All Issue

2020 Vol.52, Issue 1 Preview Page
28 February 2020. pp. 110-120
Abstract
References

Literature Cited

1

de Oliveira, H. M., Wet web strength development of paper, Master’s Thesis, McGill University, Canada (2007).

2

de Oliveira, M. H., Maric, M., and van de Ven, T. G. M., The role of fiber entanglement in the strength of wet papers, Nordic Pulp & Paper Research Journal 23(4):426-431 (2008).

10.3183/npprj-2008-23-04-p426-431
3

Tejado, A. and van de Ven, T. G. M., Why does paper get stronger as it dries?, Materials Today 13(9):42-49 (2010).

10.1016/S1369-7021(10)70164-4
4

Salminen, K., The effect of some furnish and paper structure related factors on wet web tensile and relaxation characteristics, Doctoral Thesis, Lappeenanta University of Technology, Finland (2010).

5

Belle, J., Kleemann, S., Odermatt, J., and Olbrich, A., Demonstration of strength development in initial wet paper web using field emission-scanning electron microscopy (FE-SEM), BioResources 10(3):4204-4225 (2015).

10.15376/biores.10.3.4204-4225
6

Belle, J. and Odermatt, J., Initial wet web strength of paper, Cellulose 23:2249-2272 (2016).

10.1007/s10570-016-0961-7
7

Hua, X., Owston, T., and Laleg, M., Wet-web strength and pressibility of highly filled sheets, In Proceedings of PaperCon 2011, pp. 851-859.

8

Sutman, F. J., The influence of filler content and process additives on wet web strength and runnability, In Proceedings of PaperCon 2011, pp. 919-925.

9

Myllytie, P., Interactions of polymers with fibrillar structure of cellulose fibres: A new approach to bonding and strength in paper, Doctoral Thesis, Helsinki University of Technology, Finland (2009).

10

Nikolaeva, M., Measurement and improvement on wet paper web strength, Master’s These, Lappeenranta University of Technology, Finland (2010).

11

Tejado, A., Antal, M., and van de Ven, T. G. M., Effect of EDC/ADH fiber crosslinking on the wet web strength of BHKP with and without PCC loading, J-FOR 1(1):27-31 (2011).

12

Salminen, K., Kataja-aho, J., Lindqvist, H., Retulainen, E., Rantanen, T., and Sundberg, A., The effects of certain polymers on tensile strength and tension relaxation of wet web, PaperCon 2011, TAPPI Press, pp. 825-832.

13

Kim, J. S., Joo, H. U., Oh, M. S., Kwon, T. S., Lee, J. H., and Cho, B. U., Strength Improvement of NC-SwBKP sheets with PAE-PVA pre-mixed complexes (I) - Effect of mixing ratio and dosages of polymer, Journal of Korea TAPPI 51(1):72-81 (2019).

10.7584/JKTAPPI.2019.02.51.1.72
14

Kim, J. S., Joo, H. U., Oh, M. S., Kwon, T. S., Lee, J. H., and Cho, B. U., Strength Improvement of NC-SwBKP sheets with PAE-PVA pre-mixed complexes (II) - Effect of types of PVA, Journal of Korea TAPPI 51(1):82-91 (2019).

10.7584/JKTAPPI.2019.02.51.1.82
15

Kim, J. S., Joo, H. U., Oh, M. S., Kwon, T. S., Lee, J. H., and Cho, B. U., Strength Improvement of NC-SwBKP sheets with PAE-Micropolymer dual polymer strengthening aids, Journal of Korea TAPPI 51(1):92-99 (2019).

10.7584/JKTAPPI.2019.02.51.1.92
16

Hubbe, M. A., Bonding between cellulosic fibers in the absence and presence of dry-strength agents – A review, BioResources 1(2):281-318 (2006).

17

Heinemann, S., Wang, S., Peltonen, J., and Kleen, M., Characterization of fiber wall surface structure of chemically modified TMP fibers from Norway spruce, Nordic Pulp & Paper Research Journal 26(1):21-30 (2011).

10.3183/npprj-2011-26-01-p021-030
18

Neuman, R. D., Surface force measurement in papermaking systems, In Products of Papermaking, Tans. 10th Fundamental Research Symposium, Baker, C. F.(ed.), Pira, UK, Vol. 3, pp. 969-1021 (1993).

19

Grunagul, N. and Seth, R. S., Wet-web strength of hardwood kraft pulps, Pulp & Paper Canada 98(9):T305-T309 (1997).

20

Ora, M., The Effect of Web Structure on Wet Web Runnability, Doctoral Thesis, Aalto University, Finland (2012).

Information
  • Publisher :Korea Technical Association of The Pulp and Paper Industry
  • Publisher(Ko) :한국펄프종이공학회
  • Journal Title :Journal of Korea TAPPI
  • Journal Title(Ko) :펄프종이기술
  • Volume : 52
  • No :1
  • Pages :110-120
  • Received Date : 2020-01-30
  • Revised Date : 2020-02-24
  • Accepted Date : 2020-02-25