Development of a New Generation High Crushing Capacity Jaw Crusher with an Automatically Adjusted Closed Side Settings

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Ozge Guler
Mustafa Cemal Çakır

Abstract

The design and development of a new generation high crushing capacity jaw crusher, developed for the first time in Turkey and whose Closed Side Settings (CSS) may be automatically adjusted hydraulically, were investigated in this study. The calculations for the crusher developed for this purpose were included in the paper. The design modifications made to expand the crusher's jaw stroke from 27 mm to 40 mm were documented, and the capacity increase resulting from this was theoretically calculated and proven by a wide range of field tests conducted after the jaw crusher was manufactured. Field testing and their findings were also thoroughly covered in the paper. The forces on the crusher jaw and bearings, the crusher body geometry and crusher material (via fatigue analysis), and the dynamic performance of the system (via vibration analysis of the carrier system) were examined as the outcome of the FEM (Finite Element Method) and DEM (Discrete Element Method) analyses performed after the theoretical calculations. With improvements made based on the findings gained, the theoretical and practical harmony of the created jaw crusher system was realized. Field testing has proven that the adjustment procedure takes no more than 3 minutes and requires no human participation. As a result of this research, a patent application for the created automation algorithm was filed.

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How to Cite
Guler, O., & Çakır, M. C. (2023). Development of a New Generation High Crushing Capacity Jaw Crusher with an Automatically Adjusted Closed Side Settings . The European Journal of Research and Development, 3(4), 161–177. https://doi.org/10.56038/ejrnd.v3i4.304
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References

J. G. Donovan, Fracture Toughness Based Models for the Prediction of Power Consumption, Product Size, and Capacity of Jaw Crushers, Phd Thesis, Blacksburg VA (2003)

S. Yavuz, Kırıcılar, Tuna Dijital Basım (2021)

O. Ozcan, N.A. Toprak, İ. Göktaş, Bir Kırma Eleme Tesisinin Performansının Değerlendirilmesi ve Optimizasyonu, Hacettepe Üniversitesi, (2018). DOI: https://doi.org/10.30797/madencilik.433914

Yusuf Arman, Kırma-Eleme ve Taşıma Makinaları Seminer Notları, (2014)

B.B.V.L. Deepak, Optimum Design and Analysis of the Swinging Jaw Plate of a Single Toggle Jaw Crusher, National Institute of Technology Rourkela, MSc Thesis, India (2010)

M.F. Oduori, D.M. Munyasi, S.M. Mutuli, Analysis of the Single Toggle Jaw Crusher Force Transmission Chracteristics, The University of Nairobi, MSc Thesis, Kenya (2016) DOI: https://doi.org/10.1155/2016/1578342

S.K. Garnaik, Computer Aided Design of Jaw Crusher, National Institute of technology

Rourkela, MSc Thesis, India (2010)

L. Zhang, X. Shen, S. Cao, C. Lv, Application of Orthogonal Experiments in Simulation and Optimization of Jaw Crusher on Traveling Characteristic Value of Moving Jaw, Mechanics and Materials, , (215-216) 101-104, (2012) DOI: https://doi.org/10.4028/www.scientific.net/AMM.215-216.101

M. Fusheng, L. Hui, L. Xingxue, X. Hongzhi, Jaw Crusher based on Discrete Element Method, Mechanics and Materials, (312) 101-105, (2013) DOI: https://doi.org/10.4028/www.scientific.net/AMM.312.101

Y. Guan, Q. Zhang, Z. Zhang, Y.Xiao, Modeling Simulation and Kinematic Analysis based on Pro/Engineer for Jaw Crusher Mechanism, (2011)

D. Legendre, R. Zevenhoven, Assessing the Energy Efficiency of a Jaw Crusher, Elsevier, 30 1-12, (2014) DOI: https://doi.org/10.1016/j.energy.2014.04.036

H.E. Rose and J.E. English, Trans. IMM., 76- C32, (1967).

E.G. Kelly, D.J Spottiswood, The breakage function; What is it really?- Minerals Engineering, vol. 3, no. 5, pp 405-414, (1990) DOI: https://doi.org/10.1016/0892-6875(90)90034-9

A.F. Taggart, Handbook of Mineral Dressing, John Wiley and Sons, London, (1953).

E.A. Hersam, Trans.AIME, 68 (463), (1923).

J. Broman, Engineering and Mining Journal, 69, June (1984).

I.A. Juan, Sustainability Assessment and Development of Guidelines for Digital Fabrication in Construction,Spain (1987)