Instron
While researching replacement materials for parachutes, two scientists discovered that no testing machine was accurate enough to meet their demands. They founded Instron in 1946, and we pioneered universal testing machines featuring strain-gauge load cells. Today, Instron remains committed to delivering the highest quality, leading-edge technologies and services designed to push the boundaries of research, quality control and service-life testing. Our systems evaluate the mechanical properties of materials and structures using tensile, compression, flexural, fatigue, impact, dynamic, torsional and multi-axial loading. Through a global infrastructure, we offer a broad range of local service capabilities, including calibration, verification, training, technical support and assistance with laboratory management.
- +1 800 564 8378
- 825 University Ave.
Norwood, MA 02062
United States
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Crash Simulation Systems
The crash simulators are capable of reproducing a wide range of standardized and user-defined crash tests including advanced applications such as side impact and vehicle pitch simulation. Instron’s acceleration sled systems are used for the development and approval of vehicle safety systems, vehicle parts and also for the investigation of solids and structures during crash events.
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HDT VICAT Testers
The Instron HV Series of HDT Vicat testing machines bring you an enhanced user experience and outstanding productivity. Our HDT and Vicat testers with Bluehill® HV Software make materials testing SIMPLER, SMARTER, SAFER.
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Long Travel Extensionmeters
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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VisualIMPACT Software
CEAST VisualIMPACT software is designed to control CEAST Pendulums and Drop Tower Series, manage tests and offer a user-friendly interface when using the Data Acquisition System. It records force and absorbed energy data related to impacts, visualizes and helps analyze the results and calculates resilience. The operator is guided through parameters setup by means of tables describing strikers and specimens that are filtered according to the test type and international standard selected. In the case of instrumented tests, many possibilities for data analysis and visualization are made available. The results are shown through comprehensive and customizable graphs and can be filtered by break type (only specimens with a selected break type are shown). Working with groups of test, the software performs a statistical analysis, and the operator can pick and discard single test results. Different measurement units can be selected. It is possible to print reports and to export data totally or partially. Recent improvements include the possibility to set a number of user profiles, including graphic settings, default printing options, advanced parameters for data analysis and so on, switching quickly from one another when looking at results. The introduction of a new Data Acquisition System (CEAST DAS 64K) in the Impact product line has also triggered a number of new capabilities for the SW, which is now able to process a more comprehensive calibration file for instrumented tups and hammers and manage DAS configurations with a wider range of data acquisition channels.
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CrashSim Office
CrashSim Office is a stand-alone program for signal preparation and processing, as well as for predicting the pulse-making capability and the generation of the DriveSignal for the CrashSimulationSystem. CrashSimOffice is used offline from the crash simulation system and has essentially the following characteristics
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Dynacell Load Cells
2527 Series
Dynacell is the world's first truly dynamic load cell, designed from the outset for measuring dynamic loads. Dynacell introduces the following advantages: *Reduces dynamic load errors which can be a significant percentage of reading*Increases productivity by allowing higher frequency operation while maintaining test validity *Improvements such as doubling the frequency are common
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Static Load Cells
2580 Series
Instron® load cells are a key part of a materials testing system. Instron is the only global materials testing supplier that designs and manufactures its own load cells. This ensures that Instron load cells meet the unique requirements of materials testing such as; high accuracy over a wide measurement range, high stiffness, resistance to offset loads, accurate alignment and excellent zero stability. The 2580-xxxN Series load cells are specifically designed for use with 5900 testing systems; offering exceptional performance with the ability to measure forces as low as 1/1000th of the force capacity to an accuracy of 0.5% of reading.The load cells can withstand loads up to 150% of their force capacity without damage and 300% without mechanical failure. Automatic transducer recognition and electrical calibration, makes them easy to use. The load cells allow the user to zero out the tare weight of a grip or fixture that weighs up to 10% of the force capacity, while still maintaining the full specified accuracy.
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Averaging Clip-on Extensometer
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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Impact Testing Machine
Instron Dynatup drop weigh impact testing machine next generation is the Instron 9400 Series. A drop weight impact testing machine is used to determine the energy required to break or damage a material in which a defined weight falls onto a specimen or a component from a specific height and with a specific impact energy and velocity.
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Melt Flow Testers
nstron®'s CEAST Melt Flow Testers are specifically designed for easy and accurate measuring of the Melt Flow Rate (MFR) and the Melt Volume Rate (MVR). CEAST Melt Flow Testers range from systems that perform a simple manual test procedure to semi-automated testing systems performing multiple weight tests. Our testers meet ASTM and ISO standards.
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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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CrashSim
The application software CrashSim is used for the preparation, execution, monitoring, analysis and documentation of crash tests carried out on the Instron sled system. The user application focused software has been continuously improved in cooperation with our worldwide user groups.
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(1000kN) Fatigue Testing Systems
8805
The 8805 is a 4-column, 1000 kN servohydraulic fatigue testing machine. It features a high-stiffness and precision-aligned load frame, with hydraulic lifts and locks, and an actuator in the upper crosshead.
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(2500kN+) Fatigue Testing Systems
8806
The precision mechanical systems, combined with the advanced features of the 8800 digital controller and Dynacell™ load cells, enable Instron to supply fully-integrated turnkey solutions to meet the most demanding applications. The system can be used to cover a broad range of static and dynamic test applications, covering metals, rebar, high-force fracture mechanics, aerospace panels, civil engineering components, wire ropes, or concrete.
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Torsion Testers
MT Series
The Instron line of low and medium capacity torsion testers provide dependable mulit-turn capability. Available in capacities ranging from 22 - 5,650 N-m (200 - 50,000 in lb), these systems are ideal for biomedical, automotive, and aerospace applications.