Faculty of Technical Sciences

Subject: Designing the Hoisting Machines (17.M2408A)

Native organizations units: No data
General information:
 
Category Professional-applicative
Scientific or art field Projektovanje i ispitivanje mašina i konstrukcija, transportna tehnika i logistika
Interdisciplinary No
ECTS 6
Educational goal:

Gaining basic and advanced knowledge in the field of hoisting machines (cranes, elevating platforms, industrial trucks).

Educational outcome:

Readiness for the individual work on the design and usage of machines in this field.

Course content:

Basic characteristics of hoisting machines. Introduction into the limit state method for the proof of crane competence. Load lifting attachments. Crane hoisting drive: concept solutions, choice and calculation of elements. Lifting devices - jacks. Rail mounted crane/trolley travelling drive: concept solutions, choice and calculation of elements, travelling resistance, wheel slipping and skewing. Rope travelling drive: analysis of resistance and the influence of rope stretching manner. Slewing drive: concept solutions, elements, slewing resistance. Luffing drive: concept solutions, elements, analysis of loadings. Industrial cranes (basic characteristics, configurations and analysis of external loadings): bridge, portal and semiportal bridge cranes, harbour cranes (portal-slewing, container), wall and mast type jib cranes, tower cranes, S/R cranes, mobile cranes. Stability against crane overturning. Crane structure – defining the load combinations relevant for the proof of competence. Basic calculations (example of a bridge crane structure). Elevating (load and working) platforms – concept solutions, analysis of external loadings, stability. Forklift trucks: basic characteristics, concept solutions, stability. Procedure of designing the hoisting machines and producing its technical documentation.

Teaching methods:

Auditory lectures, theoretical part of the subject. Auditory, computational, laboratory, and computer aided practice classes. Students extend theoretical knowledge with practical examples in auditory classes. Driving systems of typical crane working devices and structures are calculated in the computational classes. The gained theoretical knowledge is applied using the disposable equipment in laboratory classes. Computer aided classes include the application of commercial software for crane designing and producing its technical documentation. Individual consultations.

Literature:
Authors Title Year Publisher Language
Šostakov R., Zelić A. Dizalice (skripta sa praktikumom) 2018 FTN Novi Sad Serbian language
Scheffler M., Feyrer K., Matthias K. Fördermaschinen 1998 Vieweg & Sohn, Braunschweig/Wiesbaden German
Alexandrov, M. Materials Handling Equipments 1981 Mir Publishers English
Ostrić, D., Tošić, S. Dizalice 2005 Mašinski fakultet, Beograd Serbian language
Scheffler M. Grundlagen der Fördertechnik - Elemente und Triebwerke 1994 Vieweg & Sohn, Braunchweig German
Knowledge evaluation:
Course activity Pre-examination Obligations Number of points
Project Yes Yes 30.00
Written part of the exam - tasks and theory No Yes 40.00
Oral part of the exam No Yes 30.00
Lecturers:
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vanr. prof. dr Zelić Atila

Associate Professor

Practical classes
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Asistent Katona Mirko

Assistant - Master

Computational classes
API Image

Asistent Katona Mirko

Assistant - Master

Practical classes
API Image

vanr. prof. dr Zelić Atila

Associate Professor

Lectures
API Image

vanr. prof. dr Zelić Atila

Associate Professor

Computational classes
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vanr. prof. dr Đokić Radomir

Associate Professor

Lectures

Faculty of Technical Sciences

© 2024. Faculty of Technical Sciences.

Contact:

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© 2024. Faculty of Technical Sciences.