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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Mineralogically influenced stress corrosion cracking of rockbolts and cable bolts in underground mines
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Mineralogically influenced stress corrosion cracking of rockbolts and cable bolts in underground mines

机译:地下矿山岩石和电缆螺栓的矿物学影响力腐蚀开裂

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摘要

Stress corrosion cracking (SCC) of rockbolts and cable bolts in underground mines has been identified as a serious international problem over the past two decades. The frequent occurrence of rockbolt and cable bolt SCC in strata containing clay and groundwater suggests the presence of certain mineral types may be an influencing factor. To identify the environmental factors leading to SCC and evaluate the effects of mineralogically influenced corrosion, a laboratory testing program capable of recreating the underground bolting environments was designed and conducted. A static load was applied to specimens of rockbolts and cable bolts placed in "corrosion cells" containing groundwater, clay, coal or a combination of those materials for about 300 days. Results from these tests revealed that the mineralogical materials indirectly affected the rate of corrosion by significantly altering the local water chemistry. The mechanical load applied to the specimens was found to accelerate the rate of corrosion, and corrosion pits were observed to have formed on the steel surfaces. The generation of corrosion pits would likely result in local stress concentration and contribute to SCC. The results of this study provide further insights into the environmental factors leading to SCC and the proposed methodologies can be used for investigating this type of failure through in-situ experiments.
机译:在过去的二十年中,地下矿山岩石和电缆螺栓的应力腐蚀开裂(SCC)被认为是严重的国际问题。频繁发生的岩土和电缆螺栓SCC在含粘土和地下水中的地层中表明存在某些矿物类型可能是影响因素。为了确定SCC的环境因素,并评估矿物学影响腐蚀的影响,设计并进行了一种能够重建地下螺栓环境的实验室测试程序。将静载荷施加到岩体和缆绳螺栓的标本中,置于含有地下水,粘土,煤或这些材料的组合约300天的“腐蚀细胞”中。这些测试的结果显示,矿物学材料通过显着改变当地水化学来间接影响腐蚀速度。发现施加到样本的机械负荷加速腐蚀速率,并且观察到腐蚀凹坑在钢表面上形成。腐蚀坑的产生可能导致局部应力集中并有助于SCC。本研究的结果提供了进一步的见解,进一步了解导致SCC的环境因素,并且所提出的方法可以通过原位实验来研究这种类型的失败。

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