材料科学
环氧树脂
涂层
摩擦学
喷丸
喷丸
图层(电子)
冶金
极限抗拉强度
激光喷丸
复合材料
残余应力
作者
Bo Lin,Li Zhang,Meng Cai,Jingfen Lu,Jianing Yin,Yu Huang,Yihan Zhang,Xiaoqiang Fan,Minhao Zhu
标识
DOI:10.1088/2051-672x/ad0b17
摘要
Abstract The synergy of tribology design and surface engineering is vitally important for fulfilling the long-term anti-wear requirements of mechanical equipment. Here, Q345 steel was processed by shot peening (SP) for forming a volcano-like hardened layer (77.72 HV) with high surface roughness (3.77 μ m) and low residual tensile stress (210.75 MPa). Then, a zinc-rich epoxy coating was painted on SP-strengthened Q345 steel to construct the double-layer protection. The double-layer system shows excellent tribological behaviors, especially wear resistance being reduced by 76.50% and 38.75%, respectively, with Q345 steel and that sprayed by epoxy coating as a comparison. Crucially, SP layer plays a role in mechanical support, while epoxy coating acts as a cushion to friction force, thus achieving the synergy for enhancing the anti-friction/wear abilities.
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