Function Innovation Design Model and its Application in Heating Equipment

2013 ◽  
Vol 401-403 ◽  
pp. 371-374
Author(s):  
Hui Jin ◽  
Hai Xia Guo ◽  
Guo Zhong Cao ◽  
Sai Na Wei

Function design is an important step in the process of product design. This article mainly focuses on process and realization of product function innovation. Function innovation and forecasting method is presented, and the product function innovation process model is proposed. Finally, the heating equipment is taken as an example to validate the effectiveness of the model.

2010 ◽  
Vol 20-23 ◽  
pp. 1336-1341
Author(s):  
Qing Hai Li ◽  
Guo Zhong Cao ◽  
Hai Xia Guo ◽  
Run Hua Tan

Function design is an important method for high-level innovation, and it is important for corporations to forecast product evolution rapidly and effectively from function angle. Three laws of function organization and eight laws of function improvement are presented to discover radically appearance of new functions and improvement of existing functions. The directions of function evolution are confirmed by function forecasting, and the function evolutionary path is described by function evolution tree. The rationality is evaluated by degree of ideality. The product innovation process model based on function evolution is proposed by integrating the above contents, which provides a systematic approach to product innovation from functional design angle. A design example for innovation of Chinese medicine demonstrates the proposed method is feasible.


2008 ◽  
Vol 44-46 ◽  
pp. 429-436
Author(s):  
Dun Bing Tang ◽  
M.J. Xu ◽  
M. Wan

Function modeling and evolution is a key stage in conceptual product design. To enable the efficient functional evolution, the functional evolution process needs to be modeled and managed in a systematic way. Current PDM systems can effectively manage the ‘final’ product data and information, but can not deal with documentation about the function design and related evolution process. Therefore, a functional evolution process modeling management mechanism has been proposed and a related computer aided system has been developed. Firstly, in an attempt to achieve a shared understanding of the functional evolution activities, a set of consistent and coherent definitions of the functional evolution activities are deliberated and presented. Four basic pairs of function evolution directions have been presented to describe what each specific function evolution design activity entails, and the function structuring is circumscribed with defined causal function relations and structural function relations. Then, a function evolution process model is introduced, aiming to give a support for obtaining an appropriate representation of information about (1) function version which can reflect the phases of function evolution process, and (2) function evolution activities which compose the whole function evolution process. A framework for functional evolution process management has been established, which can not only capture evolution of function objects, but also record the designer’s functional design intent systematically.


2020 ◽  
Vol 15 ◽  
Author(s):  
Jin Li ◽  
Xingsheng Jiang ◽  
Jingye Li ◽  
Yadong Zhao ◽  
Xuexing Li

Background: In the whole design process of modular fuel tank, there are some unreasonable phenomena. As a result, there are some defects in the design of modular fuel tank, and the function does not meet the requirements in advance. This paper studies this problem. Objective: Through on-the-spot investigation of the factory, a mechanical design process model is designed. The model can provide reference for product design participants on product design time and design quality, and can effectively solve the problem of low product design quality caused by unreasonable product design time arrangement. Methods: After sorting out the data from the factory investigation, computer software is used to program, simulate the information input of mechanical design process, and the final reference value is got. Results: This mechanical design process model is used to guide the design and production of a new project, nearly 3 months ahead of the original project completion time. Conclusion: This mechanical design process model can effectively guide the product design process, which is of great significance to the whole mechanical design field.


2008 ◽  
Vol 392-394 ◽  
pp. 543-550 ◽  
Author(s):  
Hun Guo ◽  
Guo Xing Tang ◽  
Dun Wen Zuo ◽  
T.J. Liu ◽  
W.D. Jin

Design reuse is the application of past designs knowledge and successful experience to current design process and it is a significant method for rapid design. A knowledge-reuse-based rapid product design model is proposed and a three-factor product design iterative process model is studied. Finally, it is applied successfully in the rapid product design of construction machinery combining with the requirement of the construct machinery product design.


2016 ◽  
Vol 693 ◽  
pp. 1684-1692 ◽  
Author(s):  
Hong Lei Zhang ◽  
Wen He Liao ◽  
Yu Guo ◽  
Wen An Yang

Faced with the problem of generation for 3D machining process model, an approach to generate three dimensional machining process model according to information from design model based on definition is proposed. Compared with the existing methods, the approach utilizes multiple information of design model based on definition and takes many phases into consideration of 3D process model generation. The structure of 3D machining process model is defined and the course of 3D process model generation is researched, including multiple information acquirement, generation of procedure geometric models and annotation. Finally, the framework of system and application for 3D machining process model generation are presented for validation purposes.


Triple Helix ◽  
2021 ◽  
pp. 1-30
Author(s):  
Andrzej H Jasinski

Abstract In this article, we are analyzing an influence of various factors on the contents, structure and organization of the contemporary innovation process. The main hypothesis assumes that the contemporary innovation more and more often comes as a result of a quite loose set of dispersed processes and not of a put-in-order, several-phase innovation process. The article starts with a literature survey followed by four empirical illustrations. On the basis of this, the multi-process model of technological innovation is presented. Afterwards, we identify implications for practice, especially the main challenges to be faced by innovation managers in industrial firms.


Author(s):  
Marierose Van Dooren ◽  
Valentijn Visch ◽  
Renske Spijkerman ◽  
Richard Goossens ◽  
Vincent Hendriks

Personalization, the involvement of stakeholders in the design process, is often applied in serious game design for health. It is expected to enhance the alignment of a game to the preferences and capacities of the end-user, thereby increasing the end-user’s motivation to interact with the game, which finally might enhance the aimed-for health effects of the game. However, the nature and effect of personalization have never been systematically studied, making assumptions regarding personalization ungrounded. In this literature review, we firstly provide a proposal of our Personalized Design Process-model, where personalization is defined as stakeholder involvement in the Problem Definition-, Product Design- and/or Tailoring Phase. Secondly, we conducted a systematic literature review on this model, focusing on health and its effects. In this review, 62 of the 2579 found studies were included. Analysis showed that a minority of the studies were of methodologically higher quality and some of these tested the health effect by contrasting tailored versus non-tailored games. Most studies involved stakeholders in the Tailoring Design Phase. Therefore, we conclude that involving stakeholders in the Tailoring Phase is valuable. However, to know if personalization is effective in the Product Design- and the Problem Definition Phase, more studies are needed.


2021 ◽  
Author(s):  
Peng Zhang ◽  
Hongxiang Wang ◽  
Zifeng Nie

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