600/50R22.5农田/公路两用型全钢农业子午线轮胎的设计  被引量:1

Design on 600/50R22.5 All-steel Agricultural Radial Tire for Farmland and Highway

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作  者:梁孟珠 陈志高 贺李萍 赵秀巧 张敬[1] 王彩红[1] 李静[1] 岳爽[1] LIANG Mengzhu;CHEN Zhigao;HE Liping;ZHAO Xiuqiao;ZHANG Jing;WANG Caihong;LI Jing;YUE Shuang(Aeolus Tyre Co.,Ltd,Jiaozuo 454003,China;Shanghai Michelin Tire Co.,Ltd(PC),Shanghai 201111,China;Pirelli Tyre(Jiaozuo)Co.,Ltd,Jiaozuo 454003,China)

机构地区:[1]风神轮胎股份有限公司,河南焦作454003 [2]上海米其林轮胎有限公司,上海201111 [3]倍耐力轮胎(焦作)有限公司,河南焦作454003

出  处:《橡胶科技》2023年第6期301-304,共4页Rubber Science and Technology

摘  要:介绍600/50R22.5农田/公路两用型全钢农业子午线轮胎的设计。结构设计:外直径1172 mm,断面宽620 mm,行驶面宽度575 mm,行驶面弧度高18 mm,胎圈着合直径572 mm,胎圈着合宽度515 mm,断面水平轴位置(H_(1)/H_(2))0.94,胎面采用以横沟为主的横纵混合花纹沟,花纹深度18 mm,花纹周节数34,花纹饱和度53.4%。施工设计:胎面采用单层设计,胎体采用0.25+6+12×0.225HT钢丝帘线,3层带束层均采用3+8×0.33HT钢丝帘线,采用一次法成型机成型、活络模硫化机硫化。成品性能试验结果表明,成品轮胎的充气外缘尺寸、耐久性能和高速性能均达到国家标准及相应设计要求。The design on 600/50R22.5 all-steel agricultural radial tire for farmland and highway was introduced.In the structure design,the following parameters were taken:overall diameter 1172 mm,cross-section width 620 mm,width of running surface 575 mm,arc height of running surface 18 mm,bead diameter at rim seat 572 mm,bead width at rim seat 515 mm,maximum width position of cross section(H_(1)/H_(2))0.94,using the horizontal and vertical mixed pattern grooves mainly composed of horizontal grooves for tread,pattern depth 18 mm,number of pattern pitches 34,and block/total ratio 53.4%.In the construction design,the following processes were taken:using single compound design for tread,using 0.25+6+12×0.225HT steel cord for carcass,3+8×0.33HT steel cord for all 3 layers of belts,using one-stage building machine to build tires and segmented mold curing press to cure tires.The test results of the finished tire showed that the inflation peripheral dimension,durability and high-speed performance of the finished tire met the requirements of national standard and corresponding design.

关 键 词:农田/公路两用型全钢农业子午线轮胎 结构设计 施工设计 成品轮胎性能 

分 类 号:U463.341.5[机械工程—车辆工程] U463.341.6[交通运输工程—载运工具运用工程]

 

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