sag mills and ball mills pdf

  • Ball mill and sag mill girth gear, trunnion head

    Ball mill and sag mill girth gear, trunnion head. Both the ball mill and the sag mill can process non-metals, ferrous metals, non-ferrous metals, rare metals, etc., and are divided into dry and wet types to meet the needs of various materials. The structure of the ball mill and sag mill is similar.

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  • (PDF) ball mill | Sheetanshu Pandey

    The ball mill gear/pinion efficiency is the same as for a SAG mill. For a gear-driven ball mill, use the following: Total Ball Mill Motor Power = (Ebm × tonnes/hour) ÷ 0.985 ÷ 0.94 ( 10 ) The largest motor sizes currently on the market with pinion and gear drives are in the 10 MW range (these would be a twin-motor arrangement with one motor

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  • A Method of C alculating Autogenous/ Semi-Autogenous

    SAG mills mimic the same shortcoming. It follows that in order to obtain the specifi c energy (SE) to achieve a certain transfer size, based on the 80 per cent passing value, an ineffi ciency factor must be applied to the SE of single stage ball mills, rod mills or AG/SAG mills when calculating power according to the Bond Third Theory method.

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  • Mills

    Mills Technical Data. The following technical data sheets show some of the standard Ball Mills and SAG Mills that we have available.. We can supply Ball Mills, SAG Mills and other milling systems to your specific requirements given your particular technical specifications.. The selection and type of mill you require, FAG, SAG, SABC, rod or ball, is at best difficult, and depends on ultimately

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  • Orway Mineral Consultants Canada Ltd. Mississauga, ON

    and ball mills, have almost become obsolete in the move to higher milling rates required to process lower metal grades. Grinding circuits with fully autogenous (AG) or semi-autogenous (SAG) mills, often combined with ball mills are now the standard to meet the high capacity requirement for processing ores with lower metal grades.

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  • II-100 II-101 INTRODUCTION

    hemisphere. It employs the world’s largest SAG mill, 40 ft diameter and two 22 ft ball mills in the grinding circuit. In that project, the owners considered it necessary to assess the dynamic response of the foundations for the SAG and ball mills due to vibration problems experienced in other installations. Numerical models of the foundations

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  • GROSS POWER CALCULATOR

    Pictures of the insides of an AG mill and a SAG mill which have been crash stopped are shown in Figures 5 and 6 respectively. Accurate measurements of the ball filling can only be made after the mill is ground out. In this case the mill is operated with the feed turned off until all of the ore has exited the mill.

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  • INFERENTIAL MEASUREMENT OF SAG MILL PARAMETERS IV

    semiautogenous grinding (SAG) mills and is the fourth paper in a series of five papers on Inferential Measurement of SAG Mill Parameters. The development of the inferential measurement models of SAG mill discharge and feed streams and mill rock and ball charge levels, detailed earlier in the series, is summarised.

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  • II-100 II-101 INTRODUCTION

    hemisphere. It employs the world’s largest SAG mill, 40 ft diameter and two 22 ft ball mills in the grinding circuit. In that project, the owners considered it necessary to assess the dynamic response of the foundations for the SAG and ball mills due to vibration problems experienced in other installations. Numerical models of the foundations

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  • TECHNICAL NOTES 8 GRINDING R. P. King

    LG A mill power equation for SAG mills. Minerals and Metallurgical Processing. Feb 1990 pp57-62. Gross power No load power Net power drawn by the charge (8.13) The net power is calculated from Net power KD2.5L e! c./ Watts (8.14) In equation 8.14, D is the diameter inside the mill liners and Le is the effective length of the mill including the

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  • Comminution Services

    mill, followed by a wide variety of rod and ball mills. Circuit configurations, including AG, SAG, ABC or SABC, are evaluated easily. The circuit employs an integrated Distributive Control System (DCS) for monitoring plant conditions. Feed rate, mill speed, power, mill load, particle size distribution and other data are updated,

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  • Mill drives: the desire for increased power and the

    The standard method for sizing secondary ball mills (usually the overflow type) in AG/SAG circuits follows published mill supplier information with aspect ratios in the range 1:1.5 to 1:2.0, depending upon product sizing and pulp flow, i.e., the highest expected circulating loads (Morrell, 2001). The applied net power, calculated from testwork

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  • (PDF) LARGE DIAMETER SAG MILLS NEED LARGE DIAMETER BALL

    B = ball size (inch) If a power loss was in deed occurring in the manner indicated above, then. given a typical ball size of 65mm (2.5inch), such power loss would only. be noticeable in mills with

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  • [PDF] Comparison of HPGR

    DOI: 10.14288/1.0073557 Corpus ID: 138251706. Comparison of HPGR

    AG/SAG mill feed, trommel screen undersize product (-5.00 +0.00 mm), ball mill discharge and cyclone feed, overflow and underflow have been conducted in order to characterize the particle size distribution in the products and to carry out mass balancing of grinding circuits.

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  • Mill (grinding)

    SAG mill. SAG is an acronym for semi-autogenous grinding. SAG mills are autogenous mills that also use grinding balls like a ball mill. A SAG mill is usually a primary or first stage grinder. SAG mills use a ball charge of 8 to 21%. The largest SAG mill is 42'' (12.8m) in diameter, powered by a 28 MW (38,000 HP) motor.

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  • Toward a Simple Approach Determining Single Stage SAG mill

    the SAG mill and ball mill depends on the energy requirement between both duties. SS SAG mills combine the function of a SAG mill and ball mill in one equipment. SSSAG mill are typically less

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  • (PDF) ball mill | Sheetanshu Pandey

    The ball mill gear/pinion efficiency is the same as for a SAG mill. For a gear-driven ball mill, use the following: Total Ball Mill Motor Power = (Ebm × tonnes/hour) ÷ 0.985 ÷ 0.94 ( 10 ) The largest motor sizes currently on the market with pinion and gear drives are in the 10 MW range (these would be a twin-motor arrangement with one motor

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  • Impact on Grinding Mill Design of Recent New Discoveries

    SAG hardness. These breakage tests do not include ball mill grinding data. Based on the 2009 CIM paper, the ratio of macro to micro grindability is an important key to achieving a reliable SAG mill design because that ratio reveals the best split for SAG and ball mill energyon that ore.

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  • What's the Difference Between SAG Mill and Ball Mill

    The biggest characteristic of the sag mill is that the crushing ratio is large. The particle size of the materials to be ground is 300 ~ 400mm, sometimes even larger, and the minimum particle size of the materials to be discharged can reach 0.1 mm. The calculation shows that the crushing ratio can reach 3000 ~ 4000, while the ball mill’s

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  • Energy Use of Fine Grinding in Mineral Processing

    AG or SAG mill, intermediate grinding to a ball mill or tower mill, and fine grinding to a stirred mill such as an Isamill or Stirred Media Detritor (SMD). Of course, various exceptions to these typical values can be found. In fine grinding, a material with an F80 of less than 100 lm is comminuted to a P80 of 7 to 30 lm. (P80s of

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  • INFERENTIAL MEASUREMENT OF SAG MILL PARAMETERS IV

    semiautogenous grinding (SAG) mills and is the fourth paper in a series of five papers on Inferential Measurement of SAG Mill Parameters. The development of the inferential measurement models of SAG mill discharge and feed streams and mill rock and ball charge levels, detailed earlier in the series, is summarised.

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  • ONLINE SAG MILL PULSE MEASUREMENT AND OPTIMIZATION SEMI

    Ball size of 1.28 inch was used at 28% mill filling. The mill was run for 4, 8, 12, 16 and 20 minutes at 60%, 70% and 80% critical speed. The data was collected on a continuous basis and force spectrum and the force histogram were generated for each run. The histogram shown here paves the way for SAG mill signature. In other words, a SAG

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  • Optimization of mill performance by using

    Optimization of mill performance by using online ball and pulp measurements by B. Clermont* and B. de Haas* Synopsis Ball mills are usually the largest consumers of energy within a mineral concentrator. Comminution is responsible for 50% of the total mineral processing cost. In today’s global markets, expanding mining groups are trying

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  • Application of Operating Work Indices in Autogenous

    AG/SAG mill product that needs additional grinding in the ball mill, or “Corrected Ball Mill Feed.” T2’ is the 80% passing dimension of the Corrected Ball Mill Feed. Figure 1. Comparison of the Particle Size Distribution Slopes Figure 2. Relationship Between the Transfer Size Distribution Slope and T 80 or AWi0/BWi Figure 3.

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  • SAG Mill | Autogenous and Semi-Autogenous Mills | FL

    Single stage SAG Mills are very beneficial in reducing CAPEX for plants with a staged throughput approach. When future tonnage is to be increased, the SAG Mill can feed downstream ball milling to boost capacity. Fuller-Traylor SAG/AG Mills range in size from 4.3m through 12.2m in diameter with powers as high as 28,000 kW.

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  • What are the differences between ball mill and rod mill

    Ball mill and rod mill are suitable for different materials. 1. Selection by material''s hardness. Ball mill has a strong adaptation of material, and it is suitable for grinding hard materials, such as slag, iron ore, copper ore, etc. Rod mill is suitable for grinding brittle material, such as rare metals. 2.

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  • THE COMMINUTION CIRCUIT DESIGN FOR THE CONSTANCIA PROJECT

    The specific energies of the SAG and ball mills were determined using AusGrind (Ausenco’s in-house software) (Lane, Foggiatto, Bueno and McLean, 2013 and Morrell’s ) method. SAG mill specific energy was a function of the inverse of the Axb value, the mill geometry and the mill operating conditions.

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  • USING THE SMC TEST® TO PREDICT COMMINUTION CIRCUIT PERFORMANCE

    Tumbling mills, eg AG, SAG, rod and ball mills Conventional reciprocating crushers, eg jaw, gyratory and cone HPGRs Tumbling mills are described using 2 indices: M. ia. and M. ib. Crushers have one index: M. ic. HPGRs have one index: M. ih. For tumbling mills the 2 indices relate to “coarse” and “fine” ore properties plus an

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  • TECHNICAL NOTES 8 GRINDING R. P. King

    LG A mill power equation for SAG mills. Minerals and Metallurgical Processing. Feb 1990 pp57-62. Gross power No load power Net power drawn by the charge (8.13) The net power is calculated from Net power KD2.5L e! c./ Watts (8.14) In equation 8.14, D is the diameter inside the mill liners and Le is the effective length of the mill including the

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  • The Selection and Design of Mill Liners

    mills in the older plants that had many mills in parallel. In fact this is generally still the case in the multi-stream plants, where mill liner design and selection is only tackled on a cost consumables basis. However, the gains to be had through good liner design and selection are just as great as on the large SAG mills.

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