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Tasarımda Beyin Fırtınası ve TRIZ Kullanımı: Baza Makas Kaldırma Sistemi Örnek Çalışması

Year 2019, Volume: 7 Issue: 3, 614 - 626, 27.09.2019
https://doi.org/10.29109/gujsc.581967

Abstract

Kuruluşların yaşamlarını sürdürebilmeleri, günün
rekabet şartlarına adapte olmalarına bağlıdır. 
Ana rekabet şarları ise teknolojik gelişmeler, kısalan ürün ömürleri ve müşteri
şartlarının hızlı değişimidir. Bu nedenle, kuruluşların karşılaştıkları
problemleri daha iyi, daha ucuz ve daha hızlı bir şekilde çözmeleri gerekir. Yenilikçi,
yaratıcı, hızlı ve sistematik problem çözümü için beyin fırtınası ile TRIZ
yönteminin birlikte kullanımı iyi bir tercih olabilir. Bu makalede, açılabilen
bazaların vazgeçilmez elemanlarından biri olan baza makas sistemi için iki
yöntemin birlikte kullanımı ile yenilikçi ürünün çözüm süreci ve elde edilen
kazanımlar sunulmuştur. 

References

  • Terninko J, Zusman A, and Zlotin B. (1998). Systematic innovation: an introduction to TRIZ (theory of inventive problem solving): CRC press.
  • Montecchi T and Russo D, Knowledge based approach for formulating TRIZ contradictions, Procedia engineering, 131 (2015) 451-463.
  • Altshuller G. (2002). 40 principles: TRIZ keys to innovation: Technical Innovation Center, Inc.
  • Retseptor G, 40 inventive principles in quality management, The TRIZ Journal, (2003).
  • Wits WW, Vaneker TH, and Souchkov V, editors. Full immersion TRIZ in education. Proceedings of the 10th ETRIA World Conference; 2010.
  • Harlim J and Belski I, Learning TRIZ: Impact on confidence when facing problems, Procedia engineering, 131 (2015) 95-103.
  • Sire P, Haeffelé G, and Dubois S, TRIZ as a tool to develop a TRIZ educational method by learning it, Procedia engineering, 131 (2015) 551-560.
  • Vincent JF, Bogatyreva OA, Bogatyrev NR, Bowyer A, and Pahl A-K, Biomimetics: its practice and theory, Journal of the Royal Society Interface, 3 (2006) 471-482.
  • Bariani PF, Berti GA, and Lucchetta G, A combined DFMA and TRIZ approach to the simplification of product structure, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 218 (2004) 1023-1027.
  • Ensarioğlu C, Çakır MC, and Çavdar K, Yenilikçi yaratıcı problem çözme tekniğinin (TRIZ) montaj için tasarım alanına uygulanması, TİMAK-Tasarım ve İmalat Analiz Kongresi, 2006 26-28 Nisan 2006, Balıkesir-Türkiye.
  • Mayda M and Borklu HR, Development of an innovative conceptual design process by using Pahl and Beitz's systematic design, TRIZ and QFD, Journal of Advanced Mechanical Design, Systems, and Manufacturing, 8 (2014) 1-12.
  • Mayda M and Börklü H, Yeni ve inovatif bir kavramsal tasarım işlem modeli ile su filtresi tasarımı, Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım ve Teknoloji, 2 (2014) 169-180.
  • Osborn AF. (1957). Applied imagination(Revised edition). New York: Charles Scribner’s Sons Press.
  • Altshuller G. (1999). The innovation algorithm: TRIZ, systematic innovation and technical creativity: Technical innovation center, Inc.
  • Jovanović D, Petković D, and Banić M, TRIZ method application in development of a solar tracker, Journal of Mechanical Engineering Design, 12 (2009) 41-50.
  • The Altshuller Institute TRIZ studies. What is TRIZ? 2012 [14-April-12]; Available from: http://www.aitriz.org/index.php?option=com_content&&task=viev&id=18&Itemid=32.
  • Skir J, TRIZ puzzles and examples: part 1, the tiny car, The TRIZ Journal, (1998).
  • Shulyak L, Three steps for solving an inventive problem, in 40 principles-TRIZ keys to technical innovation, TRIZ tools, Vol. 1, Technical Innovation Center, The TRIZ Journal, (2001) 107-108.
  • TRIZ 40 Principles. [20-June-19]; Available from: http://www.triz40.com/aff_Principles_TRIZ.php.
  • Lin SY and Wu CT, Application of TRIZ inventive principles to innovate recycling machine, Advances in Mechanical Engineering, 8 (2016) 1-8.
  • TOBB Sanayi Veritabanı, Haziran 2019, Available from: http://sanayi.tobb.org.tr/index_pass.php.

Using Brainstorming and TRIZ Together in Design/Improvement Process - Example of Baza Scissors System

Year 2019, Volume: 7 Issue: 3, 614 - 626, 27.09.2019
https://doi.org/10.29109/gujsc.581967

Abstract

The survival of organizations depends on their adaptation
to the competitive conditions of the day. The main competitiveness is
technological developments, shortened product lives and rapid change of
customer requirements. Therefore, organizations need to solve the problems they
face better, cheaper and faster. For innovative, fast and systematic problem
solving, the combination of brainstorming and TRIZ can be a good choice. One of
the indispensable elements of openable bases is the base scissors system. In
this article, to design an innovative base scissor system, two methods will be
used. The solution process of the innovative product and the benefits achieved
are presented.

References

  • Terninko J, Zusman A, and Zlotin B. (1998). Systematic innovation: an introduction to TRIZ (theory of inventive problem solving): CRC press.
  • Montecchi T and Russo D, Knowledge based approach for formulating TRIZ contradictions, Procedia engineering, 131 (2015) 451-463.
  • Altshuller G. (2002). 40 principles: TRIZ keys to innovation: Technical Innovation Center, Inc.
  • Retseptor G, 40 inventive principles in quality management, The TRIZ Journal, (2003).
  • Wits WW, Vaneker TH, and Souchkov V, editors. Full immersion TRIZ in education. Proceedings of the 10th ETRIA World Conference; 2010.
  • Harlim J and Belski I, Learning TRIZ: Impact on confidence when facing problems, Procedia engineering, 131 (2015) 95-103.
  • Sire P, Haeffelé G, and Dubois S, TRIZ as a tool to develop a TRIZ educational method by learning it, Procedia engineering, 131 (2015) 551-560.
  • Vincent JF, Bogatyreva OA, Bogatyrev NR, Bowyer A, and Pahl A-K, Biomimetics: its practice and theory, Journal of the Royal Society Interface, 3 (2006) 471-482.
  • Bariani PF, Berti GA, and Lucchetta G, A combined DFMA and TRIZ approach to the simplification of product structure, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 218 (2004) 1023-1027.
  • Ensarioğlu C, Çakır MC, and Çavdar K, Yenilikçi yaratıcı problem çözme tekniğinin (TRIZ) montaj için tasarım alanına uygulanması, TİMAK-Tasarım ve İmalat Analiz Kongresi, 2006 26-28 Nisan 2006, Balıkesir-Türkiye.
  • Mayda M and Borklu HR, Development of an innovative conceptual design process by using Pahl and Beitz's systematic design, TRIZ and QFD, Journal of Advanced Mechanical Design, Systems, and Manufacturing, 8 (2014) 1-12.
  • Mayda M and Börklü H, Yeni ve inovatif bir kavramsal tasarım işlem modeli ile su filtresi tasarımı, Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım ve Teknoloji, 2 (2014) 169-180.
  • Osborn AF. (1957). Applied imagination(Revised edition). New York: Charles Scribner’s Sons Press.
  • Altshuller G. (1999). The innovation algorithm: TRIZ, systematic innovation and technical creativity: Technical innovation center, Inc.
  • Jovanović D, Petković D, and Banić M, TRIZ method application in development of a solar tracker, Journal of Mechanical Engineering Design, 12 (2009) 41-50.
  • The Altshuller Institute TRIZ studies. What is TRIZ? 2012 [14-April-12]; Available from: http://www.aitriz.org/index.php?option=com_content&&task=viev&id=18&Itemid=32.
  • Skir J, TRIZ puzzles and examples: part 1, the tiny car, The TRIZ Journal, (1998).
  • Shulyak L, Three steps for solving an inventive problem, in 40 principles-TRIZ keys to technical innovation, TRIZ tools, Vol. 1, Technical Innovation Center, The TRIZ Journal, (2001) 107-108.
  • TRIZ 40 Principles. [20-June-19]; Available from: http://www.triz40.com/aff_Principles_TRIZ.php.
  • Lin SY and Wu CT, Application of TRIZ inventive principles to innovate recycling machine, Advances in Mechanical Engineering, 8 (2016) 1-8.
  • TOBB Sanayi Veritabanı, Haziran 2019, Available from: http://sanayi.tobb.org.tr/index_pass.php.
There are 21 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Tasarım ve Teknoloji
Authors

Fazıl Canbulut 0000-0002-0493-0550

Burak Demirtaş This is me 0000-0001-6546-5085

Publication Date September 27, 2019
Submission Date June 25, 2019
Published in Issue Year 2019 Volume: 7 Issue: 3

Cite

APA Canbulut, F., & Demirtaş, B. (2019). Tasarımda Beyin Fırtınası ve TRIZ Kullanımı: Baza Makas Kaldırma Sistemi Örnek Çalışması. Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım Ve Teknoloji, 7(3), 614-626. https://doi.org/10.29109/gujsc.581967

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