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Our torque testing systems
Need repeatable, high accuracy data without breaking your budget?
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ETS 0.1 N.m
Designed for use with both the HelixaPro and VortexPro torque testers, the Enhanced Torque Sensor (ETS) is easily mounted to the sensor carriage to minimise the set-up time for testing.
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What is a universal testing machine?
To assess the quality of a finished product or component, it is often necessary to conduct multiple force tests.
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ETS 10 N.m
Designed for use with both the HelixaPro and VortexPro torque testers, the Enhanced Torque Sensor (ETS) is easily mounted to the sensor carriage to minimise the set-up time for testing.
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Test frame
The HelixaPro and HelixaPro Touch feature a precision motorised test frame which is designed to apply torque from a few mN.m right up to a capacity of 6 N.m.
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Extensometry
When testing the extension or compressive deformation of a specimen it is often acceptable to measure the movement of the loadcell and grips, as defined by the crosshead distance travelled (known as 'grip separation').
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Safety guard
Our systems can be supplied with a standard safety guard to prevent access by the operator to the testing area whilst the test is in progress.
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Software
Die Prüfsoftware VectorPro™ ist das Herzstück unserer Drehmomentprüfsysteme VortexPro und HelixaPro .
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Accuracy
The SqueezerPro compression tester features precision-aligned specimen platforms, also known as compression platens, ensuring accurate test results and instilling confidence in the reliability of your testing outcomes.
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Unsere Kraftmesssysteme
Brauchen Sie wiederholbare, hochpräzise Daten, ohne Ihr Budget zu sprengen?
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When your requirements need customised solutions
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Pass or fail indicator
Specify your own pass and fail criteria within each test, for results that immediately alert operators to the status of each test specimen.
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Report and analyse
A powerful reporting module allows you to configure test reports to present data the way your customer wants to see it.
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Testing equipment from Mecmesin
At Mecmesin, we are a global provider of advanced force, torque and materials testing equipment, designed and manufactured to deliver precise, repeatable data for product development, quality control and regulatory compliance.
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Pass or fail indicator
A clear pass (blue tick) or fail (red cross) indicator, according to your specification criteria, alerts operators immediately leaving no doubt about the status of each specimen.
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Force Testing Instruments & Measurement Devices
Force testing is a way of determining how an object will react when it is subjected to tensile or compressive loads - either during its normal operation or when being pulled/pushed until it deliberately fails or breaks.
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Real-world testing: Proven performance in action
"We have used Mecmesin equipment for a number of years to perform compression and tension tests on helical springs intended for use in our respiratory drug delivery devices.
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ELS 2 N
The Enhanced Load Sensor (ELS) comprises a sturdy dovetailed-mounting box with an internal loadcell complete with small fixing thread and occupies minimal space.
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Mecmesin’s range of static-load materials testers, powered by VectorPro™ MT software, offers a practical and flexible solu
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Mecmesin specialises in solutions for static torque measurement
Static torque measurement is an essential quality-control process used by manufacturers to ensure components perform safely and meet industry standards.
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ETS 6 N.m
Designed for use with both the HelixaPro and VortexPro torque testers, the Enhanced Torque Sensor (ETS) is easily mounted to the sensor carriage to minimise the set-up time for testing.
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Overview
The HelixaPro is the perfect solution for measuring low and medium torque on a variety of delicate or finely-engineered products.
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Grips and fixtures
Holding your test specimen in place without it slipping is essential to obtaining repeatable results.
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Helixa
Precision engineered for fine torque test applications - developed for when 0.0001 accuracy really matters.
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Extensometry
When testing the extension or compressive deformation of a specimen it is often acceptable to measure the movement of the loadcell and grips, as defined by the crosshead distance travelled (known as 'grip separation').