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Single Column Universal Testing Machine TTM-5L (5kN UTM)

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Single Column Universal Testing Machine TTM-5L (5kN UTM)

The Single Column Universal Testing Machine TTM-5L (5 kN UTM) is designed for precise static mechanical property testing of a wide range of materials, including plastics, rubber, paper, textiles, non-metals, and composites. With a maximum testing force of 5 kN, this compact single column universal testing machine supports tensile, compression, bending, shear, peel, tear, loading, relaxation, and reciprocating tests.

Designed for quality control, research, material development, and calibration applications, the TTM-5L provides reliable measurement of material strength, deformation, and mechanical performance under controlled loading conditions. Its servo-driven system supports stable and repeatable crosshead movement, helping maintain consistent test results across multiple testing cycles.

The 5 kN Universal Testing Machine automatically calculates key mechanical parameters, including upper and lower yield strength (ReH and ReL), proof strength (Rp0.2), maximum force (Fm), proof stress values (Rt0.5, Rt0.6, Rt0.65, and Rt0.7), tensile strength (Rm), and elastic modulus (E). Test data and results can be generated in accordance with relevant ISO, ASTM, and DIN standards, supporting standardized material evaluation and laboratory testing requirements.

The full-digital closed-loop control system provides real-time monitoring of force, deformation, and displacement curves during testing. Operators can review, replay, analyze, and edit test curves after completion, supporting detailed evaluation and efficient data management.

Typical Applications

  1. Calibration of load measurement instruments for uniaxial testing machines

  2. Verification and calibration of force-measuring systems in tension and compression testing machines

  3. Tensile testing of metallic materials at room temperature

  4. Tensile stress-strain testing of vulcanized and thermoplastic rubber

  5. Tensile property testing of plastic films

  6. 180° peel testing of flexible-to-rigid adhesive bonds

  7. Shear impact strength testing of adhesive bonds

The TTM-5L 5 kN Universal Testing Machine provides a versatile solution for laboratories and facilities requiring accurate tensile, compression, bending, shear, peel, and other mechanical tests within a compact single-column testing platform.

Single Column Universal Testing Machine TTM-5L (5 kN UTM) Applications

The TTM-5L Single Column Universal Testing Machine supports a wide range of static mechanical tests for materials research, manufacturing quality control, product development, and calibration laboratories.

  • Force System Calibration: Calibration of load-measurement instruments for uniaxial testing machines in accordance with ISO 7500-1 and ASTM E4.

  • Force Measurement Verification: Verification and calibration of force-measuring systems used in tension and compression testing machines.

  • Metal Tensile Testing: Tensile testing of metallic materials at room temperature to determine yield point, tensile strength, elongation, and other mechanical properties.

  • Rubber and Elastomer Testing: Tensile stress-strain testing of vulcanized and thermoplastic rubber in accordance with ISO 37 and ASTM D412.

  • Plastic Film Testing: Tensile property testing of thin plastic films and sheeting according to ASTM D882 and ISO 527-3.

  • Adhesive Peel Testing: 180° peel testing of flexible-to-rigid adhesive bonds to evaluate bond strength and adhesion performance.

  • Adhesive Shear Impact Testing: Shear impact strength testing of adhesive bonds to assess joint strength and durability.

  • Paper, Textile, and Composite Testing: Tensile and tear testing of paper, nonwoven materials, textiles, and composite laminates for production quality control and material evaluation.

Single Column Universal Testing Machine TTM-5L (5 kN UTM) Standards

The TTM-5L Single Column Universal Testing Machine supports testing procedures and reporting requirements based on internationally recognized ISO and ASTM standards for tensile, compression, peel, shear, and force-measurement verification. These standards help laboratories maintain consistent testing procedures, reliable measurements, and comparable results across different applications.

  • ISO 6892-1: Metallic materials — Tensile testing — Method of test at room temperature.

  • ISO 7500-1: Metallic materials — Verification and calibration of the force-measuring system of uniaxial testing machines.

  • ISO 376: Metallic materials — Calibration of force-proving instruments used for the verification of uniaxial testing machines.

  • ISO 9513: Metallic materials — Calibration of extensometer systems used in uniaxial testing.

  • ISO 37: Rubber, vulcanized or thermoplastic — Determination of tensile stress-strain properties.

  • ISO 527-3: Plastics — Determination of tensile properties — Test conditions for films and sheets.

  • ASTM E8/E8M: Standard test methods for tension testing of metallic materials.

  • ASTM E4: Standard practices for force verification of testing machines.

  • ASTM D412: Standard test methods for vulcanized rubber and thermoplastic elastomers — Tension.

  • ASTM D882: Standard test method for tensile properties of thin plastic sheeting.

  • ASTM D903: Standard test method for peel or stripping strength of adhesive bonds.

  • ASTM D950: Standard test method for impact strength of adhesive bonds.

Single Column Universal Testing Machine TTM-5L (5 kN UTM) Features

The TTM-5L Single Column Universal Testing Machine combines a rigid single-column frame, precision servo drive, DSC-10TT full-digital closed-loop control system, and Windows-based testing software to provide accurate, stable, and repeatable material testing. Its compact benchtop design makes it suitable for laboratories, quality control environments, research facilities, and material testing applications.

Mechanical Design

  • Single-Column Frame: A rigid frame with a reinforced base, three-column support structure, and precision ball-screw mechanism provides excellent stiffness and a stable load path for consistent and repeatable test results.

  • AC Servo Drive: The AC servo motor works with a synchronous cog-belt reducer and high-precision ball screw to provide smooth, controlled crosshead movement with low operating noise and efficient power consumption.

Control and Measurement

The DSC-10TT full-digital closed-loop control system provides precise control and measurement throughout the testing process. A connected computer manages test parameters, controls the testing sequence, and displays force, deformation, and displacement curves in real time.

Following each test, operators can zoom into specific sections of the test curve for detailed analysis. The integrated figure-processing module also supports curve review, reanalysis, and data editing, helping laboratories evaluate test results efficiently and maintain consistent measurement records.

The TTM-5L is designed to support reliable mechanical testing performance and testing procedures aligned with internationally recognized standards.

Single Column Universal Testing Machine TTM-5L (5kN UTM)

DSC-10TT Control and Measurement System

The DSC-10TT full-digital closed-loop control system provides precise force, deformation, and displacement control for the TTM-5L Single Column Universal Testing Machine. Its hardware-based architecture combines high-speed data acquisition, digital servo control, real-time PID processing, and advanced software functions to deliver stable, accurate, and repeatable material testing.

Advanced Control and Measurement Features

  • Full Closed-Loop Control: Provides independent control of force, deformation, and displacement, with real-time switching between control modes for flexible test procedures.

  • 24-Bit Data Acquisition: Three high-speed analog-to-digital channels provide an effective resolution of ±1/300,000 throughout the testing process.

  • Synchronous Pulse Capture: Three pulse channels, including one displacement channel and two large-deformation channels, use quadruple-frequency technology with a maximum capture rate of 5 MHz.

  • Digital Servo Output: PWM output from 0.01 Hz to 5 MHz enables precise servo motor and crosshead motion control.

  • Stable Data Communication: USB and serial communication interfaces provide reliable data transfer with strong resistance to electrical interference.

  • Multi-Layer Protection: Integrated overload, overcurrent, overpressure, undervoltage, overspeed, and travel-limit protection helps safeguard the testing machine and operator.

DSC-10TT Control Architecture

The DSC-10TT uses a dedicated hardware-based architecture designed for high-speed sampling, precise motor control, and stable real-time operation.

  • Hardware-Based Digital Control: Dedicated servo control chips and a multi-channel data acquisition module perform key control and sampling functions directly through hardware for improved response and stability.

  • DSP and MCU Platform: A high-speed DSP handles computational tasks while an MCU manages input/output functions. Dedicated PWM and QEI motor-control modules provide precise motion management.

  • Parallel Sampling: A specialized ASIC simultaneously samples signals from all load cells, maintaining synchronization between load and deformation measurements.

  • 24-Stage Pulse Filtering: The optical encoder module uses hardware-based 24-stage filtering to reduce position-pulse errors caused by signal interference.

  • Real-Time PID Processing: Specialized ASIC components handle sampling, condition monitoring, and communication, allowing the primary processor to focus on real-time PID control calculations.

DSC-10TT Testing Software and Data Management

The Windows-based DSC-10TT software provides an intuitive graphical interface for test setup, real-time monitoring, curve analysis, result calculation, data storage, and report generation. Its modular structure supports flexible testing workflows and efficient laboratory data management.

User Access Management

The software provides role-based access control, allowing administrators to assign specific operational permissions to individual users. A super-administrator account provides comprehensive control over user accounts, permissions, and software modules.

Custom Test Program Configuration

Operators can configure test parameters and create customized test programs according to the selected testing method or standard. During testing, the software displays equipment status, test steps, control modes, and extensometer switching information in real time.

Following completion, the system generates test reports containing calculated results and relevant test data.

Real-Time Curve Display and Analysis

The DSC-10TT software provides real-time graphical display of test curves, including load-deformation and load-time relationships. Users can:

  • Compare multiple curves from the same test group.

  • Display comparison curves using different colors.

  • Zoom into specific curve sections for detailed analysis.

  • Identify and label important points manually or automatically.

  • Review and reanalyze test curves after testing.

  • Print labeled curves as part of test reports.

Automatic Data Storage and Retrieval

Test data is automatically stored to help prevent data loss caused by unexpected interruptions. The software provides fuzzy-search functionality for fast data retrieval and allows users to redisplay test results according to selected conditions.

Data from multiple testing sessions can also be combined for comparative analysis. Backup functionality provides an additional layer of data protection for laboratory records.

MS-ACCESS Database Integration

The DSC-10TT software uses an MS-ACCESS database for test-data storage and management. Integration with Microsoft Office allows test reports to be exported to Word and Excel formats.

Raw test data remains accessible for further analysis and material research, allowing laboratories to extract additional value from recorded test measurements.

Automatic Test Result Calculation

When an extensometer is used, the software can automatically calculate important material parameters, including:

  • ReH — Upper yield strength

  • ReL — Lower yield strength

  • Rp0.2 — Proof strength

  • Fm — Maximum force

  • Rt0.5 — Proof stress at 0.5% total strain

  • Rt0.6 — Proof stress at 0.6% total strain

  • Rt0.65 — Proof stress at 0.65% total strain

  • Rt0.7 — Proof stress at 0.7% total strain

  • Rm — Tensile strength

  • E — Elastic modulus

Users can configure the required parameters and generate corresponding graphical outputs based on the selected test method.

Automatic Extensometer Removal Notification

The software can identify the completion of the yield-stage measurement and switch from deformation measurement to displacement collection. An on-screen notification alerts the operator when the deformation measurement phase is complete and the extensometer can be removed.

Automatic Crosshead Return

After a test is completed, the moving crosshead automatically returns to its initial position, helping streamline repeated testing procedures and reduce operator intervention.

Automated Calibration

The system supports automatic calibration of load and elongation measurement according to the active testing standard. This simplifies calibration procedures and helps maintain measurement consistency.

Adaptive Display and Modular Expansion

The software automatically adjusts the displayed curve range according to changes in testing force and deformation. This provides clear real-time visualization throughout the test, even when measurement values change significantly.

The modular hardware and software architecture also supports interchangeable accessories, providing flexibility for different testing applications, future system expansion, and easier maintenance.

Key Benefits of the DSC-10TT System

  1. Precise Digital Closed-Loop Control: Independent force, deformation, and displacement control provides accurate management of test conditions.

  2. High-Speed Data Acquisition: 24-bit acquisition and high-frequency pulse capture provide detailed measurement data throughout the test.

  3. Synchronized Measurement: Parallel signal sampling keeps load, deformation, and displacement measurements synchronized.

  4. Reliable Position Measurement: Hardware-based pulse filtering helps minimize position errors caused by electrical interference.

  5. Fast Real-Time Processing: Dedicated hardware manages sampling and communication while the processor focuses on PID control.

  6. Comprehensive Data Management: Automatic storage, search, backup, analysis, and report-generation functions simplify laboratory workflows.

  7. Advanced Curve Analysis: Real-time visualization, curve comparison, zooming, point labeling, and post-test analysis support detailed material evaluation.

  8. Flexible Testing Configuration: Custom test programs and configurable result parameters accommodate different testing requirements.

  9. Enhanced Operator Protection: Multiple protection functions help reduce risks associated with abnormal operating conditions.

  10. Expandable Testing Platform: Interchangeable accessories and modular architecture allow the system to support additional testing applications.

Theory & Method

A Universal Testing Machine (UTM) evaluates the mechanical behavior of materials by applying a controlled force to a specimen while measuring the resulting load, deformation, and displacement. Depending on the test method, the specimen may be subjected to tension, compression, bending, shear, peel, or other mechanical loading conditions. The resulting measurements help determine important material properties such as yield strength, tensile strength, elongation, and elastic modulus.

The TTM-5L Single Column Universal Testing Machine generates controlled mechanical force through a precision moving crosshead driven by an AC servo motor. The motor operates through a synchronous cog-belt reducer connected to a high-precision ball screw. As the ball screw rotates, it converts rotary motion into smooth and controlled linear crosshead movement.

A precision load cell positioned within the load path measures the applied or reaction force, while displacement and deformation sensors monitor specimen movement. During a tensile test, the system records force and deformation continuously and uses the collected measurements to generate a stress-strain curve. Analysis of this curve provides key mechanical properties, including yield strength, tensile strength, proof strength, and elastic modulus.

Closed-Loop Testing Method

The DSC-10TT full-digital closed-loop control system continuously monitors the actual test conditions against the programmed target values. It measures force, deformation, or displacement and adjusts the AC servo motor output whenever a difference occurs between the measured and commanded values.

This feedback-based control allows the TTM-5L to maintain precise testing rates throughout the procedure. Operators can also switch between force control, deformation control, and displacement control during a single test when required by the selected test method.

Maintaining a controlled loading or deformation rate is important because the measured mechanical properties of some materials can vary with strain rate. For example, tensile testing methods such as ISO 6892-1 specify controlled testing rates to improve consistency and comparability between test results.

High-Resolution Measurement

The TTM-5L features a high-resolution measurement system designed to support its accuracy class 0.5 performance. Three 24-bit analog-to-digital acquisition channels measure load, displacement, and deformation with an effective resolution of up to 1/300,000 of full scale.

The system uses parallel signal sampling to capture measurement channels simultaneously. This synchronized acquisition helps maintain accurate relationships between load, deformation, and displacement throughout the test.

When an extensometer is connected, the DSC-10TT software analyzes the recorded test data and automatically calculates important material parameters, including ReH, ReL, Rp0.2, Fm, Rm, and E, along with other configurable results. Once the required yield-stage measurement is complete, the system can switch from deformation measurement to displacement collection, allowing the extensometer to be removed according to the test procedure.

Overall, the combination of precision mechanical motion, closed-loop control, synchronized high-resolution measurement, and automated data analysis enables the TTM-5L 5 kN Universal Testing Machine to deliver consistent and repeatable mechanical test results across a wide range of materials and applications.

Technical Specifications

Parameter

Specification

Maximum test force

5 kN / 1,125 lbf (load cells can be added to extend the force range)

Accuracy class

0.5

Measuring range of test force

0.2% to 100% FS (full scale)

Indicating error of test force

Within plus or minus 0.5% of indicating value

Resolution of test force

1/300,000 of maximum test force, grade and resolution unchanged throughout the process

Measuring range of deformation

0.2% to 100% FS

Indicating error of deformation

Within plus or minus 0.5% of indicating value

Resolution of deformation

1/300,000 of maximum deformation

Indicating error of displacement

Within plus or minus 0.5% of indicating value

Resolution of displacement

0.025 µm

Adjustable range of force control rate

0.005% to 5% FS/s

Control accuracy of force control rate

Within plus or minus 2% of set value below 0.05% FS/s; within plus or minus 0.5% at or above 0.05% FS/s

Adjustable range of deformation rate

0.005% to 5% FS/s

Control accuracy of deformation rate

Within plus or minus 2% of set value below 0.05% FS/s; within plus or minus 0.5% at or above 0.05% FS/s

Adjustable range of displacement rate

0.001 to 500 mm/min

Control accuracy of displacement rate

Within plus or minus 1% of set value below 0.5 mm/min; within plus or minus 0.2% at or above 0.5 mm/min

Effective distance of tension

700 mm (customizable to user requirements)

Removable distance of crosshead

900 mm

Size of main unit (L × W × H)

510 × 510 × 1580 mm

Weight of main unit

150 kg

Voltage

220 V, 50 Hz, 0.5 kW (110 V also available)

Standard Configuration

Item

Quantity

Description

TTM series frame

1 set

Single-column main-unit structure

Ball screw

1 piece

High-precision, zero-clearance (TBI)

Servo motor and speed control system

1 set

AC servo drive with speed control

Synchronous belt

1 set

Cog-belt transmission

Load cell

1 piece

5 kN capacity

DSC-10TT digital closed-loop control system

1 set

Load, displacement, and deformation measurement

DSC-10TT English software

1

Windows-based test and reporting software

Remote control unit

1 piece

LCD display of equipment status, test force, and displacement, with magnetic backing for placement anywhere on the frame

PC

1 piece

Test workstation

Printer

1 piece

HP color inkjet, A4 format

Wave grip set

1 set

Customizable per customer requirements

 

Single Column Universal Testing Machine TTM-5L (5kN UTM)

Wave grip

Delivery time varies upon stock availability. Our standard dispatch and shipping times are generally within 1 week, however for some high demand items the delivery may be extended to 2-3 weeks. If you require these items urgently please contact us to check accurate stock availability and to organize faster shipping methods.
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Important Delivery Information

Delivery time varies upon stock availability. Our standard dispatch and shipping times are generally within 1 week, however for some high demand items the delivery may be extended to 2-3 weeks.

Need it urgently? Contact us here to check stock and organize faster shipping.

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