BS ISO 15230-1:2021
Mechanical vibration and shock. Coupling forces at the man-machine interface for hand-transmitted vibration Measurement and evaluation
Standard number: | BS ISO 15230-1:2021 |
Pages: | 36 |
Released: | 2021-08-27 |
ISBN: | 978 0 539 03399 1 |
Status: | Standard |
BS ISO 15230-1:2021 - Mechanical Vibration and Shock
Discover the essential standard for understanding and evaluating the coupling forces at the man-machine interface for hand-transmitted vibration. The BS ISO 15230-1:2021 is a comprehensive guide that provides detailed methodologies for the measurement and evaluation of mechanical vibrations and shocks, specifically focusing on the interaction between humans and machines.
Key Features
- Standard Number: BS ISO 15230-1:2021
- Pages: 36
- Release Date: August 27, 2021
- ISBN: 978 0 539 03399 1
- Status: Standard
Comprehensive Coverage
This standard is meticulously crafted to address the complexities involved in measuring and evaluating the forces that occur at the interface between humans and machines. It is an indispensable resource for professionals dealing with mechanical vibrations and shocks, providing a structured approach to ensure safety and efficiency in various industrial applications.
Why Choose BS ISO 15230-1:2021?
The BS ISO 15230-1:2021 standard is a critical tool for engineers, safety officers, and researchers who are involved in the design, testing, and evaluation of equipment that transmits vibrations to the human body. By adhering to this standard, you can ensure that your practices meet international benchmarks for safety and performance.
Benefits of Using This Standard
- Enhanced Safety: By understanding the coupling forces at the man-machine interface, you can design systems that minimize harmful vibrations, thereby protecting users from potential injuries.
- Improved Performance: Optimize the performance of machinery by accurately measuring and evaluating vibration forces, leading to more efficient and reliable operations.
- Compliance: Ensure that your processes and products comply with international standards, facilitating smoother operations and market acceptance.
Who Should Use This Standard?
This standard is ideal for a wide range of professionals, including:
- Mechanical Engineers
- Safety and Health Officers
- Product Designers
- Quality Assurance Specialists
- Researchers in Human Factors and Ergonomics
In-Depth Analysis and Evaluation
The BS ISO 15230-1:2021 provides a detailed framework for analyzing and evaluating the forces at the man-machine interface. It includes methodologies for measuring hand-transmitted vibrations, offering insights into how these forces can affect human health and machine performance. This standard is crucial for developing safer and more ergonomic tools and machinery.
Stay Ahead with the Latest Standards
Released on August 27, 2021, this standard reflects the latest advancements and research in the field of mechanical vibrations and shocks. By integrating this standard into your practices, you ensure that your operations are aligned with the most current industry knowledge and techniques.
Conclusion
The BS ISO 15230-1:2021 is more than just a standard; it is a vital resource for anyone involved in the design, evaluation, and use of machinery that interacts with humans. By providing a clear and structured approach to measuring and evaluating hand-transmitted vibrations, this standard helps you enhance safety, improve performance, and ensure compliance with international norms.
Invest in the BS ISO 15230-1:2021 today and take a significant step towards safer and more efficient mechanical systems.
BS ISO 15230-1:2021
This standard BS ISO 15230-1:2021 Mechanical vibration and shock. Coupling forces at the man-machine interface for hand-transmitted vibration is classified in these ICS categories:
- 17.160 Vibrations, shock and vibration measurements
- 13.160 Vibration and shock with respect to human beings
This document describes the coupling parameters between the hands of a machine operator and a vibrating surface of the machine.
The coupling between the hand and the vibrating surface can be described using different parameters and component parts of these parameters:
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force parameters, such as push, pull and grip;
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parameters such as pressure exerted on skin.
In addition, Annexes A, B, C, D and E provide guidelines for measuring procedures, the measurement of the force and pressure parameters, and information on the requirements for measuring instrumentation, as well as a calibration method.
This document does not deal with forces which act tangentially to the hand.