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农业机械现代设计方法综述 被引量:14
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作者 赵匀 《东北农业大学学报》 CAS CSCD 北大核心 2012年第2期1-5,共5页
文章简介了农业机械现代设计方法的软件工具和在中国的应用情况,指出现代设计方法的核心是利用软件优化参数。应用现代设计方法首先必须建立设计平台,包括5个方面内容:创新方法规律、理论研究成果、优化设计软件、实验台架、队伍建设。... 文章简介了农业机械现代设计方法的软件工具和在中国的应用情况,指出现代设计方法的核心是利用软件优化参数。应用现代设计方法首先必须建立设计平台,包括5个方面内容:创新方法规律、理论研究成果、优化设计软件、实验台架、队伍建设。农业机械研究难度大、季节性强、环境恶劣、造价低廉、适应广泛、竞争激烈。而现代设计方法的优点是缩短周期、降低成本和精准度高。重点介绍了作者提出的两种优化方法:"复优化"和"参数导引"优化方法,介绍了现代设计方法的程序,并与传统设计方法做了比较。展示了在VB平台上设计的优化、虚拟实验和测试软件界面,并介绍了在"参数导引"理论思想指导下的"傻瓜"化和全自动优化软件的使用方法。 展开更多
关键词 “参数导引”优化方法 “复优化”方法 农业机械现代设计平台 设计方法
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Prediction and optimization of end milling process parameters of cast aluminium based MMC 被引量:3
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作者 R.AROKIADASS K.PALANIRADJA N.ALAGUMOORTHI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第7期1568-1574,共7页
The machining characteristics of LM25 Al/SiCp composite using end milling was investigated.A comprehensive mathematical model was developed for correlating the interactive and higher order influences of various proces... The machining characteristics of LM25 Al/SiCp composite using end milling was investigated.A comprehensive mathematical model was developed for correlating the interactive and higher order influences of various process parameters on the dominant machining criteria,i.e.the tool flank wear phenomena,through response surface methodology,utilizing relevant experimental data obtained through experimentation.Experimental plan was performed by a standard response surface methodology design called a central composite design(CCD).The results of analysis of variance(ANOVA)indicate that the proposed mathematical model can adequately describe the performance within the limits of the studied factors.Optimal combination of these parameters can be used to achieve the minimum tool flank wear. 展开更多
关键词 end milling metal matrix composite(MMC) response surface methodology OPTIMIZATION
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Multifunctional graphene‐based composite photocatalysts oriented by multifaced roles of graphene in photocatalysis 被引量:2
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作者 Yue‐Hua Li Zi‐Rong Tang Yi‐Jun Xu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第3期708-730,共23页
Graphene(GR),a single‐layer carbon sheet with a hexagonal packed lattice structure,has displayed attractive potential and demonstrably become the research focus in artificial photocatalysis due to its enchanting prop... Graphene(GR),a single‐layer carbon sheet with a hexagonal packed lattice structure,has displayed attractive potential and demonstrably become the research focus in artificial photocatalysis due to its enchanting properties in enhancing light absorption,electron transfer dynamics,and surface reactions.Currently,numerous efforts have shown that the properties of GR,which are closely correlated to the photocatalytic performance of GR‐based composites are significantly affected by the synthesis methods.Herein,we first introduce the optimization strategies of GR‐based hybrids and then elaborate the synthesis of GR‐based composite photocatalysts oriented by manifold roles of GR in photoredox catalysis,containing photoelectron mediator and acceptor,improving adsorption capacity,regulating light absorption range and intensity,as well as macromolecular photosensitizer.Beyond that,a brief outlook on the challenges in this burgeoning research field and potential evolution strategies for enhancing the photoactivity of GR‐based hybrids is presented and we anticipate that this review could provide some enlightenments for the rational construction and application of multifunctional GR‐based composite photocatalysts. 展开更多
关键词 GRAPHENE Composite photocatalyst Optimization strategies Synthesis method Multifarious roles of graphene Photocatalytic applications
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Multi-band design for one-dimensional phononic crystals
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作者 ZHANG Pei WANG ZhenYu +1 位作者 ZHANG YongQiang LIANG Xu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第7期1253-1262,共10页
Periodic composites with band gaps that prevent the propagation of elastic waves in certain frequency ranges can be used to control waves for a variety of engineering applications. Although studies on the characterist... Periodic composites with band gaps that prevent the propagation of elastic waves in certain frequency ranges can be used to control waves for a variety of engineering applications. Although studies on the characteristics of these materials, which are called phononic crystals (PCs), have yielded a large number of positive results in recent years, there is still a lack of effective design methods. In this work, a multi-objective optimization approach based on the band gap mechanism and an intelligent algorithm is used to design a one-dimensional (1D) slab construction of PCs. The design aims to fit pre-determined bands by arranging the available materials properly. Obtained by analyzing the wave transmission in periodic layers, the objective functions are linked to the optimization program to obtain a proper solution set. The results of the numerical simulations demonstrate that without constructing complicated structures, the design method is able to produce PCs that overcome the limitations of two-component PCs and hence can feasibly and effectively achieve the design targets. The design approach presented in this paper can be extended to two-or three-dimensional systems and has great potential for the development of sound/ultrasound isolation structures, multiple band frequency filters, and other applications. 展开更多
关键词 phononic crystals multi-band design multi-objective optimization
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