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Damage-tolerant metallic composites via melt infiltration of additively manufactured preforms

机译:通过增材制造的预成型坯的熔渗实现耐损伤的金属复合材料

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A356/316L interpenetrating phase composites were fabricated by infiltrating additively manufactured 316L lattices with molten A356. Measurements of the thermal conductivity of the composites showed an inverse rule of-mixtures dependence on the 316L volume fraction. Compression tests revealed that the stress-strain response of the composites can be tailored by adjusting both the volume fraction and the topology of the 316L reinforcement. Tension tests on composites with 39 vol% 316L showed a strain to failure of 32%, representing an order of magnitude improvement over the strain to failure of monolithic A356. Inspection of the as-tested tensile specimens suggested that this exceptional damage tolerance is a result of the interpenetrating structure of the constituents. These results together demonstrate that this infiltration processing route avoids problems with intermetallic formation, cracking, and poor resolution that limit current fusion-based additive manufacturing techniques for printing metallic composites.
机译:A356 / 316L互穿相复合材料是通过将熔融制造的A356渗透到增材制造的316L晶格中而制成的。复合材料的热导率测量结果显示混合物的反比规则取决于316L体积分数。压缩测试表明,可以通过调整316L增强材料的体积分数和拓扑来定制复合材料的应力应变响应。对含39%(体积)316L的复合材料进行的拉伸试验表明,其破坏应变为32%,比整体式A356的破坏应变提高了一个数量级。对所测试的拉伸试样的检查表明,这种优异的损伤耐受性是各组分互穿结构的结果。这些结果共同表明,这种渗透处理路线避免了金属间化合物形成,开裂和分辨率差的问题,这些问题限制了目前用于印刷金属复合材料的基于熔合的增材制造技术。

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