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Unraveling the low thermal conductivity of the LPBF fabricated pure Al, AlSi12, and AlSi10Mg alloys through substrate preheating

机译:通过基体预热揭示LPBF制备的纯Al、AlSi12和AlSi10Mg合金的低导热性

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摘要

It is essential to employ post-build heat treatment on the laser powder bed fusion (LPBF) fabricated aluminum (Al) and Al alloys due to their thermal conductivity in the as-built condition being inferior to that of the conventionally manufactured counterparts. In this study, substrate preheating (200℃) was proposed as a solution to achieve high thermal conductivities in the as-built condition. Pure Al, AlSi12, and AlSi10Mg samples were shown to possess up to 15%, 25%, and 80% higher thermal conductivity values than their non-preheated counterparts reported in the literature. An analytical analysis contingent on calculating electron mean free path in the presence of only intrinsic or a combination of intrinsic and extrinsic scattering phenomena was introduced to justify the thermal behaviors. As per micro X-ray computed tomography, EBSD analysis, and TEM investigations, the extrinsic scattering sites were found to be (i) pores, (ii) grain boundaries, (iii) cell boundaries (Al alloys), (iv) oxides (pure Al), (v) nano-size Si precipitates (AlSi10Mg), (vi) nano-size Mg_2Si phase (AlSi10Mg), (vii) vacancies, (viii) dislocations and (ix) Si supersaturation in α-Al phase (Al alloys). The dominant scattering site(s) was found for each material based on which the difference between the obtained thermal conductivity and its corresponding nominal value or the one reported for the non-preheated condition was unraveled. The implications of the findings in this study are essential not only for Al/Al alloys but also for other metallic materials (i.e., Cu alloys), requiring high thermal conductivity in the as-built condition.
机译:有必要采用post-build热量治疗激光粉末床上融合(LPBF)制造铝(Al)和Al合金由于导热系数的竣工条件是劣质的传统制造。研究中,提出了基板预热(200℃)作为解决方案来实现高的热导率的竣工条件。艾尔,AlSi12 AlSi10Mg样本所示拥有高达15%,25%和80%更高的热比他们的non-preheated电导率值同行在文献中报道。取决于计算分析分析电子平均自由程的存在内在的或内在的和被介绍给外在散射现象证明热行为。计算机断层扫描、EBSD分析和透射电镜调查,外在散射网站毛孔被发现是(我),(2)粮食吗边界,(3)单元边界(Al合金),(iv)氧化物(纯铝),(v)纳米硅沉淀(AlSi10Mg), (vi)纳米Mg_2Si阶段(AlSi10Mg)、(七)空缺(八)混乱和α(ix)如果过度饱和状态”阶段(Al合金)。网站(s)为每个材料的基础上被发现这之间的差异获得热吗导电率及其对应的标称值non-preheated或报道条件是瓦解。在这项研究中发现不仅至关重要铝/铝镁合金还为其他金属材料(例如,铜合金),要求高热导率的竣工条件。

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