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Product name: |
SCHV-V2.0 Microscopic Vickers X → Y Axis Image Automatic Measurement Software
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specification: |
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Category: |
instrumentation and meters
-- hardness tester |
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Price: |
factory price |
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Brand: |
Shanghai |
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Place of Origin: |
China |
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Available Quantity: |
batch |
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delivery cycle: |
Spot goods (or inquire by telephone) |
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Shanghai Beiyuan Industry and Trade Co.,Ltd
+86-21-66770508
+86-13901609058 |
91way@163.com
13901609058(Wechat) |
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SCHV-V2.0 Microscopic Vickers X → Y Axis Image Automatic Measurement SoftwareDetailed product description:

1: Introduction to Instrument Performance
The SCHV-V2.0 micro Vickers X → Y axis image automatic measurement software is used in metallurgy, electromechanical, mold and other fields to analyze and test the hardness or surface hardening layer of the sample. It is an essential analytical and testing instrument for high-precision part testing in the field of mechanical processing Through RS232 communication with the hardness tester, different step sizes can be selected to move the X-axis and Y-axis, which is particularly suitable for measuring the hardness or hardening depth of carburized layer samples. Different loads can be configured to measure different samples And it can generate graphic and textual reports and store them Make user operation simple and convenient
This software can also control the turret, lighting, holding time, stage movement, loading load, etc. of the hardness tester separately, and can perform command control of the hardness tester on a PC At the same time, the hardness tester will also return an execution command signal The software achieves mutual communication between the upper and lower computers, with a user-friendly interface, stability, reliability, and extremely high mechanical positioning accuracy It can fully meet the testing requirements
This instrument can measure Vickers hardness indentation at a single point, or automatically load multiple points continuously to determine hardness indentation. At the same time, it can provide a hardness distribution curve, and obtain the corresponding depth of the hardened layer based on this curve. All measurement data, calculation results, and indentation images can be generated into graphic and textual reports, which can be printed or stored

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