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The use of carbon fibre composites in divertor target plate tiles and structures

机译:使用碳纤维复合材料在转向器靶板瓷砖和结构中

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Carbon-carbon fibre composite (CFC), in the form of target plate tiles, is a standard material for intercepting conducted power in divertors. Its good thermal conductivity and ability to withstand high temperatures without melting give it an advantage over other materials for plasma facing components. Supporting structures are generally made from stainless steels or Inconels. In a radiating divertor, designed to operate with detached plasmas, heat is deposited by radiation on to both plasma facing components and supporting structures. Consequently CFC has been chosen as a structural material to overcome the limitations of metal structures. The various material properties such as thermal conductivity, strength, rigidity and anisotropic behaviour need to be taken into account for the design. Tests have been carried out on a range of CFC materials from different manufacturers to determine these properties. Thermal behaviour has been studied through power load tests in the JET Neutral Beam Test Bed. Structural properties have been measured through mechanical tests on prototype assemblies. Clamping and joining methods have been developed for the assembly of CFC plates to form structurally and thermally robust tile carriers for a radiating divertor.
机译:以靶板瓦片形式的碳 - 碳纤维复合物(CFC)是用于拦截导通电力的标准材料。其良好的导热性和能力承受高温而不熔化,使其在其他材料面向等离子体上的优点。支撑结构通常由不锈钢或圆形制成。在辐射方向子中,设计用于用分离的等离子体操作,通过辐射沉积热量,该等离子体面向等离子体面对部件和支撑结构。因此,已选择CFC作为结构材料以克服金属结构的局限性。需要考虑各种材料特性,例如导热率,强度,刚度和各向异性行为。在不同厂商的一系列CFC材料上进行了测试以确定这些性质。通过喷射中性光束试验台中的电力负载测试研究了热行为。通过原型组件上的机械测试来测量结构性。已经开发了用于组装CFC板的夹紧和连接方法,以形成用于辐射偏移器的结构和热鲁棒瓦片载体。

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