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通过对目前包装设计专业基础课程结构现状的分析,阐明了基础课程结构对包装设计专业课程教学的重要性和人才培养目标实现的必要性。并根据个人对于基础课程结构的认识和在教学中的实践,提出了对包装设计专业基础课程结构改革的几点建议。 相似文献
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在均匀化方法和变密度法的基础止,引进了-种基于微结构设计域的拓扑优化方法,并对该方法结合广义凸近似后运用于薄壁包装结构自动化设计的拓扑优化进行简单的介绍. 相似文献
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重型机电产品的出口运输包装必须保护产品在运输过程中不发生破损及机件的锈蚀。包装箱的选材、计算和内防护非常重要。本文结合中国第一重型机械集团公司对机电产品的运输包装设计,浅谈重型机电产品出口运输包装设计、防锈包装、安全运载等问题。 相似文献
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包装设计在我国发展了多年且日渐成熟,随着经济的不断增长,商品包装设计更是得到了前所未有的发展,包装设计理论和包装设计中的色彩设计得到了重视。通过正确合理的使用色彩,可以使产品包装设计更加突出和优秀。 相似文献
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包装设计必须跟上社会经济发展的步伐,紧随时代的发展而发展。我国的产品出口到国外,一直都是"一流质量"、"二流包装"、"三流价格"。这在很大程度上与国内企业不重视产品造型设计、产品包装设计有关。社会经济的不断发展,使人们对生活质量提出了更高的要求,人们的审美程度越来越高,怎么样才能够将中国的包装设计发扬光大?不仅要结合经济发展,还要融入科技元素,挖掘民族文化精髓,走出一条有中国特色的包装设计之路。 相似文献
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包装设计必须跟上社会经济发展的步伐,紧随时代的发展而发展。我国的产品出口到国外,一直都是一流质量、二流包装、三流价格。这在很大程度上与国内企业不重视产品造型设计、产品包装设计有关。社会经济的不断发展,使人们对生活质量提出了更高的要求,人们的审美程度越来越高,怎么样才能够将中国的包装设计发扬光大?不仅要结合经济发展,还要融入科技元素,挖掘民族文化精髓,走出一条有中国特色的包装设计之路。 相似文献
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文章围绕绿色设计的理念从两个方面对绿色设计案例进行梳理分析,一方面基于当前世界著名绿色设计案例,主要集中于绿色能源、绿色制造、绿色建筑、绿色交通、绿色化工和绿色材料6大领域,通过案例分析为中国未来绿色设计的发展提供学习和借鉴;另一方面以世界级产品——苹果手机(i Phone)为主要分析对象,从生命周期、原材料使用、功能设计3个方面入手,通过综合分析认为,iPhone系列手机其生命周期平均缩短1.9—2.0年,3年内产生废弃手机约1亿部,具有产生1 800亿立方米水污染的潜力、产生15万亩土地污染潜力,其28%功能为冗余设计,存在诸多潜在的非绿色弊端。尽管苹果手机在市场经营中取得了高额利润,但距离绿色设计要求还有很长的路要走。通过对绿色设计典型案例的分析,以期引起各类企业对于绿色设计的重视。 相似文献
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随着材料在服装设计中的作用越来越重要,服装流行趋势较多地需要创新材料来体现。本文通过论述材料在服装设计中创新应用的可行性和必要性,从传统材料的二次设计再造、反传统材料和具有科技美的新型材料三个方面重点阐述了材料在服装设计中的创新应用,以期实现服装设计上的新突破。 相似文献
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作为实践和创新相结合的综合教学环节,毕业设计教学的传统模式已经不能满足当今多元化市场对人才的需要.本文针对近年来艺术设计专业毕业设计教学中存在的问题,结合自身教学经验,对新形势下的毕业设计教学改革做了初步探讨. 相似文献
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The notion of dominant designs refers to dominance in the market, hence the literature on dominant designs ignores the selection process that already takes place in pre-market R&D stages of technological innovation. In this paper we address the question to what extent pre-market selection takes place within an industry and how this may lead to dominance of one design over others before the market comes into play. Furthermore we study what selection criteria apply in the absence of actual market criteria. We do so through a historical analysis of design paths for hydrogen passenger cars.We argue that prototypes are used by firms in their internal search process towards new designs and at the same time as means of communicating technological expectations to competitors and outsiders. In both senses, prototypes can be taken as indicators of design paths in the ongoing search process of an industry.We analyzed the designs of prototypes of hydrogen passenger cars from the 1970s till 2008. A database is compiled of 224 prototypes of hydrogen passenger cars, listing the car's manufacturer, year of construction, hydrogen conversion technology, fuel cell type, and capacity of its hydrogen storage system. The analysis shows to what extent one design gained dominance and which strategies were adopted by the firms in their search processes.We conclude that indeed a dominant prototyping design has emerged: the fuel cell combined with high pressure gaseous storage. Actual and expected performance acted as selection criterion, but so did regulation and strategic behaviour of the firms. Especially imitation dynamics, with industry leaders and followers, is a major explanatory factor. Our main theoretical claim is that the selection of a dominant prototyping design is based on an interaction of sets of expectations about future performance of technological components and regulatory pressure that results in herding behaviour of the firms. 相似文献
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“制造强国梦、材料当先行”。关键新材料是未来高新技术产业发展的基石和先导。本文从关键新材料创新突破的演进规律、技术创新、商业化应用、战略与政策等四个方面梳理了近年来关键新材料创新突破的研究进展。研究表明,产业升级不断对关键新材料创新突破提出新的要求和挑战,而关键新材料的创新突破也会进一步推动产业升级。为此,世界各国都根据本国新材料发展情况纷纷制定关键新材料创新突破战略和政策,争夺科技制高点。然而,关键新材料具有“高技术不确定性”和“高市场不确定性”,这决定了关键新材料创新突破面临“技术创新”和“商业化应用”两大难题。未来需要加强智能制造技术经济范式变革和重点领域智能转型对关键新材料创新突破的影响、关键新材料技术创新突破的实现路径、不同类别关键新材料商业化应用模式的创新以及战略与政策的精准设计等方面的研究。 相似文献
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近年来,我国模具产业发展迅速,因此,高职院校所培育的模具技能人才成为了市场的香饽饽。在此背景下,高职院校的模具课程需要不断改革完善才能适应新时代人才培育的要求。本文将通过实际案例分析来探讨高职模具课程的实践教学方法。 相似文献
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目前,我国的展示设计教育过于注重视觉技术性教育,都以学生熟知操作技巧能力为培养重点,这样就导致展示设计不能充分和实践结合,也无法迎合市场需求。在此之上,本文简要分析了展示设计的历史及现状,并通过强化学生理解能力、增强学生创新能力、促进市场能力的培养、建立有效的教学体系等具体改进措施对目前展示设计存在的问题进行了详细的论述,借此让展示设计富有可行性。 相似文献
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针对大学本科课程设计实践教学中经常出现工作效率低的问题,相应提出了一系列具体可行的工作方法和措施,即院从横向和纵向两个角度明确课程设计的作用与系统定位;纠正并建立清晰的设计思想,明确设计“界限”和“方向”问题。本文研究成果为课程设计实践教学工作提供参考。 相似文献
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To address the growing energy demands of sustainable development, it is crucial to develop new materials that can improve the efficiency of energy storage systems. Hierarchically structured porous materials have shown their great potential for energy storage applications owing to their large accessible space, high surface area, low density, excellent accommodation capability with volume and thermal variation, variable chemical compositions and well controlled and interconnected hierarchical porosity at different length scales. Porous hierarchy benefits electron and ion transport, and mass diffusion and exchange. The electrochemical behavior of hierarchically structured porous materials varies with different pore parameters. Understanding their relationship can lead to the defined and accurate design of highly efficient hierarchically structured porous materials to enhance further their energy storage performance. In this review, we take the characteristic parameters of the hierarchical pores as the survey object to summarize the recent progress on hierarchically structured porous materials for energy storage. This is the first of this kind exclusively to survey the performance of hierarchically structured porous materials from different porous characteristics. For those who are not familiar with hierarchically structured porous materials, a series of very significant synthesis strategies of hierarchically structured porous materials are firstly and briefly reviewed. This will be beneficial for those who want to quickly obtain useful reference information about the synthesis strategies of new hierarchically structured porous materials to improve their performance in energy storage. The effect of different organizational, structural and geometric parameters of porous hierarchy on their electrochemical behavior is then deeply discussed. We outline the existing problems and development challenges of hierarchically structured porous materials that need to be addressed in renewable energy applications. We hope that this review can stimulate strong intuition into the design and application of new hierarchically structured porous materials in energy storage and other fields. 相似文献