Instron
Instron is a global leader in materials testing, offering a comprehensive portfolio of testing systems designed to evaluate mechanical properties such as tensile, compression, flexural, fatigue, impact, and dynamic behavior. Our products support a wide range of applications, from raw materials to finished products — backed by expert engineering and a global service network providing calibration, training, and technical support. With deep application knowledge and responsive local support, Instron helps customers optimize performance, improve efficiency, and accelerate innovation across industries.
- +1 800 877 6674
+1 781 828 2500 - 825 University Ave.
Norwood, MA 02062
United States of America
Categories
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product
Long Travel Extensometer
XL
The Instron model XL (long travel) extensometer is a precise device for measuring strain in highly extensible materials such as elastomers, semi-rigid plastics and films. Designed for use with electromechanical testing instruments, Instron XL units can be used to measure specimens elongation's up to 10 in or 250 mm. An optional of 15 in or 375 mm travel is also available.
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CEAST VisualMELT Software
VisualMELT Software is designed to control all the functions of the Modular Melt Flow Systems, from single-weight to multiple-weight tests. The software enables the user to manage all optional equipment, including the load cell, the automatic cutting device, and the motorized weight lifter. When working with a multi-weight tester, it is possible to set up and control single-weight or multi-weight tests, as well as define the order and number of weights to be applied.
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Structural Durability Solutions
Instron offers a variety of testing systems and rigs for static, quasi-static and dynamic loading of structures and components. This includes Component Test Systems, Shaking Tables, Road Simulators, Axle Test Systems, Full Vehicle Test Systems, Wheel Test Systems, Shock Absorber Test Systems, Elastomer Test System and Dynamic Torsion Test Systems.
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S-Beam Static Load Cells
2519 Series
The 2519-xxxN Series load cells are specifically designed for use with 3300 single column testing systems. Automatic transducer recognition and electrical calibration makes them easy to use. The load cells incorporate overload protection and can withstand loads up to 150% of their force capacity without damage and 300% without mechanical failure. The load cells allow the user to zero out the tare weight of a grip or fixture that weighs up to 40% of the force capacity, while still maintaining the full specified accuracy.
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Averaging Clip-on Extensometer
2650 Series
The Instron 2650 Series Biaxial Extensometers are ideally suited for testing a wide range of materials, including polymer matrix composites, metals, and plastics over a range of temperatures. Two sensors measure axial strain on opposite sides of the specimen. Versions are available which provide either a single averaged axial output or 2 independent axial outputs. The extensometers meet the calibration requirements of ASTM E83 class B1, ISO 9513 class 0.5, and ISO 527.
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Cobot Testing System
CT6
The CT6 cobot testing system introduces the benefits of automation to the testing of biomedical devices and components. This system pairs a collaborative robot with a 5900 or 6800 Series universal testing system to increase the efficiency of small to mid-sized testing labs that require a high degree of flexibility in their testing systems. The CT6 is designed to handle a wide range of medical components, including drug delivery, sample collection, and wound closure products.
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Multi-Station Test Frame
6800
The 6800 Series Multi-Station System offers enhanced throughput with its ability to perform simultaneous, independent tests on up to five (5) separate specimens using a single load frame. Based on our standard 68TM-30 testing frame (30 kN capacity)*, this system is especially suitable when test times are lengthened due to high elongation or slow test speeds.
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Curved Needle Test Systems
Instron’s Curved Needle Testing System is designed for evaluating surgical and wound closure needles through two specialized testing methods: curved needle puncture testing (per ASTM F3014) and cantilever bend testing. These fixtures assess key performance attributes such as sharpness, coating integrity, and flexural strength. Compact and efficient, the tabletop system conserves bench space while delivering robust functionality. Powered by Bluehill® Universal software, it offers comprehensive control over test execution, data collection, and reporting, along with access to a wide range of built-in calculations.
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Mechanical Wedge Action Grips
2716 Series
The Instron mechanical wedge action grips are durable tensile grips designed to automatically increase clamping force as test loads rise, maintaining fixed jaw positions and preventing slippage. Their open-front, moving-body design allows easy specimen insertion while ensuring consistent gauge length and minimal compressive force during clamping, making them a versatile gripping solution and particularly suitable for testing high-strength materials such as metals and composites.
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Testing Accessories
Instron has used its wealth of applications and engineering experience to produce the most extensive range of accessories for materials testing instruments in the industry. Made up of hundreds of grips, fixtures, load cells, and other accessories, our vast range of general purpose and application-focused accessories are designed to help you get the most from your materials testing system.
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Automated XY Stage
AT2
The Instron AT2 is a compact automated XY stage that streamlines compression, tensile, and flexural testing for both batches of specimens and single components with multiple test points. Designed for seamless integration with 6800 Series universal testing systems, the AT2 features standard bolt patterns for custom fixturing and accommodates a wide range of specimen geometries. Fully integrated with Bluehill® Universal software, it enables operators to quickly define and execute test sequences using grid, diamond, or custom layouts—boosting throughput, consistency, and testing efficiency.
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(250 kN) Fatigue Testing System
8802
The Instron 8802 is a high stiffness, 250kN fatigue rated servohydraulic testing system that meets the challenging demands of both static and dynamic testing requirments. The 8802 systems include a range of configurations available to provide complete testing solutions to satisfy the needs of advanced materials and component testing. The design of the 8802 frame makes it ideal for installation within a laboratory environment, generally without the need for strangethened floors or raised ceiling heights.
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Universal Testing Systems
Instron universal testing systems are versatile, high-accuracy platforms (available in electromechanical and hydraulic variants) designed to perform a wide range of static mechanical tests, such as tension, compression, bend, peel, shear, puncture, and more, on virtually any material. They support force capacities from fractions of a newton up to thousands of kilonewtons, with precision load measurement, high data acquisition rates, and compatibility with thousands of accessories, including a wide range of extensometers, grips, fixturing, and automation solutions to meet demanding quality and throughput standards.
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CEAST VisualRHEO Software
VisualRHEO Software is specifically designed for the Instron® line of CEAST Capillary Rheometers (Rheologic and SmartRheo), both single-bore and twin-bore versions.
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3-Axis Non-Robotic Automated Testing System
AT3
The Instron AT3 is a space-efficient, highly adaptable 3-axis mechanical testing platform designed for automated execution of tensile, compression, flexural, and lap shear tests. Built to comply with a broad spectrum of ASTM and ISO standards, it’s well-suited for evaluating materials such as plastics, elastomers, thin films, foils, and metals. The system streamlines the entire testing workflow from specimen measurement and handling to strain measurement and specimen disposal—enabling users to load up to 160 samples and let the AT3 take care of the rest. Boost productivity, reduce manual intervention, and achieve consistent, dependable results with every test cycle.















