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Assessment of production process capability in the serial production of components for the automotive industry

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article deals with the assessment of production process capability in the serial production of plastic components. The plastic component was used for analysis. Component is used in the automotive industry in car suspension shock absorbers. Assessing the capability of the product's manufacturing process is very important. The aim of the present paper is to measure the dimensional characteristics of a thermoplastic product as a monitored quality feature. The analyzed product is manufactured in an eightfold injection mold by injection technology. The products from each injection mold cavity were considered separately. Process capability was assessed using capability indices. Process variability and centering were evaluated. Based on the analysis we can say that the production process is in excellent condition.
Wydawca
Rocznik
Tom
Strony
255--258
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
  • Technical University of Košice Faculty of Manufacturing Technologies with a seat in Prešov Department of Automotive and Manufacturing Technologies Štúrova 31, 080 01 Prešov, Slovak Republic
  • Technical University of Košice Faculty of Manufacturing Technologies with a seat in Prešov Department of Computer Aided Manufacturing Technologies Štúrova 31, 080 01 Prešov, Slovak Republic
  • Technical University of Košice Faculty of Manufacturing Technologies with a seat in Prešov Department of Technical Systems Design and Monitoring Štúrova 31, 080 01 Prešov, Slovak Republic
Bibliografia
  • [1] H. Alavi and P. Habek. “Addressing Research Design Problem in Mixed Methods Research”. Management Systems in Production Engineering, vol. 21, pp. 62-66, Mar 2016.
  • [2] W. Bialy and J. Ruzbarsky. “Breakdown Cause and Effect Analysis. Case Study”. Management Systems in Production Engineering, vol. 26, pp. 83-87, Jun 2018.
  • [3] P. Baron, M. Kocisko, L. Blasko and P. Szentivanyi. “Verification of the operating condition of stationary industrial gearbox through analysis of dynamic signal, measured on the pinion bearing housing”. Measurement, vol. 96, pp. 24- 33, Jan. 2017.
  • [4] P. Bozek, P. Pokorny, J. Svetlik, A. Lozhkin and I. Arkhipov. “The calculations of Jordan curves trajectory of the robot movement”. International Journal of Advanced Robotic Systems, vol. 13, Oct. 2016.
  • [5] D. de-Felipe and E. Benedito. “Monitoring High Complex Production Processes Using Process Capability Indices”. International Journal of Advanced Manufacturing Technologies, vol. 93, pp. 1257-1267, Oct. 2017.
  • [6] J. Dobránsky, A. Panda and D. Manduľák. Quality Monitoring in Production of the Parts in Automotive Industry. Ludenscheid: RAM-Verlag, 2015, 195.
  • [7] D. Duplakova, L. Knapcikova, M. Hatala and E. Szilagyi. “Mathematical Modeling of Temperature Characteristics of RFID Tags with their Subsequent Application in Engineering Production”. TEM Journal-Technology Education Management Informatics, vol. 5, pp. 411-416, Nov. 2016.
  • [8] T. Holota, J. Hrubec, M. Kotus, M. Holiencinova and E. Caposova. “The Management of Quality Costs Analysis Model”. Serbian Journal of Management, vol. 11, pp. 119- 127, 2016.
  • [9] C. Ngaowthong, M. Boruvka, L. Behalek, P. Lenfeld, M. Svec, R. Dangtungee, S. Siengchin, SM. Rangappa and J. Parameswaranpillai. “Recycling of sisal fiber reinforced polypropylene and polylactic acid composites: Thermomechanical properties, morphology, and water absorption behavior”. Waste Management, vol. 97, pp. 71-81, Sep. 2019.
  • [10] J. Kascak, P. Baron, M. Teliskova, J. Zajac, J. Torok and J. Husar. “Implementation of Augmented Reality into the Training and Educational Process in Order to Support Spatial Perception in Technical Documentation”. 6th IEEE International Conference on Industrial Engineering and Applications. 2019, pp. 583-587.
  • [11] I. Kovac, R. Mikus, R. Drlicka and J. Zitnansky. “Boron Effect on Mechanical Properties and Structure of Steel STN 41 5230 Surface Layer”. Advanced Materials Research, vol. 801, pp. 123-129, 2013.
  • [12] G. Kovacic and Z. Kondic. “Statistical Analysis of Stretch Film Production Process Capabilities”. Technicki GlasnikTechnical Journal, vol. 6, pp. 191-198, Dec. 2012.
  • [13] KP Lin, CM Yu and KS Chen. “Production Data Analysis System Using Novel Process Capability Indices-Based Circular Economy”. Industrial Management & Data Systems, vol. 119, pp. 1665-1668, Sep. 2019.
  • [14] P. Monka, K. Monkova, V. Modrak, S. Hric and P. Pastucha. “Study of a Tap Failure at the Internal Threads Machining”. Engineering Failure Analysis, vol. 100, pp. 25-36, Jun 2019.
  • [15] A. Panda, S. Olejarova, J. Valicek and M. Harnicarova. “Monitoring of the condition of turning machine bearing housing through vibrations”. International Journal of Advanced Manufacturing Technology, vol. 97, pp. 401-411, Jul 2018.
  • [16] A. Panda, K. Dyadyura, J. Valicek, M. Harnicarova, J. Zajac, V. Modrak, I. Pandova, P. Vrabel, E. Novakova-Marcincinova and Z. Pavelek. “Manufacturing Technology of Composite Materials-Principles of Modification of Polymer Composite Materials Technology Based on Polytetrafluoroethylene”. Materials, vol. 10, pp. Apr. 2017.
  • [17] P. Polak, R. Drlicka and J. Zitnansky. “Capability Assessment of Measuring Equipment Using Statistic Method”. Management Systems in Production Engineering, vol. 16, pp. 184-186, 2014.
  • [18] M. Seidl, J. Bobek, P. Lenfeld and L. Behalek. “Melt Flow Behaviour of Composite Materials with Natural Animal Fillers”. AD Alta-Journal of Multidisciplinary Research, vol. 1, pp. 158-160, 2011.
  • [19] J. Svetlik and P. Demec. “Principles of modular architecture in the manufacturing technology”. III Central European Conference on Logistics, 2013, pp. 105-112.
  • [20] J. Torok, M. Kocisko, M. Teliskova and M. Janak. “Increasing of the Work Productivity of CMM Machine by Applying of Augmented Reality Technology”. MATEC Web of Conferences, 2016.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-171c3d0d-6a75-4994-b01f-91d0f14777d7
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