Page 98 - 《橡塑技术与装备》2024年10期
P. 98
橡塑技术与装备 CHINA RUBBER/PLASTICS TECHNOLOGY AND EQUIPMENT
and Engineering Aspects, 2023, 665:131 222. [21] YANG G, WANG M, DONG J, et al. Fibers - induced
[17] MANI D, VU MC, LIM CS, et al. Stretching induced segregated-like structure for polymer composites achieving
alignment of graphene nanoplatelets in polyurethane e xc e l l e nt t he rm a l c onduc t i vi t y a nd e l e c t rom a gne t i c
films for superior in-plane thermal conductivity and interference shielding efficiency[J]. Composites Part B,
electromagnetic interference shielding[J]. Carbon, 2023, 2022, 246:110 253.
201:568-576. [22] KIM D, LEE Y, AHN K, et al. Interconnected network of
[18] WU B, ZHU H, YANG Y, et al. Hierarchically Flexible Ag and Cu in bioplastics for ultrahigh electromagnetic
Polyamide Composite Films for Thermal Management and interference shielding efficiency with high thermal
Electromagnetic Shielding[J]. ACS Applied Engineering conductivity[J]. Composites Communications, 2022, 30:101
Materials, 2023, 1:568-576. 093.
[19] WANG W, MA X, SHAO Y, et al. Flexible, multifunctional, [23] ZHANG P, DING X, WANG Y, et al. Low-Melting-Point
and thermally conductive nylon/graphene nanoplatelet Alloy Continuous Network Construction in a Polymer
composite papers with excellent EMI shielding performance, Matrix for Thermal Conductivity and Electromagnetic
improved hydrophobicity and flame resistance[J]. Journal of Shielding Enhancement[J]. ACS Applied Polymer Materials,
Materials Chemistry A, 2021, 9(8):5 033-5 044. 2019, 1(8):2006-2014.
[20] 何青霞 . 高导热、电磁屏蔽聚亚苯基砜复合材料的制备与性能 [24] 张萍 . 聚合物基电子封装材料的结构设计与导热电磁屏蔽性能
研究 [D]. 吉林大学,2021. 研究 [D]. 中国科学技术大学,2022.
Research progress on thermal conductive plastics with electromagnetic
shielding effectiveness
1
2
1
1
Xie Zhuoli , Liao Wenquan , Lao Zhichao , Han Shuntao , Ma Xiuqing 1*
(1.Department of Mechanical and Electrical Engineering, Beijing University of Chemical Technology, Beijing
100029, China;
2. China Nuclear Power Engineering Co. LTD., Beijing 100840, China)
Abstract: With the continuous development of chips, thermal conductive plastics with electromagnetic
shielding effectiveness have attracted much attention. This article briefly describes the principles of
electromagnetic shielding and thermal conductivity, and summarizes the research progress of MXene based,
carbon based, and metal based filler modified thermal conductive plastics with electromagnetic shielding
effectiveness.
Key words: electromagnetic shielding; heat conduction; filler; modification
(R-03)
51 亿轮胎工厂,配套项目开工!
The supporting project of the 5.1 billion tire factory has started!
近日,山东优越橡胶智慧仓储物流基地项目开工仪式,在诸城高新区举行。该项目是优越橡胶年产 1 200 万
套超高性能环保乘用车轮胎和年产 300 万套绿色智能化载重轮胎项目的配套项目。
据了解,优越轮胎生产项目占地 933 亩,总投资 51.6 亿元,分两期建设。一期项目全部达产后,可日产高
性能环保乘用车轮胎 4 万条,年产量 1 200 万条,年产值近 20 亿元,并解决 1 000 多人的就业问题。
目前,优越子午胎车间、硫化车间正在安装调试设备;检测车间钢结构骨架安装;变电站、实验中心开始建二层,
预计 10 月份投产。
摘编自 “ 中国轮胎商务网 ”
(R-03)
·50· 第 50 卷 第 10 期