文章摘要
碳填料/天然橡胶复合材料热导率及层间接触热阻对微波加热效果的影响
Influence of Thermal Conductivities and Interlayer Contact Thermal Resistances of Carbon Filler/NR Composites on Microwave Heating Effect
投稿时间:2022-03-09  修订日期:2022-03-09
DOI:10.12136/j.issn.1000-890X.2024.04.0287
中文关键词: 碳填料:天然橡胶  微波加热  热导率  层间接触热阻  温度分布
英文关键词: carbon filler  NR  microwave heating  thermal conductivity  interlayer contact thermal resistance  temperature distribution
基金项目:山东省自然科学基金资助项目(ZR2019BEE022,ZR2019MEE030)
作者单位E-mail
徐钰东 青岛科技大学 xyd15621007430@163.com 
穆柄榛 青岛科技大学  
刘梦琪 青岛科技大学  
陈海龙* 青岛科技大学 chlqust@163.com 
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中文摘要:
      制备炭黑/天然橡胶(NR)、石墨烯/NR和碳纳米管/NR复合材料,采用试验与数值模拟相结合的方法研究复合材料热导率和层间接触热阻对微波加热的影响。结果表明:炭黑、石墨烯和碳纳米管自身热导率越大,复合材料的热导率越大,层间接触热阻越小;通过增大填料用量来增大复合材料的热导率和减小层间接触热阻具有一定的局限性,需考虑复合材料的配方设计适用性和经济性;复合材料的热导率对微波加热过程中高、低温区域分布规律和微波加热效率基本无影响,但影响复合材料的温度分布均匀性。为保证微波加热硫化均匀性,多层复合材料的层间接触热阻不可忽略。
英文摘要:
      Carbon black/natural rubber(NR),graphene/NR and carbon nanotubes/NR composites were prepared,and the effects of the thermal conductivities and interlayer contact resistances of the composites on microwave heating were studied by combining experimental and numerical simulation methods.The results show that the higher the thermal conductivities of carbon black,graphene and carbon nanotubes were,the higher the thermal conductivities of the composites were,and the lower the interlayer contact thermal resistances were.Increasing the filler amounts to increase the thermal conductivities of the composites and reduce the interlayer contact thermal resistances had certain limitations,and the applicability and economy of the composite formulation design needed to be considered.The thermal conductivities of the composites had little effect on the distribution patterns of high and low temperature regions and microwave heating efficiencies during the microwave heating process,however,the temperature distribution uniformities of the composites were significantly affected by the thermal conductivities.In order to ensure the uniformity of microwave heating vulcanization,the interlayer contact thermal resistances of multilayer composites could not be ignored.
Author NameAffiliationE-mail
XU Yudong Qingdao University of Science and Technology xyd15621007430@163.com 
MU Bingzhen Qingdao University of Science and Technology  
LIU Mengqi Qingdao University of Science and Technology  
CHEN Hailong Qingdao University of Science and Technology chlqust@163.com 
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