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首页> 外文期刊>Archives of Foundry Engineering >Studies of Binding Kinetics and Choice of Self-Hardening Moulding and Core Sands Used for Casting Massive Parts for Wind Power Industry under the Conditions of Krakodlew Foundry
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Studies of Binding Kinetics and Choice of Self-Hardening Moulding and Core Sands Used for Casting Massive Parts for Wind Power Industry under the Conditions of Krakodlew Foundry

机译:Krakodlew铸造条件下铸造风电行业大型零件的结合动力学及自硬型砂和型芯砂的选择

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Abstract > In highly developed countries, a significant progress in the use of alternative and clean energy sources has recently been observed. The European Union has implemented a programme to build wind turbines. It is estimated that in the coming years, thanks to the support in tax and credit, the global energy will develop very intensively. Many components of the wind turbines are castings. The basic material used for these castings is ductile iron, which in this particular case must meet high requirements imposed by the operating conditions of wind turbines. Anticipating an increase in customer demand for this type of castings, Krakodlew SA has decided to modernize its foundry using the ability to obtain external financing. The ductile iron manufacturing technology is now being developed and adapted to the specific conditions of the foundry plant, including the melting process yielding cast material with the required chemical composition, the technology of moulding, and the conditions for possible secondary metallurgy, spheroidizing treatment and graphitizing inoculation. The fulfilment of the imposed conditions for the casting production demands the use of advanced casting technologies introduced to the manufacturing process. The development of technology to launch the production of ductile iron castings for the wind power industry was supported by The National Centre for Research and Development (NCBiR). This article presents part of research on the binding kinetics of furan resin sands and choice of their composition for moulds and cores to make heavy castings used as components of equipment for the wind power industry.
机译:摘要 >在高度发达国家中,最近已发现在替代能源和清洁能源的使用方面取得了重大进展。欧盟已经实施了建造风力涡轮机的计划。据估计,在未来几年中,得益于税收和信贷的支持,全球能源将非常密集地发展。风力涡轮机的许多部件都是铸件。这些铸件使用的基本材料是球墨铸铁,在这种特殊情况下,必须满足风力涡轮机运行条件所规定的高要求。预期客户对这种铸件的需求会增加,因此Krakodlew SA已决定使用获得外部融资的能力来对其铸造厂进行现代化改造。球墨铸铁制造技术正在开发中,并适应铸造厂的特定条件,包括熔化过程产生具有所需化学成分的铸造材料,成型技术以及可能的二次冶金,球化处理和石墨化的条件接种。为了满足铸造生产所施加的条件,需要使用在制造过程中引入的先进铸造技术。国家研发中心(NCBiR)支持开发用于风电行业的球墨铸铁铸件生产的技术。本文介绍了呋喃树脂砂的结合动力学及其在模具和型芯中的组成选择的部分研究内容,这些模具和型芯用于制造用作风力发电设备的重型铸件。

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