EUROLAB
astm-d7136-impact-durability
Component Durability Testing ASTM D2240 Hardness TestingASTM D3039 Composite DurabilityASTM D3039 Tensile FatigueASTM D3045 Heat AgingASTM D3165 Adhesion DurabilityASTM D3478 Fatigue Crack TestingASTM D3478 Fatigue Crack TestingASTM D3479 Fatigue TestingASTM D3681 Flexural TestingASTM D4092 Thermal ResistanceASTM D4169 Package DurabilityASTM D5026 Weathering TestingASTM D5310 Durability of PlasticsASTM D5550 Fatigue TestingASTM D6272 Flexural FatigueASTM D638 Flexural TestingASTM D638 Tensile StrengthASTM D638 Tensile TestingASTM D664 Fatigue ResistanceASTM D7774 Durability FatigueASTM D7791 Thermal CyclingASTM D790 Flexural StrengthASTM E606 Fatigue Crack GrowthISO 11452 Electromagnetic DurabilityISO 16750 Environmental DurabilityISO 16750-1 General DurabilityISO 16750-10 Durability MeasurementISO 16750-11 Accelerated AgingISO 16750-12 Mechanical TestingISO 16750-13 Stress TestingISO 16750-14 Durability ValidationISO 16750-15 Durability LimitsISO 16750-16 Fatigue AnalysisISO 16750-17 Environmental AgingISO 16750-18 Testing ProtocolsISO 16750-19 Durability RequirementsISO 16750-2 Chemical DurabilityISO 16750-20 Durability MethodsISO 16750-21 Durability MonitoringISO 16750-22 Durability EvaluationISO 16750-23 Durability ReportingISO 16750-24 Durability AssessmentISO 16750-25 Durability ComplianceISO 16750-3 Electrical DurabilityISO 16750-4 Mechanical DurabilityISO 16750-5 Climatic DurabilityISO 16750-6 Durability EvaluationISO 16750-7 Durability CriteriaISO 16750-8 Vibration TestingISO 16750-9 Durability ProceduresISO 26262 Safety DurabilitySAE J1010 Vibration TestingSAE J1211 Salt Spray TestingSAE J1212 Salt Fog TestingSAE J1213 Corrosion TestingSAE J1280 Durability Test PlansSAE J1446 Component EnduranceSAE J1455 Environmental TestingSAE J1456 Environmental DurabilitySAE J2101 Environmental SimulationSAE J2464 Component VibrationSAE J2521 Accelerated DurabilitySAE J2571 Vibration ExposureSAE J2711 Fuel DurabilitySAE J2807 Durability StandardsSAE J551 Vibration Endurance

ASTM D7136 Impact Durability Laboratory Testing Service: A Comprehensive Guide

The ASTM D7136 Impact Durability test is a widely accepted standard for evaluating the resistance of materials to impact damage. The test is governed by various international and national standards, including:

  • ASTM D7136: Standard Test Method for Falling Weight Impact Tester
  • ISO 148:1999: Plastics Determination of Charpy impact properties
  • EN 1004:2002: Plastics Determination of Charpy impact properties
  • TSE (Turkish Standards Institution) ISO 179:2010: Plastics Determination of Charpy impact properties
  • These standards outline the requirements for testing and reporting, as well as the specific procedures to be followed.

    Standard Development Organizations

    The development and maintenance of these standards are overseen by various standard development organizations (SDOs), including:

  • American Society for Testing and Materials (ASTM)
  • International Organization for Standardization (ISO)
  • European Committee for Standardization (CEN)
  • These SDOs work together to ensure that the standards remain relevant, accurate, and up-to-date.

    Standard Evolution and Updates

    Standards are regularly reviewed and updated to reflect changes in technology, materials, and testing methodologies. This ensures that the test remains relevant and effective.

    For example, ASTM D7136 was revised in 2014 to include new requirements for testing equipment and procedures.

    Standard Compliance Requirements

    Compliance with these standards is mandatory for various industries, including:

  • Aerospace
  • Automotive
  • Construction
  • Packaging
  • Failure to comply can result in significant consequences, including fines, penalties, and even recalls.

    Why This Test Is Needed and Required

    The ASTM D7136 Impact Durability test is essential for ensuring the safety and reliability of products subject to impact damage. The test helps to:

  • Identify materials that are prone to cracking or breaking under impact
  • Evaluate the effectiveness of materials in withstanding various types of impact forces
  • Develop new materials and technologies that can withstand impact damage
  • Industries and Sectors Requiring This Testing

    The following industries and sectors require this testing:

  • Aerospace: To ensure aircraft components can withstand turbulence, bird strikes, and other impacts
  • Automotive: To evaluate the resistance of vehicles to crash damage and rollover impacts
  • Construction: To test the durability of building materials under various environmental conditions
  • Packaging: To ensure containers and packaging materials can withstand handling, shipping, and storage impacts
  • Risk Factors and Safety Implications

    The consequences of not performing this test include:

  • Product failure or malfunction
  • Injuries or fatalities resulting from impact damage
  • Economic losses due to product recalls or warranty claims
  • Why This Test Is Needed and Required

    The ASTM D7136 Impact Durability test is essential for ensuring the safety and reliability of products subject to impact damage. The test helps to:

  • Identify materials that are prone to cracking or breaking under impact
  • Evaluate the effectiveness of materials in withstanding various types of impact forces
  • Develop new materials and technologies that can withstand impact damage
  • Consequences of Not Performing This Test

    Failure to comply with this standard can result in significant consequences, including:

  • Product failure or malfunction
  • Injuries or fatalities resulting from impact damage
  • Economic losses due to product recalls or warranty claims
  • Quality Assurance and Quality Control Aspects

    To ensure the accuracy and reliability of test results, Eurolab follows strict quality assurance and quality control procedures, including:

  • Calibration and validation of testing equipment
  • Training and certification of personnel
  • Regular audits and inspections
  • Testing Equipment and Instruments

    The ASTM D7136 Impact Durability test uses specialized equipment, including:

  • Falling weight impact testers
  • Load cells and data acquisition systems
  • High-speed cameras and video analysis software
  • Testing Environment Requirements

    The testing environment must be controlled to ensure accurate results, with requirements for:

  • Temperature: 23C 2C
  • Humidity: 50 10
  • Pressure: 1013 mbar 5
  • Sample Preparation Procedures

    Samples are prepared according to specific guidelines, including:

  • Cutting and shaping of samples
  • Cleaning and polishing of sample surfaces
  • Testing Parameters and Conditions

    The test is conducted under controlled conditions, with specific requirements for:

  • Impact velocity
  • Impact force
  • Sample size and shape
  • Measurement and Analysis Methods

    Test results are measured using specialized equipment and software, including:

  • Load cells and data acquisition systems
  • High-speed cameras and video analysis software
  • Calibration and Validation Procedures

    Eurolab follows strict calibration and validation procedures to ensure accurate test results.

    Quality Control Measures During Testing

    To ensure the accuracy and reliability of test results, Eurolab follows strict quality control measures during testing, including:

  • Regular audits and inspections
  • Calibration and validation of testing equipment
  • Data Analysis and Reporting

    Test data is analyzed using specialized software, with reports provided in accordance with standard requirements.

    Reports are generated in accordance with standard requirements, including:

  • Test details: sample size, shape, and material; impact velocity, force, and duration
  • Test results: load-deflection curves, energy absorption values, and other relevant data
  • Conclusion: evaluation of test results, comparison to industry standards, and recommendations for product development
  • Conclusion

    The ASTM D7136 Impact Durability test is an essential standard for evaluating the resistance of materials to impact damage. The test helps to ensure the safety and reliability of products subject to impact forces, while also driving innovation in material science and technology.

    References

    ASTM D7136: Standard Test Method for Falling Weight Impact Tester

    ISO 148:1999: Plastics Determination of Charpy impact properties

    EN 1004:2002: Plastics Determination of Charpy impact properties

    TSE (Turkish Standards Institution) ISO 179:2010: Plastics Determination of Charpy impact properties

    Appendix

    Additional information and resources are provided in the following appendices:

  • Test procedure outline
  • Sample preparation guidelines
  • Testing equipment calibration and validation procedures
  • Need help or have a question?
    Contact us for prompt assistance and solutions.

    Latest News

    View all

    JOIN US
    Want to make a difference?

    Careers