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1、檢索課題名稱:超常環(huán)境下材料與結構的力學行為課題分析:“材料與結構”屬于本課題的主體,其應用目標是“超常環(huán)境下的力學行為”,所以有如下檢索詞:關鍵詞:1材料與結構2 超常環(huán)境 3 力學行為3、選擇檢索工具: (1)CNKI數字圖書館:中國期刊全文數據庫 (2)萬方數據庫(會議論文) (3)超星數字圖書館(圖書檢索)。4、檢索策略:因“材料與結構”為課題主體,應優(yōu)先檢索,“超常環(huán)境”和“力學行為”應在檢索結果中同時存在。故制定如下檢索策略。“()”表示優(yōu)先、“*”表示并且。 檢索算法:(材料與結構)*超常環(huán)境*力學行為 時間范圍:2008-2011 文獻范圍:期刊論文、會議論文5、簡述檢索策略調

2、整的過程:在CNKI中國期刊全文數據庫中:為保證查全率,使用“(材料與結構)*超常環(huán)境 *力學行為”檢索運算式,檢索范圍選擇:所有專輯、全文中檢索。檢索出記錄107條。上述檢索策略得到的檢索結果107條過多,考慮縮小檢索范圍,改全文檢索項為篇名檢索,使用“(材料與結構)*超常環(huán)境*力學行為”檢索運算式,檢索范圍選擇:所有專輯,篇名中檢索所有專輯,檢索出記錄0條,上述檢索策略得到的檢索結果 0 條太少,考慮擴大檢索范圍。繼續(xù)用全文檢索,但縮小時間范圍,2011-2011,檢索出記錄16條,數量適中。檢索結果的滿意度,可根據檢索者的需要不斷調整。檢索字段的選擇,可單一,也可以混編,直至滿意。萬方數

3、據庫(會議論文):由于“萬方數據庫(會議論文)”收錄的文獻比較單一,為保證查全率,使用“(材料與結構)+超常環(huán)境+力學行為”檢索運算式,檢索范圍選擇:2000-2011年,檢索出記錄21404條。上述檢索策略得到的檢索結果21404條過多,考慮縮小檢索范圍,改為“(材料與結構)*超常環(huán)境+力學行為”檢索運算式,檢索出記錄915條記錄。上述檢索策略得到的檢索結果915條過多,考慮繼續(xù)縮小檢索范圍,改時間范圍為2009-2011年,檢索出記錄101條。上述檢索策略得到的檢索結果101條還是過多,考慮繼續(xù)縮小檢索范圍,改時間范圍為2010-2011,檢索出記錄1條。3)超星數字圖書館: a、圖書類文

4、獻屬于成熟類知識,出版的數量少且與課題的相關度低,檢索時應盡量擴大檢索范圍。圖書類數據庫的著錄比較簡單,可供檢索的字段少且不規(guī)范,檢索時盡量選用默認字段。使用高級檢索中的書名檢索,不限定年代。檢索式“(材料與結構)+超常環(huán)境+力學行為”, 檢索出記錄0條。 b、調整檢索策略,改為課題主體檢索。用“材料與結構”單一算式在書名中檢索,檢索出記7條。6、整理檢索結果 經上述檢索,獲得了許多相關文獻的信息,對于是否閱讀全文還要進一步斟酌。因此,整理檢索結果非常重要?,F選取其中的幾條結果:CNKI中國期刊全文數據庫有關專輯檢索結果(選1條):篇名:輕質復合材料高溫隔熱性能英文篇名:High-temper

5、ature thermal insulation performance of light mass composites作者中文名:藺曉軒; 沈志洵; 魏璽; 張偉剛;作者英文名:LIN Xiaoxuan1; 2; SHEN Zhixun1; WEI Xi1; ZHANG Weigang1(1.State Key Laboratory of Multi-Phase Complex System; Institute of Process Engineering; Chinese Academy of Sciences; Beijing 100190; China; 2.Graduate Sc

6、hool of Chinese Academy of Sciences; Beijing 100049; China);作者單位:中國科學院過程工程研究所多相復雜系統(tǒng)國家重點實驗室; 中國科學院研究生院;文獻出處:復合材料學報, Acta Materiae Compositae Sinica, 編輯部郵箱 2011年 01期關鍵詞:輕質復合材料; 高溫隔熱性能; 碳/酚醛; ZrO2纖維板; 等離子弧發(fā)生器;英文關鍵詞:light mass composites; high-temperature thermal insulation performance; carbon fiber/phe

7、nolic; ZrO2 fiberboard; plasma arc generator;摘要:設計了一套隔熱材料高溫(1200)隔熱效果的測試裝置,可對隔熱材料進行快速、低成本的有效測試和篩選。采用本裝置在材料熱面中心溫度為160010時,考察了碳/酚醛復合材料和ZrO2纖維板材料背部升溫歷程,評價了2種材料的隔熱性能,并采用有限差分法數值模擬了ZrO2纖維板材料背部升溫歷程,預測其有效導熱系數。研究表明,在加熱初期400 s時間內,碳/酚醛復合材料的隔熱性能優(yōu)于ZrO2纖維板的隔熱性能,后期則相反;ZrO2纖維板的隔熱性能與體積密度有關,有效導熱系數隨溫度升高而非線性地增大。英文摘要:A

8、device for thermal insulation performance of high-temperature materials was designed and established to test light mass thermal insulation materials via a rapid and simple procedure.The thermal insulation performance of carbon fiber/phenolic composite and ZrO2 fiberboard were tested by this device w

9、hen the temperature at the center point of hot face was 1600 10 .The heat transport process of ZrO2 fiberboard was numerically simulated by finite-difference method,and the effective thermal conductivity was.2)萬方數據庫檢索結果(選1條):大型復雜群空區(qū)下采場穩(wěn)定性分析作 者: 李學鋒,徐必根,唐紹輝,郭葵,鄭榮祥 作者單位:李學鋒(廣西大學,廣西南寧 530004) 徐必根,唐紹輝(長

10、沙礦山研究院,湖南 長沙 410012) 郭葵,鄭榮祥(紹興平銅集團公司,浙江 紹興市 312050)會議名稱: 全國采礦技術與裝備進展年評報告會會議時間: 2010年05月01日會議地點: 廈門主辦單位: 中國金屬學會 關鍵詞: 群空區(qū)采場穩(wěn)定性三維彈塑性有限無法正交試驗理論分析3)超星數字圖書館(選1條):常用建筑材料與結構工程檢測作者:汪黎明主編出版時間:2002年12月第1版頁數:566主題詞:建筑材料-檢測 結構工程-檢測中圖分類號:TU5圖書簡介:本書系統(tǒng)介紹了水泥、混凝土等十幾種常用建筑材料的檢驗、評定方法;介紹了預制構件、室內環(huán)境質量及有害物質限量的檢測,并介紹了混凝土結構工程

11、、樁基工程的檢測技術及質量評價。7、標示原文線索:根據檢索結果中的信息,應使相關目標文獻準確定位,定位的基本條件是:篇名、著者、刊名、年、卷、期。原文線索序號必須與檢索結果序號一致,便于回查。(1)輕質復合材料高溫隔熱性能作者:藺曉軒; 沈志洵; 魏璽; 張偉剛;作者單位:中國科學院過程工程研究所多相復雜系統(tǒng)國家重點實驗室; 中國科學院研究生院;文獻出處:復合材料學報, Acta Materiae Compositae Sinica, 編輯部郵箱 2011年 01期(2)專題大型復雜群空區(qū)下采場穩(wěn)定性分析作 者: 李學鋒,徐必根,唐紹輝,郭葵,鄭榮祥會議名稱: 全國采礦技術與裝備進展年評報告會

12、會議時間: 2010年05月01日(3)常用建筑材料與結構工程檢測作者:汪黎明主編出版時間:2002年12月第1版1、檢索課題名稱:超常環(huán)境下材料與結構的力學行為2、課題分析:關鍵詞:1 )材料與結構2 )超常環(huán)境 3 )力學行為3、選擇搜索引擎:1 )谷歌(google)2 )百度(baidu)3 )馬虎(mahuu)4、構建檢索策略:檢索算法:(材料與結構)*超常環(huán)境*力學行為文獻范圍:期刊論文、學位論文、會議論文、專著使用學術類文獻檢索、選擇。5、簡述檢索策略調整的過程:1)在谷歌(google):使用“(材料與結構)*超常環(huán)境*力學行為”檢索運算式,約有9,220,000項符合(材料與

13、結構)*超常環(huán)境*力學行為的查詢結果。2)百度(baidu):使用“(材料與結構)*超常環(huán)境*力學行為”檢索運算式,百度一下,找到相關網頁約1,130,000 篇。3)馬虎:使用檢索式“(材料與結構)*超常環(huán)境*力學行為”,網頁搜索結果一共約93條。6、整理檢索結果:(1)谷歌(google) (選 1 條) 力學學科發(fā)展與科學基金形勢2010年8月19日 . A020303 疲勞與可靠性. A020304 本構關系. A020305 復合材料力學. A020306 智能材料與結構力學. A020307 超常環(huán)境下材料和結構的力學行為 .網頁快照 - 類似結果作者:孟慶國-2010-相關文章(

14、2)百度(baidu)( 選 1 條) 【RTF】國家自然科學基金文件格式:RTF/Rich Text Format - HTML版A020301 彈性力學與塑性力學 A020302 損傷與斷裂力學 A020303 疲勞與可靠性. A020306 智能材料與結構力學 A020307 超常環(huán)境下材料和結構的力學行為 A.2011-5-9作者:李崇劍 王江波 馮昭偉 劉偉 袁志山(3)馬虎(mahuu)(選1條)環(huán)境敏感水溶性嵌段共聚物的超分子自組裝及其納米結構的固定-.與兩親性嵌段共聚物相比,全親水性嵌段共聚物具有更大的結構可調性和更豐富的自組裝形態(tài),且在疏水內核上其鏈段的構象會與自由鏈段的構象

15、變化有很大的差別,這些./Article/CDMD-10.結果來自:-收藏預覽作者:江曉澤7、標示原文線索:(1)力學學科發(fā)展與科學基金形勢國家自然科學基金委員會數理科學部2010年8月19日,合肥作者: 孟慶國鏈接網址:(2)Ti-50.8%Ni合金不同溫度下的力學行為有色金屬 2009年04期 作者:李崇劍 王江波馮昭偉 劉偉 袁志山鏈接網址:(3)環(huán)境敏感水溶性嵌段共聚物的超分子自組裝及其納米結構的固定作者:江曉澤鏈接網址:1、檢索課題名稱:超常環(huán)境下材料與結構的力學行為2、課題分析:中文關鍵詞:1材料與結構2 超常環(huán)境 3 力學行為英文主題詞:1 Materials and struc

16、tures 2 The extraordinary environment 3 Mechanical behavior3、選擇檢索工具:美國工程索引4、構建檢索策略:Materials and structures * The extraordinary environment * Mechanical behavior5、簡述檢索過程:選擇快速檢索,輸入檢索詞:第一、Materials and structures;第二、The extraordinary environment;第三、Mechanical behavior 檢索結果4篇6、根據檢索結果選擇3條記錄根據檢索結果,瀏覽題錄可以

17、確定該文獻的收藏單位(圖書館或情報所、信息中心等),從而可以進一步確定是否索取或借閱、復制原文。Search Results:4 records in Compendex for 1969-2012 ( Materials and structures) WN All fields) AND (The extraordinary environment) WN All fields) AND (Mechanical behavior) WN All fields)1.Colloquium: Failure of molecules, bones, and the Earth itselfBue

18、hler, Markus J. (Laboratory for Atomistic and Molecular Mechanics, Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, United States); Keten, Sinan Source: Reviews of Modern Physics, v 82, n 2, p 1459-1487, May 10, 2

19、010Database: Compendex Abstract - Detailed - Cited by in Scopus (4)2.Seismic vibration control of civil structures using shape memory alloys: A reviewQian, H. (School of Civil Engineering, Zhengzhou University, Zhengzhou, 450001, China); Li, H.N.; Song, G.; Chen, H.; Ren, W.J.; Zhang, S. Source: Pro

20、ceedings of the 12th International Conference on Engineering, Science, Construction, and Operations in Challenging Environments - Earth and Space 2010, p 3377-3395, 2010, Earth and Space 2010: Engineering, Science, Construction, and Operations in Challenging Environments - Proceedings of the 12th In

21、ternational ConferenceDatabase: Compendex Abstract - Detailed3.3.Solid state NMR detection of molecular mixing in bieutectic blends, d-metal complexes, and phase-separated copolymersBelfiore, Laurence A. (Colorado State Univ, Fort Collins, United States); Graham, Hugh; Veda, Eiji; Wang, Yinghua Sour

22、ce: Polymer International, v 28, n 1, p 81-94, 1992Database: Compendex Abstract - Detailed - Cited by in Scopus (7)閱讀文摘:1-3 of 3selected records from Compendex for: ( Materials and structures) WN All fields) AND (The extraordinary environment) WN All fields) AND (Mechanical behavior) WN All fields),

23、 1969-20121、Colloquium: Failure of molecules, bones, and the Earth itself Buehler, Markus J.1, 2, 3; Keten, Sinan1 Source: Reviews of Modern Physics, v 82, n 2, p 1459-1487, May 10, 2010; ISSN: 00346861, E-ISSN: 15390756; DOI: 10.1103/RevModPhys.82.1459; Publisher: American Physical SocietyAbstract:

24、 Materials fail by recurring rupture and shearing of interatomic bonds at microscopic, molecular scales, leading to disintegration of matter at macroscale and a loss of function. In this Colloquium, the state-of-the-art of investigations on failure mechanisms in materials are reviewed, in particular

25、 focusing on atomistic origin of deformation and fracture and relationships between molecular mechanics and macroscale behavior. Simple examples of fracture phenomena are used to illustrate the significance and impact of material failure on our daily lives. Based on case studies, mechanisms of failu

26、re of a wide range of materials are discussed, ranging from tectonic plates to rupture of single molecules, and an explanation on how atomistic simulation can be used to complement experimental studies and theory to provide a novel viewpoint in the analysis of complex systems is provided. Biological

27、 protein materials are used to illustrate how extraordinary properties are achieved through the utilization of intricate structures where the interplay of weak and strong chemical bonds, size and confinement effects, and hierarchical features play a fundamental role. This leads to a discussion of ho

28、w even the most robust biological material systems fail, leading to diseases that arise from structural and mechanical alterations at molecular, cellular, and tissue levels. New research directions in the field of materials failure and materials science are discussed and the impact of improving the

29、current understanding of materials failure for applications in nanotechnology, biotechnology, medicine as well as the built environment. 2010 The American Physical Society.Controlled terms:Biological materials - Bond strength (chemical) - Materials science - Molecules - Quality assuranceClassificati

30、on Code: 951 Materials Science - 931.3 Atomic and Molecular Physics - 931.2 Physical Properties of Gases, Liquids and Solids - 913.3 Quality Assurance and Control - 801.4 Physical Chemistry - 461.2 Biological Materials and Tissue Engineering - 421 Strength of Building Materials; Mechanical Propertie

31、sDatabase: CompendexFull-text and Local Holdings Links2、Seismic vibration control of civil structures using shape memory alloys: A reviewQian, H.1, 2; Li, H.N.2; Song, G.3; Chen, H.1; Ren, W.J.2; Zhang, S.1 Source: Proceedings of the 12th International Conference on Engineering, Science, Constructio

32、n, and Operations in Challenging Environments - Earth and Space 2010, p 3377-3395, 2010, Earth and Space 2010: Engineering, Science, Construction, and Operations in Challenging Environments - Proceedings of the 12th International Conference; ISBN-13: 9780784410967; DOI: 10.1061/41096(366)322; Confer

33、ence: 12th International Conference on Engineering, Science, Construction, and Operations in Challenging Environments - Earth and Space 2010, March 14, 2010 - March 17, 2010; Publisher: American Society of Civil EngineersAbstract: This paper presents a review of structural vibration control in civil

34、 engineering, highlighting smart structures with shape memory alloys (SMAs). SMAs are a class of novel functional material that possess unique properties, including shape memory effect, superelasticity effect, extraordinary fatigue resistance, high corrosion resistance, high damping characteristics

35、and Youngs modulus-temperature relations, which made them great potential for seismic vibration control in civil engineering. On the other hand, the relatively high costs, behaviors dependent on external and internal parameters, unclearness of the thermomechanical processing and the problem of retai

36、ning post-tensioning forces when using some types of SMAs are the barriers to expand the use of SMAs. This paper first presents some basics about SMA materials, thermomechanical properties and constitutive models. Then the researches on the application of SMA in various civil structures such as base

37、 isolation system, intelligent reinforced concrete beam, beam-column connections, steel frames, cable-stayed bridges and simply supported bridges as well as historical building are reviewed. Lastly their limitations as well as prospect for structural vibration control are discussed. 2010 ASCE.Contro

38、lled terms: Bridges - Cables - Civil engineering - Concrete beams and girders - Corrosion fatigue - Corrosion resistance - Earth (planet) - Earthquakes - Functional materials - Intelligent materials - Martensitic transformations - Reinforced concrete - Shape memory effect - Structural dynamics - Vib

39、ration controlClassification code: 951 Materials Science - 535 Rolling, Forging and Forming - 539.1 Metals Corrosion - 545.3 Steel - 657 Space Physics - 731.3 Specific Variables Control - 901 Engineering Profession - 484 Seismology - 415 Metals, Plastics, Wood and Other Structural Materials - 412 Co

40、ncrete - 409 Civil Engineering, General - 408 Structural Design - 401.1 Bridges - 421 Strength of Building Materials; Mechanical PropertiesDatabase: CompendexFull-text and Local Holdings Links3、Solid state NMR detection of molecular mixing in bieutectic blends, d-metal complexes, and phase-separated

41、 copolymersBelfiore, Laurence A.; Graham, Hugh; Veda, Eiji; Wang, Yinghua Source: Polymer International, v 28, n 1, p 81-94, 1992; ISSN: 09598103; Conference: International Symposium on Polymer Materials: Preparation, Characterization and Properties - Polymer 91, Febrary 10, 1991 - Febrary 14, 1991;

42、 Sponsor: IUPAC; Australian Acad of Science; Australian Acad of Technological Sciences & EngineeringPublication year:1992Abstract: This research contribution addresses micromixing in polymer blends that exhibit strong intermolecular association. Specific interactions between dissimilar blend compone

43、nts are detected via high-resolution solid state proton and carbon-13 NMR spectroscopy. The isotropic chemical shifts of the critical component provide strong evidence that molecular complexes form. NMR spectral differences between the blends versus the undiluted components arise from crystal struct

44、ure modifications (if appropriate), conformational changes, hydrogen bonding. d-metal coordination, or altered packing geometries that occur concomitantly with the mixing process. More convincing evidence that two components of a strongly interacting blend reside in a near-neighbor environment is ob

45、tained from the measurement of proton spin diffusion between dissimilar species. Proton spin diffusion is measured directly via the high-resolution CRAMPS experiment (Combined Rotation And Multiple Pulse Spectroscopy) in a homogeneous solid solution of poly(ethylene oxide) and resorcinol, and indire

46、ctly via the carbon-13 spin system in a modified version of the Goldman-Shen experiment for microphase-separated ionic and tri-block copolymers. One of the primary objectives of this research endeavor is to bridge the gap between macroscopic and site-specific probes of phase behavior and strong inte

47、raction in mixtures that form homogeneous solid solutions or coordination complexes. In this respect, results from a macroscopic phase of the polymer-blend research are included in this contribution. Thermal and mechanical properties are measured for strongly interacting systems, whose interaction s

48、ites are characterized via solid state NMR. Metal-ligand coordination in blends of nickel acetate with poly(4-vinylpyridine) produces an extraordinary synergistic effect on the glass transition response.Controlled terms: Copolymers - Phase Diagrams - Crystals - Structure - Metallorganic Polymers - P

49、lastics Blends - Mechanical Properties - Polymers - AssociationClassification code: 801 Chemistry - 802 Chemical Apparatus and Plants; Unit Operations; Unit Processes - 817 Plastics and Other Polymers: Products and Applications - 931 Classical Physics; Quantum Theory; RelativityDatabase: CompendexFu

50、ll-text and Local Holdings Links7、標示原文線索:用中文標示各檢索結果的著錄事項第一篇文獻:1)、篇名:Colloquium: Failure of molecules, bones, and the Earth itself2)、第一責任者:Buehler, Markus J.3)、第一責任者單位:Laboratory for Atomistic and Molecular Mechanics, Department of Civil and Environmental Engineering, Massachusetts Institute of Techn

51、ology, 77 Massachusetts Avenue, Cambridge, MA 02139, United States4)、文獻來源:Reviews of Modern Physics, v 82, n 2, p 1459-1487, May 10, 2010;第二篇文獻:1)、篇名:Seismic vibration control of civil structures using shape memory alloys: A review2)、第一責任者:Qian, H.三、第一責任者單位:School of Civil Engineering, Zhengzhou Uni

52、versity, Zhengzhou, 450001, China四、資料來源:Earth and Space 2010, p 3377-3395, 2010, Earth and Space 2010: Engineering, Science, Construction, and Operations in Challenging Environments - Proceedings of the 12th International Conference;第三篇文獻:篇名:Solid state NMR detection of molecular mixing in bieutecti

53、c blends, d-metal complexes, and phase-separated copolymers二、第一責任者:Belfiore, Laurence A.三、第一責任者單位:Colorado State Univ, Fort Collins, United States四、資料來源:Polymer International, v 28, n 1, p 81-94, 19921、檢索課題名稱:超常環(huán)境下材料與結構的力學行為2、課題分析:中文關鍵詞:1材料與結構2 超常環(huán)境 3 力學行為英文主題詞:1 Materials and structures 2 The extra

54、ordinary environment 3 Mechanical behavior3、選擇檢索工具:Elsevier數據庫4、構建檢索策略:Materials and structures * The extraordinary environment * Mechanical behavior5、簡述檢索過程:選定在Elsevier中期刊、圖書、文摘數據庫等全部文獻資源中檢索2000年以后的關于超常環(huán)境下材料與結構的力學行為的相關文獻。利用確定的檢索策略(Materials and structures * The extraordinary environment * Mechanica

55、l behavior),文獻全文(含文獻題目、摘要、關鍵詞)中檢索,檢到2625篇相關文獻;在文獻題目、摘要和關鍵詞中檢索,檢索到1篇相關文獻;在文獻關鍵詞中檢索到0篇相關文獻;在文獻題目中檢索到0篇相關文獻。6、整理檢索結果:從以上文獻中選擇出3條切題文獻1 Mechanical properties, anisotropic swelling behaviours and structures of jellyfish mesogloea JintangZhu, XuezhenWang, ChangchengHe, HuiliangWang College of Chemistry, Be

56、ijing Normal University, Beijing 100875, PR ChinaReceived 15 September 2011; revised 21 October 2011; Accepted 22 October 2011. Available online 31 October 2011Abstract:Learning from nature is a promising way for designing and fabricating new materials with special properties. As the first step, we

57、need to understand the structures and properties of the natural materials. In this work, we paid attention to the mesogloea of an edible jellyfish (Rhopilema esculenta Kishinouye) and mainly focused on its structure, mechanical and swelling properties. Scanning electron microscope (SEM) investigatio

58、ns show that jellyfish mesogloea has a well-developed anisotropic microstructure, which consists of nano-sized membranes connected with many fibres. The tensile and compressive properties of swollen and dried jellyfish mesogloea samples are measured. The jellyfish mesogloea displays very high tensil

59、e strength (0.17 MPa) and compressive strength (1.43 MPa) even with 99 wt % water. The mechanical properties of jellyfish mesogloea exceed most synthetic hydrogels with similar or even lower water contents. Swelling in acidic and basic buffer solutions weakens the mechanical properties of jellyfish

60、mesogloea. The dried jellyfish mesogloea has very high tensile strength and modulus, which are very similar to those of synthetic plastics. The swelling properties of jellyfish mesogloea in solutions with different pH values were studied. The jellyfish mesogloea exhibits pH-sensitive and anisotropic

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