首页> 外国专利> METHOD FOR DESIGNING A FUEL ASSEMBLY OPTIMIZED AS A FUNCTION OF THE STRESSES IN USE IN LIGHT-WATER NUCLEAR REACTORS, AND RESULTING FUEL ASSEMBLY

METHOD FOR DESIGNING A FUEL ASSEMBLY OPTIMIZED AS A FUNCTION OF THE STRESSES IN USE IN LIGHT-WATER NUCLEAR REACTORS, AND RESULTING FUEL ASSEMBLY

机译:根据轻核反应堆中所用应力的函数优化燃料组件的设计方法,并产生燃料组件

摘要

A method for design of a fuel assembly for nuclear reactors, including structural components made from zirconium alloy: the mean uniaxial tensile or compressive stress to which the components are subjected during the assembly life is calculated, the zirconium alloy of which the components are made is selected according to the following criteria: those components subjected to an axial or transverse compressive stress of between −10 et −20 MPa are made from an alloy with a content of Sn between Sn=(=0.025σ−0.25)% and Sn=−0.05σ%: those components subjected to such a stress of between 0 et −10 MPa are made from an alloy the Sn content of which is between Sn=traces and Sn=(0.05σ+1)%: those components subjected to such a stress of between 0 and +10 MPa are made from an alloy the Sn content of which is between Sn=0.05% and Sn=(0.07σ+1)%: and those components subjected to such a stress of between +10 and +20 MPa are made from an alloy the content of SN of which is between 0.05% and 1.70%. A fuel assembly made according to the method.
机译:一种用于核反应堆燃料组件的设计方法,包括由锆合金制成的结构部件:计算出组件在装配寿命期间所承受的平均单轴拉伸应力或压缩应力,并计算出由其制成的锆合金根据以下标准选择:承受-10到-20 MPa的轴向或横向压缩应力的组件是由Sn含量在Sn =(=0.025σ-0.25)%和Sn =-之间的合金制成的0.05σ%:那些承受0到-10 MPa应力的成分是由Sn含量在Sn = trace和Sn =(0.05σ+ 1)%之间的合金制成的:由Sn含量在Sn = 0.05%和Sn =(0.07σ+ 1)%之间的合金制成0到+10 MPa的应力:那些承受+10到+20应力的部件MPa由SN含量在0.05%和1.70%之间的合金制成。根据该方法制造的燃料组件。

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