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首页> 外文期刊>Journal of Tribology >Effect of Heat Treatment on Mechanical and Tribological Properties of Centrifugally Cast Functionally Graded Cu/Al2O3 Composite
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Effect of Heat Treatment on Mechanical and Tribological Properties of Centrifugally Cast Functionally Graded Cu/Al2O3 Composite

机译:热处理对离心浇铸功能梯度Cu / Al2O3复合材料的机械和摩擦学性能的影响

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A functionally graded Cu-10Sn-5Ni metal matrix composite (MMC) reinforced with 10 wt % of Al2O3 particles was fabricated using the centrifugal casting process with dimension Phi(out)100 x Phi(in)85 x 100 mm. The mechanical and wear resistance of the composite has been enhanced through heat treatment. Samples from of the inner zone (9-15 mm) were considered for heat treatment, as this zone has higher concentration of less dense hard reinforcement particles. The samples were solutionized (620 degrees C/60 min) and water quenched followed by aging at different temperatures (400, 450, and 550 degrees C) and time (1-3 h). Optimum parametric combination (450 degrees C, 3 h) with maximum hardness (269 HV) was considered for further analysis. Dry sliding wear experiments were conducted based on Taguchi's L27 array using parameters such as applied loads (10, 20, and 30 N), sliding distances (500, 1000, and 1500 m), and sliding velocities (1, 2, and 3 m/s). Results revealed that the wear rate increased with load and distance whereas it decreased initially and then increased with velocity. Optimum condition for maximum wear resistance was determined using signal-to-noise (S/N) ratio. Analysis of variance (ANOVA) predicted the major influential parameter as load, followed by velocity and distance. Scanning electron microscope (SEM) analysis of worn surfaces predicted the wear mechanism, observing more delamination due to increase in contact patch when applied load increased. Results infer 8% increase in hardness after heat treatment, making it suitable for load bearing applications.
机译:使用具有离心铸造方法的用10wt%的Al 2 O 3颗粒增强的功能梯度Cu-10Sn-5Ni金属基质复合材料(MMC)用尺寸PHI(OUT)100×PHI(in)85×100mm。通过热处理增强了复合材料的机械和耐磨性。考虑来自内部区(9-15mm)的样品进行热处理,因为该区域具有较高浓度的浓度较少的密集硬化颗粒。将样品溶液(620℃/ 60分钟)和水淬灭,然后在不同温度(400,450和550℃)和时间(1-3小时)时老化。考虑最大硬度(269HV)的最佳参数组合(450℃,3小时)进一步分析。使用诸如施加的载荷(10,20和30n)的参数,滑动距离(500,1000和1500μm)和滑动速度(1,2和3米(1,2和3米)基于Taguchi的L27阵列进行干滑滑动磨损实验。和滑动距离(1,2和3米/ s)。结果表明,磨损率随着负荷和距离而增加,而最初降低,然后用速度增加。使用信号对噪声(S / N)比测定最大耐磨性的最佳条件。方差分析(ANOVA)将主要的影响力参数预测为负载,然后是速度和距离。扫描电子显微镜(SEM)分析磨损表面预测磨损机构,当施加负荷增加时,由于接触贴片的增加而观察更多的分层。结果热处理后硬度增加8%,适用于承载应用。

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