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Effect of forging on mechanical properties of rice husk ash-silicon carbide reinforced Al1100 hybrid composites

机译:锻造对稻壳碳化硅碳化硅机械性能的影响Al1100杂交复合材料

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During the past few years, material design has changed prominence to pursue light weight, environment friendliness, low cost, quality, higher service temperature, higher elastic modulus, improved wear resistance and performance. Straight monolithic materials have limitations in achieving the above decisive factors. To overcome these limitations and to convince the ever increasing demand of modern day technology, Attention has been shifted towards Metal Matrix Composites (MMC). Stir casting route is most hopeful for synthesizing discontinuous reinforcement aluminium matrix composites because of its relative simplicity and easy adaptability with all shape casting process used in metal casting industry. Hybridization of metal matrix composites is the introduction of more than one type/kind, size and shape of reinforcement during processing of composites. It is carried out to obtain synergistic properties of different reinforcements and matrix used, which may not be rea1ised in monolithic alloy or in conventional monocomposites. The present study involves synthesis of hybrid composites by addition of the desired amount of Silicon Carbide (SiC) and Rice Husk Ash (RHA) particles in to the molten Al 1100-Mg alloy through stir casting technique fallowed by hot forging of the cast composites. The influence of increasing in the wt% (3, 6, 9, 12 and 15 wt%) of SiC particles addition (3 wt% Rice husk ash kept constant) on evolution of microstructure is studied through XRD and SEM and their impact on the mechanical properties like hardness and tensile strength of the resulting forged hybrid composites has been investigated.
机译:在过去几年中,材料设计已经改变了追求重量轻,环境友好,成本低,质量,高等服务温度,更高的弹性模量,改善耐磨性和性能。直线物质材料具有实现上述决定性因素的局限性。为了克服这些限制并说服现代技术的不断增加的需求,注意力已经向金属基质复合材料(MMC)转变。搅拌铸造途径最有希望合成不连续加强铝基基复合材料,因为其与金属铸造工业中使用的所有形状铸造工艺相对简单,适应性易于适应性。金属基质复合材料的杂交是在复合材料的加工过程中引入多于一种/种类,尺寸和厚度的加固形状。进行以获得所使用的不同增强物和基质的协同性质,其可能在整体合金中或以常规的单组织复合物中不得重新。本研究通过将所需量的碳化硅(SiC)和水稻壳灰(RHA)颗粒通过搅拌铸造技术加入熔融Al 1100mg合金的所需量的碳化硅(SiC)和稻壳灰(RHA)颗粒来合成杂化复合材料。通过XRD和SEM研究了SiC颗粒加成(3wt%稻壳灰常数3wt%)的SiC颗粒添加(3wt%稻壳浓度)对微观结构的演化的影响及其影响已经研究了所得锻造杂化复合材料的硬度和拉伸强度的机械性能。

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