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Acoustic Emission Analysis of Nanoindentation-Induced Fracture Events

机译:声发射分析Nanoindentation-Induced断裂事件

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Monitoring of acoustic emission activity is employed to characterize the initiation and progression of local failure processes during nanoindentation-induced fracture. Specimens of various brittle materials are loaded with a cube-corner indenter and acoustic emission activity is monitored during the entire loading and unloading event using a transducer mounted inside the specimen holder. As observed from the nano-indentation and acoustic emission response, there are fundamental differences in the fracture behavior of the various materials. Post-failure observations are used to identify particular features in the acoustic emission signal that correspond to specific types of fracture events. Furthermore, analysis of the parametric and transient acoustic emission data is used to establish the crack-initiation threshold, crack-arrest threshold, and energy dissipation during failure. It is demonstrated that the monitoring of acoustic emission signals yields both qualitative and quantitative information regarding highly localized failure events in brittle materials.
机译:声发射活动的监控用来描述起始和局部破坏的发展过程中nanoindentation-induced骨折。各种脆性材料含有立方硬度计压头及声发射活动是监控在整个加载使用一个传感器安装和卸载事件在标本夹。nano-indentation声发射响应,骨折有根本的不同行为的各种材料。是用来识别特定的观察声发射信号特征对应于特定类型的骨折事件。此外,参数和分析用于瞬态声发射数据建立了裂纹萌生的阈值,止裂阈值和能量耗散在失败。声发射信号的监控产量这两个定性和定量的信息关于高度本地化失败事件脆性材料。

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