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Erschienen in: Advances in Manufacturing 4/2023

13.06.2023

Insight into deformation allocation in the multi-pass roll forming of a double-walled brazed tube

verfasst von: Meng-Meng Liu, Yu-Li Liu, Heng Li

Erschienen in: Advances in Manufacturing | Ausgabe 4/2023

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Abstract

Deformation allocation is an important factor that affects 720° curling forming from copper-coated steel strips to double-walled brazed tubes (DWBTs). In this study, four schemes of deformation allocation, considering different weights of the total feed distance, are proposed, and a 3D finite element (FE) model of the multi-pass roll forming process for DWBT is developed and verified to investigate the cross-sectional evolution and deformation features. The results show the following. (i) In the 720° curling forming process from the steel strip into double-walled tubes, the curvature of the formed circular arc initially increases and then remains stable with roll forming, and the inner and outer tubes of the DWBT are formed in the third and fifth forming passes. Size forming can eliminate the gap between the double walls and improve the overall roundness. (ii) For different deformation allocations, the cross-sectional profiles of the roll-formed parts exhibit a discrepancy, and the deformation amount varies with the roll-forming process. The deformation amount in Scheme three is the maximum, and the cross-sectional profile deviates significantly from the ideal shape and fails to form a DWBT, which indicates that the deformation allocation is unsuitable. (iii) The roundness of the outer tube is better than that of the inner tube. Therefore, the roundness of the inner tube is the key to restricting the forming accuracy of the DWBT. Compared with Schemes one and two, Scheme four with a linear allocation of the total feed distance exhibits the best roundness, and the deformation allocation is reasonable; i.e., when the contact points between the rollers and steel strip are in a straight line, the roundness of the DWBT is in good agreement with the ideal condition.

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Literatur
1.
Zurück zum Zitat Zhang WD, Zhao GQ, Fu QJ (2019) Optimization of roll forming process for high-strength V channel steels. Int J Adv Manuf Tech 105(2):2469–2480CrossRef Zhang WD, Zhao GQ, Fu QJ (2019) Optimization of roll forming process for high-strength V channel steels. Int J Adv Manuf Tech 105(2):2469–2480CrossRef
3.
Zurück zum Zitat Paralikas J, Salonitis K, Chryssolouris G (2010) Optimization of roll forming process parameters—a semi-empirical approach. Int J Adv Manuf Tech 47(9/12):1041–1052CrossRef Paralikas J, Salonitis K, Chryssolouris G (2010) Optimization of roll forming process parameters—a semi-empirical approach. Int J Adv Manuf Tech 47(9/12):1041–1052CrossRef
4.
Zurück zum Zitat Liu XL, Cao JG, Chai XT et al (2017) Investigation of forming parameters on springback for ultra high strength steel considering Young’s modulus variation in cold roll forming. J Manuf Process 29:289–297CrossRef Liu XL, Cao JG, Chai XT et al (2017) Investigation of forming parameters on springback for ultra high strength steel considering Young’s modulus variation in cold roll forming. J Manuf Process 29:289–297CrossRef
5.
Zurück zum Zitat Liu XL, Cao JG, Chai XT et al (2018) Experimental and numerical prediction of the local thickness reduction defect of complex cross-sectional steel in cold roll forming. Int J Adv Manuf Tech 95:1837–1848CrossRef Liu XL, Cao JG, Chai XT et al (2018) Experimental and numerical prediction of the local thickness reduction defect of complex cross-sectional steel in cold roll forming. Int J Adv Manuf Tech 95:1837–1848CrossRef
6.
Zurück zum Zitat Su CJ, Liu JZ, Zhao ZX et al (2020) Research on roll forming process and springback based on five-boundary condition forming angle distribution function. J Mech Sci Technol 34(9/12):5193–5204CrossRef Su CJ, Liu JZ, Zhao ZX et al (2020) Research on roll forming process and springback based on five-boundary condition forming angle distribution function. J Mech Sci Technol 34(9/12):5193–5204CrossRef
7.
Zurück zum Zitat Safdarian R, Naeini HM (2015) The effects of forming parameters on the cold roll forming of channel section. Thin-Walled Struct 92:130–136CrossRef Safdarian R, Naeini HM (2015) The effects of forming parameters on the cold roll forming of channel section. Thin-Walled Struct 92:130–136CrossRef
8.
Zurück zum Zitat Poursafar A, Saberi S, Tarkesh R et al (2022) Experimental and mathematical analysis on spring-back and bowing defects in cold roll forming process. Int J Interact Des Manuf 16(2):531–543CrossRef Poursafar A, Saberi S, Tarkesh R et al (2022) Experimental and mathematical analysis on spring-back and bowing defects in cold roll forming process. Int J Interact Des Manuf 16(2):531–543CrossRef
9.
Zurück zum Zitat Yaser T, Hassan MN, Roohollah AT et al (2018) A strategy to reduce the twist defect in roll-formed asymmetrical-channel sections. Thin-Walled Struct 130:395–404CrossRef Yaser T, Hassan MN, Roohollah AT et al (2018) A strategy to reduce the twist defect in roll-formed asymmetrical-channel sections. Thin-Walled Struct 130:395–404CrossRef
10.
Zurück zum Zitat Sheu JJ, Yu CH, Wang JK (2017) Die designs of cold roll forming process for car bumper using advanced high strength steel. Procedia Eng 207:1308–1313CrossRef Sheu JJ, Yu CH, Wang JK (2017) Die designs of cold roll forming process for car bumper using advanced high strength steel. Procedia Eng 207:1308–1313CrossRef
11.
Zurück zum Zitat Fan LF, Yan JX, Gao Y et al (2016) Research on deformation characteristics of JCOE forming in large diameter welding pipe. Adv Manuf 4(3):268–277CrossRef Fan LF, Yan JX, Gao Y et al (2016) Research on deformation characteristics of JCOE forming in large diameter welding pipe. Adv Manuf 4(3):268–277CrossRef
12.
Zurück zum Zitat Luo JT, Xue YH, Chen K et al (2017) Integrated simulation and experimental test of the residual stress field for large-sized straight welded pipe processed with JCOE technology. Int J Steel Struct 17(1):265–272CrossRef Luo JT, Xue YH, Chen K et al (2017) Integrated simulation and experimental test of the residual stress field for large-sized straight welded pipe processed with JCOE technology. Int J Steel Struct 17(1):265–272CrossRef
13.
Zurück zum Zitat Ren Q, Zou TX, Li DY et al (2015) Numerical study on the X80 UOE pipe forming process. J Mater Process Technol 215:264–277CrossRef Ren Q, Zou TX, Li DY et al (2015) Numerical study on the X80 UOE pipe forming process. J Mater Process Technol 215:264–277CrossRef
14.
Zurück zum Zitat Zou TX, Wu GH, Li DY et al (2015) A numerical method for predicting O-forming gap in UOE pipe manufacturing. Int J Mech Sci 98:39–58CrossRef Zou TX, Wu GH, Li DY et al (2015) A numerical method for predicting O-forming gap in UOE pipe manufacturing. Int J Mech Sci 98:39–58CrossRef
15.
Zurück zum Zitat Zou TX, Li DY, Wu GH et al (2016) Yield strength development from high strength steel plate to UOE pipe. Mater Design 89:1107–1122CrossRef Zou TX, Li DY, Wu GH et al (2016) Yield strength development from high strength steel plate to UOE pipe. Mater Design 89:1107–1122CrossRef
17.
Zurück zum Zitat Chen WY, Jiang JM, Li DY et al (2019) Flower pattern and roll positioning design for the cage roll forming process of ERW pipes. J Mater Process Technol 264:295–312CrossRef Chen WY, Jiang JM, Li DY et al (2019) Flower pattern and roll positioning design for the cage roll forming process of ERW pipes. J Mater Process Technol 264:295–312CrossRef
19.
Zurück zum Zitat Qiu LM, Zhang SY, Wang ZL et al (2019) A robust optimization design method for sheet metal roll forming and its application in roll forming circular cross-section pipe. Int J Adv Manuf Tech 103(11):2903–2916CrossRef Qiu LM, Zhang SY, Wang ZL et al (2019) A robust optimization design method for sheet metal roll forming and its application in roll forming circular cross-section pipe. Int J Adv Manuf Tech 103(11):2903–2916CrossRef
20.
Zurück zum Zitat Mahendra K, Hardik K (2015) Geometric specification of bevel wrapping of double walled tubes, prediction of failure from material properties. Int J Res Eng Tech 4(7):1–6 Mahendra K, Hardik K (2015) Geometric specification of bevel wrapping of double walled tubes, prediction of failure from material properties. Int J Res Eng Tech 4(7):1–6
Metadaten
Titel
Insight into deformation allocation in the multi-pass roll forming of a double-walled brazed tube
verfasst von
Meng-Meng Liu
Yu-Li Liu
Heng Li
Publikationsdatum
13.06.2023
Verlag
Shanghai University
Erschienen in
Advances in Manufacturing / Ausgabe 4/2023
Print ISSN: 2095-3127
Elektronische ISSN: 2195-3597
DOI
https://doi.org/10.1007/s40436-023-00448-y

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