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Effect of glass thickness on temperature gradient and stress distribution during glass tempering

机译:玻璃厚度对玻璃回火过程中温度梯度和应力分布的影响

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摘要

The thickness of tempered glass is usually more than 3 mm. To achieve thinner tempered glass, it is necessary to clarify the stress change during its quenching process. Glass toughening involves high temperatures, which made the real-time measurement of the temperature distribution, stress distribution, and phase changes occurring difficult. However, these parameters directly affect the strength of the tempered glass. In this paper, for the purpose of evaluating and optimizing the tempering process, nonlinear finite element analysis method has been used to simulate the distribution of the temperature gradient, and the final residual stress of the glass samples with different thickness. The geometry and mathematical model to be used were established, and the boundary conditions for the simulations were set on the basis of the actual toughening conditions. It is found that the thickness has a great influence on the quenching period, temperature gradient and stress fields distribution. (C) 2016 Published by Elsevier B.V.
机译:钢化玻璃的厚度通常大于3毫米。为了使钢化玻璃更薄,有必要弄清其淬火过程中的应力变化。玻璃钢化涉及高温,这使得难以实时测量温度分布,应力分布和发生的相变。但是,这些参数直接影响钢化玻璃的强度。为了评估和优化钢化工艺,本文采用非线性有限元分析方法模拟了不同厚度玻璃样品的温度梯度分布以及最终残余应力。建立了要使用的几何和数学模型,并根据实际的增韧条件设置了模拟的边界条件。发现厚度对淬火时间,温度梯度和应力场分布有很大影响。 (C)2016由Elsevier B.V.发布

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