A mathematical model for surface fatigue life of gear, pinion, or entire meshing gear train is given. The theory is based on a previous statistical approach for rolling-element bearings. Equations are presented which give the dynamic capacity of the gear set. The dynamic capacity is the transmitted tangential load which gives a 90 percent probability of survival of the gear set for one million pinion revolutions. The analytical results are compared with test data for a set of AISI 9310 spur gears operating at a maximum Hertz stress of 1.71 billion N/sq m and 10,000 rpm. The theoretical life predictions are shown to be good when material constants obtained from rolling-element bearing tests were used in the gear life model
This thesis presents a modern method to evaluate spur gears based on the transient elastohydrodynam...
Spur gear endurance tests and rolling-element surface fatigue tests are conducted to investigate EX-...
This paper presents the results of a method for evaluating spur gears based on the transient elastoh...
An analytical method for predicting surface fatigue life of gears was presented. General statistical...
A mathematical model is developed for surface fatigue life of helical gears. The expected fatigue li...
How dynamic load affects the surface pitting fatigue life of external spur gears was predicted by us...
A concise mathematical model is developed for surface fatigue life of low-contact-ratio spur gears. ...
Life tests were conducted at three different loads with three groups of 8.9 cm pitch diameter spur g...
A mathematical model for the pitting fatigue life of pinion and gear or entire meshing train is need...
In the post-World War II era, the major technology drivers for improving the life, reliability, and ...
A reliability model is presented for planetary gear trains in which the ring gear is fixed, the Sun ...
Gear working surfaces are subjected to repeated rolling and sliding contacts, and often designs requ...
AbstractOptimal gear design consists of determining its proper size, geometry, material, manufacturi...
This thesis presents a modern method to evaluate spur gears based on the transient elastohydrodynam...
This thesis presents a modern method to evaluate spur gears based on the transient elastohydrodynam...
This thesis presents a modern method to evaluate spur gears based on the transient elastohydrodynam...
Spur gear endurance tests and rolling-element surface fatigue tests are conducted to investigate EX-...
This paper presents the results of a method for evaluating spur gears based on the transient elastoh...
An analytical method for predicting surface fatigue life of gears was presented. General statistical...
A mathematical model is developed for surface fatigue life of helical gears. The expected fatigue li...
How dynamic load affects the surface pitting fatigue life of external spur gears was predicted by us...
A concise mathematical model is developed for surface fatigue life of low-contact-ratio spur gears. ...
Life tests were conducted at three different loads with three groups of 8.9 cm pitch diameter spur g...
A mathematical model for the pitting fatigue life of pinion and gear or entire meshing train is need...
In the post-World War II era, the major technology drivers for improving the life, reliability, and ...
A reliability model is presented for planetary gear trains in which the ring gear is fixed, the Sun ...
Gear working surfaces are subjected to repeated rolling and sliding contacts, and often designs requ...
AbstractOptimal gear design consists of determining its proper size, geometry, material, manufacturi...
This thesis presents a modern method to evaluate spur gears based on the transient elastohydrodynam...
This thesis presents a modern method to evaluate spur gears based on the transient elastohydrodynam...
This thesis presents a modern method to evaluate spur gears based on the transient elastohydrodynam...
Spur gear endurance tests and rolling-element surface fatigue tests are conducted to investigate EX-...
This paper presents the results of a method for evaluating spur gears based on the transient elastoh...