Great-load self-adaptive automatic speed control system capable of quickly shifting gears

An automatic variable speed, self-adaptive technology, applied to components with teeth, transmission control, belt/chain/gear, etc., can solve the problems of short service life, high production cost, poor meshing, etc.

Active Publication Date: 2021-06-04
重庆军工产业集团股份有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, due to the spline fit between the reverse gear coupling sleeve and the reverse gear shaft, the reverse gear coupling sleeve can only slide axially relative to the reverse gear shaft, while the reverse gear coupling sleeve The dual gear with the reverse gear is combined through a linear spline or an involute spline under the condition of high-speed rotation, so problems such as sticking, difficulty in gearing, and fragility often occur when entering reverse gear
Moreover, the existing friction clutches are mainly disk-type friction clutches including active friction discs and driven friction discs, which have poor wear resistance. The defect of short life cannot be

Method used

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  • Great-load self-adaptive automatic speed control system capable of quickly shifting gears
  • Great-load self-adaptive automatic speed control system capable of quickly shifting gears
  • Great-load self-adaptive automatic speed control system capable of quickly shifting gears

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Embodiment Construction

[0046] The present invention will be further described below in conjunction with embodiment and accompanying drawing.

[0047] Such as figure 1 As shown, a large-load adaptive automatic transmission system capable of quick shifting is characterized in that it includes a power input mechanism, a high-speed gear transmission mechanism, a low-speed gear transmission mechanism, a reverse gear transmission mechanism, and a transmission bridge for outputting power 1 and a transmission sensing mechanism for detecting the resistive moment that the transmission axle 1 bears.

[0048] See figure 1 , the power input mechanism includes a motor 28, a motor output shaft 27 driven by the motor 28 and a power input shaft 22 parallel to the motor output shaft 27, the motor output shaft 27 has a power output tooth 27a, and the power input The shaft 22 is sleeved with a first-stage power driving gear 23 which rotates synchronously with it, and the first-stage power driving gear 23 meshes with ...

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Abstract

The invention discloses a great-load self-adaptive automatic speed control system capable of quickly shifting gears. The great-load self-adaptive automatic speed control system capable of quickly shifting gears comprises a power input mechanism, a high-speed gear transmission mechanism, a low-speed gear transmission mechanism, a reverse gear transmission mechanism and a transmission axle for outputting power. By adopting the technical scheme, a reverse gear combination sleeve is connected with a reverse gear shaft through a pin roller, and the reverse gear combination sleeve can rotate for a certain angle relative to the reverse gear shaft and has a certain degree of freedom, so that the reverse gear combination sleeve can be combined with a reverse gear duplicate gear more easily, the gear shifting smoothness is greatly improved, the problems of clamping stagnation, difficulty in forward gear shifting, easiness in damage and the like easily occurring during forward and reverse gear shifting are solved; the ultra-large torque can be borne; and in addition, through a improvement of the multi-plate type friction clutch and a multi-row type overrun clutch, the self-adaptive automatic speed control system can bear a super great load, the reliability is improved, and the manufacturing cost is reduced.

Description

technical field [0001] The invention relates to the technical field of transmissions, in particular to a large-load self-adaptive automatic transmission system capable of quick gear shifting. Background technique [0002] Due to the limitations of its transmission structure, the existing electric vehicles are completely controlled by the driver based on experience when the driving resistance cannot be accurately known during driving. The actual driving conditions do not match, causing the motor to stall. Especially when the vehicle is under low-speed and heavy-load conditions such as starting, climbing, and headwind, the motor often needs to work at low efficiency, low speed, and high torque, which is likely to cause accidental damage to the motor and increase maintenance and replacement costs. It directly affects the cruising range of the battery. For models with high economic requirements such as electric logistics vehicles, the traditional variable speed transmission st...

Claims

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Application Information

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IPC IPC(8): F16H61/04F16H63/30F16H61/32
CPCF16H61/04F16H63/30F16H61/32
Inventor 张引航刘丽薛荣生周鲲陈俊杰吴世展张刘鑫王靖周莉陈同浩
Owner 重庆军工产业集团股份有限公司
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