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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Shear debonding behavior of a carbon-coated interface in a tungsten fiber-reinforced tungsten matrix composite
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Shear debonding behavior of a carbon-coated interface in a tungsten fiber-reinforced tungsten matrix composite

机译:钨纤维增强钨基复合材料中碳涂层界面的剪切剥离性能

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摘要

One of the crucial issues related to structural application of tungsten for fusion reactor components is its brittleness. To improve tungsten toughness we explored a novel toughening method based on W fiber reinforcement. The idea is to utilize the effective energy dissipation caused by controlled cracking and friction at fiber/matrix interfaces. To realize this, the interfaces need to be engineered by means of adequate coating. In this work we investigated fracture behavior of a carbon-coated (0.6 μm) interface in a single-filament mini-composite using fiber push-out test. The composite was fabricated by CVD process. Mechanical parameters were determined by fitting the related theoretical models with the experimental data. Calibrated fracture energy and debonding strength was 7.4 J/m~2 and 285 MPa, respectively. This fracture energy value satisfied the theoretical criterion of controlled crack deflection. The result of the carbon coating was compared to the case of uncoated interface which exhibited stronger friction.
机译:与用于聚变反应堆组件的钨的结构应用有关的关键问题之一是其脆性。为了提高钨的韧性,我们探索了一种基于W纤维增强的新型增韧方法。这个想法是利用纤维/基体界面处受控的开裂和摩擦引起的有效能量耗散。为此,需要通过适当的涂层来设计接口。在这项工作中,我们使用纤维推出试验研究了单丝微型复合材料中碳涂层(0.6μm)界面的断裂行为。该复合材料通过CVD工艺制造。通过将相关理论模型与实验数据拟合来确定机械参数。校准后的断裂能和剥离强度分别为7.4 J / m〜2和285 MPa。该断裂能值满足控制裂纹挠度的理论标准。将碳涂层的结果与未涂层的界面(摩擦力更大)的情况进行了比较。

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