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Comparative Studies of the Seatings of Propulsion Plants and Auxiliary Machinery on Chocks Made of Metal and Cast of Resin Part I. Mounting on Steel Chocks

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1. Cherry E., Church J.E. (2014): Shipboard Maintenance of Machinery. Engine Foundations. ITW Chockfast Marine – Industrial Grouts, Adhesives, Repair Products and Coatings. Retrieved from: http://www.chockfast.com/reference.html. Search in Google Scholar

2. Germanischer Lloyd (2010): Guidelines for the Seating of Propulsion Plants and Auxiliary Machinery. Rules for Classification and Construction, VI, Part 4, Chapter 3. Search in Google Scholar

3. Grudziński K., Jaroszewicz W. (2002): Seating of Machines and Devices on Foundation Chocks Cast of EPY Resin Compound. ZAPOL, Dmochowski & Sobczyk Registered Partnership, Szczecin, 2002 (in Polish), 2004 (in English), 2005 (in Russian). Search in Google Scholar

4. Grudziński P., Konowalski K. (2012): Studies of Flexibility of Steel Adjustable Foundation Chock. Advances in Manufacturing Science and Technology, 36(2), 79–90. Search in Google Scholar

5. Grudziński P., Konowalski K. (2014): Experimental Investigations of Normal Deformations of Foundation Chocks Used in the Seating of Heavy Machines and Devices. Advances in Manufacturing Science and Technology Part I: Theoretical fundamentals and investigations of a steel chock, 38(1), 63–76; Part II. Experimental investigations of a chock cast of EPY resin, 38(2), 51–61.10.2478/amst-2014-0010 Search in Google Scholar

6. Grudziński K. (2008): Comparative Analysis of the Seatings of Reciprocating Compressors on the Foundations of Concrete and Steel Structures (in Polish). Report No. 1/08, Politechnika Szczecińska, Katedra Mechaniki i Podstaw Konstrukcji Maszyn, Szczecin (unpublished). Search in Google Scholar

7. Grudziński P. (2013): Research into the Vibration Isolating Properties of EPY Resin and the Possibility of Its Use to Reduce the Vibrations and Insulation of Structure-Borne Sound (in Polish). Sprawozdanie merytoryczne z wykonania projektu badawczego nr N N502 194938, Zachodniopomorski Uniwersytet Technologiczny w Szczecinie, Katedra Mechaniki i Podstaw Konstrukcji Maszyn, Szczecin 2013 (unpublished). Search in Google Scholar

8. Piaseczny L. (2002): Designing of Power Plant Rechocking Using a Pourable Polymer on Example of Ship’s Power Plant. Eksploatacja i Niezawodność Nr 2, 26–38, 2002. Search in Google Scholar

9. Wärtsilä (2014): Product Guide W32-1/2014, 15. Foundation, Wärtsilä, Ship Power Technology, Vaasa. Search in Google Scholar

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