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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Technical-economic evaluation of abrasive recycling in the suspension fine jet process chain
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Technical-economic evaluation of abrasive recycling in the suspension fine jet process chain

机译:悬浮液射流过程链中磨料再循环的技术经济评价

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摘要

Abrasive waterjet generation methods such as the conventional injection jet method and the suspension jet method have a strong influence on properties and costs of the machined products, particularly ones made of difficult-to-machine materials, e.g., ceramics. Since recycling may reduce the needed amount of materials significantly, the same holds true for recycling processes and technologies within the process chains of abrasive waterjet methods. In this paper, a methodology for integrated technical-economic evaluation of processes is presented and applied to the process technology of abrasive recycling in the suspension fine jet process chain aiming to show the technology's technical as well as economic potential. Research and development regarding such processes and technologies may contribute to gain competitive advantages for companies as they can differentiate from competitors by offering or processing materials with distinctive properties and/or lower prices causing customer's benefit. Consequently, it is also of great importance for companies applying waterjet cutting methods to know whether and which recycling technologies are promising from both a technical and an economic point of view. Experiments show that a significant share of the input material (abrasive particles) can be reused after recycling. The monetary appraisal reveals that technical potential results in considerably lower costs compared to the suspension jet method without recycling.
机译:诸如传统喷射射流法和悬架喷射方法的磨料水射流产生方法对机加工产品的性能和成本产生了强烈影响,特别是由难以机材料制成的,例如陶瓷。由于回收率可以显着降低所需的材料量,因此对于磨料水射流方法的过程链内的回收过程和技术也是如此。本文提出了一种方法的综合技术经济评估方法,并应用于悬浮精细喷射过程链中磨料回收的过程技术,旨在展示技术的技术和经济潜力。关于这些过程和技术的研究和发展可能有助于为公司提供竞争优势,因为它们可以通过提供或加工具有具有独特性质和/或降低价格的竞争对手来区分竞争对手,导致客户的利益。因此,对于应用水射流切割方法的公司来说,还有哪些回收技术以及从技术和经济的角度都有前途的知识也非常重要。实验表明,在再循环后,可以重复使用输入材料(磨料颗粒)的大量份额。货币评估表明,与悬浮喷射方法相比,技术潜力的成本相当较低,而不再循环。

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