GB/T 19847-2005
ActiveMechanical vibration and shock-Analytical methods of assessing shock resistance of mechanical systems-Information exchange between suppliers and users of analyses
机械振动和冲击 评价机械系统冲击阻抗的分析方法 分析的提供者和使用者之间的信息交换
Application Summary AI generated
This standard specifies the framework and requirements for exchanging information between suppliers and users when conducting analytical assessments of shock resistance in mechanical systems. It is applied in engineering contexts where vibration and shock analysis is performed, such as in the design, testing, and validation of machinery, equipment, or structures subjected to dynamic loads. The standard ensures clarity and consistency in communication regarding analytical methods, assumptions, and results between parties involved in shock resistance evaluation.
Related Standards
GB/T 20485.12-2008
Method for the calibration of vibration and shock transducers - Part 12: Primary vibration calibration by the reciprocity method
GB/T 13823.1-2005
Methods for the calibration of vibration and shock transducers part 1:Basic concepts
GB/T 14412-2005
Mechanical vibration and shock-Mechanical mounting of accelerometers
GB/T 6075.6-2002
Mechanical vibration--Evaluation of machine vibration by measurements on non-rotating parts--Part 6:Reciprocating machines with power ratings above 100kW
GB/T 6075.5-2002
Mechanical vibration--Evaluation of machine vibration by measurements on non-rotating parts--Part 5:Machine sets in hydraulic power generating and pumping plants
GB/T 6075.2-2002
Mechanical vibration--Evaluation of machine vibration by measurements on non-rotating parts--Part 2:Large land-based steam turbine generator setsin excess of 50MW
GB/T 6075.4-2001
Mechanical vibration--Evaluation of machine vibration by measurementson non-rotating parts--Part 4:Gas turbine driven sets excluding aircraft derivatives
GB/T 6075.3-2001
Mechanical vibration--Evaluation of machine vibration by measurements on non-rotating parts--Part 3:Industrial machines with nominal power above 15kW and nominal speeds between 120r/min and 15000r/min when measured in situ
Transparency note: The application summary and key sentences on this page were automatically generated by AI from the standard's original text. This content has not been human-verified and should not be used for compliance or regulatory purposes. Always refer to the official standard document from the issuing authority.