研究了无配筋条件下超高性能钢纤维水泥基复合材料(UHPFRCC)与高延性水泥基复合材料(HDCC)复合梁试件的弯曲变形性能.通过纯剪切强度测试,比较了界面处理工艺对界面粘结性能的影响.通过弯拉实验测试了复合梁试件在弯曲载荷下的变形性能...研究了无配筋条件下超高性能钢纤维水泥基复合材料(UHPFRCC)与高延性水泥基复合材料(HDCC)复合梁试件的弯曲变形性能.通过纯剪切强度测试,比较了界面处理工艺对界面粘结性能的影响.通过弯拉实验测试了复合梁试件在弯曲载荷下的变形性能,并与纯UHPFRCC梁的变形能力进行对比.结果表明,不同的界面处理工艺决定了界面粘结性能.最佳的界面处理方法能使界面粘结强度高于HDCC基体本身强度,界面过渡区基体致密,没有明显的微观缺陷.UHPFRCC-HDCC复合梁在弯拉荷载下,极限抗弯强度达到13.4 M Pa,跨中最大挠度为2.8mm.HDCC能通过自身的多缝开裂增加裂缝数目来改善变形能力.与UHPFRCC梁相比,UHPFRCC-HDCC复合梁弯曲时,塑形变形明显,并具有更大的弯曲挠度.展开更多
We put forward effective methods of increasing the tensile strain of cementitious composites with 2% PVA fiber and high fly ash content. The test results show that curing condition has a significantly effect on the te...We put forward effective methods of increasing the tensile strain of cementitious composites with 2% PVA fiber and high fly ash content. The test results show that curing condition has a significantly effect on the tensile performance. It is approved that the specimens incorporated appropriate volume fraction rubber powder and lightweight aggregate greatly increase the tensile strain of composites at medium-term age, but indefinitely at long-term age. To a certain extent, EVA can limitedly enhance the tensile performance of comentitious composites owing to the formation of polymer membrane and the hindered hydration of cement.展开更多
文摘研究了无配筋条件下超高性能钢纤维水泥基复合材料(UHPFRCC)与高延性水泥基复合材料(HDCC)复合梁试件的弯曲变形性能.通过纯剪切强度测试,比较了界面处理工艺对界面粘结性能的影响.通过弯拉实验测试了复合梁试件在弯曲载荷下的变形性能,并与纯UHPFRCC梁的变形能力进行对比.结果表明,不同的界面处理工艺决定了界面粘结性能.最佳的界面处理方法能使界面粘结强度高于HDCC基体本身强度,界面过渡区基体致密,没有明显的微观缺陷.UHPFRCC-HDCC复合梁在弯拉荷载下,极限抗弯强度达到13.4 M Pa,跨中最大挠度为2.8mm.HDCC能通过自身的多缝开裂增加裂缝数目来改善变形能力.与UHPFRCC梁相比,UHPFRCC-HDCC复合梁弯曲时,塑形变形明显,并具有更大的弯曲挠度.
基金Funded by National Basic Research Program of China (973 Program) (No. 2009CB623200)Hong Kong Research Grant Council under CERG 616405
文摘We put forward effective methods of increasing the tensile strain of cementitious composites with 2% PVA fiber and high fly ash content. The test results show that curing condition has a significantly effect on the tensile performance. It is approved that the specimens incorporated appropriate volume fraction rubber powder and lightweight aggregate greatly increase the tensile strain of composites at medium-term age, but indefinitely at long-term age. To a certain extent, EVA can limitedly enhance the tensile performance of comentitious composites owing to the formation of polymer membrane and the hindered hydration of cement.