磨粒有序化砂轮磨削微沟槽减阻表面的研究

TG74%TG58; 为研究砂轮磨粒排布样式对磨削结构化沟槽表面的影响,使用叶序、错位和阵列3种磨粒有序化排布的砂轮磨削工件平面.首先,建立3种有序化排布的数学模型;其次,根据结构化沟槽表面减阻的特性参数,设计砂轮磨削参数,并使用MATLAB软件进行磨削运动仿真,将仿真结果与理论计算值进行比较;最后,使用磨削试验验证数学模型与仿真结果的可靠性.结果表明:3种磨粒排布有序化的砂轮均能磨削出微沟槽表面,此时相邻两行磨粒的轴向间距分别为0.04mm(叶序排布)、0.40mm(错位排布)和0.80mm(阵列排布),对应的磨削深度均为0.050 0 mm;磨粒阵列和错位排布的砂轮磨削出的沟槽表面更加稳定...

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Published in金刚石与磨料磨具工程 Vol. 42; no. 6; pp. 738 - 744
Main Authors 王俊博, 吕玉山, 慕丽, 李兴山
Format Journal Article
LanguageChinese
Published 沈阳理工大学机械工程系,沈阳110159 01.12.2022
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ISSN1006-852X
DOI10.13394/j.cnki.jgszz.2022.0031

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Abstract TG74%TG58; 为研究砂轮磨粒排布样式对磨削结构化沟槽表面的影响,使用叶序、错位和阵列3种磨粒有序化排布的砂轮磨削工件平面.首先,建立3种有序化排布的数学模型;其次,根据结构化沟槽表面减阻的特性参数,设计砂轮磨削参数,并使用MATLAB软件进行磨削运动仿真,将仿真结果与理论计算值进行比较;最后,使用磨削试验验证数学模型与仿真结果的可靠性.结果表明:3种磨粒排布有序化的砂轮均能磨削出微沟槽表面,此时相邻两行磨粒的轴向间距分别为0.04mm(叶序排布)、0.40mm(错位排布)和0.80mm(阵列排布),对应的磨削深度均为0.050 0 mm;磨粒阵列和错位排布的砂轮磨削出的沟槽表面更加稳定,但沟槽的参数比未能达到0.200~1.000的要求;磨粒叶序排布的砂轮加工出的沟槽,能满足表面减阻特性的要求.
AbstractList TG74%TG58; 为研究砂轮磨粒排布样式对磨削结构化沟槽表面的影响,使用叶序、错位和阵列3种磨粒有序化排布的砂轮磨削工件平面.首先,建立3种有序化排布的数学模型;其次,根据结构化沟槽表面减阻的特性参数,设计砂轮磨削参数,并使用MATLAB软件进行磨削运动仿真,将仿真结果与理论计算值进行比较;最后,使用磨削试验验证数学模型与仿真结果的可靠性.结果表明:3种磨粒排布有序化的砂轮均能磨削出微沟槽表面,此时相邻两行磨粒的轴向间距分别为0.04mm(叶序排布)、0.40mm(错位排布)和0.80mm(阵列排布),对应的磨削深度均为0.050 0 mm;磨粒阵列和错位排布的砂轮磨削出的沟槽表面更加稳定,但沟槽的参数比未能达到0.200~1.000的要求;磨粒叶序排布的砂轮加工出的沟槽,能满足表面减阻特性的要求.
Author 王俊博
吕玉山
慕丽
李兴山
AuthorAffiliation 沈阳理工大学机械工程系,沈阳110159
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WANG Junbo
LYU Yushan
LI Xingshan
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磨粒有序排布
结构化沟槽表面
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Title 磨粒有序化砂轮磨削微沟槽减阻表面的研究
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