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废旧轮胎超高性能混凝土抗弯性能试验研究
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作者 乃比·肉孜 《江西建材》 2024年第5期22-25,共4页
传统超高性能混凝土包含大量水泥和钢纤维,其生产过程会产生较高的碳足迹。为减小碳足迹,文中利用废旧轮胎的橡胶及钢纤维分别作为部分细骨料和增强纤维,以矿渣-粉煤灰替代水泥,提出了废旧轮胎超高性能混凝土(T-UHPC),对含有不同橡胶粉... 传统超高性能混凝土包含大量水泥和钢纤维,其生产过程会产生较高的碳足迹。为减小碳足迹,文中利用废旧轮胎的橡胶及钢纤维分别作为部分细骨料和增强纤维,以矿渣-粉煤灰替代水泥,提出了废旧轮胎超高性能混凝土(T-UHPC),对含有不同橡胶粉末替代率的T-UHPC进行抗压和抗弯试验,分析了橡胶粉含量对抗压和抗弯性能指标的影响规律。 展开更多
关键词 工程材料 抗弯性能 废旧轮胎超高性能混凝土 地质聚合物 荷载-挠度曲
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Flexural behavior of in-plane bending glass structures for design method
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作者 吴丽丽 王元清 +2 位作者 严茂超 石永久 张恒秋 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3133-3140,共8页
Experimental study was carried out on the in-plane bending behavior of glass plates without lateral supports, and the effects of the factors, such as height-to-span ratio, on the stability of glass panels were studied... Experimental study was carried out on the in-plane bending behavior of glass plates without lateral supports, and the effects of the factors, such as height-to-span ratio, on the stability of glass panels were studied. Results show that the in-plane bending glass plates with both ends simply supported and their upper edge free lose overall stability under loads, which belongs to the limit-point type of instability. It is found that the buckling load increases linearly with the increase of height-to-span ratio of the glass plates. The lateral stress of in-plane bending glass plates without lateral supports increases linearly under loads; while the large-area stress increases nonlinearly and the lateral stress is not the controlling factor of instability. In finite element analysis, the first buckling mode is regarded as the initial imperfection and imposed on the model as 1/1000 of the span of the components. The numerical buckling load according to the theory of large deflection is less than the experiment result, which is more conservative and can provide some reference for design. For the design method, when the in-plane load is imposed on the glass plate, its lateral strength and the deflection should be verified. Considering the stability of the in-plane bending glass plate without reliable lateral support, buckling is another possible failure mode and calls for verification. 展开更多
关键词 load-bearing glass structure flexural performance in-plane bending BUCKLING
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