power calculation formula of ball mill

Power Calculation Formula Of Ball Mill

Ball Mill Design/Power Calculation - LinkedIn

12-12-2016 · Ball Mill Power Calculation Example A wet grinding ball mill in closed circuit is to be fed 100 TPH of a material with a work index of 15 and a size …

Ball Mill Design/Power Calculation

Ball Mill Power/Design Calculation Example #2 In Example No.1 it was determined that a 1400 HP wet grinding ball mill was required to grind 100 TPH of material with a Bond Work Index of 15 ( guess what mineral type it is ) from 80% passing ¼ inch to 80% passing 100 mesh in closed circuit.

Calculate and Select Ball Mill Ball Size for Optimum …

Here is your Ball Mill Design/Sizing Procedure. Calculation of top size grinding media (Fred C. Bond) Calculation of top size grinding media AZZARONI’s Formula; I attach Fred Bond’s first empirical equation for sizing grinding balls for ball mills as well as a …

CALCULATION OF THE POWER DRAW OF DRY …

of the Bond ball mill grindability test. For all model based methods, a reliable method to calculate mill power draw for a given mill is required for the calculation of power draw. Morrell (1996) proposed a mathematical model for autogenous, semi-autogenous and ball mills which is based on the motion of grinding charge inside the mill.

How to Size a Ball Mill -Design Calculator & Formula

How to Size a Ball Mill -Design Calculator & Formula. ... Ball milling – a ball mill with a diameter of 2.44 meters, ... 1978) have to be used in conjunction with equation 1. In general, therefore, the required mill power is calculated using the following equation. where n is the number of efficiency factors, EFi, ...

how to calculate power consumption in ball mill

TECHNICAL NOTES 8 GRINDING R P King Mineral Technologies , ball mill power calculation ,Figure 85 Effect of mill filling on power draft for ball mills The data , A simple equation for calculating net power draft is , Austins formula gives slightly higher values than Morrells for mills that have length equal Power Consumption ...

Ball Mill Calculation Power Calculation - …

Ball Mill Calculation Power Calculation kuchyne . Ball Mill Design/Power Calculation. The basic parameters used in ball mill design (power calculations), rod mill or any tumbling mill sizing are; material to be ground, characteristics, Bond Work Index, bulk density, specific density, desired mill tonnage capacity DTPH, operating % solids or pulp density, feed size as F80 and maximum ‘chunk ...

Calculate Ball Mill Grinding Capacity

The sizing of ball mills and ball milling circuits from laboratory grinding tests is largely a question of applying empirical equations or factors based on accumulated experience. Different manufacturers use different methods, and it is difficult to check the validity of the sizing estimates when estimates from different sources are widely divergent. It is especially difficult to teach mill ...

CALCULATION OF BALL MILL GRINDING …

8-3-2013 · calculation of ball mill grinding efficiency. dear experts . please tell me how to calculate the grinding efficiency of a closed ckt & open ckt ball mill. in literatures it is written that the grinding efficiency of ball mill is very less [less than 10%]. please expalin in a …

Calculation of energy required for grinding in a ball …

Calculation of energy required for grinding in a ball mill. ... found that the change of the mass passing a test screen G could be related to the aperture size P k of the screen by the formula: G=K 1 P k. The grinding-product size, P, in a Bond ball mill, ...

MODELING THE SPECIFIC GRINDING ENERGY AND BALL-MILL …

Ball mill power draw predicted from the Denver slide rule, kW 0 200 400 600 Calculated ball-mill power draw from the m odel derived, kW Data compared Line y=x Fig. 2. Comparison of the ball mill power draw from the Denver slide rule and the proposed model. Dashed line corresponds to y=x.

TECHNICAL NOTES 8 GRINDING R. P. King

mill is the energy consumption. The power supplied to the mill is used primarily to lift the load (medium and charge). Additional power is required to keep the mill rotating. 8.1.3 Power drawn by ball, semi-autogenous and autogenous mills A simplified picture of the mill load is shown in Figure 8.3 Ad this can be used to establish the essential ...

Optimization of mill performance by using

Optimization of mill performance by using online ball and pulp measurements Soon after a stop, a mill is a dangerous place to enter for the personnel tasked with taking measurements or samples. Crash stops are difficult to handle. The mill and all feed streams should be stopped simultaneously but, often, they are stopped around about the same time.

Mill sizing method - thecementgrindingoffice.com

Please find below two calculators for sizing mills using the Bond and Rowland methods: Ball mill sizing: Calculator for ball mill(s) in a single stage circuit. Rod ball mill sizing: Calculator for rod mill(s) as first stage of the circuit and ball mill(s) as second stage of the circuit.

Best way to determine the ball-to-powder ratio in …

The maximum power draw in ball mill is when ball bed is 35-40 % by volume in whole empty mill volume. Considering that ball bed has a porosity of 40 %, the actual ball volume is considered to be ...

THE OPTIMAL BALL DIAMETER IN A MILL

The ball impact energy on stone is proportional to the ball diameter to the third power: 3 E K 1 d b. (3) The coefficient of proportionality K 1 directly depends on the mill diameter, ball mill loading, milling rate and the type of grinding (wet/dry). None of the characteristics of the material being ground have any influence on K 1.

GROSS POWER CALCULATOR - SMC Testing

GROSS POWER CALCULATOR General . This model uses the equations from Morrell’s 1993 PhD thesis: “The Prediction of Power Draw in Wet Tumbling Mills”. The model is also described in detail in the book “Mineral Comminution Circuits Their Operation and Optimisation” which is available from the Julius Kruttschnitt Mineral Research Centre.

Orway Mineral Consultants Canada Ltd. Mississauga, ON ...

Barratt (1986) proposed the use of an empirical formula for predicting SAG power involving the use of a combination of Bond work indices over a range of sizes from F 80 to a defined P 80, applying a correction factor to resultant power, and deducting the ball milling component of the power; refer to Equation 2.

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