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The Effect of Mixing Time on the Morphology and Mechanic Properties of Imperata Cylindrica Cellulose

机译:混合时间对临床纤维素形态和力学性能的影响

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One application of cellulose is for the isolation of steam distribution pipe. Many researches on cellulose for isolation have been conducted due to a popular issue of energy saving with its fairly cheap treatment cost. Cellulose is produced from imperata cylindrica reed by an extraction process. The results of extraction were in a form of cellulose fibers. To make the test easier, the cellulose fibers were made in a form of sheets by adding 3.5 % Na-CMC (Sodium Carboxyl Methyl Cellulose). The sheets are produced by blending for 30, 45, and 60 min and then put it into the oven with temperature of 40°C for 36 h. Tests were conducted for four parameters, namely, density, tensile strength, elasticity modulus, and morphology. The density was measured by Pycnometer, while the tensile strength and elasticity modulus was measured by UCT-5T Model UTM, and the morphology was measured by optical microscope from Nikon Ephipot. The test showed that minimal and maximal densities were 166.7 kg/m~3 and 550.2 kg/m~3, respectively;;minimal and maximal average tensile strengths were 9.16 MPa dan 10.5 MPa, respectively;;minimal and maximal elasticity modulus were 79.948 MPa and 113.09 MPa, respectively;;and minimal and maximal specific tensile strengths were 0.01665 MPa/(kg/m~3) and 0.06289 MPa/(kg/m~3).
机译:一种纤维素的应用是用于隔离蒸汽分配管。由于具有相当廉价的待遇成本,因此对纤维素进行隔离进行了许多研究。纤维素由萃取过程从Imperata Cylindrica生产。提取结果以纤维素纤维的形式。为了更容易地进行测试,通过加入3.5%Na-CMC(羧基甲基纤维素)以一种片材制成纤维素纤维。通过混合30,45和60分钟,然后将其放入烘箱中,温度为40℃,36小时。进行四个参数,即密度,拉伸强度,弹性模量和形态学进行测试。通过Pycnomet计测量密度,同时通过UCT-5T模型UTM测量拉伸强度和弹性模量,通过尼康埃普本发明的光学显微镜测量形态。该试验表明,最小和最大密度分别为166.7千克/ m〜3和550.2 kg / m〜3;最小且最大的平均拉伸强度分别为9.16MPa Dan 10.5MPa ;;最小,最大弹性模量为79.948MPa和113.09MPa分别;;并且最小的最大特异性拉伸强度为0.01665MPa /(kg / m〜3)和0.06289MPa /(kg / m〜3)。

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