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基于质量与生命周期评估(QLCA)新方法的材料与产品开发

Materials and Products Development Based on a Novelty Approach to Quality and Life Cycle Assessment (QLCA).

作者信息

Siwiec Dominika, Pacana Andrzej

机构信息

Faculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, 35-959 Rzeszow, Poland.

出版信息

Materials (Basel). 2024 Aug 4;17(15):3859. doi: 10.3390/ma17153859.

Abstract

The development of materials and the products made from them should respond to new challenges posed by market changes and also by climate change. Therefore, the objective of this investigation was to develop a method that supports the sustainable development of materials and the products made from them based on an aggregated indicator of quality and environmental load in the life cycle (QLCA). The testing and illustration of the QLCA method included a passenger car tyre and nine prototypes. These prototypes were described using eight quality criteria: season, class, size of the load index, speed index, rolling, adhesion, and external noise. Then, customer expectations regarding the importance of the criteria and satisfaction with the indicators in the current and modified states were obtained. Based on the customer assessment, the quality indicators of the prototypes were assessed. This assessment was supported by the weighted sum model (WSM) and the entropy method. Then, life cycle assessment for the reference tyre was performed using the Ecoinvent database in the OpenLCA program. LCA indicators were modelled for other prototypes, taking into account quality changes. As a result of the verification of the method, an aggregated QLCA indicator was estimated, based on which it was possible to select the most favourable (qualitatively and environmentally) prototype out of nine. This was the P4 prototype (QLCA = 0.57). The next position in the ranking was taken by P7 (QLCA = 0.43). The QLCA method can be used to determine the direction of development of materials and products in terms of their sustainable development.

摘要

材料及其制成的产品的发展应应对市场变化以及气候变化带来的新挑战。因此,本研究的目的是开发一种基于生命周期质量与环境负荷综合指标(QLCA)的方法,以支持材料及其制成的产品的可持续发展。QLCA方法的测试和示例包括一款乘用车轮胎和九个原型。这些原型使用八个质量标准进行描述:季节、类别、负荷指数大小、速度指数、滚动、附着力和外部噪音。然后,获取了客户对这些标准重要性的期望以及对当前和改进状态下指标的满意度。基于客户评估,对原型的质量指标进行了评估。该评估得到加权总和模型(WSM)和熵值法的支持。然后,使用OpenLCA程序中的Ecoinvent数据库对参考轮胎进行生命周期评估。考虑到质量变化,对其他原型的生命周期评估指标进行了建模。作为该方法验证的结果,估算了一个综合QLCA指标,基于该指标可以从九个原型中选出最有利(质量和环境方面)的原型。这就是P4原型(QLCA = 0.57)。排名第二的是P7(QLCA = 0.43)。QLCA方法可用于确定材料和产品在可持续发展方面的发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42ae/11313302/f61318e0a7c1/materials-17-03859-g001.jpg

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