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The floor-standing door-type electronic universal testing machine represents a pinnacle of modern materials testing technology. As a sophisticated device designed for rigorous laboratory applications, it comprises two primary integrated systems: a computer for control and data acquisition, and a robust test host that performs the physical testing. Engineered for reliability and accuracy, these testing machines are pivotal for testing and researching a wide array of mechanical performance indicators—including tension, compression, bending, peeling, tear, and shear—on various metal, non-metal, and composite materials. Key user-friendly features include easy operation, continuously adjustable test speeds, automatic shutdown upon sample fracture, real-time digital display of the test force, and a peak holding function to capture maximum values.
Advanced Drive and Control System

The universal testing machine adopts a fully digital AC servo speed control system coupled with a servo motor as the core driving mechanism, guaranteeing high speed control precision and outstanding long-term performance stability. The integration of microcomputer control and powerful data processing software enables automatic collection and processing of experimental data. This software can effortlessly generate various test curves—such as stress-strain diagrams—and produce comprehensive experimental reports at the click of a button. The humanized design philosophy ensures that experimental operations are more intuitive than ever; virtually all commands can be executed automatically on the computer simply by using a mouse, streamlining the workflow for technicians and researchers alike.
Three Fundamental Control Modes with Seamless Switching
As an advanced Measuring Testing Instrument, the system offers three fundamental control modes—stress, strain, and displacement—which can be seamlessly switched during operation to suit the specific demands of the test without interruption. This flexibility enables adaptation to applications ranging from simple tensile tests to complex multi-stage testing procedures. The system boasts excellent expandability, allowing it to adapt to a vast range of specimen types by simply changing its fixtures, making it a versatile asset in any quality control or research and development laboratory.
Compliance with International Standards and Comprehensive Safety Protection
The dual-column universal testing machine fully complies with the requirements of numerous international standards, enabling users to conduct tests and subsequent data processing according to established protocols from GB, ISO, JIS, ASTM, DIN, and many other user-specified standards. The machine is equipped with multiple protective functions, including mechanical limit protection, overload protection, overcurrent protection, and leakage protection, safeguarding both the operator and the equipment during intensive use. Additional safety features include automatic shutdown at the maximum breaking value and upper/lower limit safety settings.
Technical Specifications at a Glance
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The UTM-FDC series offers a wide range of test force capacities from 0.02KN to 50KN (covering 2kg to 5000kg), with force accuracy within ±1% of the indicated value, force resolution of 1/500000, displacement resolution ≤0.05μm, and displacement precision within ±1% of the indicated value. The effective force range spans 0.4% to 100% of full scale. Standard test speed ranges from 0.1 to 500mm/min (1000mm/min optional). Standard test height (without fixtures) is 1330mm (800mm with fixtures), and standard test width is 420mm (650mm optional). The machine offers both manual and automatic return modes, automatic shutdown at maximum breaking force, and upper/lower limit safety protection. Mainframe dimensions (without working cupboard) are 750×500×1650mm with a net weight of 165kg.
The computerized dual-column servo tensile testing machine delivers exceptional control precision, flexible configuration, and reliable safety protection, providing a complete and efficient solution for the field of materials testing.
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