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Mathematical modeling of the system shedding motion – heald – warp

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper is concerned with the description of a mathematical model meant for an analysis of the movement of healds during the weaving cycle. The referred model consists of a mathematical description of shedding motion, coupled with the solution of the heald model of a weaving loom. Principal designing elements of this component have been considered while devising this model. The affected calculations show a high value of acceleration of the heald produced after its drop upon the supporting wire. The referred model allows for analyzing a considerable part of designs of heald shaft that are employed in weaving looms nowadays.
Rocznik
Strony
44--50
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
  • Department of Textile Machine Design of Technical University of Liberec, Studentská 2, Czech Republic
  • Department of Textile Machine Design of Technical University of Liberec, Studentská 2, Czech Republic
Bibliografia
  • [1] Mrázek, J.: Theoretical analysis of dynamics four-bar beat up mechanisms of a loom. In.: Mechanism and machine theory, Pergamon Press, 1992, pp. 125-136. USA.
  • [2] Bílek, M.; Mrázek, J. Dynamic Stress of Heald Shaft of Weaving Looms. Vlákna a textil, 1998, no.3, pp. 131-134, Slovakia.
  • [3] Beran J.; Bílek M. Matematické modelování základních mechanismů tkacího stroje. In TRANSFER 2000. Trenčín: TnU, Slovensko, 2000. s 25-30.
  • [4] Recep E.; Gülcan Ö.; Yildiray T.: Kinematics of Rotary Dobby and Analysis of Heald Frame Motion in Weaving Process. Textile Research Journal, 2008 Vol. 78, No. 12, pp. 1070-1079, USA.
  • [5] Eren R.; Ozkan G; Mehmet Karahan M.: Comparison of Heald Frame Motion Generated by Rotary Dobby and Crank & Cam Shedding Motions. FIBRES & TEXTILES in Eastern Europe. Vol. 13, No. 4 2005.
  • [6] Terentyev, V.I., Smirnov, B.N. Dynamics of a shedding mechanism with flexible links. Izvestiya Vysshikh Uchebnykh Zavedenii, Seriya Teknologiya Tekdtil´noi Promyshlennosti - Issue 2, 2011, Pages 80-83. Russia.
  • [7] Korolev, P.A., Lohmanov, V.N. Kinematics of connections of the shedding mechanism of a circular loom TKP- 110-U. Izvestiya Vysshikh Uchebnykh Zavedenii, Seriya Teknologiya Tekstil´noi Promyshlennosti - Issue 4, 2011, Pages 116-119. Russia.
  • [8] Kapucu, S., Das, M., T., Kilic, A. Cam Motion tuning of Shedding Mechanism for Vibration Reduction of Heald frame. Gazi University Journal of Science – Volume 23, Issue 2, 2010, Pages 227-232. Turkey.
  • [9] Akamura, T., Kinari, T., Shimokawa, T., Miyashita, D., Mochizuki, Y., Shintaku, S. Jumping behavior of heald in a shedding motion of loom. Journal of Textile Engineering , Volume 52, Issue 2, 2006, Pages 87-92. Japan.
  • [10] BÍLEK, Martin; KOVÁŘ, Šimon. Record of the movement of heald in the weaving loom. In IX. International Conference on the Theory of Machines and Mechanism in association with the II. CEACM Conference on Computational Mechanics 2004. Liberec : TUL, 2004, pp. 87-92.
  • [11] Bílek, M., Kovář, Š.: Mathematical model of the heald shaft of the weaving loom. Buletinul institutului polytehnic din Iaşi. Technical University of Iaşi, 2007 Iaşi, fasc. 5, volume 1, pp. 375-382. Romania.
  • [12] Hong Jun, C., Li Jun, L. Analysis on Warp´s Frictional Movement in the Heald Eye during Weaving Process. Advanced materials Research Volume 175-176, January 2011, Pages 490-495.
  • [13] TUMAJER, P., URSÍNY, P., BÍLEK, M., MOUČKOVÁ, E.: Use of the vibtex vibration system for testing textiles, AUTEX Research Journal, Vol. 11, No2, June 2011, ISSN 1470-9589.
  • [14] Tumajer P., Ursíny P., Bílek M., Moučková E.; Research Methods for the Dynamic Properties of Textiles. FIBRES & TEXTILES in Eastern Europe 2011, Vol. 19, No. 5 (88) pp. 33-39.
  • [15] TUMAJER, P., URSÍNY, P., BÍLEK, M., MOUCKOVA, E., POKORNA M.: Influence of structure of the yarn on mechanical characteristics of yarns exposed to dynamic stress, Autex Research Journal, Volume 12, Issue 2, June 2012, Pages 44-49.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6d45f52c-3d80-4ddb-939d-b37bea436d35
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