Abstract Contrasting energy efficiency in various ceramic sintering processes
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Contrasting energy efficiency in various ceramic sintering processes

机译:各种陶瓷烧结过程中的能效对比

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AbstractRegarding the recent energy costs and environmental concerns, energy efficient and sustainable manufacturing processes have become important topics. In this paper, a number of novel sintering methods were reviewed to illustrate their potential to reduce energy consumption during ceramic processing. Three approaches: adding sintering aid, increasing heating rate, and applying electric field on the reduction of the energy consumption were considered, and the underlying mechanism in each approach was explored. Next, the laser sintering that is utilized in additive manufacturing approaches and the new Cold Sintering Process (CSP) were introduced as potential techniques for the further improvement of energy efficiency. Since the need of furnaces was eliminated in these latter techniques, their heat dissipation during sintering would significantly decline. For example, it was demonstrated that the energy consumption for BaTiO3powder can decrease from 2800kJ/g for conventional techniques to 30kJ/g for CSP. A simple parameter, “Normalized Excess Energy”, was used as a first order approximation to compare the energy merit in the different sintering techniques.]]>
机译:摘要“>考虑到最近的能源成本和环境问题,节能和可持续的制造工艺已成为重要话题。本文综述了一些新型烧结方法,以说明它们在陶瓷加工过程中降低能耗的潜力。三种方法:添加烧结助剂、提高加热速率和在陶瓷表面施加电场他考虑了降低能耗,并探讨了每种方法的潜在机制。接下来,介绍了用于添加剂制造方法的激光烧结和新的冷烧结工艺(CSP),作为进一步提高能源效率的潜在技术。由于后一种技术不再需要熔炉,烧结过程中的散热量将显著降低。例如,已经证明,BaTiO3粉末的能耗可以从传统工艺的2800kJ/g降低到CSP的30kJ/g。一个简单的参数“归一化过剩能量”被用作一阶近似值,以比较不同烧结技术的能量优势]>

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