Design and Analysis of Structural Members of the Jib Crane


Authors : BTJ Pathirathna

Volume/Issue : Volume 9 - 2024, Issue 6 - June

Google Scholar : https://tinyurl.com/yvs4wa3k

Scribd : https://tinyurl.com/yc656947

DOI : https://doi.org/10.38124/ijisrt/IJISRT24JUN1211

Abstract : This study has been undertaken to investigate and estimate design needs and propose optimum solution for lifting facility, and detailed calculation for lifting facility at Water Treatment Plant. Prior to decide optimum solution for the problem, evaluation of design concept has been done through various steps. Function decomposition and identification of individual function of the each subsystem, internal and external search for creating solution domain, next, best optimum solution has been selected via logical approach which was pairwise comparison and weighted decision matrix, and detailed calculation is performed as final step of the research.

Keywords : Jib Crane, Payload, Tensile Strength, BS Standards.

References :

  1. Cranes — Proof of competence of steel structures, ISO20332
  2. BS-ISO-8686-1-2012- Cranes-Design principles for loads and load combinations
  3. BS-ISO-20332-2016- Cranes-Proof-of-Competence-of-Steel-Structuress
  4. IS 807: Design, erection and testing (structural portion) of cranes and hoists - Code of practice
  5. Mechanics of Materials, R.C Hibbeler
  6. Detail Design and Analysis of A Free Standing I Beam Jib Crane M.Dhanoosha1,V.GowthamReddy2
  7. Design and Analysis of Wall Mounted Jib Crane 1Naveen.A.Hanchate, 2Akhil.A.Deshpande
  8. Design Concepts for Jib Cranes, JAMES M. FISHER and STEVEN J. THOMAS
  9. Design variations optimization of jib crane 24500 N using I beam, S Sirojuddin1,*, K Z A Nurfarihah1 and M Nurkhozin2
  10. The Design and Construction of an Intelligent Power Assist Jib Crane Harry M. Pearce
  11. American Institute of Steel Construction, Inc. (AISC), (1999), Load and Resistance Factor Design Specification for Structural Steel Buildings, Chicago, IL.
  12. Briskorn D and Angeloudis P 2015 Scheduling Co-Operating Stacking Cranes With Predetermined Container Sequences Discrete Applied Mathematics. 201 70-85
  13. Mechanics-of-Materials-Mcgraw-2012-Ed6-978-0-07-338028-5
  14. Lee D H, Kim S J, Lee, M S and Paik J K 2019 Ultimate limit state based design versus allowable working stress based design for box girder crane structures Thin-Walled Structures. 134 491- 507
  15. Design and Optimization of Jib Crane Boom S.D.Patil1, D.C.Mahale2 1P.G. Student, Department of Mechanical Engineering, SSVPS’S B.S.D. College of Engineering, Dhule, Mahar.,India 2Professer, Department of Mechanical Engineering, SSVPS’S B.S.D. College of Engineering, Dhule, Maharashtra, India
  16. Gerdemeli I., K. Kurt S., Tasdemir B. “Design and analysis withfinite element method of jib crane”, Faculty of Mechanical Engineering Istanbul Technical University, Turkey.
  17. Chirag A. Vakani, Shivang S. Jani “ Analysis and Optimization of 270° Jib Crane Deflection”, International Journal for Scientific Research & Development, Vol. 2, Issue 10, 2014, ISSN (online):2321-0613
  18. Ajinkya Karpe, Sainath Karpe, AjaykumarChawrai “validation of use of fem (ansys) for structural analysis of tower crane jib and static and dynamic analysis of tower crane jib using ansys”, International Journal of Innovative Research in Advanced Engineering (IJIRAE) ISSN: 2349- 2163, Volume 1 Issue 4 (May2014).

This study has been undertaken to investigate and estimate design needs and propose optimum solution for lifting facility, and detailed calculation for lifting facility at Water Treatment Plant. Prior to decide optimum solution for the problem, evaluation of design concept has been done through various steps. Function decomposition and identification of individual function of the each subsystem, internal and external search for creating solution domain, next, best optimum solution has been selected via logical approach which was pairwise comparison and weighted decision matrix, and detailed calculation is performed as final step of the research.

Keywords : Jib Crane, Payload, Tensile Strength, BS Standards.

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