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材料导报  2021, Vol. 35 Issue (23): 23020-23024    https://doi.org/10.11896/cldb.21030293
  无机非金属及其复合材料 |
企业是新材料科技创新的主体
王镇, 肖丽俊
钢铁研究总院,北京 100081
Enterprise is the Mainstay of Advanced Material Science and Technology Innovation
WANG Zhen, XIAO Lijun
Central Iron & Steel Research Institute,Beijing 100081, China
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摘要 新材料是国民经济高质量发展的物质基础和建设现代化经济体系的战略支撑,是决定未来国家竞争力的战略性和基础性领域。重视和发挥企业在新材料自主创新中的主体作用,有利于引领重点产品不断更新换代,促进新兴产业持续转型升级;有利于及时应对国际国内新形势变化,提升新材料产业基础保障能力;有利于形成科技自立自强战略支撑,构建国际国内双循环发展格局。本文系统总结了国内新材料企业发展现状及其在科技创新中发挥的重要作用,梳理了新材料企业在原始创新及自主保障能力、创新机制及发展模式、科技创新发展环境等方面面临的问题及挑战。同时聚焦国家新材料发展战略需求,提出破解新材料产业发展瓶颈、构建新材料自主创新体系、支持新材料企业发展的路径及思路,并从产业结构调整、创新资源集聚及配置、科技创新引导等方面提出具体政策建议。
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王镇
肖丽俊
关键词:  新材料企业  自主创新  产业调整  资源配置    
Abstract: Advanced materials are the material basis for high-quality development of the national economy and the strategic support for the construction of a modernized economic system. It is a strategic and fundamental field that determines the future competitiveness of the country. Enterprises attach great importance to and play the mainstay role in independent innovation of advanced materials, which is instrumental in leading the continuous upgrading of key products, conducive to timely response to the international and domestic changes in the new situation and in favour of the formation of science and technology support and strategic support. This paper systematically summarizes the important role enterprises play in scientific and technological innovation, and sorts out the problems and challenges faced by advanced materials enterprises in the aspects of original innovation and independent guarantee ability as well as development mode and mechanism, scientific and technological innovation and development environment, etc. At the same time around the country and advanced material development strategy needs, methods of breaking advanced material industry development bottleneck, building advanced material independent innovation system, and finding the path of supporting the development of advanced material enterprises should be proposed. Suggestions from industrial structure adjustment, the agglomeration of innovation resources, configuration and specific policy measures are put forward.
Key words:  advanced material enterprise    independent innovation    adjust industry structure    optimize the allocation of resources
出版日期:  2021-12-10      发布日期:  2021-12-23
ZTFLH:  TB3  
基金资助: 中国工程院“提升新材料产业基础能力战略研究”重大咨询项目(2019-ZD-31)
通讯作者:  wz2005101101@163.com   
作者简介:  王镇,2013年1月毕业于北京科技大学,获得材料科学与工程专业硕士学位。钢铁研究总院工程师,国家新材料产业专家咨询委员会秘书处成员,国家产业基础专家委员会秘书处成员。从事新材料等领域行业分析与战略研究工作,参与国家及地方规划咨询项目10余项。
引用本文:    
王镇, 肖丽俊. 企业是新材料科技创新的主体[J]. 材料导报, 2021, 35(23): 23020-23024.
WANG Zhen, XIAO Lijun. Enterprise is the Mainstay of Advanced Material Science and Technology Innovation. Materials Reports, 2021, 35(23): 23020-23024.
链接本文:  
http://www.mater-rep.com/CN/10.11896/cldb.21030293  或          http://www.mater-rep.com/CN/Y2021/V35/I23/23020
1 国家新材料产业发展专家咨询委员会, 干勇, 等. 中国新材料产业发展年度报告(2017), 冶金工业出版社, 2018.
2 干勇. 第四届中国创业创新博览会开幕大会, 2019.
3 The 16th Central Committee of the Communist Party of China. The People's Congress of China, 2005(20), 9.
中国共产党第十六届中央委员会. 中国人大, 2005(20), 9.
4 Xi J P. Chinese Industry & Economy, 2016(6), 4 (in Chinese).
习近平. 中国产经, 2016(6), 4.
5 习近平. 党的十九届五中全会《建议》学习辅导百问, 党建读物出版社, 2020.
6 Gan Y. Strategic Study of CAE, 2020, 22(5), 1 (in Chinese).
干勇. 中国工程科学, 2020, 22(5), 1.
7 China Advanced Semiconductor Industry Innovation Alliance. Advanced semiconductor industry development report. 2019 (in Chinese).
中国半导体产业创新战略联盟. 第三代半导体行业发展报告, 2019.
8 China Graphene Industry Technology Innovation Strategic Alliance. Global graphene industry research report, 2019 (in Chinese)
中国石墨烯产业技术创新战略联盟. 全球石墨烯产业研究报告,2019.
9 Wang B.(2019-10-23) [2021-03-29]. https://baijiahao.baidu.com/s?id=1648201125131065253&wfr=spider&for=pc.
10 王镇. 中国新材料产业发展报告, 化学工业出版社, 2018.
11 Shi Y P.(2017-12-04) [2021-03-29]. https://topics.gmw.cn/2017-11/24/content_27965066.htm.
12 MIIT. (2017-01-23) [2021-03-29]. https://www.miit.gov.cn/jgsj/zfs/qypy/art/2020/art_e7e7268839ec44378a517a1434f9ed09.html.
13 MIIT. (2017-12-18) [2021-03-29]. https://www.miit.gov.cn/zwgk/zcwj/wjfb/tg/art/2020/art_b3fccc6b76624c578a53bf12fac2ce14.html.
14 MIIT. (2018-11-09) [2021-03-29]. https://www.miit.gov.cn/zwgk/zcwj/wjfb/tg/art/2020/art_e1e84c9948674c238f64b64161a46d8d.html.
15 MIIT. (2019-11-27) [2021-03-29]. https://www.miit.gov.cn/jgsj/zfs/wjfb/art/2020/art_dc68d58ae7754fa4b6b5f60c67a2b341.html.
16 Gan Y. Improve the basic capacity and promote the high-quality development of the advanced material industry. Technical Report, Central Iron & Steel Research Institute, China, 2019 (in Chinese)
干勇. 提升新材料产业基础能力, 推动新材料产业高质量发展. 研究报告, 钢铁研究总院, 2020.
17 Gan Y. China Industry & Information Technology, 2016(10), 52.
干勇. 中国工业评论, 2016(10), 52.
18 干勇. 制造业强国新材料发展战略. 研究报告, 国际新材料科技发展论坛(哈尔滨), 2019.
19 Gan Y. Science & Technology Industry of China, 2019(1), 14 (in Chinese).
干勇. 中国科技产业, 2019(1), 14.
20 Gan Y. Science & Technology Industry of China, 2018(1), 50 (in Chinese).
干勇. 中国科技产业, 2018(1), 50.
21 曹国英. 新形势下对材料科技的几点思考. 研究报告, 中国新材料产业发展大会(南京), 2019.
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