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Processing of Ultrafine-Size Particulate Metal Matrix Composites by Advanced Shear Technology

机译:先进剪切技术处理超细颗粒金属基复合材料

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Lack of efficient mixing technology to achieve a uniform distribution of fine-size reinforcement within the matrix and the high cost of producing components have hindered the widespread adaptation of particulate metal matrix composites (PMMCs) for engineering applications. A new rheo-processing method, the melt-conditioning high-pressure die-cast (MC-HPDC) process, has been developed for manufacturing near-net-shape components of high integrity. The MC-HPDC process adapts the well-established high shear dispersive mixing action of a twin-screw mechanism to the task of overcoming the cohesive force of the agglomerates under a high shear rate and high intensity of turbulence. This is followed by direct shaping of the slurry into near-net-shape components using an existing cold-chamber die-casting process. The results indicate that the MC-HPDC samples have a uniform distribution of ultrafine-sized SiC particles throughout the entire sample in the as-cast condition. Compared to those produced by conventional high-pressure die casting (HPDC), MC-HPDC samples have a much improved tensile strength and ductility.
机译:缺乏有效的混合技术,无法在基体内均匀分布细小尺寸的增强材料,以及生产零件的高成本,阻碍了颗粒金属基复合材料(PMMC)在工程应用中的广泛应用。已经开发出一种新的流变加工方法,即熔融调节高压压铸(MC-HPDC)工艺,用于制造高完整性的近净形部件。 MC-HPDC工艺使双螺杆机构公认的高剪切分散混合作用适应在高剪切速率和高湍流强度下克服团聚体内聚力的任务。然后,使用现有的冷室压铸工艺将浆料直接成型为接近最终形状的组件。结果表明,在铸态条件下,MC-HPDC样品在整个样品中均具有超细SiC颗粒的均匀分布。与通过常规高压压铸(HPDC)生产的产品相比,MC-HPDC样品的拉伸强度和延展性大大提高。

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