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Energy and Cost Assessment of 3D Printed Mobile Case Covers

机译:3D打印手机外壳的能源和成本评估

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摘要

Sustainable manufacturing emphasizes efficient production, whilst upholding economic, environmental, and societal commitments. One major challenge for sustainability arises in short lifecycle products such as mobile phone covers. The market demands quick product launch and responsive fulfilment, which is typically achieved through make-to-stock production using injection moulding. This approach necessitates production is based on demand forecasts, which frequently leads to overproduction and much unsold waste product. 3D printing technologies enable a make-to-order production model, allowing customers to self-manufacture mass customized products as needed. Moreover, in the framework of circular economy, 3D printing empowers the final user with full control of the end-of-life product disposal management. These capabilities suggest 3D printing may afford improved sustainability, but to-date there has been little empirical validation of this proposition. This paper addresses this gap through a comparison of 3D printed and injection moulded production, providing a detailed quantitative evaluation of energy and costs for both manufacturing approaches.
机译:可持续制造强调高效生产,同时坚持经济,环境和社会承诺。诸如手机套之类的短生命周期产品是可持续发展的一大挑战。市场需要快速的产品发布和快速的实现,这通常是通过使用注塑成型按库存生产来实现的。这种方法需要根据需求预测进行生产,这经常导致生产过剩和大量未售出的废物。 3D打印技术可实现按订单生产的模型,使客户可以根据需要自行制造大量定制产品。此外,在循环经济的框架内,3D打印使最终用户可以完全控制报废产品处置管理。这些功能表明3D打印可以提供更好的可持续性,但是迄今为止,该命题的经验验证很少。本文通过比较3D打印和注塑成型产品来弥补这一差距,从而对这两种制造方法的能耗和成本进行了详细的定量评估。

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