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Optimization Study on Surface Roughness and Tribological Behavior of Recycled Cast Iron Reinforced Bronze MMCs Produced by Hot Pressing

机译:热压生产回收铸铁增强青铜MMC的表面粗糙度与摩擦学行为的优化研究

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摘要

Surface roughness reflects the quality of many operational parameters, namely service life, wear characteristics, working performance and tribological behavior of the produced part. Therefore, tribological performance is critical for the components used as tandem parts, especially for the MMCs (Metal Matrix Composites) which are a unique class of materials having extensive application areas such as aerospace, aeronautics, marine engineering and the defense industry. Current work covers the optimization study of production parameters for surface roughness and tribological indicators of newly produced cast iron reinforced bronze MMCs. In this context, two levels of temperature (400 and 450 °C), three levels of pressure (480, 640 and 820 MPa) and seven levels of reinforcement ratios (60/40, 70/30, 80/20, 90/10, 100/0 of GGG40/CuSn10, pure bronze-as received and pure cast iron-as received) are considered. According to the findings obtained by Taguchi’s signal-to-noise ratios, the reinforcement ratio has a dominant effect on surface roughness parameters (Ra and Rz), the coefficient of friction and the weight loss in different levels. In addition, 100/0 reinforced GGG40/CuSn10 gives minimum surface roughness, pure cast iron provides the best weight loss and pure bronze offers the desired coefficient of friction. The results showed the importance of material ingredients on mechanical properties by comparing a wide range of samples from starting the production phase, which provides a perspective for manufacturers to meet the market supply as per human requirements.
机译:表面粗糙度反映了许多操作参数的质量,即生产的部分的使用寿命,磨损特性,工作性能和摩擦学行为。因此,摩擦学性能对于用作串联零件的组件至关重要,特别是对于MMC(金属基质复合材料),这是一种具有广泛应用领域的独特材料,例如航空航天,航空,海洋工程和国防工业。目前的工作涵盖了新生产铸铁加固青铜MMC的表面粗糙度和摩擦学指标的优化研究。在这种情况下,两个温度(400和450°C),3级压力(480,640和820 MPa)和七个水平的加固比(60/40,70 / 30,80 / 20,90 / 20,90/10考虑,考虑了100/0的GGG40 / CUSN10,纯铜 - 如接收和纯铸铁 - 如所接收的)。根据Taguchi的信噪比获得的发现,增强率对表面粗糙度参数(RA和RZ)具有显着效果,摩擦系数和不同水平的重量损失。此外,100/0加固GGG40 / CUSN10提供最小表面粗糙度,纯铸铁提供最佳减肥,纯青铜提供所需的摩擦系数。结果表明,通过比较从生产阶段的各种样品比较各种样品来说,材料成分对机械性能的重要性,这为制造商提供了符合人类需求的市场供应的视角。

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