{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"通过在杭州湾跨海大桥和舟山大陆连岛工程金塘大桥的应用情况,本文总结了跨海大桥钢管桩耐久性设计采用的高性能熔结环氧复合涂层与牺牲阳极法阴极保护联合保护技术的要点、优点,提出存在的和需要进一步研究的问题.","authors":[{"authorName":"李晓东","id":"089d47ea-c8c1-4b68-b3b7-eab5edb6e756","originalAuthorName":"李晓东"},{"authorName":"李京","id":"aabbfefa-881e-4a74-baa6-ac70ed48f274","originalAuthorName":"李京"},{"authorName":"陆卫中","id":"05d5cc89-4dd0-4f64-a690-4f2ae3622b2b","originalAuthorName":"陆卫中"},{"authorName":"史杰智","id":"cdd9bcc1-b1b2-41e6-aa03-16f6c708d27f","originalAuthorName":"史杰智"},{"authorName":"高英","id":"62aca24b-fbb8-430a-9db5-b23f058a8d60","originalAuthorName":"高英"},{"authorName":"魏英华","id":"95617b42-a205-495d-a505-1e8786d3ac58","originalAuthorName":"魏英华"},{"authorName":"张立新","id":"fa60fd0e-3396-4a34-a143-e14e7de579a1","originalAuthorName":"张立新"}],"doi":"","fpage":"87","id":"d7f97510-3310-43d2-8a6e-188f2f76dbe5","issue":"z1","journal":{"abbrevTitle":"FSYFH","coverImgSrc":"journal/img/cover/FSYFH.jpg","id":"25","issnPpub":"1005-748X","publisherId":"FSYFH","title":"腐蚀与防护"},"keywords":[{"id":"5a30ab7d-666b-4bec-b690-5f230a09711f","keyword":"跨海大桥","originalKeyword":"跨海大桥"},{"id":"f4b24f86-98ac-4399-bb83-85e2967586f0","keyword":"钢管桩","originalKeyword":"钢管桩"},{"id":"e19f1855-36f6-46e3-8ee7-99b0a670a5fa","keyword":"高性能涂层","originalKeyword":"高性能涂层"},{"id":"16d68f77-6e7d-4a48-ae63-d26a6be00016","keyword":"阴极保护","originalKeyword":"阴极保护"}],"language":"zh","publisherId":"fsyfh2008z1015","title":"跨海大桥钢管桩高性能涂层与牺牲阳极法阴极保护联合保护技术","volume":"29","year":"2008"},{"abstractinfo":"熔结环氧(SEBF)涂装技术目前己在许多行业重腐蚀环境下广泛应用,具有独特的腐蚀防护效果.针对SEBF涂层抗应力腐蚀(SCC)、疲劳腐蚀(CF)、焊接部位腐蚀及点蚀等局部腐蚀进行了测试及应用研究,结果表明,SEBF涂层可解决金属材料在腐蚀环境下局部腐蚀问题,试验及应用效果良好.其抗局部腐蚀效果明显、经济实用,特别是对异型复杂工件的防护具有其它常规防护方法无法比拟的优点.","authors":[{"authorName":"李晓东","id":"003ee845-0f55-4803-92d7-1c35926af998","originalAuthorName":"李晓东"},{"authorName":"李京","id":"2a6cad76-ae02-4467-90f4-c65b83ca8379","originalAuthorName":"李京"},{"authorName":"张立新","id":"d832d48b-28ea-4a09-9c2e-9e241ec76d82","originalAuthorName":"张立新"},{"authorName":"高英","id":"95156511-3977-4533-a5d1-21ae66553239","originalAuthorName":"高英"},{"authorName":"史杰智","id":"76ad42d7-b354-4d25-8b20-c5adc03e485f","originalAuthorName":"史杰智"}],"doi":"","fpage":"66","id":"e44c37e4-0d0e-4836-ad50-08ba20527be7","issue":"2","journal":{"abbrevTitle":"FSYFH","coverImgSrc":"journal/img/cover/FSYFH.jpg","id":"25","issnPpub":"1005-748X","publisherId":"FSYFH","title":"腐蚀与防护"},"keywords":[{"id":"20f62bb1-aa06-47fb-9911-d7b1cc41590e","keyword":"熔结环氧涂装技术","originalKeyword":"熔结环氧涂装技术"},{"id":"6c336330-1458-4564-831a-cef5f8f53303","keyword":"局部腐蚀","originalKeyword":"局部腐蚀"},{"id":"46742a8c-589e-4615-9fdd-376bb8ae1002","keyword":"腐蚀环境","originalKeyword":"腐蚀环境"}],"language":"zh","publisherId":"fsyfh200102006","title":"应用熔结环氧涂装技术抗局部腐蚀","volume":"22","year":"2001"},{"abstractinfo":"“敏杰”提金剂具有低毒环保、浸出速度快、使用方法简单等优点,在碱性条件下替代NaCN浸金效果较好,可大大降低环境污染压力。张家口弘基矿业有限责任公司采用“敏杰”提金剂进行了金矿堆浸工业试验研究和生产应用,结果表明:在金矿石堆浸生产中,“敏杰”提金剂完全可以替代NaCN进行浸金,其生产技术指标与NaCN浸金相当,金浸出率达到50%以上,具有良好的经济效益、环境效益,可在黄金行业推广应用。","authors":[{"authorName":"刘金贵","id":"9e0369a0-8fe5-4914-903e-fde9dcb6764f","originalAuthorName":"刘金贵"}],"doi":"10.11792/hj20160716","fpage":"65","id":"8b4bf26f-8402-4ec5-9edc-c7594b99f208","issue":"7","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"af873f01-3b12-4dcf-ac49-daf32ecf6f17","keyword":"低毒","originalKeyword":"低毒"},{"id":"a720e77a-48c1-4328-a8eb-7eb48f345cd1","keyword":"环保","originalKeyword":"环保"},{"id":"29a6792e-9d74-4dd4-833b-2c5689ae8f8a","keyword":"“敏杰”提金剂","originalKeyword":"“敏杰”提金剂"},{"id":"ecce1148-bd7e-47e5-8544-671a3c568c3b","keyword":"NaCN","originalKeyword":"NaCN"},{"id":"e6aba0e5-24f7-4085-a5d2-f868bf2c3a94","keyword":"金矿","originalKeyword":"金矿"},{"id":"7380cccc-54b2-4901-8e13-cb63f3d3dc41","keyword":"堆浸","originalKeyword":"堆浸"}],"language":"zh","publisherId":"huangj201607023","title":"采用“敏杰”提金剂堆浸工业试验研究及应用","volume":"37","year":"2016"},{"abstractinfo":"“敏杰”提金剂具有低毒环保、使用方法简单的优点,且在常规碱性条件下代替NaCN浸金效果好,并可大大降低环境污染的压力.对广西田林高龙黄金矿业有限责任公司鸡公山金矿石,采用“敏杰”提金剂的堆浸生产工业实践表明:在药剂消耗、成本费用及提高金浸出率等方面较采用NaCN有较大幅度改善;按其200万t/a矿石处理规模,年可增收节支561.6万元,大大降低了企业生产成本,取得了良好的经济效益和社会效益.这在国内黄金类似矿山有广泛的适用性,极具推广意义.","authors":[{"authorName":"李杰","id":"190b0013-b5c3-4938-8df2-30281372aa49","originalAuthorName":"李杰"},{"authorName":"邓劲松","id":"5e3232ec-15cb-427a-a093-a70e5cdc96ca","originalAuthorName":"邓劲松"},{"authorName":"容树辉","id":"83728252-ef4c-4327-9384-cab131dcf482","originalAuthorName":"容树辉"},{"authorName":"刘怀礼","id":"c6b3ecb0-5382-4210-9c7c-f1637570958a","originalAuthorName":"刘怀礼"},{"authorName":"刘玉雷","id":"3e53b93c-73d9-4018-87ff-0d19f8704c56","originalAuthorName":"刘玉雷"},{"authorName":"李志民","id":"ed21bef6-9f5d-4a16-8e90-6d4eca0cf4f3","originalAuthorName":"李志民"},{"authorName":"肖国洪","id":"d45081e4-be4f-4a03-8d71-450204e1ac9e","originalAuthorName":"肖国洪"}],"doi":"10.11792/hj20140116","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history of materials science. historian of science (technology)","originalKeyword":" history of materials science. historian of science 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"},"keywords":[{"id":"cb24c847-6abf-4290-83e3-d87669d60b03","keyword":"物理科学","originalKeyword":"物理科学"},{"id":"c515f352-cb3e-46cb-af1d-d5153dd86575","keyword":"分子聚集理论","originalKeyword":"分子聚集理论"},{"id":"a4db2cbb-ac91-478b-b53b-39795b575fd1","keyword":"聚集力学","originalKeyword":"聚集力学"}],"language":"zh","publisherId":"gcrwlxb200811001","title":"物理科学发展史的回顾与聚集力学的创建","volume":"29","year":"2008"},{"abstractinfo":"Faraday进入皇家学院(Royal Institutio n)后,在1820-1822年间从事包括铜、镍、铬及贵金属在内的合金钢研究,尽管未发展出有实际用途的钢种,也可算是合金钢研究的先驱.1856年转炉炼钢法出现后,钢产量猛增,Mu sh et高碳高钨自淬火刀具钢应运而生(1868),逐渐发展成18\\|4\\|1高速钢(1906).Hadfield在 1882年研制出高碳高锰奥氏体耐磨钢,成分至今未变.他还研制出硅钢片,并在1903年制出第一台铁损小的变压器.Brearley在1913年研制出低碳高铬(1Cr13)马氏体不锈钢,在这之后,铬镍奥氏体不锈钢才问世.本世纪初汽车工业的兴起,促进了合金结构钢的发展(合金钢牌号前面冠以SAE就是美国汽车工程师学会的缩写),而两次世界大战都伴随有合金钢的产量及品种的大发展.","authors":[{"authorName":"郭可信","id":"a4e00e13-010a-4230-abb7-a1cc9c11dcd3","originalAuthorName":"郭可信"}],"doi":"10.3969/j.issn.1673-2812.2001.03.001","fpage":"2","id":"566fd9d1-7bb1-432b-9b88-0c7fc44997e6","issue":"3","journal":{"abbrevTitle":"CLKXYGCXB","coverImgSrc":"journal/img/cover/CLKXYGCXB.jpg","id":"13","issnPpub":"1673-2812","publisherId":"CLKXYGCXB","title":"材料科学与工程学报"},"keywords":[{"id":"912546e6-9f10-4c6b-9180-e632e7caead3","keyword":"金相","originalKeyword":"金相"},{"id":"8e754747-e807-4a56-a2fc-be23e25507e3","keyword":"历史","originalKeyword":"历史"},{"id":"ff0ccd81-5658-4176-80d1-847c3137c3b8","keyword":"合金钢","originalKeyword":"合金钢"}],"language":"zh","publisherId":"clkxygc200103001","title":"金相学史话 (4):合金钢的早期发展史","volume":"19","year":"2001"}],"totalpage":7,"totalrecord":67}