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TestTek Series - UTM Machines
TestTek Series

Electro Mechanical Universal Testing Machines

TTS MET Advanced Electromechanical Universal Testing Machines are precision-engineered for reliable, repeatable and high-accuracy material characterization. Designed for tensile, compression, flexural and other mechanical testing applications, our EM UTMs support demanding requirements across aerospace, defence, railway, automotive, manufacturing, infrastructure and research sectors worldwide.
From compact laboratory systems to high-capacity 500 kN and 600 kN testing machines, TTS provides configurable solutions for research, quality control, production testing and advanced material characterization.

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01
Single Column Universal Testing Machine

Single Column UTM

Compact Single Column Electromechanical UTM. Precision-engineered universal testing machines for accurate tensile, compression and flexural testing of metals, plastics and other materials, ideal for laboratories, R&D and quality control.

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02
Dual Column Universal Testing Machine

Dual Column UTM

Robust dual-column universal testing machines engineered for high-accuracy tensile, compression and flexural testing, delivering excellent stiffness, stability and repeatability.

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03
Dual Column Universal Testing Machines

Dual Column EM UTM with Hydraulic Grips

High-performance universal testing machines equipped with hydraulic grips for secure specimen holding and reliable high-load tensile testing of metals, alloys, composites and advanced engineering materials.

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04
Electromechanical Universal Testing Machine

Composite Materials EM UTM

Advanced EM UTM systems designed for CFRP, GFRP and high-strength composite materials, supporting tensile, compression and flexural testing in accordance with applicable ASTM and ISO standards.

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05
Low and High Temperature EM UTM

Low & High Temperature EM UTM

Temperature-controlled material testing systems for cryogenic, low-temperature and elevated- temperature applications, enabling tensile, compression and mechanical characterization.

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06
High Capacity Electromechanical Universal Testing Machine

High-Capacity EM UTM – 500 & 600 kN

High-capacity testing systems engineered for high-strength metals and advanced composites, with precision alignment fixtures for demanding tensile, compression and mechanical testing applications.

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01
Single Column Universal Testing Machine

Single Column UTM

Compact Single Column Electromechanical UTM. Precision-engineered universal testing machines for accurate tensile, compression and flexural testing of metals, plastics and other materials, ideal for laboratories, R&D and quality control.

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02
Dual Column Universal Testing Machine

Dual Column UTM

Robust dual-column universal testing machines engineered for high-accuracy tensile, compression and flexural testing, delivering excellent stiffness, stability and repeatability.

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03
Dual Column Universal Testing Machines

Dual Column EM UTM with Hydraulic Grips

High-performance universal testing machines equipped with hydraulic grips for secure specimen holding and reliable high-load tensile testing of metals, alloys, composites and advanced engineering materials.

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04
Electromechanical Universal Testing Machine

Composite Materials EM UTM

Advanced EM UTM systems designed for CFRP, GFRP and high-strength composite materials, supporting tensile, compression and flexural testing in accordance with applicable ASTM and ISO standards.

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05
Low and High Temperature EM UTM

Low & High Temperature EM UTM

Temperature-controlled material testing systems for cryogenic, low-temperature and elevated- temperature applications, enabling tensile, compression and mechanical characterization.

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06
High Capacity Electromechanical Universal Testing Machine

High-Capacity EM UTM – 500 & 600 kN

High-capacity testing systems engineered for high-strength metals and advanced composites, with precision alignment fixtures for demanding tensile, compression and mechanical testing applications.

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TTS Industrial Solutions - Material Testing Equipment
ADVANCED ENGINEERING SOLUTIONS • R&D • MATERIAL TESTING • PRECISION ENGINEERING

Universal Testing Machines (UTM), Material Testing Equipment & Industrial Testing Solutions – Manufacturer, Supplier & Exporter

PRECISION TESTING
Accurate. Repeatable. Reliable.
Designed for controlled tensile, compression, flexural, peel, shear, bending, and mechanical testing, with precise force measurement, displacement control and repeatable test results.

ADVANCED ENGINEERING
Built Around Your Testing Requirements.
From compact laboratory systems to 500 kN and 600 kN high-capacity EM UTMs, TTS provides configurable machines, grips, fixtures, extensometers and alignment solutions.

APPLICATION READY
From Standard Materials to Advanced Composites.
Engineered for testing metals, alloys, plastics, rubber, ceramics, CFRP, GFRP and advanced engineering materials across aerospace, defence, railway, automotive, manufacturing and research applications.

Precision Engineering Quality Testing Solutions Technical Expertise After-Sales Support
Our Range of Electro Mechanical Testing Machines
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Creep
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Single Column Universal Testing Machine
SINGLE COLUMN

Single Column Universal Testing Machines

Professional testing solution for QC & R&D.

  • High Accuracy
  • Industry Standards
  • Reliable Performance
  • QC & R&D
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Dual Column Universal Testing Machine
DUAL COLUMN

Dual Column Universal Testing Machines

Professional testing solution for QC & R&D.

  • High Accuracy
  • Industry Standards
  • Reliable Performance
  • QC & R&D
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Creep and Durability Testing Machine
CREEP

Creep & Durability Testing Machines

Professional testing solution for QC & R&D.

  • High Accuracy
  • Industry Standards
  • Reliable Performance
  • QC & R&D
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Special Purpose Testing Machine
SPECIAL

Special Purpose Testing Machines

Professional testing solution for QC & R&D.

  • High Accuracy
  • Industry Standards
  • Reliable Performance
  • QC & R&D
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Why Choose Us

Why Choose TTS Electro
Mechanical Testing Machines?

High Accuracy

Precision engineering ensures accurate and repeatable test results.

Robust Design

Built for durability and long-lasting performance in industrial environments.

Advanced Control

Smart control systems with intuitive software and real-time data.

Standards Compliant

Meets international standards including ASTM, ISO, IS & more.

Low Maintenance

Designed for minimal maintenance and maximum uptime.

Expert Support

24/7 technical support and after-sales service you can trust.

Industries We Serve

Testing Solutions Across Industries

From advanced manufacturing and aerospace to railways, construction, energy and research, TTS delivers reliable material testing and engineering solutions across critical industries.

Manufacturing Testing

Manufacturing

Material & Component Testing

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Oil and Gas Testing

Oil & Gas

Pipeline & Material Testing

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Aerospace

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Construction

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Mining and Metals Testing

Mining & Metals

Metal & Material Analysis

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Railway Testing

Railways

Railway Component Testing

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Marine and Shipbuilding Testing

Marine & Shipbuilding

Marine Material Testing

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Academic and Research Testing

Academic & Research

Research & Laboratory Testing

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Defence Testing

Defence

Defence Material Testing

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Pharmaceutical Testing

Pharmaceuticals

Quality & Material Testing

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Manufacturing Testing Oil and Gas Testing Aerospace Testing Construction Testing Mining and Metals Testing Railway Testing Marine and Shipbuilding Testing Academic and Research Testing Defence Testing Pharmaceutical Testing
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electromechanical universal testing machines

Frequently Asked Questions

Find answers to common questions about Electromechanical Universal Testing Machines, testing applications, standards, calibration and technical support.

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An Electromechanical Universal Testing Machine is a materials testing system in which the crosshead is driven by an electromechanical drive mechanism to apply a controlled load or displacement to a specimen. Depending on its configuration, an EM UTM can be used for tensile, compression, flexural and other mechanical tests. The measured force and deformation are used to determine properties such as yield strength, ultimate tensile strength, modulus, elongation and compressive or flexural strength.
The appropriate configuration depends on the material, specimen dimensions, maximum test force, test method, required deformation range and applicable standard. Single-column systems are generally suited to lower-force laboratory applications, while dual-column frames provide greater structural capacity and space for larger specimens and fixtures. The selection should also consider the required grips, extensometer, test speed, crosshead travel and future testing requirements.
An EM UTM can be configured for a wide range of engineering materials, including metals and alloys, plastics, polymers, rubber, composites, ceramics and other structural materials. The machine configuration is determined by the mechanical behaviour of the material and the relevant test method. Grip design, fixture geometry, load capacity and strain measurement are particularly important when testing materials with significantly different strength and deformation characteristics.
Depending on the machine configuration and accessories, EM UTMs can perform tensile, compression, three-point and four-point flexural, proof-load and other application-specific mechanical tests. With appropriate extensometry and fixtures, the system can also be used to determine properties such as elastic modulus, yield behaviour, ultimate strength, elongation and deformation characteristics.
The required capacity should be established from the expected maximum test force, rather than simply selecting a machine based on the material's nominal strength. Specimen geometry, cross-sectional area, test standard, safety margin, gripping arrangement and future applications should all be considered. The selected capacity should provide sufficient measurement resolution at the expected working load while retaining adequate force capability for the intended test range.
Yes. Composite testing requires a suitably configured machine and appropriate fixtures because composites can exhibit directional strength, brittle failure, delamination and sensitivity to specimen alignment and gripping. EM UTMs can be configured for materials such as CFRP, GFRP and laminated composites, with suitable grips, compression fixtures, extensometers and other accessories according to the applicable ASTM or ISO test method.
Yes, when the UTM is integrated with an appropriate temperature-controlled environmental chamber or heating/cooling system. Such configurations allow mechanical properties to be evaluated under controlled temperature conditions rather than only at laboratory ambient temperature. The required temperature range, specimen dimensions, chamber arrangement, heating/cooling rate and test standard determine the appropriate configuration.
The gripping and fixture system should be selected according to the specimen geometry, material behaviour and test method. Common configurations include wedge grips, hydraulic grips, pneumatic grips, flat and round specimen grips, compression platens, three-point and four-point bending fixtures and application-specific composite fixtures. Specialized fixtures can also be developed where a standard grip does not adequately represent the intended loading condition.
The applicable standard depends on the material and test being performed. EM UTM systems can be configured to support relevant ASTM, ISO, EN, DIN and other industry-specific test methods. Examples include ASTM E8/E8M for metallic tensile testing, ASTM E4 for force verification, ASTM E83 for extensometers, ASTM D3039 for polymer-matrix composite tensile testing and ASTM D790 for flexural testing of plastics. The complete test setup should always be evaluated against the current revision of the applicable standard.
A UTM is a complete measurement and mechanical loading system rather than only a load frame. Its performance depends on the interaction of the load frame, drive system, load cell, crosshead guidance, grips, alignment, extensometry, control electronics and data acquisition system. Frame stiffness, force accuracy, displacement control, alignment and measurement resolution all influence the quality and repeatability of the resulting test data.
The software and data acquisition system provide the interface between the testing hardware and the test method. Depending on the configuration, the system can control test speed and loading conditions, acquire force, displacement and strain measurements, calculate material properties, generate curves and produce test reports. The appropriate data acquisition rate, sensor inputs and software functions depend on the nature and speed of the test being performed.
A material testing system should be properly installed, aligned, commissioned and verified before routine testing begins. Installation generally includes machine setup, electrical connections, sensor integration, software configuration and functional verification. Operator training, periodic calibration, preventive maintenance and technical support are also important for maintaining measurement reliability throughout the equipment's service life.
Yes. A UTM can be configured around a particular test method, specimen geometry, material, force range and environmental condition. Customization may involve the load capacity, grips, fixtures, extensometry, alignment system, temperature chamber, control parameters, data acquisition and software. This approach is particularly useful for research laboratories and applications where commercially standard configurations do not fully represent the required test condition.
A technically meaningful quotation should be based on the actual testing requirement rather than machine capacity alone. The key information normally includes material type, specimen dimensions, expected maximum force, test type, test speed, required strain measurement, applicable standard, temperature conditions and any special fixtures or accessories. Based on these requirements, the appropriate machine configuration and associated instrumentation can be defined before preparing the commercial proposal.
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Electromechanical UTM

Your Material.
Your Test.

Your Standard.

Let's Talk Our TTS engineer the right electromechanical testing system around your material, specimen dimensions, test force, test method and applicable standard.

✓ Tensile, compression and flexural testing
✓ Custom grips, fixtures and extensometry
✓ Application-specific testing configurations
✓ Support for relevant ASTM and ISO test methods

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