首页> 外文期刊>Journal of surface engineered materials and advanced technology >Erosion and Toughening Mechanisms of Electroless Ni-P-Nano-NiTi Composite Coatings on API X100 Steel under Single Particle Impact
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Erosion and Toughening Mechanisms of Electroless Ni-P-Nano-NiTi Composite Coatings on API X100 Steel under Single Particle Impact

机译:API X100钢在单粒子冲击下化学镀Ni-P-Nano-NiTi复合涂层的腐蚀和增韧机理

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The addition of superelastic NiTi to electroless Ni-P coating has been found to toughen the otherwise brittle coatings in static loading conditions, though its effect on erosion behaviour has not yet been explored. In the present study, spherical WC-Co erodent particles were used in single particle impact testing of Ni-P-nano-NiTi composite coatings on API X100 steel substrates at two average velocities — 35 m/s and 52 m/s. Erosion tests were performed at impact angles of 30 ° , 45 ° , 60 ° , and 90 ° . The effect of NiTi concentration in the coating was also examined. Through examination of the impact craters and material response at various impact conditions, it was found that the presence of superelastic NiTi in the brittle Ni-P matrix hindered the propagation of cracks and provided a barrier to crack growth. The following toughening mechanisms were identified: crack bridging and deflection, micro-cracking, and transformation toughening.
机译:已经发现,在化学负载条件下,向化学镀Ni-P涂层中添加超弹性NiTi可以使原本较脆的涂层增韧,尽管尚未研究其对腐蚀行为的影响。在本研究中,球形WC-Co腐蚀颗粒用于在API X100钢基底上的Ni-P-纳米-NiTi复合涂层的单颗粒冲击测试中,平均速度为35 m / s和52 m / s。在30°的冲击角下进行侵蚀测试。 ,45° 60度和90° 。还检查了涂层中NiTi浓度的影响。通过检查冲击坑和在各种冲击条件下的材料响应,发现脆性Ni-P基体中超弹性NiTi的存在阻碍了裂纹的扩展,并为裂纹扩展提供了障碍。确定了以下增韧机制:裂纹桥接和挠曲,微裂纹和相变增韧。

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