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Finite element contact analysis of the hollow cylindrical roller bearings

Yıl 2024, Cilt: 42 Sayı: 1, 121 - 129, 27.02.2024

Öz

The Hollow Cylindrical Roller Bearings (HCRBs) have some important advantages over solid cylindrical roller bearings such as low weight, good lubrication capability and high bearing stiffness. Additionally, it’s also known that maximum contact stress value between the roller and race is less in hollow cylindrical roller bearings compared to solid cylindrical roller bear-ings. In this paper, the effect of roller’s hollow size in Hollow Cylindrical Roller Bearing under a radial load on the maximum contact stress value and contact stress distribution is studied by using finite element method. The maximum tangential tensile stress occurring on the inner surface of the hollow roller is also investigated. Moreover, the effect of the penetration amount, which is a critical parameter for a nonlinear contact problem such as roller-race contact, on the contact stress is taken into consideration, as well. It’s seen from the results that tangential tensile stress on the inner surface of the hollow roller has an effect on the value of optimum hollow size. Besides, it is deduced from results that the penetration amount between the con-tacting surfaces have considerable influence on the contact stresses and it should be taken into consideration when analyzing the roller-race contact problem by using finite element method.

Kaynakça

  • REFERENCES
  • [1] Darji PH, Vakharia DP. Fatigue failure analysis of hollow cylindrical roller Bearing. Int J Adv Eng Sci 2011;1:22–26.
  • [2] Bamberger EN, Parker RJ, Dietrich MW. Flexural fatigue of hollow rolling elements. Cleveland, Ohio: 1976.
  • [3] Han C, Yu C, Li Y, Yan J, Zhang J. Mechanical performance analysis of hollow cylindrical roller bearing of cone bit by FEM. Petroleum 2015;1:388–396. [CrossRef]
  • [4] Darji PH, Vakharia DP. Development of Graphical Solution to Determine Optimum Hollowness of Hollow Cylindrical Roller Bearing Using Elastic Finite Element Analysis. Finite Element Analysis - Applications in Mechanical Engineering. London: InTechopen; 2012. [CrossRef]
  • [5] Abu Jadayil WM. Relative fatigue life estimation of cylindrical hollow rollers in general pure rolling contact. Tribo Test 2008;14:27–42. [CrossRef]
  • [6] Ioannides E, Harris TA. A new fatigue life model for rolling bearings. J Tribol 1985;107:367–377. [CrossRef]
  • [7] Darji PH, Vakharia DP. Determination of Optimum Hollowness for Hollow Cylindrical Rolling Element Bearing. Boston, Massachusetts: ASME International Mechanical Engineering Congress and Exposition; 2008, p. 1–3. [CrossRef]
  • [8] Bowen WL, Bhateja CP. The hollow roller bearing. J Lubr Technol 1980;102:222–227. [CrossRef]
  • [9] Liu Y, Guan T, Wei Y. Stiffness analysis of Pre-loaded Hollow Cylindrical Roller Bearings Based on ABAQUS. ICENT 2010 - 2010 International Conference on Educational and Network Technology, 2010, p. 438–440.
  • [10] Yao Q-S, Yang W, Yu D-J, Yu J. Bending stress of rolling element in elastic composite cylindrical roller bearing. J Cent South Univ 2013;20:3437–3444. [CrossRef]
  • [11] Qishui Y, Wen Y, Chao L, Jianghong Y. A Design method for a new type of cylindrical roller bearing based on edge effect. Open Mech Eng J 2016;10:98–108. [CrossRef]
  • [12] Zhu P, Zheng T, Hu T, Hu J, Zhang J. Contact mechanics response of composite cylindrical roller bearings based on FEM. J Fail Anal Prev 2021;21:499–506. [CrossRef]
  • [13] Solanki MT, Vakharia DP. Current investigation in layered cylindrical hollow roller bearing using elastic finite element analysis. Mater Today Proc 2017;4:10020–10024. [CrossRef]
  • [14] Harris TA, Aaronson SF. An analytical ınvestigation of cylindrical roller bearings having annular rollers. ASLE Trans 1967;10:235–242. [CrossRef]
  • [15] Liu J, Shao Y. An analytical dynamic model of a hollow cylindrical roller bearing. J Tribol 2018;140. [CrossRef]
  • [16] Madoliat R, Ghanati MF. Theoretical and experimental study of spindle ball bearing nonlinear stiffness. J Mech 2013;29:633–642. [CrossRef]
  • [17] Liu JY. The Effect of Misalignment on the life of high speed cylindrical roller bearings. J Lubr Tech 1971;93:60–68. [CrossRef]
  • [18] SKF. Rolling bearings PUB BU/P1 17000/1 EN. 2018.
  • [19] Harris TA. Rolling Bearing Analysis. 4th ed. New York: John Wiley & Sons Inc; 2001.
  • [20] Guo YB, Liu CR. Mechanical properties of hardened AISI 52100 steel in hard machining processes. J Manuf Sci Eng 2002;124:1–9. [CrossRef]
  • [21] Johnson KL. Contact Mechanics. Cambridge: Cambridge University Press; 1985.
Yıl 2024, Cilt: 42 Sayı: 1, 121 - 129, 27.02.2024

Öz

Kaynakça

  • REFERENCES
  • [1] Darji PH, Vakharia DP. Fatigue failure analysis of hollow cylindrical roller Bearing. Int J Adv Eng Sci 2011;1:22–26.
  • [2] Bamberger EN, Parker RJ, Dietrich MW. Flexural fatigue of hollow rolling elements. Cleveland, Ohio: 1976.
  • [3] Han C, Yu C, Li Y, Yan J, Zhang J. Mechanical performance analysis of hollow cylindrical roller bearing of cone bit by FEM. Petroleum 2015;1:388–396. [CrossRef]
  • [4] Darji PH, Vakharia DP. Development of Graphical Solution to Determine Optimum Hollowness of Hollow Cylindrical Roller Bearing Using Elastic Finite Element Analysis. Finite Element Analysis - Applications in Mechanical Engineering. London: InTechopen; 2012. [CrossRef]
  • [5] Abu Jadayil WM. Relative fatigue life estimation of cylindrical hollow rollers in general pure rolling contact. Tribo Test 2008;14:27–42. [CrossRef]
  • [6] Ioannides E, Harris TA. A new fatigue life model for rolling bearings. J Tribol 1985;107:367–377. [CrossRef]
  • [7] Darji PH, Vakharia DP. Determination of Optimum Hollowness for Hollow Cylindrical Rolling Element Bearing. Boston, Massachusetts: ASME International Mechanical Engineering Congress and Exposition; 2008, p. 1–3. [CrossRef]
  • [8] Bowen WL, Bhateja CP. The hollow roller bearing. J Lubr Technol 1980;102:222–227. [CrossRef]
  • [9] Liu Y, Guan T, Wei Y. Stiffness analysis of Pre-loaded Hollow Cylindrical Roller Bearings Based on ABAQUS. ICENT 2010 - 2010 International Conference on Educational and Network Technology, 2010, p. 438–440.
  • [10] Yao Q-S, Yang W, Yu D-J, Yu J. Bending stress of rolling element in elastic composite cylindrical roller bearing. J Cent South Univ 2013;20:3437–3444. [CrossRef]
  • [11] Qishui Y, Wen Y, Chao L, Jianghong Y. A Design method for a new type of cylindrical roller bearing based on edge effect. Open Mech Eng J 2016;10:98–108. [CrossRef]
  • [12] Zhu P, Zheng T, Hu T, Hu J, Zhang J. Contact mechanics response of composite cylindrical roller bearings based on FEM. J Fail Anal Prev 2021;21:499–506. [CrossRef]
  • [13] Solanki MT, Vakharia DP. Current investigation in layered cylindrical hollow roller bearing using elastic finite element analysis. Mater Today Proc 2017;4:10020–10024. [CrossRef]
  • [14] Harris TA, Aaronson SF. An analytical ınvestigation of cylindrical roller bearings having annular rollers. ASLE Trans 1967;10:235–242. [CrossRef]
  • [15] Liu J, Shao Y. An analytical dynamic model of a hollow cylindrical roller bearing. J Tribol 2018;140. [CrossRef]
  • [16] Madoliat R, Ghanati MF. Theoretical and experimental study of spindle ball bearing nonlinear stiffness. J Mech 2013;29:633–642. [CrossRef]
  • [17] Liu JY. The Effect of Misalignment on the life of high speed cylindrical roller bearings. J Lubr Tech 1971;93:60–68. [CrossRef]
  • [18] SKF. Rolling bearings PUB BU/P1 17000/1 EN. 2018.
  • [19] Harris TA. Rolling Bearing Analysis. 4th ed. New York: John Wiley & Sons Inc; 2001.
  • [20] Guo YB, Liu CR. Mechanical properties of hardened AISI 52100 steel in hard machining processes. J Manuf Sci Eng 2002;124:1–9. [CrossRef]
  • [21] Johnson KL. Contact Mechanics. Cambridge: Cambridge University Press; 1985.
Toplam 22 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Biyokimya ve Hücre Biyolojisi (Diğer)
Bölüm Research Articles
Yazarlar

Ramazan Bayrak Bu kişi benim 0000-0001-6269-0834

Ahmet Sağırlı Bu kişi benim 0000-0002-8840-8048

Yayımlanma Tarihi 27 Şubat 2024
Gönderilme Tarihi 19 Ekim 2023
Kabul Tarihi 7 Aralık 2023
Yayımlandığı Sayı Yıl 2024 Cilt: 42 Sayı: 1

Kaynak Göster

Vancouver Bayrak R, Sağırlı A. Finite element contact analysis of the hollow cylindrical roller bearings. SIGMA. 2024;42(1):121-9.

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