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Metal matrix composite from recycled materials by using additive manufacturing assisted investment casting

机译:通过增材制造辅助熔模铸造由再生材料制成的金属基复合材料

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In this research article, a novel method of additive manufacturing (AM) assisted investment casting (IC) has been demonstrated (by using the patterns prepared from waste materials reinforced with ceramic particles) for development of a metal matrix composite (MMC). In first stage, recycled low density polyethylene (LDPE) has been selected as matrix material, while ceramic reinforcement of SiC and Al2O3 has been blended in LDPE by screw extrusion. Initially, the recycled LDPE has been collected in granules form from the local market and processed on single screw extruder to prepare pallets. The ceramic particles and LDPE were blended together to prepared the final blend in different proportions on twin screw extruder. After that Taguchi L9 orthogonal array has been employed to ascertain the affect of different input parameters of FDM machine to prepare the functional prototypes in the form of cubical patterns. Instead of using conventional IC, a rapid method has been employed to prepare sacrificial pattern by using siladent powder (which is being used for preparing cast in clinical dentistry for dentures). Further this method has been explored as an alternate route of rapid IC, which requires very less time as compared to the traditional methods. At final stage cast were prepared with aluminium (Al) alloy as matrix material reinforced with SiC and Al2O3 (which were present in the mould cavity after removal of LDPE). The properties of MMC prepared via this novel route were subjected to hardness and grain size testing supported by photomicrographs and EDAX analysis.
机译:在这篇研究文章中,已经展示了一种新型的增材制造(AM)辅助熔模铸造(IC)方法(通过使用由陶瓷颗粒增强的废料制成的图案)开发金属基复合材料(MMC)。在第一阶段,再生低密度聚乙烯(LDPE)被选作基体材料,而SiC和Al2O3的陶瓷增强材料已通过螺杆挤出掺入LDPE中。最初,回收的LDPE是从当地市场以颗粒形式收集的,并在单螺杆挤出机上加工以制备托盘。在双螺杆挤出机上将陶瓷颗粒和LDPE共混在一起以制备不同比例的最终共混物。之后,使用Taguchi L9正交阵列确定FDM机器的不同输入参数的影响,以立方图案的形式准备功能原型。代替使用传统的IC,已采用一种快速的方法通过使用消光粉(用于制备义齿的临床牙科用铸模)来制作牺牲图案。进一步地,已经探索了该方法作为快速IC的替代途径,与传统方法相比,其需要非常少的时间。在最后阶段,用铝(Al)合金作为基体材料制备铸件,并用SiC和Al2O3增强(去除LDPE后在模腔中存在)。通过这种新方法制备的MMC的性能在显微照片和EDAX分析的支持下进行了硬度和粒度测试。

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