Moura, B. (2022). Integrated environmental and economic life cycle assessment of improvement strategies for a ceramic industry. Journal of Cleaner Production, 345, 131173. Search in Google Scholar

Mohamed, A. S. Y. (2017). Smart materials innovative technologies in architecture; towards innovative design paradigm. Energy Procedia, 115, 139-154. Search in Google Scholar

Kiradoo, G. (2021). the transition of traditional pottery-making into advanced ceramics in context to the Indian ceramic industry. Turkish Journal of Physiotherapy and Rehabilitation, 32(2), 546-556. Search in Google Scholar

Richerson, D. W., & Lee, W. E. (2018). Modern ceramic engineering: properties, processing, and use in design. CRC press. Search in Google Scholar

Castro e Costa, E., Duarte, J. P., & Bartolo, P. (2017). A review of additive manufacturing for ceramic production. Rapid Prototyping Journal, 23(5), 954-963. Search in Google Scholar

Pradell, T., & Molera, J. (2020). Ceramic technology. How to characterise ceramic glazes. Archaeological and Anthropological Sciences, 12(8), 189. Search in Google Scholar

Silva, L. H. D., LIMA, E. D., Miranda, R. B. D. P., Favero, S. S., Lohbauer, U., & Cesar, P. F. (2017). Dental ceramics: a review of new materials and processing methods. Brazilian oral research, 31(suppl 1), e58. Search in Google Scholar

Rahaman, M. N. (2017). Ceramic processing. CRC press. Search in Google Scholar

Li, D., Jia, D., Yang, Z., & Zhou, Y. (2022). Principles, design, structure and properties of ceramics for microwave absorption or transmission at high-temperatures. International Materials Reviews, 67(3), 266-297. Search in Google Scholar

Kui, J. (2021, April). Microwave dielectric ceramic materials and their industry development overview and future prospects. In Journal of Physics: Conference Series (Vol. 1885, No. 3, p. 032034). IOP Publishing. Search in Google Scholar

OHJI, T. (2019). Additive manufacturing of ceramic components-Towards innovation of ceramic industry-. Synthesiology English edition, 11(2), 81-92. Search in Google Scholar

Chaolu, Y. A. N. G., Fuchuan, Z. H. O. U., Qianren, C. H. E. N., Gang, S. H. I., Kaziana, M. M., & Gasper, M. (2024). Development and Application of Modern Building Ceramic Materials. Research and Application of Materials Science, 5(2). Search in Google Scholar

Garcia-Muina, F. E., Gonzalez-Sanchez, R., Ferrari, A. M., & Settembre-Blundo, D. (2018). The paradigms of Industry 4.0 and circular economy as enabling drivers for the competitiveness of businesses and territories: The case of an Italian ceramic tiles manufacturing company. Social Sciences, 7(12), 255. Search in Google Scholar

Ulewicz, R., Kleszcz, D., & Ulewicz, M. (2021). Implementation of lean instruments in ceramics industries. Management Systems in Production Engineering, 29(3), 203-207. Search in Google Scholar

Kiradoo, G. (2020, December). Use of Statistical Techniques in Ceramic Industry to Reduce Complexities. In IOP Conference Series: Materials Science and Engineering (Vol. 993, No. 1, p. 012112). IOP Publishing. Search in Google Scholar

B. D. Parameshachari, Sasikumar Gurumoorthy, Jaroslav Frnda,S. Christalin Nelson & Kavitha Rani Balmuri. (2024). Retraction Note: Cognitive linear discriminant regression computing technique for HTTP video services in SDN networks. Soft Computing(prepublish),1-1. Search in Google Scholar

Singjai Apitchaka & Zdun Uwe. (2022). Conformance assessment of Architectural Design Decisions on API endpoint designs derived from domain models. The Journal of Systems & Software. Search in Google Scholar

da Silva Antônio José A.,Vieira Renan G.,Mesquita Diego P. P.,Gomes João Paulo P. & Rocha Lincoln S.. (2024). Towards automatic labeling of exception handling bugs: A case study of 10 years bug-fixing in Apache Hadoop. Empirical Software Engineering(4). Search in Google Scholar

Jiehui Huang,Fei Cheng,Liwei He,Xiaohan Lou,Huizhen Li & Jing You. (2024). Effect driven prioritization of contaminants in wastewater treatment plants across China: A data mining-based toxicity screening approach. Water Research122223-122223. Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
1 volte all'anno
Argomenti della rivista:
Scienze biologiche, Scienze della vita, altro, Matematica, Matematica applicata, Matematica generale, Fisica, Fisica, altro