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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >On the energy efficiency of pre-heating methods in SLM/SLS processes
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On the energy efficiency of pre-heating methods in SLM/SLS processes

机译:关于SLM / SLS过程预热方法的能效

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摘要

Selective laser melting/sintering (SLM/SLS) are the most established metallic powder bed additive manufacturing (AM) processes. Pre-heating of the powder and the part in SLM/SLS is performed in order to minimize residual stresses and increase the quality of manufactured parts. However, pre-heating constitutes a large portion, in some cases up to 40%, of the total energy consumed for building a part with SLM/SLS. This paper presents an energy consumption evaluation and comparison of the three existing pre-heating methods in SLM/SLS, which are (i) build chamber pre-heating, (ii) base-plate heating and (iii) laser pre-scanning heating. In order to calculate the energy consumption, transient thermal modeling with the finite element method is performed for all the three methods. The thermal model is applied in the case of the fabrication of a twin cantilever beam made out of titanium alloy Ti6AlV4. In addition, the initial energy required to heat the base plate and the process chamber up to the target temperature are calculated. Results show that laser pre-scanning heating leads to lower heat consumption when it comes to low volume parts, i.e., low part to powder bed volume ratio. For fabricating a higher number of parts or parts of high volume, i.e., high part to powder bed volume ratio, the chamber pre-heating and the base plate pre-heating method are found to be more efficient.
机译:选择性激光熔化/烧结(SLM / SLS)是最成熟的金属粉床添加剂制造(AM)工艺。进行粉末的预加热和SLM / SLS中的部分以最小化残余应力并增加制造部件的质量。然而,预热构成大部分,在某些情况下,对于构建具有SLM / SLS的部分的总能量,在某些情况下为高达40%的情况。本文提出了能耗评估和比较SLM / SLS中的三种现有预热方法,其是(i)构建室预热,(ii)底板加热和(iii)激光预扫描加热。为了计算能量消耗,对所有三种方法执行具有有限元方法的瞬态热建模。在制造由钛合金Ti6Alv4制成的双悬臂梁的制造的情况下应用热模型。另外,计算将基板和处理室加热至目标温度所需的初始能量。结果表明,当涉及低容积部件时,激光预扫描加热导致较低的热量消耗。为了制造较高数量的份数或大容量,即粉床体积比,腔室预热和基板预加热方法的份量更高。

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