文章摘要
轮胎直压硫化内模温度的均匀性试验研究
Experimental Study on Temperature Uniformity of Direct Pressure Vulcanization Inner Mold of Tire
投稿时间:2022-02-13  修订日期:2022-02-13
DOI:10.12136/j.issn.1000-890X.2023.06.0456
中文关键词: 直压硫化内模  电磁感应加热  导磁体  布线方式  绕组间隙  温度场
英文关键词: direct pressure vulcanization inner mold  electromagnetic induction heating  wire distribution mode  coil winding group interval  temperature field
基金项目:中央高校基本科研业务费专项资金资助项目(JD2215);山东省重点研发计划(重大科技创新工程)项目(2019JZZY010450)
作者单位E-mail
焦志伟* 北京化工大学
轮胎设计与制造工艺国家工程实验室 
jiaozw@126.com 
孙嘉乐 北京化工大学
轮胎设计与制造工艺国家工程实验室 
 
张金云 轮胎设计与制造工艺国家工程实验室
三角轮胎股份有限公司 
 
王 雷 北京化工大学
轮胎设计与制造工艺国家工程实验室 
 
于 源 北京化工大学
轮胎设计与制造工艺国家工程实验室 
 
阎 华 北京化工大学
轮胎设计与制造工艺国家工程实验室 
 
杨卫民 北京化工大学
轮胎设计与制造工艺国家工程实验室 
 
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中文摘要:
      研究电磁感应加热线圈的布线方式和绕组间隙对轮胎直压硫化内模电磁感应加热均匀性的影响。结果表明:电磁感应加热线圈的布线方式会对鼓瓦表面的温度场产生影响,2段式绕组电磁感应加热线圈的电磁感应加热均匀性最好;绕组间隙的变动会对鼓瓦表面的温度场产生巨大的影响,当绕组间隙为50 mm时,电磁感应加热线圈的电磁感应加热均匀性最好。
英文摘要:
      The effect of the wire distribution modes and coil winding group intervals of the electromagnetic induction heating coils on the electromagnetic induction heating uniformity of the direct pressure vulcanization inner mold of tire was studied. The results showed that the wire distribution modes of the electromagnetic induction heating coils could affect the temperature field on the surface of the drum pad, and the electromagnetic induction heating coils with the 2-section winding groups provided the best heating uniformity. In addition,the change of the intervals between coil winding groups would have a huge impact on the temperature field on the surface of the drum pad. It was found that,when the coil winding group interval was 50 mm,the electromagnetic induction heating coils had the best heating uniformity.
Author NameAffiliationE-mail
JIAO Zhiwei Beijing University of Chemical Technology
National Engineering Laboratory of Tire Design and Manufacturing Technology 
jiaozw@126.com 
SUN Jiale Beijing University of Chemical Technology
National Engineering Laboratory of Tire Design and Manufacturing Technology 
 
ZHANG Jinyun National Engineering Laboratory of Tire Design and Manufacturing Technology
Triangle Tire Co.Ltd. 
 
WANG Lei Beijing University of Chemical Technology
National Engineering Laboratory of Tire Design and Manufacturing Technology 
 
YU Yuan Beijing University of Chemical Technology
National Engineering Laboratory of Tire Design and Manufacturing Technology 
 
YU Yuan Beijing University of Chemical Technology
National Engineering Laboratory of Tire Design and Manufacturing Technology 
 
YANG Weimin Beijing University of Chemical Technology
National Engineering Laboratory of Tire Design and Manufacturing Technology 
 
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