• SIMPLIFIED BOND WORK INDEX DETERMINATION By:

    SIMPLIFIED BOND WORK INDEX DETERMINATION By:

    The 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 is an alternative procedure to the ball mill grindability test

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  • QUICK METHOD FOR BOND WORK

    QUICK METHOD FOR BOND WORK

    micrometers in size. According to the Bond standard procedure, the work index is determined by simulating a dry grinding in a closed circuit in the Bond ball mill to achieve 250% circulating load (Bond, 1949, 1952, 1961). The test is performed on a raw material approximately weighing 10 kg, which coarseness is 100% -3.327 mm

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  • Bond Index Ball Mill / Rod Mill BT 100 XL - RETSCH

    Bond Index Ball Mill / Rod Mill BT 100 XL - RETSCH

    The 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

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  • Application of Operating Work Indices in Autogenous

    Application of Operating Work Indices in Autogenous

    Ball Mill Wio, BWio 8.6 Circuit Wio, OWio 14.6 Bond Ball Mill Work Index, BWi, kWh/t 13.4 Bond Rod Mill Work Index, RWi, kWh/t 18.1 Table 1. Example of AG/SAG Ball Mill Circuit Wio Calculations [1] [2] ABstrAct Optimum use of power in grinding, both in terms of grinding efficiency and use of installed capital, can have a large effect on

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  • GMSG GUIDELINE: DETERMINING THE BOND

    GMSG GUIDELINE: DETERMINING THE BOND

    Bond Test WI’s (kWh/t): Rod Mill: Ball Mill: 9.5 kWh/t.8 9 kWh/t . Bond Standard Circuit Work Index: Assume the rod mill Work Index of 9.5 applies from the actual rod mill feed sizeof 19,300 m (although some of this work might ideally be done by crushers to achieve a rod mill F80 of 16,000 m) to a rod

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  • SAGMILLING.COM .:. Articles

    SAGMILLING.COM .:. Articles

    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

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  • Essa® Bond Test-Work Equipment – Mineral Stats

    Essa® Bond Test-Work Equipment – Mineral Stats

    Essa Bond Test-Work Equipment. Internationally accepted mineral metallurgical standard test procedures to determine the physical properties of ores include the Bond ball mill work index and the Bond rod mill work index. These are empirical indices determined by close circuit grindability tests developed by F.C.Bond in the mid 1930’s

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  • Comminution testing - JKTech - University of Queensland

    Comminution testing - JKTech - University of Queensland

    Jul 30, 2020 A Bond Ball Mill Work Index may also be used in the simulation and optimisation of existing mill(s) and the associated grinding circuit(s). Sample requirements: A minimum of 8 kg of material crushed to nominally minus 10 mm is preferred. JKTech would stage crush the sample to minus 3.35 mm, as required for the Bond Ball Mill Work Index test feed

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  • Test Method For Bond Ball Mill Work Index-ball Mill

    Test Method For Bond Ball Mill Work Index-ball Mill

    Bonds Work Index Ball Mill. Bond method for ball mill work index test a bond ball mill work index test is a standard test for determining the ball mill work index of a sample of ore it was developed by fred bond in 1952 and modified in 1961 jkmrc co 2006this index is widely used in the mineral industry for comparing the resistance of different materials to ball milling for estimating the

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  • Orway Mineral Consultants Canada Ltd. Mississauga

    Orway Mineral Consultants Canada Ltd. Mississauga

    Test data from the Bond ball mill work index test is used to calculate the fine grinding index (M ib). The M ia and M ib indices are used to calculate specific energy for the coarse (W a) and fine (W b) components of the total grinding specific energy at the pinion (W T) according to Equation 7. W i = 4.K.M i.[Pf(P)-Ff(F)] (6) W T = W

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  • ball mill power calculation pdf

    ball mill power calculation pdf

    Sep 26, 2021 Ball Mill Design/Power Calculation. 2015-6-19 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

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  • Bond Work Index Tests - Grinding Solutions Ltd

    Bond Work Index Tests - Grinding Solutions Ltd

    The Bond Ball Mill Work Index (BBWi) test is carried out in a standardised ball mill with a pre-defined media and ore charge. The Work Index calculated from the testing can be used in the design and analysis of ball mill circuits

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  • Correction of Bond Ball Mill Work Index Test for Closing

    Correction of Bond Ball Mill Work Index Test for Closing

    Dec 07, 2018 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. This is because work index frequently changes as a function of the product size in comminution. If target grind size during a project is changed, or if

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  • Bond Work Index - an overview | ScienceDirect Topics

    Bond Work Index - an overview | ScienceDirect Topics

    The ball mill work index laboratory test is conducted by grinding an ore sample prepared to 100% passing 3.36 mm (6 mesh) to product size in the range of 45-150 m (325-100 mesh), thus determining the ball mill work index (Wi B or BWi). The work index calculations across a narrow size range are conducted using the appropriate laboratory work index determination for the material size of interest

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  • QUICK METHOD FOR BOND WORK INDEXAPPROXIMATE

    QUICK METHOD FOR BOND WORK INDEXAPPROXIMATE

    micrometers in size. According to the Bond standard procedure, the work index is determined by simulating a dry grinding in a closed circuit in the Bond ball mill to achieve 250% circulating load (Bond, 1949, 1952, 1961). The test is performed on a raw material approximately weighing 10 kg, which coarseness is 100% -3.327 mm

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