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Here is the old Allis-Chalmers Bond Work Index Grindability Test Procedure. The standard feed is prepared by stage crushing to all passing a 6 mesh sieve, but finer feed can be used when necessary. It is screen analyzed and packed by shaking in a 1000-cc graduated cylinder, and the weight of 700 cc is placed in the mill and ground dry at 250 per cent circulating load. The mill is 12 in. x 12 ...

MoreIt is commonly known that one must run the Bond ball mill work index test such you pick a closing mesh to give a P80close to desired grind size. This is because work index frequently changes as a function of the product size in comminution.

MoreAbstract: The Bond work index is a measure of ore resistance to crushing and grinding and is determined using the Bond grindability test. Its value constitu tes ore characteristic and is used for...

MoreThe test determines the Bond Ball Mill Work Index which is used with Bond’s Third Theory of Comminution to calculate net power requirements*. Various correction factors may have to be applied. W = Wi (10/√P – 10/√F) Where W = Net power consumption in kWh/t

MoreBoth procedures were conducted using a standard Bond test mill. INTRODUCTION The Bond ball work index is widely used in the field of minerals processing as an indicator of ore grindability. The work index is determined by means of a locked-cycle test procedure that typically requires seven to eight cycles to stabilise at a re-circulating load of 250%. A typical test requires between three to ...

MoreThe work index of a particular material is determined in the laboratory by conducting the standard Bond grindability test. Bond developed separate tests for the rod mill and the ball mill. The simplified test method described in this paper, which is used at Anaconda Research Center to approximate the work index, is an alternative procedure to the ball mill

More2013-01-01 The Bond rod-mill work index is used in conjunction with Bond’s third theory of comminution to merely calculate net energy requirements for sizing rod-mills. This test was originally developed in the mid 1930s by F.C. Bond. Though, it was altered in succeeding years, it has essentially remained unchanged since 1961.

Moreshortcomings, the test was changed to a locked cycle technique as described below. LOCKED CYCLE TESTS . The preferred test procedure is a locked cycle test akin to the Bond Ball mill work . index determination. The first cycle starts with minus 6 mesh ore removed since it is believed that the fines content can fill most of the voids allowing ...

MoreBond Index Test Test conducted on a Bond Index testing mill (Bico-Braun, USA) 700ml of sample milled for 100 revolutions. New number of revolutions is calculated to produce fines equal to 1/3.5 of the total charge of the mill. The Bond Work Index W i expresses the resistance of the material to

MoreAt least 15 to 20 kg sample material is required to simulate a closed grinding circuit in a ball or rod mill. The Rod Mill Work Index (RWI) is used for particle size determination in a size range from 25 mm down to 2.1 mm whereas Ball Mill Work Index (BWI) is used for the range from 2.1 mm down to 100 µm. Adjustment of grinding parameters:

MoreThe work index of a particular material is determined in the laboratory by conducting the standard Bond grindability test. Bond developed separate tests for the rod mill and the ball mill. The simplified test method described in this paper, which is used at Anaconda Research Center to approximate the work index, is an alternative procedure to the ball mill

Moreshortcomings, the test was changed to a locked cycle technique as described below. LOCKED CYCLE TESTS . The preferred test procedure is a locked cycle test akin to the Bond Ball mill work . index determination. The first cycle starts with minus 6 mesh ore removed since it is believed that the fines content can fill most of the voids allowing ...

MoreBond Index Test Test conducted on a Bond Index testing mill (Bico-Braun, USA) 700ml of sample milled for 100 revolutions. New number of revolutions is calculated to produce fines equal to 1/3.5 of the total charge of the mill. The Bond Work Index W i expresses the resistance of the material to

MoreThe grinding jar for the Bond Index Rod Mill is 12″ x 24″ in size and has a wave-shaped design. At least 15 to 20 kg sample material is required to simulate a closed grinding circuit in a ball or rod mill. The Rod Mill Work Index (RWI) is used for particle size determination in a size range from 25 mm down to 2.1 mm whereas Ball Mill Work ...

MoreGrindability Index Test Method Procedure - 911 Metallurgist. The proposed grindability test uses the Bond standard test mill and a quantity .... The Bond Work Index is determined by a standardized procedure in which the ... namely one in which wet grinding is done in a ball mill of 2,44 m (8 ft) diameter. Read More

MoreThe Bond ball mill work index test is thought to be additive because of its units of energy; nevertheless, experimental blending results show a non-additive behavior. [18] The SPI(R) value is known not to be an additive parameter, however errors introduced by block kriging are not thought to be significant .

More• the bond ball mill work indices determinations gave reasonably reproducible results, • significant variation was observed in the measurement of the bond rod mill work index on at least one sample tested, and • large variations in abrasion index and crushing work index were due to variations in the test method across the laboratories ...

MoreA standard Bond ball mill grindability test was performed on each of the four samples. The Bond work index varied from 15.4 to 18.3 kWh/t falling in to the medium to hard range of hardness. Preliminary cyanidation tests were conducted to investigate the recovery of gold. Each sample was

MoreOutotec Mergan method is faster than the Bond ball mill test, and requires less sample material. However, the Mergan method gives grinding energy consumption, which can be used to calculate Mergan work index, but this Mergan work index differs from the Bond work index. Therefore, it is needed to analyze if the Mergan work index correlates

MoreThe work index of a particular material is determined in the laboratory by conducting the standard Bond grindability test. Bond developed separate tests for the rod mill and the ball mill. The simplified test method described in this paper, which is used at Anaconda Research Center to approximate the work index, is an alternative procedure to the ball mill

MoreBond Mill Work Index. Bond ball mill index test bbmwi a bbmwi test is a standard test for determining the ball mill work index of a sample of ore it was developed by fred bond in and modified in the bbmwi is a measure of the resistance of the material to crushing and grinding

MoreBond Index Test Test conducted on a Bond Index testing mill (Bico-Braun, USA) 700ml of sample milled for 100 revolutions. New number of revolutions is calculated to produce fines equal to 1/3.5 of the total charge of the mill. The Bond Work Index W i expresses the resistance of the material to

More• the bond ball mill work indices determinations gave reasonably reproducible results, • significant variation was observed in the measurement of the bond rod mill work index on at least one sample tested, and • large variations in abrasion index and crushing work index were due to variations in the test method across the laboratories ...

MoreThe Hardgrove grindability test used a ball-race test mill. The Hardgrove grindability indices of these feldspar samples had an average of 46.25. Knowing the average Hardgrove index, a calculated work index of 12.88 kW/STPH was estimated using Aplan’s empirical formula. This average work index was less comparable to those of feldspar ores given in the literature. Therefore, the method of ...

MoreA simulated test method for Bond ball mill work index (BWI) was used to perform the comminution test. The results showed BWI values vary from 5.67 kWh/t to 20.21 kWh/t. Examination of the possible correlations between BWI and the geological features showed that the key geological feature related to comminution variability is lithology. In addition, the hydrothermal alteration would be an ...

MoreOutotec Mergan method is faster than the Bond ball mill test, and requires less sample material. However, the Mergan method gives grinding energy consumption, which can be used to calculate Mergan work index, but this Mergan work index differs from the Bond work index. Therefore, it is needed to analyze if the Mergan work index correlates

MoreA standard Bond ball mill grindability test was performed on each of the four samples. The Bond work index varied from 15.4 to 18.3 kWh/t falling in to the medium to hard range of hardness. Preliminary cyanidation tests were conducted to investigate the recovery of gold. Each sample was

Morein Table 1. The SVT and BVT are SAG pinion energy and Bond Ball Mill Wi variability tests which use the SAGDesign test method as a basis. Each test is a shortened version of the full SAGDesign test, but at a much lower cost. The SVT test also can be continued to SAGDesign

MoreMETHOD 2011.7 22 March 1989 1 METHOD 2011.7 BOND STRENGTH (DESTRUCTIVE BOND PULL TEST) 1. PURPOSE. The purpose of this test is to measure bond strengths, evaluate bond strength distributions, or determine compliance with specified bond strength requirements of the applicable acquisition document. This test may be applied to the wire-to-die bond, wire-to-substrate bond, or

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