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Sensitivity of shotcrete Brazilian discs coated with thin spray-on liners to environmental conditions

机译:涂有薄喷雾衬里的shotcrete巴西圆盘的灵敏度对环境条件

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Thin spray-on liners (TSLs) have been used as sealants and rock support in tunnels for over 25 years. Laboratory tests have indicated satisfactory properties that can provide adequate strength, adhesion, toughness, and elasticity as part of rock support systems in mining excavations. These characteristics are, however, not always demonstrated in practice, when mine environmental conditions do not correspond with laboratory environmental conditions. The shortcomings of TSLs experienced in the mining industry have raised concerns, resulting in scepticism from some operators regarding their utilization. The research described in this paper aims to investigate TSL performance in environmental conditions similar to those experienced in mines. Brazilian indirect tensile (BIT) specimens were prepared from precast shotcrete and coated with TSLs. The specimens were then exposed to different environmental conditions for up to 112 days before BIT testing under various conditions: laboratory room temperature and humidity; saturated room temperature; and combined saturated and high temperature (50 degrees C). Additional uncoated shotcrete and TSL BIT specimens were prepared for comparison purposes. The results of the BIT tests showed that environmental conditions have a significant influence on the tensile strength enhancement of shotcrete by TSLs. Water-based TSLs are most likely to be suitable for high humidity environments, although their performance decreases at higher temperatures. Numerical modelling of TSL-coated BIT samples confirms the potential limitations of designing TSL support based only on laboratory testing carried out under room conditions.
机译:薄喷雾衬里(TSL)已用作隧道中的密封剂和岩石支撑,已有25年以上。实验室测试表明,作为岩石支撑系统的一部分,可以提供足够的强度,粘附,韧性和弹性。但是,当矿山环境条件与实验室环境条件不符时,这些特征并不总是在实践中得到证明。 TSL在采矿业所经历的缺点引起了人们的关注,导致了一些运营商对其利用的怀疑。本文描述的研究旨在研究与矿山相似的环境条件下的TSL性能。从预制shotcrete制备巴西间接拉伸(位)标本,并用TSL涂层。然后将样品暴露于不同的环境条件下,长达112天,然后在各种条件下进行位测试:实验室室温和湿度;饱和室温;并组合饱和和高温(50度C)。为了进行比较,准备了其他未涂层的shotcrete和TSL位标本。位测试的结果表明,环境条件对TSL的抗凝聚力的拉伸强度增强具有重大影响。水基TSL最有可能适合高湿度环境,尽管其性能在较高的温度下降低。 TSL涂层位样品的数值建模证实了仅基于在室内条件下进行的实验室测试设计TSL支持的潜在局限性。

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