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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Preparation of uranium fuel kernels with silicon carbide nanoparticles using the internal gelation process
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Preparation of uranium fuel kernels with silicon carbide nanoparticles using the internal gelation process

机译:使用内部凝胶化工艺制备具有碳化硅纳米粒子的铀燃料核

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The US Department of Energy continues to use the internal gelation process in its preparation of tristructural isotropic coated fuel particles. The focus of this work is to develop uranium fuel kernels with adequately dispersed silicon carbide (SiC) nanoparticles, high crush strengths, uniform particle diameter, and good sphericity. During irradiation to high burnup, the SiC in the uranium kernels will serve as getters for excess oxygen and help control the oxygen potential in order to minimize the potential for kernel migration. The hardness of SiC required modifications to the gelation system that was used to make uranium kernels. Suitable processing conditions and potential equipment changes were identified so that the SiC could be homogeneously dispersed in gel spheres. Finally, dilute hydrogen rather than argon should be used to sinter the uranium kernels with SiC.
机译:美国能源部在其三结构各向同性涂层燃料颗粒的制备中继续使用内部胶凝工艺。这项工作的重点是开发具有充分分散的碳化硅(SiC)纳米粒子,高抗碎强度,均匀的粒径和良好的球形度的铀燃料核。在辐照至高度燃尽期间,铀籽粒中的SiC会充当过量氧气的吸气剂,并有助于控制氧势,以最大程度地减少籽粒迁移的可能性。 SiC的硬度需要修改用于制造铀核的凝胶化系统。确定了合适的加工条件和潜在的设备更改,以使SiC可以均匀地分散在凝胶球中。最后,应该使用稀氢气而不是氩气来用SiC烧结铀核。

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