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BUILD TIME ANALYSIS OF ADDITIVE MANUFACTURING FOR NEXT GENERATION SLS SYSTEMS

机译:下一代SLS系统构建时间分析

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With the recent advances in the additive manufacturing (AM) production technologies, AM is becoming more common in today's industry, nowadays is a normal practice to use this solution either to test a new prototype or to manufacture a functional product. The increase application is mainly due to significant developments in the production solutions of the AM. These recent developments are resulting in an increase search for new and more efficient production solutions. This search is always focused in producing more efficiently, with a greater variety of materials and produce part with better quality and proprieties. From an industrial point of view, one of the types of additive manufacturing that is increasing the percentage of use is the selective laser sintering (SLS) technologies. Although this process was first used in the mid-80 s, it has shown great developments in the recent years. This evolution of the process allowed it to become a solid solution even if it is highly time consuming, especially when compared with other types of addictive manufacturing. From the several aspects that make the SLS a robust solution is the fact that it offers a consistent solution to produce high complex part with good mechanical properties, and also the ability to use many core materials, from polymers, metal alloy, ceramics or even composites materials. Due to the fact that the production of part using SLS technologies takes a long time, shows the relevance to study the entire process in order to quantify the time spent in each stage a very important step. This study can be conducted with two major goals, in one hand to be able to predict the build time needed to complete a predetermined task, and in other hand, to improve the overall efficiency of the process based on the knowledge acquired in the previous analysis. These two aspects are important because they allow the machine operator to choose the production plan more carefully and also to know all the parameters of the process to make it more efficient. In this paper will be presented a survey of the major stages of a SLS process in order to quantify the time consumed in each one of the stages, and if possible, determine solution to reduce the time spent. To better understand the topic the paper will be divided according to the proprieties and time consumed in each of the elements of the process. In other words, it will be divided accordingly to a machine, laser and material point of view. Furthermore, this paper will be focused in the SLS process and the productions based in a polymeric powder, therefore also containing aspects related to the power source used.
机译:随着近期添加剂制造业(AM)生产技术的进展,在当今的行业中,AM正在变得越来越常见,现在使用这种解决方案来测试新的原型或制造功能产品的正常做法。增加申请主要是由于上午的生产解决方案的显着发展。这些最新的发展导致了增加了新的和更高效的生产解决方案的搜索。此搜索始终专注于更有效地生产,具有更大的材料,并产生具有更好质量和礼品的部分。从工业角度来看,增加使用百分比的添加剂制造类型是选择性激光烧结(SLS)技术。虽然这一过程是在80年代中期使用的第一次使用,但近年来它表现出巨大的发展。这种过程的演​​变使其成为一种固体溶液,即使它是高度耗时的,特别是与其他类型的上瘾制造相比。从使SLS成为强大的解决方案的几个方面是,它提供了一致的解决方案,可以生产具有良好机械性能的高复杂部分,以及使用许多芯材的能力,来自聚合物,金属合金,陶瓷或甚至复合材料材料。由于使用SLS技术的部件的生产需要很长时间,表明了研究整个过程的相关性,以便量化每个阶段所花费的时间非常重要的步骤。这项研究可以用两个主要目标进行,一方面能够预测完成预定任务所需的构建时间,另一方面,根据先前分析中获取的知识来提高过程的整体效率。这两个方面很重要,因为它们允许机器运营商更仔细地选择生产计划,并了解过程的所有参数,以使其更有效。在本文中,将介绍对SLS过程的主要阶段的调查,以便量化每个阶段中的每一个阶段所用的时间,并且如果可能的话,确定解决时间所花费的时间。为了更好地了解该主题,纸张将根据过程中的每一个元素所用的特征和时间划分。换句话说,它将相应地划分为机器,激光和材料的观点。此外,本文将聚焦在SLS工艺中,并且基于聚合物粉末的制造,因此还包含与所使用的电源相关的方面。

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