DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESS

In order to obtain the cold roll-beating spline surface roughness processing parameter domain suitable for different working conditions. Based on the principle of cold roll-beating spline forming,carry out cold roll-beating spline surface roughness test,using the test results to construct a surface...

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Main Authors: LIU DongYa, WANG XiaoQiang, LIU Fei, CUI FengKui, ZHU QiPing, LIU ZhiFei
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2020-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.05.009
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author LIU DongYa
WANG XiaoQiang
LIU Fei
CUI FengKui
ZHU QiPing
LIU ZhiFei
author_facet LIU DongYa
WANG XiaoQiang
LIU Fei
CUI FengKui
ZHU QiPing
LIU ZhiFei
author_sort LIU DongYa
collection DOAJ
description In order to obtain the cold roll-beating spline surface roughness processing parameter domain suitable for different working conditions. Based on the principle of cold roll-beating spline forming,carry out cold roll-beating spline surface roughness test,using the test results to construct a surface prediction model for surface roughness response of cold roll-beating spline,using the analysis of variance,test sample test and comparison of experimental and predicted values,it is verified that the predictive model is feasible. Analyze the variation of the rotational speed of the rolling wheel,the feed rate of the workpiece and the surface roughness,the processing parameter domain of the surface roughness of the cold roll-beating spline is determined based on the surface roughness accuracy level comparison table. The results show: The rotational speed of the rolling wheel is 976 r/min ~ 2936 r/min,and the workpiece feed rate is in the range of 7 mm/min ~ 56 mm/min,with the gradual increase of the rotational speed of the rolling wheel and the feed rate of the workpiece,the surface roughness shows a trend of decreasing first and then increasing. Five sets of processing parameters were randomly extracted from the processing parameter fields corresponding to each accuracy level,and the maximum relative error between the surface roughness test value and the predicted value was 2. 75 %.Therefore,it is shown that the determined cold roll-beating spline surface roughness processing parameter domain is accurate and reliable. The research results have important application value and certain theoretical guiding significance for controlling the surface roughness of cold roll-beating spline.
format Article
id doaj-art-19a31ca8170b4c409cf79e6c972594c7
institution Kabale University
issn 1001-9669
language zho
publishDate 2020-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-19a31ca8170b4c409cf79e6c972594c72025-01-15T02:27:12ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692020-01-01421074108030608967DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESSLIU DongYaWANG XiaoQiangLIU FeiCUI FengKuiZHU QiPingLIU ZhiFeiIn order to obtain the cold roll-beating spline surface roughness processing parameter domain suitable for different working conditions. Based on the principle of cold roll-beating spline forming,carry out cold roll-beating spline surface roughness test,using the test results to construct a surface prediction model for surface roughness response of cold roll-beating spline,using the analysis of variance,test sample test and comparison of experimental and predicted values,it is verified that the predictive model is feasible. Analyze the variation of the rotational speed of the rolling wheel,the feed rate of the workpiece and the surface roughness,the processing parameter domain of the surface roughness of the cold roll-beating spline is determined based on the surface roughness accuracy level comparison table. The results show: The rotational speed of the rolling wheel is 976 r/min ~ 2936 r/min,and the workpiece feed rate is in the range of 7 mm/min ~ 56 mm/min,with the gradual increase of the rotational speed of the rolling wheel and the feed rate of the workpiece,the surface roughness shows a trend of decreasing first and then increasing. Five sets of processing parameters were randomly extracted from the processing parameter fields corresponding to each accuracy level,and the maximum relative error between the surface roughness test value and the predicted value was 2. 75 %.Therefore,it is shown that the determined cold roll-beating spline surface roughness processing parameter domain is accurate and reliable. The research results have important application value and certain theoretical guiding significance for controlling the surface roughness of cold roll-beating spline.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.05.009Spline of cold roll-beatingSurface roughnessPredictive modelProcessing parameter field
spellingShingle LIU DongYa
WANG XiaoQiang
LIU Fei
CUI FengKui
ZHU QiPing
LIU ZhiFei
DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESS
Jixie qiangdu
Spline of cold roll-beating
Surface roughness
Predictive model
Processing parameter field
title DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESS
title_full DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESS
title_fullStr DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESS
title_full_unstemmed DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESS
title_short DETERMINATION OF MACHINING PARAMETERS OF COLD ROLL-BEATING SPLINE SURFACE ROUGHNESS
title_sort determination of machining parameters of cold roll beating spline surface roughness
topic Spline of cold roll-beating
Surface roughness
Predictive model
Processing parameter field
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.05.009
work_keys_str_mv AT liudongya determinationofmachiningparametersofcoldrollbeatingsplinesurfaceroughness
AT wangxiaoqiang determinationofmachiningparametersofcoldrollbeatingsplinesurfaceroughness
AT liufei determinationofmachiningparametersofcoldrollbeatingsplinesurfaceroughness
AT cuifengkui determinationofmachiningparametersofcoldrollbeatingsplinesurfaceroughness
AT zhuqiping determinationofmachiningparametersofcoldrollbeatingsplinesurfaceroughness
AT liuzhifei determinationofmachiningparametersofcoldrollbeatingsplinesurfaceroughness