振动环境下软金属碰撞滑动接触摩擦性能的分子动力学模拟

Q3 Engineering 西北工业大学学报 Pub Date : 2022-12-01 DOI:10.1051/jnwpu/20224061269
Baobao Qiang, R. Tong, Jun Ye, Ze-fen Quan, Jingyan Wang, Shilin Li
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引用次数: 0

摘要

软金属由于抗剪强度低,常用于空间机械润滑。在外太空中,由于微重力环境的影响,当存在小扰动时,空间机构就会发生振动。研究软质金属在振动环境下的摩擦性能,有助于空间润滑材料的应用。以间隙关节为例,将轴与轴承之间的相对运动简化为一个气缸与两个光滑接触体之间的滑动接触。建立了刚性圆柱压头与弹性基底碰撞滑动接触的分子动力学模型。研究了滑动速度、碰撞速度和压头半径对软质金属摩擦性能的影响。结果表明,Ag衬底和Au衬底对Fe压头具有较强的附着力。压头与承印物始终处于粘接滑动接触状态。压头的初始碰撞速度越大,摩擦力越大。摩擦力随滑动速度的增大而增大。随着压头半径的增大,接触面积增大,摩擦力增大。Cu基板与Fe压头的附着力较弱,因此摩擦力呈现低值,Cu的摩擦性能最好,Au的摩擦性能最差。
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Molecular dynamics simulation on friction performance of collision sliding contacts of soft metals in vibration environment
Soft metals are often used for space mechanism lubrication because of their low shear strength. In outer space, the vibration of spatial mechanism will occur when there is a small disturbance due to the effects of microgravity environment. Studies on the friction properties of soft metals in vibration environment could contribute to the application of space lubrication materials. Taking a clearance joint as an example, the relative motion between the shaft and the bearing is simplified to a sliding contact between a cylinder and two smooth contact bodies. A molecular dynamics model of the collision sliding contact between a rigid cylindrical indenter and an elastic substrate is established. The effects of sliding velocity, collision velocity and indenter radius on the friction properties of soft metals are studied. The results show that the Ag substrate and Au substrate present strong adhesion to the Fe indenter. The indenter and the substrate are always in a state of adhesive sliding contact. The larger the initial collision velocity of the indenter, the higher the friction force. The friction force shows great values as the sliding velocity increases. As the increase of indenter radius, the contact area is enlarged, which results in a high friction force. The adhesion of the Cu substrate to the Fe indenter is weak, so the friction force shows a low value, and the friction performance of Cu is the best, while the friction performance of Au is the worst.
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来源期刊
西北工业大学学报
西北工业大学学报 Engineering-Engineering (all)
CiteScore
1.30
自引率
0.00%
发文量
6201
审稿时长
12 weeks
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