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Failure behaviors of vacuum plasma sprayed tungsten coatings for plasma facing application

机译:面向等离子应用的真空等离子喷涂钨涂层的失效行为

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摘要

About 1 mm vacuum plasma sprayed tungsten (VPS-W) coatings were fabricated on the copper chromium zirconium (CuCrZr) alloys substrate. The failure behaviors were studied by means of the steady state and transient heat load using the electron beam facility and the Nd: YAG laser, respectively. The results indicated that the columnar crystals grew up and then micro-cracks between the lamellar layers were observed. Macro-cracks and delamination appeared with the fatigue cycles increase. Finally, the coating failed. The surface cracks were also observed and propagated during the fatigue tests. The failure behaviors of the transient heat load are as follows: the homogeneous melting and micro-cracks, melting tungsten ejection which enhanced the erosion of tungsten due to the splash and evaporation. In addition, the physical properties of W coatings such as porosity, Vickers hardness were degraded. The roughing phenomenon was not easy to be observed due to the rough surface characteristic of VPS-W coatings.
机译:在铜铬锆(CuCrZr)合金基底上制造了约1毫米的真空等离子喷涂钨(VPS-W)涂层。利用电子束设备和Nd:YAG激光器分别通过稳态和瞬态热负荷研究了失效行为。结果表明,柱状晶体长大,然后观察到层状层之间的微裂纹。随着疲劳周期的增加,出现宏观裂纹和分层。最终,涂层失败了。在疲劳测试过程中,还观察到了表面裂纹并扩展了裂纹。瞬态热负荷的失效行为如下:均匀的熔化和微裂纹,熔化的钨喷射,由于飞溅和蒸发而增强了钨的腐蚀。另外,W涂层的物理性能例如孔隙率,维氏硬度降低。由于VPS-W涂层的粗糙表面特性,不容易观察到粗糙现象。

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