Investigation of Influencing Parameters for Tribological Conditions in Dry Forming Processes

被引:0
作者
Jennifer Steiner
Marion Merklein
机构
[1] InstituteofManufacturingTechnology,Friedrich-Alexander-Universit?tErlangen-Nürnberg
关键词
Deep drawing; Tribology; Friction; Dry forming;
D O I
暂无
中图分类号
TG386 [冷冲压工艺];
学科分类号
080201 ; 080503 ;
摘要
Environmental awareness and a growing demand for efficient resource utilization encourage the realization of lubricant-free forming processes. A first step in accomplishing dry sheet metal forming is to gain knowledge about the changing tribological conditions and to identify the relevant influencing parameters. The commonly used flat strip drawing test was selected to investigate the tribological conditions in the flange area of deep drawing processes. The influencing factors of contact pressure and varying drawing velocities were analyzed under dry and lubricated conditions. Additionally,the tool and workpiece surfaces were characterized. Besides lubrication, the contact pressure mainly determines the tribological conditions. In lubricated tests higher normal pressure reduces friction, whereas without lubrication higher pressure results in slightly increasing friction. A changing drawing velocity affects the friction when lubricant is applied. In dry experiments, no influence of velocity was found. Results of surface characterization reveal adhesion as main wear mechanism under dry conditions. Based on the investigated influence of the process parameters, an increase in process understanding for dry forming operations is derived.
引用
收藏
页码:1435 / 1441
页数:7
相关论文
共 17 条
[1]   RES [P]. 
澳大利亚专利 :AU5679373A ,1974-12-12
[2]  
Factors influencing friction in steel sheet forming. Matuszak,Andrzej. Journal of Materials . 2000
[3]  
Superior light metals by texture engineering: Optimized aluminum and magnesium alloys for automotive applications[J] . J. Hirsch,T. Al-Samman. &nbspActa Materialia . 2013 (3)
[4]  
F.Vollertsen,F.Schmidt. Int.J.Precis.Eng.Manuf.Green Technol . 2014
[5]  
Friction behavior evaluation of an EBT zinc-coated trip 700 steel sheet through flat friction tests[J] . J. Coello,V. Miguel,A. Martínez,F.J. Avellaneda,A. Calatayud. &nbspWear . 2013 (1-2)
[6]   Tribological properties of A356 Al-Si alloy composites under dry sliding conditions [J].
Vencl, Aleksandar ;
Bobic, Ilija ;
Stojanovic, Blaza .
INDUSTRIAL LUBRICATION AND TRIBOLOGY, 2014, 66 (01) :66-74
[7]  
Determination of friction law in dry metal forming with DLC coated tool[J] . Z.G. Wang,Y. Yoshikawa,T. Suzuki,K. Osakada. &nbspCIRP Annals - Manufacturing Technology . 2014
[8]  
Sliding Friction—Physical Principles and Applications. B.N.J.Persson. . 2000
[9]  
Umformtechnische Herstellung Komplexer Karosserieteile. A.Birkert,S.Haage,M.Straub. . 2013
[10]   TribologicalPropertiesofNanostructuredAl/Al12(Fe,V)3SiAlloys [J].
Hamid Ashrafi ;
Mohammad Hosein Enayati ;
Rahmatollah Emadi .
ActaMetallurgicaSinica(EnglishLetters), 2015, 28 (01) :83-92