Related Experiment Video
Updated: Jan 20, 2026
Compression and Schmidt Hammer Tests on Hardened Concrete
Published on: April 30, 2023
A cost-effective laboratory device for single slow micro compression testing of soft materials in the small-strain
Jaehyeong Kim1, Sangjun Pyo1, Hyerin Ahn1
1Department of Digital Anti-aging Healthcare, Inje University, Gimhae 50834, the Republic of Korea.
Abstract:
In various microscale applications, accurate evaluation of the mechanical properties of materials under small-strain and low-force conditions is important. However, conventional universal testing machines (UTM) are expensive and difficult to operate reliably under low-force conditions, making them unsuitable for small-strain testing. To overcome these limitations, we developed a cost-effective device for single slow micro-compression testing (MCT) to measure the mechanical properties of materials in the small-strain region. The MCT consists of a force sensor (FlexiForce A301-1, Tekscan, USA), an Arduino-based signal acquisition module, and a high-precision z-stage. The displacement control accuracy of the z-stage was verified using a laser displacement meter (LK-G10, Keyence, Japan), and the experimental results confirmed displacement and force resolutions of 1 µm and 0.01 N, respectively. Under no-load conditions, the force-displacement error between the MCT and a commercial universal testing machine (MTS, AMETEK LRX-plus, LLOYD INSTRUMENTS, UK) was within ± 2.0 %. In addition, standard and one-third-size PDMS (polydimethylsiloxane) specimens were fabricated according to ASTM D575-91 and tested using both systems; the error between the two specimens was within ± 0.05 %. From the linear region in the small-strain range, the Young's modulus of the miniature specimen was estimated, showing a percentage error of + 2.2 % from reported values, confirming high precision and reliability. The developed device, with a total fabrication cost below USD 1,500, provides cost-effectiveness, precision, and repeatability, enabling applications in polymer MEMS and soft robotics.
Related Concept Videos
Compression Tests on Hardened Concrete
There are two distinct stages in a construction project involving concrete. The first stage involves batching, transporting, and casting fresh concrete. At this stage, the material is viscous, and the workability and finishability are the key performance criteria. The second stage occurs when the hydration process begins shortly after the concrete is placed in the form, and the concrete...
06:54Ultrasonic Fatigue Testing in the Tension-Compression Mode
05:19Automated Compression Testing of the Ocular Lens
23:56Comprehensive & Cost Effective Laboratory Monitoring of HIV/AIDS: an African Role Model
09:24Micro 3D Printing Using a Digital Projector and its Application in the Study of Soft Materials Mechanics
06:07Studying Large Amplitude Oscillatory Shear Response of Soft Materials

