Composite gear housing

From Wikipedia, the free encyclopedia

Composite gear housing refers to the use of composite materials to enclose the components of motor transmissions. Fiber reinforced composite materials are used primarily for weight reduction. Carbon fiber reinforced plastic material is commonly used in the aerospace and automotive industries.

The main problems of using fiber-reinforced plastic for gear housings are low thermal conductivity and low hardness of the composite material. Because of the low hardness, the composite gear housing requires numerous metal inserts laminated into the composite exterior or installed with adhesive in the prefabricated composite housing. High strength epoxy adhesives are used in fabrication of carbon fiber composite drive shafts for cars.[1]

The metal inserts provide support for bearings, shafts, gears and other metal components of the gearbox. The composite gear housing does not remove heat as efficiently as an aluminum or magnesium housing. Composite gear housings require more expensive and reliable cooling systems. However, composite plastic material is widely used on low-power applications such as gear motors for electromechanical actuators. Lightly loaded rotary gear actuators can be completely made of composite plastic material. Such electromechanical rotary actuators are installed, for example, on power windows of automobiles. Higher loaded actuators can contain metallic gears inside plastic composite housing for reduction of cost and corrosion resistance.

History

In 1969 General Motors investigated using composite transmission cases to reduce manufacturing cost.[2]

John Barnard tried to incorporate this material in a gear housing for the Ferrari F1 car in 1994, but instead only mounted the metal gear case on a carbon fiber composite support. Since then several F1 teams including both Honda (née B.A.R) and McLaren have raced 'Carbon' cases with substantial composite content.

In 2004 the US Department of Defense decided to finance development of a composite gear housing for a main rotor helicopter planetary gear box. Boeing and Sikorsky currently conduct the development of helicopter composite gear housing.[3]

Patents and Methods

Gear Mechanic Corporation has developed controlled bonding methods and mathematical simulation methods for three-dimensional filament wound composite structures used in mechanical systems.[4] The method provides optimized fiber placement and increased strength of bonding between metal inserts and fiber reinforced plastics for metal/composite power transmission components in different applications.

Snap-on Incorporated has patented a concept of a composite ring gear,[5] which incorporates a metal gear insert bonded into a fiber reinforced composite plastic housing. Invented by Snap-on Incorporated, composite ring gear has been already successfully applied to mechanical engineering area. More specifically Snap-on is producing a gear mechanical system commonly known as ratchet wrench handle, which incorporates Snap-on composite ring gear as the key element of the system.

Internationally patented Composite Structural Members provides slightly different engineering solution for bonding of structural inserts into composite plastic material. If Snap-on invention utilizes oriented and randomly oriented reinforced fibers for constructing the ring gear housing, the Composite Structural Members patent offers a solution for using filament winding material.[6]

Aerospace

See also

References

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