Results 131 to 140 of about 1,374 (157)
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Vibration analysis of nylon gear box utilizing statistical method

Materials Today: Proceedings, 2020
Abstract Gears are important element in a variety of industrial applications such as medical and automotive sectors. In the medical field it is used in surgical instruments, Biopsy instrumentation and Dental implant products. In automotive sectors like Electrical Throttle Controls, Steering Systems, Instrument Clusters, Window and Door Latch systems.
C Poongodi
exaly   +2 more sources

Performance improvement method for Nylon 6 spur gears

Tribology International, 2009
Plastic gears made of Nylon 6 are especially susceptible to failure due to extreme heat accumulation in the single tooth mesh area, which results in damage that consequently shortens gear teeth life and causes transmission errors. In this experimental study, the teeth width of plastic spur gears made of Nylon 6 were modified and investigated.
Huseyin Imrek
exaly   +3 more sources

Effect of gear tooth fillet radius on the performance of injection molded Nylon 6/6 gears

Materials & Design, 2006
Abstract In metal gears the gear manufacturing process and cutting tool dimensions decide the gear tooth geometry and affect the gear performance. In polymer base gears, injection molding process permits development of gears with any tooth geometry economically.
Gnanamoorthy R, Selvaraj Senthilvelan
exaly   +2 more sources

Failure of a Nylon Driving Gear

2019
Abstract A nylon oil-lubricated driving gear showed pitting upon visual inspection. The pitting produced numerous surface microcracks. Further investigation (visual inspection and 37x images) supported the conclusion that failure occurred in association with large-scale fragmentation (frictional wear). No recommendations were made.
exaly   +2 more sources

A Study on Noise and Vibration of Plastic Gear for Power Transmission : Noise Generation Mechanism of Nylon Gear

The Proceedings of the Symposium on Motion and Power Transmission, 2004
Yasuhiko Ougiya
exaly   +2 more sources

Failure analysis of nylon gears made by additive manufacturing

Engineering Failure Analysis, 2022
Additive manufacturing enables fast manufacturing of polymer gears directly from a 3D model. Failed polymer gears can be replaced easily and quickly using many different materials. Mechanical and thermal characteristic of gears manufactured using additive manufacturing are mostly dependent on selected manufacturing parameters and material.
Muminovic, Adis J.   +5 more
openaire   +2 more sources

Gear Finishing With a Nylon Lap

Volume 4: 9th International Power Transmission and Gearing Conference, Parts A and B, 2003
The objective of this research is to develop a new lapping process which can efficiently make tooth flanks of hardened steel gears smooth as a mirror. The lapping is carried out using a nylon helical gear as a lap and a simple mechanical device. This paper first shows the lapping machine designed and manufactured by the authors and the procedure and ...
Masahiko Nakae   +4 more
openaire   +1 more source

Factors Affecting Fatigue Strength of Nylon Gears

Journal of Mechanical Design, 1981
The effects of some of the factors which influence fatigue strength of molybdenum disulphide (MoS2) filled cast nylon (type 6) gears such as diametral pitch, pressure angle, pitch line velocity, stress level, and lubrication were investigated. It was found that nylon gears, when properly designed and installed, are subject to minimal wear.
J. H. Chen, F. M. Juarbe, M. A. Hanley
openaire   +1 more source

Numerical investigation on meshing temperature of multicomponent nylon gears by incorporating viscoelasticity

Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 2023
This study concerns a numerical analysis of the meshing temperature for a multicomponent nylon gear by incorporating typical viscoelastic responses of polymers. Firstly, the generalized Maxwell model parameters were calibrated by the dynamic mechanical analysis to capture the viscoelasticity of polyamide 66.
Kaixing Li   +5 more
openaire   +1 more source

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