Optional Accessories and Systems
Servopulser series systems allow selection of the optimal combination of units based on testing objectives. In addition, an extensive selection of optional testing equipment, such as various testing jigs, detectors, and atmospheric control testing units, is available. For more details, refer to the separate optional accessories brochure.
Tensile and Compression Test Jigs
Front-Opening Hydraulic Grip
Designed for full-amplitude tensile and compression fatigue testing, these grips offer superior ease-of-operation and ensure high-accuracy testing for a wide range of tests.
Maximum test force | ±20 to 200 kN (multiple capacities available) |
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Operating temperature range | RT to +50 °C |
Applicable sample | Rod / flat plate |
Manual Non-Shift Plate Grip
These grips are designed for full-amplitude tensile and compression fatigue testing of flat plate materials and feature a simple and efficient construction.
Maximum test force | ±5 to 100 kN (multiple capacities available) |
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Operating temperature range | RT to +50 °C -196 to +300 °C |
Applicable sample | Flat plate |
Split Flange Rod Grip
These grips allow samples to be secured easily and firmly. They are ideal for full-amplitude tensile and compression fatigue testing of round rod samples.
Maximum test force | ±10 to 200 kN (multiple capacities available) |
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Operating temperature range | RT to +100 °C -196 to 300 °C |
Applicable sample | Rod |
Pin-Type Grip for Flat Samples + Dynamic Strain Gauge
(for gauge length displacement)
These grips are designed for half-amplitude tensile fatigue testing.
Note: Supports only tensile testing.
Maximum test force | +6 kN/10 kN |
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Operating temperature range | -196 to +300 °C (±6 kN) -20 to +300 °C (±10 kN) |
Applicable sample | Flat plate (max. 30 mm wide and 5 mm thick) |
Non-Shift Wedge Grip for Static Testing
These grips can only be used for static testing. These high-capacity grips apply the self-tightening action of a wedge.
Note: Supports only tensile testing.
Maximum test force | ±20 to 250 kN (multiple capacities available) |
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Operating temperature range | 0 to +120 °C |
Applicable sample | Rod / flat plate |
Grips for CT Test Samples + Clip Gauge
These compact grips are designed specifically for tensile test samples and are compliant with ASTM E399 and E1820 standards. They can be used for tests performed to determine fracture toughness or crack propagation.
Note: Supports only tensile testing.
Maximum test force | ±6 to 80 kN |
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Operating temperature range | RT to +100 °C -20 to 300 °C |
Applicable sample | CT test sample |
Bolt Testing Jigs
Screw Tensile Test Jig
This jig is for tensile fatigue testing of various nuts and bolts. Various grips sizes are available depending on the bolt size.
Maximum test force | ±100/250 kN |
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Operating temperature range | RT to +50 °C |
Applicable sample | Nuts/bolts |
Screw Looseness Test Device
This device allows testing various parameters to determine the loosening process of bolts. It applies a vibrational displacement in the thread tightening direction and in the perpendicular direction and then measures the change in tightening force in relation to the number of vibrations.
Maximum test force | ±20 kN |
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Operating temperature range | RT to +100 °C -20 to +300 °C |
Applicable sample | CT test sample |
Compression and Bending Test Jigs
Compression Plate
Compression plates are available with both he top and bottom fixed or with the top compression plate mounted on a spherical seat.
Maximum test force | 20 to 500 kN (multiple capacities available) |
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Operating temperature range | RT to +250 °C |
Applicable sample | 60 to 220 mm dia. |
3-Point/4-Point Bending Test Jig
(for partial half-amplitude fatigue testing)
Maximum test force | 2kN |
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Max. dynamic bending moment | 50 N/m |
Operating temperature range | RT to +100 °C -196 to +300 °C |
Jig dimensions | Lower span: 30 to 100 mm Upper span: 15 to 50 mm |
Uniform Bending Test Jig (for full-amplitude fatigue testing)
This jig uses ball bearings at each support point to apply uniform bending loads.
Maximum test force | ±2 to 10 kN |
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Max. dynamic bending moment | ±20 to 250 N/m |
Operating temperature range | RT to +50 °C -196 to +200 °C |
CTOD Bending Test Jig + Clip Gauge
This jig is for CTOD bending tests compliant with ASTM E339. It is used for fracture toughness testing.
Maximum test force | 50/100 kN |
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Max. dynamic bending moment | 2/6 k N/m |
Operating temperature range | RT to +100 °C -196 to +300 °C |
Axis Adjustment System
Consisting of an axis adjustment unit, axis center sensor testing sample, strain amplifier unit, and dedicated axis adjustment software, this system allows adjusting the tilt between grips and adjusting the axis centers in the horizontal direction. It allows users to obtain highly reliable data by eliminating any bending stresses on samples.
Various Environmental Control Testing Systems
Various environmental control testing systems are required to simulate harsh environments or environments where materials are actually used, such as thermostatic, high-temperature, or extremely low-temperature environments. Therefore, an environmental control system can be added in the large testing space provided by the Servopulser series system.
See page 58.
News / Events
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New Video: AUTOGRAPH AGX-V2 Voice Operation Device XV-Talk
We will introduce how XV-Talk, the world's first voice control device installed in Shimadzu's latest tensile tester AGX-V2, can be used in various scenarios.
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New Video: AUTOGRAPH AGX-V2 Operation Control Panel Stand-alone test feature
We will introduce a new feature of Shimadzu's latest tensile tester, AGX-V2, a stand-alone testing function using a large color LCD touch panel.
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New Autograph AGX-V2 Series Precision Universal Testing Machines
The World’s First Testing Machines Equipped with a Voice Operation Device
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Given that cellulose nanofibers(CNFs)offer attractive physical characteristics, such as light weight, strength, and hardness, they not only enable materials with advanced functionality, but are expected to be used as a reinforcing material that can reduce the weight of composite materials.
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Latest issue of Shimadzu Journal, featuring Materials Science, has come out.
This issue focuses on Materials Science particularly on lithium-ion batteries (LiBs). It starts with two customer interviews in which users discuss their relationship with Shimadzu.
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Hydrogen Energy Analysis Solutions for Quality Control of Hydrogen
Impurities in hydrogen production affect subsequent industrial processes. Strict purity standards have been defined for hydrogen used in fuel cells (ISO 14687-2019). This is because if hydrogen contains carbon monoxide, sulfur components, etc., the catalyst of the fuel cell will be damaged. The hydrogen fuel standard for FCVs (ISO 14687 TypeII GradeD) defines many items to be controlled, and Shimadzu analytical instruments can play a role in analyzing these items.