Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
For the conformity assessment process, the manufacturer is required to determine the stability of the machine/device, for issuing the declaration of conformity. The manufacturer should determine the stability of the machine/device already at the designing stage. Also, the users of older machines, must assess their safety in terms of stability and, if necessary, implement safety measures. The process of determining the stability of machines and devices under static and quasi-static load, using computer techniques is presented. A method of automating the calculation of stability assessment using a CAD software (Autodesk AutoCAD) and text editor (Microsoft Word) is discussed. The methodological assumptions of the problem are presented, and the developed solution is given. Automatically generated report (DOCX file), from stability assessment process of selected machine/device, containing both the input data and the results of the simulations and stability calculations are the final output of the developed tool. The database of the tool can be easily expanded by new classes of machines/devices. The computer tool was developed in English, which additionally increases its accessibility. Described method was used to calculate the longitudinal and transverse stability of the transportation platform transporting the longwall powered roof support. The example shows determination of limit angles of loss of stability, both for longitudinal and transverse inclinations. Developed software can be used by the following groups: students, manufacturers/designers of machines/devices and professionals involved in conformity assessment process
Czasopismo
Rocznik
Tom
Strony
79--91
Opis fizyczny
Bibliogr. 24 poz., rys., zdj.
Twórcy
autor
- KOMAG Institute of Mining Technology, Pszczyńska 37 44-101 Gliwice, Poland
Bibliografia
- [1] Petrovic D.V., Cerovic V.B., Radojevic R.L., Mileusnic Z.I.:An approach to characterization of the agricultural self-propelled machines stability. Journal of Terramechanics2021,93.
- [2] Boloz L., Kozlowski A., Horak W.: Assessment of the Stability of Bev Lhd Loader. Manag. Syst. Prod. 2022. 30 (4), pp. 377-387.DOI: 10.2478/mspe-2022-0048.
- [3] Formato A., Romano R., Cattani P., Villecco, F.:Stability Analysis of Self-propelled Hydrodynamic Irrigation Machines Used for Food Industry Crops. Lecture Notes in Networks and Systems2022. 472 LNNS, pp. 788-797.DOI: 10.1007/978-3-031-05230-9_94.
- [4] Yang X. W., Wu D.X., Zou X.F., Chen H. Y., Zhang, S.:An analysis of digging anchor machine stability and track wear under digging conditions. Scientific Reports2022. 12 (1), 17738, DOI: 10.1038/s41598-022-22738-4.
- [5] Szewerda K.,Krenicky T.:Use of the MBS method in mining industry R&D projects. Mining Machines 2022. 40 (2), pp. 110-120.DOI: 10.32056/KOMAG2022.2.6.
- [6] Vita L., Gattamelata D., Pessina D.:Retrofitting Agricultural Self-Propelled Machines with Roll-Over and Tip-Over Protective Structures. Safety2021. 7 (2), DOI: 10.3390/safety7020046.
- [7] Directive 2006/42/EC of the European Parliament and of the Council of 17 May 2006 on machinery, and amending Directive 95/16/EC, Brussels, Belgium.
- [8] Dudek M., Świtoński E., Winkler T., Prostański D., Wyrobek E., Tokarczyk J., Bojara S.: Komputerowo wspomagane metody projektowania samojezdnych maszyn chodnikowych (Computer aided methods for designing self-propelledroadheading machines). CMG KOMAG, Gliwice 2003. ISBN 83-919228-4-7.
- [9] Tokarczyk J., Dudek, M. (2016). Ocena rozwiązań konstrukcyjnych metodami wirtualnego prototypowania (in Polish).In: Methods and tools for computer aiding the engineering operations during lifecycle of mining machinery. Selected problems.ITG KOMAG 2016. pp.81-102. ISBN 978-83-65593-00-9.
- [10] PN-G-50034:2004 Ochrona pracy w górnictwie. Kombajny ścianowe. Wymagania bezpieczeństwa i ergonomii (in Polish).
- [11] PN-G-50035:2004 Ochrona pracy w górnictwie –Kombajny chodnikowe –Wymagania bezpieczeństwa i ergonomii (in Polish).
- [12] EN 12111:2014 Tunnelling machines –Road headers and continuous miners –Safety requirements.
- [13] PN-G-50033:1996 Ochrona pracy w górnictwie –Ładowarki –Wymagania bezpieczeństwa i ergonomii (in Polish).
- [14] PN-G-50047:1997 Ochrona pracy w górnictwie –Wiertnice –Wymagania bezpieczeństwa i ergonomii (in Polish).
- [15] PN-EN 1804+A1:2011: Maszyny dla górnictwa podziemnego –Wymagania bezpieczeństwa dla obudowy zmechanizowanej (in Polish).
- [16] Ambrosius L.: AutoCAD Platform Customization: User Interface, AutoLISP, VBA, and Beyond. SYBEX (WILEY NETWORK) 2015, ISBN 978-1-118-79890-4.
- [17] https://documentation.help/AutoCAD-ALISP-VLISP/documentation.pdf, "AutoLISP Developer's Guide" (official AutoCAD documentation), accessed 12.03.2025.
- [18] Mansfield R.:Mastering VBA for Microsoft Office 2016. John Wiley & Sons2016, ISBN 978-1-119-225386.
- [19] https://learn.microsoft.com/en-us/office/vba/api/overview/word, Word Visual Basic for Applications (VBA) reference, accessed 12.03.2025
- [20] https://www.dreamstime.com, accessed: 12.03.2025.
- [21] https://www.trojmiasto.pl, accessed: 12.03.2025.
- [22] Dudek M.:Implementacja metody badania stateczności maszyn wydobywczych w środowisku programów CAD (Implementation of a method for testing the stability of mining machines in the environment of CAD programs). Przegląd Górniczy2012, 68 (10), pp. 26-36.
- [23] Dudek M.:Opracowanie metodyki badań modelowych stateczności kombajnu chodnikowego (Working out of methodology for model tests of a roadheader stability). CMG KOMAG, Gliwice1999.
- [24] Malec M., Stańczak L.:Innovative Mining Techniques and Technologies –Review of Selected KOMTECH-IMTech 2019.In: Conference Proceedings –Part 2. Mining Machines2020, 162, pp. 13-25. DOI: 10.32056/KOMAG2020.2.2
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b60237d7-03ce-4ce6-972a-b354558d3380
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