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An experimental study on the optimal compositions of ordinary concrete based on corrected dune sand—Case of granular range of 25?mm

机译:基于校正沙丘砂壳25Ωmm的普通混凝土最佳组合物的实验研究

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Our study aims to solve the fundamental problem of concrete formulation in arid areas. The obtained results through the use of dune sand showed that most of previous studies in this domain did not meet the requirements- in terms of mechanical strength of concrete- and that is due to the sand granularity. The latter was mainly due to the absence of coarse sand grains. For this purpose, three (03) siliceous dune sand classes were used, with a maximum grain size of 2.00?mm and a modulus of fineness ranging from 1.55 to 1.74. These dune sands were corrected by two classes of Koussane siliceous-limestone crushed sands of 0/4?mm, with a fineness modulus of 3.02 and 3.4. It should be noted that the rates of correction by quarry sands are 20 %, 40 %, 60 %, 80 % including dune and crushed sands without correction (0 %, 100 %).A large experimental plan of 276 concrete tests was adopted on 15?cm cubic specimens. It included most of the expected possibilities using coarse aggregates with maximum dimension of 25?mm. The test results provided the mechanical strength obtained for the concrete that contains sand-dunes corrected at a rate of 60 %, 40 % and 20 %. The value of the mechanical strength in compression was 48?MPa, which was higher than all the values obtained using dune sand or crushed sand without correction. That said, the use of corrected sand was- financially speaking- cost efficient.
机译:我们的研究旨在解决干旱地区混凝土制定的根本问题。通过使用沙丘的结果表明,在该领域的最先前研究中的大多数研究没有符合混凝土机械强度的要求 - 这是由于砂粒度。后者主要是由于没有粗砂晶粒。为此目的,使用三(03)个硅质沙丘砂等级,最大粒度为2.00Ωmm,细度为1.55至1.74。这些沙丘砂被两类Koussane Silice-Limestone压碎的砂岩校正,0/4Ωmm,细度模量为3.02和3.4。应该指出的是,采石砂的矫正率为20%,40%,60%,80%,包括沙丘和破碎的砂岩,没有校正(0%,100%)。采用了276个混凝土测试的大型实验计划15?cm立方标本。它包括使用粗聚集体的大多数预期可能性,最大尺寸为25Ωmm。测试结果提供了用于混凝土的机械强度,该混凝土以60%,40%和20%的速率校正校正的沙丘。压缩中的机械强度的值为48?MPa,其高于使用沙丘砂或碎砂的所有值没有校正。也就是说,使用矫正的沙子是 - 财务状况 - 成本效益。

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