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Thermal and mechanical cyclic tests and fracture mechanics parameters as indicators of thermal shock resistance - case study on silica refractories

机译:热电循环试验和断裂力学参数作为热震性抗热性指标 - 硅胶耐火材料的案例研究

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摘要

The paper discusses alternative methods to assess thermal shock in refractories. Thermal shock performance of two conventional silica bricks and two novice fused silica materials has been studied. Methods involving fracture mechanical tests of monotonic loading, repetitive thermal shock tests and cyclic strain controlled fatigue tests have been utilised. The amorphous fused silica is rather brittle. However low thermal expansion guarantees its superior thermal shock resistance. In-service crystallisation is to happen rather quickly. For crystallised fused silica of the studied morphology the tests coherently predict superior thermal shock resistance due to less brittle failure. Strain controlled fatigue test allows assessment of strain limits in the conditions of cyclic loading and thus combines the benefits of the thermal shock and monotonic fracture mechanics tests. Strain tolerance seems to be the property to correlate the results of the alternative test methods and those with the service loads.
机译:本文讨论了评估耐火材料中热冲击的替代方法。已经研究了两个常规二氧化硅砖的热冲击性能和两种新手熔融石英材料。已经利用了涉及单调载荷的断裂机械试验,重复热冲击试验和循环应变控制疲劳试验的方法。无定形熔融二氧化硅相当脆。然而,低热膨胀可确保其卓越的热抗震性。在式结晶是发生相当快的结晶。对于所研究的形态的结晶熔融二氧化硅,试验由于脆性破坏而连贯地预测出优异的热冲击性。应变控制的疲劳试验允许评估循环载荷条件下的应变限制,从而结合了热冲击和单调断裂力学试验的益处。应变耐受性似乎是将替代测试方法的结果和具有服务负载的结果相关的性质。

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