分析在混凝土混合物材料成分中用花岗岩碎块部分替代粗骨料对混凝土抗压强度的影响

D. Wiyanti, T. D. Laksono
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引用次数: 0

摘要

混凝土的基本成分可以通过使用粗骨料、细骨料的替代材料或改变砂的类型来改变。在这项研究中,采用了破坏性方法测试,以确定混凝土的抗压强度,这种混凝土掺入了从花岗岩废料中提取的粗骨料掺合料,并与天然骨料相结合,然后与普通混凝土进行比较。为了制造出计划质量为 fc' 30 Mpa 的混凝土,我们制作了三种试验对象。第一种是未混合混凝土(掺量为 0%),第二种和第三种是使用花岗岩废料作为粗骨料的替代品,掺量分别为 50%和 100%。七(7)天测试表明,使用默拉皮火山砂和替代 50%花岗岩废料的粗骨料的混合物产生的最大抗压强度为 22.23 兆帕。在所有花岗岩废料替代成分中使用默拉皮火山砂和塞拉尤河砂表明,使用默拉皮火山砂的混凝土抗压强度优于使用塞拉尤河砂的混合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALYSIS OF THE EFFECT OF COARSE AGGREGATE PARTIAL SUBSTITUTION WITH GRANITE FRAGMENTS IN THE COMPOSITION OF CONCRETE MIXTURE MATERIALS TOWARD CONCRETE COMPRESSIVE STRENGTH
The concrete basic composition can be modified by using alternative materials for coarse aggregate, fine aggregate, or modifying the type of sand. In this study, destructive method testing was applied to find the compressive strength of concrete that was mixed with coarse aggregate admixture material from granite waste that was combined with natural aggregate and then compared with normal concrete.The sands added to the mixture originated from the Serayu River and Mount Merapi. To create concrete with a planned quality of fc’ 30 Mpa, three types of test objects are created. The first is unmixed concrete (0% admixture), the second and the third are uses granite waste as coarse aggregate substitution as much as 50%, and 100%.The test objects were then tested for compressive strength in 7 days and 28 days. The seven (7) days test showed that maximum compressive strength of 22,23 Mpa was produced by a mixture of Mount Merapi and coarse aggregate substitution of 50% granite waste. The use of Mount Merapi sand and Serayu River sand in all substitution compositions of granite waste shows that concrete compressive strength that uses Mount Merapi sand is better than in the mixture that uses Serayu River sand.
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