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高品质机床铸件的稳定生产 被引量:2
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作者 石榴华 冯光 +1 位作者 丁邦太 高莉周 《现代铸铁》 CAS 2016年第2期42-45,52,共5页
叙述了用于高品质机床的铸件应当具备的条件:铸件材料为HT250、HT300、HT350等高牌号铸铁;尺寸精度要求较高,内应力必须较小;导轨面不得有任何缺陷,机加工面不得采用电弧焊。介绍了稳定生产高牌号高品质灰铸铁件的关键措施:(1)... 叙述了用于高品质机床的铸件应当具备的条件:铸件材料为HT250、HT300、HT350等高牌号铸铁;尺寸精度要求较高,内应力必须较小;导轨面不得有任何缺陷,机加工面不得采用电弧焊。介绍了稳定生产高牌号高品质灰铸铁件的关键措施:(1)原铁液的温度控制在1500~1550℃,HT250牌号铸铁废钢加入量提高到53%,HT300牌号铸铁废钢加入量提高到60%;(2)型砂、芯砂的配制要采用合理的原砂、树脂及固化剂配比参数,涂料也要采用合理的配比参数,控制再生砂的质量,以及控制型砂(芯砂)的性能;(3)浇注系统按照大孔出流理论设计,浇注温度控制在1380~1420℃;(4)造型操作及铸型装配操作要正确。通过以上措施,铸件的表面粗糙度达到Ra12.5~50μm,批量生产的铸件尺寸精度达到CTl1级,铸件缺陷废品率降低至3%。 展开更多
关键词 机床铸件 灰铸铁 CE 高品质系数
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In situ observations of tungsten speciation and partitioning behavior during fluid exsolution from granitic melt 被引量:2
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作者 Ye Qiu Xiaolin Wang +5 位作者 Jianjun Lu I-Ming Chou Ye Wan Rongqing Zhang Wenlan Zhang Rui Sun 《Science Bulletin》 SCIE EI CAS CSCD 2022年第22期2358-2368,共11页
Most economically important tungsten(W)deposits are of magmatic-hydrothermal origin.The species and partitioning of W during fluid exsolution,considered to be the controlling factors for the formation of ore deposits,... Most economically important tungsten(W)deposits are of magmatic-hydrothermal origin.The species and partitioning of W during fluid exsolution,considered to be the controlling factors for the formation of ore deposits,are thus of great significance to investigate.However,this issue has not been well addressed mainly due to the significant difference in reported partition coefficients(e.g.,from strongly incompatible to strongly compatible)between fluid and melt(D_(W)^(fluid/melt)).Here,we used an in situ Raman spectroscopic approach to describe the W speciation,and to quantitatively determine the Dfluid/melt of individual and total W species in granite melts and coexisting Na2WO4 solutions at elevated temperatures(T;700–800C)and pressures(P;0.35–1.08 GPa).Results show that WO_(4)^(2-)and HWO4are predominant W species,and the fractions of these two species are similar in melt and coexisting fluid.The partitioning behaviors of WO_(4)^(2-)and HWO4are comparable,exhibiting strong enrichment in the fluid.The total DW fluid/melt ranges from 8.6 to 37.1.Specifically,DW fluid/melt decreases with rising T–P,indicating that shallow exsolution favors enrichment of W in evolved fluids.Furthermore,Rayleigh fractionation modeling based on the obtained D_(W)^(fluid/melt)data was used to describe the fluid exsolution processes.Our results strongly support that fluid exsolution can serve as an important mechanism to generate W-rich oreforming fluids.This study also indicates that in situ approach can be used to further investigate the geochemical behavior of ore-forming elements during the magmatic-hydrothermal transition,especially for rare metals associated with granite and pegmatite. 展开更多
关键词 TUNGSTEN Species Partition coefficient Fluid exsolution In situ observation
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