advanced adj. 1.前进的,先驱的;高等的,高深的。 2.先进的。 3.(年纪)老的,(夜)深的。 most advanced branches of science and technology 尖端科学技术。 rather an advanced young woman 较先进的妇女。 a man advanced in years 老年人。 advanced age 高龄。 advanced grammar 高等语法。 advanced ideas 进步思想。 advanced post 前哨。 advanced studies 高等[先进]的学术研究。 a culturally advanced country 高度文明的国家。
composite adj. 1.并合的,复合的,混成的,合成的,集成的。 2.【建筑】混合式的;【造船】铁骨木壳的。 3.【植物;植物学】菊科的。 n. 1.合成物;混合蜡烛,混合客车,综合照片;混合式(建筑物)。 2.【植物;植物学】菊科植物。
advanced arsenal (高级兵工厂):玩家可以在殖民时代就建造兵工厂,并且可以获得更强力的科技。; (高级兵工厂):玩家可以在殖民时代就建造兵工厂,并且有强力的科技可以升级。
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例句与用法
Fiber reinforced polymer ( frp ) tendon , a new advanced composite material , has many advantages such as lightweight , high strength , corrosive resistance , fatigue resistance , and so on 。 frp tendons can do well with the corrosive problem of reinforcing steel bar in the concrect structure 纤维增强塑料筋( frp )是一种新型复合材料,具有轻质、高强、耐腐蚀、耐疲劳等许多优点。 frp能够很好的解决现在混凝土结构中钢筋锈蚀的问题,是较为理想的预应力材料。
With the rapid progress of materials science , petroleum coke shows unique value in producing advanced materials , including high surface area activated carbon , nanometer sized carbide , advanced composite materials , electrorheological fluids , and electrodes for lithium ion batteries 在快速发展的材料科学中,石油焦作为碳源材料显示出独特的作用,可以用来制备包括高比表面积活性炭、纳米碳化物材料、先进复合材料、电流变材料和锂离子电池负极材料等在内的新材料。
The forth shows the technical features and function modules of ansys software . the following two chapters exhibit the main work of the thesis for optimal design of the composite structure and detailed discussion of the optimal results . the last chapter summarizes the theoretical and practical significance and puts forward the prospect of structure optimized design in advanced composite 本文正文共分七章,第一章主要介绍了本文的研究背景和主要研究内容;第二章介绍了复合材料及其优化设计的相关理论;第三章介绍了复合材料层压壳单元刚阵的理论推导;第四章简单介绍了ansys的使用方法;第五、六章详细说明了论文的主要工作内容并对结果进行了深入讨论;最后一章总结了论文的理论与实际意义,对前景提出了展望。
Recently , an advanced composite material named carbon fiber reinforced plastic ( cfrp ) has emerged as an alternative to traditional strengthening materials . many advantages such as lightweight , non - corrosive , simple construction , and high tensile strength make it widely used in strengthening field 碳纤维布( cfrp )加固修补混凝土结构技术是一项新兴的结构加固技术,它是利用树脂类胶结材料将碳纤维材料粘贴于混凝土表面,从而达到对结构构件补强加固及改善结构受力性能的目的。
Based on the analysis of advanced composite structure design and its optimal methods , the author in this thesis sophisticatedly discusses the applied optimal design techniques of composite layered panel tail - structure of a developing aircraft in the phase of theoretical layout design by using ansys system 本文在分析复合材料结构设计技术及优化设计方法的基础上,应用ansys软件环境,系统深入地研究探讨了某型在研飞机平尾复合材料结构打样设计阶段的实用优化设计技术。
The existing reinforced concrete structures can be strengthened by externally bonded with an advanced composite material named fiber reinforced polymer . this is a new reinforcing method . it has been now recognized to be an effective and convenient method of improving their performance under service loads or to increase their ultimate strength and widely applied in practice 粘贴纤维片材( fiberreinforcedpolymer ,简称frp )加固钢筋混凝土结构是一种新型的加固方法,目前它作为改善钢筋混凝土结构在使用阶段性能或提高极限承载力的一种有效而简单的加固方法已逐渐被应用。
Composite material is novel and has a vast developing foreground . it has been used in every walk of life . the composite material aircraft structural technique is high and new technology aiming to carry out high structural efficiency and improve the synthetical performance of aircraft pneumatic elasticity etc . the application of the advanced composite material has a considerable important effect on the aircraft structural lightweight 复合材料是一种新兴的材料,有着广阔的发展前景,其应用已渗透到各行各业。复合材料飞机结构技术是以实现高结构效率和改善飞机气动弹性等综合性能为目标的高新技术。先进复合材料的应用,对飞机结构的轻质化、小型化和高性能化起着至关重要的作用。
As a kind of advanced composite materials , 2d weave structural composites have advantages of capacity to withstand the high temperature , high strength and light mass ; and it can be designed in material and structure to meet the need of the environment . especially it has the potential to be used as the special parts of the aero crafts which are able to withstand the very high temperature 二维编织c sic复合材料作为一种新型高级材料,有其耐高温、高强度、质量轻等优良特点,并能根据使用环境的要求进行材料和复合结构设计而成为最佳的高温结构材料的候选者,尤其作为航空航天飞行器需要承受极高温度的特殊部位结构用材料具有很大的潜力,日益受到人们的广泛关注。
National key laboratory of advanced composites ( lac ) in beijing institute of aeronautics materials ( biam ) has developed a new medium temperature curing epoxy resin system , of which the glass transition temperature is 119 . 88 , for resin transfer molding ( rtm ) . in order to investigate the relation between viscosity and time - temperature , the rheological behavior of the system was studied by dsc and viscosity experiments . a rheological model based on the dual - arrhenius equation was established and used to simulate the rheological behavior of the resin , which was in good agreement with experimental data 本文表征了北京航空材料研究院先进复合材料国防科技重点实验室树脂组新开发出的rtm用中温固化环氧树脂体系3266 (玻璃化转变温度为119 . 88 )其粘度随时间、温度的变化关系,在粘度实验和dsc热分析实验的基础上,对用于rtm工艺的该环氧树脂体系的化学流变特性进行研究,并根据双阿累尼乌斯方程建立树脂体系的流变模型。