scholarly journals Applying the substance-field model mechanism to problem solving in industrial product design

Al-academy ◽  
2021 ◽  
2021 ◽  
Vol 13 (11) ◽  
pp. 5859
Author(s):  
Shedong Ren ◽  
Fangzhi Gui ◽  
Yanwei Zhao ◽  
Min Zhan ◽  
Wanliang Wang ◽  
...  

Low-carbon product design involves a redesign process that requires not only structural module modification, but more importantly, generating innovative principles to solve design contradictions. Such contradictions include when current design conditions cannot satisfy design requirements or there are antithetical design goals. On the other hand, configuration tasks in the reconfiguration process are interdependent, which requires a well-scheduled arrangement to reduce feedback information. This study proposes an effective configuration methodology for low-carbon design. Firstly, configuration tasks and configuration parameters are designated through quality characteristics, and the directed network along with the associated values of configuration tasks are transformed into the design structure matrix to construct the information flow diagram. Then, the Extenics-based problem-solving model is presented to address design contradictions: low-carbon incompatibility and antithetical problems are clarified and formulated with a basic-element model; extensible and conjugate analysis tools are used to identify problematic structures and provide feasible measures; the Gantt chart of measures execution based on the information flow diagram is constructed to reduce feedback and generate robust schemes with strategy models. The methodology is applied to the vacuum pump low-carbon design, the results show that it effectively solves contradictions with innovative design schemes, and comparative analysis verifies the performance of Extenics.


2014 ◽  
Vol 1028 ◽  
pp. 341-345
Author(s):  
Rui Zhang

Product innovation design is challenging due to the complexity of the industrial environment, the changing needs of markets and customers, the effect of intense social competition, and the unpredictability of the future. This paper presents in a systematic analysis of reliability method on industrial product innovation design in order to illustrate what the real meaning of reliability method and how it works on the product innovation design. It also clarifies the relationship between reliability method and product innovation design, reflecting the function of reliability method on each work stage. It is concluded that a suitable thinking mode should be applied on the corresponding design, and it will enhance the effectiveness of innovative product design in general.


2020 ◽  
Vol 1 ◽  
pp. 2129-2138
Author(s):  
M. Saidani ◽  
H. Kim ◽  
F. Cluzel ◽  
Y. Leroy ◽  
B. Yannou

AbstractThis paper investigates and questions the relevance of product-centric circularity indicators in a product design context. To do so, reviews of eco-design tools and critical analyses of circularity indicators at the micro level of circular economy implementation are combined with a new workshop experimenting four of these indicators with the aim to improve the circularity performance of an industrial product. On this basis, the four tool-based circularity indicators tested are mapped on the engineering design and development process, and are positioned among the pool of main eco-design tools.


2020 ◽  
Vol 179 ◽  
pp. 02042
Author(s):  
Hai-chao ZHANG ◽  
Li WANG

This article analyzes the characteristics of industrial product design in the 5G era, and describes the application of 5G technology in industrial product design. It is mainly reflected in changing product interaction methods, industrial Internet development, and application scenario changes. Finally, in the context of the 5G era the development trend of industrial product design is expected, and product design will achieve greater development in the direction of intelligence, IoT, and cloudification.


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