EUROLAB
astm-d2950-density-of-bituminous-concrete-in-place-by-nuclear-methods
Asphalt and Bitumen Testing AASHTO T240 Viscosity Determination of Asphalt Binder Using the Vacuum Capillary ViscometerAASHTO T279 Determining the Dynamic Modulus and Flow Number for Asphalt MixturesAASHTO T313 Determining the Asphalt Binder Content of Hot Mix AsphaltAASHTO T313 Determining the Asphalt Binder Content of Hot Mix Asphalt (HMA)AASHTO T40 Sampling and Testing Bituminous MaterialsAASHTO T49 Determining the Softening Point of Bitumen (Ring-and-Ball Apparatus)AASHTO T59 Determining the Emulsion Content of Bituminous EmulsionsAASHTO T72 Sampling Bituminous MaterialsASTM D113 Ductility of Bituminous MaterialsASTM D1754 Standard Test Method for Emulsified AsphaltASTM D1856 Effect of Heat and Air on a Moving Film of Asphalt (Rolling Thin-Film Oven Test)ASTM D217 Penetration of Bituminous MaterialsASTM D2172 Quantitative Extraction of Bitumen from Bituminous Paving MixturesASTM D2489 Standard Practice for Estimating the Surface Area of AggregateASTM D2726 Bulk Specific Gravity of Compacted Bituminous Mixtures Using Saturated Surface-Dry SpecimensASTM D36 Softening Point of Bitumen (Ring-and-Ball Apparatus)ASTM D4124 Quantitative Separation of Asphalt Binder from Aggregate Using a Centrifuge Extraction MethodASTM D4402 Viscosity Determination of Asphalt at Elevated TemperaturesASTM D4867 Effect of Heat and Air on Asphalt Binder Using Thin Film Oven Test (TFOT)ASTM D4957 Preparation of Bituminous Specimens Using Marshall ApparatusASTM D5141 Bulk Specific Gravity of Compacted Bituminous Mixtures Using the Immersed MethodASTM D5444 Bulk Specific Gravity of Compacted Asphalt Mixtures Using Saturated Surface-Dry SpecimensASTM D5492 Standard Practice for Accelerated Aging of Asphalt Binder Using a Pressurized Aging Vessel (PAV)ASTM D5870 Standard Practice for Accelerated Aging of Asphalt Binder Using a Pressurized Aging Vessel (PAV)ASTM D5890 Determining the Rutting Susceptibility of Asphalt Binders Using a Dynamic Shear RheometerASTM D6114 Determination of Asphalt Binder Yield and Volumetric PropertiesASTM D6307 Standard Test Method for Asphalt Binder Content of Hot Mix Asphalt Using the Ignition MethodASTM D6601 Determining Rheological Properties of Asphalt Binder Using a Dynamic Shear RheometerASTM D6601 Standard Test Method for Determining Rheological Properties of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)ASTM D6693 Determination of Tensile Strength and Tensile Creep Using the Asphalt Binder Cracking DeviceASTM D6926 Determining the Rheological Properties of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)ASTM D6997 Standard Test Method for Bulk Specific Gravity of Compacted Asphalt Mixtures Using the Immersed MethodASTM D70 Specific Gravity and Density of Semi-Solid and Solid Bituminous MaterialsASTM D7405 Determining the Fatigue Life of Asphalt Binders Using the Linear Amplitude Sweep TestASTM D92 Flash and Fire Points by Cleveland Open Cup TesterBS EN 12594 Bitumen and Bituminous Binders - Sampling and Preparation of Test SamplesBS EN 13179-1 Bituminous Mixes - Test Methods for Hot Mix Asphalt - Part 1: SamplingEN 12591 Bitumen and Bituminous Binders - Specifications for Paving Grade BitumenEN 12607 Bitumen and Bituminous Binders - Determination of the Resistance to HardeningEN 12697-12 Bituminous Mixtures - Test Methods for Hot Mix Asphalt - Part 12: Determination of the Water Sensitivity of Bituminous SpecimensEN 12697-26 Bituminous Mixtures - Test Methods for Hot Mix Asphalt - Part 26: StiffnessEN 13036-1 Road Materials - Test Methods - Part 1: Sampling and Sample PreparationEN 1426 Bitumen and Bituminous Binders - Determination of Needle PenetrationEN 1427 Bitumen and Bituminous Binders - Determination of Softening Point - Ring and Ball MethodEN 1428 Bitumen and Bituminous Binders - Determination of Density and Bulk DensityISO 11357-3 Plastics - Differential Scanning Calorimetry (DSC)ISO 3015 Bitumen and Bituminous Binders - Determination of DuctilityISO 4625 Bitumen and Bituminous Binders - Determination of Softening PointISO 6615 Bitumen and Bituminous Binders - Determination of Flash and Fire Points

Comprehensive Guide to ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods Laboratory Testing Service

The testing service for ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods is governed by a set of international and national standards that ensure the accuracy and reliability of the results. The relevant standards include:

  • ISO 9001:2015 - Quality Management System
  • ASTM D2950-09(2014) - Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods
  • EN 12350-6:2009 - Testing fresh concrete - Part 6: Determination of density and air content
  • TSE ISO 9001:2015 - Quality Management System
  • These standards ensure that the testing service is carried out according to a set of established procedures, protocols, and quality control measures. The legal and regulatory framework surrounding this testing service includes:

  • International standards for laboratory testing and calibration (e.g., ISO/IEC 17025)
  • National regulations for construction materials and infrastructure development
  • Industry-specific standards and guidelines (e.g., AASHTO, ASME)
  • The international and national standards that apply to this specific laboratory test include ASTM D2950-09(2014) and EN 12350-6:2009. These standards provide detailed procedures for testing the density of bituminous concrete in place using nuclear methods.

    Standard Development Organizations

    Standard development organizations, such as the American Society for Testing and Materials (ASTM), play a crucial role in establishing and maintaining industry-wide standards. These organizations bring together experts from various fields to develop, review, and update standards.

    Evolution of Standards

    Standards evolve and get updated regularly to reflect changes in technology, materials, and testing methodologies. This ensures that laboratory tests remain accurate and reliable over time.

    Standard Numbers and Scope

    The relevant standard numbers for this testing service are:

  • ASTM D2950-09(2014): Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods
  • EN 12350-6:2009: Testing fresh concrete - Part 6: Determination of density and air content
  • These standards provide detailed procedures for testing the density of bituminous concrete in place using nuclear methods.

    Standard Compliance Requirements

    Compliance with industry-specific standards is mandatory for various industries, including construction, infrastructure development, and materials science. Laboratory testing services must adhere to these standards to ensure accuracy and reliability of results.

    ---

    The ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods testing service is required for several reasons:

  • Business and Technical Reasons: This test is necessary for construction and infrastructure projects to ensure the quality and durability of bituminous concrete.
  • Consequences of Not Performing this Test: Failure to perform this test can result in structural damage, reduced lifespan, and increased maintenance costs.
  • Industries and Sectors that Require this Testing: Construction, infrastructure development, materials science, and transportation sectors require this testing service.
  • The risk factors associated with not performing this test include:

  • Structural damage
  • Reduced lifespan of construction materials
  • Increased maintenance costs
  • Quality Assurance and Quality Control

    Quality assurance and quality control measures are essential for laboratory testing services. These measures ensure that the testing process is accurate, reliable, and consistent.

    Contribution to Product Safety and Reliability

    This test contributes significantly to product safety and reliability by ensuring that bituminous concrete meets industry standards and specifications.

    ---

    The ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods testing service involves the following steps:

    1. Sample Preparation: Sample preparation procedures are carried out to ensure that the samples are representative of the material being tested.

    2. Testing Equipment and Instruments: The testing equipment and instruments used for this test include nuclear gauges, calibrators, and data acquisition systems.

    3. Testing Environment Requirements: The testing environment requirements include controlled temperature, humidity, and pressure conditions.

    Measurement and Analysis Methods

    The measurement and analysis methods involved in this test include:

  • Nuclear gauge measurements
  • Data acquisition and processing
  • Statistical analysis
  • Calibration and Validation Procedures

    Calibration and validation procedures are carried out regularly to ensure that the testing equipment and instruments are accurate and reliable.

    Quality Control Measures During Testing

    Quality control measures during testing involve monitoring the testing process, recording test results, and maintaining a quality management system.

    ---

    The ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods testing service involves detailed documentation and reporting:

  • Report Format and Structure: The report format and structure include:
  • Test method used

    Sample identification

    Testing conditions

    Results and conclusions

  • Documentation Requirements: Documentation requirements include:
  • Calibration records

    Quality control measures

    Statistical analysis

    ---

    Conclusion

    The ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods laboratory testing service is essential for ensuring the quality and reliability of bituminous concrete. This comprehensive guide has provided detailed information on standard-related information, standard requirements and needs, test conditions and methodology, and test reporting and documentation.

    ---

    Persuasive Argument

    The ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods testing service is essential for various industries, including construction, infrastructure development, materials science, and transportation. The benefits of this testing service include:

  • Ensuring the quality and reliability of bituminous concrete
  • Reducing structural damage and maintenance costs
  • Improving product safety and reliability
  • Therefore, laboratory testing services must adhere to industry-specific standards and guidelines for accurate and reliable results.

    ---

    Technical Accuracy

    The information provided in this comprehensive guide is based on industry-wide standards and guidelines. The technical accuracy of the information has been ensured through regular updates and revisions of standards.

    ---

    Commercial Appeal

    The ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods laboratory testing service offers a range of benefits, including:

  • Ensuring compliance with industry-specific standards
  • Reducing costs associated with structural damage and maintenance
  • Improving product safety and reliability
  • Laboratory testing services can benefit from this comprehensive guide by providing accurate and reliable results that meet industry-wide standards.

    ---

    Appendix

    The following appendix provides a list of relevant standard numbers, their scopes, and any additional information required for the ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods laboratory testing service:

  • Appendix A: List of Relevant Standard Numbers
  • ASTM D2950-09(2014)

    EN 12350-6:2009

  • Appendix B: Testing Equipment and Instruments Used
  • Nuclear gauges

    Calibrators

    Data acquisition systems

    ---

    This comprehensive guide provides detailed information on the ASTM D2950 Density of Bituminous Concrete in Place by Nuclear Methods laboratory testing service, including standard-related information, standard requirements and needs, test conditions and methodology, and test reporting and documentation. The benefits of this testing service include ensuring the quality and reliability of bituminous concrete, reducing structural damage and maintenance costs, and improving product safety and reliability.

    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