{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":2,"startPagecode":1},"records":[{"abstractinfo":"通过等频图分析并结合时域有限差分法模拟,基于光子晶体自准直机制可以实现电磁能量高度局域的无衍射光束传播.实验上加工出柱状长方晶格光子晶体,利用红外CCD,在1540nm-1570nm波段范围内观测到0.4mm的自准直传播,通过粒子散射光亮度估算出光子晶体链上传输损耗为17dB/mm.该结构表现出来的宽频性能以及毫米量级的传输距离,使其具有应用在光互连中的潜力.","authors":[{"authorName":"李浩","id":"5e542fcd-f32e-4b44-9dec-26ccfaeef846","originalAuthorName":"李浩"},{"authorName":"武爱民","id":"bbc23520-e4bc-479d-9262-a7a56cac0347","originalAuthorName":"武爱民"},{"authorName":"黄海阳","id":"02231da5-7fda-4380-a736-5d5d704f7d55","originalAuthorName":"黄海阳"},{"authorName":"李伟","id":"a9278672-729a-4770-ad7f-04e4f8c1e274","originalAuthorName":"李伟"},{"authorName":"盛振","id":"39f24c5a-670f-4aa5-a630-f2da79da9c59","originalAuthorName":"盛振"},{"authorName":"王曦","id":"f20f23eb-2e3d-4c28-9296-d2ebf6c8bdd4","originalAuthorName":"王曦"},{"authorName":"邹世昌","id":"81adabbb-9c51-4a13-8982-e65de1da37ad","originalAuthorName":"邹世昌"},{"authorName":"甘甫烷","id":"8d31796c-3398-4eea-a9ac-7ffa93ccc960","originalAuthorName":"甘甫烷"}],"doi":"","fpage":"73","id":"4bf3b137-1ec5-4660-8f93-b2e658225f3b","issue":"2","journal":{"abbrevTitle":"GNCLYQJXB","coverImgSrc":"journal/img/cover/GNCLYQJXB.jpg","id":"34","issnPpub":"1007-4252","publisherId":"GNCLYQJXB","title":"功能材料与器件学报 "},"keywords":[{"id":"8c8b91f1-06a9-49ce-96bc-6d2def42c4f7","keyword":"光子晶体","originalKeyword":"光子晶体"},{"id":"8a59038a-6217-40b2-a4a1-8998a05dfb47","keyword":"自准直","originalKeyword":"自准直"}],"language":"zh","publisherId":"gnclyqjxb201302006","title":"基于二维长方晶格柱状光子晶体的衍射抑制","volume":"19","year":"2013"},{"abstractinfo":"了解海洋上空大气气溶胶的变化情况具有重要的科研和应用价值.本文在讨论了太阳辐射计的标定、大气气溶胶光学厚度的计算和Angstrom参数的计算等问题的基础上,介绍了利用多波段太阳辐射计对黄海海域气溶胶光学厚度的测量和研究.测量结果表明黄海海域大气气溶胶主要由自然来源的气溶胶构成,气溶胶光学厚度在0.1左右,光学厚度的日变化和逐日变化不大,Angstrom波长指数约为1.2,大气混浊度指数在0.05左右.","authors":[{"authorName":"李正强","id":"66ebee82-c53b-47a1-8e92-34a42bcfa116","originalAuthorName":"李正强"},{"authorName":"赵凤生","id":"8983c3e5-8e02-4b43-8103-3fb336b6cea5","originalAuthorName":"赵凤生"},{"authorName":"赵崴","id":"dffe2835-1f6e-4d65-8aaa-ab223f078296","originalAuthorName":"赵崴"},{"authorName":"高飞","id":"9ac96a68-d7bf-4acd-bab0-d8b895990b8f","originalAuthorName":"高飞"},{"authorName":"唐军武","id":"467fd068-9c46-48cd-87fc-c23b931326a4","originalAuthorName":"唐军武"}],"doi":"10.3969/j.issn.1007-5461.2003.05.026","fpage":"635","id":"0b3bd058-8a4e-4f9e-8791-ae71d0ef61b9","issue":"5","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":"19c6fe2b-ec07-4f79-aff4-53ea5fcdd72d","keyword":"气溶胶","originalKeyword":"气溶胶"},{"id":"6ba161f7-1418-4fe2-b599-81023ff29b81","keyword":"光学厚度","originalKeyword":"光学厚度"},{"id":"2a3f31b4-b930-4a88-9f44-f330aac3f1b5","keyword":"海洋","originalKeyword":"海洋"}],"language":"zh","publisherId":"lzdzxb200305026","title":"黄海海域气溶胶光学厚度测量研究","volume":"20","year":"2003"},{"abstractinfo":"B11-2黑色丙烯酸电泳涂料具有抗锈蚀性强、泳透力高、施工范围宽等诸多优点,可克服传统的纯酚醛、环氧酯电泳涂料涂膜质量差的缺陷.概述了该涂料的主要特性及在黄海客车涂装中的工艺流程、主要装置等工艺参数.","authors":[{"authorName":"郝英华","id":"044ebe18-a626-4e05-b93b-f1f08c6e3ba2","originalAuthorName":"郝英华"}],"doi":"10.3969/j.issn.0253-4312.2000.02.010","fpage":"25","id":"b6b76291-8157-41d3-83af-96b506251ab4","issue":"2","journal":{"abbrevTitle":"TLGY","coverImgSrc":"journal/img/cover/TLGY.jpg","id":"61","issnPpub":"0253-4312","publisherId":"TLGY","title":"涂料工业 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O体系.结合氢氧同位素分析结果,认为土堆金矿床为幔源流体参与成矿的中温热液脉型金矿床.","authors":[{"authorName":"王檬","id":"4bebf649-7039-412e-b3d8-010676779ffc","originalAuthorName":"王檬"},{"authorName":"孙丰月","id":"62b2bdca-22f8-4888-863c-2c5de1a6d5a4","originalAuthorName":"孙丰月"},{"authorName":"王力","id":"9783775e-3bf3-4ca2-902c-936a83922985","originalAuthorName":"王力"},{"authorName":"陈昌昕","id":"560dfd8c-8a18-48bd-b7c1-f38b49ad6741","originalAuthorName":"陈昌昕"},{"authorName":"王馨莹","id":"5bb3124f-6e1a-402c-89d9-d5dcd9973d16","originalAuthorName":"王馨莹"}],"doi":"10.11792/hj20160606","fpage":"24","id":"692c3bd8-686d-4ff9-a2c5-18355b06845e","issue":"6","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"dc061b46-00a1-4e12-a922-2792b6dfda6d","keyword":"流体包裹体","originalKeyword":"流体包裹体"},{"id":"3b70460b-999a-46ec-9aea-76286da3f35e","keyword":"矿床成因","originalKeyword":"矿床成因"},{"id":"15fb2099-f085-451d-b718-37381ddbcaab","keyword":"土堆金矿床","originalKeyword":"土堆金矿床"},{"id":"3a2916b6-59ab-4b9e-9b20-f818fa6d2e74","keyword":"山东海阳","originalKeyword":"山东海阳"}],"language":"zh","publisherId":"huangj201606008","title":"山东海阳土堆金矿床成矿流体包裹体研究","volume":"37","year":"2016"},{"abstractinfo":"沙旺金矿区是胶莱盆地北东缘近年来新发现的盆地边缘砾岩型金矿带的重要组成部分,同时又具有特殊性,为压扭性断裂控制的脉状硫化物矿床.在地质背景分析基础上,对矿区内矿化带、矿体、矿石特征,以及围岩蚀变类型进行了详细总结,并系统分析和归纳了各类找矿标志,指明了进一步找矿的方向和重点工作区.","authors":[{"authorName":"周京仁","id":"60bdd17d-e5d9-4441-892e-d56568f8ffb7","originalAuthorName":"周京仁"},{"authorName":"柴少波","id":"80582848-66bc-4927-92eb-10b641debb82","originalAuthorName":"柴少波"},{"authorName":"刘贤玉","id":"d94d9bf1-62a9-4007-bf34-2f3dd0f81895","originalAuthorName":"刘贤玉"},{"authorName":"邹宗强","id":"094f2bd9-56e6-4397-9172-ce78d4e71ab1","originalAuthorName":"邹宗强"},{"authorName":"陆军波","id":"8175042e-629d-451b-bb5f-038b82c8d8d1","originalAuthorName":"陆军波"}],"doi":"10.3969/j.issn.1001-1277.2010.01.005","fpage":"20","id":"c18f38c5-cb26-4f6a-b869-d2cd3d8a7a22","issue":"1","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"1e756bdf-abcc-4cef-b20c-aaa5098cda6c","keyword":"地质特征","originalKeyword":"地质特征"},{"id":"694665c7-faa4-4617-b773-226b3ef2b9bb","keyword":"找矿标志","originalKeyword":"找矿标志"},{"id":"db8f84f0-8418-405c-9b4e-282cbf9923c1","keyword":"沙旺金矿区","originalKeyword":"沙旺金矿区"},{"id":"44e4d36f-321d-4154-b188-a936a1dd4cb6","keyword":"胶东","originalKeyword":"胶东"}],"language":"zh","publisherId":"huangj201001005","title":"山东海阳沙旺金矿区矿床地质特征及找矿标志","volume":"31","year":"2010"},{"abstractinfo":"通过采用电化学性能测试、极化测试和电化学阻抗测试等方法评价了研制的深海牺牲阳极在模拟深海环境中的性能,并与常规环境进行对比.结果表明,深海阳极在模拟深海环境中的电流效率达95%,实际电容量大于2 700 A·h/kg,工作电位接近-1.1V,溶解形貌良好,腐蚀产物脱落,整体电化学性能优异,但受深海低温低氧环境影响,深海阳极在模拟深海环境中的发出电流量及反应活性略低于常规环境.","authors":[{"authorName":"张海兵","id":"c4a04942-9776-498b-b40b-7bec83b1d4c1","originalAuthorName":"张海兵"},{"authorName":"马力","id":"1221281a-2dc5-4450-a6e0-ca1c05cf464c","originalAuthorName":"马力"},{"authorName":"李威力","id":"75940bc8-1b65-4417-8191-f057128c95d2","originalAuthorName":"李威力"},{"authorName":"许立坤","id":"d8a9b608-f435-48fd-913b-8cd61fd9a7f9","originalAuthorName":"许立坤"},{"authorName":"石磊","id":"aca6dffd-bdeb-4da1-881d-21e9f16d829b","originalAuthorName":"石磊"},{"authorName":"琚选择","id":"cf0dc7cb-c529-4fbf-b027-60869d865d78","originalAuthorName":"琚选择"}],"doi":"","fpage":"63","id":"15a1e054-3332-4db0-82fc-988394408410","issue":"5","journal":{"abbrevTitle":"CLKFYYY","coverImgSrc":"journal/img/cover/CLKFYYY.jpg","id":"10","issnPpub":"1003-1545","publisherId":"CLKFYYY","title":"材料开发与应用"},"keywords":[{"id":"4ee01f74-e89f-4519-b0f1-2a1e093834e6","keyword":"牺牲阳极","originalKeyword":"牺牲阳极"},{"id":"5b52e9ab-b3eb-4c8c-bfd9-ec8a67ad50a8","keyword":"深海","originalKeyword":"深海"},{"id":"3968eb37-c6e1-4aa8-adbc-c8cc128bf121","keyword":"电化学性能","originalKeyword":"电化学性能"}],"language":"zh","publisherId":"clkfyyy201505012","title":"深海牺牲阳极模拟环境电化学性能研究","volume":"30","year":"2015"},{"abstractinfo":"报道了国产碳钢(A3,3C)在我国黄海、东海、南海三个海上实验站八年实海试验的结果。从污损生物附着和碳钢腐蚀的结果看出,污损生物可降低碳钢平均腐蚀率,但促进局部腐蚀;在污损生物活跃的东海、南海近岸海域,一年后碳钢表面100%附着,腐蚀速率稳定在一定值。","authors":[{"authorName":"马士德","id":"0d0d63f3-abbe-4c83-975f-da58673ebf1e","originalAuthorName":"马士德"},{"authorName":"孙虎元","id":"901abedd-9105-4dee-8dd5-46f9d710930c","originalAuthorName":"孙虎元"},{"authorName":"黄桂桥","id":"4a15fefc-8131-4d02-8aa6-271ae695f3b9","originalAuthorName":"黄桂桥"}],"categoryName":"|","doi":"","fpage":"177","id":"97680a02-1e10-409d-889f-bef854642c67","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":[{"id":"98340ae7-4f3d-47f3-a965-b0c4af6b441d","keyword":"生物腐蚀","originalKeyword":"生物腐蚀"},{"id":"586961c6-dd36-4859-b3cc-710580b8d901","keyword":"carbon 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zone"}],"language":"zh","publisherId":"1005-4537_2000_3_8","title":"海洋污损生物对碳钢腐蚀的影响规律","volume":"20","year":"2000"},{"abstractinfo":"以典型的橡胶非金属材料为研究对象,分别置于我国南海、黄海和东海海域,进行不同试验条件下的长期海洋自然环境曝露试验.按一定周期取样,对材料力学性能进行测试,并对试验结果进行分析,研究不同曝露条件及海域等自然环境因素对材料性能的影响.","authors":[{"authorName":"王雯霏","id":"447f33d5-8614-4e84-acb4-e4d2f7ae4e06","originalAuthorName":"王雯霏"},{"authorName":"石磊","id":"0814c70d-4871-41e7-98e1-3708e9cfa4e2","originalAuthorName":"石磊"}],"doi":"","fpage":"74","id":"4792849d-3a9b-4263-9d75-7c49b5aec112","issue":"1","journal":{"abbrevTitle":"CLKFYYY","coverImgSrc":"journal/img/cover/CLKFYYY.jpg","id":"10","issnPpub":"1003-1545","publisherId":"CLKFYYY","title":"材料开发与应用"},"keywords":[{"id":"e4087eff-9ba3-42f7-8a75-fddc9402851f","keyword":"海洋环境","originalKeyword":"海洋环境"},{"id":"fdcf7fd4-417b-463d-a721-652c3bedae0c","keyword":"自然曝露试验","originalKeyword":"自然曝露试验"},{"id":"d7627d91-c997-407f-8768-3ffbd6c49c50","keyword":"舰船非金属材料","originalKeyword":"舰船非金属材料"}],"language":"zh","publisherId":"clkfyyy201601017","title":"非金属材料海洋环境腐蚀性能及其影响因素研究","volume":"31","year":"2016"},{"abstractinfo":"基于山东海阳核电项目,对AP1000核电站独特的模块化建造施工工艺带来的防护涂层破坏问题进行了分析:“开顶法”施工使涂层遭受光照和雨水侵蚀,潮湿的环境有利于霉菌生长并加速对涂层的浸蚀,运输、组装、吊装、焊接等施工过程造成涂层损伤,涂层体系选择不当,等等。提出了相应的解决措施:合理安排施工进度,加盖临时覆盖物,加强排水通风,将用于混凝土墙面的内墙涂料Dry Fall改为耐辐射、防潮防污、耐老化性能好的Macropoxy646涂料,采用“无机富锌+环氧面漆”复合涂层体系代替环氧单层漆用于结构模块和钢结构件等。","authors":[{"authorName":"李炳颖","id":"eb64af84-53a5-411b-8eaf-6a43bc0bb452","originalAuthorName":"李炳颖"},{"authorName":"林金平","id":"01dabd87-fa6a-4f61-9c42-c408447e51bc","originalAuthorName":"林金平"},{"authorName":"朱瑞峰","id":"7c5672dc-e52e-425c-94e4-a3966c868116","originalAuthorName":"朱瑞峰"}],"doi":"","fpage":"331","id":"33a0ce70-db53-481a-be6d-827e6ecdb86c","issue":"6","journal":{"abbrevTitle":"DDYTS","coverImgSrc":"journal/img/cover/DDYTS.jpg","id":"21","issnPpub":"1004-227X","publisherId":"DDYTS","title":"电镀与涂饰 "},"keywords":[{"id":"3c596b31-6a9b-4450-8736-fa949ff9e0c1","keyword":"核电站","originalKeyword":"核电站"},{"id":"46a9bd6a-af8f-4d17-8c75-81be00bfd712","keyword":"模块化施工","originalKeyword":"模块化施工"},{"id":"a7085a83-61b7-48d9-ad2e-1cc1e79f4d4c","keyword":"防腐","originalKeyword":"防腐"},{"id":"a25cfbe7-1027-4cac-a26e-b6952a9731e8","keyword":"涂层","originalKeyword":"涂层"},{"id":"80802409-3806-41a0-a022-2d5521e6a712","keyword":"失效","originalKeyword":"失效"}],"language":"zh","publisherId":"ddyts201506010","title":"AP1000核电站施工期间防护涂层失效的原因及对策","volume":"","year":"2015"},{"abstractinfo":"铜合金在泥沙海水中腐蚀行为的研究(摘要)金威贤,靳裕康,谢荫寒,朱洪兴(冶金部钢铁研究总院舟山海洋腐蚀研究所,舟山316003)流动海水中泥沙的存在加速了铜及铜合金的腐蚀,泥沙的含量对腐蚀的影响规律不一致.鉴于我国东海沿海海域具有低盐度、混浊、泥沙含量高和海生物附着少等自然特点,4年腐蚀数据表明,国产铜合金在舟山全浸区的腐蚀率明显高于黄海的青岛和南海的榆林.从盐度看,舟山站是3个站中最低的,从温度看至少低于榆林站,?...","authors":[{"authorName":"金威贤","id":"069c0506-b8ea-49e4-8ae4-6f65f49e657e","originalAuthorName":"金威贤"},{"authorName":"靳裕康","id":"6f2942f9-6cd2-4503-9ab8-e8933cb18036","originalAuthorName":"靳裕康"},{"authorName":"谢荫寒","id":"d53f60dd-8013-440a-a249-5443fbe54a95","originalAuthorName":"谢荫寒"},{"authorName":"朱洪兴","id":"a971fd69-c85a-4b67-b6e0-8fe3901cf022","originalAuthorName":"朱洪兴"}],"categoryName":"|","doi":"","fpage":"244","id":"07c323eb-fe89-470b-be58-77d18c91836c","issue":"3","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_1995_3_18","title":"铜合金在泥沙海水中腐蚀行为的研究(摘要)","volume":"7","year":"1995"}],"totalpage":2,"totalrecord":14}