Does double pre-notches have a greater impact than single pre-notch on the mechanical and fracture behavior of rock? Insights from three-point bending tests using the numerical approach of grain-based model

IF 5 2区 工程技术 Q1 ENGINEERING, MECHANICAL
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Abstract

The mechanical performance of rock masses is significantly impacted by the existence of cracks. Distribution of the cracks may result in different mechanical or fracture behaviors of rock. To gain a preliminary understanding of such problems, a series of numerical tests of three-point bending (TPB) are designed and carried out with the consideration of single pre-notch and double pre-notches. The numerical method of grain-based model (GBM) approach is employed in this paper, with a validation implemented by comparing the results with previous experiments to demonstrate the reliability of this model. Afterward, a comprehensive investigation, including the mechanical behavior, strength characteristics, crack evolution and progressive failure mechanism of the above mentioned TPB tests are conducted. The conclusions are as follows: (1) During TPB tests, as the offset distance increases, the fracture mode of the single pre-notched specimens gradually transitions from Mode I to Mode II, with the peak fracture toughness occurring at a mixed Mode I-II fracture condition (2p/s = 0.4). Moreover, the failure angle, notch open degree and expansion area all tend to rise regardless of specimens of single or double pre-notches. (2) A thorough exploration of crack evolution shows that the specimens primarily fracture during the crack propagation and failure stages. Shear failure predominates among these stages, with microcracks mostly occurring inside the rock mineral grains. (3) When offset distance increases to a certain degree (2p/s = 0.8), the fracture of specimen ceases to be governed by the pre-notch; instead, it occurs directly from the middle of the beam specimen. This phenomenon can be attributed to the reduction of stress concentration at the notch tip, as inferred from analysis of the contact force chain. (4) In double pre-notched specimen, microcracks initiate at both pre-notches, but the final failure results from crack propagation at one notch tip. Compared to single pre-notched specimen, the presence of double pre-notches exhibits superior fracture resistance performance.

双预缺口比单预缺口对岩石的力学和断裂行为影响更大吗?利用基于晶粒模型的数值方法从三点弯曲试验中获得的启示
岩体的机械性能受裂缝的影响很大。裂缝的分布可能会导致岩石产生不同的力学或断裂行为。为了初步了解这些问题,我们设计并进行了一系列三点弯曲(TPB)数值试验,并考虑了单预缺口和双预缺口。本文采用了基于晶粒模型(GBM)的数值方法,并通过将结果与之前的实验进行比较来验证该模型的可靠性。随后,对上述热塑性夹芯结构试验的力学行为、强度特性、裂纹演变和渐进破坏机理进行了全面研究。结论如下(1) 在 TPB 试验中,随着偏移距离的增加,单个预缺口试样的断裂模式逐渐从模式 I 过渡到模式 II,断裂韧性峰值出现在模式 I-II 混合断裂条件下(2p/s = 0.4)。此外,不管是单预缺口还是双预缺口试样,其破坏角、缺口开度和扩展面积都呈上升趋势。(2) 对裂纹演变的深入研究表明,试样主要在裂纹扩展和破坏阶段断裂。在这些阶段中,剪切破坏占主导地位,微裂缝主要发生在岩石矿物颗粒内部。(3) 当偏移距离增加到一定程度(2p/s = 0.8)时,试样的断裂不再受预缺口的影响,而是直接从梁试样的中部发生。根据接触力链分析推断,这一现象可归因于缺口尖端应力集中的减少。(4) 在双预切口试样中,微裂纹在两个预切口处都出现,但最终的破坏是由一个切口尖端的裂纹扩展造成的。与单预缺口试样相比,双预缺口试样具有更优越的抗断裂性能。
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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来源期刊
Theoretical and Applied Fracture Mechanics
Theoretical and Applied Fracture Mechanics 工程技术-工程:机械
CiteScore
8.40
自引率
18.90%
发文量
435
审稿时长
37 days
期刊介绍: Theoretical and Applied Fracture Mechanics'' aims & scopes have been re-designed to cover both the theoretical, applied, and numerical aspects associated with those cracking related phenomena taking place, at a micro-, meso-, and macroscopic level, in materials/components/structures of any kind. The journal aims to cover the cracking/mechanical behaviour of materials/components/structures in those situations involving both time-independent and time-dependent system of external forces/moments (such as, for instance, quasi-static, impulsive, impact, blasting, creep, contact, and fatigue loading). Since, under the above circumstances, the mechanical behaviour of cracked materials/components/structures is also affected by the environmental conditions, the journal would consider also those theoretical/experimental research works investigating the effect of external variables such as, for instance, the effect of corrosive environments as well as of high/low-temperature.
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