钛工业进展, 2013, (4): 40-43.
坩埚冷却系统改造对中间合金熔炼的影响
王旭峰 1, , 李中奎 2, , 张建军 3, , 周军 4, , 田锋 5, , 王文生 6, , 石明华 7,
1.西部新锆核材料科技有限公司,陕西 西安 710016
2.西部新锆核材料科技有限公司,陕西 西安 710016; 西北有色金属研究院,陕西 西安 710016
3.西部新锆核材料科技有限公司,陕西 西安 710016
4.西部新锆核材料科技有限公司,陕西 西安 710016
5.西部新锆核材料科技有限公司,陕西 西安 710016
6.西部新锆核材料科技有限公司,陕西 西安 710016
7.西部新锆核材料科技有限公司,陕西 西安 710016
Effect of Cooling Method on Melting Process of Zirconium Alloy
Wang Xufeng 1, , Li Zhongkui 2, , Zhang Jianjun 3, , Zhou Jun 4, , Tian Feng 5, , Wang Wensheng 6, , Shi Minghua 7,
1.西部新锆核材料科技有限公司,陕西 西安 710016
2.西部新锆核材料科技有限公司,陕西 西安 710016; 西北有色金属研究院,陕西 西安 710016
3.西部新锆核材料科技有限公司,陕西 西安 710016
4.西部新锆核材料科技有限公司,陕西 西安 710016
5.西部新锆核材料科技有限公司,陕西 西安 710016
6.西部新锆核材料科技有限公司,陕西 西安 710016
7.西部新锆核材料科技有限公司,陕西 西安 710016
Keywords: zirconium alloy , melting 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TiSi2O8(BTS)薄膜.通过XRD衍射、傅立叶红外(FT-IR)、拉曼(Raman)散射光谱和原子力显微镜(AFM)对薄膜的显微结构进行了表征.AFM分析显示,BTS薄膜表面光滑,晶粒尺寸在0.30~0.50μm.薄膜结构分析表明:随着退火温度的增加,BTS薄膜的结晶度增加,薄膜结构变得更加致密.同时,随着退火温度的升高,晶胞尺寸出现了收缩,导致了BTS薄膜的四方比c/a从0.613上升到0.618,将对薄膜的压电性能产生影响.","authors":[{"authorName":"朱满康","id":"f3a506c3-d059-443c-8760-83caaa416fa3","originalAuthorName":"朱满康"},{"authorName":"代伍坤","id":"d3683a94-ad4d-4a7e-bfef-15bb88eca871","originalAuthorName":"代伍坤"},{"authorName":"侯育冬","id":"7f084952-d23c-4ffd-be8f-b279d8bd7337","originalAuthorName":"侯育冬"},{"authorName":"严辉","id":"349b3d89-f3b8-403d-b386-6bbb0a631dad","originalAuthorName":"严辉"},{"authorName":"邵明明","id":"e728339e-41db-49c6-9ddd-08ec2b2e5ca5","originalAuthorName":"邵明明"},{"authorName":"陈晓阳","id":"bb5bd4a9-192a-4f86-866c-789ea0be16ff","originalAuthorName":"陈晓阳"}],"doi":"10.3969/j.issn.1000-985X.2005.02.019","fpage":"283","id":"e70706b2-e155-4a59-9de1-3dcde6f6a06b","issue":"2","journal":{"abbrevTitle":"RGJTXB","coverImgSrc":"journal/img/cover/RGJTXB.jpg","id":"57","issnPpub":"1000-985X","publisherId":"RGJTXB","title":"人工晶体学报"},"keywords":[{"id":"12028874-5775-42f9-8b1f-1db0368656bf","keyword":"铁电薄膜","originalKeyword":"铁电薄膜"},{"id":"495d7180-720b-4524-8bec-80125af2aff5","keyword":"Ba2TiSi2O8","originalKeyword":"Ba2TiSi2O8"},{"id":"eb962fb4-3b66-4789-9e89-88751689862b","keyword":"钡钛硅石","originalKeyword":"钡钛硅石"},{"id":"fbd4e75f-063a-4d6d-9472-f2af7df8be97","keyword":"溶胶-凝胶法","originalKeyword":"溶胶-凝胶法"}],"language":"zh","publisherId":"rgjtxb98200502019","title":"溶胶-凝胶法Ba2TiSi2O8铁电薄膜的制备及结构表征","volume":"34","year":"2005"},{"abstractinfo":"用等离子体增强化学气相沉积(PCVD)法和化学气相沉积(CVD)法分别制备TiN系薄膜.采用扫描电镜、X射线衍射仪和连续加载压入仪研究分析薄膜的微观结构、相结构和薄膜的力学性能,并采用电极电位法测定了薄膜的耐腐蚀性能.研究表明:PCVD法TiN系薄膜的微观组织形态明显优于同类的CVD法薄膜,PCVD法薄膜晶粒尺寸细小、均匀,形态圆整,组织致密;CVD法薄膜晶粒形态为多边形,尺寸较粗大、不均匀,组织致密性差;PCVD法TiN系薄膜的韧性和结合力等力学性能可达到或优于同类CVD法薄膜;虽然PCVD法薄膜的氯含量(约为2%)远高于CVD法薄膜(约为0.5%),但PCVD法薄膜的耐蚀性能却明显优于CVD法薄膜.还研究分析了PCVD法和CVD法成膜模式对薄膜微观结构和性能的影响机理.","authors":[{"authorName":"刘齐成","id":"f3ac9d94-9efa-4a37-8a3f-4142365e3024","originalAuthorName":"刘齐成"},{"authorName":"刘培英","id":"6ef58706-2c0f-46e5-9992-80d41b9bd76f","originalAuthorName":"刘培英"},{"authorName":"陶冶","id":"8a1da3b6-ee2c-4207-a645-30bdd428179b","originalAuthorName":"陶冶"},{"authorName":"刘利","id":"b3b5e639-a192-4c67-beaa-19ea7adbaf1a","originalAuthorName":"刘利"}],"doi":"10.3969/j.issn.1001-4381.2000.12.007","fpage":"22","id":"67fb2d2f-38e0-4264-9880-28f2116e3827","issue":"12","journal":{"abbrevTitle":"CLGC","coverImgSrc":"journal/img/cover/CLGC.jpg","id":"9","issnPpub":"1001-4381","publisherId":"CLGC","title":"材料工程"},"keywords":[{"id":"47601606-e973-4ec2-b974-4b23b8b5c4df","keyword":"CVD法","originalKeyword":"CVD法"},{"id":"fcd0f415-3936-4fa2-b0e9-c1e053aac214","keyword":"PCVD法","originalKeyword":"PCVD法"},{"id":"b1fcd969-6691-4227-b8d5-9a433c382c23","keyword":"薄膜","originalKeyword":"薄膜"}],"language":"zh","publisherId":"clgc200012007","title":"CVD法与PCVD法TiN薄膜研究","volume":"","year":"2000"},{"abstractinfo":"阐述了CVT(化学气相输运)法生长GaP的基本反应和输运速度,采用CVT法生长出了GaP多晶.设计了石英管的结构以制造出一个局部的低温区域,防止了GaP在管壁的生长.生长出的GaP多晶相对密度为98%,红外透过率达到30%,努普硬度为611kg/mm2.散射颗粒测试表明主要的光散射颗粒为多晶中存在的孔隙.","authors":[{"authorName":"王向阳","id":"2df50be6-c137-4649-99b9-091bce29d191","originalAuthorName":"王向阳"},{"authorName":"何莉","id":"74414dd7-4076-48e6-aa1a-9b94c32baf17","originalAuthorName":"何莉"},{"authorName":"田鸿昌","id":"0a18863a-9213-4988-8e75-1fcc35503eb3","originalAuthorName":"田鸿昌"},{"authorName":"东艳萍","id":"60373a81-709a-4481-b8a8-e6170c35d5f9","originalAuthorName":"东艳萍"},{"authorName":"蔡以超","id":"6f2d41dd-9e81-4cf7-b4c5-e1d52e34bd69","originalAuthorName":"蔡以超"}],"doi":"10.3969/j.issn.1000-985X.2004.05.037","fpage":"860","id":"01e32cc4-8d15-40f2-95d1-bbcb95c60230","issue":"5","journal":{"abbrevTitle":"RGJTXB","coverImgSrc":"journal/img/cover/RGJTXB.jpg","id":"57","issnPpub":"1000-985X","publisherId":"RGJTXB","title":"人工晶体学报"},"keywords":[{"id":"45082acd-db43-4f66-a052-edc5a0dc602e","keyword":"CVT(化学气相输运)","originalKeyword":"CVT(化学气相输运)"},{"id":"51f83f95-6f6b-45d1-b3dd-6ee7b6653692","keyword":"GaP多晶","originalKeyword":"GaP多晶"},{"id":"f4f66a0c-c568-44e0-933e-62c5019db024","keyword":"红外窗口材料","originalKeyword":"红外窗口材料"}],"language":"zh","publisherId":"rgjtxb98200405037","title":"CVT法生长GaP多晶","volume":"33","year":"2004"},{"abstractinfo":"利用红外热像仪法探测龟裂技术","authors":[{"authorName":"西名庆晃,今西大辅,吉永阳一,横山康雄,前田亘","id":"195deb38-d58d-43ac-a9ac-a206e887324a","originalAuthorName":"西名庆晃,今西大辅,吉永阳一,横山康雄,前田亘"},{"authorName":"译者:刘雪寒","id":"e720417b-90dc-4150-aabf-f639c9de281c","originalAuthorName":"译者:刘雪寒"}],"categoryName":"|","doi":"","fpage":"60","id":"aee7e877-222f-4d28-9830-f46739c17940","issue":"5","journal":{"abbrevTitle":"WLCS","coverImgSrc":"journal/img/cover/WLCS.jpg","id":"64","issnPpub":"1001-0777","publisherId":"WLCS","title":"物理测试"},"keywords":[{"id":"f889dd55-9b5a-4253-bf30-bb916d3733f3","keyword":"红外热像仪,龟裂技术","originalKeyword":"红外热像仪,龟裂技术"}],"language":"zh","publisherId":"1001-0777_2011_5_17","title":"利用红外热像仪法探测龟裂技术","volume":"29","year":"2011"},{"abstractinfo":"研究叙述了贵金属首饰加工的常用方法,并着重介绍了精密铸造法的工艺流程、操作步骤及技术参数.为首饰原型的设计、模型的制作、首饰成品的生产加工及最终的产品检查,提供了既先进又详尽的方法.","authors":[{"authorName":"许珠信","id":"8faced49-1847-4d5e-a6be-8117a871af91","originalAuthorName":"许珠信"}],"doi":"10.3969/j.issn.1001-1277.2004.02.015","fpage":"46","id":"b4a71d08-c87e-49a0-b810-1154002a8694","issue":"2","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"2dce169c-033d-406d-9029-e3fc1a76bcc1","keyword":"首饰加工","originalKeyword":"首饰加工"},{"id":"28058d1b-e943-4740-a4c4-b0195264c75b","keyword":"机械冲压","originalKeyword":"机械冲压"},{"id":"0167f113-0459-4137-9b5d-fa3dbef50d89","keyword":"手工","originalKeyword":"手工"},{"id":"91130139-5351-4d47-a9bc-bd3c574e434f","keyword":"精密铸造","originalKeyword":"精密铸造"},{"id":"0dfd535a-ecdb-4e52-8cf8-0c918946c9e1","keyword":"模型","originalKeyword":"模型"},{"id":"0586846a-a65d-4f92-8b91-a2035035804a","keyword":"成品","originalKeyword":"成品"}],"language":"zh","publisherId":"huangj200402015","title":"精密铸造法首饰加工","volume":"25","year":"2004"},{"abstractinfo":"叙述了原子吸收光谱分析法在电镀工业园区分析中的应用.简要介绍了原子吸收光谱分析的基本原理和原子吸收分光光度计的构造及其功能;着重介绍了原子吸收法中仪器最佳操作条件的选择,包括吸收波长、灯电流、预热时间、狭缝宽度、火焰性质、观测高度、燃烧器角度及试液提升量等,以便分析工作者根据仪器型号的不同进行优选.最后还介绍了仪器的日常使用与维护,及一般故障的排除方法.可供电镀工业园区实验室化验员参考.","authors":[{"authorName":"丘星初","id":"49d166da-0414-4de6-a008-5d37159fb864","originalAuthorName":"丘星初"},{"authorName":"丘山","id":"a2fc273c-0e7d-46ae-9d6e-4341347aeaa6","originalAuthorName":"丘山"},{"authorName":"丘圣","id":"ff98dd53-3055-414b-be2c-bf360a202971","originalAuthorName":"丘圣"},{"authorName":"储荣邦","id":"54c39fb7-d55e-4eda-9693-93a27f7f5caa","originalAuthorName":"储荣邦"}],"doi":"10.3969/j.issn.1001-3849.2012.03.010","fpage":"42","id":"24548ebe-113f-4c72-9dc9-3adc13c6bf58","issue":"3","journal":{"abbrevTitle":"DDYJS","coverImgSrc":"journal/img/cover/DDYJS.jpg","id":"20","issnPpub":"1001-3849","publisherId":"DDYJS","title":"电镀与精饰 "},"keywords":[{"id":"caf0ad0d-be72-4912-838f-8160a29eead2","keyword":"原子吸收光谱分析法","originalKeyword":"原子吸收光谱分析法"},{"id":"a487eb73-32fb-4ebd-b40c-c8fea09d6195","keyword":"电镀分析应用","originalKeyword":"电镀分析应用"},{"id":"ccb1add3-c4f6-40ad-b761-db7e14017430","keyword":"仪器使用与维护","originalKeyword":"仪器使用与维护"}],"language":"zh","publisherId":"ddjs201203010","title":"原子吸收法简介(Ⅱ)(续完)","volume":"34","year":"2012"},{"abstractinfo":"以石墨氧化物为前躯体,采用爆炸法合成石墨烯.利用XRD,SEM,XPS,TEM,SAED和Raman等测试手段对石墨烯的形貌,成份和结构进行表征.结果表明,石墨氧化物在爆炸产生的热量和冲击波的作用下发生完全剥离并被还原成石墨烯.新合成的石墨烯呈透明褶皱状,含有2层~5层石墨层,并具有较好的晶体结构.","authors":[{"authorName":"王灿","id":"915f62cd-431b-4ba3-aec2-aadc82fc9510","originalAuthorName":"王灿"},{"authorName":"詹亮","id":"fcd91663-a73f-4cd2-85a9-ec704e6650c3","originalAuthorName":"詹亮"},{"authorName":"乔文明","id":"9fd38033-39ae-45bd-a4d2-373609cce42b","originalAuthorName":"乔文明"},{"authorName":"凌立成","id":"67530763-a356-4b91-9033-e2be0174bd48","originalAuthorName":"凌立成"}],"doi":"10.1016/S1872-5805(11)60063-2","fpage":"21","id":"32a594c5-7613-4e2a-83ea-0442e15193ce","issue":"1","journal":{"abbrevTitle":"XXTCL","coverImgSrc":"journal/img/cover/XXTCL.jpg","id":"70","issnPpub":"1007-8827","publisherId":"XXTCL","title":"新型炭材料"},"keywords":[{"id":"9249412a-8cba-43c2-8496-76a7a38cf84f","keyword":"石墨烯","originalKeyword":"石墨烯"},{"id":"dae79fed-9235-4a91-9cb4-0fa7dfaa2ae4","keyword":"石墨氧化物","originalKeyword":"石墨氧化物"},{"id":"c70531b6-d49a-4547-8b05-12a6ed0d0301","keyword":"爆炸","originalKeyword":"爆炸"},{"id":"3c7b2eff-0812-41a7-a54e-3745c094991e","keyword":"剥离","originalKeyword":"剥离"}],"language":"zh","publisherId":"xxtcl201101006","title":"爆炸法合成石墨烯","volume":"26","year":"2011"}],"totalpage":3342,"totalrecord":33414}