Aerodynamic racing car unit with high lift-drag ratio variable tail wing

An aerodynamic, high lift-to-drag ratio technology used in aerodynamic research

Active Publication Date: 2017-05-31
SOUTH CHINA UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003]The purpose of the present invention is to solve the problem of how to reduce air resistance while the aerodynamic package provides considerable downforce to the racing car, taking into account the parameters of the whole vehicle and the overall Car simulation, providing a racing aerodynamic package with high lift-to-drag ratio and variable tail

Method used

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  • Aerodynamic racing car unit with high lift-drag ratio variable tail wing
  • Aerodynamic racing car unit with high lift-drag ratio variable tail wing
  • Aerodynamic racing car unit with high lift-drag ratio variable tail wing

Examples

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Embodiment Construction

[0025] The purpose of the present invention will be further described in detail through specific examples below, and the examples cannot be repeated here one by one, but the implementation of the present invention is not therefore limited to the following examples.

[0026] Such as Figure 1 to Figure 5 As shown, a racing car aerodynamic package with a high lift-to-drag ratio variable empennage includes a front wing, an empennage and a variable empennage system, the front wing includes a front wing main wing 8, two outer flaps 9 symmetrically arranged, Two sets of inner flap groups located symmetrically inside the two outer flaps 9, each set of inner flap groups include first inner flaps 10 and second inner flaps 11 arranged front and back and connected to the first inner flaps 10 and the second end plate 13 and the third end plate 14 at the two ends of the second inner flap 11, the outer flap 9 and the second inner flap 11 are provided with a Gurney flap 6 on the rear edge, a...

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Abstract

The invention discloses an aerodynamic racing car unit with a high lift-drag ratio variable tail wing. The aerodynamic racing car unit comprises a front wing, a tail wing and a variable tail wing system, wherein the front wing comprises a front wing main wing, two symmetrical external flaps and two sets of internal flap units; the internal flap units are symmetrically positioned on the inner sides of the two external flaps; the tail wing comprises two large end plates, a tail wing main wing, a first reducing wing, a second reducing wing, a first flap and a second flap; the tail wing main wing is fixedly arranged between the two large end plates; the first flap and the second flap are movably arranged between the two large end plates; the tail wing main wing is positioned at the foremost end; the first flap is positioned at the tail end of the wingtip of the tail wing main wing; the second flap and the first flap are arranged at the tail end of the wingtip of the first flap and have a small part of overlap and clearance; the variable tail wing system is in drive connection with the first flap and the second flap. The lift force, drag force and airflow are fully and comprehensively considered, and the aerodynamic racing car unit is an aerodynamic racing car unit for undergraduate formula cars with high negative lift and low drag variable tail wings.

Description

technical field [0001] The invention belongs to the field of aerodynamic research, and in particular relates to an aerodynamic kit for a racing car with a high lift-to-drag ratio variable tail, which meets the requirements of a racing car with high negative lift and low drag performance. Background technique [0002] As the speed of the car moves faster and faster, aerodynamics has gradually become an important design element from being ignored at the beginning. The power brought by the air has brought dramatic changes to the performance of the car at once. All racing cars will be designed to introduce aerodynamic results. For the Formula Student racing competition, in order to improve the performance and shorten the lap time, under the condition of a certain power output, it is necessary to consider increasing the speed when passing through the curve. And when the tire formula is the same, its adhesion coefficient with the ground is constant, then the magnitude of the late...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B62D35/00
CPCB62D35/007Y02T10/82
Inventor 张文龙李巍华李伟健郑晓张华才毛楚文陈俊源
Owner SOUTH CHINA UNIV OF TECH
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