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Preparation and characterization of continuous basalt fibre with high tensile strength

机译:具有高拉伸强度的连续玄武岩纤维的制备与表征

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Continuous basalt fibres (CBFs) produced directly from natural basalt seldom achieve adequate performance with high tensile strengths. Thus, formulation optimization is a key component of technological innovation in the field of CBFs. From this perspective, a series of experiments were designed to prepare a type of CBF using two natural forms of basalt. The average tensile strength of the fabricated CBF was 4111 MPa. Moreover, it is found that the amount of glass network modifier (Na2O + K2O) has a negative correlation with the tensile strength of CBF. By combining our results with past studies, two empirical formulas were proposed to quantify the relationship between viscosity (eta) and viscosity modulus (M eta) for basalt melts at 1300 degrees C and 1400 degrees C:eta(1300 degrees C) -91.22971 + 16.06614e(1.25983M1) and eta(1400 degrees C) -30.57462 + 6.32023 e(1.18491 M eta). It was found that a value of M eta ranging between 2.2 and 2.6 is optimum for CBF production. We also established an important correlation between m Mu and mix compositions, which could be an essential criterion to evaluate the characteristics and production technology of CBF, including basalt beneficiation and formulation optimization.
机译:直接从天然玄武岩中生产的连续玄武岩纤维(CBF)很少达到足够的高抗拉强度性能。因此,配方优化是CBFs领域技术创新的关键组成部分。从这个角度出发,设计了一系列实验,用两种天然玄武岩制备一种CBF。所制备的CBF的平均拉伸强度为4111MPa。此外,还发现玻璃网络改性剂(Na2O+K2O)的用量与CBF的抗拉强度呈负相关。通过将我们的结果与过去的研究相结合,提出了两个经验公式来量化1300℃和1400℃玄武岩熔体的粘度(eta)和粘度模量(M eta)之间的关系:eta(1300℃)-91.22971+16.06614e(1.25983M1)和eta(1400℃)-30.57462+6.32023 e(1.18491 M eta)。研究发现,在2.2到2.6之间的M eta值是CBF生产的最佳值。我们还建立了m Mu和混合成分之间的重要相关性,这可能是评估CBF特性和生产技术的重要标准,包括玄武岩选矿和配方优化。

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