Technology Assessment: Triz Technology System Evolution Theory

Author(s):  
Jianguang Sun ◽  
Runhua Tan
2012 ◽  
Vol 09 (02) ◽  
pp. 1250010 ◽  
Author(s):  
JIANGUANG SUN ◽  
RUNHUA TAN

Disruptive Innovation (DI) is an effective method for a new firm to enter mature market. According to the composing analysis of the technical system for the product, six kinds of typical state in the technical system process can be detected. In accordance with technology system evolution analysis, two kinds of evolutionary technologies — mainstream evolutionary technologies and laggard evolutionary technologies — can be detected. Then, the conditions for forecasting DI technologies are established. Based on evolution path lines of TRIZ, the potential DI can be forecasted. As a case study, the video game console system is investigated. The study shows that the adoption of TRIZ evolution theory in forecasting disruptive technologies of product is feasible.


2021 ◽  
Vol 2066 (1) ◽  
pp. 012087
Author(s):  
Bing Lv ◽  
Hao Wei ◽  
Yantao Li ◽  
Zhenpeng Xue

Abstract In order to make each functional module of silage machinery have a high degree of adaptability and meet the market demand of coordinated operation of each functional module, this paper preliminarily explores the symbiosis concept in the field of silage equipment, and applies the technology system evolution theory to the symbiotic design of silage equipment. In the design stage, the designers divide the functional modules of the silage machinery according to the market and user needs, and then analyze the symbiosis of the interrelated modules and screen out the functional modules with weak adaptability, so as to carry out the technical system evolution and optimize each functional module, and then establish the layout scheme between modules, so that the various functional modules of the silage machinery have strong adaptability, improve product quality, reduce design costs, shorten the design cycle, and realize the user’s demand for the coordinated operation of multi-functional silage machinery.


2014 ◽  
Vol 628 ◽  
pp. 413-416
Author(s):  
En Shun Ping ◽  
Run Hua Tan ◽  
Fang Liu ◽  
Bo Han

Radical innovation (RI) is a high efficient technology innovation for modern enterprises to participate in market competitions. It’s the great significance to upgrade technology and enhance the capability of the independent innovations for enterprises. After the product technology system was decomposed, we can summarize the core functions and core technical subsystems and analyze the current technology evolution state of the product core technical subsystems. For the mature stage of the product, the radical innovation technology forecasting inherent basic law is revealed through establishing product technology system evolution process model for radical innovation based on technology evolution theory. The technology forecasting process of the magnetic cushion belt conveyor is taken as an example to validate the effectiveness of the proposed method.


2011 ◽  
Vol 421 ◽  
pp. 770-778 ◽  
Author(s):  
Yan Qing Dong ◽  
Huan Gao Zhang ◽  
Ji Zeng ◽  
Run Hua Tan ◽  
Fei Yu

With the progress of human, the society is progressing. All products involved in society also are constantly evolving. Actually, technological system has its own technological evolution like the biological evolution. Technology evolution is not accidental, but driven by some factors. And every kind of driving force is happened according to certain principles. This paper proposed nine driving force of products technological evolution as well as the evolution theory. At last, a case study of the mobile phone verified the proposed theory.


2013 ◽  
Vol 2013.23 (0) ◽  
pp. _2204-1_-_2204-8_
Author(s):  
Yu KOZANO ◽  
Kanako GOTO ◽  
Shun TAKAHASHI ◽  
Hiroshi HASEGAWS

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