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Process Parameters Optimization for Ultrasonically Consolidated Fiber-Reinforced Metal Matrix Composites

机译:超声固结纤维增强金属基复合材料的工艺参数优化

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As an emerging rapid prototyping technology, Ultrasonic Consolidation (UC) has been used to successfully fabricate metal matrix composites (MMC). The intent of this study is to identify the optimum combination of processing parameters, including oscillation amplitude, welding speed, normal force, operating temperature and fiber orientation, for manufacture of long fiber-reinforced MMCs. The experiments were designed using the Taguchi method, and an L25 orthogonal array was utilized to determine the influences of each parameter. SiC fibers of 0.1mm diameter were successfully embedded into an Al 3003 metal matrix. Two methods were employed to characterize the bonding between the fiber and matrix material: optical/electron microscopy and push-out tests monitored by an acoustic emission (AE) sensor. SEM images and data from push-out tests were analyzed and optimum combinations of parameters were achieved.
机译:作为新出现的快速原型技术,超声波固结(UC)已被用于成功制造金属基质复合材料(MMC)。本研究的目的是识别加工参数的最佳组合,包括振荡幅度,焊接速度,正常力,工作温度和纤维取向,用于制造长纤维增强MMC。使用Taguchi方法设计实验,利用L25正交阵列来确定每个参数的影响。直径0.1mm的SiC纤维成功嵌入到Al 3003金属基质中。使用两种方法来表征纤维和基质材料之间的粘合:光学/电子显微镜和由声发射(AE)传感器监测的推出试验。分析了来自推出测试的SEM图像和数据,并实现了最佳参数组合。

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