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Rapid prototyping: energy and environment in the spotlight

机译:快速原型制作:能源和环境成为人们关注的焦点

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Purpose - To discuss integration of the rapid prototyping environmental aspects with the primary focus on electrical energy consumption. Design/methodology/approach - Various manufacturing parameters have been tested on three rapid prototyping systems: Thermojet (3DS), FDM 3000 (Stratasys) and EOSINT M250 Xtended (EOS). The objective is to select sets of parameters for reduction of electrical energy consumption. For this, a part is manufactured in several orientations and positions in the chamber of these RP systems. For each test, the electrical power is noted. Finally, certain rules are proposed to minimize this electrical energy consumption during a job. Findings - It is important to minimize the manufacturing time but there is no general rule for optimization of electrical energy consumption. Each RP system must be tested with energy consumption considerations under the spotlight. Research limitations/implications - The work is only based on rapid prototyping processes. The objective is to take into consideration the complete life-cycle of a rapid prototyped part: manufacturing of raw material as far as reprocessing of waste. Practical implications - Reduction of electrical energy consumption to complete a job. Originality/value - Currently, environmental aspects are not well studied in rapid prototyping.
机译:目的-讨论快速原型环境方面的集成,主要关注电能消耗。设计/方法/方法-在三种快速成型系统上测试了各种制造参数:Thermojet(3DS),FDM 3000(Stratasys)和EOSINT M250 Xtended(EOS)。目的是选择参数集以减少电能消耗。为此,在这些RP系统的腔室中以几种方向和位置制造零件。对于每次测试,都会记录电功率。最后,提出了某些规则以最小化工作过程中的电能消耗。调查结果-缩短制造时间很重要,但是没有优化电能消耗的通用规则。每个RP系统必须在聚光灯下进行能耗考量。研究局限性/含义-这项工作仅基于快速的原型制作过程。目的是考虑快速原型零件的整个生命周期:原材料制造以及废物再处理。实际意义-减少完成工作所需的电能消耗。原创性/价值-目前,在快速原型设计中对环境方面的研究还不够深入。

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