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Erschienen in: The International Journal of Advanced Manufacturing Technology 1-2/2021

27.07.2021 | ORIGINAL ARTICLE

Prediction and experimental study on thermal stress in multi-tooth form grinding of cycloid gear

verfasst von: Jianxin Su, Hao Zhang, Chuang Jiang, Shaowu Nie

Erschienen in: The International Journal of Advanced Manufacturing Technology | Ausgabe 1-2/2021

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Abstract

Cycloid gear is an important transmission part of RV reducer of robot. Its surface mechanical properties significantly affect the precision and life of robot. During the forming and grinding process of the cycloid, the temperature gradient of the tooth surface changes greatly, resulting in residual stress, which is very important to the yield limit and service life of the cycloid. The thermal-mechanical coupling model of cycloid wheel grinding is established by using moving heat source method and load step loading method. The magnitude and direction of the first, second, and third principal stresses are obtained by calculating the Mises equivalent stress in the three-dimensional space of the grinding area. The temperature field and thermal stress of multi-tooth form grinding are simulated by finite element method, and the influence of grinding parameters on stress distribution is analyzed. The X-ray method is used to detect the residual stress of cycloid gear in form grinding, and the variation law of residual stress on the tooth surface under different process parameters is analyzed, and the change trend is basically consistent with the simulation results. The results show that the grinding process parameters can be optimized by theoretical calculation and finite element simulation, which can effectively reduce the residual tensile stress and increase the residual compressive stress. A method for predicting the residual stress of the cycloid gear form grinding is proposed, which provides a basis for the selection of the process parameters of the cycloid gear form grinding

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Literatur
1.
Zurück zum Zitat Hong LY, Jin HY, Xin H et al (2013) Study on teeth profile modification of cycloid reducer based on non-Hertz elastic contact analysis. Mech Res Commun 48:87–92CrossRef Hong LY, Jin HY, Xin H et al (2013) Study on teeth profile modification of cycloid reducer based on non-Hertz elastic contact analysis. Mech Res Commun 48:87–92CrossRef
2.
Zurück zum Zitat Garlo G (2013) Theoretical and expermental analysis of a cycloidal speed reducer. J Mech Des 130(8):604–612 Garlo G (2013) Theoretical and expermental analysis of a cycloidal speed reducer. J Mech Des 130(8):604–612
3.
Zurück zum Zitat Yii WH (2007) Determination of surface singularities of a cycloid gear drive with inner meshing. Math Comput Model 45:340–354CrossRef Yii WH (2007) Determination of surface singularities of a cycloid gear drive with inner meshing. Math Comput Model 45:340–354CrossRef
4.
Zurück zum Zitat Deng X, Zhang Y, Li T et al (2015) Present research situation and technological problem need to solve of the accuracy control of cycloid –pin gear transmission used on rv reducer. J Mech Trans 039(002):162–165 Deng X, Zhang Y, Li T et al (2015) Present research situation and technological problem need to solve of the accuracy control of cycloid –pin gear transmission used on rv reducer. J Mech Trans 039(002):162–165
5.
Zurück zum Zitat Hwed (2000) New optimized tooth-profile of cycloidal gear of high precision RV reducer used in robot. Chinese J Mech Eng 36(3):51–55CrossRef Hwed (2000) New optimized tooth-profile of cycloidal gear of high precision RV reducer used in robot. Chinese J Mech Eng 36(3):51–55CrossRef
6.
Zurück zum Zitat Qingxun K, Deng X, Jianxin S et al (2018) Study on the distribution of cycloid gear forming grinding temperature field. J Mech Trans 42(11):22–26 Qingxun K, Deng X, Jianxin S et al (2018) Study on the distribution of cycloid gear forming grinding temperature field. J Mech Trans 42(11):22–26
7.
Zurück zum Zitat Meng L, He N, Li L (2014) Calculation of residual stress induced by machining in internal surface of TC4 tubular parts and its FEA. China Mech Eng 25(19):2583–2587 Meng L, He N, Li L (2014) Calculation of residual stress induced by machining in internal surface of TC4 tubular parts and its FEA. China Mech Eng 25(19):2583–2587
8.
Zurück zum Zitat Manhong L, Wang K, Tianhe P et al (2014) Simulation research on grinding temperature field-residual stress field based on ANSYS. Tool Engineering 48(4):32–36 Manhong L, Wang K, Tianhe P et al (2014) Simulation research on grinding temperature field-residual stress field based on ANSYS. Tool Engineering 48(4):32–36
9.
Zurück zum Zitat Moulik PN, Yang HT (2001) Simulation of theamal stresses due to grinding. Int J Mech Sci 43(3):831–851CrossRef Moulik PN, Yang HT (2001) Simulation of theamal stresses due to grinding. Int J Mech Sci 43(3):831–851CrossRef
10.
Zurück zum Zitat Yi-jing NIU, Cong SUN, Gang PANG et al (2020) Effect of pre-stress time-characteristics on grinding strengthened surface stress. J Seu 041(004):546–550 Yi-jing NIU, Cong SUN, Gang PANG et al (2020) Effect of pre-stress time-characteristics on grinding strengthened surface stress. J Seu 041(004):546–550
11.
Zurück zum Zitat Wenbo ZHU, Kangshun LI, Huanhuan ZHU et al (2020) Grinding force model and experimental study of tapered roller ball base surfaces. China Mech Eng 031(006):679–687 Wenbo ZHU, Kangshun LI, Huanhuan ZHU et al (2020) Grinding force model and experimental study of tapered roller ball base surfaces. China Mech Eng 031(006):679–687
12.
Zurück zum Zitat Jun Y, Tan J, Deng Z et al (2020) Numerical simulation of transient temperature field and stress field in grinding of HVOF WC-10Co4Cr coating. Mech Sci Technol Aerosp Eng 039(003):438–445 Jun Y, Tan J, Deng Z et al (2020) Numerical simulation of transient temperature field and stress field in grinding of HVOF WC-10Co4Cr coating. Mech Sci Technol Aerosp Eng 039(003):438–445
13.
Zurück zum Zitat Wei QU (2017) Finite-element simulation and experiment on the residual strss when griding ultrafine cemented carbide. Mod Manuf Tech Equip 252(11):88–92 Wei QU (2017) Finite-element simulation and experiment on the residual strss when griding ultrafine cemented carbide. Mod Manuf Tech Equip 252(11):88–92
14.
Zurück zum Zitat Shah SM, Nelias D, Zain-UI-Abdein M et al (2012) Numerical simulation of grinding induced phase transformation and residual stresses in AISI-52100 steel. Finite Elem Anal Des 61:1–11CrossRef Shah SM, Nelias D, Zain-UI-Abdein M et al (2012) Numerical simulation of grinding induced phase transformation and residual stresses in AISI-52100 steel. Finite Elem Anal Des 61:1–11CrossRef
15.
Zurück zum Zitat Nguyen T, Zhang LC (2011) Realisation of grinding-hardening in workpieces of curved surfaces-Part 1:plunge cylindrical grinding. Int J Mach Tools Manuf 51(4):309–319CrossRef Nguyen T, Zhang LC (2011) Realisation of grinding-hardening in workpieces of curved surfaces-Part 1:plunge cylindrical grinding. Int J Mach Tools Manuf 51(4):309–319CrossRef
16.
Zurück zum Zitat JianXin S, Ke QX, Deng XZ, Ren XZ (2018) Numerical simulation and experimental analysis of temperature field of gear form grinding. Int J Adv Manuf Technol 97(58):2351–2367 JianXin S, Ke QX, Deng XZ, Ren XZ (2018) Numerical simulation and experimental analysis of temperature field of gear form grinding. Int J Adv Manuf Technol 97(58):2351–2367
17.
Zurück zum Zitat Yi YAN, Jialing YAN, Minxing LIU, Dan LI, Chuan LIU, Qiaoling CHU (2019) Measurement on the internal stress distribution in a thick specimen with a patrial repair weld using mutiple-cut contour method. Aust J Mech Eng 55(18):28–35CrossRef Yi YAN, Jialing YAN, Minxing LIU, Dan LI, Chuan LIU, Qiaoling CHU (2019) Measurement on the internal stress distribution in a thick specimen with a patrial repair weld using mutiple-cut contour method. Aust J Mech Eng 55(18):28–35CrossRef
18.
Zurück zum Zitat Yang LIU, Bin JIANG, WANG (2019) Hui zi, et al. Influence of welding sequence on welding residual stress and deformation of lateral stop. Aust J Mech Eng 55(24):57–65CrossRef Yang LIU, Bin JIANG, WANG (2019) Hui zi, et al. Influence of welding sequence on welding residual stress and deformation of lateral stop. Aust J Mech Eng 55(24):57–65CrossRef
19.
Zurück zum Zitat Weiyuan DOU, Lele ZHANG, Haifeng ZHANG, Changqing LIU (2020) Analysis on the stress state of cast aluminum beam of high speed train based on rigid-flexible coupling dynamic model. Aust J Mech Eng 56(2):138–144CrossRef Weiyuan DOU, Lele ZHANG, Haifeng ZHANG, Changqing LIU (2020) Analysis on the stress state of cast aluminum beam of high speed train based on rigid-flexible coupling dynamic model. Aust J Mech Eng 56(2):138–144CrossRef
20.
Zurück zum Zitat Wengang FAN, Wenxi WANG, Guangyou HOU, Xuhui WANG (2020) Macro contact pressure modeling and simulation for rail grinding with abrasive belt based on curvature match. Aust J Mech Eng 56(2):154–161CrossRef Wengang FAN, Wenxi WANG, Guangyou HOU, Xuhui WANG (2020) Macro contact pressure modeling and simulation for rail grinding with abrasive belt based on curvature match. Aust J Mech Eng 56(2):154–161CrossRef
21.
Zurück zum Zitat Qingxun Ke. Research on grinding burn and optimal design of machining parameters of cycloid wheel of RV reducer. Luoyang: Henan University of Science and Technology,2019:17-25. Qingxun Ke. Research on grinding burn and optimal design of machining parameters of cycloid wheel of RV reducer. Luoyang: Henan University of Science and Technology,2019:17-25.
22.
Zurück zum Zitat Guo C, Malkin S (1995) Analysis of transient temperature in grinding. J Eng Ind 117:571–577CrossRef Guo C, Malkin S (1995) Analysis of transient temperature in grinding. J Eng Ind 117:571–577CrossRef
23.
Zurück zum Zitat Biao LUO, Jiang YE, Wei LI et al (2016) Study on steady-state temperature field and thermal deformation of gear. J Univ South Chin (Science & Technology) 30(004):39–43 Biao LUO, Jiang YE, Wei LI et al (2016) Study on steady-state temperature field and thermal deformation of gear. J Univ South Chin (Science & Technology) 30(004):39–43
24.
Zurück zum Zitat Xuewen CHEN (2007) Theoretical study and finite element simulation of temperature field in wet grinding. Tianjin University:7–20 Xuewen CHEN (2007) Theoretical study and finite element simulation of temperature field in wet grinding. Tianjin University:7–20
Metadaten
Titel
Prediction and experimental study on thermal stress in multi-tooth form grinding of cycloid gear
verfasst von
Jianxin Su
Hao Zhang
Chuang Jiang
Shaowu Nie
Publikationsdatum
27.07.2021
Verlag
Springer London
Erschienen in
The International Journal of Advanced Manufacturing Technology / Ausgabe 1-2/2021
Print ISSN: 0268-3768
Elektronische ISSN: 1433-3015
DOI
https://doi.org/10.1007/s00170-021-07677-0

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