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Nano Indenters

Whats/App: +86 156 1874 6768

Web: standard-groups.com

Standards

ISO 14577-1/2/3: Nanohardness and elastic modulus testing of metallic and non-metallic materials

ASTM E2546: Calibration of micro- and nanoindentation instruments

ISO 20502: Nanoscratch testing

ISO 1518: Coating scratch testing

ASTM D7027. D1624. D7187. C171: Scratch testing for coatings and plastics

Technical Specifications

ModuleParameterSpecification
Nano Indenter Max Load 80 mN / 400 mN / 1800 mN / 4800 mN
Min Load 0.1 mN
Load Resolution 3 nN
Penetration Depth 250 μm / 1 mm
Displacement Resolution 0.0003 nm
Loading Rate 0.04–12000 mN/min
Nano Scratch Max Scratch Force 80 mN / 400 mN / 1800 mN / 4800 mN
Scratch Speed 0.05–600 mm/min
Max Friction Force 400 mN / 1800 mN
Micro Indenter Max Load 40 N / 200 N
Min Load 2 mN / 10 mN
Depth Resolution 0.01 nm
Penetration Depth 1 mm
Micro Scratch Max Load 40 N / 200 N
Max Scratch Length 50 mm
Max Friction Force 20 N / 200 N
Precision Positioning Stage XY Range 100 mm × 50 mm
Z Space 150 mm
Optical Metallographic Microscope Magnification 5X, 10X, 20X, 50X, 1000X (Total 400X–8000X)
Atomic Force Microscope (AFM) Scan Range 100 μm × 100 μm × 12 μm
XY Resolution 0.1 nm
Z Resolution 0.02 nm
General Thermal Drift <0.05 nm/s (compensated <1 nm)
Displacement Accuracy Grating positioning ≤250 nm
Max Indentation Depth 1 mm
Max Friction Force 400 N
Power Supply AC 220V / 50Hz

Features

Modular Integrated Design: Combines nano and micro indentation, scratch, and friction-wear tests in one instrument.

International Standard Compliance: Indentation tests conform to ISO 14577 and ASTM E2546; scratch tests conform to ISO 20502. ISO 1518. ASTM D7027. and others.

High-Precision Load System: Closed-loop piezoelectric drive ensures precise and stable load control, superior to traditional cantilever or open-loop systems.

Nanometer-Level Displacement Control: Depth is monitored in real-time by a capacitive sensor, with 0.0003 nm resolution and minimal thermal drift.

High-Accuracy Positioning Stage: Grating-based XY stage ensures repeatability of experiments.

Full-Field Scratch Imaging: Enables optical imaging throughout nanoscratch tests for easier analysis.

Fast Indentation and Scratch Mapping: 100 mapping points can be completed in 5–12 minutes.

Patented Technology: Diamond tip area function calibration ensures accurate and reliable indentation and scratch measurements.

Accessories

No.Accessory / ConsumableQuantityNote
1 Diamond Indenter Tip 1 R-shaped tip, compatible with nano & micro modules
2 Diamond Scratch Tip 1 For nano/micro scratch tests
3 Constant Load Weights Several For micro/high-load calibration
4 Sample Fixture 1 set Fits various sample sizes
5 Optical Microscope Module 1 set For scratch imaging
6 AFM Probe 1 set High-resolution surface scanning
7 Power Cord 1 set AC 220V / 50Hz
8 Safety Cover 1 Provides operational protection
9 Software Installation Disk 1 set For data analysis
10 Tools & Manual 1 set Installation and operation guidance

Testing Principles

Indentation Testing: Uses high-precision capacitive sensors to monitor the load-depth relationship of steel or diamond tips, providing hardness, elastic modulus, and creep data.

Scratch Testing: Applies controlled load to create scratches, recording friction force, scratch depth, and material damage features, allowing you to determine film-substrate adhesion, scratch hardness, and wear rate.

Multi-Scale Testing: The modular design allows comprehensive mechanical characterization at nano, micro, and high-load scales on the same sample.

Friction & Wear: Measures friction force changes during scratching to evaluate wear resistance and friction coefficient.

Operation Instructions

Confirm sample size and surface condition, then mount it on the precision positioning stage.

Select the test module (nano/micro indentation or scratch) and install the corresponding probe.

Set load, displacement, scratch speed, and number of cycles.

Enable thermal drift compensation to ensure stability during nanoscale tests.

Start the test and observe indentation or scratch morphology using optical microscopy or AFM.

After completion, turn off the instrument, remove the sample and probe, and record experimental data.

Avoid environmental vibrations and high humidity to maintain nanoscale measurement accuracy.


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