Regularities of fracture pattern formation in alumina ceramics subjected to dynamic indentation

E. Tolmacheva, M. Davydova, V. Chudinov, S. Uvarov, O. Naimark, D. Zaytsev, P. Panfilov
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引用次数: 1

Abstract

In this paper the process of dynamic indentation, causing deformation and fracture of alumina ceramics, is investigated. The dynamic indentation experiments were carried out on the original setup based on the split Hopkinson bar technique. The regularities of structure evolution caused by indenter penetration are studied using the computer tomography data of the samples subjected to different loads. The investigation revealed the existence of comminuted area in the vicinity of the indenter and the formation of multiple cracks in the zone lying below. It was found that the higher is the applied indentation load, the denser is the crack pattern and larger are the cracks. A similarity of such a mechanical behavior between the examined material and dentin taken as a biocomposite is discussed.
动态压痕作用下氧化铝陶瓷断裂模式形成规律
本文研究了动态压痕引起氧化铝陶瓷变形和断裂的过程。采用霍普金森杆劈裂技术,在原装置上进行了动态压痕试验。利用不同载荷作用下试样的计算机层析成像数据,研究了压头侵彻引起试样结构演化的规律。调查显示,压头附近存在粉碎区,压头下方区域形成了多个裂纹。结果表明,压痕载荷越大,裂纹形态越密集,裂纹尺寸越大。本文还讨论了所检测材料与作为生物复合材料的牙本质之间的这种力学行为的相似性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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