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1901
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Understanding and interpreting test results
Box crush testing provides clear, measurable data to inform design and compliance decisions:
1902
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Understanding removal torque testing
Removal torque testing measures the rotational force required to unscrew or disengage a closure from its container.
1903
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Applications of running torque testing
Running torque testing is used across a wide range of industries and products, including:
1904
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Key properties measured in tensile testing
While ultimate tensile strength is the headline result, tensile testing also measures:
1905
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Why is tear resistance testing important?
Tear resistance is more than a quality metric, it is a safeguard for performance and safety.
1906
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Applications of needle penetration testing
Medical devices
Used to confirm that components such as vial stoppers, syringe seals, and gloves can resist penetration by needles while maintaining their intended function.
1907
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Testing methods for different materials
Rubber and elastomers
Rubber and elastomers are valued for their flexibility and resilience.
1908
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Benefits of adhering to testing standards
Following recognised standards delivers measurable benefits:
1909
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A leading provider of force and torque testing solutions
Mecmesin design and manufacture force and torque testing machines for evaluating the mechanical strength of components, products and raw materials across a wide range of industries.
1910
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Standards for top-load testing
ASTM D2659
Specifies the method for determining the column crush resistance of blown thermoplastic containers.
1911
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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
1912
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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.
1913
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Benefits of box crush and packaging compression tests
Compression testing offers both commercial and technical benefits for manufacturers and logistics operations.
1914
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What is wing tear testing (Winkelmann/Graves method)?
Wing tear testing is a tensile-based method for flexible materials, in which a wing-shaped specimen is subjected to a controlled force until it tears.
1915
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Benefits of CMT testing for manufacturers
CMT testing offers multiple operational and commercial advantages:
1916
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Standards in torque testing
ASTM standards
ASTM D2063 – Reclosable child-resistant packaging
ASTM D3198 – Continuous thread closure torque testing
1917
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Maintenance and calibration of tear testers
To maintain accuracy and extend service life, regular maintenance and calibration are essential.
1918
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The 3-Point Bend test goes to Summer School
Both Dr. Cote and Grubbs agree that one of the highlights of their year is the Materials Science summer course for high school students, where they had students design their own candy composites.
1920
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Overview of common testing standards
Different materials and applications are covered by specific puncture resistance standards, each with its own apparatus and procedure.
1921
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Example: Cork extraction testing for bottling efficiency
Designed for high-volume bottling plants, the automated tester measures the extraction force and weight of 75 corks from each production batch.
1922
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Why choose Mecmesin for running torque testing
With over 40 years of experience in precision torque measurement, Mecmesin designs and builds systems to meet the demanding requirements of engineers and quality professionals worldwide.
1923
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Standards and protocols for shear testing
Following recognised standards ensures accuracy, repeatability, and traceability of results. Common ASTM standards for compressive shear testing include:
1924
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Testing standards for secant modulus
Consistent measurement is supported by recognised standards:
1925
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Why is torque to turn testing important?
Torque to turn testing plays a critical role in evaluating the performance, reliability and quality of rotating components.