The RPUF Composite’s Physical and Mechanical Properties with Ramie Stem Particle Reinforcement

Rihab Stafian, Dede Hermawan, S. S. Munawar, D. Purnomo, Bambang Subiyanto, Ahmad Syahrir, Fazhar Akbar, S. S. Munawar, “Physical
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Abstract

Rigid polyurethane foam (RPUF) is a common insulation material that has low thermal conductivity and good mechanical properties. The qualities of RPUF may be enhanced by adding natural fiber reinforcing. The purpose of this work is to examine how the mechanical and physical characteristics of RPUF composite are affected by the amount of ramie stem particles present. Japanese Industrial Standard (JIS) A 5908-2003 is the basis for the mechanical test (modulus of elasticity, modulus of rupture, compressive strength, internal bond) and the physical test (density, moisture content, water absorption). The study's findings suggest that the physical properties of the RPUF composite were affected by the addition of ramie particles for reinforcement. The density increase in particle content 2.5% – 7.5% range, is not statistically significant. The MC and WA increased statistically significantly. The values of MOE and MOR were not significantly different. In fact, with the addition of 2.5% and 5% ramie particles, the compressive strength value was higher than the RPUF composite without ramie particle filler. Then overall, the IB value was increased by increasing the ramie particles in the RPUF composite. The addition of 2.5-5% ramie particles into the RPUF composite showed optimum results in mechanical properties. Thereby, the addition of ramie particles in the RPUF composite means reducing the use of polyurethane. Therefore, it can reduce production costs. Then the product is more environmentally friendly
苎麻茎颗粒加固的 RPUF 复合材料的物理和机械性能
硬质聚氨酯泡沫(RPUF)是一种常见的隔热材料,具有低导热性和良好的机械性能。添加天然纤维增强材料可提高 RPUF 的质量。这项工作的目的是研究苎麻茎颗粒的数量如何影响 RPUF 复合材料的机械和物理特性。日本工业标准(JIS)A 5908-2003 是机械测试(弹性模量、断裂模量、抗压强度、内结合力)和物理测试(密度、含水率、吸水率)的依据。研究结果表明,RPUF 复合材料的物理性能受到添加苎麻颗粒加固的影响。在颗粒含量为 2.5% - 7.5% 的范围内,密度的增加没有统计学意义。MC和WA在统计上有明显增加。MOE 和 MOR 的值没有明显差异。事实上,添加 2.5% 和 5% 的苎麻颗粒后,抗压强度值高于不添加苎麻颗粒填料的 RPUF 复合材料。总体而言,IB 值随着 RPUF 复合材料中苎麻颗粒含量的增加而增加。在 RPUF 复合材料中添加 2.5-5% 的苎麻颗粒可获得最佳的机械性能。因此,在 RPUF 复合材料中添加苎麻颗粒意味着减少聚氨酯的使用量。因此,它可以降低生产成本。因此,该产品更加环保
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