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Research On The Design Of VCRO-E Automatic Winder

Posted on:2019-03-19Degree:MasterType:Thesis
Country:ChinaCandidate:J J LiuFull Text:PDF
GTID:2351330545495633Subject:Industrial design engineering
Abstract/Summary:PDF Full Text Request
With the development of industrial society,the efficiency of mechanical equipment has been rapidly improved,and the function and modeling of equipment have new concerns and needs.For industrial design,the pursuit of higher added value is the duty needs and mission of industrial designers.Nowadays,the evaluation of excellent equipment design is:(1)the functions that meet the needs of production and processing;(2)the rationality of human-machine operation;(3)the aesthetic modeling and color that are in accord with the modern society;(4)the unification and manifestation of the symbol of corporate culture and enterprise product.According to the above contents,taking the design of automatic winder modeling as an example.this dissertation conducts research on similar products of domestic and foreign enterprises according to the design requirements,separately from the function of the machine,machine operation,shape and color,the enterprise culture as the starting point,summarizes the shape difference between domestic and foreign equipment and development trend;To obtain 'the user's demand information accurately and to find the improved design breakthrough.Finally,the relevant aesthetic elements in the design method are used to arrange and design,to improve the molding ability of the product and to transfer the brand's own value.The specific design is as follows:(1)The optimization design of the product is driven from the user's needs.Extracting the key points of modeling design by obtaining the information of user requirements.Aiming at the shortcomings in the application of traditional Kano model,this paper proposes a user requirement algorithm of fuzzy Kano model.Combined with product evaluation questionnaire,conduct the questionnaire statistics and data processing,analysis of product user satisfaction,and put forward the key point of the design improvement.(2)Based on the results of user demand information,the product family DNA theory is used to extract the factors affecting the color,texture and morphology of the brand image.Take the automatic winder production enterprise(China Textile Machinery Group)as an example to find the modeling features of the brand image;(3)Using the principle of aesthetic design to design the mechanical products,combining the formal rules to optimize and forming a beautiful appearance design;(4)Structure is the key point in the process of equipment modeling design.Reasonable structure is an important factor that determines the shape of product.According to the analysis of the structure of the textile machinery and equipment,the relationship between the factors of modeling and the influencing elements are summarized,and the effective structure and elements are applied reasonably to expand the design.(5)The design method is applied to the modeling design of VCRO-E automatic winder.Based on the analysis of the improved design elements,the shape,man-machine,color and structure of the automatic winder are optimized combined with the brand image characteristics.Secondly,using Rhion and keyshot software modeling,drawing effect map,Pro E and Auto CAD conversion technical drawings,assembling and debugging of production parts.Finally,the design evaluation system is constructed to verify the rationality of the above design method.The established industrial design method is integrated into the molding design of the mechanical equipment product to form the reasonable flow of the design.The contents are as follows:market research,customer demand information research,family-oriented design positioning,structural design,design achievement andevaluation of five parts,forming an important basis for the design of this study.
Keywords/Search Tags:automatic winder modeling, fuzzy Kano model, typical structure, improved design, product family DNA, brand image, AHP
PDF Full Text Request
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