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IMP,正在演变的可赢利性技术新陈代谢
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作者 Michael Braungart 雨林茶 《中国科技信息》 2004年第10期53-55,共3页
IMP(Intelligent Materials Pooling),中文翻译为智能材料聚合,是一种管理工业新陈代谢的协式B-to-B方式。在智能材料聚合中的合作伙伴同意共享接入共同的特殊高科技、高质量材料、汇集的信息和购买能力以带来一个健康的材料流闭合回... IMP(Intelligent Materials Pooling),中文翻译为智能材料聚合,是一种管理工业新陈代谢的协式B-to-B方式。在智能材料聚合中的合作伙伴同意共享接入共同的特殊高科技、高质量材料、汇集的信息和购买能力以带来一个健康的材料流闭合回路系统。由于合作伙伴共享知识和资源,它们发展出一个共享的承诺在它们所有生产出来的产品中使用最健康、最高质量的材料。它们在一起形成了一个基于价值的商业群体关注于从生产环节中消除废物的概念,最终,智能材料聚合为可持续发展的业务创造出一个生命支持系统。 展开更多
关键词 IMP 可赢利性技术 智能材料聚合 管理工业 B-TO-B 合作伙伴
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Two-Way 4D Printing: A Review on the Reversibility of 3D-Printed Shape Memory Materials 被引量:23
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作者 Amelia Yilin Lee Jia An Chee Kai Chua 《Engineering》 SCIE EI 2017年第5期663-674,共12页
The rapid development of additive manufacturing and advances in shape memory materials have fueled the progress of four-dimensional (4D) printing. With the right external stimulus, the need for human interaction, se... The rapid development of additive manufacturing and advances in shape memory materials have fueled the progress of four-dimensional (4D) printing. With the right external stimulus, the need for human interaction, sensors, and batteries will be eliminated, and by using additive manufacturing, more complex devices and parts can be produced. With the current understanding of shape memory mechanisms and with improved design for additive manufacturing, reversibility in 4D printing has recently been proven to be feasible. Conventional one-way 4D printing requires human interaction in the programming (or shapesetting) phase, but reversible 4D printing, or two-way 4D printing, will fully eliminate the need for human interference, as the programming stage is replaced with another stimulus. This allows reversible 4D printed parts to be fully dependent on external stimuli; parts can also be potentially reused after every recovery, or even used in continuous cycles-an aspect that carries industrial appeal. This paper presents a review on the mechanisms of shape memory materials that have led to 4D printing, current findings regarding 4D printing in alloys and polymers, and their respective limitations. The reversibility of shape memory materials and their feasibility to be fabricated using three-dimensional (3D) printing are summarized and critically analyzed. For reversible 4D printing, the methods of 3D printing, mechanisms used for actuation, and strategies to achieve reversibility are also highlighted. Finally, prospective future research directions in reversible 4D printing are suggested. 展开更多
关键词 4D printing Additive manufacturing Shape memory material Smart materials Shape memory alloy Shape memory polymer
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