Vibration damping capacity of deep cryogenic treated AISI 4140 steel shaft supported by rolling element bearings

被引:16
作者
Kam, Menderes [1 ]
Suruhan, Hamit [2 ]
机构
[1] Duzce Univ, Dr Engin PAK Cumayeri Vocat Sch, Dept Machinery & Met Technol, Duzce, Turkey
[2] Univ Duzce, Mech Engn, Duzce, Turkey
关键词
Deep cryogenic treatment; rotating shaft dynamics; rolling element bearing; vibration analysis; AISI; 4140;
D O I
10.1515/mt-2020-0118
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The main objective of the present study is to experimentally investigate and figure out the effect of deep cryogenic treatment in improving dynamic behaviors in terms of damping of a rotating shaft supported by rolling element bearings. An AISI 4140 steel for rotating shafts was selected for the experiments because it is the most widely used material in most industries for a wide range of applications such as machinery components, crankshafts, motor shafts, axle shafts, and railway locomotive traction motor shafts. Untreated, conventionally heat treated, deep cryogenic treated, and deep cryogenic treated and tempered shafts were used for the experiments to observe damping behavior changes of the shafts. Deep cryogenic treated and deep cryogenic treated and tempered shafts were cooled from pre-tempering temperature to -140 degrees C and held for tempering hold times of 12, 24, 36, and 48 hours. So, ten sets of shafts were employed for the experiment. The vibration data was captured for each of the shafts for five different shaft running speeds 600, 1200, 1800, 2400 and 3000 rpm. The results showed that damping ability of the deep cryogenic treated shaft at a hold time of 36 hours was superior to that of the others shafts.
引用
收藏
页码:742 / 747
页数:6
相关论文
共 15 条
[1]   Comparative investigation of the moth-flame algorithm and whale optimization algorithm for optimal spur gear design [J].
Abderazek, Hammoudi ;
Hamza, Ferhat ;
Yildiz, Ali Riza ;
Sait, Sadiq M. .
MATERIALS TESTING, 2021, 63 (03) :266-271
[2]  
Altan M, 2017, MATER TEST, V59, P239
[3]  
Amini K, 2017, METALL MATER ENG, V23, P1
[4]  
BALDISSERA P., 2008, The Open Mechanical Engineering Journal, V2, P1, DOI DOI 10.2174/1874155X00802010001
[5]   Numerical and experimental performance evaluation of an innovatively manufactured centrifugal pump [J].
Celen, Serap .
MATERIALS TESTING, 2019, 61 (02) :137-141
[6]  
Dumasia C.A., 2017, INT RES J ENG TECHNO, V4, P2402
[7]   Effects of induction hardened surface depth on the dynamic behavior of rotating shaft systems [J].
Kabasakaloglu, Ufuk ;
Saruhan, Hamit .
MATERIALS TESTING, 2019, 61 (03) :277-281
[8]  
Kam M., 2016, 3 INT S RAILWAY SYST, P157
[9]  
Kam M., 2016, P 3 INT S RAILW SYST, P142
[10]  
Kam M., 2016, J ADV TECHNOLOGY SCI, V5, P21