基础油
羧甲基纤维素
材料科学
摩擦学
葵花籽油
润滑油
流变学
基础(拓扑)
聚合物
亚麻籽油
往复运动
复合材料
核化学
冶金
化学
有机化学
钠
数学分析
气体压缩机
工程类
机械工程
生物化学
数学
扫描电子显微镜
作者
Anthony Chukwunonso Opia,Mohd Fadzli Bin Abdollah,Abdul Hamid Mohd Kameil,S. Syahrullail,Audu Ibrahim Ali,Stanly Chinedu Mama,Abdelgade Agilah Saleh,Ahmed Sule,Charles N Johnson
标识
DOI:10.1177/13506501231198287
摘要
An investigation on lubricating oil rheological behavior and tribological effect on sliding contact was conducted. The study employed organic polymer Eichhornia Crassipes carboxymethyl cellulose (EC-CMC) polymer as additive in corn oil (CO) and sunflower oil (SFO). The experiment was performed using high frequency reciprocating rig (HFRR). Analysis on viscosity behavior was done with three samples of EC-CMC concentration (0.5 wt.%, 1 wt.%, and 1.5 wt.%) under 100 ml volume of base CO and SFO samples. Rheological studies on the polymer concentrations show good results with 0.5 wt.%, 1 wt.%, and 1.5 wt.%, but indicated optimal on 1 wt.% EC-CMC especially from temperature beyond 100°C for the two selected lubricants. Under friction and wear analysis, the test was conducted using 1 wt.% EC-CMC. The base lubricants CO and SFO yielded coefficient of friction and wear scar diameter of 0.087, 11.2 × 10 −6 mm 3 /N/m and 0.080, 10.5 × 10 −6 mm 3 /N/m, respectively. During the testing, the use of 1 wt.% EC-CMC blended SFO gives lower coefficient of friction than CO both at base state and inclusion with additive. This yielded COF reduction by 22.5% and 13.8% for 1 wt.% EC-CMC + SFO and 1 wt.% EC-CMC + CO, respectively, but gives better reduction under SAE-5W-30. The analysis concluded that application of 1 wt.% concentration of EC-CMC in base oil lubricant for both SFO and CO significantly enhanced the properties. The utilization of this sustainable product certainly will contribute in solving global pollution challenges.
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