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Improving mold powder through crystallization using calcium fluoride and manganese oxide for continuous casting of steel 被引量:1
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作者 Ahmadreza AREFPOUR Leila SHAMS SOOLARI Ahmad MONSHI 《Journal of Advanced Ceramics》 SCIE CAS 2014年第1期43-48,共6页
Mold powder is generally made of SiO2 and CaO with little amount of calcium fluoride(CaF_(2))and carbon.Basically,F^(-)has a crucial effect on viscosity and crystallization of the powder.However,emission of toxic mate... Mold powder is generally made of SiO2 and CaO with little amount of calcium fluoride(CaF_(2))and carbon.Basically,F^(-)has a crucial effect on viscosity and crystallization of the powder.However,emission of toxic materials containing F^(-)constituent such as HF and SiF4 leads to serious environmental pollution.Overall,six powder samples were made during this research to study the effects of such compounds as calcium fluoride(CaF_(2))and manganese oxide(MnO)on the crystallization of mold powder and compare with that of the original mold powder.Having considered the chemical compounds of these six samples,two were finally chosen:powder sample A and powder sample E.The former was a simulated sample of the original mold powder using CaF_(2),and the latter was a less-F^(-)sample in which MnO was used as a substitution for F^(-)in the compounds of the mold powder.In other words,the amount of F^(-)was cut in half comparing to that of the original mold powder.The thermal gravimetric analysis(TGA)was performed on the original mold powder,the simulated sample of the original mold powder and the less-F^(-)sample.The results of the TGA demonstrated the reduction of thermal loss in samples A and E comparing to the original mold powder.On the other hand,the results of differential thermal analysis(DTA)of these three samples,i.e.,original mold powder and samples A and E,demonstrated that melting and crystallization temperatures of the original mold powder were similar to those of samples A and E.Therefore,it can be concluded that samples A and E are potential laboratory-scale substitutions for the original mold powder. 展开更多
关键词 mold powder crystalLIZATION calcium fluoride(CaF2) manganese oxide(MnO)
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氟化钙抛光加工工艺及进展
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作者 彭云峰 杨磊 刘晓阳 《航空制造技术》 CSCD 北大核心 2022年第13期14-25,共12页
氟化钙(Calcium fluoride,CaF_(2))晶体是一种非常重要的光学晶体,因其具备高透射率和良好的长期辐射稳定性被广泛应用于光学仪器中。随着光刻技术向较短波长的发展,CaF_(2)更是成为极紫外光刻物镜的首选材料。CaF_(2)是一种典型的脆性... 氟化钙(Calcium fluoride,CaF_(2))晶体是一种非常重要的光学晶体,因其具备高透射率和良好的长期辐射稳定性被广泛应用于光学仪器中。随着光刻技术向较短波长的发展,CaF_(2)更是成为极紫外光刻物镜的首选材料。CaF_(2)是一种典型的脆性材料,断裂韧性很低,一般通过抛光加工制成CaF_(2)光学表面,所以其抛光加工技术与工艺尤其重要。总结了CaF_(2)的主要加工方法、工艺及研究成果,介绍了其粗加工阶段所涉及的超精密切削和固结磨料研磨方法;重点从超精密抛光这一方面,较全面地概述了浮法抛光、化学机械抛光、固结磨料抛光、磁流变抛光、振动辅助固结磨料抛光和离子束抛光等抛光方法的原理及进展,并对以上加工方法进行对比;最后,对CaF_(2)抛光加工技术的未来发展方向做了初步展望。希望能为CaF_(2)加工领域后续深入研究提供参考。 展开更多
关键词 氟化钙(CaF_(2)) 脆性材料 光学元件加工 超精密加工 抛光技术
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基于氟化钙光学谐振腔的声传感机理研究
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作者 邢恩博 邢彤 +1 位作者 戎佳敏 唐军 《传感器与微系统》 CSCD 北大核心 2022年第7期9-12,28,共5页
氟化钙回音壁模式谐振腔的光学品质因子实验上已经突破10^(11),同时能够实现高稳定棱镜耦合集成,因此,在非接触式的超高灵敏度声学传感方面具有重要的应用潜力。然而,对于高杨氏模量氟化钙晶体材料,外界声学扰动的机理尚不明确。基于氟... 氟化钙回音壁模式谐振腔的光学品质因子实验上已经突破10^(11),同时能够实现高稳定棱镜耦合集成,因此,在非接触式的超高灵敏度声学传感方面具有重要的应用潜力。然而,对于高杨氏模量氟化钙晶体材料,外界声学扰动的机理尚不明确。基于氟化钙晶体盘型谐振腔结构,对外界声学扰动的影响机理进行研究。当外界声压作用于谐振腔时,从空气密度引起的折射率变化、弹光效应诱导有效折射率改变和谐振腔结构形变三个方面开展了研究。计算结果表明:声压导致的谐振腔结构形变影响最为明显,以实验室器件为参考,达到了1.196×10^(-10)Pa^(-1),对应的谐振峰波长响应为4.63×10^(-7)nm/Pa。谐振腔厚度及支撑结构的优化能够提升一个数量级以上,灵敏度可以较容易突破1 V/Pa。 展开更多
关键词 回音壁模式谐振腔 氟化钙晶体 高灵敏度 声传感机理 弹光效应 结构形变
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