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WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine

The WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine is a versatile and efficient testing system designed to meet the demands of both tensile and compression testing. Featuring an up-mounted actuator structure, this machine utilizes a bidirectional differential cylinder to offer precise bidirectional control of tension and compression in a single compact space, making it ideal for testing metallic materials.

The HUT-DP Series boasts a clearance-free structure with adjustable actuators, enabling quick and easy changes to the test space, improving operational efficiency. It offers closed-loop control of constant force, constant displacement, and constant extension, providing seamless transitions between these modes for accurate and reliable testing results.

With automated test result calculations, easy export options, and print capabilities, the WANCE HUT-DP Series ensures convenient data management and reporting. Designed for high efficiency and smooth operation, this testing machine delivers excellent performance at a competitive universal testing machine price.

For industries looking for a universal testing machine capable of precise dynamic testing in tension and compression, the HUT-DP Series is a cost-effective solution without compromising on quality.

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WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine Overview

The WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine is a state-of-the-art system designed for dynamic testing applications where precision and flexibility are crucial. Ideal for high-performance material testing, this machine is particularly suited for testing materials and components under dynamic, cyclic, and fatigue loading conditions. It is widely used in industries like aerospace, automotive, materials research, and civil engineering.

  • Dynamic Servo Hydraulic Technology: Offers high precision and speed in controlling force, displacement, and speed, making it ideal for dynamic and fatigue testing applications.
  • Wide Testing Range: Capable of testing a broad range of materials under various load conditions, from low to high capacity, including tension, compression, and cyclic loading tests.
  • Fatigue and Cyclic Testing: Specially designed for dynamic fatigue testing, simulating real-world repetitive loading and stress cycles, essential for evaluating material longevity and performance.
  • Precision Control System: Provides real-time monitoring and adjustments, ensuring high accuracy and consistent test results under dynamic loading conditions.
  • Advanced Data Acquisition: Equipped with advanced software for data collection, analysis, and reporting, enabling detailed insights into material behavior under test conditions.
  • Flexible Customization Options: Compatible with a variety of grips, fixtures, extensometers, and environmental chambers to meet specific testing requirements.
  • Robust and Durable Design: Built to handle high-intensity testing and continuous use, providing reliable performance even under demanding conditions.

The WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine is an advanced solution for dynamic and fatigue testing needs. To learn more about the universal testing machine price and its customizable options, contact us today.

WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine Features

The WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine is a cutting-edge solution for conducting high-precision material testing under dynamic conditions. Designed for applications requiring both static and dynamic testing, this machine is particularly well-suited for industries such as automotive, aerospace, civil engineering, and materials research. Its servo hydraulic system ensures accurate control over force and displacement, making it ideal for fatigue, tension, compression, and other cyclic tests.

  1. Dynamic Servo Hydraulic System:

    • The HUT-DP Series features a dynamic servo hydraulic system that enables precise control of both static and dynamic loading conditions.
    • Capable of applying cyclic loads, making it perfect for fatigue testing and simulating real-world dynamic stress scenarios on materials.
  2. High Load Capacity:

    • The machine is available in a variety of load capacities, typically ranging from 100 kN to 1000 kN, allowing it to handle a broad range of material types and specimen sizes.
    • Ideal for testing components and materials used in high-load environments, including automotive, aerospace, and construction industries.
  3. Versatile Testing Capabilities:

    • The HUT-DP Series supports multiple types of tests, including tensile, compression, shear, bending, and fatigue testing.
    • Capable of dynamic and static testing under both low and high frequency, making it suitable for a wide range of material behaviors and applications.
  4. High Frequency Testing:

    • Designed for high-frequency testing (up to several Hz), the machine can replicate real-world dynamic loading conditions, essential for fatigue and durability testing.
    • Offers precise control over frequency and displacement, enabling accurate simulation of cyclic stress conditions.
  5. Precise Load Control:

    • The servo-controlled system ensures accurate and consistent load application, allowing for high precision in force and displacement measurement during testing.
    • Capable of performing tests with varying load profiles, from constant load to complex waveform loading for comprehensive material analysis.
  6. Motorized Crosshead and Adjustable Test Speed:

    • The motorized crosshead allows for precise adjustment of test speed and position, ensuring consistent results across tests.
    • The adjustable test speed feature allows users to customize the testing parameters to match specific material and test requirements.
  7. User-Friendly Software:

    • Comes equipped with an intuitive software interface for easy test setup, real-time monitoring, and detailed data analysis.
    • Features include real-time graphical displays, fatigue life prediction, automated reporting, and data logging for in-depth material analysis.
  8. Large Testing Area:

    • The machine provides a spacious test area that accommodates a variety of specimen sizes, making it versatile for different types of material testing.
    • Customizable fixtures, grips, and accessories can be added to tailor the machine for specific testing needs, ensuring flexibility in testing applications.
  9. Precision Sensors and Measurement Devices:

    • Equipped with high-accuracy load cells, displacement sensors, and extensometers for precise measurement of force, strain, and displacement during testing.
    • Provides accurate readings even under high-load and high-frequency conditions, ensuring the reliability of test results.
  10. Safety Features:

  • Includes built-in safety mechanisms, such as overload protection, emergency stop functions, and protective shields, to safeguard operators and the machine during testing.
  • Real-time diagnostics and monitoring ensure that the machine operates within safe parameters, preventing damage to both the specimen and the machine.
  1. Durable and Robust Construction:
  • The machine is built with high-quality materials and a sturdy frame to ensure durability and long-lasting performance, even under continuous use.
  • Engineered to withstand high-frequency, high-load conditions, making it ideal for testing in demanding industrial and research environments.
  1. Customizable Testing Options:
  • The HUT-DP Series offers customizable configurations to suit specific testing needs.
  • Can be tailored with additional accessories and features such as custom grips, environmental chambers, and multi-axis testing options for more complex material tests.

Specifications:

Load Capacities:

  • Available Load Capacities: 600 kN, 1000 kN, and 2000 kN

Drive Mechanism:

  • Actuators: Top cross-head mounted bi-directional differential actuators for precise control
  • Alignment: Excellent alignment with good shock absorption capabilities
  • Servo Valves: Moog servo valves for high accuracy control

Testing Capabilities:

  • Testing Speed Range: 0.01 to 360 mm/min
  • Position Control Resolution: 1/500,000 of maximum stroke
  • Stroke Length: Long strokes up to 780 mm
  • Test Space:
    • Horizontal Test Space: Up to 780 mm
    • Tension Test Space: Up to 800 mm
    • Compression Test Space: Up to 525 mm

Control and Data Acquisition:

  • Controller: 32-bit Digital Signal Processor-based controller
  • Servo Loop Update Rate: 5 kHz
  • Data Acquisition Rate: 1 kHz

Accuracy:

  • Load Accuracy: ± 0.5% of reading value down to 1/100th of full capacity
  • Speed Accuracy: ± 0.5% of set speed
  • Position Accuracy: ± 0.5% of reading
  • Strain Accuracy: ± 0.5% of reading value down to 1/50th of travel range

Power Supply:

  • Works out of: 3Ø 440 VAC

Additional Features:

  • Hydraulic Power Packs: Equipped with NACHI gear pumps from Japan for low noise operation
  • Grips: Side acting hydraulic grips for superior, slip-less gripping during tests

The WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine is designed for advanced dynamic and fatigue testing across various materials and applications. Below are the key applications for this high-performance testing machine:

Applications:
  1. Tensile and Compression Testing:

    • Tensile Testing: Measures the tensile strength, elongation, and yield properties of materials like metals, polymers, and composites.
    • Compression Testing: Evaluates the compressive strength and behavior of materials under compressive forces, ideal for materials like concrete, elastomers, and metals.
  2. Dynamic and Fatigue Testing:

    • High-Cyclic Fatigue Testing: Used for assessing materials under repeated cyclic loading, simulating real-world stresses such as those encountered in automotive, aerospace, and structural components.
    • Durability Testing: Evaluates the long-term performance and resistance to fatigue of materials, which is essential for ensuring the reliability of products under dynamic conditions.
  3. Dynamic Load Testing:

    • Simulating Real-World Conditions: Tests materials, components, and structures under dynamic loading conditions, providing insights into their behavior under operational stresses.
    • Shock and Impact Testing: Used to simulate shock and impact events, such as in automotive crash testing, aerospace components, and heavy machinery.
  4. Materials Testing:

    • Metals and Composites: Tests the tensile, compression, and fatigue properties of metals, alloys, and composite materials used in various industries like aerospace, automotive, and construction.
    • Elastomers and Polymers: Evaluates the fatigue resistance of flexible materials like rubbers, elastomers, and plastics, which are used in seals, gaskets, and automotive parts.
    • Adhesives: Assesses the performance of adhesive bonds under dynamic loading conditions, simulating their behavior in applications like automotive bonding, aerospace, and construction.
  5. Structural Testing:

    • Fatigue Resistance of Structural Materials: Used to evaluate materials and components used in infrastructure, such as beams, plates, and structural joints, under cyclic loads.
    • Testing of Metal Strips, Wires, and Rebar: Ensures that materials like metal strips, wires, and rebar can withstand repeated loading conditions without failure.
  6. Cyclic Load and High-Speed Testing:

    • Cyclic Fatigue and High-Speed Loading: Tests the performance of materials and components subjected to high-speed cyclic loads, often used in industries like automotive and aerospace, where components experience rapid cycles of stress and strain.
  7. Fracture and Crack Growth Testing:

    • Fatigue Crack Growth: Monitors the progression of cracks in materials under cyclic loading, which is essential for predicting the lifespan of components subjected to repeated stress, such as turbine blades, automotive parts, and infrastructure elements.
Industry Applications:
  1. Automotive and Aerospace:

    • Component Testing: Tests materials and components subjected to high-cyclic loading, ensuring they can withstand the stresses encountered in real-world automotive and aerospace applications.
    • Durability and Performance Testing: Simulates dynamic loading conditions to evaluate the fatigue resistance of parts like suspension systems, fasteners, and structural components.
  2. Construction and Structural Engineering:

    • Fatigue Testing of Structural Materials: Ensures that materials like rebar, steel beams, and concrete structures can endure repeated loading conditions over time.
    • Impact and Shock Testing: Simulates the impact and shock forces that materials used in construction might experience during events such as earthquakes, heavy traffic, or machinery impacts.
  3. Research and Development:

    • Material Innovation: Supports R&D efforts to develop new materials with improved fatigue resistance and durability under dynamic conditions.
    • Prototype Testing: Assesses the performance of prototypes in dynamic loading situations to ensure that new products can withstand real-world operational stresses.
  4. Medical Device Testing:

    • Fatigue Testing of Implants: Tests medical implants, such as joint replacements and dental implants, for their performance under cyclic loading, ensuring they can withstand daily use in the human body over time.
    • Dynamic Load Simulation: Evaluates the durability and reliability of medical devices that are subjected to repetitive forces in the body, such as bone screws and orthopedic devices.
Advantages of the WANCE HUT-DP Series:
  • High Dynamic Testing Capabilities: Offers precise control for dynamic and fatigue testing, making it ideal for testing materials and components subjected to high-cyclic loading.
  • Versatility: Capable of testing a wide range of materials, including metals, composites, elastomers, and medical devices.
  • Advanced Control System: Provides advanced servo-hydraulic control for accurate simulation of real-world dynamic and fatigue conditions.
  • Compliance with Industry Standards: Meets global testing standards for dynamic and fatigue testing, ensuring consistency and reliability in results.

The WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine is an advanced, versatile solution for industries that require precise fatigue and dynamic testing. It is particularly useful in automotive, aerospace, medical device testing, and construction applications, where materials and components are subjected to cyclic and dynamic loading.

1. What is the WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine?

The WANCE HUT-DP Series Dynamic Servo Hydraulic Universal Testing Machine is designed for high-precision dynamic testing of materials and components. It uses a servo-hydraulic system to perform static and dynamic load tests, including fatigue, tensile, compression, and other material performance tests under variable loading conditions. This machine is widely used in industries like aerospace, automotive, and materials research.

The WANCE HUT-DP Series can perform a variety of tests, including:

  • Fatigue testing (both high and low-cycle fatigue)
  • Tensile testing
  • Compression testing
  • Dynamic load testing (for simulating real-world operating conditions)
  • Cyclic loading
  • Bending and flexural testing
  • Stress-strain testing
  • Impact and fracture testing

The WANCE HUT-DP Series has a load capacity ranging from 10 kN to 2500 kN, depending on the specific model and configuration. This range allows for testing a wide variety of materials, from small components to large structural elements.

The WANCE HUT-DP Series is used across multiple industries, including:

  • Aerospace (testing materials for aircraft components and structures)
  • Automotive (for evaluating materials used in vehicle components)
  • Construction (testing building materials and structural elements)
  • Manufacturing (for assessing the durability and strength of industrial products)
  • Research and Development (for advanced material behavior studies)
  • Energy (testing materials for wind, solar, and nuclear energy applications)

The WANCE HUT-DP Series supports a wide frequency range for dynamic testing, typically from 0.01 Hz to 100 Hz. This allows the machine to simulate both low-frequency cyclic loading (for durability testing) and high-frequency loading (for materials exposed to rapid changes in stress and strain).

The testing speed of the WANCE HUT-DP Series varies depending on the test type and load application, with a range from 0.001 mm/min to 1000 mm/min. This flexibility allows for both slow, precise tests as well as high-speed testing for quick assessments.

The WANCE HUT-DP Series uses advanced testing software, typically WANCE TestControl. This software provides:

  • Real-time monitoring of load, displacement, and strain
  • Automation of test protocols and data logging
  • Advanced data analysis tools, including fatigue life prediction
  • Customizable test programs to meet international standards (e.g., ASTM, ISO)
  • Graphical and tabular display of test results
  • Automated test reporting and documentation

The key features of the WANCE HUT-DP Series include:

  • Servo-hydraulic drive system for precise dynamic load control
  • High load capacity and the ability to simulate realistic operating conditions
  • Multi-functional testing capabilities (tensile, compression, fatigue, etc.)
  • High-frequency dynamic loading for simulating real-world cyclic conditions
  • Advanced software for monitoring, analysis, and report generation
  • Compact design for flexible installation options
  • Safety features, including automatic overload protection and emergency stop buttons

The WANCE HUT-DP Series is capable of testing a wide range of materials, including:

  • Metals (e.g., steel, aluminum, titanium, alloys)
  • Polymers and plastics
  • Composites (e.g., carbon fiber, fiberglass)
  • Rubbers and elastomers
  • Ceramics
  • Biomaterials (e.g., medical implants, prosthetics)

The WANCE HUT-DP Series typically requires a 380V 3-phase AC power supply, with specific voltage requirements varying based on the configuration of the machine. It is essential to verify the exact power requirements based on the installation site.

The WANCE HUT-DP Series stands out from other universal testing machines due to its ability to conduct dynamic and fatigue testing with high precision under varying loading conditions. Its servo-hydraulic system provides more control over dynamic loading compared to traditional electromechanical systems. Additionally, its ability to simulate real-world cyclic stress conditions at varying frequencies makes it ideal for testing materials under dynamic loading that standard machines might not support.

The WANCE HUT-DP Series comes equipped with multiple safety features to ensure operator safety during testing:

  • Automatic overload protection to avoid damage to the machine or specimen
  • Hydraulic pressure regulation to maintain safe and stable operation
  • Emergency stop button for immediate shutdown
  • Safety shields and barriers around the testing area
  • Software-based safety alerts to warn of abnormal conditions

The WANCE HUT-DP Series is designed to be user-friendly with its intuitive software interface (WANCE TestControl) that simplifies test setup and monitoring. The machine is also equipped with automatic calibration features, and the system provides real-time visual feedback, making it suitable for both new and experienced operators. The ease of use and automation reduce manual intervention and allow for efficient testing procedures.

The WANCE HUT-DP Series comes with a 1-year standard warranty covering parts and labor. Additional support services such as extended warranties, maintenance plans, and training can be provided. WANCE offers technical support, remote diagnostics, and software updates to ensure the system runs smoothly.

Yes, the WANCE HUT-DP Series can be equipped with an environmental chamber to conduct high-temperature and low-temperature testing. This feature allows for testing materials under extreme environmental conditions, making it suitable for applications in industries such as aerospace, automotive, and energy.

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