WO2018007947A1 - Gear shift control device with a control lever supported by means of a universal joint and with a position detection system for detecting the position of the control lever - Google Patents

Gear shift control device with a control lever supported by means of a universal joint and with a position detection system for detecting the position of the control lever Download PDF

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Publication number
WO2018007947A1
WO2018007947A1 PCT/IB2017/054033 IB2017054033W WO2018007947A1 WO 2018007947 A1 WO2018007947 A1 WO 2018007947A1 IB 2017054033 W IB2017054033 W IB 2017054033W WO 2018007947 A1 WO2018007947 A1 WO 2018007947A1
Authority
WO
WIPO (PCT)
Prior art keywords
control lever
rotation
axis
permanent magnet
gear shift
Prior art date
Application number
PCT/IB2017/054033
Other languages
English (en)
French (fr)
Inventor
Edoardo Placido MONGARLI
Aldo PAIRONA
Original Assignee
SILATECH S.r.l.
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.)
Filing date
Publication date
Application filed by SILATECH S.r.l. filed Critical SILATECH S.r.l.
Publication of WO2018007947A1 publication Critical patent/WO2018007947A1/en

Links

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
    • F16H59/04Ratio selector apparatus
    • F16H59/044Ratio selector apparatus consisting of electrical switches or sensors
    • 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
    • F16H59/08Range selector apparatus
    • F16H59/10Range selector apparatus comprising levers
    • F16H59/105Range selector apparatus comprising levers consisting of electrical switches or sensors
    • 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
    • F16H2059/026Details or special features of the selector casing or lever support
    • F16H2059/0273Cardan or gimbal type joints for supporting the lever

Definitions

  • Gear shift control device with a control lever supported by means of a universal joint and with a position detection system for detecting the position of the control lever
  • the present invention relates to a gear shift control device for a vehicle gearbox
  • a gear shift control device for a vehicle gearbox
  • a support body arranged to be rigidly connected to a part of the vehicle passenger compartment, for example to the floor or dashboard
  • a control lever supported by the support body by means of a universal joint so as to be able both to tilt to the left or to the right about a first axis of rotation directed longitudinally and to tilt forward and backward about a second axis of rotation directed transversely to perform the gear selection and engagement movements, respectively
  • a position detection system for continuously detecting the position of the control lever
  • the position detection system comprises a single permanent magnet, which is connected to the control lever so as to move as a result of the tilting of the control lever about the first and the second axis of rotation, and a single Hall effect magnetic field sensor, which is mounted on a sensor-carrying plate attached to the support body and is arranged to output signals indicative of the components of the magnetic flux generated by the permanent magnet and applied to the
  • a gear shift control device of the type identified above is known for example from DE 10 2011 119 862.
  • the permanent magnet of the position detection system is mounted onto the control lever so as to be drivingly connected therewith, both in the tilting movement about the first axis of rotation and in the tilting movement about the second axis of rotation. More specifically, the permanent magnet is arranged with its magnetic axis parallel to, and at a distance from, the first axis of rotation. Consequently, as a result of the tilting of the control lever about the first and the second axis of rotation, the permanent magnet moves in space, that is, travels along a path extending in the three dimensions. This makes the measurement, carried out by the sensor, of the components of the magnetic flux generated by the permanent magnet more difficult and less accurate, resulting in reduced accuracy in the detection of the position of the control lever.
  • the invention is based on the idea of providing a gear shift control device of the type identified above, wherein the permanent magnet is constrained to move on a plane extending parallel to and at a distance from the sensor-carrying plate and is connected to the control lever via connection means configured to convert the tilting movement of the control lever about the first and the second axis of rotation into a movement of the permanent magnet on said plane.
  • the tilting of the control lever about the first and the second axis of rotation results in the movement of the permanent magnet on a plane extending parallel to and at a distance from the sensor-carrying plate.
  • the sensor is able to detect with high accuracy the position of the permanent magnet on the plane and therefore the position detection system is able detect the position of the control lever more accurately than the prior art.
  • connection means are configured to convert the tilting movement of the control lever about the first axis of rotation into movement of the permanent magnet on said plane along a first direction and to convert the tilting movement of the control lever about the second axis of rotation into movement of the permanent magnet on said plane along a second direction perpendicular to the first direction.
  • the permanent magnet is mounted in a in a magnet-carrying body and is slidably arranged on a flat sliding surface formed by a further plate attached to the support body parallel to and at a distance from the sensor-carrying plate.
  • the connection means comprise at least one spring acting directly or indi- rectly on the magnet-carrying body so as to keep the permanent magnet permanently in contact with the flat sliding surface, irrespective of the position of the control lever.
  • Figure 1 is a perspective view of a gear shift control device according to an embodiment of the present invention
  • Figures 2 and 3 are two further perspective views showing in more detail, from two different points of view, the gear shift control device of Figure 1 ;
  • Figure 4 is a perspective view showing the position detection system of the gear shift control device of Figure 1 , sectioned through a first sectional plane passing through the first axis of rotation of the control lever;
  • Figure 5 is a perspective view showing the position detection system of the gear shift control device of Figure 1 , sectioned through a second sectional plane passing through the second axis of rotation of the control lever.
  • a gear shift control device for a vehicle gearbox is generally indicated 10.
  • the control device 10 basically comprises a control lever 12 through which the driver is able to impart commands to the vehicle gearbox, a support body 14 arranged to be rigidly connected to the vehicle compartment, for example to the floor or the dashboard, and a universal joint 16 by meas of which the control lever 12 is supported by the support body 14 so as to be able to rotate about two perpendicular axes of rotation, i.e.
  • the control lever 12 comprises, in a per-se-known manner, a rod 18 and a knob (not shown, but of per-se-known type) mounted at the upper end of rod 18.
  • the control lever 12 tilts in a transverse plane (selection plane) to the left or to the right to transmit selection commands to the gearbox, while by rotation about the second axis of rotation y, the control lever 12 tilts in a longitudinal plane (engagement plane) back and forth to transmit engagement commands to the gearbox.
  • the universal joint 16 may be of any known type and will therefore not described herein in detail.
  • the universal joint 16 comprises a fork 20 and a cross (not shown in the figures).
  • the cross comprises a first shaft which extends in the longitudinal direction (i.e. in the direction of the first axis of rotation x) and a second shaft which extends in the transverse direction (i.e. in the direction of the second axis of rotation y).
  • the first shaft is rotatably supported by the support body 14 for rotation about the first axis of rotation x (stationary axis of rotation), while the second shaft is drivingly connected with the first shaft for rotation about the first axis of rotation x and is therefore a movable axis of rotation.
  • the fork 20 is connected to the second shaft of the cross so as to rotate therewith about the first axis of rotation x and further rotate with respect to the first shaft about the second axis of rotation y.
  • the rod 18 of the control lever 12 is rigidly connected at the lower end thereof to the fork 20.
  • the control lever 12 can thus rotate both about the first axis of rotation x and about the second axis of rotation y for transmitting to the gearbox the selection and engagement commands, respectively, imparted by the driver.
  • the selection and engagement commands imparted by the driver via the control lever 12 can be transmitted to the gearbox either mechanically, i.e. through mechanical connection members, such as for example a pair of push-pull cables, connecting the control lever 12 to special actuation members provided in the gearbox, or by the so-called shift-by-wire mode, i.e. by an electronic control unit which generates appropriate control signals for selection and engagement actuators provided in the gearbox as a function of input signals indicative of the position of the control lever 12.
  • the gear shift control device 10 further comprises a position detection system adapted for continuously detecting the position of the control lever 12, namely both the angular position about the first axis of rotation x and the angular position about the second axis of rotation y.
  • the position detection system comprises one single permanent magnet 22, which is connected to the control lever 12, in particular to the fork 20, so as to move as a result of tilting of the control lever 12 about the first axis of rotation x and the second axis of rotation y, and a Hall effect magnetic field sensor 24 (in particular made as an integrated chip), which is mounted on a sensor-carrying plate 26 attached to the support body 14 so as to be operatively exposed to the magnetic flux generated by the permanent magnet 22 and is arranged to output signals indicative of the components of such a magnetic flux.
  • a Hall effect magnetic field sensor 24 in particular made as an integrated chip
  • the permanent magnet 22 is forced to move on a plane P extending parallel to and at a distance from the sensor-carrying plate 26.
  • the plane P extends above the sensor-carrying plate 26, but according to alternative embodiments it might also be arranged underneath such a plate.
  • the plane P is defined for example by a flat sliding surface 28 formed by a plate 30 that is attached to the support body 14 and extends parallel to and at a distance from the sensor- carrying plate 26.
  • the permanent magnet 22 has a flat lower side 22a adapted to slide on the flat sliding surface 28.
  • the permanent magnet 22 is mounted in a magnet-carrying body 32, and is for example force-fitted in a suitably shaped cavity 34 of the magnet-carrying body 32.
  • the permanent magnet 22 is connected to the control lever 12 by means of connection means configured to convert the tilting movement of the control lever 12 about the first axis of rotation x and the second axis of rotation y into a movement of the magnet on the plane P, in particular into a movement of the magnet along two perpendicular directions.
  • connection means are configured in such a way that the tilting of the control lever 12 about the first axis of rota- tion x results in a movement of the permanent magnet 22 on the plane P along a first direction parallel to the first axis of rotation x, while the tilting of the control lever 12 about the second axis of rotation y results in a movement of the permanent magnet 22 on the plane P long a second direction parallel to the second axis of rotation y.
  • connection means comprise a connection element 36 (which in the example shown in Figures 4 and 5 is made as a rod) which on the one side is connected by means a ball-and- socket joint 38 to the permanent magnet 22, or rather to the magnet-carrying body 32, and on the other side is slidably mounted into the control lever 12 (in particular, according to the illustrated example, into rod 18) along a sliding direction z.
  • the sliding direction z is directed perpendicular to the plane formed by the first axis of rotation x and by the second axis of rotation y, in the condition where the control lever 12 is in the neutral position.
  • connection means further comprise at least one spring 40 acting on the connection means 36 so as to push the assembly formed by the connection element 36 and the magnet-carrying body 32 towards the plate 30, and thus keep the permanent magnet 22 permanently in contact with the flat sliding surface 28, irrespective of the position of the control lever 12.
  • the permanent magnet 22 moves on the plane P as a result of the tilting of the control lever 12 about the first axis of rotation x and the second axis of rotation y.
  • the position of the permanent magnet 22 on the plane P and the position of the control lever 12 (defined by the angular position about the first axis of rotation x and by the angular position about the second axis of rotation y), whereby each position of the control lever 12 corresponds to one and only one position of the permanent magnet 22 on the plane P and vice versa. Therefore, detecting the position of the permanent magnet 22 on the plane P through the sensor 24, the position control system is able to continuously detect the position of the control lever 12.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Arrangement Or Mounting Of Control Devices For Change-Speed Gearing (AREA)
  • Gear-Shifting Mechanisms (AREA)
PCT/IB2017/054033 2016-07-04 2017-07-04 Gear shift control device with a control lever supported by means of a universal joint and with a position detection system for detecting the position of the control lever WO2018007947A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT102016000069085 2016-07-04
IT102016000069085A IT201600069085A1 (it) 2016-07-04 2016-07-04 Dispositivo di comando cambio con leva di comando supportata mediante giunto cardanico e con sistema di rilevamento della posizione atto a rilevare la posizione della leva di comando.

Publications (1)

Publication Number Publication Date
WO2018007947A1 true WO2018007947A1 (en) 2018-01-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IB2017/054033 WO2018007947A1 (en) 2016-07-04 2017-07-04 Gear shift control device with a control lever supported by means of a universal joint and with a position detection system for detecting the position of the control lever

Country Status (2)

Country Link
IT (1) IT201600069085A1 (it)
WO (1) WO2018007947A1 (it)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110469659A (zh) * 2018-05-11 2019-11-19 广州汽车集团股份有限公司 一种电子换挡器的挡位标定方法及***
CN111911620A (zh) * 2020-07-29 2020-11-10 中国航发湖南动力机械研究所 多功能推杆操纵装置
CN115342183A (zh) * 2022-06-30 2022-11-15 温州长江汽车电子有限公司 一种电子换挡操纵机构

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2638230A1 (fr) * 1988-10-22 1990-04-27 Fichtel & Sachs Ag Dispositif pour determiner la position d'une piece mecanique notamment d'un levier de changement de vitesse
EP0620385A1 (fr) * 1993-04-13 1994-10-19 Jaeger Ensemble de commande pour boîte de vitesses mécanique et système de commande incorporant celui-ci
JP2008239057A (ja) * 2007-03-28 2008-10-09 Tokai Rika Co Ltd 変速機用操作レバーのレバー操作位置判定装置
DE102007032545A1 (de) * 2007-05-15 2008-11-20 Cherry Gmbh Elektronisches Wählhebelmodul
WO2010026947A1 (ja) * 2008-09-02 2010-03-11 アルプス電気株式会社 シフト装置
US20140145712A1 (en) * 2012-11-29 2014-05-29 Chiyoda Kogyo Co., Ltd. Shift lever device using magnetism detection switch

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2638230A1 (fr) * 1988-10-22 1990-04-27 Fichtel & Sachs Ag Dispositif pour determiner la position d'une piece mecanique notamment d'un levier de changement de vitesse
EP0620385A1 (fr) * 1993-04-13 1994-10-19 Jaeger Ensemble de commande pour boîte de vitesses mécanique et système de commande incorporant celui-ci
JP2008239057A (ja) * 2007-03-28 2008-10-09 Tokai Rika Co Ltd 変速機用操作レバーのレバー操作位置判定装置
DE102007032545A1 (de) * 2007-05-15 2008-11-20 Cherry Gmbh Elektronisches Wählhebelmodul
WO2010026947A1 (ja) * 2008-09-02 2010-03-11 アルプス電気株式会社 シフト装置
US20140145712A1 (en) * 2012-11-29 2014-05-29 Chiyoda Kogyo Co., Ltd. Shift lever device using magnetism detection switch

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110469659A (zh) * 2018-05-11 2019-11-19 广州汽车集团股份有限公司 一种电子换挡器的挡位标定方法及***
CN110469659B (zh) * 2018-05-11 2020-11-17 广州汽车集团股份有限公司 一种电子换挡器的挡位标定方法及***
CN111911620A (zh) * 2020-07-29 2020-11-10 中国航发湖南动力机械研究所 多功能推杆操纵装置
CN111911620B (zh) * 2020-07-29 2021-11-12 中国航发湖南动力机械研究所 多功能推杆操纵装置
CN115342183A (zh) * 2022-06-30 2022-11-15 温州长江汽车电子有限公司 一种电子换挡操纵机构

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