Water-Lubricated Bearings

Water-lubricated bearings have many advantages, such as high cleanliness, high reliability, high specific heat capacity, high efficiency and high vibration resistance. Thanks to experimental and numerical research that has been conducted on water-lubricated bearings, the main performance characteris...

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collection Directory of Open Access Books
description Water-lubricated bearings have many advantages, such as high cleanliness, high reliability, high specific heat capacity, high efficiency and high vibration resistance. Thanks to experimental and numerical research that has been conducted on water-lubricated bearings, the main performance characteristics have been mastered, and mature structural design and standardization systems have also been established. At present, water-lubricated bearings are widely employed in ships, submarines, water pumps and other fields. As the crucial support component of power systems, the performance and service life of water-lubricated bearings directly determines the efficiency and safety of ships in navigation. When a ship works on the sea, the shaft works under high-speed conditions. After being disturbed by the stern shaft and bearing’s weight, the problems of poor lubrication, load capacity reduction, poor stability and serious friction are still present. The following Special Issue is devoted to research on the performance of the lubrication, load-carrying, fluid–structure coupling dynamics and frictional and wear characteristics of water-lubricated bearings.
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language eng
publishDate 2025
publishDateRange 2025
publishDateSort 2025
publisher MDPI - Multidisciplinary Digital Publishing Institute
publisherStr MDPI - Multidisciplinary Digital Publishing Institute
record_format ojs
spelling doab-20.500.12854ir-1527612025-02-20T13:01:42Z Water-Lubricated Bearings Xie, Zhongliang Han, Yanfeng water lubricated bearing dynamic coefficient cavitation effects bending deformation time-domain lubrication hydrodynamic journal bearing inertia force CF/PEEK axial piston pump water hydraulics water lubrication wear staved bearing stave number water-lubricated mixed lubrication rubber-plastic double-layer bush elastohydrodynamic lubrication fluid–structure interaction flexibility matrix method micro-groove FSI water-lubricated bearing surface scratch tribological performance block-on-ring scratch width co-crosslinking friction behaviors rubber water-lubricated bearings numerical model secondary lubricating medium lubrication mechanism inertia effect cavitation effect micro interface texture marine applications green tribology CFD surface roughness thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues thema EDItEUR::M Medicine and Nursing::MJ Clinical and internal medicine::MJC Diseases and disorders::MJCL Oncology Water-lubricated bearings have many advantages, such as high cleanliness, high reliability, high specific heat capacity, high efficiency and high vibration resistance. Thanks to experimental and numerical research that has been conducted on water-lubricated bearings, the main performance characteristics have been mastered, and mature structural design and standardization systems have also been established. At present, water-lubricated bearings are widely employed in ships, submarines, water pumps and other fields. As the crucial support component of power systems, the performance and service life of water-lubricated bearings directly determines the efficiency and safety of ships in navigation. When a ship works on the sea, the shaft works under high-speed conditions. After being disturbed by the stern shaft and bearing’s weight, the problems of poor lubrication, load capacity reduction, poor stability and serious friction are still present. The following Special Issue is devoted to research on the performance of the lubrication, load-carrying, fluid–structure coupling dynamics and frictional and wear characteristics of water-lubricated bearings. 2025-02-20T13:01:40Z 2025-02-20T13:01:40Z 2024 book ONIX_20250220_9783725821259_125 9783725821259 9783725821266 https://directory.doabooks.org/handle/20.500.12854/152761 eng application/octet-stream Attribution 4.0 International https://mdpi.com/books/pdfview/book/9877 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-7258-2126-6 10.3390/books978-3-7258-2126-6 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783725821259 9783725821266 216 Basel open access
spellingShingle water lubricated bearing
dynamic coefficient
cavitation effects
bending deformation
time-domain
lubrication
hydrodynamic
journal bearing
inertia force
CF/PEEK
axial piston pump
water hydraulics
water lubrication
wear
staved bearing
stave number
water-lubricated
mixed lubrication
rubber-plastic double-layer bush
elastohydrodynamic lubrication
fluid–structure interaction
flexibility matrix method
micro-groove
FSI
water-lubricated bearing
surface scratch
tribological performance
block-on-ring
scratch width
co-crosslinking
friction behaviors
rubber
water-lubricated bearings
numerical model
secondary lubricating medium
lubrication mechanism
inertia effect
cavitation effect
micro interface
texture
marine applications
green tribology
CFD
surface roughness
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
thema EDItEUR::M Medicine and Nursing::MJ Clinical and internal medicine::MJC Diseases and disorders::MJCL Oncology
Water-Lubricated Bearings
title Water-Lubricated Bearings
title_full Water-Lubricated Bearings
title_fullStr Water-Lubricated Bearings
title_full_unstemmed Water-Lubricated Bearings
title_short Water-Lubricated Bearings
title_sort water lubricated bearings
topic water lubricated bearing
dynamic coefficient
cavitation effects
bending deformation
time-domain
lubrication
hydrodynamic
journal bearing
inertia force
CF/PEEK
axial piston pump
water hydraulics
water lubrication
wear
staved bearing
stave number
water-lubricated
mixed lubrication
rubber-plastic double-layer bush
elastohydrodynamic lubrication
fluid–structure interaction
flexibility matrix method
micro-groove
FSI
water-lubricated bearing
surface scratch
tribological performance
block-on-ring
scratch width
co-crosslinking
friction behaviors
rubber
water-lubricated bearings
numerical model
secondary lubricating medium
lubrication mechanism
inertia effect
cavitation effect
micro interface
texture
marine applications
green tribology
CFD
surface roughness
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
thema EDItEUR::M Medicine and Nursing::MJ Clinical and internal medicine::MJC Diseases and disorders::MJCL Oncology
topic_facet water lubricated bearing
dynamic coefficient
cavitation effects
bending deformation
time-domain
lubrication
hydrodynamic
journal bearing
inertia force
CF/PEEK
axial piston pump
water hydraulics
water lubrication
wear
staved bearing
stave number
water-lubricated
mixed lubrication
rubber-plastic double-layer bush
elastohydrodynamic lubrication
fluid–structure interaction
flexibility matrix method
micro-groove
FSI
water-lubricated bearing
surface scratch
tribological performance
block-on-ring
scratch width
co-crosslinking
friction behaviors
rubber
water-lubricated bearings
numerical model
secondary lubricating medium
lubrication mechanism
inertia effect
cavitation effect
micro interface
texture
marine applications
green tribology
CFD
surface roughness
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
thema EDItEUR::M Medicine and Nursing::MJ Clinical and internal medicine::MJC Diseases and disorders::MJCL Oncology
url ONIX_20250220_9783725821259_125