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Tinjauan Kualitas Genteng Beton Sebagai Penutup Atap Dengan Bahan Tambah Serat Sabut Kelapa

机译:椰子纤维添加材料作为屋面覆盖层的混凝土屋面瓦的质量评估

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摘要

The more development of undertaken buildings which are needed to build means needing the good roof and have good quality, lightweight and waterproof. Concrete Tile is one of the good roof, but it has expensive price than other Tiles and it is heavy enough. This research means to know the addition Fiber of Coconut to flexible load, stand with water permeability, water absorption, uniform form, and concrete tile quality without admixture but with coconut fiber. The comperation of PC, mill lime, and sand to concrete tile admixtue composition namely, 1 PC : 2 KM : 2,5 PS. Wherease coconut admixtue precentage 0%; 1%; 1,5%; 2%; 2,5% from the weight of sand. Data is taken from calculating average of test result then compared with SNI 0096-2007. The result of out-character of concrete tile is smoth, right angle, no cracking, or no physical defect. The result measuring is P = 420 mm, L = 329 mm, the flate thickness = 9,56 mm, the thickness of lying = 9,86 mm, connection length = 50,8 mm, width length = 12 mm, connection height = 11,5 mm, widht of profile = 80,2 mm, depth of lying groove = 29,6 mm, number of lying groove 2. The result of impermeability concrete tile with coconut fiber 0%; 1% ; 1,5%; 2%; 2,5% all do not do permeability, the average of proporsity to the admixture of coconut fiber 0% = 9,046%; 1% = 9,667%; 1,5% = 10,202%; 2% = 9,741%; 2,5% = 11,317%. The result of heat average precentage coconut fiber 0% = 82,54%; 1% = 80,88%; 1,5% = 77,98%; 2% = 78,60%; 2,5% = 80,18%. The average flexure load test to the percentage of coconut fiber 0% = 103,23 kg; 1% = 107,59 kg; 1,5% = 116,32 kg; 2% = 119,22 kg; 2,5% = 126,49 kg. Form the result test means can be concluded that the more adding fiber, so it will stronger in flexure test. The research shows that the concrete tile with adding coconut fiber it has been in clasification of SNI 0096-2007 from the strenght of impermeability, as proportion, appear characteristic, and size. Whereas, from flexure character, heat absorbtion, and the prosity that hasen’t been in standard.
机译:需要建造的承接建筑物的进一步发展意味着需要良好的屋顶并具有良好的质量,轻便和防水。混凝土瓦是较好的屋顶之一,但它的价格比其他瓦贵,而且足够重。这项研究意味着要知道添加椰子纤维可增加柔韧性,并具有透水性,吸水率,均匀形状和无掺加椰子纤维的混凝土瓦质量。 PC,磨石灰和沙子与混凝土砖混合料的混合,即1 PC:2 KM:2,5 PS。椰子混合比例为0%; 1%; 1,5%; 2%;沙子重量的2.5%。从计算测试结果的平均值中获取数据,然后与SNI 0096-2007进行比较。混凝土瓦特质的结果是光滑,直角,无开裂或无物理缺陷。测量结果为P = 420 mm,L = 329 mm,平板厚度= 9,56 mm,横卧厚度= 9,86 mm,连接长度= 50,8 mm,宽度长度= 12 mm,连接高度= 11.5毫米,轮廓宽度= 80.2毫米,横纹深度= 29.6毫米,横纹数目2。椰子纤维为0%的抗渗性混凝土瓦的结果; 1% 1,5%; 2%;完全不渗透的有2.5%,平均掺入椰子纤维的比例为0%= 9,046%; 1%= 9,667%; 1.5%= 10,202%; 2%= 9,741%; 2,5%= 11,317%。椰子纤维平均热百分率的结果为0%= 82.54%; 1%= 80.88%; 1.5%= 77.98%; 2%= 78,60%; 2,5%= 80,18%。平均挠曲载荷测试中椰子纤维的百分比为0%= 103.23 kg; 1%= 107.59公斤; 1.5%= 116.32公斤; 2%= 119.22公斤; 2,5%= 126,49公斤。从结果测试手段可以得出结论,添加更多的纤维,因此它在弯曲测试中会更强。研究表明,从掺入比例,外观特性和尺寸方面考虑,掺入椰子纤维的混凝土瓦已在SNI 0096-2007进行了分类。而从弯曲特性,吸热性和繁荣性方面还没有达到标准。

著录项

  • 作者

    Ariyani Anggun Woro;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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