LE2000 Series Single Column Desktop Model
The single column desktop load frame offers up to 5kN force capacity with optional extended height.
Design Features:
- Preloaded bearing and precision ball screw ensure stable crosshead movement and accurate strain results.
- LED status indicator for safe operation.
- High-performance controller with up to 2500Hz data acquisition.
- Proprietary servo motor drive system for high speed and minimal vibration.
- Loadcell with TEDS self-identification.
- Safety features include limit switches, software overload protection, and optional enclosures.
- Intuitive software with drag-and-drop setup and comprehensive analysis and reporting tools.
LE3000 Series Dual Column Desktop Model
The dual column desktop load frame provides force capacities ranging from 10kN to 50kN, with optional extended height.
Design Features:
- Preloaded bearing and precision ball screw ensure stable crosshead movement and accurate strain measurement.
- LED status indicator for operational safety.
- High-performance controller with up to 2500Hz data acquisition rate.
- Servo motor drive system for high speed and minimal vibration.
- Loadcell with TEDS self-identification.
- Safety features include limit switches, software overload protection, and optional enclosures.
- Intuitive software with drag-and-drop setup and comprehensive analysis and reporting tools.
LE5000 Series Floor Standing Model
The floor standing load frame offers force capacities from 100kN to 600kN, with optional extended height.
Design Features:
- Preloaded bearing and precision ball screw ensure stable crosshead movement and accurate strain results.
- LED status indicator for safe operation.
- High-performance controller with up to 2500Hz data acquisition rate.
- Servo motor drive system for high speed and minimal vibration.
- Loadcell with TEDS self-identification.
- Safety features include limit switches, software overload protection, and optional enclosures.
- Intuitive software with drag-and-drop setup and comprehensive analysis and reporting tools.
LE5106 Electromechanical UTM (1000kN)
The LE5106 Series offers versatile testing capabilities, suitable for material mechanics and small component testing. It supports a wide range of materials including metals, non-metals, composites, polymers, medical materials, aluminum alloys, and superalloys.
Design Features:
- Includes pre-loaded ball screws and vibration-resistant guide for stable operation and precise displacement.
- Color-coded LED indicators provide clear status updates.
- High-rigidity guide minimize lateral forces on samples for accurate testing.
- High precision Alignment System
- Base-mounted Load cell offer consistent long-term accuracy.
- Optional impact-resistant polycarbonate shield enhances operator safety.
- Facilitates easy operation with fine-tuning and crosshead control
Fatigue Test Systems
Electronic Servo Fatigue Test System
The Electronic Servo Fatigue Testing Machine is designed for fatigue life testing of automotive engine mounts, chassis components, and structural parts. It is also used for dynamic performance testing of various components.
Design Features:
- Linear Motor: High-efficiency, low-friction magnetic levitation motor with up to 100 Hz frequency, accelerates to 20g, and ensures continuous stable operation.
- Load Sensor: High-precision sensor with over 200% overload capacity, temperature and offset compensation, and 0.03% linear accuracy.
- Controller: German digital servo system with PCI bus technology, TEDS sensor auto-recognition, and 10 kHz closed-loop rate.
- Software: DynamicExpert software with automatic data analysis, user-friendly interface, and customizable test templates.
- Applications: Suitable for microelectronics, food packaging, medical devices, and textiles for testing material and component fatigue life.
LF Series Servo-Hydraulic Fatigue Test System
The LF Series Servo-Hydraulic Fatigue Test System is designed for a variety of material tests, including composites, metals, and alloys. It is suitable for both material and small component testing.
Design Features:
- High-Rigidity Columns: Customizable and durable.
- Sturdy Crosshead: Ensures stable and precise movement.
- Hydraulic Cylinder: Automatic compensation and low starting pressure.
- Alignment System: Precise adjustments for coaxiality.
- Fatigue-Rated Load Sensor: Accurate with compensation features.
- Hydraulic Wedge Grips: Adjustable clamping force and speed.
- Centralized Control: Intuitive and compact.
- LCD Handheld Device: Easy operation with fine adjustment.
Standards: ASTM D3479, ASTM D7615, GB/T 3075, HB5287, GB/T 4161-2007, ASTM 1290, JJG 556-2011.
Servo-Hydraulic Fatigue Test System
The LF Series Servo-Hydraulic Universal Testing System is ideal for testing various materials including composites, metals, and alloys. It excels in both material and small component testing.
Design Features:
- High-Rigidity Columns: Customizable and durable.
- Sturdy Crosshead: Ensures stable and precise movement.
- Hydraulic Cylinder: Automatic compensation and low starting pressure.
- Alignment System: Precise adjustments for coaxiality.
- Fatigue-Rated Load Sensor: Accurate with compensation features.
- Hydraulic Wedge Grips: Adjustable clamping force and speed.
- Centralized Control: Intuitive and compact.
- LCD Handheld Device: Easy operation with fine adjustment.
Standards: ASTM D3479, ASTM D7615, GB/T 3075, HB5287, GB/T 4161-2007, ASTM 1290, JJG 556-2011.
Floor Standing Servo-Hydraulic Test System
The LF Series Floor-Standing Servo-Hydraulic Testing System is designed for testing a wide range of materials including composites, metals, and alloys. It is ideal for both mechanical property testing and small component testing.
Design Features:
- High-Rigidity Columns: Customizable and durable.
- Sturdy Crosshead: Ensures stable and precise movement.
- Hydraulic Cylinder: Automatic compensation and low starting pressure.
- Alignment System: Precise adjustments for coaxiality.
- Fatigue-Rated Load Sensor: Accurate with compensation features.
- Hydraulic Wedge Grips: Adjustable clamping force and speed.
- Centralized Control: Intuitive and compact.
- LCD Handheld Device: Easy operation with fine adjustment.
Standards: ASTM D3479, ASTM D7615, GB/T 3075, HB5287, GB/T 15248-2008, GB/T 6398-2000, GB/T 4161-2007, GB/T 21143, ASTM 1290, ASTM E399, JJG 556-2011.
High Temp Servo-Hydraulic Fatigue Test
The LF Series High-Temperature Servo-Hydraulic Testing System is designed for testing materials under elevated temperatures, ideal for a range of materials including composites, steels, aluminum alloys, and superalloys.
Design Features:
- High-Rigidity Columns: Customizable, high hardness, precision-engineered.
- Robust Crosshead: Ensures stable and precise movement.
- Hydraulic Cylinder: Low starting pressure with automatic compensation.
- Alignment System: Precise adjustments for optimal specimen holding.
- Fatigue-Rated Load Sensor: Accurate with temperature and load compensation.
- Hydraulic Wedge Grips: Adjustable clamping force and speed.
- Centralized Control: User-friendly with compact design.
- LCD Handheld Device: Simple operation with fine adjustment controls.
Structural Component Fatigue Test System
This system is designed for testing the load-bearing capacity of support and suspension components, complying with standards such as GB, ASTM, ISO, JIC, and CJ.
Design Features:
- Versatile Platform: Accommodates large-scale and multi-functional loading points.
- Dual-Station Capability: Allows for both static and dynamic loading.
- Multi-Channel Controller: Provides precise and flexible loading control.
- Enclosed, Quiet Hydraulic Power Unit: Minimizes noise and maintains stable performance.
- Customizable Fixtures: Tailored to efficiently evaluate various component sizes and functions.
This system supports comprehensive assessment of mechanical performance and service life of structural components, meeting the demands of diverse materials and designs.
Impact Test Systems
Plastic Pendulum Impact Test System
The Plastic Pendulum Impact Testing Machine is designed to assess the impact resistance of non-metallic materials such as plastics, nylon, hard rubber, fiberglass, and electrical insulation materials under dynamic loads.
Technical Specifications:
- Models: LI2550, LI2251, LI2501
- Maximum Impact Energy: 5.5 J, 25 J, 50 J
- Impact Speed: 2.9 m/s, 3.46 m/s, 3.8 m/s
- Dimensions (WxHxD): 920x1020x500 mm, 1160x1210x520 mm
- Weight (excluding accessories): 170 kg, 230 kg, 320 kg
- Impact Test Results: Energy (J), Impact Strength (kJ/m²)
- Angle Resolution: 0.045°
- Safety Protection: Disc brake, fully enclosed protective device
Instrumented Metal Pendulum Impact Test System
This advanced system surpasses traditional Charpy tests by quantifying impact force and displacement during material fracture. It provides detailed insights into impact absorption distribution throughout the dynamic fracture process, offering essential data for in-depth research on material dynamic fracture properties.
Key Features:
- Quantitative Analysis: Measures the impact force and displacement relationship during material fracture.
- Detailed Insights: Provides data on impact absorption distribution throughout the dynamic fracture process.
- Advanced Testing: Offers rich mechanical information and clear physical significance for material research.
Standards: GB/T 229, GB/T 19748, and ISO 14556 – Instrumented Charpy V-Notch Impact Testing for Steel
Instrumented Drop Weight Impact Test
This machine assesses the impact resistance of metals and non-metals, including plastics and ceramics. It uses impact force sensors and high-speed data acquisition to measure load and deformation during fracture, providing detailed force-displacement-energy curves and key metrics such as yield force, maximum force, and total impact energy. It enables accurate fracture analysis and dynamic toughness evaluation.
Key Features:
- Measures load and deformation during impact
- Provides force-displacement-energy curves
- Calculates yield force, maximum force, crack initiation and stopping forces, and total impact energy
- Suitable for metals, plastics, ceramics, and more
Standards: GB/T 2611, ASTM D7136/D 7136M, ASTM D7192, ASTM D3763, ASTM E23, ISO 148.1, ISO 148.2, EN 10045.1, EN 10045.2, DIN 50115, JJG 145, GB/T 3808










