Overlay welding for corrugating roll

Shao-yan Tang , Yue-jun Liu

Journal of Central South University ›› 2006, Vol. 13 ›› Issue (1) : 32 -38.

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Journal of Central South University ›› 2006, Vol. 13 ›› Issue (1) : 32 -38. DOI: 10.1007/s11771-006-0102-9
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Overlay welding for corrugating roll

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Abstract

The effects of chemical compositions and microstructures on wearability properties of overlaid corrugating roll were studied, and the factors governing the hardness and the wearability of overlaid layer were explored. The results show that the hardness and wearability of the overlaid layer significantly rise with the increase of the mass fraction of various types of eutectic, but the crack-resistance falls. The chief factor governing the hardness of overlaid layer is the matrix microstructure, especially the amount of austenite; and the second is the amount of carbide. The principal factor governing the wearability of overlaid layer is the amount of special carbide, particularly the amount of eutectic; and the second is the hardness of overlaid layer. Meanwhile, high alloying electrodes may cause the gear-surface hardness of corrugating roll to be higher than 63HRc, and may enhance the wearability of the gear-surface of corrugating roll by a factor of 5.63 and 9.08.

Keywords

corrugating roll / overlay welding / overlaid layer / overlaying electrode

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Shao-yan Tang, Yue-jun Liu. Overlay welding for corrugating roll. Journal of Central South University, 2006, 13(1): 32-38 DOI:10.1007/s11771-006-0102-9

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References

[1]

Anon. Update report on corrugator roll developments[J]. International Paper Board Industry, 2002, 45(11): 40–43.

[2]

HeYu-ming, LiuYue-jun. The discussion of corrugated rolls life[J]. China Packaging, 1998, 18(3): 88-90(in Chinese)

[3]

LIU Yue-jun, FAN Shu-hong, HE Yu-ming. Computer aided design of corrugated roller aiming to decrease abrasion of gear[J]. Light Industry Machinery, 2001, (2): 4–8. (in Chinese)

[4]

LIU Yue-jun, FAN Shu-hong, HE Yu-ming. Study on novel material of corrugated roller based on enhancing abrasion resistance[J]. Hot Working Technology, 2001(3): 26–28. (in Chinese)

[5]

LuoHong, ZhuBao-liang, LiuJia-jun. Wear failure analysis of high-speed corrugating roll[J]. Tribology, 1993, 13(4): 337-342(in Chinese)

[6]

Anon. Corrugator rolls: New and reground rolls and special profiles discussed [J]. International Paper Board Industry, 2001, 44(11): 55–60.

[7]

RakitskyA A, RiosD L, MillerK J. Fatigue resistance of a medium carbon steel with a wear resistant thermal spray coating[J]. Fatigue Fract Eng Mater Struct, 1994, 17(5): 563-570

[8]

LinY C, WangS W, ChenT M. A study on the wear behavior of hardened medium carbon steel[J]. J Mater Proce Tech, 2002, 120(1–3): 126-132

[9]

LIU Yue-jun, LIU Ding-wen, TANG Shao-yan, et al. Important way to enhance the quality of corrugated roller[C]. The 14th IAPRI World Conference on Packaging. Stockholm, 2004: 95–97.

[10]

YangQ X, YaoM, ParkJ K. Numerical simulations and measurements of temperature and stress field in medium-high carbon steel specimen after hard-face-welding[J]. Mater Sci Eng, 2004, A364: 244-250

[11]

KhallafM E, IbrahimM A, El-MahallawyN A, et al.. On crack susceptibility in the submerged arc welding of medium-carbon steel plates[J]. J Mater Proce Tech, 1997, 68(1): 43-49

[12]

KumarS, MoudalD P, KhairaH K, et al.. Improvement in high stress abrasive wear property of steel by hardfacing[J]. J Mater Eng Perform, 1999, 8(6): 711-715

[13]

ZouZeng-da, WangXin-hong, YangShang-lei. Development of TiC-VC wear resistant surfacing electrode[J]. Materials Science and Technology, 2001, 9(4): 397-401(in Chinese)

[14]

TanYu-hua, ZengDe-chang, DongXi-chun, et al.. New observation of martensitic morphology and substructure using transmission electron microscopy[J]. Metall Trans, 1992, 23A(5): 1413-1421

[15]

ZengD C, TanY H, ChangY C. Nature of martensitic morphologies in medium and high carbon steels[J]. Z Metallkunde, 1994, 85(3): 203-206

[16]

DongXi-chun, TanYu-hua, ZengDe-chang, et al.. Effect of austenitizing temperature on microstructure and impact behavior of structural steel[J]. Journal of Iron and Steel Research, International, 2002, 9(1): 352-357

[17]

LiuYue-jun, FanShu-hong, HeYue-hui, et al.. Apparent morphology of coarse plate martensite[J]. ISIJ Intenational, 2004, 44(4): 725-730

[18]

LiuYue-jun, HuangBo-yun, TanYu-hua. New space morphology and habit plane of low carbon martensite[J]. Journal of Iron and Steel Research, International, 2005, 12(3): 46-50

[19]

LiuYue-jun, HuangBo-yun, TanYu-hua. Formation mechanism of packet martensite in medium and high carbon steels[J]. Transaction of Materials and Heat Treatment, 2005, 26(1): 48-52(in Chinese)

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