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Investigating the environmental impact that issues of tribology have on the use phase of a domestic refrigerator

机译:调查摩擦学问题对国内冰箱的使用阶段的环境影响

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Environmental considerations have led to the phase out of chlorofluorocarbon (CFC) refrigerants from the domestic refrigeration industry. One intriguing aspect is that the chlorine in CFCs is a good lubricating agent and any deterioration of system performance may adversely influence other environmental considerations. Based on this consideration, the aim of this research is to address the sustainable development of domestic refrigeration systems using the replacement refrigerant HFC-134a. The work focuses on the emissions that may arise if the electrical consumption of the product deteriorates or its durability is curtailed. Tribological characteristics on compressor components influence both of these product attributes and therefore a thorough system analysis was carried out. An in-house built experimental test rig, which monitored slight variations in the electrical power drawn by a reciprocating hermetic compressor, was used under different experimental conditions. Furthermore, a detailed life cycle assessment on a domestic refrigerator was performed to help quantify the ensuing environmental burdens. In this way, a relation between tribological characteristics, power consumption and environmental impact was studied. This paper shows that the CFC substitute will increase friction and wear characteristics on the aluminium alloy connecting rod and the steel gudgeon pin. These characteristics may contribute to the observed increase in the electrical energy consumption of the compressor such that the indirect global warming implications rise with HFC-134a. If the sustainable development of this product is to be ascertained then a change in refrigerants alone will not suffice.
机译:环境因素导致了国内制冷行业的氯氟烃(CFC)制冷剂的阶段。一种有趣的方面是CFC中的氯是良好的润滑剂,并且系统性能的任何劣化可能会对其他环境考虑产生不利影响。基于这一考虑,本研究的目的是解决使用替代制冷剂HFC-134A的国内制冷系统的可持续发展。如果产品劣化或其耐用性,则该工作侧重于可能出现的排放量或耐久性。压缩机组件的摩擦学特性影响了这些产品属性,因此进行了彻底的系统分析。在不同的实验条件下使用内部建造的实验试验台,其监测往复式气密压缩机绘制的电功率的轻微变化。此外,对国内冰箱进行了详细的生命周期评估,以帮助量化随后的环境负担。以这种方式,研究了摩擦学特征,功耗和环境影响之间的关系。本文表明,CFC替代品将提高铝合金连杆和钢结构销上的摩擦和磨损特性。这些特性可能有助于观察到的压缩机的电能消耗的增加,使得间接全球变暖的影响与HFC-134A升高。如果要确定该产品的可持续发展,那么单独的制冷剂的变化就不足。

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