Search results
976
Sensor
Sensors - Vortex
Torque sensors (ITC)
The ITC range of interchangeable torque sensors is specially adapted for the Vortex-i and -xt test systems. Plug and play for automatic calibration and available in 5 different capacities for all requirements, from 0 - 0.3 N.m (0 - 2.…
977
Case study
Betätigungsdrehmoment des PVC-Rohrventils
Anforderung Nawaplastic Industries (Saraburi) Co. Ltd.
978
Sensor
Sensors - MultiTest-dV
Force sensors
The MultiTest-dV is a highly flexible tester, which can be configured with either a Touchscreen or Advanced Force Gauge for product testing or an Enhanced Load Sensor for basic materials testing.
AFGA digital force gauge with advanced…
979
Case study
Klebkraft von Bauplatten
Anforderung
SIPS Frames UK Ltd. (SIPS Eco Panels) ist einer der führenden unabhängigen Hersteller von strukturisolierten Paneelsystemen in Großbritannien.
980
Case study
Golf ball deflection test
Requirement
A golf ball manufacturer has factories based in both the US and India.
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The concentric ring method
The most widely used approach to equibiaxial flexure compression testing is the concentric ring method. A circular specimen is supported on an outer ring and loaded through a smaller, concentric inner ring.
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Speak to an expert
Tensile and compression testing are essential for understanding material behaviour and ensuring that components perform safely and reliably in their intended environment.
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Why choose Mecmesin for flexural testing
Mecmesin’s flexural test systems are engineered for precision, repeatability, and compliance with international standards.
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Mecmesin solutions for ball burst testing
Mecmesin’s testing systems offer high accuracy, repeatability and adaptability across a broad range of burst testing requirements.
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Best practices in conducting cone penetration tests
Step-by-step procedure
Sample preparation - Condition the sample according to the standard, controlling temperature and humidity where required.
Equipment calibration - Confirm the
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Procedure for tensile testing
While the specifics vary depending on material type and applicable standards, the general procedure includes:
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Applications across industries
Tensile strength testing is essential in product development, quality control, and certification across multiple sectors:
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Why choose Mecmesin for double rip tongue tear testing
Standards-compliant solutions
Mecmesin tensile testers are fully compatible with ASTM D751-06, ISO 139
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Mecmesin’s expertise in fabric testing
Standards-compliant systems
Our OmniTest and MultiTest-dV machines, paired with
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Best practices for rotational shear testing
Consistent methodology, accurate equipment and adherence to relevant standards are essential for meaningful results. Recommended practices include:
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Speak to an expert
Mecmesin offers fully configurable tensile testing systems that comply with leading ASTM and ISO strip method standards.
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Why Mecmesin for reverse ratchet torque testing
Mecmesin offers torque testing systems engineered to meet the precise demands of child-resistant closure
994
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Mecmesin equipment for torque testing
Mecmesin has decades of expertise in closure torque measurement, offering solutions designed for accuracy, repeatability and easy integration into quality control processes.
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Step-by-step test methodology
Preparation
Sample selection - Choose representative specimens, avoiding faults unless deliberately testing them.
Specimen cutting - Cut to standard dimensions with a central slit of specified
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Peel test procedure - step by step
Prepare the specimen: Cut and condition according to the relevant standard.
Set up the machine: Install the correct fixture for the test type.
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Applications of loop tack testing
Packaging
Checks resealable closures, tamper-evident labels, and PSA seals to ensure adequate instant tack for both production and consumer use.
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Case examples
Tennis ball compression - Testing applies a standard load to measure deformation and rebound characteristics, ensuring consistent performance for bounce, speed, and control.
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Introduction to tensile strength
Tensile strength is a fundamental mechanical property that defines a material’s ability to resist forces that attempt to pull it apart. It represents the maximum tensile stress a material can withstand before failure.
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Industry applications
Automotive industry
Seat cushions - Testing confirms comfort, resilience, and long-term shape retention
Gaskets - Ensures seals remai