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Novel rGO-T-C(n) Nanosheets developed via click chemistry as a lubricant anti-wear additive

机译:通过点击化学作为润滑剂抗磨损添加剂,开发的新型RGO-T-C(n)纳米液相同

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Process equipment and facilities are constantly facing the dilemmas of tear and wear. This manuscript introducing functionalized reduced graphene oxide with triazole moiety via click chemistry as a anti-wear additive. While this has been achieved successfully, full characterization of the new anti-wear additive material revealed it to be promising in ameliorating issues of wears. One of the merits of the synthesized material includes reduction of contact asperity as the lipophilic alkyl chain length increases. It has been tested to be functional when formulated as an additive in group III petroleum base oil. Accordingly, it shows an irregularity in renewable base oil. Following screening evaluations of the lipophilic alkyl chain lengths, the additive with twelve carbon atoms; functionalized reduced graphene oxide, rGO-T-C(12) was confirmed to stand out among others with the good reduction of friction coefficient and the least wear scar diameter of ~539.78?μm, compared to the base oil containing no additive.
机译:工艺设备和设施不断面临撕裂和磨损的困境。通过点击化学作为抗磨损添加剂,将该原稿用三唑部分引入官能化的还原氧化烯氧化物。虽然这一点成功地实现了新的抗磨损添加剂材料的全面表征,但在改善磨损问题方面揭示了它。合成材料的一个优点包括随着亲脂性烷基链长度的增加而降低接触。在III族石油基础油中配制成添加剂时已经测试了。因此,它显示了可再生基础油中的不规则性。在筛选亲脂性烷基链长度的评价后,具有12个碳原子的添加剂;官能化的还原的石墨烯氧化物,RGO-T-C(12)被证实脱颖而出,摩擦系数的良好降低,与含有无添加剂的基础油相比,摩擦系数的良好降低和〜539.78ΩΩμm的最小耐磨疤痕直径。

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