Microcomputer Controlled Electronic Universal Testing Machine
Single-column/dual-column material testing machine for performing tensile, compression, flexure and bending tests

Applications
Perfect for testing a wide range of materials, from rubber, plastics, and textiles to waterproof materials, wires, cables, metals, and composites. This testing machine is ideal for industries that require accurate and consistent mechanical testing of materials.
Detailed Component Overview
Achieving precision in material testing is important to ensure quality and performance, and the microcomputer-controlled universal testing machine offers exactly that. Equipped with an AC stepper motor and a digital servo speed control system, these electronic universal testing machines provides reliable force application during mechanical tests. Its arc synchronous belt and precision ball screw assembly ensure smooth operation. While primarily used for tensile testing, this testing system easily adapts to other tests, including compression, bending, shearing, tearing, peeling, and puncture, by changing fixtures.
Technical Specifications
Single-Column Universal Test Machine with Microcomputer Control | Dual-Column Universal Test Machine with Microcomputer Control | ||||||||||
Model | |||||||||||
Max. test force (kN) | 0.2 | 0.5 | 1 | 2 | 5 | 5 | 10 | 20 | 50 | 100 | 300 |
Test level | Level 1 | ||||||||||
Test force measurement range | 0%-100%FS | 2%-100%FS | |||||||||
Test force measurement accuracy | Better than ±1% | ||||||||||
Displacement measurement accuracy | Better than ±1% | ||||||||||
Displacement resolution (mm) | 0.01 | 0.001 | |||||||||
Displacement speed adjustment range (mm/min) | 0.1-500 stepless speed regulation | 0.1-200 | |||||||||
Safety features | Mechanical limit protection, software overload protection | ||||||||||
Effective tensile space (mm) | 600mm or 1000mm (optional) | 650 | |||||||||
Dimensions (L×W×H) (mm) | 480×280×1480 | 730×360×1750 | 800×480×1870 | 1130×650×2650 | |||||||
Power supply | AC220V, 50Hz |
Standards
- ASTM E8/E8M
Standard Test Methods for Tension Testing of Metallic Materials - ASTM D638-2014
Standard Test Method for Tensile Properties of Plastics - ASTM D882
Standard Test Method for Tensile Properties of Thin Plastic Sheeting - ASTM D3330
Standard Test Method for Peel Adhesion of Pressure-Sensitive Tape - ASTM D412
Standard Test Methods for Vulcanized Rubber and Thermoplastic Elastomers – Tension - ASTM D395
Standard Test Methods for Rubber Property – Compression Set - ASTM D624
Standard Test Method for Tear Strength of Conventional Vulcanized Rubber and Thermoplastic Elastomers - ASTM D1037
Standard Test Methods for Evaluating Properties of Wood-Base Fiber and Particle Panel Materials - ASTM C165
Standard Test Method for Measuring Compressive Properties of Thermal Insulations - ASTM D1621
Standard Test Method for Compressive Properties of Rigid Cellular Plastics - ASTM D1002
Standard Test Method for Apparent Shear Strength of Single-Lap-Joint Adhesively Bonded Metal Specimens by Tension Loading - ASTM D3165
Standard Test Method for Strength Properties of Adhesives in Shear by Tension Loading of Single-Lap-Joint Laminated Assemblies - ASTM D4595
Standard Test Method for Tensile Properties of Geotextiles by the Wide-Width Strip Method - ASTM D4833
Standard Test Method for Index Puncture Resistance of Geomembranes and Related Products - ASTM D6241
Standard Test Method for Static Puncture Strength of Geotextiles and Geotextile-Related Products Using a 50-mm Probe - ASTM C393
Standard Test Method for Core Shear Properties of Sandwich Constructions by Beam Flexure - ASTM C109
Standard Test Method for Compressive Strength of Hydraulic Cement Mortars - ISO 6892-1
Metallic Materials – Tensile Testing - ISO 34-1
Rubber, Vulcanized or Thermoplastic – Determination of Tear Strength - ISO 4587
Adhesives – Determination of Tensile Lap-Shear Strength of Rigid-To-Rigid Bonded Assemblies - ISO 3776
Tractors and Machinery for Agriculture – Seat Belts - DIN EN 310
Wood-Based Panels - Determination of Modulus of Elasticity in Bending and of Bending Strength - DIN EN 826
Thermal Insulating Products for Building Applications – Determination of Compression Behavior - DIN 4420-1
Arbeits- und Schutzgerüste (Working and Protective Scaffolds) - DIN EN 1465
Adhesives - Determination of Tensile Lap-Shear Strength of Bonded Assemblies - DIN EN ISO 12236
Static Puncture Test for Geotextiles and Geotextile Related Products - ISO 815-1
Rubber, Vulcanized or Thermoplastic – Determination of Compression Set - ISO 37
Rubber, Vulcanized or Thermoplastic – Determination of Tensile Stress-Strain Properties - ISO 527
Plastics – Determination of Tensile Properties - ISO 10319
Geosynthetics – Wide-Width Tensile Test - ISO 844
Rigid Cellular Plastics – Determination of Compression Properties - ISO 679
Cements – Test Methods – Determination of Strength - EN 74-1:2005
Couplers, Spigot Pins and Baseplates for Use in Falsework and Scaffolds – Part 1: Couplers for Tubes – Requirements and Test Procedures - GB/T 528
Determination of the Tensile Stress-Strain Properties of Vulcanized and Thermoplastic Rubbers - GB/T 17657-2022
Evaluating the Physical and Chemical Properties of Wood-Based Panels and Veneered Wood-Based Panels - GB/T 5486
Test Methods for Inorganic Rigid Thermal Insulation Products - GB 15831-2006
Steel Tube Scaffold Coupler - GB/T 7124
Determination of Tensile Lap-Shear Strength of Rigid-To-Rigid Bonded Assemblies - GB/T 15788
Geotextiles and Geotextile-Related Products - Wide-Width Tensile Test - GB/T 17671
Test Method of Cement Mortar Strength (ISO Method)
Features
- The advanced speed control system, combined with a precision reducer, allows for smooth and quiet operation, even at varying speeds, ensuring that tests are accurate and reliable
- Windows operating system, user-friendly interface, capable of displaying test method selection interface, test parameter selection interface, test operation and result display interface, and curve display interface, and can display various parameter curves in real time for easy analysis of test data and process monitoring
- The crossbeam can be adjusted quickly and easily to facilitate sample clamping. The system is also equipped with protection against overcurrent, overvoltage, and overload, ensuring safety during testing
- Pre-programmed with over 200 national and international standards and testing methods, providing a high level of compliance for a wide variety of test requirements