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Homepage>BS Standards>21 MECHANICAL SYSTEMS AND COMPONENTS FOR GENERAL USE>21.100 Bearings>21.100.10 Plain bearings>PD ISO/TS 31657-2:2020 Plain bearings. Hydrodynamic plain journal bearings under steady-state conditions Functions for calculation of multilobed journal bearings
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immediate downloadReleased: 2020-07-10
PD ISO/TS 31657-2:2020 Plain bearings. Hydrodynamic plain journal bearings under steady-state conditions Functions for calculation of multilobed journal bearings

PD ISO/TS 31657-2:2020

Plain bearings. Hydrodynamic plain journal bearings under steady-state conditions Functions for calculation of multilobed journal bearings

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Standard number:PD ISO/TS 31657-2:2020
Pages:74
Released:2020-07-10
ISBN:978 0 539 06673 9
Status:Standard
PD ISO/TS 31657-2:2020 - Plain Bearings Standard

PD ISO/TS 31657-2:2020 - Plain Bearings Standard

Discover the comprehensive guide to hydrodynamic plain journal bearings with the PD ISO/TS 31657-2:2020 standard. This essential document provides detailed functions for the calculation of multilobed journal bearings, ensuring precision and reliability in your engineering projects.

Overview

The PD ISO/TS 31657-2:2020 is a technical specification that focuses on the steady-state conditions of hydrodynamic plain journal bearings. It is an invaluable resource for engineers and designers who require accurate calculations for multilobed journal bearings. Released on July 10, 2020, this standard is up-to-date with the latest industry practices and methodologies.

Key Features

  • Standard Number: PD ISO/TS 31657-2:2020
  • Pages: 74
  • ISBN: 978 0 539 06673 9
  • Status: Standard

Why Choose PD ISO/TS 31657-2:2020?

This standard is designed to provide a thorough understanding of the functions necessary for calculating multilobed journal bearings. It is particularly useful for applications where precision and reliability are paramount. By adhering to this standard, you can ensure that your designs meet the highest quality and performance criteria.

Comprehensive Coverage

With 74 pages of detailed information, the PD ISO/TS 31657-2:2020 offers extensive coverage of the subject matter. It includes theoretical foundations, practical applications, and illustrative examples to guide you through the complex calculations involved in multilobed journal bearings.

Industry Relevance

As a recognized standard, PD ISO/TS 31657-2:2020 is widely accepted in the engineering community. It aligns with current industry practices and provides a benchmark for quality and performance. By implementing this standard, you can enhance the credibility and reliability of your engineering projects.

Enhanced Performance

Multilobed journal bearings are critical components in many mechanical systems. The PD ISO/TS 31657-2:2020 standard ensures that these components are designed to perform optimally under steady-state conditions. By following the guidelines and calculations provided, you can achieve enhanced performance and longevity for your bearings.

Who Should Use This Standard?

The PD ISO/TS 31657-2:2020 is ideal for:

  • Mechanical Engineers
  • Design Engineers
  • Research and Development Teams
  • Quality Assurance Professionals
  • Manufacturers of Plain Bearings

Conclusion

Incorporating the PD ISO/TS 31657-2:2020 standard into your engineering processes is a strategic decision that can lead to improved design accuracy, enhanced performance, and increased reliability of multilobed journal bearings. With its comprehensive coverage and industry relevance, this standard is an indispensable tool for professionals in the field of mechanical engineering.

Ensure your projects meet the highest standards of quality and performance by utilizing the PD ISO/TS 31657-2:2020. Stay ahead in the competitive engineering landscape with this essential resource.

DESCRIPTION

PD ISO/TS 31657-2:2020


This standard PD ISO/TS 31657-2:2020 Plain bearings. Hydrodynamic plain journal bearings under steady-state conditions is classified in these ICS categories:
  • 21.100.10 Plain bearings

This document specifies the characteristic values for selected two-, three- and four-lobe bearings.

The functions plotted and listed in table form below are required for the operationally safe design of hydrodynamic multi-lobed journal bearings according to ISO/TS 31657-1. They are based on the presumptions and boundary conditions indicated there and only apply to stationary operating states. The symbols used are explained in ISO/TS 31657-1; calculation examples are also included there.