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Home » Topics » Design » Profile Modification

Profile Modification
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Sizing of Profile Modifications for Asymmetric Gears

September 1, 2020
Lately, the use of asymmetric gears in automotive and other applications is an upcoming trend, though few applications are known to have asymmetric teeth. However, an increased interest in asymmetric gears can be seen. Many companies have started to design and test such applications.
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Influence of Thermal Distortion on Spur Gear Tooth Contact

September 1, 2019
In this paper the effects of thermally induced geometry distortions on load distribution and transmission error have been analyzed.
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Watching the Chips Fly

July 16, 2019
Charles D. Schultz
No Comments
It was a real treat to spend a day at a gear shop this week. After all these years, I still enjoy watching a round blank get transformed into a gea...
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Six Degrees of Gears ...

March 19, 2019
Charles D. Schultz
No Comments
Our next “origin story” author is another consulting en...
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Flank Profile Modification Optimization for Spur Asymmetric Gears

January 1, 2019
In many gear transmissions, tooth load on one flank is significantly higher and is applied for longer periods of time than on the opposite one; an asymmetric tooth shape should reflect this functional difference. The advantages of these gears allow us to improve the performance of the primary drive tooth flanks at the expense of the opposite coast flanks, which are unloaded or lightly loaded during a relatively short work period by drive flank contact and bending stress reduction. This article is about the microgeometry optimization of the spur asymmetric gears’ tooth flank profile based on the tooth bending and contact deflections.
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Further Modifications

May 22, 2018
Charles D. Schultz
No Comments
You might be thinking this conversation would logically move to other tooth modifications. Gear Technology has and will c...
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Efficient Hard Finishing of Asymmetric Tooth Profiles and Topological Modifications by Generating Grinding

August 1, 2017
In order to improve load-carrying capacity and noise behavior, gears usually have profile and lead modifications. Furthermore, in gears where a specified tooth-flank load application direction (for drive and coast flanks) is a design enhancement, or even compulsory, the asymmetric tooth profile is a further solution. Nowadays, many gears need to be hard finished. Continuous generating grinding offers a very high process efficiency, but is this process able to grind all modifications, especially asymmetric gears? Yes, it is!
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FE-Based Approaches for Tip Relief Design

August 1, 2017
The deformation of the gear teeth due to load conditions may cause premature tooth meshing. This irregular tooth contact causes increased stress on the tooth flank. These adverse effects can be avoided by using defined flank modifications, designed by means of FE-based tooth contact analysis.
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Why Are We Here?

May 23, 2017
Charles D. Schultz
No Comments
Back when getting ISO 9000 certified was “the thing,” companies were expected to have a mission statement. I retroactively confess to not being a “...
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Optimal Modifications on Helical Gears for Good Load Distribution and Minimal Wear

June 1, 2015
Helical gear teeth are affected by cratering wear — particularly in the regions of low oil film thicknesses, high flank pressures and high sliding speeds. The greatest wear occurs on the pinion — in the area of negative specific sliding. Here the tooth tip radius of the driven gear makes contact with the flank of the driving gear with maximum sliding speed and pressure.
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