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首页> 外文期刊>Journal of the Chemical Society of Pakistan >Characterization of Mechanical Properties of Marble Sludge/ Natural Rubber Composites
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Characterization of Mechanical Properties of Marble Sludge/ Natural Rubber Composites

机译:大理石污泥/天然橡胶复合材料的力学性能表征

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This study aims to investigate the possible utilization of Marble Sludge (MS) in Natural Rubber (NR) composites, which would reduce both the environmental pollution and product cost. Marble waste in the form of sludge is taken from Mangopir Marble industrial area Karachi. The sludge was dried, grinded and passed through desire sieves (20, 37 and 75/rni) and incorporated in the formulation of NR composites. The physical characteristics of dry MS were carried out in order to identify all components by instrumental techniques. Different micro sized particles of MS (20, 37 and 75ftm) were added with different loading (10, 30, 50, 70 and 90 phr). Mechanical properties of MS filled NR composites were studied. It was found that tensile strength and tear strength increased with increasing the MS till 70 phr. Further addition of MS in the composites decreased both strengths. Elongation at break and rebound resilience decreased with increasing MS loading, while modulus, (100%, 200% and 300%o elongation), hardness, compression set and abrasion loss increased with increase loading of MS. All mechanical properties of smaller micro size MS particle (20 nm) filled NR composites have higher values then 37 and 75 μm micro size particle. The results of mechanical properties after aging show that the tensile strength, modulus, elongation at break and rebound resilience values decreased while hardness, compression set and abrasion loss values increased.
机译:这项研究旨在调查大理石污泥(MS)在天然橡胶(NR)复合材料中的可能利用,这将减少环境污染和产品成本。污泥形式的大理石废料来自卡拉奇的Mangopir大理石工业区。将污泥干燥,研磨并通过所需的筛子(20、37和75 / rni),并掺入NR复合材料的配方中。为了通过仪器技术鉴定所有组分,进行了干燥MS的物理特征。添加具有不同负载量(10、30、50、70和90 phr)的不同粒径的MS(20、37和75ftm)微粒。研究了MS填充的NR复合材料的力学性能。已经发现,随着MS的增加直到70phr,抗拉强度和撕裂强度增加。在复合物中进一步添加MS会降低两种强度。断裂伸长率和回弹弹性随着MS载荷的增加而降低,而模量(伸长率分别为100%,200%和300%),硬度,压缩永久变形和磨损损失随MS载荷的增加而增加。较小的微米尺寸MS颗粒(20 nm)填充的NR复合材料的所有机械性能均比37和75μm微米尺寸的颗粒更高。老化后的机械性能结果表明,抗张强度,模量,断裂伸长率和回弹弹性值降低,而硬度,压缩永久变形和磨损损失值增加。

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