Materials Testing Solutions
For Metals

  • Made in USA – Norwood MA

  • 30 + Years of Metals Testing

  • Custom Engineered Solutions Available

  • Lifetime Support Guarantee

Metals Testing Leaves Little Room for Uncertainty

For over 30 years ADMET has supplied universal testing systems, fatigue testing systems, torsion testers, and custom testing equipment for evaluating the mechanical properties of metals.

Whether you’re performing routine quality control or advanced materials research, our systems are designed to meet your specific needs whether you follow internal test methods or ASTM and ISO standards.

Common Test Types And Standards

A testing standard that covers the mechanical testing definitions and procedures of steel products

A standard test method for determining the tensile properties of metals and metal alloys

Describes the determination of the fatigue strength of metallic materials in the fatigue regime where the strains are predominately elastic

Describes the determination of fatigue properties of nominally homogeneous materials via strain-controlled cyclic loading

Evaluates hydrogen embrittlement in high-strength steels caused by plating, coating, and service environments

A testing standard that covers the mechanical testing definitions and procedures of steel products

ASTM E855

A testing standard that measures how flat metal sheets and strips bend

Determines the fatigue properties of metallic materials using force-controlled axial cyclic loading, typically for high-cycle fatigue (HCF) where strains are predominantly elastic

Determines the fatigue properties of materials using strain-controlled cyclic loading, commonly for low-cycle fatigue (LCF) where cyclic plastic strain is significant

Don’t see your test method? ADMET systems can be configured to comply with hundreds of ASTM, ISO, MIL, SAE, and customer-specific procedures.

The Right System for Your Application

Built for the demands of metals testing, the eXpert 2600 offers load capacities from 5 to 600 kN with excellent alignment, stiffness, and crosshead guidance for accurate, repeatable results. It handles everything from tensile and compression to hydrogen embrittlement testing (ASTM F519), giving metals labs the precision and range they need in one system.

Built for high-force metals testing, the eXpert 1600 delivers stable, precise loading up to 600 kN with rigid, low-deflection frames that hold up under large or high-strength materials. It supports key metals standards like ASTM A370, E8, and E9, plus ISO 6892 tension testing, giving labs the capacity and control needed for demanding qualification and production work.

Built for metals fatigue testing, the eXpert 9300 uses an ISO 1143-compliant four-point bending method to generate uniform, fully reversed stress along the specimen for accurate S-N curves. Operating at speeds up to 6,000 RPM (100 Hz), it accumulates cycles fast, giving metals labs a quick, reliable way to characterize endurance limit and fatigue life.

Built for demanding metals fatigue applications, the eXpert 1900 delivers rigid, fatigue-rated load frames with stable waveform control for high-cycle and low-cycle testing. It supports key methods like ASTM E606, E466, and E647, giving metals labs the durability, reliability, and precision needed for life prediction and standards-based fatigue qualification.

System Highlight

Introducing ADMET’s eXpert 9300 Rotating Beam Fatigue System

  • Testing up to 100 Hz
  • Fully Automated 50 N·m Loading

For manufacturers and researchers evaluating the fatigue life of metals, the eXpert 9300 rotating beam fatigue testing system is an ideal fit. It performs fully reversed bending fatigue tests with a constant bending stress applied across the specimen, generating the S-N (stress-life) data that’s essential for understanding how metal components will hold up under long-term cyclic loading.

Built to support ISO 1143 rotating bending fatigue testing at frequencies up to 100 Hz, the eXpert 9300 delivers this critical fatigue data efficiently, without sacrificing accuracy. Its precision four-point loading configuration ensures a uniform bending moment across the specimen, producing highly repeatable results test after test. That combination of speed, precision, and repeatability makes the eXpert 9300 a featured system for metals fatigue characterization, durability studies, and materials development.

Videos

In this video, we break down ASTM E8, a standard for tension testing of metallic materials, and what it takes to run the test from start to finish. We cover the ADMET universal testing systems best suited for E8 testing, the types of metal samples and specimen geometries used, why and where E8 testing is applied across industries, and a complete demonstration of sample setup, pulling the specimen to break, and reading the resulting test data.

ADMET ASTM E517 Sheet Metal Testing
ADMET Rotating Beam Fatigue Demonstration
Metal Tensile Test Demonstration on ADMET’s eXpert 2614

Case Studies

Read more about how ADMET customers are using our machines today.

Metal Casting

Alphacasting Meets Industry Standards with ADMET Retrofit

METALS ∙ MACHINE RETROFIT

When faced with paying $120,000 for a new machine, Alphacasting instead retrofitted its 45-year-old SATEC frame with MTESTQuattro, bringing tensile testing on its cast metal parts up to modern ASTM accuracy and traceability standards.

ADMET Materials Testing Machine

BarronCast Uses ADMET System to Bring Testing In-House

METALS ∙ DEFENSE, AUTOMOTIVE

BarronCast needed faster in-house tensile testing for high-strength cast parts. A new ADMET ExPert frame with MTESTQuattro handled their toughest alloy, 17-4-PH stainless over 200,000 psi, for about the same cost as a retrofit.

ADMET Machine Retrofit

Larson Uses ADMET to Upgrade In-House Tensile Testing

METALS ∙ MACHINE RETROFIT

Charles E. Larson & Sons forges alloys for aerospace and nuclear applications. ADMET retrofitted their 60,000 lb Tinius Olsen frame with servo control and MTESTQuattro, replacing manual pen-recorder testing with automated, precisely controlled tensile data collection.

Metals Testing Specimens

IMR Metallurgical Retrofits Machine With MTESTQuattro

METALS ∙ MACHINE RETROFIT

IMR retrofitted a 30,000 lb Instron with ADMET’s MTESTQuattro, pre-programming around 20 test routines for its metallurgical failure analysis work, gaining the precision and repeatability needed to keep pace with growing demand.

Frequently Asked Questions

ASTM E8 (Standard Test Methods for Tension Testing of Metallic Materials) and ASTM A370 (Standard Test Methods and Definitions for Mechanical Testing of Steel Products) are both widely used tensile testing standards, but they differ in scope and application:

ASTM E8 covers tension testing procedures for metallic materials broadly including steel, aluminum, copper, and other alloys. It defines specimen geometries, testing speeds, and calculation methods for properties like yield strength, tensile strength, elongation, and reduction of area.

ASTM A370 is specific to steel products and references ASTM E8 for its core tension testing procedures, but adds requirements unique to steel such as bend testing, hardness testing, impact (Charpy) testing, and product-specific specimen requirements for bar, plate, tubing, and wire.

In short: ASTM E8 is the general tension-testing methodology, while ASTM A370 is a steel-specific standard that incorporates E8’s tension testing methods alongside additional mechanical test methods (bend, hardness, impact) needed to fully qualify steel products.

ASTM E8 (Standard Test Methods for Tension Testing of Metallic Materials) and ISO 6892-1 (Metallic Materials, Tensile Testing, Part 1: Method of Test at Room Temperature) are the two most widely used tensile testing standards worldwide: E8 in the U.S. and ISO 6892-1 internationally.

The core methods are similar, but they differ in specifics: strain rate control (E8 allows crosshead speed or strain rate methods depending on the phase of test, while ISO 6892-1 defines strain-rate-controlled methods more strictly, including specific rate ranges for the elastic and plastic regions), specimen dimension tolerances, and terminology (for example, “percent elongation” in E8 vs. “percentage elongation after fracture” in ISO 6892-1).

In short: ASTM E8 and ISO 6892-1 test the same mechanical properties using broadly similar setups, but differ in strain-rate control requirements, specimen tolerances, and terminology, so results from one standard aren’t always directly interchangeable without verifying the testing parameters used.

Mechanical wedge grips are the most common choice for tensile testing metals, as their self-tightening wedge action increases clamping force as the load increases, providing a secure hold on rigid metal specimens throughout the test. For higher-volume or higher-force testing, hydraulic wedge grips offer faster, more consistent clamping with less operator variability.

The right grip also depends on specimen geometry: flat metal coupons typically use flat-faced wedge grips, while round bar or rod specimens require V-groove or notched-face wedge grips to prevent slipping. Grip selection should always match the specimen’s material, thickness, and expected load to ensure accurate, safe results.

Yes. ADMET offers both environmental chambers and high-temperature furnaces for materials testing across a wide range of temperatures.

ADMET environmental chambers can be configured for elevated- and low-temperature testing, with standard temperature ranges from -80°C up to +280°C or +350°C. For more extreme temperatures, ADMET’s high-temperature split tube furnaces operate from 300°C up to 1700°C and can be used for tensile, compression, bend, and fatigue testing.

ADMET also offers the grips, fixtures, pull rods, cooling accessories, and high-temperature extensometers needed to configure a complete testing system for your application.

The appropriate solution depends on your required temperature range, material, specimen geometry, test method, and applicable testing standard.

Yes. ADMET’s grips and fixtures are built to work with virtually any manufacturer’s test frame, so custom fixturing isn’t limited to ADMET-branded systems. We start by understanding your specific application, including material, specimen geometry, and test method, to guide you to the right fixture design and help avoid common issues like slippage, misalignment, and inconsistent results. If you’re unsure how a fixture or grip will perform on your specimen, we also offer sample testing. Send us your samples, and our engineers will test them using our range of grip solutions to help you move forward with confidence.

Yes. ADMET testing systems can be configured to accurately test miniature, thin, and fragile metal specimens using appropriately sized load cells, precision grips, fixtures, and extensometers.

Whether you’re testing thin sheet metal, fine wire, micro-scale tensile specimens, or other challenging sample geometries, ADMET can recommend the right testing system configuration for your application.

For unique specimen sizes, shapes, or materials, our engineer can also design custom grips, fixtures, and testing solutions to help ensure accurate and repeatable results.

Yes. ADMET’s MTESTQuattro software can automate the control, data collection, calculations, and reporting required for ASTM E8 tensile testing.

The software can control the prescribed loading or strain rates, acquire load, position, and extensometer data, and transition between control stages during the test. MTESTQuattro can control the test by extensometer strain rate through yield and then automatically switch to crosshead position control after the extensometer is removed. The software will also calculate and report whichever ASTM results you prefer to see on your report.

Yes. ADMET is accredited to ISO/IEC 17025:2017 by A2LA (cert # 7128.01). ADMET offers calibration services to customers who operate both ADMET equipment and systems made by other manufacturers. Below is a partial list of internationally recognized procedures

ADMET follows to calibrate testing equipment:
– ASTM E4 – Tension/Compression Force Calibration
– ASTM E2309 – Crosshead Displacement Calibration
– ASTM E2658 – Crosshead Speed Calibration
– ASTM E83 – Extensometer Calibration

Downloads

Metals Testing Brochure

Just Ask!

Any questions about mechanical testing equipment for metals?

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