Research report on mineral processing of Jinjiaping manganese ore

    Jin Ping manganese mine in Western Qinling Mountains with composite parts and INDOSINIAN EW fold belt, metallogenic zoning is Gansu Maqu - Shaanxi Lueyang area quit mineralization bring Erma - Zhouqu gold, copper, iron , manganese, phosphorus mineralization sub-band. The ore is mainly composed of manganese oxide ore, which is a marine sedimentary iron-manganese deposit.

    The purpose of the test is to provide a preliminary basis for the evaluation of the deposit, the design of the ore dressing and the development and utilization of the manganese ore.

    The main hard manganese ore in the ore, followed by the soft manganese ore, a small amount of rhodochrosite, limonite and so on. The main gangue minerals are calcite , quartz , kaolin , barite , and hydromica .

    The ore contains manganese, 24.23%, TFe 4.28%, MnO 219.99%, phosphorus 0.31%, sulfur 0.23%, platinum 0.37%, cobalt 0.063%, copper 0.15%, and zinc 0.94%.

    The test is based on mechanical beneficiation methods and uses four process schemes. The test results of different process schemes are shown in Table 1.

    Table 1 Test results of different process plans

    Process plan

    Mn grade (%)

    MnO 2 (%)

    Recovery rate(%)

    Raw ore grading dry magnetic separation -

    Wet strong magnetic separation combined process

    35.47

    38.90

    78.43

    Raw ore classification single wet strong

    Magnetic separation process

    37.72

    38.53

    67.12

    Direct wet magnetic separation process after raw ore non-grading grinding

    41.30

    43.11

    51.57

    Re-election (shaker) - wet magnetic

    Select joint process

    38.21

    36.24

    51.57

    The manganese concentrate obtained from the non-graded wet-type strong magnetic separation process of the original ore was subjected to acid leaching and phosphorus removal test, so that the phosphorus content of the concentrate was reduced from 0.21% before leaching to 0.044% after leaching, and the ratio of phosphorus to manganese reached 0.001 or so. The grade of minerals increased from 40.87% before leaching to 42.83% after leaching.

    The associated elements copper, zinc, platinum and cobalt are mainly enriched in manganese concentrate. Its copper grade is 0.26%, the recovery rate is 65.72%; the zinc grade is 1.89%, the recovery rate is 69.91%; the platinum grade is 0.43%, the recovery rate is 62.42%; the cobalt grade is 0.09%, and the recovery rate is 69.53%.

    Tipper Parts

    This classification mainly includes the aluminum die casting Machinery Parts using in Tipper Components area.
    From the part, we can easily find that the parts have a lot of features of big cavities, so the part will have big potential risk of mold release problem, if so, the part may happen to be deform, sticking to the mold etc, especially when the part sticking to the mold, if no clear in time, while next shot, the mold may be destroyed while clamping.
    Normal raw material: ADC12,A380,YL102
    Process Technology: Low-pressure casting,Shot Blasting,NC Machining,Spray Coating
    Product Dimensions: Customized
    Casting General Tolerance: Grade GBT6414-CT8
    Flow Processes: Die casting, Degating to remove the residual of the gate, Polishing and Deburring to remove the burrs, Polishing to remove the parting line, flash,CNC Turning, Cleaning, Packaging, Storaging, Shipping
    Control Measure: Incoming Material Test, First Article inspection, Routing inspection, Final item inspection, and Outgoing quality control
    Inspection Equipment: CMM, Caliper, Plug Gage, Screw Gauge
    Application: Machinery Parts
    Certificate: IATF16949:2016,ISO14001:2015,ISO45001:2018
    Lead Time: 30-35 days
    Trade Term: FOB Ningbo

    Die Casting Tipper Parts,Die Casting Tipper Components,Al Die Casting Tipper Components

    NINGBO ZHENHAI BOLANG METAL PRODUCTS FACTORY , https://www.casting-part.com

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