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LIANYI Bearing is a high-tech enterprise at the forefront of interdisciplinary disciplines including high-performance materials research, specialized equipment design, simulation, testing, mechanism research, technical consultation, and production.The headquarters named Shanghai Lianyi Bearing is located in Minhang, Shanghai, mainly responsible for R&D and sales. So far in the R&D department, there are 40 R&D engineers including more than 20 people with master’s degrees or above. Lianyi Bearing owned more than 30 patents and software copyrights; and developed one of the world’s most comprehensive plain bearing R&D systems.

Mission
● Maintenance-free, sustainable development for mankind.
● Reduce costs and cooperate with customers for win-win results.

Vision
● a world-class expert in friction solutions.

Zhongwei YIN, the owner of lianyi bearing, was a former professor at Shanghai Jiao Tong University (# 46 in QS ranking 2023), the convener of research in the field of national standard water-lubricated bearing technology, a special editorial board member and vice chairman of "Ship Engineering" magazine, and a member of the National plain Bearing Professional Standardization Technical Committee; Engaged in multidisciplinary cross-field professional and technical research for nearly 20 years, has been taking the national and industry strategic needs as the starting point, aiming at the international technology frontier of the industry, and in-depth research on the basic, common and key technologies of plain bearings.

Zhongwei Yin team have released:

●46 research papers on SCI (International authoritative journal)
●40 innovation patents

Representative Reasearch papers written by ZHONGWEI YIN team

 

1 Journal bearing seizure degradation assessment and remaining useful life prediction based on long short-term memory neural network [J]. Measurement, 2020, 166:108215.
2 Experimental comparison of the seizure loads of gray iron journal bearing and aluminum alloy journal bearing under aligned and misaligned conditions [J]. Mechanics and Industry, 2020, 21(4):408.
3 Simulation Study on Filling and Solidification of Horizontal Centrifugal Casting Babbitt Lining of Bimetallic Bearing [J]. International Journal of Metalcasting, 2020(1).
4 Study on fatigue strength of SnSb11Cu6 babbitt-steel bimetal sliding bearing material prepared by MIG brazing [J]. Mechanics and Industry, 2020, 21(1):106.
5 Modeling and experiments of cavitation on a pocket-textured surface:[J]. Proceedings of the Institution of Mechanical Engineers, Part [J]. Journal of Engineering Tribology, 2019, 234(1):94-103.
6 A study on the wear behavior of tin-based journal bearing under different working conditions [J]. Industrial Lubrication and Tribology, 2019, ahead-of-print(ahead-of-print).
7 Simulation and Experimental Verification of Fatigue Strength Evaluation of Journal Bearing Bush [J]. Engineering Failure Analysis, 2019, 109:104275.
8 Experimental comparison of CuAl10Fe3 journal bearings sliding against two different coatings [J]. Industrial Lubrication and Tribology, 2019, 71(7).
9 Experimental research on tribological properties of liquid phase exfoliated graphene as an additive in sae 10w-30 lubricating oil. Tribology International, 135.
10 Tribological properties of ultrahigh-molecular-weight polyethylene (UHMWPE) composites reinforced with different contents of glass and carbon fibers[J]. Industrial Lubrication and Tribology, 2018, 71(479).
11 Designs of low frictional coefficients for joint bearings by inlaying graphites and liquid spraying of mos2. Industrial Lubrication and Tribology, 70(9), 1630-1635.
12 Effects of Ag micro-addition on structure and mechanical properties of Sn-11Sb-6Cu Babbitt[J]. Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing, 2018.
13 Tribological and Mechanical Properties of Ti2AlC Coating at Room Temperature and 800 ℃ [J],Ceramics International, 2018, 44 (1): 1046-1051 (IF 2.986)
14 Tribological studies of soft and hard alternated composite coatings with different layer thicknesses [J], Tribology International, 2017(110)326-332.(IF 2.903)
15 Design and analysis of a self-lubricating nuclear joint bearing above 320°C [J],Industrial Lubrication and Tribology, 2017, 69(2): 95-104 (IF 0.605)
16 Designs of low frictional coefficients for joint bearings by inlaying graphites and liquid spraying of MoS2[J],Industrial Lubrication and Tribology, In press, 2017 (IF 0.605)
17 Research progresses and suggestions of manufacturing technologies of engine bearing bushes[J]. IOP Conference Series: Materials Science and Engineering, 2017, (272):012005:1-10 (EI)
18 Friction and wear characteristics of ultrahigh molecular weight polyethylene (UHMWPE) composites containing glass fibers and carbon fibers under dry and water-lubricated conditions[J]. Wear, 2017, s 380–381:42-51.
19 Influence of tension in T300/epoxy prepreg winding process on the performance of the bearing composites[J]. Journal of Reinforced Plastics & Composites, 2017, 36(15). (SCI)
20 CF reinforced modified cyanate ester winding composites and their thermomechanical properties [J]. High Performance Polymers.
21 Thermomechanical Properties of High-speed PM Machine Rotor Sleeve Composite and Kevlar Fabric Bonding [J]. Strengt of Materials.
22 Development of a tension system and influence of ultimate tension on the properties of composites[C]. IOP Conference Series: Materials Science and Engineering, 2017, (272):012021
23 Size Effect on the Mechanical Properties of CF Winding Composite [C]. IOP Conference Series: Materials Science and Engineering, 2017, (274):012021
24 A study of the static/kinetic friction behavior of PTFE-based fabric composites, Tribology Transaction, Published online: 8 Feb 2017
25 Load carrying capacity of misaligned hydrodynamic water-lubricated plain journal bearings with rigid bush materials. Tribology International, 99, pp: 1-13, 2016.
26 Study of the lubrication performance of water-lubricated journal bearings with CFD and FSI method[J]. Industrial Lubrication & Tribology, 2016(3). (SCI)
27 A study on the tribological behavior of hybrid PTFE/Kevlar fabric composites filled with nano-SiC and/or submicron-WS2 fillers, Polymer composites, 2016 , 37 (7) :172-178. (SCI&EI ,IF= 2.324)
28 Tribological behavior of hybrid PTFE/Kevlar fabric composites with different weave densities, Industrial Lubrication and Tribology, 2016, 68:278-286. (SCI&EI ,IF=0.605)
29 Tribological behavior of hybrid PTFE/Kevlar fabric composites with nano-Si3N4 and submicron size WS2 fillers, Tribology International, 2014, 80:172-178. (SCI&EI, B,IF=2.903)
30 A study of the tribological behavior of transfer films of PTFE composites formed under different loads, speeds and morphologies of the counterface, Wear, 2015, 328-329:17–27. (SCI&EI, B,IF=2.531)
31 Tribological behavior of PTFE based single layer and double layer fabric composites. 12th International Conference on Computational Methods and Experiments in Surface and Contact Mechanics including Tribology, Accepted, 2015.
32 Determination of stiffness coefficients of hydrodynamic water-lubricated plain journal bearings, Tribology International, 85, pp: 37-47, 2015.(B SCI, IF=2.903)
33 The design of hydrodynamic water-lubricated step thrust bearings using CFD method, Mechanics & Industry, 15, pp: 197-206, 2014.(SCI, IF=0.393)
34 Comparison of the lubrication performances of water-lubricated and oil-lubricated plain journal bearings[C], Applied Mechanics and Materials, 2015, 711:27-30.
35 Determination of stiffness coefficients of hydrodynamic water-lubricated plain journal bearings, Tribology International, 85, pp: 37-47, 2015
36 CFD analysis of load-carrying capacity of hydrodynamic lubrication on a water-lubricated journal bearing, Industrial Lubrication and Tribology, 67(1), pp:30-37, 2015
37 Numerical analysis of plain journal bearing under hydrodynamic lubrication by water, Tribology International, 75, pp: 31-38, 2014 (B SCI, IF=2.903)
38 Analysis on design parameters of water-lubricated journal bearings under hydrodynamic lubrication,Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, doi: 10.1177/1350650115623201, 2015(SCI )
39 Researches on friction performances of water-lubricated polymer composite journal bearings based on experiments[C], Applied Mechanics and Materials, 2015, 711:57-60. (EI)
40 Study of the lubrication performances of water-lubricated journal bearings using CFD and FSI method, Industrial Lubrication and Tribology, 2015(SCI)

 

Innovation patents

 

Our Factory
  Our Factory
Our factory is located in Huzhou, Zhejiang, and covers an area of 12000 ㎡, with complete production equipment and a bearing testing machine. Our factory has an ISO9001-2015 quality system, and seeking an efficient and safe production process through the PDCA method. The workers’ healthy is highly concerned, so we strictly observe the production process with industry standards. It also ensured product safety, environmental protection, low cost, and high quality, and meet customer requirements for product/project quality delivery.
At Lianyi Technology, we don't just produce plain bearings, we provide a complete set of friction solutions to become your long-term stable strategic partner, we know that every second you spend dealing with parts-related problems is something you can't add value to your business, and as a key supplier, we are committed to solving problems - so you don't have to deal with them anymore.
Maching workshop:


CNC machining center, CNC turning machine, semi-automatic milling machine, centrifuge, vertical turret milling machine, crusher, universal cylindrical grinding machine, horizontal shaft moment table surface grinding machine. 

Pipe rolling and fiber winding workshop:

Semi-automatic winding machine, rapier loom, automatic large sheet cutting machine, CNC winding machine, carbon horizontal winding machine, lead screw pipe reeling machine, automatic feeding cutting machine, yarn reversing machine. 

Self-lubricating workshop: 


ZD semi-automatic bending machine, semi-automatic grinding machine, punching machine, large tin furnace, chamfering machine, electric heating blower drying box, flanging machine, shearing machine, rolling round shaping integrated machine, vertical shaping machine, spiral vibration grinding machine, automatic double cylinder shaping machine. 

Material preparation workshop: open tilting press, single arm hydraulic press, hot press press, four-column hydraulic press.
Other equipment: overlay welding robot, vertical injection molding machine, plate vulcanizing machine, screening machine, plastic injection molding machine, press, vacuum filling box.

Our   Product


Our Product

Our products are widely used in various industries including Automobile, construction machinery, Agricultural machinery, Hydraulic equipment, Medical equipment, Textile machinery, Wind power industry, Steel Industry, Petrochemical industry, food and beverage industry and general machines.

Self-lubricating bearings

Including self-lubricating sheets and self-lubricating
bearing products, all products are self-developed and produced.

Solid Oil Bearings

Lianyi solid oil bearings inject polymer materials into the bearings in a special way, which is suitable for harsh environments such as high humidity, dust, water vapor, etc., and is maintenance-free for life.

Hydro Bearings

Including the military (marine) industry, as well as a variety of traditional industries can be applied a series of sliding bearing materials and alloy additive products

Products Application

 

Our products are widely used in various industries including Automobile, construction machinery, Agricultural machinery, Hydraulic equipment, Medical equipment, Textile machinery, Wind power industry, Steel Industry, Petrochemical industry, food and beverage industry and general machines.

Automobile

Construction Machinery 

Agricultural machinery

Hydraulic equipment,

 

Medical equipment

Textile machinery

Wind power industry

Food and beverage industry

Our   Service
Our service
 

 

 

Company Profile
Company Name: Shanghai Lianyi Bearing Tech Co., Ltd Type of company: Enterprise Units ()
Place of Origin: Beijing Company Size:
Registered Capital: Not filled Year of Registration: 2002
Data certification:        Enterprise data through authenticate
Industry: