首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >THE MORPHOLOGIES AND ADHESION OF CERAMIC FILMS ON CLAM STEEL SUBSTRATES FOR NUCLEAR FUSION APPLICATIONS
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THE MORPHOLOGIES AND ADHESION OF CERAMIC FILMS ON CLAM STEEL SUBSTRATES FOR NUCLEAR FUSION APPLICATIONS

机译:核融合应用的复合钢基陶瓷膜的形貌和粘附

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In the dual-function lithium-lead test blanket module (DFLL-TBM) thin and durable coatings with a large tritium permeation reduction factor (PRF) and high resistivity are usually used to segregate the structural wall from the liquid Li-Pb. A1_2O_3, Cr_2O_3, SiC, Er_2O_3, et al. are considered as the promising functional coating materials for DFLL-TBM. Due to the thermal expansion coefficients and lattice constants of ceramic and metal materials are quite different, the mechanical properties of ceramic coatings on metal substrates can be reduced by poor adhesion. In this study, A1_2O_3, Cr_2O_3, SiC, Er_2O_3 films were fabricated on China low activation martensitic (CLAM) steel substrates by magnetron sputtering. Atomic force microscope (AFM) was used to study the surface morphologies of ceramic films. The adhesion strength of the films, deposited on CLAM steel, was also studied by scratch test. Results indicate that the surface of SiC films is smoother than the others. While the surface morphologies of A1_2O_3, Cr_2O_3, Er_2O_3 films are similar. The critical load of SiC film, with a minimum value, is about 12.0 mN, while the critical load of A1_2O_3 reaches about 16.4 mN.
机译:在双功能锂铅测试毯模块(DFLL-TBM)中,通常使用具有大tri渗透降低因子(PRF)和高电阻率的薄而耐用的涂层将结构壁与液态Li-Pb隔离开。 A1_2O_3,Cr_2O_3,SiC,Er_2O_3等。被认为是用于DFLL-TBM的有前途的功能涂料。由于陶瓷和金属材料的热膨胀系数和晶格常数相差很大,因此,由于附着力差,金属基材上的陶瓷涂层的机械性能可能会降低。本研究通过磁控溅射在中国低活化马氏体(CLAM)钢基底上制备了Al_2O_3,Cr_2O_3,SiC,Er_2O_3薄膜。原子力显微镜(AFM)用于研究陶瓷膜的表面形态。还通过划痕试验研究了沉积在CLAM钢上的膜的粘合强度。结果表明,SiC膜的表面比其他膜更光滑。尽管Al_2O_3,Cr_2O_3,Er_2O_3膜的表面形貌相似。 SiC薄膜的临界载荷最小值约为12.0 mN,而Al_2O_3的临界载荷约为16.4 mN。

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