版权说明 操作指南
首页 > 成果 > 详情

BPNN用于含氮、硫杂环润滑油添加剂抗磨性能的定量构效关系研究

认领
导出
Link by 中国知网学术期刊 Link by 万方学术期刊
反馈
分享
QQ微信 微博
成果类型:
期刊论文
作者:
王婷婷;戴康;王展;彭浩;高新蕾
通讯作者:
Gao, Xinlei(gaoxl0131@163.com)
作者机构:
[王婷婷; 高新蕾] College of Chemical and Environmental Engineering, Wuhan Polytechnic University, Wuhan, Hubei, 430023, China
[彭浩] Key Laboratory of Pesticides and Chemical Biology, Central China Normal University, Wuhan, Hubei, 430079, China
[王展] College of Food Science and Engineering, Wuhan Polytechnic University, Wuhan, Hubei, 430023, China
[戴康] College of Pharmacy, South-Central University for Nationalities, Wuhan, Hubei, 430074, China
通讯机构:
College of Chemical and Environmental Engineering, Wuhan Polytechnic University, Wuhan, Hubei, China
语种:
中文
关键词:
摩擦学定量构效关系;反向传播神经网络;润滑油添加剂;抗磨性能
关键词(英文):
Antiwear performance;Back propagation neural network;Lubricant additives;Quantitative structure tribo-ability relationship
期刊:
摩擦学学报
ISSN:
1004-0595
年:
2017
卷:
37
期:
4
页码:
495-500
基金类别:
国家自然科学基金项目(51675395) 国家重点基础研究发展计划项目(973)(2013CB632300)资助
机构署名:
本校为第一且通讯机构
院系归属:
食品科学与工程学院
化学与环境工程学院
摘要:
采用反向传播神经网络法(Back Propagation Neural Network,简称:BPNN)对31种含氮、硫的2-烷基黄原酸酯类润滑油添加剂的抗磨性能进行了摩擦学定量构效关系(Quantitative Structure Tribo-ability Relationship,简称: QSTR)的研究,得到了具有良好的稳定性和预测能力的BPNN-QSTR模型(R~2=0.998 4,R~2(LOO)=0.695 9,q~2=0.879 1).参考输入层的12种2D和3D结构描述符的敏感度,对影响抗磨性能的分子结构进行了相应的探讨.结果表明:分子中的N和S杂原子对其抗磨损性能有显著的影响;同时,分子长度、所含双键S原子和芳香环数量以及分子支化程度等都是影响抗磨性能的主要因素.
摘要(英文):
Quantitative structure tribo-ability relationship (QSTR) was studied by back propagation neural network (BPNN) method for 31 kinds of N/S-containing heterocyclic lubricant additives. The BPNN-QSTR model exhibits good accuracy and predictability (R2=0.998 4, R2(LOO)=0.695 9, q2=0.879 1). Considering the sensitivities of 13 kinds of 2D and 3D structural descriptors included in BPNN inputs, the effects of each descriptor on antiwear performance were discussed. The results show that N and S heteroatoms had significant impacts on the antiwear performance. In addition, the antiwear performance was a...

反馈

验证码:
看不清楚,换一个
确定
取消

成果认领

标题:
用户 作者 通讯作者
请选择
请选择
确定
取消

提示

该栏目需要登录且有访问权限才可以访问

如果您有访问权限,请直接 登录访问

如果您没有访问权限,请联系管理员申请开通

管理员联系邮箱:yun@hnwdkj.com