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Product family modeling technology for customized cosmetic packaging design based on basic-element theory 被引量:1
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作者 Tao Chen Ding-Bang Luh Jinguang Wang 《Journal of dermatologic science and cosmetic technology》 2024年第1期2-12,共11页
Background:As the market demands change,SMEs(small and medium-sized enterprises)have long faced many design issues,including high costs,lengthy cycles,and insufficient innovation.These issues are especially noticeable... Background:As the market demands change,SMEs(small and medium-sized enterprises)have long faced many design issues,including high costs,lengthy cycles,and insufficient innovation.These issues are especially noticeable in the domain of cosmetic packaging design.Objective:To explore innovative product family modeling methods and configuration design processes to improve the efficiency of enterprise cosmetic packaging design and develop the design for mass customization.Methods:To accomplish this objective,the basic-element theory has been introduced and applied to the design and development system of the product family.Results:By examining the mapping relationships between the demand domain,functional domain,technology domain,and structure domain,four interrelated models have been developed,including the demand model,functional model,technology model,and structure model.Together,these models form the mechanism and methodology of product family modeling,specifically for cosmetic packaging design.Through an analysis of a case study on men’s cosmetic packaging design,the feasibility of the proposed product family modeling technology has been demonstrated in terms of customized cosmetic packaging design,and the design efficiency has been enhanced.Conclusion:The product family modeling technology employs a formalized element as a module configuration design language,permeating throughout the entire development cycle of cosmetic packaging design,thus facilitating a structured and modularized configuration design process for the product family system.The application of the basic-element principle in product family modeling technology contributes to the enrichment of the research field surrounding cosmetic packaging product family configuration design,while also providing valuable methods and references for enterprises aiming to elevate the efficiency of cosmetic packaging design for the mass customization product model. 展开更多
关键词 Packaging design Cosmetic packaging Product family modeling technology Basic-element theory design for mass customization
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Leather personalized study design in intelligent customization
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作者 CUI Xiaoxiao YUAN Rong 《International English Education Research》 2017年第3期14-16,共3页
The rich and colorful leather design brings a broad stage of fashion design in the past, China's leather (leather) clothing brand single, old style, color: black, blue, is brown. The economic and cultural developm... The rich and colorful leather design brings a broad stage of fashion design in the past, China's leather (leather) clothing brand single, old style, color: black, blue, is brown. The economic and cultural development, leading the fashion changes, the concept is also constantly promote the development of a new direction, to the consumer, aesthetic with the change of consumption concept, the fur (leather) apparel consumption presents a civilian, personalized, ideal trend, leather (leather) clothing to reflects personal charm and style of the clothing style, design aesthetic appreciation, knowledge and other aspects of the new technology and new materials to absorb human body art is to stimulate leather (leather) the change of clothing. With the continuous development of science and technology, intelligent garment customization to the majority of consumers, the effect of intelligent custom fur (leather) three direction costumes (fabrics, colors, styles) for innovative research, get a Of leather (leather) costumes to break the current leather (leather) styles of dull shape, rich leather (leather) and other clothing charm, for the fur (leather) costumes to all ages personality need to provide ideas and new development space. 展开更多
关键词 leather (leather) clothing custom personalized intelligent design
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Customized scaffolds for large bone defects using 3D‑printed modular blocks from 2D‑medical images
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作者 Anil AAcar Evangelos Daskalakis +4 位作者 Paulo Bartolo Andrew Weightman Glen Cooper Gordon Blunn Bahattin Koc 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2024年第1期74-87,共14页
Additive manufacturing(AM)has revolutionized the design and manufacturing of patient-specific,three-dimensional(3D),complex porous structures known as scaffolds for tissue engineering applications.The use of advanced ... Additive manufacturing(AM)has revolutionized the design and manufacturing of patient-specific,three-dimensional(3D),complex porous structures known as scaffolds for tissue engineering applications.The use of advanced image acquisition techniques,image processing,and computer-aided design methods has enabled the precise design and additive manufacturing of anatomically correct and patient-specific implants and scaffolds.However,these sophisticated techniques can be timeconsuming,labor-intensive,and expensive.Moreover,the necessary imaging and manufacturing equipment may not be readily available when urgent treatment is needed for trauma patients.In this study,a novel design and AM methods are proposed for the development of modular and customizable scaffold blocks that can be adapted to fit the bone defect area of a patient.These modular scaffold blocks can be combined to quickly form any patient-specific scaffold directly from two-dimensional(2D)medical images when the surgeon lacks access to a 3D printer or cannot wait for lengthy 3D imaging,modeling,and 3D printing during surgery.The proposed method begins with developing a bone surface-modeling algorithm that reconstructs a model of the patient’s bone from 2D medical image measurements without the need for expensive 3D medical imaging or segmentation.This algorithm can generate both patient-specific and average bone models.Additionally,a biomimetic continuous path planning method is developed for the additive manufacturing of scaffolds,allowing porous scaffold blocks with the desired biomechanical properties to be manufactured directly from 2D data or images.The algorithms are implemented,and the designed scaffold blocks are 3D printed using an extrusion-based AM process.Guidelines and instructions are also provided to assist surgeons in assembling scaffold blocks for the self-repair of patient-specific large bone defects. 展开更多
关键词 Additive manufacturing Modular scaffolds Large bone defect Customized scaffold design Patient-specific scaffolds
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REQUIREMENT PRODUCT CONFIGURATION IN MASS CUSTOMIZATION 被引量:1
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作者 Wang Xin Tan Jianrong Zhang Shuyou Wu Peining 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2005年第4期525-529,共5页
On the basis of researching on requirement product configuration in mass customization, the concept of product family requirement class (PFRC) and requirement-matching template are put forward. A case-based requirem... On the basis of researching on requirement product configuration in mass customization, the concept of product family requirement class (PFRC) and requirement-matching template are put forward. A case-based requirement product configuration (CB-RPC) model and corresponding requirement product model are established. The result of requirement product configuration is obtained by using the method of two-level similar matching. In addition, the effect of the method on requirement responding is analyzed. Finally, the model and the method given are applied in elevator industry, and have improved the enterorise's ability of rapid responding to customer's reouirements. 展开更多
关键词 Mass customization Configuration design Requirement product Requirement responding Case-based reasoning
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Custom Designed Healthcare
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作者 Liu Jian 《ChinAfrica》 2017年第4期46-47,共2页
African patients benefit from targeted high-quality made-in-China medical equipment ONE of the most vulnerable sections of the population in Africa is pregnant women.The reasons for this come down to a range of issues... African patients benefit from targeted high-quality made-in-China medical equipment ONE of the most vulnerable sections of the population in Africa is pregnant women.The reasons for this come down to a range of issues,the most critical being local customs,poverty,and the remoteness of many villages. 展开更多
关键词 Custom designed Healthcare
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Customized Design for Ergonomic Products via Additive Manufacturing Considering Joint Biomechanics
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作者 Jinghua Xu Zhengxin Tu +2 位作者 Shuyou Zhang Jianrong Tan Guanyun Wang 《Chinese Journal of Mechanical Engineering(Additive Manufacturing Frontiers)》 2023年第3期84-94,共11页
This paper presents a customized design method for ergonomic products via additive manufacturing(AM)con-sidering joint biomechanics.An ergonomic customized design model can be built based on kinesiology involving huma... This paper presents a customized design method for ergonomic products via additive manufacturing(AM)con-sidering joint biomechanics.An ergonomic customized design model can be built based on kinesiology involving human joint biomechanics.Manifolds of the human bone can be reconstructed from X-rays,computed tomog-raphy(CT),magnetic resonance imaging(MRI),and direct 3D scanning.The conceptual and detailed design of customized products were implemented on ergonomic shoes and insoles.A lightweight lattice structure with vari-able porosity was generated via structural topology optimization for an ergonomic customized design.Notably,the upper surface of the custom-made insole may adhere perfectly to the plantar surface of the patient,resulting in a lower peak plantar pressure.Finite element analysis(FEA)can be employed to simulate the static or dynamic biomechanical characteristics.The conceptual ergonomic products were forwarded to the machine and fabricated via AM,driven by visual digital twin techniques.The experiments proved that a customized design suitability method for wearable ergonomic products via 3D printing is specifically tailored to the rehabilitation needs of individual customers,while consuming the least cost,time,and materials. 展开更多
关键词 Customized design Wearable ergonomic products Additive manufacturing(AM) Human joint biomechanics Structural topology optimization
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AUGMENTED REALITY SYSTEM FOR AIDING ENGINEERING DESIGN PROCESS OF MACHINERY SYSTEMS 被引量:3
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作者 Marcin JANUSZKA Wojciech MOCZULSKI 《Journal of Systems Science and Systems Engineering》 SCIE EI CSCD 2011年第3期294-309,共16页
The paper presents the application of augmented reality for aiding product design and development of machinery systems. Augmented reality technology integrates an interactive computer-generated word with an interactiv... The paper presents the application of augmented reality for aiding product design and development of machinery systems. Augmented reality technology integrates an interactive computer-generated word with an interactive real word in such a way that they appear as one environment. AR technology can enhance a user's perception of the real world with information that is not actually part of the scene but is relevant to the user's present activity. Presented in the AR system is a mode for changing views of data - especially 3D models - allowing the user to understand the prospective machinery system in a more comprehensive way, thus making the design process more efficient than the one supported by conventional present-day CAD systems. The presented prototype system contains an expert system integrated with AR system and allows the delivering of knowledge to the designer about successive steps of the design process of a mobile robot and practical solutions of realized constructional problems. An approach concerning AR enables the system user to analyze and verify solutions (represented as 3D models) relative to real scenes/objects. This approach is advantageous because the real environment around us often provides a vast amount of information that is difficult to duplicate in a computer. In some cases, the application of an AR system could be an optimal way to verify developed products. 展开更多
关键词 Augmented reality human-computer interface CAD design for customer satisfaction computer-aided decision making
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YHFT-QDSP:High-Performance Heterogeneous Multi-Core DSP
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作者 陈书明 万江华 +8 位作者 鲁建壮 刘仲 孙海燕 孙永节 刘衡竹 刘祥远 李振涛 徐毅 陈小文 《Journal of Computer Science & Technology》 SCIE EI CSCD 2010年第2期214-224,共11页
Multi-core architectures are widely used to in time-to-market and power consumption of the chips enhance the microprocessor performance within a limited increase Toward the application of high-density data signal pro... Multi-core architectures are widely used to in time-to-market and power consumption of the chips enhance the microprocessor performance within a limited increase Toward the application of high-density data signal processing, this paper presents a novel heterogeneous multi-core architecture digital signal processor (DSP), YHFT-QDSP, with one RISC CPU core and 4 VLIW DSP cores. By three kinds of interconnection, YHFT-QDSP provides high efficiency message communication for inner-chip RISC core and DSP cores, inner-chip and inter-chip DSP cores. A parallel programming platform is specifically developed for the heterogeneous nmlti-core architecture of YHFT-QDSP. This parallel programming environment provides a parallel support library and a friendly interface between high level application softwares and multi- core DSP. The 130 nm CMOS custom chip design results benchmarks show that the interconnection structure of in a high speed and moderate power design. The results of typical YHFT-QDSP is much better than other related structures and achieves better speedup when using the interconnection facilities in combing methods. YHFT-QDSP has been signed off and manufactured presently. The future applications of the multi-core chip could be found in 3G wireless base station, high performance radar, industrial applications, and so on. 展开更多
关键词 digital signal processor (DSP) MULTI-CORE ARCHITECTURE parallel programming custom design
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Customized bioceramic scaffolds and metal meshes for challenging large-size mandibular bone defect regeneration and repair
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作者 Bin Zhang Xiaohong Yin +7 位作者 Feng Zhang Yirong Hong Yuesheng Qiu Xianyan Yang Yifan Li Cheng Zhong Huayong Yang Zhongru Gou 《Regenerative Biomaterials》 SCIE EI 2023年第1期1178-1191,共14页
Large-size mandible graft has huge needs in clinic caused by infection,tumor,congenital deformity,bone trauma and so on.However,the reconstruction of large-size mandible defect is challenged due to its complex anatomi... Large-size mandible graft has huge needs in clinic caused by infection,tumor,congenital deformity,bone trauma and so on.However,the reconstruction of large-size mandible defect is challenged due to its complex anatomical structure and large-range bone injury.The design and fabrication of porous implants with large segments and specific shapes matching the native mandible remain a considerable challenge.Herein,the 6%Mg-doped calcium silicate(CSi-Mg6)andβ-andα-tricalcium phosphate(β-TCP,α-TCP)bioceramics were fabricated by digital light processing as the porous scaffolds of over 50%in porosity,while the titanium mesh was fabricated by selective laser melting.The mechanical tests showed that the initial flexible/compressive resistance of CSi-Mg6 scaffolds was markedly higher than that ofβ-TCP andα-TCP scaffolds.Cell experiments showed that these materials all had good biocompatibility,while CSi-Mg6 significantly promoted cell proliferation.In the rabbit critically sized mandible bone defects(∼13 mm in length)filled with porous bioceramic scaffolds,the titanium meshes and titanium nails were acted as fixation and load bearing.The results showed that the defects were kept during the observation period in the blank(control)group;in contrast,the osteogenic capability was significantly enhanced in the CSi-Mg6 andα-TCP groups in comparison with theβ-TCP group,and these two groups not only had significantly increased new bone formation but also had thicker trabecular and smaller trabecular spacing.Besides,the CSi-Mg6 andα-TCP groups showed appreciable material biodegradation in the later stage(from 8 to 12 weeks)in comparison with theβ-TCP scaffolds while the CSi-Mg6 group showed much outstanding mechanical capacity in vivo in the early stage compared to theβ-TCP andα-TCP groups.Totally,these findings suggest that the combination of customized strength-strong bioactive CSi-Mg6 scaffolds together with titanium meshes is a promising way for repairing the large-size load-bearing mandible defects. 展开更多
关键词 customized design bioceramic scaffolds titanium meshes mandibular bone reconstruction additive manufacturing
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