首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Theoretical Analysis and Experimental Research on the Braced Stress of Vacuum Glazing
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Theoretical Analysis and Experimental Research on the Braced Stress of Vacuum Glazing

机译:真空玻璃支撑应力的理论分析与实验研究

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The mathematical model of the braced stress-strain in the vacuum glazing was established with the crunode method by elastic mechanics. The braced stress-strain field of vacuum glazing was received, and the stress-strain distribution was analyzed at the same time. Electric test method was used to validate the stress distribution. The experimental results are shown that the maximal stress of vacuum glazing occurs in the second braced pillar of the four-square side. The maximal stress value by elastic mechanics is 11.057MPa, while the measured value by electric test method is 11.765MPa, and its tolerance is only 6.02%. The positive stress in the cross section of the braced pillar is 179MPa, the longitudinal strains of steel and glazing braced pillar are 0.2686μm and 0.7414μm, respectively. The tolerance of braced pillar height and the glazing level degree are controlled to guarantee force equality, which increases strength, dependability, and service life of vacuum glazing.
机译:利用克鲁德方法,利用弹性力学建立了真空玻璃中支撑应力应变的数学模型。接收了真空玻璃的支撑应力应变场,并同时分析了应力应变分布。使用电测试方法来验证应力分布。实验结果表明,真空玻璃的最大应力出现在四角形侧面的第二根支撑柱上。弹性力学测得的最大应力值为11.057MPa,电测法测得的最大应力值为11.765MPa,其公差仅为6.02%。支撑柱横截面的正应力为179MPa,钢和玻璃支撑柱的纵向应变分别为0.2686μm和0.7414μm。控制支柱高度和玻璃水平度的公差以确保力相等,从而增加了真空玻璃的强度,可靠性和使用寿命。

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