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Single chain polymer nanoparticles as shear-resilient viscosity modifiers for lubricating oils

机译:单链聚合物纳米粒子作为润滑油的剪切弹性粘度调节剂

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Lubricants are crucial to the reduction of erosion and energy loss in systems that include moving surfaces. Two basic requirements for lubricants, viscosity and viscosity-temperature response, are achieved by adding polymers known as viscosity modifiers (VMs). During service, the lubricant's viscosity decreases due to mechanochemically-induced fragmentation of the macromolecules. Herein, we demonstrate how folding the linear polymers into single chain polymer nanoparticles hinders the macromolecule's fragmentation, leading to retention of the lubricant's viscosity properties. Mechanochemical scission in the folded polymer gradually unfolds it, causing the polymer to gain hydrodynamic size and, as a result, these lubricants display permanent viscosity gain. Given the enormous production volume of the lubricant industry, this new class of shear-resilient VMs may lead to considerable financial and environmental benefits.
机译:润滑剂对于减少包括活动表面在内的系统的腐蚀和能量损失至关重要。润滑剂的两个基本要求是粘度和粘度-温度响应,这是通过添加被称为粘度调节剂(VMs)的聚合物实现的。在使用过程中,由于机械化学诱导的大分子碎裂,润滑剂的粘度降低。本文中,我们证明了将线性聚合物折叠成单链聚合物纳米颗粒是如何阻碍大分子的破碎,从而保留了润滑剂的粘度特性。折叠后的聚合物中的机械化学断裂使它逐渐展开,从而使聚合物获得流体力学尺寸,结果,这些润滑剂显示出永久的粘度增加。鉴于润滑剂行业的巨大生产量,这种新型的抗剪切弹性VM可能会带来可观的财务和环境收益。

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