Finger Abrasion Tester
Applications
Universal Finger Abrasion Tester can simulate virtually all wear processes involving products and fingers/skin, and realistically replicate liquid environments such as human sweat, hand lotion, sunscreen, detergents, toothpaste, and other liquid media.
This device can simulate wear processes including: finger abrasion, nail scratches, tooth wear, sole abrasion, and industrial scratches. When human fingers, skin, teeth, and other media come into contact with various products, they cause wear on the material surfaces. This wear significantly impacts product quality and performance.
Features
1. High-fidelity testing that realistically simulates chemical/mechanical wear processes
2. High reproducibility and repeatability
3. Standardized fully automated test procedures
4. Wide range of applications
5. Flexible device configuration, exceptional durability, and user-friendly operation
Parameters
| Item | Specifications |
|---|---|
| Normal Load | 1. 5. 10 N (20 N optional) |
| Friction Path | 1–40 mm |
| Cycle Count | 1–100.000.000 cycles |
| Fluid Replenishment | Cyclic |
| Fabric Replenishment | Cyclic |
| Power Supply | 110V/230V |
| Weight | 55 kg |
Accessories
Related Configurations:
1. Test Heads (Optional Accessories):
Nail Scratch Resistance Test: Simulates friction and scratches caused by human fingernails on material surfaces (e.g., printing, coatings);
Nail Scratch Test “Automotive Industry Use”: Simulates industrial scratches according to various testing standards to evaluate coating quality;
Shoe Sole Abrasion Test: Tests material resistance to shoe sole abrasion based on various inspection standards;
Tooth Simulation Test: Simulates tooth abrasion resistance per testing standards;
Fingerprint Test: Evaluates affinity for fingerprint adhesion and removal characteristics.
2. Scanning Calculation System:
This system calculates material surface structure, coatings, imprints, abrasion and wear, particle size distribution, and porosity.
Specifically designed to organize and evaluate wear results, it also assesses various other surface properties.
Calculation parameters include:
Particle size distribution (count, area, size, and percentage)
Average values (including standard deviation)
Pore distribution
Height analysis of grayscale surface morphology images
Azimuthal length profiles
Abrasion and wear analysis
3. Test Cloth Selection:
Nail Scratch Resistance Test: Simulates friction and scratches from human fingernails on material surfaces (e.g., printing, coating);
Nail Scratch Test “Automotive Industry”: Simulates industrial scratches per various test standards to evaluate coating quality;
Shoe Sole Abrasion Test: Evaluates material resistance to shoe sole abrasion per various inspection standards;
Tooth Simulation Test: Simulates tooth abrasion resistance per test standards;
Fingerprint Test: Assesses affinity for fingerprint adhesion and removal characteristics.
4. Artificial Sweat:
Compliant with standards: DIN 53160-2:2001. BMW GS 97045-2. DBL 7384. VW TL 226
5. Other Standard Test Fluids:
Cleaning creams, lotions, polishing compounds, toothpaste, etc.
Equipment Options:
1. Mechanical Options
Standard Fabrics:
Human skin simulation acc.
ISO 12947-1/IEC 68-2-70
Dust Adhesion:
Material soiling simulation
Cotton contaminated with carbon/oil, etc.
Abrasion Pad:
High-intensity mechanical wear simulation
Abrasion Pad, Tape Test:
Simulation of tape-cloth friction
2. Chemical Options
Synthetic Sweat:
Synthetic sweat per DIN ISO 9022-12
Synthetic sweat per DIN EN 60068-2-70
Synthetic sweat per DIN ISO 105-E04
Synthetic sweat per DIN 53160-2
Synthetic sweat per company standards (BMW, Volkswagen, Daimler)
Hand cream/sunscreen oil:
Hand cream and sunscreen oil per customer specifications.
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