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制造业比重保持基本稳定的机制和路径研究 被引量:4
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作者 胡俊 余泳泽 陈维宣 《产业经济评论》 CSSCI 2023年第1期16-29,共14页
“十四五”规划首次提出了“保持制造业比重基本稳定”,为我国制造业指明了在“十四五”及未来较长时期的发展方向。本文考察了二战后主要发达国家制造业比重演进特征,发现发达国家产业结构演变整体符合配第-克拉克定理,但工业化后期制... “十四五”规划首次提出了“保持制造业比重基本稳定”,为我国制造业指明了在“十四五”及未来较长时期的发展方向。本文考察了二战后主要发达国家制造业比重演进特征,发现发达国家产业结构演变整体符合配第-克拉克定理,但工业化后期制造业比重仍维持较高水平,德日韩等国家在人均GNI首次迈进高收入经济体门槛时,制造业比重保持在25%-28%区间。基于全球数据的实证分析也表明,较高的制造业占比构成了维持较高GDP增速和促进创新的重要动力。综合考虑,我国制造业比重维持在25%-35%区间是较为适宜的。总体来看,需求侧、供给侧、环境侧等多维度共同组成了推动制造业比重保持基本稳定的内在动力机制。基于此,本文从数字化、生态化、集群化、协同化、融合化等层面提出我国保持制造业比重基本稳定的推进路径。 展开更多
关键词 制造业比重 工业化 再工业化
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Fabrication of hierarchical polycaprolactone/gel scaffolds via combined 3D bioprinting and electrospinning for tissue engineering 被引量:2
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作者 yong-ze yu Lu-Lu Zheng +2 位作者 Hai-Ping Chen Wei-Hua Chen Qing-Xi Hu 《Advances in Manufacturing》 SCIE CAS 2014年第3期231-238,共8页
It is a severe challenge to construct 3D scaf- folds which hold controllable pore structure and similar morphology of the natural extracellular matrix (ECM). In this study, a compound technology is proposed by com- ... It is a severe challenge to construct 3D scaf- folds which hold controllable pore structure and similar morphology of the natural extracellular matrix (ECM). In this study, a compound technology is proposed by com- bining the 3D bioprinting and electrospinning process to fabricate 3D scaffolds, which are composed by orthogonal array gel microfibers in a grid-like arrangement and inter- calated by a nonwoven structure with randomly distributed polycaprolactone (PCL) nanofibers. Human adipose- derived stem cells (hASCs) are seeded on the hierarchical scaffold and cultured 21 d for in vitro study. The results of cells culturing show that the microfibers structure with controlled pores can allow the easy entrance of cells and the efficient diffusion of nutrients, and the nanofiber webs layered in the scaffold can significantly improve initial cell attachment and proliferation. The present work demon- strates that the hierarchical PCL/gel scaffolds consisting of controllable 3D architecture with interconnected pores and biomimetic nanofiber structures resembling the ECM can be designed and fabricated by the combination of 3D bioprinting and electrospinning to improve biological per- formance in tissue engineering applications. 展开更多
关键词 Hierarchical scaffold 3D bioprinting ELECTROSPINNING Tissue engineering
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Osteochondral Integrated Scaffolds with Gradient Structure by 3D Printing Forming 被引量:1
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作者 Wei-Hua Chen yuan-yuan Liu +3 位作者 Fu-Hua Zhang yong-ze yu Hai-Ping Chen Qing-Xi Hu 《International Journal of Automation and computing》 EI CSCD 2015年第2期220-228,共9页
Recently in the area of biological manufacturing and rapid prototyping manufacturing, the bone scaffolds based on the additive manufacturing in repairing bone defects have been paid more and more attention. In the pro... Recently in the area of biological manufacturing and rapid prototyping manufacturing, the bone scaffolds based on the additive manufacturing in repairing bone defects have been paid more and more attention. In the process of preparation, path planning directly affects the structure, performance as well as the final bone cell culture conditions. Due to the special natural bone scaffold structural characteristic, the traditional rapid prototyping(RP) path planning is not fully suitable for the preparation of bone scaffolds. In this paper, based on the 3D printing extrusion forming technology, a method of path planning for osteochondral integrated scaffolds with gradient structure is put forward, which provides a theoretical basis for bone-scaffold modeling and practical preparation. The implementation of the path planning processing system makes it possible to process data automatically from the initial stereo lithography(STL) model of the actual bone defect part by computer X-ray tomography technique(CT) scan or modeling,to generate the path code and to generate the final machining information after post-processing. This work provides some guidelines for independent research and development of automation equipment for biological manufacturing preparation and software technology.The experiment and test results have verified the validity of the path planning method and the good properties of the bone scaffolds with gradient structures. 展开更多
关键词 3D printing biological bone-scaffold path planning additive manufacturing tissue engineering.
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