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Reverse Logistic Transportation and Packaging Concepts in Automotive Remanufacturing

机译:逆向物流运输和包装概念在汽车再制造中

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A key process in a closed-loop supply chain is managing and challenging the transportation and packaging management. Strict environmental regulations in connection with transport of environmentally hazardous substances (e.g. oil) are offering a high cost-saving potential in connection with an optimised transportation and packaging concept. The aim of this case orientated paper is to provide the framework for the management of reverse flow of materials in automotive industry. The emphasis is placed on the remanufacturing activities. To obtain and verify the necessary information for the above mentioned problems, different methods and techniques have been applied: 1) Relevant, available literature in connection with this matter was studied; 2) Data and documents was requested directly by relevant market actors; 3) The clustered data was analysed and samples were highlighted; and 4) The data was evaluated and recommended courses of action were given. The results show that the main problems appear in the area of forward and reverse logistics: Packaging concepts which do not protect the product in an optimal way (forward / reverse logistics). Moreover, packaging concepts which do not protect the environment against potential negative influence of a used part (reverse logistics) A best practice for the transportation of engine components is given and evaluated: An engine in a metal frame with oil-pan. Securely attached by bolts. Packed in plastic bag.
机译:闭环供应链中的一个关键过程正在管理和挑战运输和包装管理。与环境危害物质的运输(例如石油)有关的严格环境法规正在与优化的运输和包装概念有关的高成本潜力。这种案例的宗旨是为汽车行业中材料逆流管理提供框架。重点放在再制造活动上。为了获得并验证上述问题的必要信息,已经应用了不同的方法和技术:1)研究了与此事有关的可用文献; 2)有关市场行动者直接请求数据和文件; 3)分析聚类数据,并突出显示样品; 4)评估数据并提供了建议的行动课程。结果表明,主要问题出现在前进和逆向物流领域:包装概念,不以最佳方式保护产品(前进/逆向物流)。此外,给出并评估了不保护局部(反向物流)对潜在负影响的包装概念,该概念免受用于常用部分(反向物流)的潜在负面影响的发动机部件的最佳实践:用油底壳的金属框架中的发动机。用螺栓牢固地连接。包装在塑料袋里。

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