首页> 外文会议>International Conference on Advanced Ceramics and Composites >EFFECT OF HIGH TENSILE STRENGTH POLYPROPYLENE CHOPPED FIBER REINFORCEMENTS ON THE MECHANICAL PROPERTIES OF SODIUM BASED GEOPOLYMER COMPOSITES
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EFFECT OF HIGH TENSILE STRENGTH POLYPROPYLENE CHOPPED FIBER REINFORCEMENTS ON THE MECHANICAL PROPERTIES OF SODIUM BASED GEOPOLYMER COMPOSITES

机译:高拉伸强度聚丙烯短切纤维增强对基于钠的地质聚合物复合材料的影响

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The geopolymer matrix is ideal for incorporating a variety of reinforcements for structural applications. In the case of this experiment, the reinforcements are high tensile strength polypropylene (PP) chopped fibers of lengths of 0.5", 1", and 2". The fibers were added in increments of 0.92, 1.01, 1.32, and 2.48 weight percents. These samples were then tested in a three point bending apparatus at a loading rate of 176 Newtons per minute. The maximum stress for each sample was then compared to that of the pure, nonreinforced, sodium geopolymer matrix. The samples prepared using the 0.5" fibers achieved average maximum stresses of 9.9±0.5, 9.0+1.3, 9.9±3,0, and 15.1±1.5 MPa, respectively for increasing-weight percent of fibers. Samples prepared using the 1" fibers had average maximum stresses of 9.6±3.8, 10.5±1.6, 12.4il.34, and 14.4±1.0 MPa with respect to increasing fiber contents. The samples prepared with the 2" fibers had average maximum stresses of 9.0±0.9, 11.2±1.4, 13.5±1.7, and 18.3±0.8 MPa with respective increasing fiber composition. This data was compared to the average maximum stress achieved by the pure sodium geopolymer (NaGP) of 1.8±0.5 MPa. From this data Weibull statistics were calculated to determine the mechanical reliability of the material. According to the Weibull statistics for each fiber length used, the 0.92, 1.01, and 2.48 weight percent samples produced the most reliable data, where the 1.32 weight percent samples produced data that was reasonably reliable, while the pure geopolymer samples did not produce reliable data.
机译:地质聚合物基质非常适用于掺入用于结构应用的各种增强剂。在该实验的情况下,增强件是高抗拉强度聚丙烯(PP)长度为0.5“,1”和2“的短纤维。以0.92,1.01,1.32和2.48重量%的增量加入纤维。然后将这些样品以每分钟176牛顿的装载速率在三点弯曲装置中进行测试。然后将每个样品的最大应力与纯,非重新制成,钠的地质聚合物基质的最大应力进行比较。使用0.5“纤维制备的样品达到9.9±0.5,9.0±1.3,9.9±3,0和15.1±1.5MPa的平均最大应力分别用于增加纤维的重量百分比。使用1“纤维制备的样品的平均最大应力为9.6±3.8,10.5±1.6,12.4il.34和14.4±1.0MPa,相对于增加纤维内容物。用2”纤维制备的样品具有平均最大应力9.0±0.9,11.2±1.4,13.5±1.7和18.3±0.8MPa,相应地增加纤维组合物。将该数据与纯钠地质聚合物(NAGP)的平均最大应力进行比较,为1.8±0.5MPa。从该数据计算威布尔统计数据以确定材料的机械可靠性。根据使用的每个光纤长度的威布尔统计,0.92,1.01和2.48重量百分比样本产生了最可靠的数据,其中1.32重量百分比样本产生了合理可靠的数据,而纯地质聚合物样本没有产生可靠的数据。

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