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首页> 外文期刊>Journal of Materials Science >Microstructure-toughness relationships in calcium aluminate cement-polymer composites using instrumented scratch testing
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Microstructure-toughness relationships in calcium aluminate cement-polymer composites using instrumented scratch testing

机译:使用仪表划痕测试的钙铝酸钙水泥 - 聚合物复合材料中的微观结构 - 韧性关系

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We investigate the influence of the microstructure on the fracture properties of calcium aluminate cement/polymer composites. We carry out microscopic scratch tests during which a Rockwell C diamond probe pushes across the surface of a polished specimen under a linearly increasing vertical force. We extend the scratch fracture method to heterogeneous materials. The scratch test induces a ductile-to-brittle transition as the penetration depth increases. Scanning electron microscopy imaging shows that the low porosity and the strong cement-binder interphase favor toughening mechanisms such as crack trapping and bridging. Nonlinear fracture mechanics theory yields the fracture toughness in the fracture-driven regime. The fracture toughness of macro-defect-free (MDF) cement is found to decrease as the polymer-to-cement ratio increases. This decrease in the fracture resistance can be explained by the decrease in anhydrous cement content and the increase in the inter-particle distance between cement grains. By evaluating the fracture toughness of the micro-constituents of MDF cement, we show that the high value of the fracture toughness at the composite level stems from tough calcium aluminate phases and a highly packed non-porous granular microstructure.
机译:我们研究了微观结构对铝酸钙水泥/聚合物复合材料裂缝性能的影响。我们执行微观划痕试验,在此期间,罗克韦尔C金刚石探针在线性增加的垂直力下推动抛光样品的表面。我们将划痕骨折方法延伸到异质材料。随着渗透深度的增加,划痕试验诱导延展性到脆性转变。扫描电子显微镜成像表明,低孔隙率和强水泥粘合剂互相支持增韧机构,例如裂纹捕获和桥接。非线性骨折力学理论产生骨折驱动制度的断裂韧性。随着聚合物与水泥比的增加,发现无缺陷无缺陷(MDF)水泥的裂缝韧性降低。裂缝抗性的这种降低可以通过降低无水水泥含量和水泥晶粒之间的颗粒间距离的增加来解释。通过评估MDF水泥的微量成分的断裂韧性,我们表明复合液体骨折韧性的高值源于坚韧的铝酸钙相和高填充的无孔粒状微观结构。

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