Structure and method for reducing equivalent unsprung weight of wheel-rim electrically-driven system of single trailing arm type suspension

An electric drive system, single trailing arm technology, applied in the direction of suspension, elastic suspension, control device, etc., can solve the problems of different deviations and deviations, improve the vibration frequency, reduce shock and vibration, and improve driving smoothness sexual effect

Active Publication Date: 2011-06-15
TONGJI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

But in fact, there is a deviation, and depending on the form of the suspension, the deviation will be different

Method used

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  • Structure and method for reducing equivalent unsprung weight of wheel-rim electrically-driven system of single trailing arm type suspension
  • Structure and method for reducing equivalent unsprung weight of wheel-rim electrically-driven system of single trailing arm type suspension
  • Structure and method for reducing equivalent unsprung weight of wheel-rim electrically-driven system of single trailing arm type suspension

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Embodiment Construction

[0051] Please refer to the accompanying drawings for a further description of the present invention.

[0052] Such as figure 1As shown, the present invention provides a structure for reducing the equivalent unsprung mass of the single trailing arm suspension wheel side electric drive system. The single trailing arm suspension wheel side electric drive system includes a vehicle frame 1, an elastic rubber hinge 2, Single trailing arm suspension swing arm 3, reduction box body 4, pinion gear 5, brake caliper 6, brake disc 7, hub bearing 8, half shaft 9, hub 10, rim 11, motor 12, large gear 13, half shaft Shaft sleeve 14, wherein elastic rubber hinge 2, single trailing arm suspension swing arm 3, reduction box body 4, half shaft sleeve 14 and motor 12 are fixedly installed together, wheel hub 10, rim 11, wheel hub bearing 8, half shaft 9. The half shaft sleeve 14 and the brake disc 7 are parts concentric with the wheel, and the reduction box 4, the pinion 5, the brake caliper 6, ...

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Abstract

The invention discloses a structure and method for reducing the equivalent unsprung weight of a wheel electrically-driven system of a single trailing arm type suspension, which is characterized in that an elastic rubber hinge is supported on a frame, one end of a swing arm of the single trailing arm type suspension is connected with the elastic rubber hinge, and the other end of the swing arm is connected with a reducer casing; the reducer casing is connected with a sleeve of a half axle; a motor is fixedly arranged on the reducer casing, the power output end of the motor is connected with a small gear, then the small gear is meshed with the large gear, and the large gear is connected with the sleeve of the half axle; and after the gear reducing is performed, the power is outputted to a rim by the half axle so as to drive wheels. The equivalent unsprung weight is reduced by reducing the distance between the mass centre of non-concentric parts of a wheel and a central swing axis of the single trailing arm type suspension. The structure and method disclosed by the invention have the advantages of increasing the vibration frequencies of wheels, reducing the resonance, reducing the impact and vibration from road surfaces, and improving the running smoothness of vehicles.

Description

technical field [0001] The invention relates to the field of electric vehicle chassis and transmission, in particular to a structure and method for reducing the equivalent unsprung mass of a single trailing arm suspension wheel side electric drive system. Background technique [0002] The size of the car's unsprung mass (unsprung mass) affects the driving safety and comfort of the car. At present, the wheel-side electric drive system represented by electric wheels has become a research hotspot due to its simple drive system and vehicle structure, high transmission efficiency, and independent control of the torque of each drive wheel, which is conducive to improving driving performance under harsh road conditions. . But because the motor is installed in the drive wheel, the unsprung mass of the car will be increased. [0003] In the past, when calculating the unsprung mass of a car, the mass of all parts in the wheel was directly regarded as the unsprung mass. But in f...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B60G3/02B60K17/28
Inventor 陈辛波钟再敏唐峰王心坚卢志坚沈雨霏陆承超乔良
Owner TONGJI UNIV
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