MET-U/MET-UD Ultrasonic Portable Hardness Tester
Ultrasonic Portable Hardness Tester
   
The PHASE II ultrasonic/dynamic portable hardness testers are capable of measuring the surface hardness of a broad variety of metals on flat, round, thin or large surfaces. Unlike the standard Dynamic hardness testers, these "state-of-the-art" portable hardness testers incorporate "Ultrasonic UCI" technology, which enables the hardness testing of very thin and small workpieces, which otherwise could not be tested accurately using a portable device. Non-destructive in it's function, these hardness testers allow for the testing of highly sensitive or finished parts that previously could not be tested in an operational setting. The non-destructive (ndt) feature of these hardness testers allow the operator to accurately test parts without causing physical or structural damage that would normally lead to disposal or refinish of operators part.
The Phase II MET series of portable hardness testers offers a model that include a dynamic probe for easy, quick hardness testing of parts with a mass greater than 5kg
 
Ultrasonic Portable Hardness Tester
UCI Hardness Testing Method:
MET-U1A and MET-UD
A hardness testing method based on the measurement of the frequency shift of a resonating rod caused by the essentially elastic nature of the finite area of contact between the indenter and the test piece during the penetration. Described as a hardness testing practice using a calibrated instrument by pressing a resonating rod with a Vickers style Diamond indentor with a fixed force against the surface of the part to be tested.
LEEB Hardness Testing Method:
MET-UDA only
This is a dynamic hardness test method using a calibrated instrument that impacts a spherically shaped carbide ball with a fixed velocity (generated by a spring force) onto a surface of the material under test. The ratio of the rebound velocity to the impact velocity of the impact body is a measure of the hardness of the material under test.

Functions:
  • Easy To Read Menu Operation
  • Large LCD Display w/ Back Light
  • USB Interface
  • Automatic Conversions to: Brinell, Rockwell C, Rockwell B, Vickers and Leeb
  • Automatic Mean &#118alue
  • Data Archive Capacity

    Standard Accessories:
  • Base Instrument
  • 10N (1kgf) Hand-Held Probe - U1A & UDA models
  • Dynamic "D" Leeb Impact Device - UD model only
  • Calibrated Test Blocks:
    Model MET-U1A 2pc HRC Test Blocks
    Model MET-UDA 2pc HRC Test Blocks 1pc Leeb Test Block
  • USB Ouput Cable
  • Custom Carry Case
  • Battery Charger
  • Operation Manual

    Model No.
    Data

    MET-U1A
    (w/Ultrasonic Device)

    MET-UDA
    (w/Dynamic Impact Device)

    Probe Type

    UCI 10N
    Utilizes Vickers style Diamond
    Indentor

    Dynamic Leeb "D"
    Utilizes a 3mm Carbide Ball

    Tolerance +/- 3.0% of average from the reference &#118alue of the test block with a minimum of 5 tests +/-6 L (L=Leeb)
    Measuring Range:

    HRC: 20-67
    HRB: 30-99
    HB: 75-650
    HV: 75-1000

    HRC: 20-67
    HRB: 13-99
    HB: 75-650
    HV: 80-980
    LD: 200-900

    Applicable Test Materials Steel & cast steel, alloy tool steel, stainless steel, grey cast iron, spheroidal iron, cast aluminum, brass, bronze, wrought copper alloy. Steel & cast steel, alloy tool steel, stainless steel, grey cast iron, spheroidal iron, cast aluminum.
    Minimum Thickness .040" (Steel) Approx. 0.472" (Steel)
    Battery Type NiMH (C) NiMH (C)
    Operating Temperature 5-104 ° F 5-104 ° F
    Dimensions (Gauge only) 145 x 80 x 40mm 145 x 80 x 40mm
    Weight (Gauge only): 8.5oz 8.5oz


    Technical Data for UCI Probe and Dynamic Indentor:

    Test Device UCI Dynamic
    Length: 160mm 140mm
    Diameter 25mm 25mm
    Indentation Depth 30μm 300 μm
    Pressure Force 14.7N 11Nm
    Transducer Test Life
    (Approx)
    200,000 50,000
    Min Thickness for Testing
    (Steel)
    1mm 12mm
    Min. Radius for Test 5mm 10mm
    Max. Surface Roughness Ra 2.5 μm Ra 3.2 μm
    Memory 100 Tests 100 Tests
    Time of Test 2 seconds (2010 model) 2 Seconds




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