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Sensor Load Electronic Brinell Hardness Testing Machine 3000Kgf Max Force Analog Microscope

Categories Brinell Hardness Testing Machine
Brand Name: iqualitrol
Model Number: SHB-3000E
Certification: CE
Place of Origin: Dongguan/China
MOQ: 1 Set
Price: Negotiable
Payment Terms: T/T, Western Union
Supply Ability: 50 Sets per Month
Delivery Time: 20 Working Days
Packaging Details: Plywood Box
Hardness: 8 - 653HBW
Reading: by Checking Hardness Table
Microscope: 20x Mechanical Microscope
Dwell Time: 0 - 60 Seconds, adjustable
Height: 220mm
Throat: 135mm
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    Sensor Load Electronic Brinell Hardness Testing Machine 3000Kgf Max Force Analog Microscope


    Sensor Load Electronic Brinell Hardness Testing Machine Max Force 3000Kgf Analog Microscope


    Brief Introduction:
    iqualitrol SHB-3000E Electronic Brinell hardness tester is a unified product combining the precise mechanical structure and the load cell control system.

    The instrument adopts the motorized test force application without weights, and uses 0.5‰ accuracy compression sensor to feedback and the CPU control system to automatically compensate the test force lost during the test.

    The test force and dwell time can be directly set on the keyboard with reliable repeatability, precise reading and easy operation. It can be equipped with V1.0 Brinell image automatic measuring system.

    20x Measuring Microscope:







    Technical Specification:

    ModelSHB-3000E
    Test Forcekgf62.5kgf, 100kgf, 125kgf, 187.5kgf, 250kgf, 500kgf, 750kgf, 1000kgf, 1500kgf, 3000kgf
    N612.9N, 980.7N, 1226N, 1839N, 2452N, 4903N, 7355N, 9807N, 14710N, 29420N
    Test Range8~653HBW
    Hardness ReadingCheck Hardness Table
    Microscope20x Reading Microscope
    Resolution5μm
    Dwell Time0~60s
    Vertical SpaceMax height of Specimen 220mm
    Throat135mm
    Power SupplyAC220V/50Hz/1Ph, AC110/60Hz/1Ph
    Execute StandardISO 6506, ASTM E10-12, JIS Z2243, GB/T 231.2
    Dimension545×235×755mm, Packing Dimension: 650×435×1025mm
    WeightNet Weight: 130kg, Gross Weight: 160kg


    Application range:
    Suitable for cast iron, steel products, nonferrous metals and soft alloys etc. Also suitable for some nonmetal materials such as rigid plastics and bakelite etc.

    Packing List:

    NameQtyNameQty
    Instrument Main Body1 set20× Reading Microscope1 pc
    Ф2.5mm, Ф5mm, Ф10mm Ball Indentereach 1 pcLarge Plane Test Table1 pc
    Small Plane Test Table1 pcV-shaped Test Table1 pc
    Hardness Block 150~250 HBW 10/30001 pcHardness Block 150~250 HBW 5/7501 pc
    Fuse 2A2 pcsPower Cable1 pc
    Anti-dust Cover1 pcBrinell Hardness Table1 copy
    Usage Instruction Manual1 copy



    Principle of Brinell Test:
    The Brinell hardness test method consists of indenting the test material with a 10 mm diameter hardened carbide ball subjected to a load of 3000 kg. For softer materials the load can be reduced to 1500 kg or 500 kg to avoid excessive indentation.

    The full load is normally applied for 10 to 15 seconds in the case of iron and steel and for at least 30 seconds in the case of other metals. The diameter of the indentation left in the test material is measured with a low powered microscope. The Brinell harness number is calculated by dividing the load applied by the surface area of the indentation.





    The diameter of the impression is the average of two readings at right angles and the use of a Brinell hardness number table can simplify the determination of the Brinell hardness. A well structured Brinell hardness number reveals the test conditions, and looks like this, "75 HB 10/500/30" which means that a Brinell Hardness of 75 was obtained using a 10mm diameter hardened steel with a 500 kilogram load applied for a period of 30 seconds.

    On tests of extremely hard metals a tungsten carbide ball is substituted for the steel ball. Compared to the other hardness test methods, the Brinell ball makes the deepest and widest indentation, so the test averages the hardness over a wider amount of material, which will more accurately account for multiple grain structures and any irregularities in the uniformity of the material. This method is the best for achieving the bulk or macro-hardness of a material, particularly those materials with heterogeneous structures.

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