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Automobile ignition device with lock plunger-lock cylinder structure based on torsional spring torque

An ignition device and torsion spring technology, which can be applied to other devices, engine ignition, spark ignition controllers, etc., can solve problems such as difficulty in starting the engine, burden on the car battery, engine damage, etc., and achieve low production costs, reduce burdens, and protect The effect of the engine

Active Publication Date: 2018-06-05
浙江品超汽车零部件有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

If you turn it directly from the Lock gear to the On gear, the whole car will be powered on instantly, which will put a burden on the car battery.
If even the On gear is omitted and the car is started by turning it to the bottom, it will not only damage the battery and shorten its life, but also damage the engine, which may cause difficulty in starting the engine and promote carbon deposition.
[0004] At present, the correct start of the car depends on the driver's conscious execution, and there is no device that can force the driver to turn the key correctly

Method used

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  • Automobile ignition device with lock plunger-lock cylinder structure based on torsional spring torque
  • Automobile ignition device with lock plunger-lock cylinder structure based on torsional spring torque
  • Automobile ignition device with lock plunger-lock cylinder structure based on torsional spring torque

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specific Embodiment 1

[0035] This embodiment is an embodiment of an automobile ignition device based on a torsion spring torque-based locking cylinder structure of the present invention.

[0036] A kind of automobile ignition device of the lock bolt lock cylinder structure based on torsion spring torque of the present embodiment, such as figure 1 As shown, the automobile ignition device includes a photoelectric mechanism 1, a motion mechanism 2 and a lift damping mechanism 3;

[0037] The photoelectric mechanism 1 is coaxially arranged with a laser 11, a lens 12, an annular light-transmitting sheet 13 and a photoelectric converter 14 in sequence along the light propagation direction; the laser 11 and the photoelectric converter 14 are respectively located on the object side and the image side of the lens 12; The annular light-transmitting sheet 13 moves up and down with the carrying end 23, including a coaxially arranged transparent glass sheet 131 and a non-transparent light-shielding sheet 132, s...

specific Embodiment 2

[0050] This embodiment is an embodiment of an automobile ignition method.

[0051] An automobile ignition method in this embodiment is realized based on the automobile ignition device with the torsion spring torque-based lock bolt and cylinder structure described in the first embodiment.

[0052] The automobile ignition method of the present embodiment, comprises the steps:

[0053] Step a, respectively setting the light intensity threshold of the photoelectric converter 14 and the damping time of the lift cylinder 31 on the controller 15, the thresholds include the Lock light intensity threshold, the Acc light intensity threshold, the On light intensity threshold and the Start light intensity threshold, The damping time includes Acc damping time and On damping time; the damping size is set by screwing the driving bolt 325;

[0054] Step b, insert the key into the keyhole of the lock bolt 211, rotate the lock bolt 211, pass through the driving gear, the transmission mechanism...

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PUM

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Abstract

The invention discloses an automobile ignition device with a lock plunger-lock cylinder structure based on torsional spring torque, and belongs to the technical field of automobiles, electronics, precision machinery, industrial production, manufacture and the like. The automobile ignition device comprises a photoelectric mechanism, a motion mechanism and a lifting and damping mechanism. A laser, alens, an annular light transmitting piece and a photoelectric converter are arranged on the photoelectric mechanism along the light ray transmission direction coaxially and sequentially. The motion mechanism comprises a lock cylinder, a transmission mechanism, a bearing end and a fixing end. Based on the torsional spring torque, the lock cylinder structure jumps from the Start end to the On end automatically. The lifting and damping mechanism is arranged below the bearing end, and sequentially comprises a lifting air cylinder and a damping adjuster from the top to bottom. The automobile ignition device has the advantages that a driver is forced to pause at the Acc gear and the On gear temporality when starting a car, so that burdens of an accumulator are reduced, service life of the accumulator is prolonged, an engine is protected, carbon deposition is reduced, and the car is protected.

Description

technical field [0001] The invention discloses an automobile ignition device based on a torsion spring torque lock bolt lock cylinder structure and belongs to the technical fields of automobiles, electronics, precision machinery, industrial production, manufacturing and the like. Background technique [0002] Friends who often drive know that for a key-start car, there are four gears on the keyhole, namely Lock, Acc, On and Strat. When starting a car, many people are used to inserting the key and turning it to the bottom to ignite the ignition directly. On the surface, this operation looks clean and saves time, but in fact it destroys the car. [0003] The correct way to start the car should be twisting from one gear to another, and the ignition should be started step by step. After inserting the key into the keyhole, it should stay for about 1-2 seconds after turning from the Lock position to the Acc position. At this time, you can hear the sound of the electrical equipmen...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F02N11/00F02N11/10F02P3/00B60R16/00
CPCB60R16/005F02N11/00F02N11/10F02P3/00
Inventor 不公告发明人
Owner 浙江品超汽车零部件有限公司
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