CN107143646A - The horizontal pure electronic choosing of AMT control systems, shifter - Google Patents

The horizontal pure electronic choosing of AMT control systems, shifter Download PDF

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Publication number
CN107143646A
CN107143646A CN201710470800.3A CN201710470800A CN107143646A CN 107143646 A CN107143646 A CN 107143646A CN 201710470800 A CN201710470800 A CN 201710470800A CN 107143646 A CN107143646 A CN 107143646A
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CN
China
Prior art keywords
shifter
gear
gear shift
arm
axle
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201710470800.3A
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Chinese (zh)
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CN107143646B (en
Inventor
刘颖
席军强
胡宇辉
刘贤强
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North Link Motor (changshu) Vehicle Technology Co Ltd
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North Link Motor (changshu) Vehicle Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN201710470800.3A priority Critical patent/CN107143646B/en
Publication of CN107143646A publication Critical patent/CN107143646A/en
Priority to PCT/CN2017/113892 priority patent/WO2018233223A1/en
Application granted granted Critical
Publication of CN107143646B publication Critical patent/CN107143646B/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H59/00Control inputs to control units of change-speed-, or reversing-gearings for conveying rotary motion
    • F16H59/02Selector apparatus
    • F16H59/0204Selector apparatus for automatic transmissions with means for range selection and manual shifting, e.g. range selector with tiptronic
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H61/00Control functions within control units of change-speed- or reversing-gearings for conveying rotary motion ; Control of exclusively fluid gearing, friction gearing, gearings with endless flexible members or other particular types of gearing
    • F16H61/02Control functions within control units of change-speed- or reversing-gearings for conveying rotary motion ; Control of exclusively fluid gearing, friction gearing, gearings with endless flexible members or other particular types of gearing characterised by the signals used
    • F16H61/0202Control functions within control units of change-speed- or reversing-gearings for conveying rotary motion ; Control of exclusively fluid gearing, friction gearing, gearings with endless flexible members or other particular types of gearing characterised by the signals used the signals being electric
    • F16H61/0204Control functions within control units of change-speed- or reversing-gearings for conveying rotary motion ; Control of exclusively fluid gearing, friction gearing, gearings with endless flexible members or other particular types of gearing characterised by the signals used the signals being electric for gearshift control, e.g. control functions for performing shifting or generation of shift signal
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H61/00Control functions within control units of change-speed- or reversing-gearings for conveying rotary motion ; Control of exclusively fluid gearing, friction gearing, gearings with endless flexible members or other particular types of gearing
    • F16H61/26Generation or transmission of movements for final actuating mechanisms
    • F16H61/28Generation or transmission of movements for final actuating mechanisms with at least one movement of the final actuating mechanism being caused by a non-mechanical force, e.g. power-assisted
    • F16H61/32Electric motors actuators or related electrical control means therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H61/00Control functions within control units of change-speed- or reversing-gearings for conveying rotary motion ; Control of exclusively fluid gearing, friction gearing, gearings with endless flexible members or other particular types of gearing
    • F16H61/26Generation or transmission of movements for final actuating mechanisms
    • F16H61/28Generation or transmission of movements for final actuating mechanisms with at least one movement of the final actuating mechanism being caused by a non-mechanical force, e.g. power-assisted
    • F16H61/32Electric motors actuators or related electrical control means therefor
    • F16H2061/323Electric motors actuators or related electrical control means therefor for power assistance, i.e. servos with follow up action

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Gear-Shifting Mechanisms (AREA)

Abstract

The invention discloses a kind of horizontal pure electronic choosing of AMT control systems, shifter, including gear selection mechanism, shifter, the gear selection mechanism axis is vertical with shifter axis, shifter is located at the top and 4S510 synchronous type speed changer axis side of gear selection mechanism, gear selection mechanism is located above the synchronous type speed changer faying faces of 4S510 and the synchronous type speed changer axis opposite sides of 4S510, gear selection mechanism and shifter are relatively fixed, first gear shift arm, second gear shift arm is located at gear selection mechanism axial location, first gear shift arm is engaged between two parties with the second gear shift arm tooth.The present invention realizes automatic gear selecting, the function of gear shift for manipulating control synchronizer machinery, improve choosing, the ride comfort of gear shift, mobility and reliability, mitigate the labor intensity of driver's driver behavior Vehicular shift, automatic capability is strong, with wide market prospects and use value.

Description

The horizontal pure electronic choosing of AMT control systems, shifter
Technical field
Patent of the present invention is related to the horizontal pure electronic choosing of AMT control systems, shifter --- executing agency, and in particular to The horizontal pure electronic choosing of AMT control systems, shifter.
Background technology
4S510 synchronization type speed changers are the mechanical transmissions of a synchronizer shift, there is four shelves.Three-phase asynchronous electric The synchronous type speed changers of machine direct drive 4S510, give 4S510 synchronous type speed changer input powers, by gear shift, make 4S510 Synchronous type speed changer exports the kinetic energy of different rotating speeds.It suitable for 6~8m integral new-energy passengers, light-duty logistic car, small-sized army The use of product and civilian goods vehicle.In the synchronous type mission cases of existing 4S510, how to manipulate control realize synchronizer choosing, The function of gear shift, on the basis of traditional mechanical gear box, is selected, gear shift form automatically using AMT control systems, is additionally arranged numeral Collection and processing, electric-control system, realize horizontal pure electronic automatic choosing, shifter --- the function of executing agency, improve Choosing, the ride comfort of gear shift, mobility and reliability, mitigate the labor intensity of driver's driver behavior Vehicular shift, automate energy Power is strong, and AMT is adapted to the national conditions of China, is the inevitable direction of the development of new energy vehicle, with wide market prospects and uses Value.
The content of the invention
1st, goal of the invention.
The present invention realizes the pure electronic automatic carry of the AMT control systems of the synchronous type speed changers (4 shelves) of 4S510, changed The operating mechanism of shelves, is integrated, motor-driven quick respond with speed changer, is adapted to choosing, the gear shift function on different road surfaces.Carry The automation intensity of high new energy vehicle, mitigation driver's driver behavior labor intensity.
2nd, the technical solution adopted in the present invention.
A kind of horizontal pure electronic choosing of AMT control systems proposed by the present invention, shifter, including gear selection mechanism, gear shift Mechanism, the axis of gear selection mechanism 1 is vertical with shifter axis, and shifter is same positioned at the top of gear selection mechanism and 4S510 Type speed changer axis side is walked, gear selection mechanism is located above the synchronous type speed changer faying faces of 4S510 and 4S510 synchronizers Type speed changer axis opposite side, gear selection mechanism and shifter are relatively fixed, and the first gear shift arm, the second gear shift arm are located at gear selecting Mechanism axial location, the first gear shift arm is engaged between two parties with the second gear shift arm tooth.
Further in embodiment, concentric holes pass through the first bushing and second respectively on the lower house of gear selection mechanism Bushing is fixed;Axle passes through outer end the first bushing aperture of lower house, is used as the strong point of axle first;First gear shift arm through on axle, Axle is then passed through the second bushing aperture on lower house, is used as the strong point of axle second, the positioning of the positioning hole and axle of the first gear shift arm Hole is positioned with bearing pin, bearing pin two ends setting back-up ring..
Further in embodiment, the reducer output shaft with decelerator motor of gear selection mechanism is inserted into lower casing In vivo and fixed, the output shaft that the output shaft of decelerator exposes in lower house body penetrates the first adjusting pad, the second adjustment successively Pad, shift selection arm, the flat bulb inserting of shift selection arm are arrived in the fluting of lower square shaft one end.
Further in embodiment, small axle is through the 3rd bush hole on lower house, then penetrates adjusting pad successively Wiper arm, adjusting pad, small axle penetrate the shift selection arm other end again.Small axle other end lower end hole face is provided with sealing.
Further in embodiment, the bulb of wiper arm is through the elongated fluting above lower house, and swing arm insertion is small On axle, positioned with jackscrew, small axle one end is inserted through sensor base hole, setting back-up ring positioning, this perforate conduct of sensor base In first strong point of small axle, the perforate of small axle other end insertion lower house, as the small strong point of axle second, sensor base is solid It is scheduled on lower house, the hole on first sensor is inserted into the small axle that sensor base is exposed above.
Further in embodiment, the reducer output shaft with decelerator motor of shifter is inserted into upper casing In body aperture and fixed, the output shaft that the output shaft of decelerator exposes in upper shell body penetrates the first adjusting pad, second successively Adjusting pad, gear shift arm, small axle are passed through in upper casing body aperture, and the 3rd adjusting pad, the 4th adjusting pad are penetrated successively, gear shift arm is inserted into In another stomidium, as the small strong point of axle first, the positioning hole of the positioning hole of gear shift arm and small axle is positioned with bearing pin, bearing pin two ends Back-up ring is set, is exposed in the small axle other end insertion second sensor hole outside upper shell, is used as the small strong point of axle second.
Further in embodiment, gear selection mechanism and shifter combination assembling one group of screw of setting and 2 it is fixed Position pin, horizontal pure electronic choosing, shifter type transmission interface synchronous with 4S510 set one group of fixing bolt and fixed after combination The first sealing gasket is set between position bolt, its faying face.
Further in embodiment, in addition to one group of screw is through sealing gasket, lid, that bushing is fixed on lower casing is external On end face.
Further in embodiment, inspection socket sets the 4th sealing gasket, cover plate and one above described upper shell Group screw sealing;Its upper shell two ends setting technique screw plug, vent valve.
3rd, the technique effect produced by the present invention.
(1) invention uses the pure electronic choosings of AMT, shift control controlling organization --- executing agency, there is 4 shelves, Type speed changer synchronous with 4S510 matches, and is a kind of new horizontal pure electronic choosing, shifter, adapts to vehicle requirement.
(2) present invention can carry out bit selecting and gear shift function by the logic control of TCU ECUs according to different road conditions, Speed changer is set to export different rotating speeds, to meet the traveling demand of vehicle.
(3) the pure electronic choosings of AMT of the present invention, shift control controlling organization automatic capability are strong, and shift time is short, reliability Height, mitigates driver's labor intensity, can be applied to the car, logistic car, small-sized dual-use vehicle of new energy.
Brief description of the drawings
Fig. 1, Fig. 2 are the overall structure graphics of the present invention, and Fig. 3 is overall structure top view, and Fig. 4 is Fig. 3 A-A section views Figure, Fig. 5 is the top view of gear selection mechanism, and Fig. 6 is Fig. 5 B-B sectional views, and Fig. 7 is shifter side view, and Fig. 8 is Fig. 7 A Direction view, Fig. 9 is Fig. 8 C-C sectional views.
Description of reference numerals:
Gear selection mechanism 1, shifter 2, decelerator 3, lower house 4, the first sealing gasket 5, the second sealing gasket 6, cover plate 7, biography Sensor mounting seat 8, first sensor 9, second sensor 10, upper shell 11, the 3rd sealing gasket 12, cover plate 13, decelerator 14, Shield 15, gear shifting drive motor 16, alignment pin 17, bolt 18, fixing bolt 19, gear selecting motor 20, shield 21, spiral shell Nail 22;
First adjusting pad 3-1, the second adjusting pad 3-2, shift selection arm 3-3, bolt 3-4, adjusting pad 3-5, bolt 3-6, spring washer 3-7, small axle 3-8, adjusting pad 3-9, wiper arm 3-10;
Axle 4-1, the first gear shift arm 4-2, back-up ring 4-3, bearing pin 4-4, lid 4-7, sealing gasket 4-8, the first bushing 4-9, second Bushing 4-10, the 3rd bushing 4-13;
On swing arm 8-1, small axle 8-2, jackscrew 8-3, back-up ring 8-4;
Technique screw plug 11-1, the 4th sealing gasket 11-2, cover plate 11-3, vent valve 11-4;
First adjusting pad 14-1, the second adjusting pad 14-2, gear shift arm 14-3, bearing pin 14-4, back-up ring 14-5, the 3rd adjusting pad 14-6, axle 14-7, the 4th adjusting pad 14-8.
Embodiment
As Figure 1-3, it is of the invention to include horizontal pure electronic choosing, shifter assembly, the first sealing gasket 5, positioning spiral shell Bolt 17;The horizontal pure electronic choosing of the present invention, shifter assembly include gear selection mechanism 1 and shifter 2, and gear selection mechanism also includes Gear selecting motor 20, decelerator 3, shield 21, lower house 4, the second sealing gasket 6, cover plate 7, sensor mounting seat 8, first Sensor 9, shifter 2 includes gear shifting drive motor 16, decelerator 14, shield 15, second sensor 10, upper shell 11, the Three sealing gaskets 12, cover plate 13, the arranged direction of gear selection mechanism 1 are vertical with the arranged direction of shifter 2.
Embodiment 1
As illustrated in figures 3-6, gear selection mechanism 1 described in present embodiment also includes gear selecting motor 20, decelerator 3, shield 21st, lower house 4, the second sealing gasket 6, cover plate 7, sensor mounting seat 8, first sensor 9, the holes of φ 26 on lower house 4 The first bushing 4-9 and the second bushing 4-10 are pressed into successively in 2 holes of φ 31 on the 3rd bushing 4-13 of interior press-in, lower house 4, the Two mono- group of bushing 4-10 screws are fixed on lower house 4, and axle 4-1 passes through the holes of outer end φ 25 of the first bushing 4-9 on lower house 4, As first strong point, the first gear shift arm 4-2 is through on axle 4-1, and axle 4-1 is then passed through the bushing of the other end second on lower house 4 The 4-10 holes of φ 25, as second strong point, the first gear shift arm 4-2 positioning hole is fixed with bearing pin 4-4 with axle 4-1 positioning hole Position, bearing pin 4-4 two ends setting back-up ring 4-3, with one group of screw through sealing gasket 4-8, lid 4-7 be fixed on the first bushing 4-9 and under On the body of housing 4, the output shaft inserting decelerator 3 of the motor 20 of gear selection mechanism 1 sets 2 screws, its motor 20 On electrical connector shield 21 protect, the output shaft of decelerator 3 is inserted on lower house 4 in the holes of φ 54, solid with one group of screw It is fixed, the first adjusting pad 3-1, the second adjusting pad 3-2, shift selection arm 3-3 are sequentially inserted on the output shaft of decelerator 3, shift selection arm 3-3's In the fluting of 16 sizes of flat bulb insertion axle 4-1 one end, small axle 3-8 through the 3rd bushing 4-13 on lower house 4, then according to The secondary adjusting pad 3-9, wiper arm 3-10, adjusting pad 3-5, small axle 3-8 of putting penetrates the shift selection arm 3-3 other ends, wherein shift selection arm 3-3 again Fixed with small axle 3-8 positioning with bolt 3-4 and double nut, wiper arm 3-10 bulb passes through the fluting of lower house 4, wiper arm 3- 10 are fixed with small axle 3-8 positioning with bolt 3-6, spring washer 3-7, and sealing gasket 4-11, lid 4-12 are fixed on down with one group of screw On housing 4, swing arm 8-1 is inserted on small axle 8-2, is positioned with jackscrew 8-3, and small axle 8-2 one end is inserted through after sensor base 8, is set Back-up ring 8-4 is positioned, and this perforate of sensor base 8 is used as small axle 8-2 first strong point, small axle 8-2 other ends insertion lower casing In the perforate of body 4, as second strong point, sensor base 8 is fixed on lower house 4 with one group of screw, first sensor 9 2 screws of setting are fixed in sensor base 8, and the end face process Installation hole of lower house 4 is close by cover plate 7 and second with one group of screw The fixing seal of packing 6.
This design by bit selecting electrical power work in the case of, gear selection mechanism realize automatically continuously, interruption, selectivity Bit selecting function.
Embodiment 2
As shown in Fig. 4,7~9, shifter 2 described in present embodiment includes gear shifting drive motor 16, decelerator 14, shield Cover 15, second sensor 10, upper shell 11, the 3rd sealing gasket 12, cover plate 13, the output shaft of the motor 16 of shifter are inserted Decelerator 14 is filled, the electrical connector shield 15 set on 2 screws, its motor 16 is protected, the output shaft of decelerator 14 It is inserted on upper shell 11 in the holes of φ 54, one group of screw of setting is fixed, and the first adjusting pad is sequentially inserted on the output shaft of decelerator 3 14-1, the second adjusting pad 14-2, the second gear shift arm 14-3, small axle 14-7 put the 3rd successively through the holes of φ 18 on upper shell 11 Adjusting pad 14-6, the 4th adjusting pad 14-8, are inserted into the second gear shift arm 14-3, and as the small strong points of axle 14-7 first, second changes Shelves arm 14-3 positioning hole is positioned with small axle 14-7 positioning hole with bearing pin 14-4, bearing pin 14-4 two ends setting back-up ring 14-5, small The axle 14-7 other ends insert second sensor 10, and 2 screws of setting are fixed on upper shell 11, supported as small axle 14-7 second Point, the inspection hole of the top of upper shell 11 sets the 4th sealing gasket 11-2, lid 11-3 sealings and one group of screw and fixed, 11 liang of upper shell Side sets technique screw plug 11-1, vent valve 11-4 respectively.
In the case that this design is worked by gear shifting motor, shifter realizes automatically continuous gear shift, interruption gear shift, choosing The gear shift function of selecting property.
Embodiment 3
As shown in figures 1-4, gear selection mechanism 1 described in present embodiment and shifter 2 set one group of screw association assembling and 2 alignment pins 17, now the first gear shift arm 4-2 engaged between two parties with the second gear shift arm 14-3 teeth, horizontal pure electronic choosing after combination, change Between one group of fixing bolt 19 of gear mechanism type transmission interface surface set synchronous with 4S510 and bolt 18, its faying face It is set with the first sealing gasket 5.
This design realizes the horizontal pure electronic choosings of AMT, shifter type mission case interface synchronous with 4S510 and is connected Connect and match, and automatic choosing, gear shift function.
Operation principle
The horizontal pure electronic choosings of AMT, shifter have 2 kinds of functions of bit selecting and gear shift.
Bit selecting function:It is, in the case where bit selecting electrical power works, to drive shift selection arm 3-3 to rotate, shift selection arm 3-3 is stirred Axle 4-1, transmits the force to the first gear shift arm 4-2, the first gear shift arm 4-2 in the synchronizer wiper arm groove of the different gears of speed changer, Realize automatically continuous, interruption, the function of selection bit selecting;It is stopped after power-off.
Gear shift function:It is in the case of gear shifting motor energization work, to drive the second gear shift arm 14-3 to rotate, the second gear shift Arm 14-3 engages the transmission for carrying out power, synchronizers of the first gear shift arm 4-2 in the different gears of speed changer with the first gear shift arm 4-2 teeth In wiper arm groove, automatically continuous gear shift, interruption gear shift, the function of selecting gear shift can be achieved;It is stopped after power-off.
Above-described embodiment is preferably embodiment, but embodiments of the present invention are not by above-described embodiment of the invention Limitation, other any Spirit Essences without departing from the present invention and the change made under principle, modification, replacement, combine, simplification, Equivalent substitute mode is should be, is included within protection scope of the present invention.

Claims (9)

1. a kind of horizontal pure electronic choosing of AMT control systems, shifter, it is characterised in that:Including gear selection mechanism (1), gear shift Mechanism (2), gear selection mechanism (1) axis is vertical with shifter (2) axis, and shifter (2) is located at gear selection mechanism (1) Top and 4S510 synchronous type speed changer axis side, gear selection mechanism (1) are located at the synchronous type speed changer faying faces of 4S510 Top and the synchronous type speed changer axis opposite sides of 4S510, gear selection mechanism (1) and shifter (2) are relatively fixed, and first changes Shelves arm (4-2), the second gear shift arm (14-3) are located at gear selection mechanism (1) axial location, the first gear shift arm (4-2) and the second gear shift arm The engagement of (14-3) tooth is placed in the middle.
2. the horizontal pure electronic choosing of AMT control systems according to claim 1, shifter, it is characterised in that:Gear selecting machine The first bushing (4-9) is respectively penetrated by two concentric holes and the second bushing (4-10) is fixed on the lower house (4) of structure (1);Axle (4- 1) outer end first bushing (4-9) aperture of lower house (4) is passed through, the strong point of axle (4-1) first is used as;First gear shift arm (4-2) Through on axle (4-1), axle (4-1) is then passed through the second bushing (4-10) aperture on lower house (4), is used as second, axle (4-1) Support point, the positioning hole of the first gear shift arm (4-2) is positioned with the positioning hole of axle (4-1) with bearing pin (4-4), and bearing pin (4-4) two ends are set Determine back-up ring (4-3).
3. the horizontal pure electronic choosing of AMT control systems according to claim 1, shifter, it is characterised in that:Gear selecting machine Decelerator (3) output shaft with decelerator motor of structure (1) is inserted into lower house (4) and fixed, the output shaft of decelerator (3) The output shaft exposed in vivo in lower house (4) penetrates the first adjusting pad (3-1), the second adjusting pad (3-2), shift selection arm (3- successively 3), the flat bulb inserting of shift selection arm (3-3) is arrived in the fluting of lower square shaft (4-1) one end.
4. the horizontal pure electronic choosing of AMT control systems according to claim 1, shifter, it is characterised in that:Small axle (3-8) is through the 3rd bushing (4-13) hole on lower house (4), then penetrates adjusting pad (3-9), wiper arm (3-10), adjustment successively Pad (3-5), small axle (3-8) penetrates shift selection arm (3-3) other end again;Lower house (4) stomidium of the small axle other end, sets sealing gasket (4-11), lid (4-12) and one group of screw sealing.
5. the horizontal pure electronic choosing of AMT control systems according to claim 1, shifter, it is characterised in that:Wiper arm The bulb of (3-10) is through the elongated fluting above lower house (4), and swing arm (8-1) is inserted on small axle (8-2), with jackscrew (8-3) Positioning, small axle (8-2) one end is inserted through sensor base (8) hole, setting back-up ring (8-4) positioning, this perforate of sensor base (8) As first strong point of small axle (8-2), small axle (8-2) other end is inserted in the perforate of lower house (4), is used as small axle (8-2) Second strong point, sensor base (8) is fixed on lower house (4), and the hole on first sensor (9) is inserted into sensor base (8) the small axle (8-2) exposed above.
6. the horizontal pure electronic choosing of AMT control systems according to claim 1, shifter, it is characterised in that:Gear shift machine Decelerator (14) output shaft with decelerator motor of structure (2) is inserted into upper shell (11) aperture and fixed, decelerator (14) Output shaft penetrate the first adjusting pad (14-1), the second adjusting pad (14- successively in the output shaft that upper shell (11) exposes in vivo 2), gear shift arm (14-3), small axle (14-7) is passed through in upper shell (11) aperture, and the 3rd adjusting pad (14-6), the 4th are penetrated successively Adjusting pad (14-8), is inserted into gear shift arm (14-3) another stomidium, is used as the strong point of small axle (14-7) first, gear shift arm (14- 3) positioning hole of positioning hole and small axle (14-7) is positioned with bearing pin (14-4), bearing pin (14-4) two ends setting back-up ring (14-5), It is exposed in small axle (14-7) other end insertion second sensor (10) hole outside upper shell (11), is used as small axle (14-7) second The strong point.
7. the horizontal pure electronic choosing of AMT control systems according to claim 1, shifter, it is characterised in that:Gear selecting machine Structure (1) and shifter (2) combination assembling setting one group of screw (22) and 2 alignment pins (17), horizontal pure electronic choosing after combination, Shifter type transmission interface synchronous with 4S510 sets one group of fixing bolt (19) and bolt (18), its faying face Between be set with the first sealing gasket (5).
8. the horizontal pure electronic choosing of AMT control systems according to claim 2, shifter, it is characterised in that:Also include One group of screw is fixed on lower house (4) outer face through sealing gasket (4-8), lid (4-7), bushing (4-9).
9. the horizontal pure electronic choosing of AMT control systems according to claim 6, shifter, it is characterised in that:Gear shift machine Inspection socket sets the 4th sealing gasket (11-2), cover plate (11-3) and one group of screw sealing above structure (2) upper shell (11);Its upper casing Body (11) two ends setting technique screw plug (11-1), vent valve (11-4).
CN201710470800.3A 2017-06-20 2017-06-20 The horizontal pure electric vehicle choosing of AMT control system, shift mechanism Active CN107143646B (en)

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Application Number Priority Date Filing Date Title
CN201710470800.3A CN107143646B (en) 2017-06-20 2017-06-20 The horizontal pure electric vehicle choosing of AMT control system, shift mechanism
PCT/CN2017/113892 WO2018233223A1 (en) 2017-06-20 2017-12-19 Horizontal-type pure electric gear selecting and shifting mechanism of amt control system

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Application Number Priority Date Filing Date Title
CN201710470800.3A CN107143646B (en) 2017-06-20 2017-06-20 The horizontal pure electric vehicle choosing of AMT control system, shift mechanism

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CN107143646B CN107143646B (en) 2019-01-11

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WO2018233223A1 (en) * 2017-06-20 2018-12-27 北理慧动(常熟)车辆科技有限公司 Horizontal-type pure electric gear selecting and shifting mechanism of amt control system

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Application publication date: 20170908

Assignee: Shaanxi Huoman Supply Chain Management Co.,Ltd.

Assignor: BIT INTELLIGENT VEHICLE TECHNOLOGY Co.,Ltd.

Contract record no.: X2022980009256

Denomination of invention: Horizontal pure electric selector and shifter of AMT control system

Granted publication date: 20190111

License type: Common License

Record date: 20220628