Dry sliding wear and mechanical investigations on flyash particulates - Lapinus fibre - polyamide 66 polymer composites: Ranking analysis using hybrid Analytic Hierarchy Process-R method

Ravi P Sharma, Mukesh Kumar, Ashiwani Kumar
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Abstract

This research work examines the physical, mechanical, thermal, thermo-mechanical, and dry sliding wear performance of hybrid waste flyash particulates (F-class; 0-20 wt% @ step of 5%) – Lapinus fibres (fixed 10 wt%) reinforced Polyamide 66 polymer composites fabricated using the twin screw extruder and injection moulding machine. This follows worn surface morphology to understand the prevailing wear mechanisms responsible for surface damage during sliding. Optimization of control parameters and identification of their order of significance in the dry sliding wear process is performed using Taguchi’s design of experiments and analysis of variance (ANOVA). Further, ranking optimization of the hybrid composite specimens based on their performance metrics is analysed using the hybrid AHP-R method. It has been observed that the hybrid composite specimens having 10 wt% flyash particulates optimize the overall performance metrics; therefore, it may be recommended to fabricate parts or components for industrial usage. It tends to have an experimental density of 1.18 g/cc, voids content of 7.11%, water absorption of 3.87%, tensile strength of 105.95 MPa, flexural strength of 144.86 MPa, Rockwell hardness of 58.12 HRM, fracture toughness of 4.11 MPa√m, Impact strength of 1.86 J, thermal conductivity of 1.08 W/mK, and specific wear rate of 1.12 × 10−3 mm3/Nm. This observation was attuned to the ranking analysis using the hybrid AHP-R method.
粉煤灰颗粒- Lapinus纤维-聚酰胺66聚合物复合材料的干滑动磨损和力学研究:使用混合层次分析法- r方法进行排序分析
本研究考察了混合废粉煤灰颗粒(f级;0-20 wt% @步长5%)- Lapinus纤维(固定10 wt%)增强聚酰胺66聚合物复合材料使用双螺杆挤出机和注塑机制造。这遵循磨损表面形态,以了解在滑动过程中造成表面损伤的主要磨损机制。利用田口试验设计和方差分析(ANOVA)对干滑动磨损过程中的控制参数进行优化和显著性排序。在此基础上,采用混合AHP-R方法对复合材料试件的性能指标进行排序优化。结果表明,粉煤灰掺量为10 wt%的混合复合材料优化了整体性能指标;因此,可能建议制造工业用途的零件或组件。其实验密度为1.18 g/cc,孔隙率为7.11%,吸水率为3.87%,抗拉强度为105.95 MPa,抗折强度为144.86 MPa,洛氏硬度为58.12 HRM,断裂韧性为4.11 MPa√m,冲击强度为1.86 J,导热系数为1.08 W/mK,比磨损率为1.12 × 10−3 mm3/Nm。使用混合AHP-R方法对这一观察结果进行排序分析。
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