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2024 | OriginalPaper | Buchkapitel

A Review on Stiffness Calculation of Machine Tools

verfasst von : Yunnan Teng, Liang Zhang, Xiangpu Liu, Liyang Xie, Weiqiao Sun

Erschienen in: Proceedings of 2023 the 6th International Conference on Mechanical Engineering and Applied Composite Materials

Verlag: Springer Nature Singapore

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Abstract

The stiffness of a machine tool directly affects the accuracy of the processed parts. The stiffness analysis of a machine tool is an essential task in the design and manufacturing process of a machine tool. The calculation methods for machine tool stiffness are constantly updated. Initially, static analysis was conducted on machine tool modeling based on traditional formulas of theoretical mechanics and the geometric structure of the machine tool. In recent years, finite element methods were used to calculate the static stiffness of the machine tool. A lot of research has found that there is a significant difference between the dynamic and static stiffness of machine tools during operation, calculation and analysis of the dynamic stiffness of machine tools have been carried out by finite element analysis software. This article provides a brief introduction to the stiffness calculation methods of the machine tools.

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Literatur
1.
Zurück zum Zitat Enikeev, B.A., Akmaev, O.K.: Rigidity of a triaxial parallel machine tool. J. Russ. Eng. Res. 40(5), 422–426 (2020)CrossRef Enikeev, B.A., Akmaev, O.K.: Rigidity of a triaxial parallel machine tool. J. Russ. Eng. Res. 40(5), 422–426 (2020)CrossRef
2.
Zurück zum Zitat Tieneng, G., Lingjun, M., Hua, X., Cheng, Z., Liwei, P.: Research on the dynamic identification method of weak parts in cantilever structures. J. Sci. Prog. 104, 2 (2021) Tieneng, G., Lingjun, M., Hua, X., Cheng, Z., Liwei, P.: Research on the dynamic identification method of weak parts in cantilever structures. J. Sci. Prog. 104, 2 (2021)
3.
Zurück zum Zitat Akio, H., Okitoshi, S., Yoshitaka, M.: Study on method for avoiding chatter vibration by changing machine tool rigidity. J. Ijat. 16(6), 853–861 (2022)CrossRef Akio, H., Okitoshi, S., Yoshitaka, M.: Study on method for avoiding chatter vibration by changing machine tool rigidity. J. Ijat. 16(6), 853–861 (2022)CrossRef
4.
Zurück zum Zitat Haiqiang, Z., Hairong, F.: Stiffness characteristics analysis of a novel 3-DOF parallel kinematic machine tool. J. Int. J. Eng. Technolo. 10(4), 346–354 (2018) Haiqiang, Z., Hairong, F.: Stiffness characteristics analysis of a novel 3-DOF parallel kinematic machine tool. J. Int. J. Eng. Technolo. 10(4), 346–354 (2018)
5.
Zurück zum Zitat Liangfu, L.: Rigidity of machine tools. Shanghai Mach. Tool 10(1), 19–26 (1997) Liangfu, L.: Rigidity of machine tools. Shanghai Mach. Tool 10(1), 19–26 (1997)
6.
Zurück zum Zitat Weiguo, L: Calculation and optimization method for spindle stiffness of machine tools. J. Machine Tool, 186 (04): 10-14, (1986). Weiguo, L: Calculation and optimization method for spindle stiffness of machine tools. J. Machine Tool, 186 (04): 10-14, (1986).
7.
Zurück zum Zitat Huiyun, L., Zhongda, G., Yonggui, Z., Zhaotong, X.: Calculation of rigidity of machine tool three support spindles. J. Mach. Tool Hydraul. 38(23), 83–85 (2010) Huiyun, L., Zhongda, G., Yonggui, Z., Zhaotong, X.: Calculation of rigidity of machine tool three support spindles. J. Mach. Tool Hydraul. 38(23), 83–85 (2010)
8.
Zurück zum Zitat Kejian, Z.: Analysis and stiffness calculation of machine tool spindle bearing combinations. J. Zhuzhou Inst. Technol. 15(3), 72–76 (1995) Kejian, Z.: Analysis and stiffness calculation of machine tool spindle bearing combinations. J. Zhuzhou Inst. Technol. 15(3), 72–76 (1995)
9.
Zurück zum Zitat Tiancheng, W: Analysis and calculation of the rigidity of the three supports spindle of machine tool. J. Guizhou Inst. Technol. 3(3), 35–41+57 (1993) Tiancheng, W: Analysis and calculation of the rigidity of the three supports spindle of machine tool. J. Guizhou Inst. Technol. 3(3), 35–41+57 (1993)
10.
Zurück zum Zitat Shuang, H., Xin, W., Peixing, L.: Calculation of equivalent stiffness of coupled four link mechanisms. J. Light. Ind. Mach. 40(4), 6–10+17 (2022) Shuang, H., Xin, W., Peixing, L.: Calculation of equivalent stiffness of coupled four link mechanisms. J. Light. Ind. Mach. 40(4), 6–10+17 (2022)
11.
Zurück zum Zitat Jiajun, Y., Zhenxing, W., Jisheng, Z., Wei, D.: Load distribution and stiffness calculation of planetary roller screw pairs. J. Huazhong Univ. Sci. Technol. (Nat. Sci. Ed.) 39(4), 1–4 (2011) Jiajun, Y., Zhenxing, W., Jisheng, Z., Wei, D.: Load distribution and stiffness calculation of planetary roller screw pairs. J. Huazhong Univ. Sci. Technol. (Nat. Sci. Ed.) 39(4), 1–4 (2011)
12.
Zurück zum Zitat Youming, C., Wenjie, Q., Caiyun, G., Litao, L.: Calculation of Contact Deformation and Contact Stiffness of Cam and Flat Bottom Follower. J. Appl. Mech. 29(6), 735–740+778 (2012) Youming, C., Wenjie, Q., Caiyun, G., Litao, L.: Calculation of Contact Deformation and Contact Stiffness of Cam and Flat Bottom Follower. J. Appl. Mech. 29(6), 735–740+778 (2012)
13.
Zurück zum Zitat Bhushan, B., Majumdar, A.: Discussion: a fractal theory of the interfacial temperature distribution in the slow sliding regime: Part i—elastic contact and heat transfer analysis. J. Tribol. 116(4), 822 (1994)CrossRef Bhushan, B., Majumdar, A.: Discussion: a fractal theory of the interfacial temperature distribution in the slow sliding regime: Part i—elastic contact and heat transfer analysis. J. Tribol. 116(4), 822 (1994)CrossRef
14.
Zurück zum Zitat Li, L., Wang, J., Pei, X., Chu, W., Cai, A.: A modified elastic contact stiffness model considering the deformation of bulk substrate. J. Mech. Sci. Technol. 34(2), 777–790 (2020) Li, L., Wang, J., Pei, X., Chu, W., Cai, A.: A modified elastic contact stiffness model considering the deformation of bulk substrate. J. Mech. Sci. Technol. 34(2), 777–790 (2020)
15.
Zurück zum Zitat Zhang, X., Chen, Y., Wen, S., et al.: The model of normal contact stiffness of joint interfaces incorporating elastoplastic deformation mechanism. J. Vib. Eng. 1, 91–99 (2015) Zhang, X., Chen, Y., Wen, S., et al.: The model of normal contact stiffness of joint interfaces incorporating elastoplastic deformation mechanism. J. Vib. Eng. 1, 91–99 (2015)
16.
Zurück zum Zitat Qu, C., Wu, L., Jianfeng, M.: A fractal model of normal dynamic parameters for fixed oily porous media joint interface in machine tools. Int. J. Adv. Manuf. Technol. 68(9–12), 2159–2167 (2013) Qu, C., Wu, L., Jianfeng, M.: A fractal model of normal dynamic parameters for fixed oily porous media joint interface in machine tools. Int. J. Adv. Manuf. Technol. 68(9–12), 2159–2167 (2013)
17.
Zurück zum Zitat Tian, H., Li, B., Liu, H., et al.: A new method of virtual material hypothesis-based dynamic modeling on fixed joint interface in machine tools. Int. J. Mach. Tools Manuf. 51(3), 239–249 (2011) Tian, H., Li, B., Liu, H., et al.: A new method of virtual material hypothesis-based dynamic modeling on fixed joint interface in machine tools. Int. J. Mach. Tools Manuf. 51(3), 239–249 (2011)
18.
Zurück zum Zitat Greenwood J A, Tripp J H. The contact of two nominally flat rough surfaces. J. Proc. Inst. Mech. Eng. 185, 625–634 (1970) Greenwood J A, Tripp J H. The contact of two nominally flat rough surfaces. J. Proc. Inst. Mech. Eng. 185, 625–634 (1970)
19.
Zurück zum Zitat Bing, L., Zhixing, W., Ying, H.: A stiffness calculation model for a new type of parallel machine tool. J. Mech. Des. 9(3), 15–17+46 (1999) Bing, L., Zhixing, W., Ying, H.: A stiffness calculation model for a new type of parallel machine tool. J. Mech. Des. 9(3), 15–17+46 (1999)
20.
Zurück zum Zitat Jiman, L., Guangqi, C., Jingkui, L.: Static stiffness analysis of a new 3-TPS parallel bed based on ANSYS. J. Shenyang Jianzhu Univ. (Nat. Sci. Ed.) 6(2), 341–344 (2006) Jiman, L., Guangqi, C., Jingkui, L.: Static stiffness analysis of a new 3-TPS parallel bed based on ANSYS. J. Shenyang Jianzhu Univ. (Nat. Sci. Ed.) 6(2), 341–344 (2006)
21.
Zurück zum Zitat Ashworth, S., Fairclough, J.P.A., Takikawa, Y., Scaife, R., Ghadbeigi, H., Kerrigan, K., Meredith, J.: Effects of machine stiffness and cutting tool design on the surface quality and flexural strength of edge trimmed carbon fibre reinforced polymers. J. Compos. Part A. 119, 88–100 (2019) Ashworth, S., Fairclough, J.P.A., Takikawa, Y., Scaife, R., Ghadbeigi, H., Kerrigan, K., Meredith, J.: Effects of machine stiffness and cutting tool design on the surface quality and flexural strength of edge trimmed carbon fibre reinforced polymers. J. Compos. Part A. 119, 88–100 (2019)
22.
Zurück zum Zitat Xiaoyue, W., Zhen, H.: Modeling and experimental analysis of the stiffness of machine tools. J. Mech. Sci. Technol. 6(6), 122–124+142 (1996) Xiaoyue, W., Zhen, H.: Modeling and experimental analysis of the stiffness of machine tools. J. Mech. Sci. Technol. 6(6), 122–124+142 (1996)
23.
Zurück zum Zitat Changliang, Y., Hui, Z., Renche, W., Lei, G.: Research on identification and optimization methods for weak links in machine tool overall stiffness. J. Mech. Eng. 49(21), 11–17 (2013) Changliang, Y., Hui, Z., Renche, W., Lei, G.: Research on identification and optimization methods for weak links in machine tool overall stiffness. J. Mech. Eng. 49(21), 11–17 (2013)
24.
Zurück zum Zitat Zixin, Y.: Stiffness analysis and hydrostatic spindle design of hard turning machine tools. Harbin Inst. Technol. (2021) Zixin, Y.: Stiffness analysis and hydrostatic spindle design of hard turning machine tools. Harbin Inst. Technol. (2021)
Metadaten
Titel
A Review on Stiffness Calculation of Machine Tools
verfasst von
Yunnan Teng
Liang Zhang
Xiangpu Liu
Liyang Xie
Weiqiao Sun
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-1678-4_10

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