RESEARCH PAPER
Experimental Research of Paperboard Cutting in Die Cutting Press with the Screw–Nut Transmission of Drive Mechanism of a Movable Pressure Plate
 
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1
Faculty of Computer Printing Engineering, Department of Computerized Complexes of Printing and Packaging Industries, Ukrainian Academy of Printing, Lviv, 79020, Pid Goloskom street, 19, Ukraine.
 
2
Institute of Applied Mathematics and Fundamental Sciences, Department of Mathematics, Lviv Polytechnic National University, Lviv, 79013, Bandera street, 12, Ukraine.
 
 
Submission date: 2021-02-14
 
 
Acceptance date: 2021-06-25
 
 
Online publication date: 2021-09-27
 
 
Publication date: 2021-09-01
 
 
Acta Mechanica et Automatica 2021;15(3):122-131
 
KEYWORDS
ABSTRACT
This paper reports experimental research of torques during paperboard cutting in the die cutting press with the screw–nut transmission in the drive mechanism of the movable pressure plate. The purpose of the study is to substantiate the practical implementation of the pressure plate drive mechanism with the use of screw–nut transmission for the production of cartons of paperboard blanks. The manufactured experimental bench for the research of paperboard blanks provides the possibility of getting dependencies of loads on different parameters of the die cutting process. The developed method of the experimental research envisages the use of the strain gauge method and the wireless module for data measurement and software for its processing that allow getting trustworthy results with minimum faults. As a result of experimental research studies, the impact of paperboard thickness and cutting velocity on torque values has been established. Results of experimental research allow getting trustworthy and systematised information about torque values depending on the thickness of the paperboard, the paperboard fibre direction and pressure plate displacement velocity. It is established that torque values on drive shaft during die cutting of paperboard blanks made of folding boxboard with thickness that lay in range of 0.3–0.7 mm. Experimental research studies show the impact of rotation speed of a drive shaft of the pressure plate drive mechanism on the torque value. The article shows the workability of the designed device with screw–nut transmission in the drive mechanism of a movable pressure plate.
REFERENCES (20)
1.
Behen P. I., Radikhovskyi I. A., Mlynko O. I. (2020), Die-cutting Press wit Using a Lead Screw Transmission (Investigation of Pressure Plate Kinematic Parameters), Upakovka, 2020. № 1, 44–45 (in Ukrainian).
 
2.
Durand C., Bigot R., Baudouin C. (2018), Contribution to characterization of metal forming machines: application to screw presses, Procedia Manufacturing, Volume 15, 1024-1032.
 
3.
Emblem A., Emblem H. (2012), Packaging technology Fundamentals, Materials and Processes, Oxford: Woodhead Publishing.
 
4.
Gorvat A. A., Molnar O. O., Minkovich V.V. (2019), Metodiobrobkieksperimentalnikhdanikh z vikoristannyam MS Excel. VidavnicztvoUzhNU «Goverla» (in Ukrainian).
 
5.
Happonen, A., Stepanov A., Piili H., Salminen A. (2015), Innovation Study for Laser Cutting of Complex Geometries with Paper Materials, Physics Procedia, № 78, 128–137.
 
6.
Hilal Muftah M., Mohamed Haris S., Petroczki K., AwadKhidir E. (2013) An Improved Strain Gauge-Based Dynamic Torque Measurement Method. International Journal of Circuits, Systems and Signal Processing, Issue 1, Volume 7, 66-73.
 
7.
Khvedchyn YU. Y., Zelenyi V. V. (2014) Analysis of The Mechanisms of Press in Die-cutting Automat, Scientific Papers, № 4 (49), 21-30 (in Ukrainian).
 
8.
Kirwan, M. J. (2013), Handbook of Paper and Paperboard Packaging Technology, Oxford: John Wiley & Sons.
 
9.
Knysh, O., Rehei, I., Kandiak, N., Ternytskyi, S. (2019), Experimental Evaluation of the Tractive Effort of the Chain Conveyor during Book Block Spine Processing by Cylindrical Milling Cutter at Perfect Binding, Acta Mechanica et Automatica, vol. 13 no. 2, 101–106.
 
10.
Kuznetsov V. O., Kolomiets A. B., Dmitraschuk V. S. (2012), Parametric Researches of the Press Plate Drive in Die-cutting Automat, Upakovka, №6, 31-34 (in Ukrainian).
 
11.
Kuznetsov V. O., Rehei I. I., Vlakh V. V. (2017), Modification of a Drive Mechanism of a Press Plate in a Die-cutting, Press, Printing and Publishing, №1, 56–62 (in Ukrainian).
 
12.
Lin W., Zhou C., Huang W. (2015), Optimum design for mechanical Structures and material Properties of the dual-elbow-bar mechanism, Hindawi Advances in Materials Science and Engineering.
 
13.
Liu Y., Wang J., Cheng H., Sun Y. (2015), Kinematics Analysis of the Roller Screw Based on the Accuracy of Meshing Point Calculation, Mathematical Problems in Engineering, vol. 2015.
 
14.
Pinćjer I., Miketić N., Tomić I., Adamović S. (2020). Exploring the Various Parameters of CO2 Laser in the Cutting of Paper. Paper presented at the 10th International Symposium on Graphic Engineeringand Design GRID 2020, Novi Sad, Serbia, November 12–14.
 
15.
Rehei І.І., Knysh O. B., Behen P. I., Radikhovsky I. A., Mlynko O. I. (2020). Drive of The Pressure Plate of the Die-cutting Press on The Basis of Using the Screw Nut Transmission (Method of Evaluation of Consumption Power Components), Scientific Papers 1 (60), 98–107 (in Ukrainian).
 
16.
Rehei, І. (2011), Consumer Cardboard Packaging: Materials, Materials, Design, Manufacturing Equipment, Lviv: Ukrainian Academy of Printing (in Ukrainian).
 
17.
Schicher R., Wegener G. (2002). Measuring Torque Correctly, Hottinger Baldwin MesstechnikGmbh, Germany.
 
18.
Shakhbazov J., Cheterbukh O., Shyrokov V., Palamar O. (2020). The Drive Mechanism of a Pressure Plate of a Flat Die-cutting Press, Printing and Publishing, 1 (79),112–120(in Ukrainian).
 
19.
Vlakh V., Pasika V. (2016), Automated Synthesis of Mechanism of Press of Diecutting Machine, Technological Complexes, №1 (13), 57-63 (in Ukrainian).
 
20.
Zou C., Zhang H., Lu D., Zhang J., Zhao W. (2017), Effect of the screw–nut joint stiffness on the position-dependent dynamics of a vertical ball screw feed system without counterweight, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical EngineeringScience. 232.
 
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ISSN:1898-4088
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