{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":2,"startPagecode":1},"records":[{"abstractinfo":"在熔融镁合金中加入活化SiO2颗粒,由其与镁反应生成Mg2Si原位合成镁基复合材料;用X射线衍射仪(XRD)、电子探针显微分析仪(EPMA)、能谱仪(EDX)对制备的复合材料进行了分析.结果表明,SiO2原位反应制备的镁基复合材料中的增强相Mg2Si颗粒分布均匀,与基体结合较好,复合材料硬度得到提高.","authors":[{"authorName":"刘静","id":"78c56f85-8d72-4e06-9776-857da1d098f0","originalAuthorName":"刘静"},{"authorName":"林希峰","id":"c19f6398-5c29-4535-96e7-ccf8800f2cca","originalAuthorName":"林希峰"},{"authorName":"袁泽喜","id":"70792d23-0f20-474c-8765-4b7f7c142312","originalAuthorName":"袁泽喜"},{"authorName":"张细菊","id":"cef545a2-2bc8-4add-bce7-547d6856613e","originalAuthorName":"张细菊"},{"authorName":"万化忠","id":"810027c8-f80b-4c41-923b-c7a271cce650","originalAuthorName":"万化忠"},{"authorName":"张志","id":"75b238f3-9b36-4aa2-a743-e31d05ee548e","originalAuthorName":"张志"},{"authorName":"","id":"2a9c4b5e-0462-4f8c-a2ef-66ab7c2bf5d2","originalAuthorName":"么聪领"}],"doi":"10.3969/j.issn.1001-0777.2003.04.005","fpage":"11","id":"b06bc3f6-ee52-45d9-a86c-8a01011f656c","issue":"4","journal":{"abbrevTitle":"WLCS","coverImgSrc":"journal/img/cover/WLCS.jpg","id":"64","issnPpub":"1001-0777","publisherId":"WLCS","title":"物理测试"},"keywords":[{"id":"8ad1c47c-2042-483f-90de-d86749952ec2","keyword":"原位反应","originalKeyword":"原位反应"},{"id":"7d860bb7-bc50-4189-a971-877bfaa90cec","keyword":"Mg2Si","originalKeyword":"Mg2Si"},{"id":"653edda6-cd27-43d0-8fb1-3c78bc2b05f3","keyword":"复合材料","originalKeyword":"复合材料"}],"language":"zh","publisherId":"wlcs200304005","title":"二氧化硅原位反应在制备镁基复合材料中的应用","volume":"","year":"2003"},{"abstractinfo":"某飞机在8300m高空执行飞行任务时,二玻璃突然爆破.通过分析找出爆破原因是由于玻璃在应力及微量溶剂作用下形成银纹,进而发展成裂纹,在疲劳载荷的作用下进一步发展导致失效.然后又做了微量溶剂-密封胶对有机玻璃腐蚀影响的对比试验,以便考证有机玻璃对密封胶的抗浸蚀能力.","authors":[{"authorName":"夏祥泰","id":"317b6a70-0476-408b-9abf-655d21ebcf6b","originalAuthorName":"夏祥泰"},{"authorName":"王志宏","id":"351c56c1-0c31-491c-9166-2db250e3d144","originalAuthorName":"王志宏"},{"authorName":"王红英","id":"cae4a08b-a9bb-4d10-ad07-f1ec40920f28","originalAuthorName":"王红英"},{"authorName":"雷兴平","id":"3a80ef9c-6d7a-44b0-b534-8fb96f07ed01","originalAuthorName":"雷兴平"},{"authorName":"孟永刚","id":"71207856-c87f-4659-93bc-405c0d24b757","originalAuthorName":"孟永刚"}],"doi":"10.3969/j.issn.1001-4381.2003.z1.025","fpage":"88","id":"8c52f02c-6b3b-4e89-9851-9a90b25b2692","issue":"z1","journal":{"abbrevTitle":"CLGC","coverImgSrc":"journal/img/cover/CLGC.jpg","id":"9","issnPpub":"1001-4381","publisherId":"CLGC","title":"材料工程"},"keywords":[{"id":"37895ace-44fd-4aa0-a906-9795d8f94240","keyword":"二玻璃","originalKeyword":"二领玻璃"},{"id":"3703b5ab-0ea4-4efb-8b08-daf38cfb2469","keyword":"腐蚀疲劳","originalKeyword":"腐蚀疲劳"}],"language":"zh","publisherId":"clgc2003z1025","title":"某飞机二玻璃失效原因分析","volume":"","year":"2003"},{"abstractinfo":"气凝胶作为一种纳米多孔结构的固体新材料,具有超轻、绝热、透明、防火等优异特性.气凝胶在建筑节能领域具有巨大的应用价值,能够显著提高保温效果、节约能源.本文综述了颗粒、毡、板和玻璃等气凝胶在建筑上的多种应用形式,讨论了其在节能门窗、管道保温、墙体保温、保温涂料、混凝土添加剂等方面的使用方法及应用效果,展望了气凝胶在建筑领域的发展方向.","authors":[{"authorName":"郭晓煜","id":"8cbd00ed-bc91-4cf7-b2e9-c2d452236ea5","originalAuthorName":"郭晓煜"},{"authorName":"张光磊","id":"d3078354-cd13-4a04-8939-612f269ec12b","originalAuthorName":"张光磊"},{"authorName":"赵霄云","id":"11268797-cd6b-468b-a23c-88f3a6a681fb","originalAuthorName":"赵霄云"},{"authorName":"秦国强","id":"4f0611b9-2079-487d-ae59-2df952b18947","originalAuthorName":"秦国强"},{"authorName":"李广鹏","id":"16666dc1-52a7-499b-a6b7-9dc5edd67c25","originalAuthorName":"李广鹏"}],"doi":"","fpage":"444","id":"bd392e13-d642-43ad-a061-665b9b367aa6","issue":"2","journal":{"abbrevTitle":"GSYTB","coverImgSrc":"journal/img/cover/GSYTB.jpg","id":"36","issnPpub":"1001-1625","publisherId":"GSYTB","title":"硅酸盐通报 "},"keywords":[{"id":"0f074f78-3741-425e-95bb-f50608e3e758","keyword":"气凝胶","originalKeyword":"气凝胶"},{"id":"f8eae310-7c1f-4720-87ee-61f5a477d31c","keyword":"绝热材料","originalKeyword":"绝热材料"},{"id":"c8541284-7f54-4e49-a5c7-768e2cedbf52","keyword":"建筑节能","originalKeyword":"建筑节能"},{"id":"033141e7-8420-480f-88d2-b58ac8379323","keyword":"阻燃","originalKeyword":"阻燃"}],"language":"zh","publisherId":"gsytb201502027","title":"气凝胶在建筑节能或的应用形式与效果","volume":"34","year":"2015"},{"abstractinfo":"Zr-4合金氧化(<100nm)的电镜研究李,周邦新(中国核动力研究设计院核燃料及材料实验室,成都610005)发表于《核动力工程》,1994;15(3).获中国腐蚀与防护学会第三届全国青年腐蚀科技论文讲评会优秀奖李,男,I%8年出生.1990年毕业于重庆大学冶金及材料工程系金属材料及热处理专业,现为中国核动力研究设计院核材料专业硕士研究生,主要从事核材料研究.Zr-4合金氧化(<100nm)的电镜研究@李,周邦新$中国核动力研究设计院核燃料及材?...","authors":[{"authorName":"李","id":"f0c3c7cd-14ce-46cb-9171-afc692c21c4a","originalAuthorName":"李聪"},{"authorName":"周邦新","id":"11db6416-bbbf-4ecf-9343-d55fabaad339","originalAuthorName":"周邦新"}],"categoryName":"|","doi":"","fpage":"113","id":"e38fe44d-eecb-4149-b41b-bb820a7027bc","issue":"1","journal":{"abbrevTitle":"FSXB","coverImgSrc":"journal/img/cover/腐蚀学报封面.jpg","id":"24","issnPpub":"2667-2669","publisherId":"FSXB","title":"腐蚀学报(英文)"},"keywords":[],"language":"zh","publisherId":"1002-6495_1994_1_13","title":"Zr-4合金氧化(<100nm)的电镜研究","volume":"6","year":"1994"},{"abstractinfo":"从有源耗散耦合电感电路的经典运动方程出发,通过三个正变换实现了哈密顿量的正则变换,给出了相应的变换矩阵,计算了真空态下介观电路中电荷和电流的量子涨落.","authors":[{"authorName":"嵇英华","id":"ce4f7b62-b9af-48a9-a40e-e052d600c5d1","originalAuthorName":"嵇英华"},{"authorName":"谢芳森","id":"8e253a52-3c7e-4a6d-85e2-4c2bba99cd0a","originalAuthorName":"谢芳森"},{"authorName":"雷敏生","id":"732b62e8-9882-456f-a683-42a1137dbc63","originalAuthorName":"雷敏生"}],"doi":"10.3969/j.issn.1007-5461.2000.04.010","fpage":"339","id":"f82a7848-0a24-4226-9592-c4e09a1e7ee3","issue":"4","journal":{"abbrevTitle":"LZDZXB","coverImgSrc":"journal/img/cover/LZDZXB.jpg","id":"53","issnPpub":"1007-5461","publisherId":"LZDZXB","title":"量子电子学报 "},"keywords":[{"id":"8625bdc0-3ab5-4ac2-b5b4-85a5a207463d","keyword":"耦合电路","originalKeyword":"耦合电路"},{"id":"3eaabe3f-617a-42be-81d8-53b35867d5ac","keyword":"正算符","originalKeyword":"么正算符"},{"id":"4c450453-3947-4c2a-ad74-044a9233db0e","keyword":"正则变换","originalKeyword":"正则变换"},{"id":"04554781-5b18-4c54-8378-bb864d31597f","keyword":"量子涨落","originalKeyword":"量子涨落"}],"language":"zh","publisherId":"lzdzxb200004010","title":"介观耗散耦合电感电路的量子涨落","volume":"17","year":"2000"},{"abstractinfo":"通过提出了一个非耗散的分布参数电路的量子化方案,采用正则与正变换方法来研究真空态电荷与磁通的量子涨落,结果表明分布参数电路的量子涨落既与电路参数及其位置有关,也与信号模态有关.","authors":[{"authorName":"万华明","id":"bd7bd2b7-bff4-46ed-b034-53eca14349b5","originalAuthorName":"万华明"},{"authorName":"顾邦军","id":"d9afdbb3-3757-474c-a714-cde298f6f99d","originalAuthorName":"顾邦军"},{"authorName":"徐国定","id":"367380ee-3036-48de-9dbf-b3785702b62a","originalAuthorName":"徐国定"},{"authorName":"嵇英华","id":"80dbe706-62ae-43aa-a7ae-01485a5830b2","originalAuthorName":"嵇英华"}],"doi":"10.3969/j.issn.1007-5461.2009.01.015","fpage":"86","id":"fe93c6f5-ff39-4490-afa1-e4b1283b166d","issue":"1","journal":{"abbrevTitle":"LZDZXB","coverImgSrc":"journal/img/cover/LZDZXB.jpg","id":"53","issnPpub":"1007-5461","publisherId":"LZDZXB","title":"量子电子学报 "},"keywords":[{"id":"f1bde4dc-61fa-4a22-a011-46d9c162eceb","keyword":"量子光学","originalKeyword":"量子光学"},{"id":"930ef6d9-af77-4a3a-9948-0d9ad31ff59e","keyword":"介观分布参数电路","originalKeyword":"介观分布参数电路"},{"id":"1b0bbf52-e246-45c9-9ab1-7597dd278c1f","keyword":"量子涨落","originalKeyword":"量子涨落"},{"id":"5add8c6d-c1df-4d55-80ed-300bb386caf3","keyword":"正则变换","originalKeyword":"正则变换"},{"id":"9abb6ef2-7973-4b00-bcf4-bf041e260749","keyword":"正变换","originalKeyword":"么正变换"}],"language":"zh","publisherId":"lzdzxb200901015","title":"介观分布参数电路的量子效应","volume":"26","year":"2009"},{"abstractinfo":"总结了交变电场对不锈钢自腐蚀电位、钝性和钝化膜性质的 影响,概述了交变电场下钝化膜的生长机制。不锈钢载波钝化与彩色钝化的结果表明,控制 在适当的参数条件下的交变电场对不锈钢钝化膜的综合性能有较大幅度的提高,显示了该 域的研究价值。","authors":[{"authorName":"李运超","id":"adad735a-8aa9-4753-b593-bde42d9f74a6","originalAuthorName":"李运超"},{"authorName":"严川伟","id":"d4e7d1d1-6c00-4a43-86d2-9354b23a97ca","originalAuthorName":"严川伟"},{"authorName":"段红平","id":"92015741-f2b6-4163-b69c-c5ad8a60553c","originalAuthorName":"段红平"}],"categoryName":"|","doi":"","fpage":"375","id":"85387f92-d9fc-4d4a-ae85-165f3fed85ad","issue":"6","journal":{"abbrevTitle":"ZGFSYFHXB","coverImgSrc":"journal/img/cover/中国腐蚀封面19-3期-01.jpg","id":"81","issnPpub":"1005-4537","publisherId":"ZGFSYFHXB","title":"中国腐蚀与防护学报"},"keywords":[{"id":"7c95abc7-ea5f-4055-a7de-9d031a10fda5","keyword":"不锈钢","originalKeyword":"不锈钢"},{"id":"bd2c58d9-79bb-43e8-81c2-5aabfb62429c","keyword":"passive film","originalKeyword":"passive film"},{"id":"09d2b417-2abc-44fe-b731-2048d407ee7a","keyword":"alternating volta ge (AV) modulation","originalKeyword":"alternating volta ge (AV) modulation"}],"language":"zh","publisherId":"1005-4537_2002_6_6","title":"交变电场对不锈钢钝性和钝化膜性质的影响","volume":"22","year":"2002"},{"abstractinfo":"应用分形理论研究含MnS的超高强度钢D6AC的分形及其分形维数的测量方法,得出试样的韧性与分形维数DH成正比关系,即韧性随分形维数的增大而增加.揭示了断口分形维数与材料性能之间的内在联系,为分形理论在材料的应用提供了有益的帮助.","authors":[{"authorName":"叶瑞英","id":"4e54a39d-412e-4f90-9cc5-07781fece770","originalAuthorName":"叶瑞英"},{"authorName":"李亚琴","id":"c672301c-f866-4c68-82ac-672d2083564a","originalAuthorName":"李亚琴"},{"authorName":"李静媛","id":"332a2ad7-3cf4-424d-8524-3422a91d176c","originalAuthorName":"李静媛"}],"doi":"10.3969/j.issn.1004-244X.2002.04.004","fpage":"14","id":"f491ac3a-e6d1-4be0-820e-0d6214da4919","issue":"4","journal":{"abbrevTitle":"BQCLKXYGC","coverImgSrc":"journal/img/cover/BQCLKXYGC.jpg","id":"4","issnPpub":"1004-244X","publisherId":"BQCLKXYGC","title":"兵器材料科学与工程 "},"keywords":[{"id":"ff25b1e8-2327-411e-a7cd-992c4e78d9e2","keyword":"分形维数","originalKeyword":"分形维数"},{"id":"f3a4885b-c733-42f2-898c-ff7f460106f0","keyword":"分形理论","originalKeyword":"分形理论"},{"id":"4fa1d903-6959-42a9-b888-b6e3d5d9f95d","keyword":"金属断裂","originalKeyword":"金属断裂"},{"id":"e69f0070-aff5-407c-9bd7-f7dc6be55337","keyword":"断裂韧性","originalKeyword":"断裂韧性"}],"language":"zh","publisherId":"bqclkxygc200204004","title":"分形维数与含MnS超高强度钢断裂韧性的关系研究","volume":"25","year":"2002"},{"abstractinfo":"从铁磁畴的能量方程出发,利用正则量子化方法和正变换技术,解析地求得了磁畴量子化运动的波函数.结果表明,即令磁畴的本征频率与外加周期驱动场频率不一致,磁畴的运动仍能表现出精确共振行为.另外,磁畴量子化运动的涨落只受阻尼力的影响,而完全与外加周期驱动场无关.","authors":[{"authorName":"朱开成","id":"d4a9387e-1f19-46c2-9ce2-303d518645d1","originalAuthorName":"朱开成"},{"authorName":"刘铁楠","id":"003c03c0-c9c6-4dc7-9a02-1816d34b453c","originalAuthorName":"刘铁楠"},{"authorName":"唐慧琴","id":"452949a7-92cf-4317-8cf4-275e708d8ab3","originalAuthorName":"唐慧琴"}],"doi":"10.3969/j.issn.1000-3258.2003.02.008","fpage":"121","id":"d03e0fb4-1305-4dc4-bb5b-58740cad8a16","issue":"2","journal":{"abbrevTitle":"DWWLXB","coverImgSrc":"journal/img/cover/DWWLXB.jpg","id":"19","issnPpub":"1000-3258","publisherId":"DWWLXB","title":"低温物理学报 "},"keywords":[{"id":"a0ad8d28-eb9a-47f2-87fc-a994c036e240","keyword":"介观磁畴","originalKeyword":"介观磁畴"},{"id":"c45ae61d-1258-4299-b77c-32427874d9ca","keyword":"正变换","originalKeyword":"么正变换"},{"id":"45d8965e-2eb2-457a-bcb0-52e5af093f84","keyword":"共振","originalKeyword":"共振"}],"language":"zh","publisherId":"dwwlxb200302008","title":"外周期驱动场作用下介观铁磁畴的共振运动","volume":"25","year":"2003"},{"abstractinfo":"本文在日本奥田提出的电阻法测定高聚物扩散系数公式的基础上,对几种介质在环氧树脂(E-44树脂)薄膜和双酚 A 不饱和聚酯树脂(323树脂)薄膜中的扩散行为进行了一系列的实验测定和计算,阐明了扩散系数随介质温度、浓度和浸泡时间变化的关系,讨论了介质在高聚物中的物理和化学作用对扩散行为的影响。实验表明:用电阻法测定扩散系数不但对研究高聚物在化学介质中的腐蚀机理具有一定的意义,而且该法具有快速、方便的特点,可望用于实际耐蚀设备的监控。","authors":[{"authorName":"李国莱","id":"1ec004d6-423e-426c-b7bd-5f73e8185ca2","originalAuthorName":"李国莱"},{"authorName":"朱勇","id":"366188ae-6487-4a4a-ae97-d9c08682fc5e","originalAuthorName":"朱勇"},{"authorName":"宋承谦","id":"ebc0e98e-15ab-44bb-8db6-896dac60f392","originalAuthorName":"宋承谦"},{"authorName":"吴志英","id":"0e7ea120-2562-4512-9d91-dbd58cd41df1","originalAuthorName":"吴志英"},{"authorName":"徐鑫年","id":"d1224706-6b56-44ab-93c6-f13c430ff981","originalAuthorName":"徐鑫年"}],"categoryName":"|","doi":"","fpage":"159","id":"3316a8f1-ab6d-4b35-b610-53e62b3fab01","issue":"3","journal":{"abbrevTitle":"ZGFSYFHXB","coverImgSrc":"journal/img/cover/中国腐蚀封面19-3期-01.jpg","id":"81","issnPpub":"1005-4537","publisherId":"ZGFSYFHXB","title":"中国腐蚀与防护学报"},"keywords":[],"language":"zh","publisherId":"1005-4537_1983_3_8","title":"电阻法测定介质在高分子材料中扩散系数的研究","volume":"3","year":"1983"}],"totalpage":2,"totalrecord":15}