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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mechanism of Antiwear Property Under High Pressure of Synthetic Oil-Soluble Ultrathin MoS2 Sheets as Lubricant Additives
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Mechanism of Antiwear Property Under High Pressure of Synthetic Oil-Soluble Ultrathin MoS2 Sheets as Lubricant Additives

机译:抗磨性在合成油溶性超高压下的抗磨性机理 2 纸张作为润滑剂添加剂

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Wear occurs between two rubbing surfaces. Severe wear due to seizure under high pressure leads to catastrophic failures of mechanical systems and raises wide concerns. In this paper, a kind of synthetic oil-soluble ultrathin MoS_(2) sheets is synthesized and investigated as lubricant additives between steel surfaces. It is found that, with the ultrathin MoS_(2) sheets, the wear can be controlled under the nominal pressure of about 1 GPa, whereas the bearable nominal pressure for traditional lubricants is only a few hundred megapascals. It is found that when wear is under control, the real pressure between the asperities agrees with the breaking strength of ultrathin MoS_(2). Therefore, it is believed that, because of the good oil solubility and ultrasmall thickness, the ultrathin MoS_(2) sheets can easily enter the contact area between the contacting asperities. Then, the localized seizure and further wear are prevented because there will be no metal-to-metal contact as long as the real pressure between the asperities is below the breaking strength of ultrathin MoS_(2). In this way, the upper limit pressure the lubricant can work is dependent on the mechanical properties of the containing ultrathin two-dimensional (2D) sheets. Additionally, ultrathin MoS_(2) sheets with various lateral sizes are compared, and it is found that sheets with a larger size show better lubrication performance. This work discovers the lubrication mechanism of ultrathin MoS_(2) sheets as lubricant additives and provides an inspiration to develop a novel generation of lubricant additives with high-strength ultrathin 2D materials.
机译:在两个摩擦表面之间发生磨损。在高压下癫痫发作导致严重磨损导致机械系统的灾难性失败,并提高了广泛的关注。在本文中,合成了一种合成的油溶性超薄MOS_(2)片,并在钢表面之间作为润滑剂添加剂研究。结果发现,通过超薄MOS_(2)片,可以在约1GPa的标称压力下控制磨损,而传统润滑剂的可耐受标称压力仅为几百兆帕斯卡。结果发现,当磨损处于控制时,粗糙度之间的真正压力与超薄MOS_(2)的断裂强度同意。因此,据信,由于良好的油溶解度和超级厚度,超薄MOS_(2)片可以容易地进入接触粗糙之间的接触区域。然后,防止局部癫痫发作和进一步磨损,因为没有金属对金属接触,只要粗糙度之间的真正压力低于超薄的超薄MOS_(2)。以这种方式,润滑剂可以工作的上限压力取决于含有超薄二维(2D)片的机械性能。另外,比较具有各种横向尺寸的超薄MOS_(2)片,并发现具有较大尺寸的薄片显示出更好的润滑性能。这项工作发现超薄MOS_(2)片作为润滑剂添加剂的润滑机制,并提供了具有高强度超薄2D材料的新生润滑剂添加剂的启发。

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