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Laboratory-Based Investigation into Stress Corrosion Cracking of Cable Bolts

机译:基于实验室的电缆螺栓应力腐蚀开裂研究

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摘要

Cable-bolt failures due to stress corrosion cracking (SCC) could significantly compromise the sustainability and long-term stability of underground constructions. To fully understand the SCC of cable bolts, a two-step methodology was implemented: (i) long-term cable-bolt coupon tests using mineralogical materials collected from underground mines; and (ii) accelerated full-scale cable-bolt tests using an acidified solution. In the long-term tests, a novel three-point bending coupon was designed. The effects of mineralogical materials on SCC were evaluated under the simulated underground bolting conditions through the application of “corrosion cells”. For accelerated tests, SCC resistance of different type of cable bolts was examined using the new designed tensile-loading apparatus under the periodically increasing strain-rate loading mechanism. It was identified that mineralogical materials and applied stress intensity accelerated the corrosion process of the cable bolts. The number of wires and wire surface conditions in different types of cable bolt directly affected SCC susceptibility. The cable bolts with a greater number of wires provided higher resistance to SCC. The developed experimental methodologies can be applied to study SCC in other reinforcement materials and the results can be used to design optimal support systems in different environmental and geotechnical conditions.
机译:由于应力腐蚀开裂(SCC)引起的电缆螺栓故障可能会严重损害地下建筑的可持续性和长期稳定性。为了充分理解电缆螺栓的SCC,采用了两步方法:(i)使用从地下矿山收集的矿物学材料进行的长期电缆螺栓挂片测试; (ii)使用酸化溶液加速全面的电缆螺栓测试。在长期测试中,设计了一种新颖的三点弯曲试样。在模拟的地下锚固条件下,通过应用“腐蚀池”评估了矿物材料对SCC的影响。为了进行加速测试,在周期性增加的应变率加载机制下,使用新设计的拉伸加载设备检查了不同类型的电缆螺栓的SCC电阻。已经确定,矿物学材料和施加的应力强度加速了电缆螺栓的腐蚀过程。不同类型的电缆螺栓中的导线数量和导线表面状况直接影响SCC敏感性。带有更多电线的电缆螺栓对SCC具有更高的抵抗力。所开发的实验方法可用于研究其他增强材料中的SCC,其结果可用于设计在不同环境和岩土条件下的最佳支撑系统。

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