Material Selection for Crusher Jaw in a Jaw Crusher Equipment

Similar documents
Crushing. Comminution

Theoretical Analysis of Swing Jaw Plates used in Heat Exchanger

FACULTY OF ENGINEERING AND THE BUILT ENVIRONMENT. Department of Chemical, Metallurgical and Materials Engineering Metallurgical Engineering

Chapter 8 Particle Size Reduction(Chapter 10)

Design, Fabrication and Testing of a Double Roll Crusher

AN EVALUATION OF A MODIFIED PRODUCT SIZE DISTRIBUTION MODEL BASED ON T-FAMILY CURVES FOR THREE DIFFERENT CRUSHERS

High strength low alloy (HSLA).

Effect of Heat Treatments on Fatigue Failure and Fracture Toughness of Various Tool Steels A Review

EVALUATION OF THERMAL FATIGUE PROPERTIES OF HSS ROLL MATERIALS. Jong Il Park a Chang Kyu Kim b Sunghak Lee b

> RX12UF. Cobalt content w/w. Grade. Properties and recommendations. HARTMETALL ESTECH AG 6285 Hitzkirch

Transition temperature

Lecture # 11 References:

Optimized crusher selection for the cement industry

Sandvik Construction Tools. Road Planning and Reclaiming RC400

Sandvik Manganese at the heart of productivity

Engineering Materials 2

INDIAN INSTITUTE OF TECHNOLOGY ROORKEE NPTEL NPTEL ONLINE CERTIFICATION COURSE Mechanical Operations. Lecture-10 Size reduction

MSE-226 Engineering Materials

BFF1113 Engineering Materials DR. NOOR MAZNI ISMAIL FACULTY OF MANUFACTURING ENGINEERING

MetE-215 Materials Processing Laboratory EXPERIMENT 1 PARTICLE SIZE REDUCTION AND ANALYSIS

Industeel Industeel, the right steel Creusabro at the right place Unique, Best, Proven

AN OVERVIEW ON HIGH MANGANESE STEEL CASTING

Mineral Beneficiation

Lecture # 11. Line defects (1D) / Dislocations

Journal of University of Babylon, Engineering Sciences, Vol.(26), No.(2): 2018.

Operating Instruction

EFFECTS OF COOLING MEDIA ON THE MECHANICAL PROPERTIES AND MICROSTRUCTURE OF SAND AND DIE CASTING ALUMINIUM ALLOYS

Grinding and comminution. Gabrie Meesters

Contents. PREFACE TO THE FOURTH EDITION... xiii ACKNOWLEDGEMENTS...xv GENERAL INTRODUCTION... xvii

Figure 1: Schematic block-diagram of the project test work

Fractography: The Way Things Fracture

Steel Properties. History of Steel

INPUT MATERIAL DATA FOR ADVANCE COMPUTATIONAL MODELS FOR FORMING STAINLESS MATERIAL

Rajamangala University of Technology Krungthep, 2,Nanglinchee Road, Tungmahamek, Sathorn, Bangkok, 10120, Thailand

Glossary of Steel Terms

STEEL. Classification of steel. Amount of carbon Amount of deoxidization Amount of alloys Depth of hardening. 15-Nov-17. R.D.

Maejo International Journal of Science and Technology

Microstructures of Mild Steel Spring after Heat Treatment.

Study on Crushing Mechanism of Cone Crusher

THE IMPROVEMENT OF THE EFFICIENCY OF AN ALUMINOSILICATE CRUSHING CIRCUIT

High pressure grinding rolls applications for the platinum industry

SAFDUR 800 E. MMA Electrodes Hardfacing

Effect of Crusher Type and Crusher Discharge Setting On Washability Characteristics of Coal

MANUFACTURING AND EVALUATING CU-BASED SHAPE MEMORY ALLOY BY HOT EXTRUSION OF PM SAMPLES MADE BY MECHANICAL ALLOYING

Experimental Study on Tool Parameters of Al2O3 in High Speed Machining

What is Steel? Prepared By: John Cawley

Tribological Wear Behavior of AISI 630 (17-4 PH) Stainless Steel Hardened by Precipitation Hardening

Seam Welded Air-Hardenable Corrosion Resistant Steel Tubing: Automotive Applications Overview

Our engineers can then manufacture screens to fit in your equipment and ensure that performance requirements are met.

Quenching Heat Treatment Effects on Steel Welds.

ลวดเช อมพ เศษ. Weld Mold / USA. Tool and Die Alloy Welding Materials

Research and Application of Carbidic Austempered Ductile Iron

EFFECT OF PROCESS PARAMETERS ON THE PHYSICAL PROPERTIES OF WIRES PRODUCED BY FRICTION EXTRUSION METHOD

Resource Efficient Mining Processes of Tomorrow

Investigation of aging heat treatment on microstructure and mechanical properties of 316L austenitic stainless steel weld metal

CHAPTER 20: SIZE REDUCTION EQUIPMENT FOR SIZE REDUCTION, CARE AND MAINTENANCE Unit operation in which the average size of solid pieces of food is

Asian Research Consortium

Design of a Horizontal Creep Testing Machine

Effect of Heat Treatment on Microstructure and Mechanical Properties of Medium Carbon Steel

The TMAC Resources Inc. Hope Bay Project An Innovative Approach. Gerhard Bezuidenhout

Development of a Constant - Stress Creep Testing Equipment.

PARAMETRIC OPTIMIZATION OF HEAT TREATMENT PROCESS OF STEEL BEARING USING TAGUCHI TECHNIQUES

Sandvik Construction Tools. Road Planing and Reclaiming RC400

STEELS & COATINGS FOR CUTTING TOOL APPLICATIONS

A high performance wear resistant steel. Guaranted values (Weight %) C Mn Ni Cr Mo S ,60 0,40 1,60 0,20 0,002

Minerals Enduron HPGR High Pressure Grinding Roll

Using Programming to Optimize Mineral Processing

CLASSIFICATION OF STEELS

Application of Taguchi Method for Optimizing Material Removal Rate in Turning of En-47 Spring Steel

MSE 351 Engineering Ceramics I

VBN Components AB. 3D-printing for demanding applications. ESS, Max IV, IUC Syd/Big Science Dk Lund,

Enhancement in Performance of Connecting Rod Using Surface Treatment Process

Maximum performance in a variety of applications. DURAFORCE milling and mixing rotor for the WR model range

THE EFFECT OF CARBURIZATION ON HARDNESS AND WEAR PROPERTIES OF THE MILD STEEL SAMPLES

MINERAL PROCESsINCI PLANT DESIGN AND COST EsTIMATES

TEACHING MECHANICAL ENGINEERING STUDENTS ABOUT MANUFACTURING PROCESS SELECTION USING ASHBY CHARTS. Abstract

[Kumar, 5(12): December2018] ISSN DOI /zenodo Impact Factor

Quend 700. Extra High Strength Structural Steel. Dimensions. 1 Steel description and applications. 4 Flatness, tolerances & surface properties

A Tailor Made Approach for the Beneficiation of Phosphate Rock

An Experimental Investigation to Optimize the Process Parameters of Surface Finish in Turning AISI 202 Stainless Steel Using Taguchi Approach

Material Selection Jacob Klinginsmith, Russ Glass Naomi Sanders, Becky Moffitt

Materials & Processes in Manufacturing. Introduction. Introduction ME 151. Chapter 6 Ferrous Metals and Alloys

DOZER EDGES & END BITS

Custom 450 Stainless Steel, UNS S45000

Nordberg NP series impact crushers. Wear parts application guide

Design of Comminution Circuit for Optimum Performance of the Gravity Separation Unit at Itakpe Iron Ore Processing Plant, Nigeria

Steps in Failure Analysis

COMMINUTION MODELING OF PRIMARY BALL MILLS OF MIDUK COPPER MINE USING MATLAB SOFTWARE

Materials Services Materials Trading. Powder Metals. Additive Manufacturing

STAINLESS STEELS. Chromium and nickel content in the various groups of stainless steels

Index. Atmosphere Effect on fatigue processes, 49, 200 Auger spectroscopy, 51 A533-B steel Mode II fracture, 235, 242 B

High Pressure Grinding Rolls HRC. The evolution of HPGR technology

Mechanical behavior of crystalline materials - Stress Types and Tensile Behaviour

Critical Analysis of Vibration Behaviourof Multi-Leaf Spring under Loading Condition by ANSYS Software

Experimental Analysis on TIG welding process parameters of dissimilar metals SS304-SS202 using Taguchi Method

Ultimate Tensile Range (ksi min) Maximum Working Temp. 250 F 449/ /125 (class I) 250 F 425 F 325/ F 300/ F 242/ F 242/211

MODELING STRESS AND DISTORTION OF FULL-FLOAT TRUCK AXLE DURING INDUCTION HARDENING PROCESS

New Idea for CrushersDesign in Cement Factories

Mechanisms for Boron Effect on Microstructure and Creep Strength of Ferritic Power Plant Steels

Cryogenic Technique for the Steel Heat Treatment

Transcription:

International Journal of Materials Engineering 2015, 5(2): 17-22 DOI: 10.5923/j.ijme.20150502.01 Material Selection for Crusher Jaw in a Jaw Crusher Equipment Adelana Rasaki Adetunji 1,2, Abiodun Ayodeji Abioye 1,2, Dayo Adeyemi Isadare 1,2, Kunle Joseph Akinluwade 1,2,* 1 Department of Engineering, Prototype Engineering Development Institute (PEDI), Ilesa, [National Agency for Science and Engineering Infrastructure, NASENI] Nigeria 2 Department of Materials Science and Engineering, Obafemi Awolowo University, Ile-Ife, Nigeria Abstract There have been reported cases of the crusher jaw failure due to the high level of impact, tear and shear stresses experienced by the crusher jaw during service. The purpose of this paper is to select a suitable candidate material for the design of crusher jaw that can sustain fracture by any of the three modes of failure tear, shear and impact at low cost using CES EduPack. Keywords Crusher jaw, Material selection, CES EduPack, Fracture, Comminution 1. Introduction The mining and preparation of ore for extraction of the valuable minerals and production of a commercial end product of such minerals is called mineral processing or ore dressing. Apart from regulating the size of the ore, it is a process of physically separating the grains of valuable minerals from the gangue minerals, to produce an enriched portion, or concentrate, containing most of the valuable minerals, and a discard, or tailing, containing predominantly the gangue minerals (Wills and Atkinson, 1991). Mineral processing is the art of treating crude ores and mineral products in order to separate the valuable minerals from the waste rock, or gangue. It is the first process that most ores undergo after mining in order to provide a more concentrated material for the procedures of extractive metallurgy. The primary operations are comminution and concentration. The first mechanical stage in mineral processing is comminution which involves liberation of valuable minerals from the gangue. It is usually a dry operation carried out in two or three stages. The large lumps of the run mines are reduced in the primary crushing stage; this can reduce the lump of 1.5m to 10-20 cm using jaw crushers. Primary crushers are commonly designed to operate 75% of the available time, mainly because of interruptions caused by insufficient crusher feed and by mechanical delays in the crusher (Lewis, et.al, 1976). The reclaiming operations of the primary crusher products from the ore storage to the disposal * Corresponding author: jakinluwade@yahoo.com (Kunle Joseph Akinluwade) Published online at http://journal.sapub.org/ijme Copyright 2015 Scientific & Academic Publishing. All Rights Reserved of the final crusher product involves the secondary crushing process, it is usually between 0.5 and 2cm. the secondary plant consists of appropriate crushers and screens, this is one or two size reduction stages, although more than two size reduction stages may be involved in secondary crushing if the ore is extra hard or in a case to minimize the production of fines. For slippery and tough ore, the tertiary crushing stage is usually substituted by coarse grinding in rod mills. The heavy duty machines use in the first mechanical stage of comminution are mainly jaw crushers. The distinctive feature of this class of crusher is the two plates which open and shut like animal Jaws (Grieco and Grieco, 1985), this jaw is called crusher jaw. The crusher jaws are set at an acute angle such that one jaw is pivoted and the other jaw is fixed. The pivoted jaw swings around the pivot and make impact on the fixed jaw, crushing the fed lumps in the jaw crusher. Essentially, the task of selection is that of matching the choice of material to the requirements of the design (Ashby, 2005 and Charles et.al., 1997) Novel or well selected materials provide designers with excellent features. For instance, new materials offer promising perspectives in assisting automotive engineers to achieve improvement in vehicle fuel efficiency (Hemanth, et. al, 2011). They have been reported cases of the crusher jaw failure due to the high level of impact, tear and shear stresses experienced by the crusher jaw during service. The purpose of this paper is to select a suitable candidate material for the design of crusher jaw that can sustain fracture by any of the three modes of failure tear, shear and impact at low cost using CES EduPack. The CES material and process selection software is an example of such a computer implementation (Ashby, 2005). Other analytical techniques may also be

18 Adelana Rasaki Adetunji et al.: Material Selection for Crusher Jaw in a Jaw Crusher Equipment adopted for various designs (Chan and Zhou, 1994 and Dieter, 1991). 2. Methodology The method of Function-Objectives-Constraints used by Akinluwade et al., (2015b) was applied in this study. The essentials of the study methodology are described in the next sub-sections. 2.1. Design and Function An impact mechanism was designed in Pro- Engineer (Pro-E) to simulate the loading conditions of a typical jaw crusher. It was deduced that a load of 3.28 x 10 8 Pa may cause failure of the hammer. CES EduPack was applied to select materials for the crusher jaw using the Function-Objectives-Constraints approach. The specific function of a crusher jaw is to propagate and sustain fracture by any of three modes of failure tear, shear and impact. 2.2. Constraints and Objective Constraints represent crucial non-negotiable design conditions to be met. Constraints for the design of the crusher jaw are: Contact stress must not cause damage to either surface; toughness (for pivots exposed to shock loading) not be lower than 1.3 x 10 8 Pa.m 0.5 ; thermal expansion (for high frequency crushers) not beyond 10 x 10-5 ; hardness not lower than 4.9 x 10 9 Pa with yield strength not beyond 1.80 x 10 9 Pa and cost not beyond 10 USD/Kg. Technical constraints were deduced from dynamic simulation while cost constraint is an administrative decision. Objectives represent what the design is required to maximize, minimize or maintain in its function (Akinluwade, et al., 2014b). Accordingly, the crusher jaw is require to propagate and sustain fracture by any of three modes of failure tear, shear and impact. 3. Result and Discussion For the purpose of this application where preference is given for impact strength, all material families other than steel were screened off. The selection collection now parades stainless steel, low alloy steel, tool steel and maraging steel. Ranking was done on the basis of Fig 1 (Yield strength as a function of fracture toughness), Fig 2 (Fracture toughness as a function of price), Fig 3 (Yield strength as a function of price), Fig 4 (Yield strength as a function of thermal expansion coefficient), Fig 5 (Hardness (Vickers) as a function of density) and Table 1 (Material properties values considered for selected candidate materials). The final material selected is Low alloy steel AISI 9255 tempered at 205 C and Oil, although it ranked fourth in fracture toughness, it has the second highest yield strength with the second lowest density, it has low hardness when compared with tool and stainless steel (the hardness is enough to crush silica lump) and is the cheapest. The choice of Low alloy steel AISI 9255 tempered at 205 and Oil gives better performance while minimizing cost. Figure 1. Yield strength as a function of fracture toughness

International Journal of Materials Engineering 2015, 5(2): 17-22 19 Figure 2. Fracture toughness as a function of price Figure 3. Yield strength as a function of price

20 Adelana Rasaki Adetunji et al.: Material Selection for Crusher Jaw in a Jaw Crusher Equipment Figure 4. Yield strength as a function of thermal expansion coefficient Table 1. Material properties values considered for selected candidate materials Materials Density (Kgm -3 ) Yield Strength (Pa) Fracture Toughness (Pa.m 0.5 ) Thermal Expansion (Strain/ C) Hardness (Pa) Cost (Usd/Kg) Maraging steel,280(300) 7.96e3 2e9 8.5e7 1.04e-5 5.39e9 10.4 250 maraging steel 7.96e3 1.81e9 1.3e8 1e-5 4.71e9 10.3 Tool steel AISI A3 (oil hardening cold work) 8.08e3 2.37e9 2.03e7 1.18e-5 8.24e9 10.1 Tool steel AISI 06 (oil hardening cold work) 7.77e3 2.21e9 2.15e7 1.18e-5 7.85e9 4.51 Low alloy steel AISI 9255 tempered at 205 C and oil 7.9e3 2.26e9 3.5e7 1.3e-5 6.47e9 0.882 Low alloy steel AISI 4340 tempered at 205 C and oil 7.9e3 1.85e9 6.6e7 1.3e-5 5.64e9 1.36 Stainless steel martensitic AISI 44 C 7.9e3 2.09e9 2.8e7 1.1e-5 6.77e9 4.37

International Journal of Materials Engineering 2015, 5(2): 17-22 21 Table 2. Selection consideration for shortlisted materials (Based on Figs. 4, 5 and 6) Materials Strength Comment Low alloy steel AISI 9255 tempered at 205 C and Oil Cheapest It ranked fourth in fracture toughness, it has the second highest yield strength with the second lowest density, it has low hardness when compared with tool and stainless steel (the hardness is enough to crush silica lump) Tool steel AISI 06 (Oil hardening cold work) Lowest density It ranked third in yield strength, second highest in hardness with the lowest density, low fracture toughness but could still perform. Stainless steel Martensitic AISI 44 C Same density with low alloy steel It ranked third in hardness, thermal expansion and cost with second highest in density. Fourth in yield strength but still fall within performance range Low alloy steel AISI 4340 tempered at 205 C and oil Second cheapest and same density with stainless steel It ranked third in fracture toughness and relative hardness Tool steel AISI A3 (oil hardening cold work) Highest yield strength and hardness It has highest density, lowest fracture toughness and relatively expensive which may limit its use. In extreme case of high yield strength and hardness it can be recommended 250 Maraging steel Maraging steel,280(300) Highest facture toughness and lowest thermal expansion coefficient. Second highest fracture toughness and second lowest thermal expansion coefficient Consideration could be given if the jaw crusher would be operating at high temperature where durability is necessary due to high fracture toughness and low thermal expansion is necessary but the cost may limit its use. It has the lowest yield strength It very expensive with fair hardness and yield strength. Figure 5. Hardness (Vickers) as a function of density

22 Adelana Rasaki Adetunji et al.: Material Selection for Crusher Jaw in a Jaw Crusher Equipment 4. Conclusions The study concluded that Low alloy steel AISI 9255 tempered at 205 C and oil is the material choice that maximizes performance and minimizes cost for crusher jaw in applications whose service requirements are bounded by the stated constraints. This choice lowers production cost appreciably while also upholding performance in all essential aspects of the service environment. REFERENCES [1] Akinluwade, K. J., Ogwu, G. E., Badamasi, O. T., Taiwo, A. T., Adetunji, A. R. and O. O. Adewoye. (2014b). Material Selection for Axial Spring in a Prototype Cam-Follower Mechanism. British Journal of Applied Science & Technology 4(22): 3134-3142. [2] Akinluwade, K. J., Omole, F. O., Isadare, D. A., Adesina, O. S., Adetunji, A. R. (2015b) Materials Selection for heat sinks in HPC microchip-based circuitries. British Journal of Applied Science & Technology, 7(1): 124-133, 2015. [3] Wills, B.A. and Atkinson, K. (1991). The development of minerals engineering in the 20th century, Minerals Engng., 4(7-11), 643. [4] Lewis, F.M., Coburn, J.L., and Bhappu, R.B. (1976). Comminution: A guide to size-reduction system design. Min. Engng., 28(Sept.), 29. [5] Grieco, F.W. and Grieco, J.P. (1985). Manufacturing and refurbishing of jaw crushers, CIM Bull., 78(Oct.), 38. [6] Ashby MF. Materials Selection in Mechanical Design; 3rd edition. Butterworth Heinemann, Oxford, UK; 2005. [7] Charles JA, Crane FAA, Furness JAG. Selection and Use of Engineering Materials;3rd Edition. Butterworth Heinemann Oxford: UK; 1997. [8] Hemanth Kumar, Swamy TR, Chandrashekar RP, Taguchi TK. Technique for the Simultaneous Optimization of Tribological Parameters in Metal Matrix Composite. Journal of Minerals & Materials Characterization & Engineering. 2011;10(12):1179-1188. [9] Chan SL, Zhou ZH. Second-Order Analysis of Frames Using a Single Imperfect Element per Member. Journal of Structural Engineering, ASCE. 1994;120(6):703-717. British Journal of Applied Science & Technology, 4(22): 3134-3142, 2014 3142 [10] Dieter GE. Engineering Design, a Materials and Processing Approach; 2nd edition. McGraw-Hill: New York, USA; 1991.