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Address
Room 1013, No. 20, Lane 26, Hexuan Road, Jiading District, Shanghai (Office Building 5, Jiangqiao Wanda Plaza)
Yuanpai Scientific Instruments (Shanghai) Co., Ltd
Room 1013, No. 20, Lane 26, Hexuan Road, Jiading District, Shanghai (Office Building 5, Jiangqiao Wanda Plaza)

German GE/K.K (KrautKramer) company ultrasoundhardness testerMIC10/MIC10DL utilizes the UCI (Ultrasonic Contact Impedance) method to quickly and conveniently evaluate Vickers hardness indentations without the need for a microscope. MIC10 is powered by batteries and can be quickly used on site without any restrictions, even at the end position. This instrument is suitable for most fine grains and materials of any shape and size, especially for determining material properties within a small tolerance range. The measurable parts of the workpiece include the flange edge and gear root, and can also be measured in any direction, such as horizontal or vertical upward.
Application of MIC10 Ultrasonic Hardness Tester on Gears
Application of MIC10 Ultrasonic Hardness Tester in Printing and Plate Making
Characteristics of Ultrasonic Hardness Tester MIC10/MIC10DL Instrument
·High precision measurement: Continuous frequency measurement is monitored during the penetration process into the measurement surface;
·Changes and display of hardness values: unit HV, HB, HRC, HRB, and tensile strength N/mm2;
MIC10DL is a storage type, equipped with internal memory and additional memory cards
·The internal data logger can record about 1500 measurement values, and there is also a storage card that can store about 590 measurement values;
·Printable static indication function (maximum reading, minimum reading, absolute and relative standard deviation)
·The RS232 interface can be remotely controlled through a computer or archived through a printer for testing results.
Ultrasonic Hardness Tester MIC10/MIC10DL Technical Parameters
| Measurement/Conversion Range: 20-1740HV, 48-105HRB, 20-68HRC, 76-618HB, 5-2250N/mm2 (10kg probe) Display: 4-digit LCD with switch backlight Resolution: 1HV; 1HB; 5N/mm2; 0.1/0.5/1HRC and HRB (optional) Data memory: The data logger can store 1500 measurement values, and the storage card can store 590 data (MIC10DL) Interface: RS232 interface, can be used for bidirectional communication between printers and computers (MIC10DL) Power supply: 2 1.5V batteries Size and weight: 160x70x45mm, 300g |
Ultrasonic hardness tester MIC10/MIC10DL probe and accessories
| · · · · · · · |
Manual standard probe MIC201A: 10N/1kgf load, especially suitable for small groove surfaces Manual standard probe MIC205A: 50N/5kgf load, suitable for most applications Manual standard probe MIC2010A: 100N/10Kgf load, suitable for coarse-grained materials and rough surfaces Manual long probe MIC201AL (10N/1Kgf load)/MIC205AL (50N/5Kgf load), equipped with a longer oscillating rod (37mm). Used for measuring contour surfaces or deep inner cavities/grooves of workpiece structures. Such as worm gears and meshing gears. The electric probes MIC2103A (3N/0.3Kgf), MIC211A (approximately 8N/0.8Kgf), and MIC2101A (1N/0.1Kgf) are equipped with electrically controlled Vickers hardness tester diamonds, which can obtain reliable measurement results. Qualified hardness reference block for inspection |
| model | load | Probe diameter | Probe length |
| Manual standard probe MIC201A Manual standard probe MIC205A Manual standard probe MIC2010A |
1kgf 5kgf 10kgf |
19mm | 162mm |
| Manual long probe MIC201AL Manual long probe MIC205AL |
1kgf 5kgf |
19mm | 190mm |
| Electric probe MIC2101A Electric probe MIC2103A Electric probe MIC211A |
0.1kgf 0.3kgf 0.8kgf |
38.5mm | 217mm |
|
Vickers hardness |
F=1kgf
|
||
|
Diameter d (μ m)
|
Depth t (μ m)
|
Minimum material thickness (μ m)
|
|
|
250
|
86
|
12
|
120
|
|
500
|
61
|
9
|
90
|
|
750
|
50
|
7
|
70
|
|
1000
|
43
|
6
|
60
|
|
Vickers hardness |
F=5kgf
|
||
|
Diameter d (μ m)
|
Depth t (μ m)
|
Minimum material thickness (μ m)
|
|
|
250
|
193
|
28
|
280
|
|
500
|
136
|
19
|
190
|
|
750
|
111
|
16
|
160
|
|
1000
|
99
|
13
|
130
|
|
Vickers hardness |
F=98N
|
||
|
Diameter d (μ m)
|
Depth t (μ m)
|
Minimum material thickness (μ m)
|
|
|
250
|
272
|
39
|
390
|
|
500
|
193
|
28
|
280
|
|
750
|
157
|
22
|
220
|
|
1000
|
136
|
19
|
190
|