The goal of this work is to create an equation to adjust a Bond ball mill work index from one P 80 basis to another. The proposed model consists of two components, the variable coefficient that is determined from a specific work index determination and a fixed exponent determined by a calibration procedure.
can be determined using the data generated by a conventional Bond ball mill work index test M ib is NOT the Bond ball work index M ic and M ih values are also provided as a standard output from a SMC Test Morrell 2009 The general size reduction equation is as follows Morrell 2004 b f x f x 2 1 i i 4 2 W M x x 1 1 where . Get Price
The Work Index (BWi) is calculated according to Fred Bond's Equation. Bond Work Index for Testing Procedure Cleaning and Storing of Ball …
It can be seen that in the regime in which the Bond equation is valid, energy use increases exponentially as product size decreases with constant feed size, with an exponent of (approximately) −0.5. For P80s finer than 75 μm, the Levin test, a modified Bond ball mill work index test, may be used to predict grinding performance.
2. Methods for assessing the energy consumption of the Bond Ball Mill are discussed 3. The average reduction in Work Index of HPGR products was 1.9 kWh/t 4. A similar magnitude of reduction was observed in the Size Specific Energy 5. Ball milling efficiency can vary significantly independently of HPGR operation Graphical Abstract
The Work Index is used when determining the size of the mill and grinding power required to produce the required ore throughput in a ball mill. 2. Procedure 2.1. Bond Ball Mill Grindability The sample was crushed to passing 6 mesh (3.35mm), from this a 700 cc volume was measured and weighed to be used as feed for the Bond Mill.
You need a two-stage solution, first stage open-circuit mill and then second stage closed-circuit mill. First stage, will be broken into two parts as well, you use a Bond rod mill work index for the coarse component of the ore (+2.1 mm) and the Bond ball mill work index for the fine component (-2.1 mm).
Catalog excerpts. BALL MILLS, ROD MILLS & BOND INDEX MILLS Labtech Essa manufacture a range of metallurgical laboratory sized ball and rod mills to suit most applications. Included in the range is a Bond index mill which has specific application in establishing the grindability of ores (see sheet 2 of this data sheet) The ball and the rod mill ...
The bond work index test obtained high work index 52.60 kw.h/t and consumed power 11.72 kw.h/t to grind one ton of low grade iron ore and this attributed to …
the rod mill and the ball mill. The simplified test method described in this paper is an alternative procedure to the ball mill grindability test. The work index is computed using the following empirical equation revised by Bond in 1960, where the sieve opening at which the test is made, (microns) 358 (2)
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 size', product size as P80 and maximum and finally the …
This Grindability Test or Bond Ball Mill Work Index Procedure is used to determine the Bond Work Index of minus six mesh or finer feed ore samples. These equation application methods are used to process <1/2″ ore samples in a Ball Mill using a standard ball charge.. Below describes in general terms the Bond Work Index Procedure used by a …
Investigation into the applicability of Bond Work Index (BWI) and Hardgrove Grindability Index (HGI) tests for several biomasses compared to Colombian La Loma coal By orla williams Energy Sources, Part A: Recovery, Utilization, and Environmental Effects The effect of microwave's location in a comminution circuit on improving grindability of a ...
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The aim of this study was to develop a new method for assessing the Bond work index in a ball mill (BBWI), which is based on a first order kinetics present in the Bond ball mill for grinding mineral raw materials (Austin et al., 1981; Ahmadi and Shahsavari, 2009). Theoretical basis of quick procedure
Having estimated F80 and P80, the power required was expressed in terms of the Bond work index as (4.49) Power = W i Q 10 1 P 80 − 1 F 80 kW where Q = the capacity in t/h Wi = is the work index in kWh/t and P80 and F80 are in micrometres
Josefin et al. (2018) gave a correction procedure of the Bond test for closing mesh size which is made of 4 steps, and we could use to correct the work index measured on a sample from one P 80 size to another P 80 size by using calibration sample and suggested correction equation for calculation the BWI.
Bond Work Index Procedure or the Grindability Test is a procedure used in identifying the Bond Work Index of minus 6 mesh or finer feed ore which is measured in terms of kWh/ton. This work index is used when determining the size of the mill and grinding power required producing the required ore throughput in a ball mill.
3- STANDARD BOND TESTS The Bond's standard ball mill is used to determine the work index value of differ ent samples. The Bond work index is defined as the kilowatt-hours per short ton required to break from infinite size to a product size of 80% passing 100 µm. If the breakage
The Bond ball mill work index test has been used for ore hardness characterization for more than 80 years. Nevertheless, the test suffers from significant disadvantages when compared with other characterization methods. It is expensive, labour …
Bond work index is changed with the change in the test sieve size and circulating load. This must be taken into account when energy consumption is calculated according to the Bond formula. unit energy cost extra increased as circulating load decreased from 250%.
Correction of Bond Ball Mill Work Index Test for Closing Mesh Sizes It is commonly known that one must run the Bond ball mill work index test such you pick a closing mesh to give a P80 close to desired grind size.
and a Bond laboratory ball work index test to have been carried out as the model requires the SMC Test ® parameters Mia, Mic, Mih, DWi and the ore specific gravity as well as the Bond ball mill work index (Wib). As the Mia, Mic, Mih, DWi and the ore specific gravity all come from the same SMC Test ® and are interrelated, any
The work index of 20.39 Kwh/s ton value obtained when granite was a reference ore is within the limit of work index of some iron ores in Nigeria (Weiss, 1965 and Thomas, 2007). 4. CONCLUSION AND RECOMMENDATIONS The study shows that work index of Birnin –Gwari iron ore can be taken as 28.66 Kwh/ston i.e.
Bond index is useful in designing of grinding system in mineral processing. In this study, the Bond work index of Birnin- Gwari iron ore in northern Nigeria is determined using modified Bond's method using 'reference ore'. Samples of iron ore were sourced using random method, reference minerals; marble and granite of known weight and iron ore of known weight were …
An alternative mill ball charge is proposed that closely approximates Bond's original total ball mass, number of balls and ball surface area. Results of 30 Bond Work index tests of six pure materials (calcite, magnesite, labradorite (feldspar), quartz, andalusite and glass) using closing screen apertures (P 1) values of 500, 250, 125, 90 and 63 ...
Bond s Law For Crushing Mills ebrainzorgin bond039s law for crushing units such as crushers and grinding mills is ore s work index Details. rittinger law.Ball Grinding Mill Modeling Equations In Saudi Arabia. 3023 ball mill for grinding iron ore products are offered for sale by suppliers on alibaba of which mine mill accounts for 37 grinding ...
BOND WORK INDEX The Bond Work Index is a factor that measures the energy consumed in size reduction operation of the ore. The Bond's Work Index equation is: W=WI* (10/√P80 -10/√F80) where W= the energy input (Work input) per ton, kwh/metric ton WI= Work Index= specific energy per ton, kwh/metric ton (characterizes the ore)
Menéndez-Aguado et al. examined the possibility of determining the work index in a Denver laboratory batch ball mill with the same inner diameter as the Bond ball standard mill. The research was performed on the size class of −3.35 mm using samples of gypsum, celestite, feldspar, clinker, limestone, fluorite, and copper slag.