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首页> 外文期刊>Metallurgical Research & Technology >Investigation the influences of B2O3 and R2O on the structure and crystallization behaviors of CaO-Al2O3 based F-free mold flux
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Investigation the influences of B2O3 and R2O on the structure and crystallization behaviors of CaO-Al2O3 based F-free mold flux

机译:研究B2O3和R2O对基于F-Al2O3基于F-Al2O3结构和结晶行为的影响

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The influences of B2O3 and R2O on the structure and crystallization of CaO-Al2O3 based F-free mold flux were investigated by Raman Spectroscopy and Differential Scanning Calorimetry Technique, respectively, for developing a new type of F-free mold flux. The results of structural investigations showed that B3+ is mainly in the form of [BO3]. And [BO3] appears to form B-III-O-Al linkage which will produce a positive effect on forming [AlO4] network. The number of bridging oxygen and the degree of polymerization of [AlO4] network structure for CaO-Al2O3 system were also increased with the increasing of B2O3. On the contrary, with the addition of R2O into CaO-Al2O3-B2O3 system, the number of bridging oxygen and the degree of polymerization of [AlO4] network were decreased. DSC results showed that the crystallization process became more sluggish with the increase of B2O3, which indicated that the crystallization ability was weakened. While the quenched mold fluxes crystallized more rapidly when introducing R2O. In other word, the crystallization rates of CaO-Al2O3 based slags were accelerated by the introduction of R2O. The liquidus temperature and crystallization temperature were decreased with the increasing amount of B2O3 or by addition of R(2)Ointo CaO-Al2O3 system. Only one kind of crystal was precipitated in 8% B2O3 and % R2O-containing samples, which was CaAl2O4 identified by SEMEDS. When the content of B2O3 increased from 8% to 16%, Ca3B2O6 is clearly observed, demonstrating that the crystallization ability of Ca3B2O6 is enhanced by the increasing concentration of B2O3 in mold flux. The Ca/Al ratio of the generated calcium aluminate has been altered from 1:2 to 1:4 with the increasing of B2O3. The size of CaAl2O4 crystal is gradually increased with the addition of R2O. The crystallization ability of CaAl2O4 is promoted by R2O.
机译:通过拉曼光谱和差示扫描量热法研究B2O3和R2O对CaO-Al2O3基于无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F-无F的无F游离液相传的影响。结构研究结果表明,B3 +主要以[BO3]的形式。 [Bo3]似乎形成B-III-O-Al键,它将产生对形成[ALO4]网络的积极影响。随着B2O3的增加,CaO-Al2O3系统的桥接氧气数量和聚合的聚合程度也增加了B2O3。相反,随着R2O的加入CaO-Al2O3-B2O3系统,桥接氧的数量和[AlO4]网络的聚合程度降低。 DSC结果表明,随着B2O3的增加,结晶过程变得更加缓慢,这表明结晶能力削弱了。虽然淬火模具助熔剂在引入R2O时更快地结晶。换句话说,通过引入R2O,加速了基于CaO-Al2O3的炉渣的结晶速率。随着B 2 O 3的增加或通过加入R(2)Ointo CaO-Al2O3系统,液相高温和结晶温度降低。在8%B2O3和含%的含R2O的样品中沉淀出一种晶体,其是MEMED鉴定的CAAL2O4。当B2O3的含量增加到8%至16%时,清楚地观察到Ca 3B 2 O 6,证明Ca 3 -2O6的结晶能力通过霉菌助熔剂中的B2O3浓度的增加而增强。产生的铝酸钙的Ca / Al比率随B2O3的增加,从1:2至1:4改变。随着R2O的添加,CaA12O4晶体的尺寸逐渐增加。 CaA12O4的结晶能力由R2O促进。

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