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ASTM C695-2015 Standard Test Method for Compressive Strength of Carbon and Graphite;HRJ Tests;
500kN Compressive Strength of Carbon and Graphite;
ASTM D7972-2014 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Three-Point Loading at Room Temperature;HRJ Tests;5kN Flexural Strength of Manufactured Carbon and Graphite;
Graphite Crushing Compressive Strength Test;HRJ Tests;Manufactured Carbon Compressive Strength Test;Manufactured Carbon Flexural Strength Test;Graphite Flexural Strength Test;Graphite Crushing Strength Test;HRJ Tests;Manufactured Carbon Crushing Strength Test;Carbon Brick Compressive Strength Test;Carbon Brick Crushing Strength Test;Referenced Documents ASTM E4;Referenced Documents ASTM E177;Referenced Documents ASTM E691;ASTM E4-2016 Standard Practices for Force Verification of Testing Machines;
→ASTM C695-2015 Standard Test Method for Compressive Strength of Carbon and Graphite;
→ASTM D7972-2014 Standard Test Method for Flexural Strength of Manufactured Carbon and Graphite Articles Using Three-Point Loading at Room Temperature;
→ASTM E177-2014 Practice for Use of the Terms Precision and Bias in ASTM Test Methods;
→ASTM E691-2014 Practice for Conducting an Inter laboratory Study to Determine the Precision of a Test Method;
→Carbon and graphite can usually support higher loads in compression than in any other mode of stress. This test, therefore, provides a measure of the maximum load-bearing capability of carbon and graphite objects;
→This test method covers the determination of the compressive strength of carbon and graphite at room temperature;
→The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard;
→This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use;
→Testing machines that apply and indicate force are used in many industries, in many ways. They may be used in a research laboratory to measure material properties, and in a production line to qualify a product for shipment. No matter what the end use of the machine may be, it is necessary for users to know that the amount of force applied and indicated is traceable to the International System of Units (SI) through a National Metrology Institute (NMI). The procedures in Practices E4 may be used to verify these machines so that the indicated forces are traceable to the SI. A key element of traceability to the SI is that the devices used in the verification have known force characteristics, and have been calibrated in accordance with Practice E74;
→The procedures in Practices E4 may be used by those using, manufacturing, and providing calibration service for testing machines and related instrumentation;
→The purpose of this practice is to present concepts necessary to the understanding of the terms “precision” and “bias” as used in quantitative test methods. This practice also describes methods of expressing precision and bias and, in a final section, gives examples of how statements on precision and bias may be written for ASTM test methods;
→This practice describes the techniques for planning, conducting, analyzing, and treating the results of an inter laboratory study (ILS) of a test method. The statistical techniques described in this practice provide adequate information for formulating the precision statement of a test method;
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