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3D打印腰部健康护具设计研究 被引量:1
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作者 姚翔翔 李至惟 +2 位作者 马博文 刘一帆 黄睿资 《包装工程》 CAS 北大核心 2023年第2期411-422,共12页
目的通过对3D打印材料与技术的概述、腰部健康护具市场需求的分析,探索3D打印技术与传统医疗护具设计结合的可能性,思考个性与适应性、艺术与功能性、单价与制造速度的平衡与协调。方法以腰部健康护具为研究切入点,借助SLS、SLA打印技术... 目的通过对3D打印材料与技术的概述、腰部健康护具市场需求的分析,探索3D打印技术与传统医疗护具设计结合的可能性,思考个性与适应性、艺术与功能性、单价与制造速度的平衡与协调。方法以腰部健康护具为研究切入点,借助SLS、SLA打印技术,重点关注可成型工艺(同一材料的3D打印设计改良),对增加造型可塑性以及更为概念性的设计方略层面进行研究。结果基于使用、技术、个性三方面的需求,设计了具备磁疗功效和定制特点的3D打印腰部健康护具。经实验测试,佩戴性良好,各项指标达到了设计预期。结论未来的3D打印发展方向,材料研究仍将是重点,除了材料的多元化、智慧化,技术的互动、增效也会进一步刷新人类社会的制造观念;有效利用3D打印技术的便捷性特点和可定制特点,势必成为未来“可定制化”无障碍产品设计重要的研发和探索方向。 展开更多
关键词 3D打印 可成型工艺 腰部健康护具
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Additivity of pore structural parameters of granular activated carbons derived from different coals and their blends 被引量:7
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作者 Yao Xin Xie Qiang +3 位作者 Yang Chuan Zhang Bo Wan Chaoran Cui Shanshan 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第4期661-667,共7页
A series of granular activated carbons (GACs) were prepared by briquetting method from Chinese coals of different ranks and their blends, with coal pitch as the binder. Pore structural parameters including BET speci... A series of granular activated carbons (GACs) were prepared by briquetting method from Chinese coals of different ranks and their blends, with coal pitch as the binder. Pore structural parameters including BET specific surface area (SBEr), total pore volume (Vr) and average pore diameter (da) were measured and cal- culated as well as process parameters such as yield of char (CY) and burn-off (B). The relationship between the pore structural parameters of the GAC from coal blend (BC-GAC) and the ones of the GACs from corresponding single coals (SC-GACs) was analyzed, in which an index, the relative error (δ), was presented to define the bias between fitted values and experimental values of these parameters of the BC-GACs. The results show that the BC-GAC keeps qualitatively the pore structural features of the SC-GACs; as concerned as the quantitative relationship, the pore structural parameters of the BC-GAC from coal blend consisting of non-caking coals can be obtained by adding proportionally the pore structural parameters of the SC-GACs with a less than 10%. Meanwhile, for the BC-GAC from coal blend containing weak caking bituminous coal, the δ increases up to 25% and the experimental pore size distribution differs greatly from the fitted one. 展开更多
关键词 Granular activated carbon Coal blend Pore structural parameters Additivity
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Flexible conductive Ag nanowire/cellulose nano?bril hybrid nanopaper for strain and temperature sensing applications 被引量:12
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作者 Rui Yin Shuaiyuan Yang +5 位作者 Qianming Li Shuaidi Zhang Hu Liu Jian Han Chuntai Liu Changyu Shen 《Science Bulletin》 SCIE EI CAS CSCD 2020年第11期899-908,M0003,共11页
With the rapid development of smart wearable devices, flexible and biodegradable sensors are in urgent needs. In this study, ‘‘green" electrically conductive Ag nanowire (Ag NW)/cellulose nanofiber (CNF) hybrid... With the rapid development of smart wearable devices, flexible and biodegradable sensors are in urgent needs. In this study, ‘‘green" electrically conductive Ag nanowire (Ag NW)/cellulose nanofiber (CNF) hybrid nanopaper was fabricated to prepare flexible sensors using the facial solution blending and vacuum filtration technique. The amphiphilic property of cellulose is beneficial for the homogeneous dispersion of Ag NW to construct effective electrically conductive networks. Two different types of strain sensors were designed to study their applications in strain sensing. One was the tensile strain sensor where the hybrid nanopaper was sandwiched between two thermoplastic polyurethane (TPU) films through hot compression, and special micro-crack structure was constructed through the pre-strain process to enhance the sensitivity. Interestingly, typical pre-strain dependent strain sensing behavior was observed due to different crack densities constructed under different pre-strains. As a result, it exhibited an ultralow detection limit as low as 0.2%, good reproducibility under different strains and excellent stability and durability during 500 cycles (1% strain, 0.5 mm/min). The other was the bending strain sensor where the hybrid nanopaper was adhered onto TPU film, showing stable and recoverable linearly sensing behavior towards two different bending modes (tension and compression). Importantly, the bending sensor displayed great potential for human motion and physiological signal detection. Furthermore, the hybrid nanopaper also exhibited stable and reproducible negative temperature sensing behavior when it was served as a temperature sensor. This study provides a guideline for fabricating flexible and biodegradable sensors. 展开更多
关键词 Ag nanowire Cellulose nanofibril NANOPAPER STRAIN Temperature sensor
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