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Wedge-Splitting Test on Carbon-Containing Refractories at High Temperatures

机译:高温下含碳耐火材料的楔形试验

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摘要

The mode I fracture behavior of ordinary refractory materials is usually tested with the wedge-splitting test. At elevated temperatures, the optical displacement measurement is difficult because of the convection in the furnace and possible reactions of refractory components with the ambient atmosphere. The present paper introduces a newly developed testing device, which is able to perform such experiments up to 1500 °C. For the testing of carbon-containing refractories a gas purging, for example, with argon, is possible. Laser speckle extensometers are applied for the displacement measurement. A carbon-containing magnesia refractory (MgO−C) was selected for a case study. Based on the results obtained from tests, fracture mechanical parameters such as the specific fracture energy and the nominal notch tensile strength were calculated. An inverse simulation procedure applying the finite element method yields tensile strength, the total specific fracture energy, and the strain-softening behavior. Additionally, the creep behavior was also considered for the evaluation.
机译:普通耐火材料的模式I断裂行为通常用楔形分裂试验进行测试。在升高的温度下,由于炉子中的对流以及耐火元件与环境气氛的可能反应,光学位移测量难以。本文介绍了一种新开发的测试装置,能够执行高达1500°C的这样的实验。对于含碳耐火材料的测试,例如,具有氩气的气体吹扫。激光散斑突出器施加用于位移测量。选择含碳的氧化镁耐火(MgO-C)进行案例研究。基于从测试获得的结果,计算裂缝机械参数,例如特定的断裂能量和标称凹口拉伸强度。施加有限元法的逆模拟程序产生拉伸强度,总特异性断裂能和应变软化行为。此外,还考虑了蠕变行为进行评估。

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