标题: | 玻璃纤维水泥复合材料之基本力学性质研究 Primary Mechanical Properties of Glass-Fiber Reinforced Cement Composites |
作者: | 赵悠舜 Jaw, Yu-Shun 彭耀南 Peng Yaw-Nan 土木工程学系 |
关键字: | 玻璃纤维;力学性质;干缩;glass fiber;mechanical properties;drying shrinkage |
公开日期: | 1995 |
摘要: | 本文内容主要为以三种纤维长度、纤维含量及水灰比作为变数,以 喷送法(Spray-up Method)制成玻璃纤维砂浆(GRC),探求玻璃纤维 于水泥砂浆中之短期载重强度,(包括抗压、抗拉、抗弯及抗剪强度) 以及对韧性行为之影响与干缩应变之抑制情形。 豏“峞C 于本试验结果得知,最佳强度提升量,抗拉强度为普通水泥砂浆之 1.82~3.20倍,抗弯强度为2.14~3.30倍,抗压强度为1.27~1.48倍, 抗剪强度为1.33~1.45倍;单位纤维量所发挥之抗拉与抗弯强度以wf= 3%组最佳。因纤维之束制作用,故抗压强度随着荷载之方向不同而不 同;长度较长之纤维,随着纤维含量之增加能较有效地发挥抗拉与抗 弯强度,但若配合着低水灰比及高纤维含量则GRC材料会因施工性不良 而有多孔性质而影响强度。 多孔性质而影响强度。 GRC材料较普通水泥砂浆有优异之韧性表现,纤维含量wf=5%之韧性 韧 性指数 介于68.9~98.9之间;随着水灰比的降低,GRC之极限抗弯强 度 随之提升,但韧性有降低之趋势。玻璃纤维对干缩有抑制之效能, 制 之效能,且随时间之增加而有越明显之趋势。 In this paper, three kinds of fiber length, fiber content and water/cement ratio were used as variables to mix glass-fiber reinforced cement(GRC) by spray-up method. Then, Short-term static loads(compressive ,tensile, bending and shear strength)were applied to the specimen to investigate the primary mechanical properties. The behavior of the toughness and the drying shrinkage were found. From the results of the experiment, it is found that the best strength increase as compare with plain mortar is 1.82~3.20 times for tensile strength , 2.14~3.30 times for bending strength , 1.27 ~1.48 times for compressive strength , 1.33~1.45 times for shear strength. The unit fiber content that produce highest tensile and bending strength is 3%.Because of the fiber restrain effect, compressive strength of the specimen would changed with the loading direction. The specimen with longer fiber has higher tensile and bending strength when the fiber content is increased. However, specimens mixed with low w/c ratio , high fiber content and long fiber length, bad workability will make the GRC material porous, which will reduce its strength. GRC material has greater toughness than that of the plain mortar. The toughness index measured is between 68.9 to 98.9 when fiber content is 5%.With the decrease of w/c ratio, the GRC material has higher bending strength, but the toughness has a decreasing intent. The adding of glass fiber can reduce the drying shrinkage of the GRC material, which is more obvious with increase of time. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT840015032 http://hdl.handle.net/11536/59984 |
显示于类别: | Thesis |