Sustainable Design Method for E- cigarette Products from the International Perspective

2021 ◽  
Vol 7 (5) ◽  
pp. 1329-1340
Author(s):  
Wang Huajie ◽  
Cheng Jianxin

Objectives: Tobacco companies from various countries are facing pressure to participate in global competition. How to improve the products’ quality is important for the tobacco companies. In this study, based on the international perspective, the scale of E-cigarette product design evaluation is established, the brand value and cultural experience are integrated into the design activities, the design quality of the product is improved, and the culture is sustainable develop. Methods: This article constructs a product design system based on culture, experience and brand value perspectives by studying outstanding design brands product characteristics, using interviews and focus groups. This system includes design content in five aspects: value, aesthetics, function, innovation, and cultural experience. It further summarizes 20 design indicators. Using the analytic hierarchy process, the weight of the 20 design indicators is scored to determine the importance of guiding the design project. Results: In order to prove the effectiveness of the design index, combined with actual cases, in the process of designing a local brand of E-cigarette products in China, combined with relevant design indexes, compared with the index differences of international brands, focusing on 20 indexes The index with high weight value has studied the advanced aspects of international brand and completed the design of new products. The new proposal of the product was re-evaluated according to the design indicators. The new proposal has been significantly improved in all aspects. Conclusion: The actual results show that the established design indicators have certain guiding value for the development of new products. These indicators can be used as reference standards for design practice, and can also be used as standards for product design evaluation. They also have a certain value of new product development in other fields.

2012 ◽  
Vol 605-607 ◽  
pp. 271-275
Author(s):  
Yuan Guo ◽  
Xin Shi

Proposing the product design method based on innovative materials technology aim to play better the potential of materials’ application and to grasp the future trends of new products development. Combined with the recent typical innovative product cases to demonstrate four innovation design methods: reference, package and adhesion, superposition and integration, variation. These innovation methods’ applications indicate broader prospects of materials’ use that transformed from the state of “material”, the vision and touch of the “quality”, and it also play a positive role in new product development.


2011 ◽  
Vol 121-126 ◽  
pp. 1164-1176
Author(s):  
Bang Chun Wen ◽  
Xiao Peng Li ◽  
Gui Qiu Song ◽  
Zong Yan Wang

The A new design method of the products named “Systematize Design” has been advanced in this paper. From the view of the point of the system engineering, the planning of product design makes the product design qualities improve to a great extent. Besides the understanding of the client requirements, the design planning of products, the so-called 7D’s: Design ideas, Design environments, Design objective, Design process, Design contents, Design methods and the Design quality evaluation, should be considered completely and planned systematically. Based on the previous work, the product design should be conducted according to the systematic design method. The paper makes a detailed expatiation of the systematic design method, viz. 1+3+X design method, in which 1 represents the optimal design for product functions, 3 means the design method synthesizing the dynamic optimization, intelligent optimization and visualized optimization combined organically, and X is the design method for the special requirements of the products.


2012 ◽  
Vol 510 ◽  
pp. 380-383 ◽  
Author(s):  
Shan Wang ◽  
Jing Ping Liu

Under the intense market environment, concurrent engineering is considered to be an effective method to improve product competitiveness by more and more enterprises. As a new product development mode, it directly accelerates the design process of new products. Based on introducing the basic concepts of concurrent engineering, this paper discussed its key technologies in detail, such as process reconfiguration, DFX, PDM, CAX and TQM.


2013 ◽  
Vol 365-366 ◽  
pp. 1259-1265
Author(s):  
Bang Chun Wen ◽  
Xiao Peng Li ◽  
Shu Ying Liu ◽  
Wei Zhou Wang ◽  
Zong Yan Wang

The A new design method of the products named Top-layer Design has been proposed in this paper. From the view of the point of the system engineering, the planning of product design makes the product design qualities improve to a great extent. Besides the understanding of the client requirements, the design planning of products, the so-called 7Ds: Design ideas, Design environments, Design objective, Design process, Design contents, Design methods and the Design quality evaluation, should be considered completely and planned systematically.


2013 ◽  
Vol 712-715 ◽  
pp. 2884-2887
Author(s):  
Jun Hu ◽  
Du Jiang

Modern industrial design has been extended to the whole product life cycle of production, manufacture, sale and recycling from traditional appearance design and product performance. Facing today’s intense and diversification market competition, product design must be taken the whole product life cycle routes based on design, quality, economic and environmental protection. Starting from the design, designer should concern about the product life cycle of the product in each stage of the design process, and use design principles and methods for product design reasonable. With quality competitive as the basis for product, with economic environmental competition as improve quality of power, industrial design can provide high quality product and create a perfect user experience, in order to reduce pollution and satisfied our clients’ needs. In this paper, industrial design processes and methods for product life cycle are discussed and analyzed systematic, so as to product designers of the designer to provide methodology.


2011 ◽  
Vol 308-310 ◽  
pp. 146-156 ◽  
Author(s):  
Bang Chun Wen ◽  
Xue Jun Wang ◽  
Ji Shuang Dai ◽  
Xing Guo Ma ◽  
Zhao Hui Ren ◽  
...  

Design and R&D (Research and Development) of products play an important role in development and competitiveness of enterprise. How to do the works better? We think that most advanced product design methodology should be used on design, research and development of products. So-called most advanced product design methodology is that based on “the Scientific Outlook on Development” that we set up recent years. New developments of product design methodology include: At first it has been classified that more than seventy theories and methods proposed by domestic and overseas scholars in recent 100 years; QCTES was instead of IQCTES including six requirements of product design; traditional design stages were replaced with four new stages including investigation, planning, implement and inspection; green design was replaced with harmonious design; traditional design method was replaced with deep-layer design method; concept and connotation of product top-layer design were proposed; more detailed contents of product systematic design were advanced; formulas of complete system and product design quality, and connection equation between design objective, design content and design method were submitted. We got good effects to apply above product design methodology on many product designs recent years.


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.


2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Xinchun Wang ◽  
Xiaoyu Yu ◽  
Xiaotong Meng

Abstract New product development (NPD) performance is a key determinant of a new venture’s success. However, compared with established firms, new ventures often suffer from resource constraints when developing new products. Entrepreneurial bricolage is reported in the literature as an alternative strategic option that enables managers to overcome resource constraints when developing new products. However, because new ventures are often founded by an entrepreneurial team, the effectiveness and efficiency of using bricolage to improve NPD performance might be contingent on how the founding team plays its roles in this process. Using data from 323 new ventures in China, we find support for the critical role of entrepreneurial bricolage in improving NPD success under resource constraints. More importantly, our results reveal that the bricolage strategy is more likely to benefit a venture when the founding team is composed of members with diverse functional backgrounds and is not heavily involved in strategic decision-making.


2013 ◽  
Vol 372 ◽  
pp. 17-20 ◽  
Author(s):  
Haruhiko Iida ◽  
Hidetoshi Sakamoto ◽  
Yoshifumi Ohbuchi

The purpose of this research is the development of new design method for integrating the optimum strength evaluation and the product design which can make the best use of material's characteristics obtained by the experiment and the analysis. Further we do design using high-strength composite material with this developed concept which is different from conventional design. First, to establish this design method of high-strength materials, we examined these materials characteristics and manufacturing methods and the commercialized products. As this research target material, we focus the fiber reinforced materials such as composite with carbon fiber, glass fiber and aramid fiber. Above all, we marked the carbon fiber which has the high specific tensile strength, wear resistance, heat conductivity and conductance. Here, we introduce the fundamental design concept which makes the best use of the design with enough strength.


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