US20210293058A1 - Actuated mechanism for active pedestrian safety latch - Google Patents
Actuated mechanism for active pedestrian safety latch Download PDFInfo
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- US20210293058A1 US20210293058A1 US17/340,786 US202117340786A US2021293058A1 US 20210293058 A1 US20210293058 A1 US 20210293058A1 US 202117340786 A US202117340786 A US 202117340786A US 2021293058 A1 US2021293058 A1 US 2021293058A1
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- latch
- plate
- striker
- support plate
- linkages
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Images
Classifications
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B77/00—Vehicle locks characterised by special functions or purposes
- E05B77/02—Vehicle locks characterised by special functions or purposes for accident situations
- E05B77/08—Arrangements for protection of pedestrians
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B83/00—Vehicle locks specially adapted for particular types of wing or vehicle
- E05B83/16—Locks for luggage compartments, car boot lids or car bonnets
- E05B83/24—Locks for luggage compartments, car boot lids or car bonnets for car bonnets
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60R—VEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
- B60R21/00—Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
- B60R21/34—Protecting non-occupants of a vehicle, e.g. pedestrians
- B60R21/38—Protecting non-occupants of a vehicle, e.g. pedestrians using means for lifting bonnets
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B77/00—Vehicle locks characterised by special functions or purposes
- E05B77/02—Vehicle locks characterised by special functions or purposes for accident situations
- E05B77/12—Automatic locking or unlocking at the moment of collision
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B85/00—Details of vehicle locks not provided for in groups E05B77/00 - E05B83/00
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B85/00—Details of vehicle locks not provided for in groups E05B77/00 - E05B83/00
- E05B85/20—Bolts or detents
- E05B85/24—Bolts rotating about an axis
- E05B85/26—Cooperation between bolts and detents
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05Y—INDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
- E05Y2900/00—Application of doors, windows, wings or fittings thereof
- E05Y2900/50—Application of doors, windows, wings or fittings thereof for vehicles
- E05Y2900/53—Type of wing
- E05Y2900/536—Hoods
Definitions
- This disclosure relates to vehicle safety systems.
- the automotive industry is attempting to better protect pedestrians from head on collisions with vehicles.
- a car hits a pedestrian in a front end collision
- the pedestrian can be thrown up and land on the front hood of the vehicle and/or the windshield.
- it is desired to actively space the front hood from the engine block whenever a front end collision is detected.
- a front end collision when a front end collision is detected by crash sensors, it is desired to move the front hood in a very short period of time (e.g., in milliseconds) from a first aerodynamic position where the front hood is normally located very close to the engine block to a second position where the front hood is actively moved few centimeters further away from the engine block.
- This activity could provide the pedestrian's head and/or torso with sufficient time and/or space to decelerate when the pedestrian impacts the front hood and thus prevent fatal injury.
- actuation speed and/or actuation distance of safety devices e.g. device response time
- actuation power requirements e.g. device response time
- a further problem in industry is the need for a smaller packaging size of safety systems.
- a further problem in industry is the need for reduced cost of safety systems, including module components to facilitate replacement a reduction in replacement costs.
- a second aspect latch travel assembly for a closure panel of a vehicle comprising: a latch for retaining the closure panel; a mounting plate having the latch mounted thereon; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member for mounting on the support plate and for retaining the mounting plate in a home position when coupled to the mounting plate and for decoupling from the mounting plate when operated; and an actuation mechanism mounted on at least one of the support plate or the body and coupled to the linkages for extending the linkages once the locking member is decoupled from the latch in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch.
- a fifth aspect provided is a latch travel mechanism for a closure panel of a vehicle comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle; and an actuation mechanism for mounting on at least one of the support plate or the body and for coupling to the closure panel for moving the closure panel from a home position to an extended position, such that the mounting plate also moves relative to the support plate while the closure panel is retained by the latch; wherein the latch is moved from the home position to the extended position when mounted on the mounting plate.
- the latch travel mechanism wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages.
- the latch travel mechanism wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages.
- a method for operating a latch travel mechanism coupled to a closure panel of a vehicle the method illustratively including the steps of maintaining a linkage provided between a mounting plate and a support plate in a collapsed state, the mounting plate having a latch mounted thereon for retaining the closure panel in a closed position with respect to a body of the vehicle, the mounting plate coupled to a support plate connected to the body of the vehicle, operating an actuation system in order to move the mounting plate relative to the support plate from the home position to an extended position, and expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to an extended position, such that the latch is also moved from the home position to the extended position as mounted on the mounting plate.
- an active pedestrian system including a closure panel of a vehicle comprising a striker, a latch travel mechanism for the closure panel, the mechanism including a mounting plate for mounting a latch, the latch comprising a ratchet for retaining the striker, the latch for retaining the closure panel in a closed position with respect to a body of the vehicle, a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle, one or more linkages connected to the support plate at one end and connected to the mounting plate at another end, the one or more linkages providing said coupled to the mounting plate, one or more linkages expandable in a plane parallel with the plane of at least one of the mounting plate and the support plate, and an actuation system coupled to at least one of the support plate, the mounting plate and the linkages for extending the linkages in order to move the mounting plate relative to the support plate from a home position to an extended position, wherein the latch is also moved from the home position to the extended position when mounted on the mounting plate, where
- FIG. 1A is a perspective view of an example vehicle using a safety actuation system
- FIG. 2 is a front elevation view of the hood latch of FIG. 1A shown in isolation;
- FIG. 3 is a front perspective view of the hood latch of FIG. 1A shown in a primary home position
- FIG. 3A is a front perspective exploded view of the hood latch of FIG. 3 ;
- FIGS. 4 a and 4 b show respectively a side and front view of the latch of FIG. 1 as retained in the home position;
- FIGS. 5 a and 5 b show respectively a side and front view of the latch of FIG. 1 as released while yet in the home position;
- FIGS. 5 c and 5 d show respectively a side and front view of the latch of FIG. 1 as released and in a partially deployed position;
- FIGS. 6 a and 6 b show respectively a side and front view of the latch of FIG. 1 as released and in an extended position;
- FIG. 7 shows perspective front view of the latch of FIG. 1 as released and in the extended position
- FIG. 8 a is a front perspective view of a further embodiment of the actuation system shown in FIG. 3 ;
- FIG. 8 b is a rear perspective view of a further embodiment of the actuation system shown in FIG. 3 ;
- FIG. 9 a is a side view of the actuation system shown in FIG. 8 a in a locked state
- FIG. 9 b is a front view of the actuation system shown in FIG. 8 a in a locked state
- FIG. 10 a is a side view of the actuation system shown in FIG. 8 a in an unlocked state
- FIG. 10 b is a front view of the actuation system shown in FIG. 8 a in an unlocked state
- FIG. 11 a is a side view of the actuation system shown in FIG. 8 a in an extended position
- FIG. 11 b is a front view of the actuation system shown in FIG. 8 a in an extended position
- FIG. 12 a is a front perspective view of a still further embodiment of the actuation system shown in FIG. 3 ;
- FIG. 12 b is a rear perspective view of a still further embodiment of the actuation system shown in FIG. 3 ;
- FIG. 13 a is a side view of the actuation system shown in FIG. 12 a in a home position
- FIG. 13 b is a front view of the actuation system shown in FIG. 12 a in a home position
- FIG. 14 a is a side view of the actuation system shown in FIG. 12 a in an extended position
- FIG. 14 b is a front view of the actuation system shown in FIG. 12 a in an extended position
- FIG. 15 is a front perspective view of a still further embodiment of the actuation system shown in FIG. 3 ;
- FIG. 16 a is a side view of the actuation system shown in FIG. 15 in a home position
- FIG. 16 b is a front view of the actuation system shown in FIG. 15 in a home position
- FIG. 17 a is a side view of the actuation system shown in FIG. 15 in an extended position
- FIG. 17 b is a front view of the actuation system shown in FIG. 15 in an extended position
- FIG. 18 is a front perspective view of a still further embodiment of the actuation system shown in FIG. 3 ;
- FIG. 19 a is a side view of the actuation system shown in FIG. 18 in a home position
- FIG. 19 b is a front view of the actuation system shown in FIG. 18 in a home position
- FIG. 20 a is a side view of the actuation system shown in FIG. 18 in an extended position
- FIG. 20 b is a front view of the actuation system shown in FIG. 18 in an extended position
- FIGS. 21, 22 a , 22 b , 23 a , 23 b , 24 a , and 24 b show a still further embodiment of the actuation system shown in FIG. 3 ;
- FIGS. 25, 26 a , 26 b , 27 a , 27 b , 28 a and 28 b show a still further embodiment of the actuation system shown in FIG. 1A ;
- FIG. 29 a is a front view of the actuation system shown in collapsed state in accordance with an illustrative embodiment
- FIG. 29 b is a front view of the actuation system of FIG. 29 a shown in expanded state in accordance with an illustrative embodiment
- FIG. 29 c is a rear perspective view of the actuation system of FIG. 29 a illustrative a guide mechanism, in accordance with an illustrative embodiment
- FIGS. 30A to 30F are a series of sequential views of a mating latch component being moved by the latch of FIG. 21 from an initial position to an active pop-up position;
- FIGS. 31A to 31F are a series of sequential views of the actuation system of FIG. 21 being moved from an initial collapsed position to an active pop-up position;
- FIGS. 31G and 31H illustrates a tilting motion of mounting plate 115 of actuation system of FIG. 21 during movement from an initial collapsed position to an active pop-up position, in accordance with an illustrative embodiment
- FIGS. 32A to 32C are a series of sequential views of the actuation system corresponding to FIGS. 31A to 31F , illustrating a linkage transitioning between a collapsed state to an expanded state;
- FIG. 33 is a method of operating a hood latch with a safety actuation system in accordance with an illustrative embodiment.
- FIG. 34A is a side view of actuation system of FIG. 21 having a locking assembly in a locked state, in accordance with an illustrative embodiment.
- FIG. 34B is a side view of actuation system of FIG. 21 having a locking assembly in an unlocked state, in accordance with an illustrative embodiment.
- a vehicle 4 with a vehicle body 5 having one or more closure panels 6 .
- the closure panel 6 is connected to the vehicle body 5 via one or more panel operation components 8 , for example such as but not limited to a hinge 98 and/or a latch 100 (e.g. for retaining the closure panel 6 in a closed position once closed or for retaining the closure panel 6 in an open position once opened).
- the hinge 98 can be configured as a biased hinge that can be configured to bias the closure panel 6 towards the open position and/or towards the closed position.
- the panel operation component 8 can be configured as a lift assist system including one or more struts, not shown, for example used in tail lift gate systems.
- the closure panel 6 can have a mating latch component 96 (e.g. striker) mounted thereon for coupling with a respective panel operation component 8 (e.g. latch) mounted on the vehicle body 5 .
- a mating latch component 96 e.g. striker
- the panel operation component 8 can be mounted on the closure panel 6 and the mating latch component 96 mounted on the body 5 (not shown).
- the panel operation component 8 can be used to operatively couple the closure panel 6 to the body 5 , such as the case for the hinge 98 .
- the panel operation components 8 provide for movement of the closure panel 6 between a closed panel position (shown in dashed outline) and an open panel position (shown in solid outline), such that the operation component(s) 8 can be involved during the movement of the closure panel 6 between the open panel position and the closed panel position (e.g. for a hinge 98 ), can be involved in driving the movement of the closure panel 6 towards the open panel position (e.g. for an opening latch 100 ), or can be involved in driving the movement of the closure panel 6 towards the closed panel position (e.g. for a retaining latch 100 ).
- the closure panel 6 pivots between the open panel position and the closed panel position about a pivot axis 9 (e.g.
- the closure panel 6 may move in a manner other than pivoting, for example, the closure panel 6 may translate along a predefined track or may undergo a combination of translation and rotation between the open and closed panel positions, such that the hinge 98 includes both pivot and translational components (not shown).
- the closure panel 6 can be embodied, for example, as a hood, passenger door or lift gate (otherwise referred to as a hatch) of the vehicle 4 .
- an actuation mechanism 101 coupled to one or more of the panel operation components 8 , such that the actuation mechanism 101 is configured for actuating the operation or otherwise bypassing the operation of the one or more panel operation components 8 , as further described below.
- the actuation mechanism 101 can be used to forcefully provide, during deployment, some form of force assisted open operation (e.g. full open, partial open, etc.) of the closure panel 6 .
- the actuation mechanism 101 can be deployed by any accelerated reaction time methods suitable, e.g. pyrotechnic, hydraulic, mechanical, and electrical, as desired.
- the closure panel 6 can be referred to as a partition or door, typically hinged, but sometimes attached by other mechanisms such as tracks, in front of an opening 13 which is used for entering and exiting the vehicle 4 interior by people and/or cargo. It is also recognized that the closure panel 6 can be used as an access panel for vehicle 4 systems such as engine compartments and also for traditional trunk compartments of automotive type vehicles 4 . The closure panel 6 can be opened to provide access to the opening 13 , or closed to secure or otherwise restrict access to the opening 13 . It is also recognized that there can be one or more intermediate open positions (e.g. unlatched position) of the closure panel 6 between a fully open panel position (e.g. unlatched position) and fully closed panel position (e.g. latched position), as provided at least in part by the panel operation component(s) 8 . For example, the panel operation component(s) 8 can be used to provide an opening force (or torque) and/or a closing force (or torque) for the closure panel 6 .
- Movement of the closure panel 6 can be electronically and/or manually operated, where power assisted closure panels 6 can be found on minivans, high-end cars, or sport utility vehicles (SUVs) and the like.
- movement of the closure panel 6 can be manual or power assisted during operation of the closure panel 6 at, for example: between fully closed (e.g. locked or latched) and fully open (e.g. unlocked or unlatched); between locked/latched and partially open (e.g. unlocked or unlatched); and/or between partially open (e.g. unlocked or unlatched) and fully open (e.g. unlocked or unlatched).
- the partially open configuration of the closure panel 6 can also include a secondary lock (e.g. closure panel 6 has a primary lock configuration at fully closed and a secondary lock configuration at partially open—for example for latches 100 associated with vehicle hoods).
- the closure panel 6 may be a hood, a lift gate, or it may be some other kind of closure panel 6 , such as an upward-swinging vehicle door (i.e. what is sometimes referred to as a gull-wing door) or a conventional type of door that is hinged at a front-facing or back-facing edge of the door, and so allows the door to swing (or slide) away from (or towards) the opening 13 in the body 5 of the vehicle 4 .
- an upward-swinging vehicle door i.e. what is sometimes referred to as a gull-wing door
- a conventional type of door that is hinged at a front-facing or back-facing edge of the door, and so allows the door to swing (or slide) away from (or towards) the opening 13 in the body 5 of the vehicle 4 .
- sliding doors can be a type of door that open by sliding horizontally or vertically, whereby the door is either mounted on, or suspended from a track that provides for a larger opening 13 for equipment to be loaded and unloaded through the opening 13 without obstructing access.
- Canopy doors are a type of door that sits on top of the vehicle 4 and lifts up in some way, to provide access for vehicle passengers via the opening 13 (e.g. car canopy, aircraft canopy, etc.).
- Canopy doors can be connected (e.g.
- the body 5 can be represented as a body panel of the vehicle 4 , a frame of the vehicle 4 , and/or a combination frame and body panel assembly, as desired.
- the closure panel 6 can be configured as a hood panel of the vehicle 4 , such that each hinge 98 and respective actuation mechanism 101 is configured as a hinge assembly 94 , and the latch 100 and actuation mechanism 101 is configured as a latch assembly 10 . It is recognized that the actuation mechanism 101 of the hinge assembly 84 can be optional, as desired.
- one embodiment of the latch 100 includes a mounting plate 115 that can be contoured to facilitate attachment of the latch 100 to a frame (e.g. body 5 ) of the motor vehicle 4 (see FIG. 1A ).
- the mounting plate 115 can be contoured to define a generally planar mounting surface and a plurality of apertures for attaching various components of the latch 100 thereto.
- mounting plate 115 is a stamped metal component.
- a mating latch component 96 e.g. striker
- the mating latch component 96 can be a generally U-shaped bar that is engaged by the latch 100 to latch the closure panel 6 in the closed position.
- the latch 100 can be secured to the body 5 by mounting plate and positioned so that the mating latch component 96 will engage the latch 100 upon the closure panel 6 reaching the closed position. It is appreciated that, alternatively, the latch 100 may be secured to the closure panel 6 and the mating latch component 96 may be secured to the body 5 of the vehicle 4 . Positioned on the mounting plate 115 can be a fishmouth or slot 114 for receiving the mating latch component 96 therein, in other words the slot 114 of the latch 100 is configured for receiving a keeper of the mating latch component 96 .
- the slot 114 has an open top end and a closed bottom end.
- the latch 100 can also include a cover plate (not shown).
- the mounting plate 115 and cover plate can be interconnected by first and second rivets (not shown) that each have respective integral shafts extending beyond the cover plate.
- the mounting plate 115 , cover plate and interconnecting rivets can provide a housing for the latch 100 .
- the latch 100 includes a number of latch elements 110 (e.g. a ratchet 24 and a pawl 40 ) that are configured to couple to the mating latch component 96 in order to retain the mating latch component 96 within the slot 114 when the closure panel 6 is in the closed position (e.g. locked).
- the latch elements 110 both of which are pivotally secured to the frame plate.
- the ratchet 24 includes an arm and arm spaced apart to define the generally u-shaped slot 114 there between (e.g. a hook of arm and a lip of arm that extends laterally beyond the hook.
- the ratchet 24 can also include a primary shoulder stop and a pointed secondary shoulder stop. Note that in FIG. 2 the ratchet 24 is shown in a fully closed position (e.g. facilitating the retention of the mating latch component 96 in the slot 114 ) which may also be referred to as the primary closed position.
- the ratchet 24 can be biased to an open position by a substantial torsion spring that is mounted pivotally on the rivet shaft and connected between the cover plate and the plate.
- the torsion spring is an example of a ratchet biasing member, which biases the ratchet 24 towards the open position.
- the ratchet 24 moves between a unlatched position for releasing the mating latch component 96 and a latched position, such that the mating latch component 96 is received in the slot 114 and cooperates with the receiving slot 114 of the mounting plate.
- the ratchet 24 is biased to the unlatched position via a biasing member.
- the pawl 40 has can have a shoulder (or detent) that interacts or otherwise engages with primary and secondary shoulder stops of the ratchet 24 , in order to releasably retain the ratchet 24 in the latched position.
- the pawl 40 can also feature a primary release tab 44 and/or a secondary release tab.
- the pawl 40 is biased to a locking position (e.g. latched position) where the ratchet 24 is shown in a primary closed position by a torsion spring.
- the torsion spring 48 is an example of a pawl biasing member. Accordingly, the pawl 40 can be biased to disengage with the ratchet 24 via the pawl biasing member.
- a release lever 50 can also pivotally mounted between the frame plate 12 and the cover plate 18 .
- the primary release lever 50 can include a tab 52 for connection to a release cable (not shown) that is connected to a release handle (not shown) located in the vehicle 4 compartment for initiating by a driver for opening of the latch 100 .
- the end result of operation of the release lever 50 is that the pawl 40 is disengaged with the ratchet 24 , under action of the pawl biasing member, thus allowing the ratchet biasing member to assist in pivoting the ratchet 24 from the closed (or latched position to the open or unlatched position (not shown).
- the primary release lever 50 can interact with the pawl 40 via its primary release tab 44 and can thus also be biased by pawl biasing member into the non-engaged position.
- the latch 100 can be coupled to actuation mechanism 101 , shown in FIG. 1 a and FIGS. 3-7 .
- the actuation mechanism 101 can include the support plate 117 that can connect to the mounting plate 115 of the latch 100 and thereby can form part of the latch housing (not shown), as desired.
- the mounting plate 115 , the support plate 117 and the actuation mechanism 101 can be collectively referred to as a latch travel mechanism 99 or with inclusion with the latch as a latch travel assembly 99 , as desired. It is recognized that in the embodiments of the latch 100 shown in FIGS.
- the mounting plate 115 is connected to the support plate 117 via linkages 118 , such that the linkages 118 are connected by a hinge or pivot 120 at one end to the mounting plate 115 and at the other end via a hinge or pivot 122 to the support plate 117 .
- the support plate 117 can be connected to the body (see FIG. 1A ) via mounting holes 124 .
- Pivot 120 can have a pin 126 (see FIG. 7 ) for coupling with a locking member (e.g. locking hook) 128 when the latch 100 is in a home (or non-extended) position (see FIG. 3 ), such that when the pin 126 is retained by the locking member 128 (e.g.
- the locking member 128 can be configured to pivot about a pivot point (e.g. pivot 122 ), such that the locking member is biased about the pivot point by a biasing member (e.g. spring—not shown) into contact with the pin 126 for retaining the latch 100 in the home or non-extended position (e.g. receiving of the pin 126 in notch 123 of the locking member 128 ). It is recognized that operations other than pivoting (e.g. linear extension and retraction—not shown) of the locking member 128 with respect to the pin 126 can be envisioned as desired.
- Locking member 128 is an example of component of a locking assembly 67 , for locking or unlocking the relative movement between the mounting plate 115 and the support plate 117 .
- Locking member 128 ′ is provided to engage directly between the support plate and the mounting plate 115 , for example locking member 128 ′ is shown as a lever pivotally mounted to mounting plate 115 for rotation about pivot point 129 provided on the mounting plate 115 .
- Locking member 128 ′ may be biased about pivot point 129 such that locking member 128 ′ is biased towards a locking state or position.
- locking member 128 ′ may engage with support plate 117 to prevent relative movement between the support plate 117 and the mounting plate 115 .
- locking member 128 ′ is shown as engage a locking feature 69 , such as a lug or pin or catch or the like provided on supporting plate 117 .
- locking feature 69 may be a hole or aperture provided in supporting plate 117 .
- the actuation mechanism 101 can be mounted on the body 5 or on the support plate 117 itself, such that operation of the actuation mechanism 101 can be used to decouple the pin 126 from the locking member 128 , thus facilitating movement of the latch 100 from the home position (see FIG. 3 ) to the extended position (see FIGS. 6 and 7 ). It is noted that pin 126 is not shown in FIG. 3 for visual clarity purposes only.
- the actuator mechanism 101 can have a housing 130 with actuation means (e.g. [pyrotechnic) for extending and retracting a piston 132 (see FIGS. 6 and 7 ) for facilitating movement of the latch 100 (as well as mounting plate 115 ) between the home and extended positions.
- actuation means e.g. [pyrotechnic
- FIG. 3 One example of the interaction of the piston 132 with the latch 100 is shown in FIG. 3 , such that an actuator link 134 is connected to the linkages 118 , such that a force of the piston 132 on the actuator link 134 causes the linkages 118 to extend and thus move the latch 100 from the home position to the extended position.
- a pretravel slot 119 is provided on each of the linkages 118 which allow the actuator link 134 to move between a first slot end 119 A to a second slot end 119 B without influencing motion on the linkage 118 .
- the actuator link 134 When the actuator link 134 reaches the second slot end 119 -B (from an initial resting or home position at the first slot end 119 A) the actuator link 134 will enter into abutting contact therewith to be able to therefore urge the linkage 118 into an upward motion as guided by the motion of the piston 132 during an additional travel of the actuator link 134 .
- the actuator link 134 will impart the movement of the locking member 128 out of coupling with the pin 126 , (and without imparting motion of the linkage 118 until the locking member 128 has been disengaged with the pin 126 ), through the engagement of the actuator link 134 with a cam surface 139 of the notch 136 .
- the actuator link 134 can be positioned on the latch 100 , itself and/or the mounting plate 115 (for example) in order to provide for extension of the latch 100 when acted upon by the piston 132 (as driven by the actuator mechanism 101 ).
- the actuator link 134 can be received in a notch 136 in the locking member 128 when the locking member 128 is engaged with the pin 126 (when the latch 100 is in and retained in the home position).
- the locking member 128 can also have a travel surface 141 extending from the notch 136 in order to guide travel of the actuator link 134 as the latch 100 translates from the home to the extended position.
- the latch 10 is first (in FIG. 1A ) held in the home position by retention of locking member 128 with pin 126 .
- the linkages 118 are also retracted as pivots 120 , 122 are adjacent to one another as the mounting plate 115 is seated adjacent to the support plate 117 .
- the locking member 128 is decoupled from the pin 126 .
- This decoupling e.g. the pin 126 is removed from the notch 123 is shown by example only, as a result of initial movement (i.e.
- FIGS. 5 c , 6 d shows the latch 100 (and mounting plate 115 ) in the partially extended position.
- FIGS. 6 a , 6 b shows the latch 100 (and mounting plate 115 ) in the extended position as indicated by the travel distance A vertically from the home position as well as travel distance B horizontally from the home position.
- the travel distances A, B facilitate the extended movement of the latch 100 about the pivot position of the hood 6 via hinge 98 (see FIG. 1A ). It is recognized that the latch 100 can be closed (i.e.
- the latch 100 as shown has an active pop-up height, e.g. min 60 mm pop-up height during active firing of the actuator mechanism 101 .
- the deactivation can be done by pulling an inside release handle.
- a secondary catch can be attached to the latch or to the striker, as desired.
- the latch 100 of FIG. 3 can be a modular latch assembly.
- biasing member 142 a e.g. torsion spring
- biasing member 142 a can be used to bias the linkage 118 positions in the home position and to otherwise maintain contact between the piston 132 and the actuator link 134 during movement thereof.
- the linkages 118 have a pair of links on either side of the support plate 117 , however it is envisioned that other configurations of linkages 118 can be used as desired. In order to translate/rotate the latch 100 from the home to the extended position.
- the actuation mechanism 101 can include the support plate 117 that can connect to the mounting plate 115 of the latch 100 and thereby can form part of the latch housing, as desired.
- the mounting plate 115 is coupled to the support plate 117 via pins 140 and slot 142 arrangement, such that the pins 140 are connected to the mounting plate 115 and the slots 142 are formed in the support plate 117 (recognizing that the opposite configuration can also be provided).
- Two or more pins 140 may also be provided, and for example to prevent a tilting motion TM of mounting plate 115 .
- the support plate 117 can be connected to the body 5 (see FIG. 1A ) via mounting holes 124 .
- An abutment 144 e.g. decoupling plate
- the locking member 128 e.g. locking hook—for example mounted on the support plate 117
- FIG. 8 a the locking member 128
- the locking member 128 can be configured to pivot about a pivot point (e.g. pivot 123 a ), such that the locking member 128 is biased about the pivot point 123 a by a biasing member (e.g. spring 123 b ) into contact with the abutment 144 for retaining the latch 100 in the home or non-extended position (e.g. receiving of the abutment 144 in notch of the locking member 128 ). It is recognized that operations other than pivoting (e.g. linear extension and retraction—not shown) of the locking member 128 with respect to the abutment 144 can be envisioned as desired.
- a pivot point e.g. pivot 123 a
- a biasing member e.g. spring 123 b
- the actuation mechanism 101 can be mounted on the body 5 (see FIG. 1 a ) or on the support plate 117 itself, such that operation of the actuation mechanism 101 can be used to decouple the abutment 144 from the locking member 128 , thus facilitating movement of the latch 100 from the home position (see FIGS. 8 a , 8 b , 9 a , 9 b ) to the extended position (see FIGS. 11 a , 11 b ).
- the actuator mechanism 101 can have the housing 130 with actuation means (e.g. (pyrotechnic) for extending and retracting the piston 132 (see FIGS. 11 a, 11 b ) for facilitating movement of the latch 100 (as well as mounting plate 115 ) between the home and extended positions.
- actuation means e.g. (pyrotechnic) for extending and retracting the piston 132 (see FIGS. 11 a, 11 b ) for facilitating movement of the latch 100 (as well as mounting plate 115
- FIG. 8 a One example of the interaction of the piston 132 with the latch 100 is shown in FIG. 8 a , such that an actuator link 134 (e.g. tab) is connected to the mounting plate 115 , such that the force of the piston 132 on the actuator link 134 causes the mounting plate 115 to extend and thus move the latch 100 from the home position to the extended position.
- initial actuation of the actuation mechanism 101 causes the abutment 144 to act on the locking member 128 (thus pivoting the locking member 128 about the pivot 123 a against the bias of the biasing member 123 b ). Once pivoted, the locking member 128 is taken out of contact (i.e.
- FIGS. 11 a , 11 b Shown in FIGS. 11 a , 11 b is the latch 100 with the mounting plate 115 in the extended position, for example with the pins 140 reaching their full travel extent in the slots 142 , due to piston 132 acting on the actuation link 134 via extension from the housing 130 mounted on the body 5 and/or support plate 117 .
- the actuation mechanism 101 can include the support plate 117 that can connect to the mounting plate 115 of the latch 100 and thereby can form part of the latch housing (not shown), as desired. It is recognized that in the embodiment of the latch 100 shown, the mounting plate 115 is connected to the support plate 117 via linkages 118 , e.g. on either side of the mounting plate 115 , such that the linkages 118 are connected by a hinge or pivot 120 at one end to the mounting plate 115 and at the other end via a hinge or pivot 122 to the support plate 117 .
- the support plate 117 can be connected to the body (see FIG. 1A ) via mounting holes 124 .
- the actuation mechanism 101 can be mounted on the body 5 (not shown) or on the support plate 117 itself, such that operation of the actuation mechanism 101 can be used to facilitate movement of the latch 100 from the home position (see FIGS. 12 a,b ) to the extended position (see FIGS. 14 a,b ).
- the actuator mechanism 101 can have the housing 130 with actuation means (e.g. pyrotechnic) for extending and retracting the piston 132 (see FIG. 14 b ) for facilitating movement of the latch 100 (as well as mounting plate 115 ) between the home and extended positions.
- actuation means e.g. pyrotechnic
- the piston 132 is coupled via a coupling member 148 (e.g. U-shaped member) mounted on the head of the piston 132 to the actuator link 134 .
- a coupling member 148 e.g. U-shaped member mounted on the head of the piston 132 to the actuator link 134 .
- the piston 132 is coupled to the linkages 118 , such that a force of the piston 132 on the actuator link 134 causes the linkages 118 to extend and thus move the latch 100 from the home position to the extended position.
- the actuator link 134 has abutting contact with the abutment member 148 to be able to therefore urge the linkages 118 into an upward motion as guided by the motion of the piston 132 during an additional travel of the actuator link 134 .
- the actuator link 134 can be positioned on the latch 100 , itself and/or the mounting plate 115 (for example) in order to provide for extension of the latch 100 when acted upon by the piston 132 (as driven by the actuator mechanism 101 ).
- FIGS. 15, 16 a,b, 17 a,b shown is a further embodiment of the latch 100 coupled to actuation mechanism 101 .
- the closure panel 6 e.g. hood
- FIGS. 17 a,b in ghosted view.
- the piston 132 acts directly on the closure panel 6 , rather than on the link member 134 coupled to the mounting plate 115 (for example see FIG. 12 a ).
- the actuation mechanism 101 can include the support plate 117 that can connect to the mounting plate 115 of the latch 100 and thereby can form part of the latch housing (not shown), as desired. It is recognized that in the embodiments of the latch 100 shown in this embodiment, the mounting plate 115 is connected to the support plate 117 via linkages 118 , such that the linkages 118 are connected by a hinge or pivot 120 at one end to the mounting plate 115 and at the other end via a hinge or pivot 122 to the support plate 117 .
- the support plate 117 can be connected to the body 5 (see FIG. 1A ) via mounting holes (not shown).
- the actuation mechanism 101 can be mounted on the body 5 or on the support plate 117 itself, for example via support member 150 connected to the support plate 117 . Operation of the actuation mechanism 101 can be used to extend and thus push the piston 132 (see FIGS. 17 a,b ) against the closure panel 6 (e.g. inside surface of the closure panel 6 ), thus facilitating movement of the latch 100 from the home position (see FIGS. 16 a,b ) to the extended position (see FIGS. 17 a,b ).
- the piston 132 acts on the closure panel 6 itself, which then causes the striker 96 (in view of the latch 100 still being locked or otherwise engaged with the striker 96 ) to pull the latch 100 and associated mounting plate 115 away from the support plate 117 .
- the travel of the latch 100 and mounting plate 115 is guided by the linkages 118 connecting the support plate 117 to the mounting plate 115 .
- the actuator mechanism 101 can have the housing 130 with actuation means (e.g. pyrotechnic) for extending and retracting the piston 132 (see FIGS.
- FIGS. 17 a,b it is noted that the closure panel 6 is secured to the striker 96 , such that the closure panel 6 and the striker 96 move simultaneously under influence of the piston 132 travel.
- FIGS. 18, 19 a,b, 20 a,b a further embodiment of the latch 100 coupled to actuation mechanism 101 is shown. Similar to the embodiment shown in FIG. 15 , the piston 132 of the actuation mechanism 101 acts directly on the closure panel 6 (see FIGS. 20 a,b ).
- FIG. 18 shows a first set of linkages 118 a connected to a second set of linkages 118 b.
- the first set of linkages 118 a are connected to the support plate 117 by pivots 122 and the second set of linkages 118 b are connected to the mounting plate 115 by pivots 120 .
- the linkages 118 a, 118 b can be interconnected by pivots 152 .
- Pivots 152 have an axis 151 about which linkages 118 a, 118 b rotate where axis 151 is illustratively perpendicular to the planes of movement, for example an upwards movement A 1 and rearwards B 1 movement of mounting plate 115 relative to supporting plate 117 .
- Linkages 118 a, 118 b are disposed in and move within a plane, for example plane P 1 that is perpendicular to the plane of the mounting plate 115 and/or support plate 117 , for example plane P 2 , P 3 , respectively.
- linkages 118 a, 118 b are disposed in and extend within a plane, for example plane P 1 that is perpendicular to the plane P 2 of the mounting plate 115 in which mounting plate 115 moves or travels, for example mounting plate 115 translates in two dimensions (for example upwardly and away from) relative to supporting plate 117 during a rotational movement, or expansion, of linkages 118 a, 118 b.
- a pin 154 and slot 156 arrangement is used to guide the motion of the mounting plate 115 with respect to the supporting plate 117 .
- Operation of the actuation mechanism 101 can be used to extend and thus push the piston 132 (see FIGS. 20 a,b ) against the closure panel 6 (e.g.
- the latch 100 can be coupled to actuation mechanism 101 .
- the actuation mechanism 101 can include the support plate 117 that can connect to the mounting plate 115 of the latch 100 and thereby can form part of the latch housing (not shown), as desired.
- the mounting plate 115 , the support plate 117 and the actuation mechanism 101 can be collectively referred to as a latch travel mechanism 99 or with inclusion with the latch 100 as a latch travel assembly 99 , as desired.
- the mounting plate 115 is connected to the support plate 117 via linkages 118 , such that the linkages 118 are connected by a hinge or pivot 120 at one end to the mounting plate 115 and at the other end via a hinge or pivot 122 to the support plate 117 .
- Pivots 120 , 122 illustratively have an axis 153 about which linkages 118 rotate where axis 153 is illustratively perpendicular to the planes of movement, for example an upwards Al movement, or one dimensional movement, of mounting plate 115 .
- Linkages 118 are disposed in and move within a plane that is parallel to the plane of the mounting plate 115 and/or support plate 117 .
- plane P 4 of linkages 118 is parallel to the plane of the mounting plate 115 and/or support plate 117 , for example plane P 2 , P 3 , respectively.
- linkages 118 are disposed in and extend within a plane, for example plane P 4 that is parallel to the plane P 2 of the mounting plate 115 in which mounting plate 115 moves or travels, for example mounting plate 115 linearly translates relative to supporting plate 117 during a rotational movement or expansion of linkages 118 .
- the support plate 117 can be connected to the body 5 (see FIG. 1A ) via mounting holes 124 .
- FIG. 21 illustrates a pair of opposed linkages 118 , where each opposed linkages 118 is configured as a two-bar linkage. Other types of linkages 118 may be provided, such as a single or multiple bar linkage configuration.
- the assembly 99 can have one or more pin(s) 126 (e.g. blocking rivets) for coupling with a locking member (e.g. locking hook) 128 when the latch 100 is in the home (or non-extended) position (see FIGS. 22 a,b ), such that when the pin 126 is retained by the locking member 128 (e.g. in notch as shown by example) the latch 100 is inhibited from extending (as shown in FIGS. 24 a,b in the extended position).
- the locking member 128 can be configured to pivot about a pivot point (e.g. pivot 127 ), such that the locking member 128 is biased about the pivot point by a biasing member (e.g.
- the assembly 99 can have a pair of locking members 128 , such that locking member 128 and the second locking member 128 are opposed to one another on either side of the pivot 127 (e.g. mirrored to one another). It is also recognized that one locking member 128 can be utilized in order to restrain the mounting plate in the home position, as desired.
- the decoupling plate 170 is coupled to the actuation mechanism 101 at one end by a tab 172 , such that force applied by the piston 132 (see FIG. 24 a ) of the actuation mechanism 101 on the tab 172 results in removal of an abutment 178 from abutment surface 180 of the locking member 128 , thus allowing the locking member 128 to become decoupled from the pin(s) 126 upon further movement of the piston 132 .
- the decoupling plate 170 is connected to the mounting plate 115 by a pin 182 and slot 184 arrangement, such that movement of the decoupling plate 170 from a coupled to an uncoupled position is accomplished via travel of the pin(s) 182 in the slot 184 .
- Two or more pins 182 may be provided to assist with preventing tilting TM of the mounting plate 115 .
- further movement of the decoupling plate 170 by the piston 132 concurrently moves the mounting plate 115 and thus the latch 100 from the home position to the extended position (see FIG. 24 b ).
- the travel stop 190 could be positioned on the decoupling plate 170 other than with respect to the slot 184 (not shown), so long as once the travel of the decoupling plate 170 reaches the position shown in FIG. 23 b for decoupling the stop 178 with the abutment surface 180 of the locking member 128 , further travel of the decoupling plate 170 (under influence of the piston 132 travel) causes the travel stop 190 to engage with the mounting plate 115 and thus move the mounting plate 115 from the home position to the extended position. It is recognized that the movement of the linkages 118 guide the travel of the mounting plate 115 from the home position to the extended position, once the pins 126 are removed from the notches 123 of the locking member(s) 128 .
- Slot 124 includes inwardly protruding tabs 171 configured to engage pins 182 to restrict upward motion of mounting plate 115 below a predetermined force as applied by the pins 182 on the tabs 171 in response to upward movement of mounting plate 115 .
- Inwardly protruding tabs 171 may be configured to be deformable, breakable, bendable, crushable or the like such that above the predetermined force applied by the pints 182 on the tabs 171 , the pins 182 may bypass the tabs 171 and continue travel within slot 124 thereafter in an unrestricted upward motion of the mounting plate 115 as guided by the slot 124 .
- Guide slot 124 and pins 140 arrangement as an example of a guide configuration provided between the mounting plate and the supporting plate 117 may also act to restrict a tilting motion TM of the mounting plate 115 during the deployment of the mounting plate 115 as a result of the extending linkages 118 to stabilize the mounting plate 115 and the linkage 118 during expansion of the linkages 118 from the collapsed state of the linkages 118 , as illustratively shown in FIGS. 31G and 31H for example.
- FIG. 31G illustrates a tilting motion TM of the mounting plate 115 as a result of the piston 132 acting directly or indirectly on the plate, and for example off centered the mounting plate 115
- 31H illustratively shows a tilting motion TM of the mounting plate 115 as a result of the piston 132 acting directly on the closures panel 6 which urges the striker 96 to pull the mounting plate 115 upwardly, for example as a result of the striker 96 retained in by latch elements 110 (e.g. a ratchet 24 ).
- More than one guide slide 124 may be provided between mounting plate 115 and supporting plate 117 , and/or between at least one of mounting plate 115 and supporting plate and linkage 118 . It is recognized a guide configuration provided between one of the mounting plate 115 and the support plate 117 and the linkage 118 may also be provided.
- the tab 172 can come into contact with the closure panel 6 (for example see FIG. 17 a ), after the locking member(s) 128 are decoupled from the pin(s) 126 (see FIG. 23 b ), and thus as further piston 132 travel moves the closure panel 6 the latch 100 and mounting plate 115 also move therewith as the striker 96 remains retained by the latch 100 .
- the pin(s) 126 can travel in a travel slot 192 formed in the locking members 128 themselves. Upon reaching the end travel of the travel slot 192 (i.e. when the latch 100 is in the extended position), the pin(s) 126 can be received in a locking notch 196 , thus facilitating holding of the closure panel 6 in the extended position along with the mounting plate 115 and mounted latch 100 thereon. As such, movement of the locking member(s) 128 about pivot 127 can be guided by travel of the pin 126 in the travel slot 192 . Similarly, the movement of the pin 126 in the travel slot 184 can be used to guide the movement of the linkages 118 , as desired.
- biasing member 174 can be used to decouple the locking members 128 from the pins 126 once the decoupling plate is initially moved by the actuation mechanism 101 (see FIG. 23 b ), as the biasing member 174 biases the pins 126 out of engagement with the notches 123 . Further, the biasing member 174 can be used to bias pivot of the locking members 128 about the pivot 127 , thus facilitating travel of the pins 126 in the travel slot 192 from the notch 123 to the notch 196 .
- the latch travel mechanism 99 of FIG. 21 can include the mounting plate 115 coupled to the support plate 117 via the pins 140 and slot 142 arrangement, such that the pins 140 are connected to the mounting plate 115 and the slots 142 are formed in the support plate 117 (recognizing that the opposite configuration can also be provided).
- the pins 140 travel along the slot 142 as the actuation mechanism 101 moves the mounting plate 115 from the home position (e.g. retracted position) to the extended position.
- the pin 140 and slot 142 arrangement can be used to stabilize or otherwise guide the relative movement between the support plate 117 and the mounting plate 115 , as the mounting plate 115 moves from the home position to the extended position.
- the pin 140 and slot 142 arrangement can be positioned opposite the latch 100 between sides 117 a of the support plate 117 .
- Two or more pins 140 may be provided for one slot 142 as illustratively shown in FIG. 29C to prevent rotation or tiling TM of the mounting plate 115 relative to the support plate 117 in accordance with an illustrative example.
- the pin 140 and slot 142 arrangement can be positioned on the side 117 a, as desired.
- FIGS. 29 a,b,c an alternative embodiment of the travel mechanism 99 of FIG. 21 , showing an example position of the pin 140 and slot 142 arrangement between the sides 117 a of the support plate 117 ,
- FIGS. 30A to 30F there is illustrated a sequence of views of deployment of latch 100 as a result of an active pedestrian operating mode in which a pedestrian has been detected to have contacted the vehicle 10 , or is almost about to contact the vehicle 10 by a controller 121 which will in turn control the firing of actuation mechanism 101 to deploy piston 132 .
- FIG. 30A illustrates the piston 132 in a rest position immediately prior to firing of actuation mechanism 101 .
- Linkages 118 are in a non-deployed or collapsed state.
- Locking members 128 are in a locked state to prevent a relative movement between mounting plate 115 and support plate 117 .
- Piston 132 is not in engagement with tab 172 .
- FIG. 30B illustrates the piston 132 in an initially deployed position immediately after firing of actuation mechanism 101 .
- Linkages 118 remain in a non-deployed or collapsed state.
- Locking members 128 remain in a locked state to prevent a relative movement between mounting plate 115 and support plate 117 .
- Piston 132 has entered into initial engagement with tab 172 .
- FIG. 30C illustrates the piston 132 in a continued deployed position after firing of actuation mechanism 101 .
- Linkages 118 are now in an initial deployed or expanding state.
- Locking members 128 are now in an unlocked state to allow a relative movement between mounting plate 115 and support plate 117 , for example to allow linkages 118 to transition into the initial deployed or expanding state.
- Piston 132 has entered into initial engagement with tab 172 to move tab 172 and pin 126 to decouple from a blocking position of pin 126 with locking member 128
- FIG. 30D illustrates the piston 132 in a further continued intermediary deployed position after firing of actuation mechanism 101 .
- Linkages 118 are now in an intermediary deployed or expanding state.
- Locking members 128 remain in an unlocked state to allow a relative movement between mounting plate 115 and support plate 117 , for example to allow linkages 118 to continue to transition into the deployed or expanding state.
- Piston 132 remains in engagement with tab 172 to move tab 172 upwardly.
- Tab 172 has entered into contact with an underside of closure panel 6 (e.g. hood) to begin moving the closure panel 6 (e.g. hood) upwardly into an active pedestrian protection position, or partially opened position.
- FIG. 30E illustrates the piston 132 in a further continued intermediary deployed position after firing of actuation mechanism 101 .
- Linkages 118 continue to be deployed or transition towards a fully expanded state.
- Locking members 128 remain in an unlocked state to allow a relative movement between mounting plate 115 and support plate 117 , for example to allow linkages 118 to continue to transition into the deployed or expanding state.
- Piston 132 has remained in engagement with tab 172 to move tab 172 upwardly and tab 172 remains entered into contact with an underside of closure panel 6 (e.g. hood) to continue to urge the closure panel 6 (e.g. hood) upwardly into an active pedestrian protection position, or partially opened position.
- FIG. 30F illustrates the piston 132 in an end of travel deployed position after firing of actuation mechanism 101 .
- Linkages 118 are in a fully deployed or expanded state to provide the final pop-up height of the closure panel 6 (e.g. hood).
- Locking members 128 may enter into a blocking or locked state to maintain the final deployed position between mounting plate 115 and support plate 117 , for example to maintain linkages 118 in their deployed or expanded state.
- Piston 132 may remain in engagement with tab 172 to maintain tab 172 upwardly an in contact with an underside of closure panel 6 (e.g. hood) to hold the position of the closure panel 6 (e.g. hood) upwardly in the active pedestrian protection position, or partially opened position.
- locking members 128 in the blocking or locked state may maintain the final deployed position between mounting plate 115 and support plate 117 , for example by maintaining linkages 118 in their deployed or expanded state, such that ratchet 100 urges the striker 96 and thus the closure panel 6 in the active pedestrian deployed state.
- closure panel 6 is illustrated to have moved from a closed position height H 1 in FIG. 30A , to a partially opened position having a pop-up height H 3 as shown in FIG. 30F .
- Closure panel 6 is permitted to be moved to pop-up height H 3 as a result of deployment or expanding of linkages 118 from a compact collapsed state as shown in FIG.
- linkage 118 may provide a compact pre-deployed dimension advantageous for providing a small packaging size of latch 100 , and a greater post-deployed dimension advantageous for providing an increase in pop-up height of the closure panel 6 relative to a size of the latch 100 housing the linkage 118 .
- FIGS. 31A to 31F there is illustrated a sequence of views of deployment of linkages 118 from a collapsed state of FIG. 31A to an expanded state of FIG. 31F , corresponding to FIGS. 30A to 30F respectively.
- FIG. 31A illustrates a compact packaging dimension D 1 of linkages advantageous for reducing the packaging size of latch 100 , with FIG. 31F illustrating an expanded state as shown in having an unpackaged dimension D 2 , where dimension D 2 is greater than D 1 .
- FIG. 31A to 31F is the rotational movement of the linkages 118 about pivots 120 , 122 .
- linkages 118 follow a path of rotation R towards and away from one another, such that linkages 118 do not interfere with one another during expansion of linkages 118 .
- Linkages 118 may also be provided in an overlapping manner such that linkages 118 may cross one another during deployment to reduce the width W of the latch 100 while maintaining the length L of the linkages 118 to provide the desired pop-up height.
- Linkages 118 may be provided having equal lengths, or may be provided having different lengths, for example lower linkage 1181 may be provided with a shorter length than upper linkage 118 u depending on the desired packaging width W of latch 100 .
- FIG. 25 shown is a further embodiment of the latch travel assembly 99 , in particular whereby the latch 100 remains stationary during actuation of the actuation mechanism 101 (i.e. the position of the mounting plate 15 is fixed with respect to the body 5 as mounted thereon), while linkages 118 provide for movement of a striker plate 202 coupled to the striker 96 upon movement of the closure panel 6 (see FIG. 28 b ) by the actuation mechanism 101 .
- the mounting plate 115 can be mounted to the body 5 (shown in ghosted view) via mounting holes 124 .
- the actuation mechanism 101 can be mounted directly to the body 5 (not shown) and/or mounted to the mounting plate 115 via an actuator bracket 200 .
- the decoupling plate 170 in this embodiment is coupled to pin 126 which is engaged with the locking member 128 when the actuation mechanism 101 is prior to deployment (in this case where the movable striker plate 202 is in the home position—see FIG. 26 b ).
- the striker 96 is connected to the striker plate 202 mounted to the closure panel 6 .
- the striker 96 is pivotally coupled (recognizing that other forms of movable coupling can be provided) to the striker plate 202 by the linkages 118 .
- the linkages 118 can be pivotally connected at one end to the striker plate 202 by pivots 204 and at the other end to the striker 96 by pivots 206 .
- holding pins 208 can be spring loaded, in order to retain the striker plate 202 in the extended position (see FIG. 28 b ).
- the holding pins 208 can be biased by biasing members (not shown) to contact an abutment surface 210 of the linkages 118 when the striker plate 202 reaches the extended position. As such, return of the striker plate 202 to the home position is blocked by the holding pins 208 when engaged with the abutment surface 210 .
- the actuation mechanism 101 Upon operation of the embodiment shown in FIG. 25 , the actuation mechanism 101 initially moves the decoupling plate 170 in order to disengage the pin 126 from the locking member 128 (i.e. the member 128 stopping movement of the linkages 118 when engaged therewith). Once the locking member 128 is freed from restricted movement by displacement of the pin 126 , the locking member becomes disengaged from the linkages 118 and thus further operation of the actuation mechanism 101 cases contact of the decoupling plate 170 with the closure panel 6 (e.g. via the striker plate 202 ) and thus further extension of the piston 132 causes the closure panel 6 to extend from the home position to the extended position.
- the device of the actuation mechanism can include a fluid-actuated cylinder, a control valve and a source of pressurized fluid.
- the cylinder can includes a cylinder housing and a piston that is movable in the cylinder housing between an unactuated position and an actuated position.
- a piston biasing member (not shown) can be provided and can bias the piston towards the unactuated position, so as to keep the piston in the unactuated position when the vehicle 4 is not incurring a collision event.
- the control valve prevents fluid flow to the cylinder thereby preventing actuation of the cylinder.
- control valve In the open position the control valve permits fluid flow from the source of pressurized fluid to the cylinder to drive the piston to the actuated position.
- the source of pressurized fluid may simply be a vessel containing any suitable fluid, such as, for example, compressed Carbon Dioxide at a suitable pressure, such as, for example 2000 psi.
- the control valve may be referred to as a release member that is controllable to expose the piston to the pressurized fluid.
- the source of pressurized fluid may be an inflation device that is similar to an airbag inflation device, and that includes an igniter and two combustible chemicals, such as Sodium Azide and Potassium Nitrate, which, when ignited by the igniter, generate Nitrogen at high pressure which can be used to drive the piston to the actuated position.
- a control valve would not be needed.
- a controller controls the operation of the igniter.
- the igniter may be referred to as a release member that is controllable to expose the piston to the pressurized fluid.
- the latch travel mechanism 99 for the closure panel 6 of the vehicle 4 can include: the mounting plate 115 for mounting the latch 100 , the latch 100 for retaining the closure panel 6 in a locked state; the support plate 117 coupled to the mounting plate 115 by one or more linkages 118 , the support plate 117 for connecting to the body 5 of the vehicle 4 ; the locking member 128 mounted on the support plate 117 and configured for retaining the mounting plate 115 in a home position when coupled to the mounting plate 115 and for decoupling from the mounting plate 115 when operated; and the actuation mechanism 101 for mounting on at least one of the support plate 117 or the body 5 and coupled to the linkages 118 for extending the linkages 118 once the locking member 128 is decoupled from the mounting plate 115 in order to move the mounting plate 115 relative to the support plate 117 from the home position to an extended position; wherein the latch 100 is moved from the home position to the extended position when mounted on the mounting plate 115 .
- the latch travel mechanism 99 for the closure panel 6 of the vehicle 4 can also comprise: the mounting plate 115 for mounting the latch 100 , the latch 100 for retaining the closure panel 6 ; the support plate 117 coupled to the mounting plate 115 , the support plate 117 for connecting to the body 5 of the vehicle 4 ; and the actuation mechanism 101 mounted on at least one of the support plate 117 or the body 5 and coupled to the mounting plate 115 for acting on the mounting plate 115 to move the mounting plate 115 relative to the support plate 117 from the home position to the extended position; wherein the latch 100 is moved from the home position to the extended position when mounted on the mounting plate 115 .
- the latch travel mechanism 99 for the closure panel 6 of the vehicle 4 can also comprise: the mounting plate 115 for mounting the latch 100 , the latch 100 for retaining the closure panel 6 ; the support plate 117 coupled to the mounting plate 115 , the support plate 117 for connecting to the body 5 of the vehicle 4 ; and the actuation mechanism 101 for mounting on at least one of the support plate 117 or the body 5 and for coupling to the closure panel 6 for moving the closure panel 6 from the home position to the extended position, such that the mounting plate 115 also moves relative to the support plate 117 while the closure panel 6 is retained by the latch 100 ; wherein the latch 100 is moved from the home position to the extended position when mounted on the mounting plate 115 .
- a latch travel mechanism for a closure panel of a vehicle comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the locking member for extending the linkages once the locking member is disengaged from the one or more linkages in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch.
- the latch travel mechanism wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages.
- a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel; a mounting plate having the latch mounted thereon; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the locking member for extending the linkages once the locking member is disengaged from the one or more linkages in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch.
- the latch travel mechanism wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages.
- a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel via a striker; a striker plate mounting the striker, the striker for engaging with the latch for retaining the closure panel, the striker plate mounting the striker to the closure panel; a support plate coupling to a body of the vehicle, the support plate mounting the latch to the body; one or more linkages coupling the striker to the striker plate; a locking member mounted on the striker plate and configured for retaining the one or more linkages in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism mounted on at least one of the support plate or the body and coupled to the striker plate for extending the one or more linkages once the locking member is disengaged from the one or more linkages in order to move the striker plate relative to the support plate from the home position to an extended position; wherein the striker plate is moved from the home position to the
- FIGS. 32A to 32C there is illustrated an active hood system 200 including latch 100 , closure panel 6 , and hinges 98 .
- FIG. 32A shows the mating latch component 96 at an initial height H 1 and engaged with the ratchet 24 , the ratchet 24 being held by the pawl 40 in the primary latched position.
- Locking member 128 is coupled with the pin 126 , and in this state, the linkages 118 are retracted and in a collapsed state with pivots 120 , 122 adjacent to one another as the mounting plate 115 is seated adjacent to the support plate 117 .
- an active pedestrian event e.g. an imminent collision or detected collision of the vehicle 4 with a pedestrian using sensors
- the active pedestrian control system 121 , or the vehicle Body Control Module being in electrical communication with actuation mechanism 101 , commands actuation mechanism 101 to fire to deploy the piston 132 .
- the ratchet 24 remains engaged by the pawl 40 , locking member 128 is decoupled with the pin 126 to allow the linkages 118 to expand, and mounting plate 115 and support plate 117 have moved apart from one another, and for example the mounting plate 115 has moved upwardly in a linear manner within a plane P 2 , for example a distance A 1 , to urge at least one of the mating latch component 96 and the closure panel 6 , as a result of pivoting at hinge 98 , to be moved upwardly without for example any aftward movement,
- mating latch component 96 may be configured to slide relative to ratchet 24 within slot 114 such that the movement of mounting plate 115 is unhindered by the mating latch component 96 , for example as would be caused by the type of hinge 98 , such as hinge 98 providing a pivoting connection between the closure panel 6 and the vehicle body 5 .
- Latch component 96 embodied as a striker formed from a bent rod may include a horizontally extending portion 199 which may be adapted to be extended in length to accommodate such a horizontal portion within the slot 114 such that vertically extending portions 197 do not contact with ratchet 24 to hinder the aftwards movement of mounting plate 115 .
- FIG. 33 there is illustrated a method 1000 for operating a latch travel mechanism coupled to a closure panel of a vehicle, the method illustratively including the steps of maintaining a linkage provided between a mounting plate and a support plate in a collapsed state, the mounting plate having a latch mounted thereon for retaining the closure panel in a closed position with respect to a body of the vehicle, the mounting plate coupled to a support plate connected to the body of the vehicle 1002 , operating an actuation system in order to move the mounting plate relative to the support plate from the home position to an extended position 1004 , and expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to an extended position 1006 , such that the latch is also moved from the home position to the extended position as mounted on the mounting plate.
- the step of expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to an extended position 1006 may include expanding the linkage from a collapsed state having collapsed dimension to an expanded state having an expanded dimension, wherein the expanded dimension is greater than the collapsed dimension.
- the step of expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to an extended position 1006 may include expanding the linkage in a plane parallel to the plane of one of the support plate and the mounting plate.
- the method may further include the step of guiding the support plate relative to the mounting plate during expansion of the linkage so as to prevent the support plate and the mounting plate to pivot relative one another.
- the method may further include the step of guiding one of the support plate and the mounting plate relative to the linkage during expansion of the linkage so as to prevent the support plate and the mounting plate to pivot relative one another.
- the step of operating an actuation system 1004 may include moving the closure panel relative to the support plate, for example operating the actuation system to act directly or indirectly on the closure panel.
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Abstract
A latch travel mechanism for a closure panel of a vehicle, the mechanism comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle; and an actuation mechanism mounted on at least one of the support plate or the body and coupled to either the closure panel or the mounting plate to move the mounting plate relative to the support plate from a home position to an extended position; wherein the latch is moved from the home position to the extended position when mounted on the mounting plate. The latch travel mechanism also has a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated.
Description
- This application claims priority from U.S. Provisional Patent Application No. 62/667,172 filed on May 4, 2018; the entire contents of which are hereby incorporated by reference.
- This disclosure relates to vehicle safety systems.
- The automotive industry is attempting to better protect pedestrians from head on collisions with vehicles. When a car hits a pedestrian in a front end collision, the pedestrian can be thrown up and land on the front hood of the vehicle and/or the windshield. In an effort to ameliorate the harshness of the impact, and in particular to prevent the person's head from hitting the engine block or other hard point located directly underneath the front hood, it is desired to actively space the front hood from the engine block whenever a front end collision is detected. In particular, when a front end collision is detected by crash sensors, it is desired to move the front hood in a very short period of time (e.g., in milliseconds) from a first aerodynamic position where the front hood is normally located very close to the engine block to a second position where the front hood is actively moved few centimeters further away from the engine block. This activity could provide the pedestrian's head and/or torso with sufficient time and/or space to decelerate when the pedestrian impacts the front hood and thus prevent fatal injury.
- Other problems in industry related to safety systems is actuation speed and/or actuation distance of safety devices (e.g. device response time) tempered with actuation power requirements. A further problem in industry is the need for a smaller packaging size of safety systems. A further problem in industry is the need for reduced cost of safety systems, including module components to facilitate replacement a reduction in replacement costs.
- It is an object to the present invention to provide a latch travel mechanism to obviate or mitigate at least one of the above-mentioned problems.
- A first aspect provided is a latch travel mechanism for a closure panel of a vehicle, the mechanism comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when coupled to the mounting plate and for decoupling from the mounting plate when operated; and an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the linkages for extending the linkages once the locking member is decoupled from the latch in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position when mounted on the mounting plate.
- A second aspect latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel; a mounting plate having the latch mounted thereon; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member for mounting on the support plate and for retaining the mounting plate in a home position when coupled to the mounting plate and for decoupling from the mounting plate when operated; and an actuation mechanism mounted on at least one of the support plate or the body and coupled to the linkages for extending the linkages once the locking member is decoupled from the latch in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch.
- A third aspect provided is a latch travel mechanism for a closure panel of a vehicle, the mechanism comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle; and an actuation mechanism mounted on at least one of the support plate or the body and coupled to the mounting plate for acting on the mounting plate to move the mounting plate relative to the support plate from a home position to an extended position; wherein the latch is moved from the home position to the extended position when mounted on the mounting plate.
- A fourth aspect provided is a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panela mounting plate having the latch mounted thereon; a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle; an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the mounting plate for acting on the mounting plate to move the mounting plate relative to the support plate from a home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch.
- A fifth aspect provided is a latch travel mechanism for a closure panel of a vehicle, the mechanism comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle; and an actuation mechanism for mounting on at least one of the support plate or the body and for coupling to the closure panel for moving the closure panel from a home position to an extended position, such that the mounting plate also moves relative to the support plate while the closure panel is retained by the latch; wherein the latch is moved from the home position to the extended position when mounted on the mounting plate.
- A sixth aspect provided is a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel; a mounting plate having the latch mounted thereon; a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle; an actuation mechanism for mounting on at least one of the support plate or the body and for coupling to the closure panel for moving the closure panel from a home position to an extended position, such that the mounting plate also moves relative to the support plate while the closure panel is retained by the latch; wherein the latch is moved from the home position to the extended position with the mounting plate.
- A seventh aspect provided is a latch travel mechanism for a closure panel of a vehicle, the mechanism comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the locking member for extending the linkages once the locking member is disengaged from the one or more linkages in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch. The latch travel mechanism, wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages.
- An eighth aspect provided is a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel; a mounting plate having the latch mounted thereon; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the locking member for extending the linkages once the locking member is disengaged from the one or more linkages in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch. The latch travel mechanism, wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages.
- A ninth aspect provided is a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel via a striker; a striker plate mounting the striker, the striker for engaging with the latch for retaining the closure panel, the striker plate mounting the striker to the closure panel; a support plate coupling to a body of the vehicle, the support plate mounting the latch to the body; one or more linkages coupling the striker to the striker plate; a locking member mounted on the striker plate and configured for retaining the one or more linkages in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism mounted on at least one of the support plate or the body and coupled to the striker plate for extending the one or more linkages once the locking member is disengaged from the one or more linkages in order to move the striker plate relative to the support plate from the home position to an extended position; wherein the striker plate is moved from the home position to the extended position while the striker is retained by the latch.
- A tenth aspect provided is a latch travel mechanism for a closure panel of a vehicle, the mechanism comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages as facilitated by an actuation mechanism; and the actuation mechanism for mounting on at least one of the support plate or the body and coupled to the locking member for extending the linkages once the locking member is disengaged from the one or more linkages in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the mounting plate is moved from the home position to the extended position during operation of the actuation mechanism.
- In accordance with another aspect, there is provided a method for operating a latch travel mechanism coupled to a closure panel of a vehicle, the method illustratively including the steps of maintaining a linkage provided between a mounting plate and a support plate in a collapsed state, the mounting plate having a latch mounted thereon for retaining the closure panel in a closed position with respect to a body of the vehicle, the mounting plate coupled to a support plate connected to the body of the vehicle, operating an actuation system in order to move the mounting plate relative to the support plate from the home position to an extended position, and expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to an extended position, such that the latch is also moved from the home position to the extended position as mounted on the mounting plate.
- In accordance with another aspect, there is provided an active pedestrian system including a closure panel of a vehicle comprising a striker, a latch travel mechanism for the closure panel, the mechanism including a mounting plate for mounting a latch, the latch comprising a ratchet for retaining the striker, the latch for retaining the closure panel in a closed position with respect to a body of the vehicle, a support plate coupled to the mounting plate, the support plate for connecting to a body of the vehicle, one or more linkages connected to the support plate at one end and connected to the mounting plate at another end, the one or more linkages providing said coupled to the mounting plate, one or more linkages expandable in a plane parallel with the plane of at least one of the mounting plate and the support plate, and an actuation system coupled to at least one of the support plate, the mounting plate and the linkages for extending the linkages in order to move the mounting plate relative to the support plate from a home position to an extended position, wherein the latch is also moved from the home position to the extended position when mounted on the mounting plate, wherein the striker moves relative to the ratchet when the latch is moved.
- The foregoing and other aspects will be more readily appreciated having reference to the drawings, wherein:
-
FIG. 1A is a perspective view of an example vehicle using a safety actuation system; -
FIG. 2 is a front elevation view of the hood latch ofFIG. 1A shown in isolation; -
FIG. 3 is a front perspective view of the hood latch ofFIG. 1A shown in a primary home position; -
FIG. 3A is a front perspective exploded view of the hood latch ofFIG. 3 ; -
FIGS. 4a and 4b show respectively a side and front view of the latch ofFIG. 1 as retained in the home position; -
FIGS. 5a and 5b show respectively a side and front view of the latch ofFIG. 1 as released while yet in the home position; -
FIGS. 5c and 5d show respectively a side and front view of the latch ofFIG. 1 as released and in a partially deployed position; -
FIGS. 6a and 6b show respectively a side and front view of the latch ofFIG. 1 as released and in an extended position; -
FIG. 7 shows perspective front view of the latch ofFIG. 1 as released and in the extended position; -
FIG. 8a is a front perspective view of a further embodiment of the actuation system shown inFIG. 3 ; -
FIG. 8b is a rear perspective view of a further embodiment of the actuation system shown inFIG. 3 ; -
FIG. 9a is a side view of the actuation system shown inFIG. 8a in a locked state; -
FIG. 9b is a front view of the actuation system shown inFIG. 8a in a locked state; -
FIG. 10a is a side view of the actuation system shown inFIG. 8a in an unlocked state; -
FIG. 10b is a front view of the actuation system shown inFIG. 8a in an unlocked state; -
FIG. 11a is a side view of the actuation system shown inFIG. 8a in an extended position; -
FIG. 11b is a front view of the actuation system shown inFIG. 8a in an extended position; -
FIG. 12a is a front perspective view of a still further embodiment of the actuation system shown inFIG. 3 ; -
FIG. 12b is a rear perspective view of a still further embodiment of the actuation system shown inFIG. 3 ; -
FIG. 13a is a side view of the actuation system shown inFIG. 12a in a home position; -
FIG. 13b is a front view of the actuation system shown inFIG. 12a in a home position; -
FIG. 14a is a side view of the actuation system shown inFIG. 12a in an extended position; -
FIG. 14b is a front view of the actuation system shown inFIG. 12a in an extended position; -
FIG. 15 is a front perspective view of a still further embodiment of the actuation system shown inFIG. 3 ; -
FIG. 16a is a side view of the actuation system shown inFIG. 15 in a home position; -
FIG. 16b is a front view of the actuation system shown inFIG. 15 in a home position; -
FIG. 17a is a side view of the actuation system shown inFIG. 15 in an extended position; -
FIG. 17b is a front view of the actuation system shown inFIG. 15 in an extended position; -
FIG. 18 is a front perspective view of a still further embodiment of the actuation system shown inFIG. 3 ; -
FIG. 19a is a side view of the actuation system shown inFIG. 18 in a home position; -
FIG. 19b is a front view of the actuation system shown inFIG. 18 in a home position; -
FIG. 20a is a side view of the actuation system shown inFIG. 18 in an extended position; -
FIG. 20b is a front view of the actuation system shown inFIG. 18 in an extended position; -
FIGS. 21, 22 a, 22 b, 23 a, 23 b, 24 a, and 24 b show a still further embodiment of the actuation system shown inFIG. 3 ; -
FIGS. 25, 26 a, 26 b, 27 a, 27 b, 28 a and 28 b show a still further embodiment of the actuation system shown inFIG. 1A ; -
FIG. 29a is a front view of the actuation system shown in collapsed state in accordance with an illustrative embodiment; -
FIG. 29b is a front view of the actuation system ofFIG. 29a shown in expanded state in accordance with an illustrative embodiment; -
FIG. 29c is a rear perspective view of the actuation system ofFIG. 29a illustrative a guide mechanism, in accordance with an illustrative embodiment; -
FIGS. 30A to 30F are a series of sequential views of a mating latch component being moved by the latch ofFIG. 21 from an initial position to an active pop-up position; and -
FIGS. 31A to 31F are a series of sequential views of the actuation system ofFIG. 21 being moved from an initial collapsed position to an active pop-up position; -
FIGS. 31G and 31H illustrates a tilting motion of mountingplate 115 of actuation system ofFIG. 21 during movement from an initial collapsed position to an active pop-up position, in accordance with an illustrative embodiment; -
FIGS. 32A to 32C are a series of sequential views of the actuation system corresponding toFIGS. 31A to 31F , illustrating a linkage transitioning between a collapsed state to an expanded state; -
FIG. 33 is a method of operating a hood latch with a safety actuation system in accordance with an illustrative embodiment. -
FIG. 34A is a side view of actuation system ofFIG. 21 having a locking assembly in a locked state, in accordance with an illustrative embodiment; and -
FIG. 34B is a side view of actuation system ofFIG. 21 having a locking assembly in an unlocked state, in accordance with an illustrative embodiment. - Referring to
FIG. 1A , shown is avehicle 4 with a vehicle body 5 having one ormore closure panels 6. Theclosure panel 6 is connected to the vehicle body 5 via one or more panel operation components 8, for example such as but not limited to ahinge 98 and/or a latch 100 (e.g. for retaining theclosure panel 6 in a closed position once closed or for retaining theclosure panel 6 in an open position once opened). It is also recognized that thehinge 98 can be configured as a biased hinge that can be configured to bias theclosure panel 6 towards the open position and/or towards the closed position. Further, the panel operation component 8 can be configured as a lift assist system including one or more struts, not shown, for example used in tail lift gate systems. Theclosure panel 6 can have a mating latch component 96 (e.g. striker) mounted thereon for coupling with a respective panel operation component 8 (e.g. latch) mounted on the vehicle body 5. Alternatively, the panel operation component 8 can be mounted on theclosure panel 6 and themating latch component 96 mounted on the body 5 (not shown). In further alternative, the panel operation component 8 can be used to operatively couple theclosure panel 6 to the body 5, such as the case for thehinge 98. - The panel operation components 8 provide for movement of the
closure panel 6 between a closed panel position (shown in dashed outline) and an open panel position (shown in solid outline), such that the operation component(s) 8 can be involved during the movement of theclosure panel 6 between the open panel position and the closed panel position (e.g. for a hinge 98), can be involved in driving the movement of theclosure panel 6 towards the open panel position (e.g. for an opening latch 100), or can be involved in driving the movement of theclosure panel 6 towards the closed panel position (e.g. for a retaining latch 100). In the embodiment shown, theclosure panel 6 pivots between the open panel position and the closed panel position about a pivot axis 9 (e.g. of the hinge 98), which can be configured as horizontal or otherwise parallel to a support surface 11 of thevehicle 4. In other embodiments, the pivot axis 9 may have some other orientation such as vertical or otherwise extending at an angle outwards from the support surface 11 of thevehicle 4. In still other embodiments, theclosure panel 6 may move in a manner other than pivoting, for example, theclosure panel 6 may translate along a predefined track or may undergo a combination of translation and rotation between the open and closed panel positions, such that thehinge 98 includes both pivot and translational components (not shown). As can be appreciated, theclosure panel 6 can be embodied, for example, as a hood, passenger door or lift gate (otherwise referred to as a hatch) of thevehicle 4. Also provided is anactuation mechanism 101 coupled to one or more of the panel operation components 8, such that theactuation mechanism 101 is configured for actuating the operation or otherwise bypassing the operation of the one or more panel operation components 8, as further described below. In this manner, theactuation mechanism 101 can be used to forcefully provide, during deployment, some form of force assisted open operation (e.g. full open, partial open, etc.) of theclosure panel 6. Theactuation mechanism 101 can be deployed by any accelerated reaction time methods suitable, e.g. pyrotechnic, hydraulic, mechanical, and electrical, as desired. - For
vehicles 4, theclosure panel 6 can be referred to as a partition or door, typically hinged, but sometimes attached by other mechanisms such as tracks, in front of anopening 13 which is used for entering and exiting thevehicle 4 interior by people and/or cargo. It is also recognized that theclosure panel 6 can be used as an access panel forvehicle 4 systems such as engine compartments and also for traditional trunk compartments ofautomotive type vehicles 4. Theclosure panel 6 can be opened to provide access to theopening 13, or closed to secure or otherwise restrict access to theopening 13. It is also recognized that there can be one or more intermediate open positions (e.g. unlatched position) of theclosure panel 6 between a fully open panel position (e.g. unlatched position) and fully closed panel position (e.g. latched position), as provided at least in part by the panel operation component(s) 8. For example, the panel operation component(s) 8 can be used to provide an opening force (or torque) and/or a closing force (or torque) for theclosure panel 6. - Movement of the closure panel 6 (e.g. between the open and closed panel positions) can be electronically and/or manually operated, where power assisted
closure panels 6 can be found on minivans, high-end cars, or sport utility vehicles (SUVs) and the like. As such, it is recognized that movement of theclosure panel 6 can be manual or power assisted during operation of theclosure panel 6 at, for example: between fully closed (e.g. locked or latched) and fully open (e.g. unlocked or unlatched); between locked/latched and partially open (e.g. unlocked or unlatched); and/or between partially open (e.g. unlocked or unlatched) and fully open (e.g. unlocked or unlatched). It is recognized that the partially open configuration of theclosure panel 6 can also include a secondary lock (e.g. closure panel 6 has a primary lock configuration at fully closed and a secondary lock configuration at partially open—for example forlatches 100 associated with vehicle hoods). - In terms of
vehicles 4, theclosure panel 6 may be a hood, a lift gate, or it may be some other kind ofclosure panel 6, such as an upward-swinging vehicle door (i.e. what is sometimes referred to as a gull-wing door) or a conventional type of door that is hinged at a front-facing or back-facing edge of the door, and so allows the door to swing (or slide) away from (or towards) theopening 13 in the body 5 of thevehicle 4. Also contemplated are sliding door embodiments of theclosure panel 6 and canopy door embodiments of theclosure panel 6, such that sliding doors can be a type of door that open by sliding horizontally or vertically, whereby the door is either mounted on, or suspended from a track that provides for alarger opening 13 for equipment to be loaded and unloaded through theopening 13 without obstructing access. Canopy doors are a type of door that sits on top of thevehicle 4 and lifts up in some way, to provide access for vehicle passengers via the opening 13 (e.g. car canopy, aircraft canopy, etc.). Canopy doors can be connected (e.g. hinged at a defined pivot axis and/or connected for travel along a track) to the body 5 of the vehicle at the front, side or back of the door, as the application permits. It is recognized that the body 5 can be represented as a body panel of thevehicle 4, a frame of thevehicle 4, and/or a combination frame and body panel assembly, as desired. - Referring again to
FIG. 1 , theclosure panel 6 can be configured as a hood panel of thevehicle 4, such that eachhinge 98 andrespective actuation mechanism 101 is configured as a hinge assembly 94, and thelatch 100 andactuation mechanism 101 is configured as a latch assembly 10. It is recognized that theactuation mechanism 101 of the hinge assembly 84 can be optional, as desired. - Referring to
FIG. 2 , one embodiment of thelatch 100 includes a mountingplate 115 that can be contoured to facilitate attachment of thelatch 100 to a frame (e.g. body 5) of the motor vehicle 4 (seeFIG. 1A ). The mountingplate 115 can be contoured to define a generally planar mounting surface and a plurality of apertures for attaching various components of thelatch 100 thereto. Preferably, mountingplate 115 is a stamped metal component. A mating latch component 96 (e.g. striker) is secured to the closure panel 6 (e.g. hood 6) and extends outwardly therefrom. Themating latch component 96 can be a generally U-shaped bar that is engaged by thelatch 100 to latch theclosure panel 6 in the closed position. Thelatch 100 can be secured to the body 5 by mounting plate and positioned so that themating latch component 96 will engage thelatch 100 upon theclosure panel 6 reaching the closed position. It is appreciated that, alternatively, thelatch 100 may be secured to theclosure panel 6 and themating latch component 96 may be secured to the body 5 of thevehicle 4. Positioned on the mountingplate 115 can be a fishmouth or slot 114 for receiving themating latch component 96 therein, in other words theslot 114 of thelatch 100 is configured for receiving a keeper of themating latch component 96. Theslot 114 has an open top end and a closed bottom end. Thelatch 100 can also include a cover plate (not shown). The mountingplate 115 and cover plate can be interconnected by first and second rivets (not shown) that each have respective integral shafts extending beyond the cover plate. The mountingplate 115, cover plate and interconnecting rivets can provide a housing for thelatch 100. Those skilled in the art will appreciate that a wide variety of alternative configurations may be deployed to provide the latch housing. - The
latch 100 includes a number of latch elements 110 (e.g. aratchet 24 and a pawl 40) that are configured to couple to themating latch component 96 in order to retain themating latch component 96 within theslot 114 when theclosure panel 6 is in the closed position (e.g. locked). Alternatively, thelatch elements 110, both of which are pivotally secured to the frame plate. Theratchet 24 includes an arm and arm spaced apart to define the generallyu-shaped slot 114 there between (e.g. a hook of arm and a lip of arm that extends laterally beyond the hook. Theratchet 24 can also include a primary shoulder stop and a pointed secondary shoulder stop. Note that inFIG. 2 theratchet 24 is shown in a fully closed position (e.g. facilitating the retention of themating latch component 96 in the slot 114) which may also be referred to as the primary closed position. - The
ratchet 24 can be biased to an open position by a substantial torsion spring that is mounted pivotally on the rivet shaft and connected between the cover plate and the plate. The torsion spring is an example of a ratchet biasing member, which biases theratchet 24 towards the open position. Theratchet 24 moves between a unlatched position for releasing themating latch component 96 and a latched position, such that themating latch component 96 is received in theslot 114 and cooperates with the receivingslot 114 of the mounting plate. Theratchet 24 is biased to the unlatched position via a biasing member. The pawl 40 has can have a shoulder (or detent) that interacts or otherwise engages with primary and secondary shoulder stops of theratchet 24, in order to releasably retain theratchet 24 in the latched position. The pawl 40 can also feature a primary release tab 44 and/or a secondary release tab. - The pawl 40 is biased to a locking position (e.g. latched position) where the
ratchet 24 is shown in a primary closed position by a torsion spring. The torsion spring 48 is an example of a pawl biasing member. Accordingly, the pawl 40 can be biased to disengage with theratchet 24 via the pawl biasing member. - A release lever 50 can also pivotally mounted between the frame plate 12 and the cover plate 18. The primary release lever 50 can include a tab 52 for connection to a release cable (not shown) that is connected to a release handle (not shown) located in the
vehicle 4 compartment for initiating by a driver for opening of thelatch 100. The end result of operation of the release lever 50 is that the pawl 40 is disengaged with theratchet 24, under action of the pawl biasing member, thus allowing the ratchet biasing member to assist in pivoting theratchet 24 from the closed (or latched position to the open or unlatched position (not shown). The primary release lever 50 can interact with the pawl 40 via its primary release tab 44 and can thus also be biased by pawl biasing member into the non-engaged position. - As noted above, however, the
latch 100 can be coupled toactuation mechanism 101, shown inFIG. 1a andFIGS. 3-7 . Theactuation mechanism 101 can include thesupport plate 117 that can connect to the mountingplate 115 of thelatch 100 and thereby can form part of the latch housing (not shown), as desired. the mountingplate 115, thesupport plate 117 and theactuation mechanism 101 can be collectively referred to as alatch travel mechanism 99 or with inclusion with the latch as alatch travel assembly 99, as desired. It is recognized that in the embodiments of thelatch 100 shown inFIGS. 3-7 , the mountingplate 115 is connected to thesupport plate 117 vialinkages 118, such that thelinkages 118 are connected by a hinge or pivot 120 at one end to the mountingplate 115 and at the other end via a hinge or pivot 122 to thesupport plate 117. Thesupport plate 117 can be connected to the body (seeFIG. 1A ) via mountingholes 124. Pivot 120 can have a pin 126 (seeFIG. 7 ) for coupling with a locking member (e.g. locking hook) 128 when thelatch 100 is in a home (or non-extended) position (seeFIG. 3 ), such that when thepin 126 is retained by the locking member 128 (e.g. in notch as shown by example) thelatch 100 is inhibited from extending (as shown inFIGS. 6 and 7 in the extended position). The lockingmember 128 can be configured to pivot about a pivot point (e.g. pivot 122), such that the locking member is biased about the pivot point by a biasing member (e.g. spring—not shown) into contact with thepin 126 for retaining thelatch 100 in the home or non-extended position (e.g. receiving of thepin 126 innotch 123 of the locking member 128). It is recognized that operations other than pivoting (e.g. linear extension and retraction—not shown) of the lockingmember 128 with respect to thepin 126 can be envisioned as desired. Lockingmember 128 is an example of component of a lockingassembly 67, for locking or unlocking the relative movement between the mountingplate 115 and thesupport plate 117. In accordance with another example of a lockingassembly 67, and with reference toFIGS. 34A and 34B , Lockingmember 128′ is provided to engage directly between the support plate and the mountingplate 115, forexample locking member 128′ is shown as a lever pivotally mounted to mountingplate 115 for rotation aboutpivot point 129 provided on the mountingplate 115. Lockingmember 128′ may be biased aboutpivot point 129 such that lockingmember 128′ is biased towards a locking state or position. In a lockingstate locking member 128′ may engage withsupport plate 117 to prevent relative movement between thesupport plate 117 and the mountingplate 115. Forexample locking member 128′ is shown as engage alocking feature 69, such as a lug or pin or catch or the like provided on supportingplate 117. Alternatively, lockingfeature 69 may be a hole or aperture provided in supportingplate 117. Whendecoupling plate 170 is initially moved by actuatingmechanism 101, engagement ofabutment 178 onabutment surface 180′ of the lockingmember 128 acts to pivot lockingmember 128′ out of locking engagement with lockingfeature 69 to allow movement between mountingplate 115 and supportingplate 117, as illustratively shown inFIG. 34B . - Referring again to
FIG. 3 , theactuation mechanism 101 can be mounted on the body 5 or on thesupport plate 117 itself, such that operation of theactuation mechanism 101 can be used to decouple thepin 126 from the lockingmember 128, thus facilitating movement of thelatch 100 from the home position (seeFIG. 3 ) to the extended position (seeFIGS. 6 and 7 ). It is noted thatpin 126 is not shown inFIG. 3 for visual clarity purposes only. Theactuator mechanism 101 can have ahousing 130 with actuation means (e.g. [pyrotechnic) for extending and retracting a piston 132 (seeFIGS. 6 and 7 ) for facilitating movement of the latch 100 (as well as mounting plate 115) between the home and extended positions. - One example of the interaction of the
piston 132 with thelatch 100 is shown inFIG. 3 , such that anactuator link 134 is connected to thelinkages 118, such that a force of thepiston 132 on theactuator link 134 causes thelinkages 118 to extend and thus move thelatch 100 from the home position to the extended position. Apretravel slot 119 is provided on each of thelinkages 118 which allow theactuator link 134 to move between a first slot end 119A to a second slot end 119B without influencing motion on thelinkage 118. When theactuator link 134 reaches the second slot end 119-B (from an initial resting or home position at thefirst slot end 119A) theactuator link 134 will enter into abutting contact therewith to be able to therefore urge thelinkage 118 into an upward motion as guided by the motion of thepiston 132 during an additional travel of theactuator link 134. During its transition between the first slot end 119A and the second slot end 119B, theactuator link 134 will impart the movement of the lockingmember 128 out of coupling with thepin 126, (and without imparting motion of thelinkage 118 until the lockingmember 128 has been disengaged with the pin 126), through the engagement of theactuator link 134 with acam surface 139 of thenotch 136. However, it is recognized that theactuator link 134 can be positioned on thelatch 100, itself and/or the mounting plate 115 (for example) in order to provide for extension of thelatch 100 when acted upon by the piston 132 (as driven by the actuator mechanism 101). - Referring again to
FIG. 3 as one embodiment of coupling of theactuator link 134 to thelatch 100/mountingplate 115, in this case via thelinkages 118 themselves, theactuator link 134 can be received in anotch 136 in the lockingmember 128 when the lockingmember 128 is engaged with the pin 126 (when thelatch 100 is in and retained in the home position). The lockingmember 128 can also have a travel surface 141 extending from thenotch 136 in order to guide travel of theactuator link 134 as thelatch 100 translates from the home to the extended position. - In operation, as shown in
FIGS. 4a , to 6 b, the latch 10 is first (inFIG. 1A ) held in the home position by retention of lockingmember 128 withpin 126. In this state, thelinkages 118 are also retracted aspivots plate 115 is seated adjacent to thesupport plate 117. Next, as shown inFIGS. 5a, 5b , the lockingmember 128 is decoupled from thepin 126. This decoupling (e.g. thepin 126 is removed from thenotch 123 is shown by example only, as a result of initial movement (i.e. deployment) of thepiston 132 by theactuation mechanism 101, as the lockingmember 128 is rotated aboutpivot 122 against its bias towards thepin 126.FIGS. 5c, 6d shows the latch 100 (and mounting plate 115) in the partially extended position.FIGS. 6a, 6b shows the latch 100 (and mounting plate 115) in the extended position as indicated by the travel distance A vertically from the home position as well as travel distance B horizontally from the home position. For example, the travel distances A, B facilitate the extended movement of thelatch 100 about the pivot position of thehood 6 via hinge 98 (seeFIG. 1A ). It is recognized that thelatch 100 can be closed (i.e. latched such that thestriker 96 is retained in by theratchet 24—seeFIG. 2 ) when thelatch 100 is in the home (seeFIGS. 3, 4 ) and/or extended (seeFIGS. 6a, 6b , 7) positions. - As such, referring to
FIGS. 6, 7 , thelatch 100 as shown has an active pop-up height, e.g. min 60 mm pop-up height during active firing of theactuator mechanism 101. Afterlatch 100 firing (e.g. deployment of the pyrotechnic actuator) the deactivation (return to secondary position) can be done by pulling an inside release handle. For example, there can be no pressure in the actuator piston after active firing of the chemical actuator. A secondary catch can be attached to the latch or to the striker, as desired. Thelatch 100 ofFIG. 3 can be a modular latch assembly. - Referring again to
FIGS. 3 and 4 , biasing member 142 a, e.g. torsion spring, can be used to bias thelinkage 118 positions in the home position and to otherwise maintain contact between thepiston 132 and theactuator link 134 during movement thereof. As shown, thelinkages 118 have a pair of links on either side of thesupport plate 117, however it is envisioned that other configurations oflinkages 118 can be used as desired. In order to translate/rotate thelatch 100 from the home to the extended position. - Referring to
FIGS. 8 a,b, 9 a,b, 10 a,b, 11 a,b, a further embodiment of thelatch 100 and associatedactuation mechanism 101 is shown. Theactuation mechanism 101 can include thesupport plate 117 that can connect to the mountingplate 115 of thelatch 100 and thereby can form part of the latch housing, as desired. The mountingplate 115 is coupled to thesupport plate 117 viapins 140 and slot 142 arrangement, such that thepins 140 are connected to the mountingplate 115 and theslots 142 are formed in the support plate 117 (recognizing that the opposite configuration can also be provided). Two ormore pins 140 may also be provided, and for example to prevent a tilting motion TM of mountingplate 115. During operation, thepins 140 travel along theslot 142 as theactuation mechanism 101 moves thelatch 100 from the retracted to the extended position. Thesupport plate 117 can be connected to the body 5 (seeFIG. 1A ) via mountingholes 124. An abutment 144 (e.g. decoupling plate) is positioned on the mountingplate 115 for coupling with the locking member 128 (e.g. locking hook—for example mounted on the support plate 117) when thelatch 100 is in the home (or non-extended) position (seeFIG. 8a ), such that when theabutment 144 is retained by the locking member 128 (e.g. in notch as shown by example) thelatch 100 is inhibited from extending (as shown inFIGS. 11a and 11b in the extended position). The lockingmember 128 can be configured to pivot about a pivot point (e.g. pivot 123 a), such that the lockingmember 128 is biased about thepivot point 123 a by a biasing member (e.g. spring 123 b) into contact with theabutment 144 for retaining thelatch 100 in the home or non-extended position (e.g. receiving of theabutment 144 in notch of the locking member 128). It is recognized that operations other than pivoting (e.g. linear extension and retraction—not shown) of the lockingmember 128 with respect to theabutment 144 can be envisioned as desired. - Referring again to
FIG. 8a , theactuation mechanism 101 can be mounted on the body 5 (seeFIG. 1a ) or on thesupport plate 117 itself, such that operation of theactuation mechanism 101 can be used to decouple theabutment 144 from the lockingmember 128, thus facilitating movement of thelatch 100 from the home position (seeFIGS. 8a, 8b, 9a, 9b ) to the extended position (seeFIGS. 11a, 11b ). Theactuator mechanism 101 can have thehousing 130 with actuation means (e.g. (pyrotechnic) for extending and retracting the piston 132 (seeFIGS. 11 a, 11 b) for facilitating movement of the latch 100 (as well as mounting plate 115) between the home and extended positions. - One example of the interaction of the
piston 132 with thelatch 100 is shown inFIG. 8a , such that an actuator link 134 (e.g. tab) is connected to the mountingplate 115, such that the force of thepiston 132 on theactuator link 134 causes the mountingplate 115 to extend and thus move thelatch 100 from the home position to the extended position. As shown inFIGS. 10a, 10b , initial actuation of theactuation mechanism 101 causes theabutment 144 to act on the locking member 128 (thus pivoting the lockingmember 128 about thepivot 123 a against the bias of the biasingmember 123 b). Once pivoted, the lockingmember 128 is taken out of contact (i.e. disengaged) with thepins 140, thus freeing them to move within theslot 142. Shown inFIGS. 11a, 11b is thelatch 100 with the mountingplate 115 in the extended position, for example with thepins 140 reaching their full travel extent in theslots 142, due topiston 132 acting on theactuation link 134 via extension from thehousing 130 mounted on the body 5 and/orsupport plate 117. - Referring to
FIGS. 12a, 12b, 13a, 13b, 14a, 14b a further embodiment of thelatch 100 withactuation mechanism 101 is shown. Theactuation mechanism 101 can include thesupport plate 117 that can connect to the mountingplate 115 of thelatch 100 and thereby can form part of the latch housing (not shown), as desired. It is recognized that in the embodiment of thelatch 100 shown, the mountingplate 115 is connected to thesupport plate 117 vialinkages 118, e.g. on either side of the mountingplate 115, such that thelinkages 118 are connected by a hinge or pivot 120 at one end to the mountingplate 115 and at the other end via a hinge or pivot 122 to thesupport plate 117. Thesupport plate 117 can be connected to the body (seeFIG. 1A ) via mountingholes 124. - Referring again to
FIG. 12a , theactuation mechanism 101 can be mounted on the body 5 (not shown) or on thesupport plate 117 itself, such that operation of theactuation mechanism 101 can be used to facilitate movement of thelatch 100 from the home position (seeFIGS. 12a,b ) to the extended position (seeFIGS. 14a,b ). Theactuator mechanism 101 can have thehousing 130 with actuation means (e.g. pyrotechnic) for extending and retracting the piston 132 (seeFIG. 14b ) for facilitating movement of the latch 100 (as well as mounting plate 115) between the home and extended positions. - Referring to
FIGS. 12a and 14b , thepiston 132 is coupled via a coupling member 148 (e.g. U-shaped member) mounted on the head of thepiston 132 to theactuator link 134. As such, thepiston 132 is coupled to thelinkages 118, such that a force of thepiston 132 on theactuator link 134 causes thelinkages 118 to extend and thus move thelatch 100 from the home position to the extended position. Theactuator link 134 has abutting contact with the abutment member 148 to be able to therefore urge thelinkages 118 into an upward motion as guided by the motion of thepiston 132 during an additional travel of theactuator link 134. However, it is recognized that theactuator link 134 can be positioned on thelatch 100, itself and/or the mounting plate 115 (for example) in order to provide for extension of thelatch 100 when acted upon by the piston 132 (as driven by the actuator mechanism 101). - Referring to
FIGS. 15, 16 a,b, 17 a,b, shown is a further embodiment of thelatch 100 coupled toactuation mechanism 101. In this embodiment, it should be noted that the closure panel 6 (e.g. hood) is not shown for clarity purposes only inFIGS. 15, 16 a,b, but is shown inFIGS. 17a,b in ghosted view. It should be recognized that for this embodiment, the piston 132 (seeFIGS. 17a,b ) acts directly on theclosure panel 6, rather than on thelink member 134 coupled to the mounting plate 115 (for example seeFIG. 12a ). Theactuation mechanism 101 can include thesupport plate 117 that can connect to the mountingplate 115 of thelatch 100 and thereby can form part of the latch housing (not shown), as desired. It is recognized that in the embodiments of thelatch 100 shown in this embodiment, the mountingplate 115 is connected to thesupport plate 117 vialinkages 118, such that thelinkages 118 are connected by a hinge or pivot 120 at one end to the mountingplate 115 and at the other end via a hinge or pivot 122 to thesupport plate 117. Thesupport plate 117 can be connected to the body 5 (seeFIG. 1A ) via mounting holes (not shown). - Referring again to
FIG. 15 , theactuation mechanism 101 can be mounted on the body 5 or on thesupport plate 117 itself, for example viasupport member 150 connected to thesupport plate 117. Operation of theactuation mechanism 101 can be used to extend and thus push the piston 132 (seeFIGS. 17a,b ) against the closure panel 6 (e.g. inside surface of the closure panel 6), thus facilitating movement of thelatch 100 from the home position (seeFIGS. 16a,b ) to the extended position (seeFIGS. 17a,b ). In this embodiment, it is recognized that thepiston 132 acts on theclosure panel 6 itself, which then causes the striker 96 (in view of thelatch 100 still being locked or otherwise engaged with the striker 96) to pull thelatch 100 and associated mountingplate 115 away from thesupport plate 117. The travel of thelatch 100 and mountingplate 115 is guided by thelinkages 118 connecting thesupport plate 117 to the mountingplate 115. Theactuator mechanism 101 can have thehousing 130 with actuation means (e.g. pyrotechnic) for extending and retracting the piston 132 (seeFIGS. 17 a.b) for facilitating movement of the latch 100 (as well as mounting plate 115) between the home and extended positions, as thelatch 100 follows (rather than drives) the movement of theclosure panel 6. InFIGS. 17 a,b, it is noted that theclosure panel 6 is secured to thestriker 96, such that theclosure panel 6 and thestriker 96 move simultaneously under influence of thepiston 132 travel. - Referring to
FIGS. 18, 19 a,b, 20 a,b, a further embodiment of thelatch 100 coupled toactuation mechanism 101 is shown. Similar to the embodiment shown inFIG. 15 , thepiston 132 of theactuation mechanism 101 acts directly on the closure panel 6 (seeFIGS. 20a,b ). In addition to the embodiment ofFIG. 15 ,FIG. 18 shows a first set oflinkages 118 a connected to a second set oflinkages 118 b. The first set oflinkages 118 a are connected to thesupport plate 117 bypivots 122 and the second set oflinkages 118 b are connected to the mountingplate 115 bypivots 120. Thelinkages pivots 152.Pivots 152 have an axis 151 about whichlinkages plate 115 relative to supportingplate 117.Linkages plate 115 and/orsupport plate 117, for example plane P2, P3, respectively. Forexample linkages plate 115 in which mountingplate 115 moves or travels, forexample mounting plate 115 translates in two dimensions (for example upwardly and away from) relative to supportingplate 117 during a rotational movement, or expansion, oflinkages pin 154 and slot 156 arrangement is used to guide the motion of the mountingplate 115 with respect to the supportingplate 117. Operation of theactuation mechanism 101 can be used to extend and thus push the piston 132 (seeFIGS. 20a,b ) against the closure panel 6 (e.g. inside surface of the closure panel 6), thus facilitating movement of thelatch 100 from the home position (seeFIGS. 19a,b ) to the extended position (seeFIGS. 20a,b ). In this embodiment, it is recognized that thepiston 132 acts on theclosure panel 6 itself, which then causes the striker 96 (in view of thelatch 100 still being locked or otherwise engaged with the striker 96) to pull thelatch 100 and associated mountingplate 115 away from thesupport plate 117. - Referring to
FIGS. 21, 21 a,b, 23 a, b, 24 a,b as a still further embodiment, thelatch 100 can be coupled toactuation mechanism 101. Theactuation mechanism 101 can include thesupport plate 117 that can connect to the mountingplate 115 of thelatch 100 and thereby can form part of the latch housing (not shown), as desired. The mountingplate 115, thesupport plate 117 and theactuation mechanism 101 can be collectively referred to as alatch travel mechanism 99 or with inclusion with thelatch 100 as alatch travel assembly 99, as desired. It is recognized that in the embodiments of thelatch 100 shown, the mountingplate 115 is connected to thesupport plate 117 vialinkages 118, such that thelinkages 118 are connected by a hinge or pivot 120 at one end to the mountingplate 115 and at the other end via a hinge or pivot 122 to thesupport plate 117.Pivots linkages 118 rotate where axis 153 is illustratively perpendicular to the planes of movement, for example an upwards Al movement, or one dimensional movement, of mountingplate 115.Linkages 118 are disposed in and move within a plane that is parallel to the plane of the mountingplate 115 and/orsupport plate 117. For example plane P4 oflinkages 118 is parallel to the plane of the mountingplate 115 and/orsupport plate 117, for example plane P2, P3, respectively. Forexample linkages 118 are disposed in and extend within a plane, for example plane P4 that is parallel to the plane P2 of the mountingplate 115 in which mountingplate 115 moves or travels, forexample mounting plate 115 linearly translates relative to supportingplate 117 during a rotational movement or expansion oflinkages 118. Thesupport plate 117 can be connected to the body 5 (seeFIG. 1A ) via mountingholes 124.FIG. 21 illustrates a pair ofopposed linkages 118, where eachopposed linkages 118 is configured as a two-bar linkage. Other types oflinkages 118 may be provided, such as a single or multiple bar linkage configuration. - The
assembly 99 can have one or more pin(s) 126 (e.g. blocking rivets) for coupling with a locking member (e.g. locking hook) 128 when thelatch 100 is in the home (or non-extended) position (seeFIGS. 22a,b ), such that when thepin 126 is retained by the locking member 128 (e.g. in notch as shown by example) thelatch 100 is inhibited from extending (as shown inFIGS. 24a,b in the extended position). The lockingmember 128 can be configured to pivot about a pivot point (e.g. pivot 127), such that the lockingmember 128 is biased about the pivot point by a biasing member (e.g. aspring 176 in cooperation with the decoupling plate 170) into contact with thepin 126 for retaining thelatch 100 in the home or non-extended position (e.g. receiving of thepin 126 innotch 123 of the lockingmember 128 and/or into abutment ofabutment surface 131 of the lockingmember 128 with the pin 126). It is recognized that operations other than pivoting (e.g. linear extension and retraction—not shown) of the lockingmember 128 with respect to thepin 126 can be envisioned as desired. As shown, theassembly 99 can have a pair of lockingmembers 128, such that lockingmember 128 and thesecond locking member 128 are opposed to one another on either side of the pivot 127 (e.g. mirrored to one another). It is also recognized that one lockingmember 128 can be utilized in order to restrain the mounting plate in the home position, as desired. - Referring again to
FIG. 21 , thedecoupling plate 170 is coupled to theactuation mechanism 101 at one end by atab 172, such that force applied by the piston 132 (seeFIG. 24a ) of theactuation mechanism 101 on thetab 172 results in removal of anabutment 178 fromabutment surface 180 of the lockingmember 128, thus allowing the lockingmember 128 to become decoupled from the pin(s) 126 upon further movement of thepiston 132. For example, thedecoupling plate 170 is connected to the mountingplate 115 by apin 182 and slot 184 arrangement, such that movement of thedecoupling plate 170 from a coupled to an uncoupled position is accomplished via travel of the pin(s) 182 in theslot 184. Two ormore pins 182 may be provided to assist with preventing tilting TM of the mountingplate 115. Further, for example, as thepins 182 are connected to the mountingplate 115, as thepins 182 reach atravel stop 190 in theslot 184, further movement of thedecoupling plate 170 by thepiston 132 concurrently moves the mountingplate 115 and thus thelatch 100 from the home position to the extended position (seeFIG. 24b ). It is recognized that the travel stop 190 could be positioned on thedecoupling plate 170 other than with respect to the slot 184 (not shown), so long as once the travel of thedecoupling plate 170 reaches the position shown inFIG. 23b for decoupling thestop 178 with theabutment surface 180 of the lockingmember 128, further travel of the decoupling plate 170 (under influence of thepiston 132 travel) causes the travel stop 190 to engage with the mountingplate 115 and thus move the mountingplate 115 from the home position to the extended position. It is recognized that the movement of thelinkages 118 guide the travel of the mountingplate 115 from the home position to the extended position, once thepins 126 are removed from thenotches 123 of the locking member(s) 128. -
Slot 124 includes inwardly protruding tabs 171 configured to engagepins 182 to restrict upward motion of mountingplate 115 below a predetermined force as applied by thepins 182 on the tabs 171 in response to upward movement of mountingplate 115. Inwardly protruding tabs 171 may be configured to be deformable, breakable, bendable, crushable or the like such that above the predetermined force applied by thepints 182 on the tabs 171, thepins 182 may bypass the tabs 171 and continue travel withinslot 124 thereafter in an unrestricted upward motion of the mountingplate 115 as guided by theslot 124.Guide slot 124 and pins 140 arrangement as an example of a guide configuration provided between the mounting plate and the supportingplate 117 may also act to restrict a tilting motion TM of the mountingplate 115 during the deployment of the mountingplate 115 as a result of the extendinglinkages 118 to stabilize the mountingplate 115 and thelinkage 118 during expansion of thelinkages 118 from the collapsed state of thelinkages 118, as illustratively shown inFIGS. 31G and 31H for example.FIG. 31G illustrates a tilting motion TM of the mountingplate 115 as a result of thepiston 132 acting directly or indirectly on the plate, and for example off centered the mountingplate 115, whileFIG. 31H illustratively shows a tilting motion TM of the mountingplate 115 as a result of thepiston 132 acting directly on theclosures panel 6 which urges thestriker 96 to pull the mountingplate 115 upwardly, for example as a result of thestriker 96 retained in by latch elements 110 (e.g. a ratchet 24). More than oneguide slide 124 may be provided between mountingplate 115 and supportingplate 117, and/or between at least one of mountingplate 115 and supporting plate andlinkage 118. It is recognized a guide configuration provided between one of the mountingplate 115 and thesupport plate 117 and thelinkage 118 may also be provided. - Alternative to use of the
travel stop 190, thetab 172 can come into contact with the closure panel 6 (for example seeFIG. 17a ), after the locking member(s) 128 are decoupled from the pin(s) 126 (seeFIG. 23b ), and thus asfurther piston 132 travel moves theclosure panel 6 thelatch 100 and mountingplate 115 also move therewith as thestriker 96 remains retained by thelatch 100. - Referring to
FIG. 24b , the pin(s) 126 can travel in a travel slot 192 formed in the lockingmembers 128 themselves. Upon reaching the end travel of the travel slot 192 (i.e. when thelatch 100 is in the extended position), the pin(s) 126 can be received in alocking notch 196, thus facilitating holding of theclosure panel 6 in the extended position along with the mountingplate 115 and mountedlatch 100 thereon. As such, movement of the locking member(s) 128 aboutpivot 127 can be guided by travel of thepin 126 in the travel slot 192. Similarly, the movement of thepin 126 in thetravel slot 184 can be used to guide the movement of thelinkages 118, as desired. It is recognized that biasing member 174 can be used to decouple the lockingmembers 128 from thepins 126 once the decoupling plate is initially moved by the actuation mechanism 101 (seeFIG. 23b ), as the biasing member 174 biases thepins 126 out of engagement with thenotches 123. Further, the biasing member 174 can be used to bias pivot of the lockingmembers 128 about thepivot 127, thus facilitating travel of thepins 126 in the travel slot 192 from thenotch 123 to thenotch 196. - Referring to
FIGS. 8a, 8b, 9a, 9b, 10a, 10b 11 a, 11 b, similarly, thelatch travel mechanism 99 ofFIG. 21 can include the mountingplate 115 coupled to thesupport plate 117 via thepins 140 and slot 142 arrangement, such that thepins 140 are connected to the mountingplate 115 and theslots 142 are formed in the support plate 117 (recognizing that the opposite configuration can also be provided). During operation, thepins 140 travel along theslot 142 as theactuation mechanism 101 moves the mountingplate 115 from the home position (e.g. retracted position) to the extended position. Thepin 140 and slot 142 arrangement can be used to stabilize or otherwise guide the relative movement between thesupport plate 117 and the mountingplate 115, as the mountingplate 115 moves from the home position to the extended position. As shown inFIG. 8b , thepin 140 and slot 142 arrangement can be positioned opposite thelatch 100 betweensides 117 a of thesupport plate 117. Two ormore pins 140 may be provided for oneslot 142 as illustratively shown inFIG. 29C to prevent rotation or tiling TM of the mountingplate 115 relative to thesupport plate 117 in accordance with an illustrative example. Alternatively, as shown inFIG. 9a , thepin 140 and slot 142 arrangement can be positioned on theside 117 a, as desired. Further, as shown inFIGS. 29 a,b,c, an alternative embodiment of thetravel mechanism 99 ofFIG. 21 , showing an example position of thepin 140 and slot 142 arrangement between thesides 117 a of thesupport plate 117, - Referring to
FIGS. 30A to 30F , there is illustrated a sequence of views of deployment oflatch 100 as a result of an active pedestrian operating mode in which a pedestrian has been detected to have contacted the vehicle 10, or is almost about to contact the vehicle 10 by acontroller 121 which will in turn control the firing ofactuation mechanism 101 to deploypiston 132. -
FIG. 30A illustrates thepiston 132 in a rest position immediately prior to firing ofactuation mechanism 101.Linkages 118 are in a non-deployed or collapsed state. Lockingmembers 128 are in a locked state to prevent a relative movement between mountingplate 115 andsupport plate 117.Piston 132 is not in engagement withtab 172. -
FIG. 30B illustrates thepiston 132 in an initially deployed position immediately after firing ofactuation mechanism 101.Linkages 118 remain in a non-deployed or collapsed state. Lockingmembers 128 remain in a locked state to prevent a relative movement between mountingplate 115 andsupport plate 117.Piston 132 has entered into initial engagement withtab 172. -
FIG. 30C illustrates thepiston 132 in a continued deployed position after firing ofactuation mechanism 101.Linkages 118 are now in an initial deployed or expanding state. Lockingmembers 128 are now in an unlocked state to allow a relative movement between mountingplate 115 andsupport plate 117, for example to allowlinkages 118 to transition into the initial deployed or expanding state.Piston 132 has entered into initial engagement withtab 172 to movetab 172 and pin 126 to decouple from a blocking position ofpin 126 with lockingmember 128 -
FIG. 30D illustrates thepiston 132 in a further continued intermediary deployed position after firing ofactuation mechanism 101.Linkages 118 are now in an intermediary deployed or expanding state. Lockingmembers 128 remain in an unlocked state to allow a relative movement between mountingplate 115 andsupport plate 117, for example to allowlinkages 118 to continue to transition into the deployed or expanding state.Piston 132 remains in engagement withtab 172 to movetab 172 upwardly.Tab 172 has entered into contact with an underside of closure panel 6 (e.g. hood) to begin moving the closure panel 6 (e.g. hood) upwardly into an active pedestrian protection position, or partially opened position. -
FIG. 30E illustrates thepiston 132 in a further continued intermediary deployed position after firing ofactuation mechanism 101.Linkages 118 continue to be deployed or transition towards a fully expanded state. Lockingmembers 128 remain in an unlocked state to allow a relative movement between mountingplate 115 andsupport plate 117, for example to allowlinkages 118 to continue to transition into the deployed or expanding state.Piston 132 has remained in engagement withtab 172 to movetab 172 upwardly andtab 172 remains entered into contact with an underside of closure panel 6 (e.g. hood) to continue to urge the closure panel 6 (e.g. hood) upwardly into an active pedestrian protection position, or partially opened position. -
FIG. 30F illustrates thepiston 132 in an end of travel deployed position after firing ofactuation mechanism 101.Linkages 118 are in a fully deployed or expanded state to provide the final pop-up height of the closure panel 6 (e.g. hood). Lockingmembers 128 may enter into a blocking or locked state to maintain the final deployed position between mountingplate 115 andsupport plate 117, for example to maintainlinkages 118 in their deployed or expanded state.Piston 132 may remain in engagement withtab 172 to maintaintab 172 upwardly an in contact with an underside of closure panel 6 (e.g. hood) to hold the position of the closure panel 6 (e.g. hood) upwardly in the active pedestrian protection position, or partially opened position. Alternatively or additionally, lockingmembers 128 in the blocking or locked state may maintain the final deployed position between mountingplate 115 andsupport plate 117, for example by maintaininglinkages 118 in their deployed or expanded state, such thatratchet 100 urges thestriker 96 and thus theclosure panel 6 in the active pedestrian deployed state. ComparingFIGS. 30F and 30A ,closure panel 6 is illustrated to have moved from a closed position height H1 inFIG. 30A , to a partially opened position having a pop-up height H3 as shown inFIG. 30F .Closure panel 6 is permitted to be moved to pop-up height H3 as a result of deployment or expanding oflinkages 118 from a compact collapsed state as shown inFIG. 30A and having a packaging dimension D1, to an expanded state as shown inFIG. 30F and having an unpackaged dimension D2, where dimension D2 is greater than D1. As aresult linkage 118 may provide a compact pre-deployed dimension advantageous for providing a small packaging size oflatch 100, and a greater post-deployed dimension advantageous for providing an increase in pop-up height of theclosure panel 6 relative to a size of thelatch 100 housing thelinkage 118. - Referring to
FIGS. 31A to 31F , there is illustrated a sequence of views of deployment oflinkages 118 from a collapsed state ofFIG. 31A to an expanded state ofFIG. 31F , corresponding toFIGS. 30A to 30F respectively.FIG. 31A illustrates a compact packaging dimension D1 of linkages advantageous for reducing the packaging size oflatch 100, withFIG. 31F illustrating an expanded state as shown in having an unpackaged dimension D2, where dimension D2 is greater than D1. Further illustrated inFIG. 31A to 31F is the rotational movement of thelinkages 118 aboutpivots linkages 118 follow a path of rotation R towards and away from one another, such thatlinkages 118 do not interfere with one another during expansion oflinkages 118.Linkages 118 may also be provided in an overlapping manner such thatlinkages 118 may cross one another during deployment to reduce the width W of thelatch 100 while maintaining the length L of thelinkages 118 to provide the desired pop-up height.Linkages 118 may be provided having equal lengths, or may be provided having different lengths, for example lower linkage 1181 may be provided with a shorter length than upper linkage 118 u depending on the desired packaging width W oflatch 100. - Referring to
FIG. 25 , shown is a further embodiment of thelatch travel assembly 99, in particular whereby thelatch 100 remains stationary during actuation of the actuation mechanism 101 (i.e. the position of the mounting plate 15 is fixed with respect to the body 5 as mounted thereon), whilelinkages 118 provide for movement of astriker plate 202 coupled to thestriker 96 upon movement of the closure panel 6 (seeFIG. 28b ) by theactuation mechanism 101. For example, the mountingplate 115 can be mounted to the body 5 (shown in ghosted view) via mountingholes 124. Further, theactuation mechanism 101 can be mounted directly to the body 5 (not shown) and/or mounted to the mountingplate 115 via anactuator bracket 200. Thedecoupling plate 170 in this embodiment is coupled to pin 126 which is engaged with the lockingmember 128 when theactuation mechanism 101 is prior to deployment (in this case where themovable striker plate 202 is in the home position—seeFIG. 26b ). - Referring again to
FIG. 25 , thestriker 96 is connected to thestriker plate 202 mounted to theclosure panel 6. Thestriker 96 is pivotally coupled (recognizing that other forms of movable coupling can be provided) to thestriker plate 202 by thelinkages 118. Referring toFIG. 28b , thelinkages 118 can be pivotally connected at one end to thestriker plate 202 by pivots 204 and at the other end to thestriker 96 bypivots 206. It is also recognized that holdingpins 208 can be spring loaded, in order to retain thestriker plate 202 in the extended position (seeFIG. 28b ). For example, the holdingpins 208 can be biased by biasing members (not shown) to contact anabutment surface 210 of thelinkages 118 when thestriker plate 202 reaches the extended position. As such, return of thestriker plate 202 to the home position is blocked by the holdingpins 208 when engaged with theabutment surface 210. - Upon operation of the embodiment shown in
FIG. 25 , theactuation mechanism 101 initially moves thedecoupling plate 170 in order to disengage thepin 126 from the locking member 128 (i.e. themember 128 stopping movement of thelinkages 118 when engaged therewith). Once the lockingmember 128 is freed from restricted movement by displacement of thepin 126, the locking member becomes disengaged from thelinkages 118 and thus further operation of theactuation mechanism 101 cases contact of thedecoupling plate 170 with the closure panel 6 (e.g. via the striker plate 202) and thus further extension of thepiston 132 causes theclosure panel 6 to extend from the home position to the extended position. As thestriker 96 remains retained by thelatch 100, movement of theclosure panel 6 causes thelinkages 118 to pivot about theirpivots 204, 206 and thus the linkages also move from their home position (seeFIG. 27b ) to their extended position (seeFIG. 28b ), thus allowing for thestriker plate 202 to also move from the home position to the extended position. - Reference is made to the above figures, which show the different versions of the
actuation mechanism 101. The device of the actuation mechanism can include a fluid-actuated cylinder, a control valve and a source of pressurized fluid. The cylinder can includes a cylinder housing and a piston that is movable in the cylinder housing between an unactuated position and an actuated position. A piston biasing member (not shown) can be provided and can bias the piston towards the unactuated position, so as to keep the piston in the unactuated position when thevehicle 4 is not incurring a collision event. In the closed position, the control valve prevents fluid flow to the cylinder thereby preventing actuation of the cylinder. In the open position the control valve permits fluid flow from the source of pressurized fluid to the cylinder to drive the piston to the actuated position. The source of pressurized fluid may simply be a vessel containing any suitable fluid, such as, for example, compressed Carbon Dioxide at a suitable pressure, such as, for example 2000 psi. In this embodiment, the control valve may be referred to as a release member that is controllable to expose the piston to the pressurized fluid. In another embodiment, the source of pressurized fluid may be an inflation device that is similar to an airbag inflation device, and that includes an igniter and two combustible chemicals, such as Sodium Azide and Potassium Nitrate, which, when ignited by the igniter, generate Nitrogen at high pressure which can be used to drive the piston to the actuated position. In such an embodiment, a control valve would not be needed. However, a controller controls the operation of the igniter. In such an embodiment, the igniter may be referred to as a release member that is controllable to expose the piston to the pressurized fluid. - As discussed above, the
latch travel mechanism 99 for theclosure panel 6 of thevehicle 4 can include: the mountingplate 115 for mounting thelatch 100, thelatch 100 for retaining theclosure panel 6 in a locked state; thesupport plate 117 coupled to the mountingplate 115 by one ormore linkages 118, thesupport plate 117 for connecting to the body 5 of thevehicle 4; the lockingmember 128 mounted on thesupport plate 117 and configured for retaining the mountingplate 115 in a home position when coupled to the mountingplate 115 and for decoupling from the mountingplate 115 when operated; and theactuation mechanism 101 for mounting on at least one of thesupport plate 117 or the body 5 and coupled to thelinkages 118 for extending thelinkages 118 once the lockingmember 128 is decoupled from the mountingplate 115 in order to move the mountingplate 115 relative to thesupport plate 117 from the home position to an extended position; wherein thelatch 100 is moved from the home position to the extended position when mounted on the mountingplate 115. - As discussed above, the
latch travel mechanism 99 for theclosure panel 6 of thevehicle 4 can also comprise: the mountingplate 115 for mounting thelatch 100, thelatch 100 for retaining theclosure panel 6; thesupport plate 117 coupled to the mountingplate 115, thesupport plate 117 for connecting to the body 5 of thevehicle 4; and theactuation mechanism 101 mounted on at least one of thesupport plate 117 or the body 5 and coupled to the mountingplate 115 for acting on the mountingplate 115 to move the mountingplate 115 relative to thesupport plate 117 from the home position to the extended position; wherein thelatch 100 is moved from the home position to the extended position when mounted on the mountingplate 115. - As discussed above, the
latch travel mechanism 99 for theclosure panel 6 of thevehicle 4 can also comprise: the mountingplate 115 for mounting thelatch 100, thelatch 100 for retaining theclosure panel 6; thesupport plate 117 coupled to the mountingplate 115, thesupport plate 117 for connecting to the body 5 of thevehicle 4; and theactuation mechanism 101 for mounting on at least one of thesupport plate 117 or the body 5 and for coupling to theclosure panel 6 for moving theclosure panel 6 from the home position to the extended position, such that the mountingplate 115 also moves relative to thesupport plate 117 while theclosure panel 6 is retained by thelatch 100; wherein thelatch 100 is moved from the home position to the extended position when mounted on the mountingplate 115. - As per
FIG. 21 , a latch travel mechanism for a closure panel of a vehicle, the mechanism comprising: a mounting plate for mounting a latch, the latch for retaining the closure panel; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the locking member for extending the linkages once the locking member is disengaged from the one or more linkages in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch. The latch travel mechanism, wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages. - As per
FIG. 21 , a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel; a mounting plate having the latch mounted thereon; a support plate coupled to the mounting plate by one or more linkages, the support plate for connecting to a body of the vehicle; a locking member mounted on the support plate and configured for retaining the mounting plate in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism for mounting on at least one of the support plate or the body and coupled to the locking member for extending the linkages once the locking member is disengaged from the one or more linkages in order to move the mounting plate relative to the support plate from the home position to an extended position; wherein the latch is moved from the home position to the extended position with the mounting plate while the closure panel remains retained by the latch. The latch travel mechanism, wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages. - As per
FIG. 25 , a latch travel assembly for a closure panel of a vehicle, the assembly comprising: a latch for retaining the closure panel via a striker; a striker plate mounting the striker, the striker for engaging with the latch for retaining the closure panel, the striker plate mounting the striker to the closure panel; a support plate coupling to a body of the vehicle, the support plate mounting the latch to the body; one or more linkages coupling the striker to the striker plate; a locking member mounted on the striker plate and configured for retaining the one or more linkages in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated; and an actuation mechanism mounted on at least one of the support plate or the body and coupled to the striker plate for extending the one or more linkages once the locking member is disengaged from the one or more linkages in order to move the striker plate relative to the support plate from the home position to an extended position; wherein the striker plate is moved from the home position to the extended position while the striker is retained by the latch. - Now referring to
FIGS. 32A to 32C , there is illustrated anactive hood system 200 includinglatch 100,closure panel 6, and hinges 98. In operation,FIG. 32A shows themating latch component 96 at an initial height H1 and engaged with theratchet 24, theratchet 24 being held by the pawl 40 in the primary latched position. Lockingmember 128 is coupled with thepin 126, and in this state, thelinkages 118 are retracted and in a collapsed state withpivots plate 115 is seated adjacent to thesupport plate 117. Upon detection of an active pedestrian event (e.g. an imminent collision or detected collision of thevehicle 4 with a pedestrian using sensors), the activepedestrian control system 121, or the vehicle Body Control Module, being in electrical communication withactuation mechanism 101, commandsactuation mechanism 101 to fire to deploy thepiston 132. - As shown in
FIG. 32B , theratchet 24 remains engaged by the pawl 40, lockingmember 128 is decoupled with thepin 126 to allow thelinkages 118 to expand, and mountingplate 115 andsupport plate 117 have moved apart from one another, and for example the mountingplate 115 has moved upwardly in a linear manner within a plane P2, for example a distance A1, to urge at least one of themating latch component 96 and theclosure panel 6, as a result of pivoting athinge 98, to be moved upwardly without for example any aftward movement, - At the end of travel of the movement of
piston 132 as shown inFIG. 32C , thelinkages 118 are fully extended and mountingplate 115 andsupport plate 117 are distanced from one another such that themating latch component 96 has been moved away from its initial position H1 to a height H3 greater than H2. Theclosure panel 6 is now shown in its active pedestrian deployed position. In another embodiment or in combination,mating latch component 96 may be configured to slide relative to ratchet 24 withinslot 114 such that the movement of mountingplate 115 is unhindered by themating latch component 96, for example as would be caused by the type ofhinge 98, such ashinge 98 providing a pivoting connection between theclosure panel 6 and the vehicle body 5.Latch component 96 embodied as a striker formed from a bent rod may include a horizontally extendingportion 199 which may be adapted to be extended in length to accommodate such a horizontal portion within theslot 114 such that vertically extending portions 197 do not contact withratchet 24 to hinder the aftwards movement of mountingplate 115. - Now referring to
FIG. 33 , there is illustrated amethod 1000 for operating a latch travel mechanism coupled to a closure panel of a vehicle, the method illustratively including the steps of maintaining a linkage provided between a mounting plate and a support plate in a collapsed state, the mounting plate having a latch mounted thereon for retaining the closure panel in a closed position with respect to a body of the vehicle, the mounting plate coupled to a support plate connected to the body of thevehicle 1002, operating an actuation system in order to move the mounting plate relative to the support plate from the home position to anextended position 1004, and expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to anextended position 1006, such that the latch is also moved from the home position to the extended position as mounted on the mounting plate. The step of expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to anextended position 1006 may include expanding the linkage from a collapsed state having collapsed dimension to an expanded state having an expanded dimension, wherein the expanded dimension is greater than the collapsed dimension. The step of expanding the linkage to a deployed state in response to moving the mounting plate relative to the support plate from the home position to anextended position 1006 may include expanding the linkage in a plane parallel to the plane of one of the support plate and the mounting plate. The method may further include the step of guiding the support plate relative to the mounting plate during expansion of the linkage so as to prevent the support plate and the mounting plate to pivot relative one another. The method may further include the step of guiding one of the support plate and the mounting plate relative to the linkage during expansion of the linkage so as to prevent the support plate and the mounting plate to pivot relative one another. The step of operating anactuation system 1004 may include moving the closure panel relative to the support plate, for example operating the actuation system to act directly or indirectly on the closure panel.
Claims (21)
1-20. (canceled)
21. A latch travel assembly for cooperating with a latch associated with a closure panel of a vehicle, the assembly comprising:
a striker plate mounting the striker, the striker for engaging with the latch for retaining the closure panel, the striker plate mounting the striker to the closure panel;
a support plate coupling to a body of the vehicle, the support plate for mounting the latch to the body;
one or more linkages coupling the striker to the striker plate; and
an actuation mechanism mounted on at least one of the support plate or the body and coupled to the striker plate for extending the one or more linkages in order to move the striker plate relative to the support plate from the home position to an extended position;
wherein the striker plate is moved from the home position to the extended position while the striker is retained by the latch.
22. The latch travel assembly of claim 21 , further comprising a locking assembly comprising a locking member mounted on the striker plate and configured for retaining the one or more linkages in a home position when engaged with the one or more linkages and for disengaging from the one or more linkages when operated.
23. The latch travel mechanism of claim 22 , wherein the actuation mechanism is coupled to the locking member for disengaging the locking member from one of the striker plate and the one or more linkages.
24. The latch travel mechanism of claim 23 , wherein a decoupling plate is used to retain the locking member in the engaged position with the one or more linkages.
25. The latch travel mechanism of claim 21 , further comprising the latch mounted on the striker plate in order to provide a latch travel assembly, wherein the striker moves with the striker plate while the closure panel remains retained by the latch.
26. The latch travel mechanism of claim 22 , further comprising a pin connected to the striker plate and received in a notch of the locking member in order to inhibit movement of the striker plate from the home position to the extended position.
27. The latch travel mechanism of claim 22 , further comprising a pin connected to the striker plate and received in an abutment surface of the locking member in order to inhibit movement of the striker plate from the home position to the extended position.
28. The latch travel mechanism of claim 21 , wherein the linkages are connected by a first pivot to the striker plate and connected by a second pivot to the support plate.
29. The latch travel mechanism of claim 21 , wherein the one or more linkages includes at least one two-bar linkage.
30. The latch travel mechanism of claim 21 , wherein the linkages extend in a plane parallel to at least one of the support plate and the striker plate.
31. The latch travel mechanism of claim 22 , wherein the locking member is coupled to the striker plate by a pivot.
32. The latch travel mechanism of claim 24 , further comprising the decoupling plate having an abutment positioned adjacent to an abutment surface of the locking member, such engagement of the abutment with the abutment surface inhibits movement of the locking member.
33. The latch travel mechanism of claim 32 , wherein the decoupling plate is coupled to the actuation mechanism such that operation of the actuation mechanism moves the abutment out of engagement with the abutment surface, thus providing for movement of the locking member.
34. The latch travel mechanism of claim 24 , wherein the decoupling plate is mounted to the mounting plate by a pin and slot arrangement, such that movement of the decoupling plate provides for movement of the pin within and along the slot.
35. The latch travel mechanism of claim 34 , wherein the pin is connected to the striker plate and the slot in formed in the decoupling plate.
36. The latch travel mechanism of claim 33 , further comprising a travel stop mounted on the decoupling plate, wherein engagement of the travel stop with striker plate provides for said move the striker plate.
37. The latch travel mechanism of claim 22 , further comprising a travel slot formed in the locking member, the travel slot for guiding movement of the pin as the locking member moves during displacement of the striker plate from the home position to the extended position.
38. The latch travel mechanism of claim 37 , further comprising a locking notch positioned at one end of the travel slot, such that when the pin is received in the locking notch the striker plate is retained in the extended position.
39. The latch travel mechanism of claim 21 further comprising a pin and slot arrangement between the striker plate and the support plate, such that movement of the pin within the slot provides for guiding of relative movement between the support plate and the striker plate wherein one of: the slot is provided on the support plate and the pin is mounted on the striker plate, the pin and slot arrangement is positioned on a side of the support plate, and the pin and slot arrangement is positioned on between a pair of sides of the support plate and opposite to the latch.
40. A method for operating a latch travel mechanism coupled to a closure panel of a vehicle, the method comprising the steps of:
maintaining a linkage provided between a striker plate and a support plate in a collapsed state, the striker plate having a striker mounted thereon for retaining the closure panel in a closed position with respect to a body of the vehicle, the striker plate coupled to a support plate connected to the body of the vehicle;
operating an actuation system in order to move the striker plate relative to the support plate from the home position to an extended position; and
expanding the linkage to a deployed state in response to moving the striker plate relative to the support plate from the home position to an extended position;
wherein the striker is also moved from the home position to the extended position as mounted on the striker plate.
Priority Applications (1)
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US17/340,786 US20210293058A1 (en) | 2018-05-04 | 2021-06-07 | Actuated mechanism for active pedestrian safety latch |
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US17/340,786 US20210293058A1 (en) | 2018-05-04 | 2021-06-07 | Actuated mechanism for active pedestrian safety latch |
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US17/340,786 Abandoned US20210293058A1 (en) | 2018-05-04 | 2021-06-07 | Actuated mechanism for active pedestrian safety latch |
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Families Citing this family (13)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102017122573A1 (en) * | 2017-09-28 | 2019-03-28 | Kiekert Ag | Locking device for a moving part of a vehicle |
US10800374B2 (en) * | 2017-11-21 | 2020-10-13 | Magna Closures Inc. | Relative displacement mechanism for active pedestrian safety latch |
US11066854B2 (en) | 2018-01-29 | 2021-07-20 | Magna Closures Inc. | Actuated mechanism for active pedestrian safety latch with meshed gears |
DE102019101992A1 (en) * | 2018-01-29 | 2019-08-01 | Magna Closures Inc. | Actuated active pedestrian safety interlock mechanism |
CN110439393A (en) | 2018-05-04 | 2019-11-12 | 麦格纳覆盖件有限公司 | Actuating mechanism for active pedestrains safety latch |
DE102018215767A1 (en) * | 2018-09-17 | 2020-03-19 | Bayerische Motoren Werke Aktiengesellschaft | Hinge system of a vehicle front flap |
JP7064457B2 (en) * | 2019-02-19 | 2022-05-10 | 本田技研工業株式会社 | Vehicle pop-up hood device |
JP2021154866A (en) * | 2020-03-26 | 2021-10-07 | 本田技研工業株式会社 | Vehicle latch device |
JP2021154865A (en) * | 2020-03-26 | 2021-10-07 | 本田技研工業株式会社 | Vehicle latch device |
JP2021154867A (en) * | 2020-03-26 | 2021-10-07 | 本田技研工業株式会社 | Vehicle latch device |
DE102021109277A1 (en) * | 2020-05-15 | 2021-11-18 | Magna Closures Inc. | LOCKING MECHANISM FOR A LOCKING PLATE WITH MULTIPLE LOCKINGS |
CN111959429A (en) * | 2020-07-21 | 2020-11-20 | 恒大新能源汽车投资控股集团有限公司 | Front cover control method and system and vehicle |
DE102022100245A1 (en) * | 2021-01-20 | 2022-07-21 | Magna BÖCO GmbH | Locking device for a front trunk with pedestrian protection functions |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2001018843A (en) * | 1999-07-08 | 2001-01-23 | Honda Motor Co Ltd | Vehicular hood device |
US20160340941A1 (en) * | 2015-05-21 | 2016-11-24 | Magna Closures S.P.A. | Latch with double actuation and method of construction thereof |
Family Cites Families (74)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB786493A (en) | 1954-08-30 | 1957-11-20 | Alexander Squire Ltd | Improvements in or relating to hinges |
GB783576A (en) | 1954-09-23 | 1957-09-25 | Gen Motors Corp | Improvements in spring biassed hinges |
FR2687717B1 (en) | 1992-02-20 | 1996-07-19 | Kiekert Gmbh Co Kg | DOOR CLOSURE FOR MOTOR VEHICLES WITH TENDABLE OPENING LEVER. |
JP3317441B2 (en) | 1999-07-19 | 2002-08-26 | 本田技研工業株式会社 | Vehicle hood device |
JP4168576B2 (en) | 2000-07-05 | 2008-10-22 | トヨタ自動車株式会社 | Front body structure of the vehicle |
DE10033772A1 (en) | 2000-07-12 | 2002-01-24 | Volkswagen Ag | Lock arrangement, in particular for a motor vehicle front hood |
JP3870027B2 (en) | 2001-01-10 | 2007-01-17 | コックス株式会社 | Bonnet pins for vehicles |
DE10108880B4 (en) | 2001-02-23 | 2014-10-30 | Volkswagen Ag | Lifting system |
DE10204422B4 (en) | 2002-01-29 | 2016-04-07 | Witte-Velbert Gmbh & Co. Kg | Ratchet closure |
DE10343106B4 (en) | 2003-04-04 | 2015-08-20 | Witte-Velbert Gmbh & Co. Kg | Pyrotechnic triggering actuator |
DE10331081B4 (en) | 2003-07-09 | 2007-11-29 | Bayerische Motoren Werke Ag | Device for protecting people in a frontal collision with a motor vehicle |
DE10344445A1 (en) | 2003-09-25 | 2005-05-12 | Ise Gmbh | Device for protecting people in a frontal impact on a motor vehicle by placing its front hood |
DE10350534B3 (en) | 2003-10-29 | 2005-09-08 | Ise Innomotive Systems Europe Gmbh | Device for protecting people in a frontal collision with a motor vehicle by placing its front hood at least in the front hood lock area |
DE10354163B4 (en) | 2003-11-19 | 2013-08-22 | BÖCO Böddecker & Co. GmbH & Co. KG | Device for erecting a vehicle door, in particular a motor vehicle front hood |
DE10358740A1 (en) | 2003-12-13 | 2005-07-14 | Ise Innomotive Systems Europe Gmbh | Device for protecting persons in a frontal collision with a motor vehicle by actively setting up its front hood, at least in the front hood lock area |
JP4349157B2 (en) | 2004-03-03 | 2009-10-21 | トヨタ自動車株式会社 | Body front structure |
DE102004023729B4 (en) | 2004-05-11 | 2014-10-30 | BÖCO Böddecker & Co. GmbH & Co. KG | Device for installing a vehicle door |
KR20060053612A (en) | 2004-11-17 | 2006-05-22 | 현대자동차주식회사 | Hood control system for vehicle |
DE102005060750A1 (en) | 2005-12-16 | 2007-06-21 | BÖCO Böddecker & Co. GmbH & Co. KG | Motor vehicle door e.g. front bonnet, mounting device, has mounting plate and spiral spring, decouplable from each other for their interruption to cancel retention force, where bonnet is released for rear-shifting into its closed position |
DE102006031617A1 (en) | 2006-07-06 | 2008-01-10 | Thomas Magnete Gmbh | Pedestrian protection, quick release system for lifting a movable body part in the automotive sector |
DE102007012175B4 (en) | 2006-08-15 | 2018-03-29 | Magna Electronics Europe Gmbh & Co. Ohg | closing device |
KR20080038892A (en) | 2006-10-31 | 2008-05-07 | 현대자동차주식회사 | Hood latch assembly for vehicles |
DE102007021840B4 (en) | 2007-05-07 | 2014-08-28 | BÖCO Böddecker & Co. GmbH & Co. KG | Device for installing a vehicle door |
US8534410B2 (en) * | 2009-03-31 | 2013-09-17 | Mazda Motor Corporation | Pedestrian protection device for vehicle |
US8235428B2 (en) | 2009-07-14 | 2012-08-07 | Kiekert Ag | Lock unit having a slotted pawl |
DE102009051121B4 (en) | 2009-10-28 | 2012-01-19 | Audi Ag | Lock bracket arrangement of a vehicle lock, in particular for a front hood |
ES2362521B1 (en) | 2009-12-22 | 2012-05-18 | Tubsa Automocion S.L. | "CLOSURE DEVICE FOR HOOD". |
GB2480798B (en) | 2010-02-18 | 2016-01-27 | Ford Global Tech Llc | A bonnet for a vehicle |
EP2615012B1 (en) | 2010-09-09 | 2014-05-14 | Toyota Jidosha Kabushiki Kaisha | Hood lock structure |
KR101154299B1 (en) | 2010-09-28 | 2012-06-13 | 현대자동차주식회사 | Active hood latch system for vehicle |
JP5722056B2 (en) | 2011-01-25 | 2015-05-20 | 本田技研工業株式会社 | Food lock device |
JP5198593B2 (en) | 2011-01-27 | 2013-05-15 | 本田技研工業株式会社 | Food lock device |
US8579068B2 (en) | 2011-06-02 | 2013-11-12 | Ford Global Technologies, Llc | Hood latch and striker system for pedestrian protection |
JP5737038B2 (en) | 2011-07-25 | 2015-06-17 | トヨタ自動車株式会社 | Pop-up hood device for vehicle |
KR101272517B1 (en) | 2011-08-01 | 2013-06-10 | 현대자동차주식회사 | Active hood device for vehicle |
KR101272518B1 (en) | 2011-08-12 | 2013-06-10 | 현대자동차주식회사 | Actuator of active hood system for vehicle |
US20130087401A1 (en) | 2011-10-05 | 2013-04-11 | GM Global Technology Operations LLC | Vehicle hood assembly and method for rapidly elevating the hood |
KR101293974B1 (en) | 2011-11-07 | 2013-08-07 | 현대자동차주식회사 | Active hood latch device for vehicle |
CN104125898B (en) | 2011-12-06 | 2017-11-07 | 麦格纳覆盖件有限公司 | Part for active pedestrains safety mechanism |
US9145716B2 (en) | 2012-05-09 | 2015-09-29 | Ford Global Technologies, Llc | Deployable hood latch for pedestrian head protection |
KR101372022B1 (en) | 2012-08-24 | 2014-03-07 | 기아자동차주식회사 | 2 step open hood latch apparatus for vehicle |
KR101382913B1 (en) | 2012-09-05 | 2014-04-08 | 기아자동차주식회사 | 2 Step link hood latch apparatus for vehicle |
EP2907731A4 (en) | 2012-10-09 | 2016-07-20 | Volvo Constr Equip Ab | Lock device for hood of engine room of construction machine |
US9512650B2 (en) | 2012-12-10 | 2016-12-06 | Ford Global Technologies, Llc | Hood latch release system |
KR101360567B1 (en) | 2012-12-24 | 2014-02-11 | 기아자동차주식회사 | Front end module for vehicle |
DE102013202207B4 (en) | 2013-02-11 | 2022-08-04 | Witte Automotive Gmbh | closure |
DE102013003956B4 (en) | 2013-03-07 | 2022-01-05 | Volkswagen Aktiengesellschaft | Safety device, crash-active front hood |
CN105228883B (en) | 2013-05-23 | 2018-06-08 | 麦格纳覆盖件有限公司 | For the mechanical assist mechanism of active pedestrains safety latch |
DE102013012832A1 (en) | 2013-08-01 | 2015-02-05 | Audi Ag | Adjustment device for a lock of a front flap of a motor vehicle and associated motor vehicle |
KR101459937B1 (en) | 2013-08-16 | 2014-11-10 | 현대자동차주식회사 | Fixed apparatus for opening and closing hood for vehicle |
KR101491298B1 (en) | 2013-08-20 | 2015-02-06 | 현대자동차주식회사 | Active hood latch device for vehicle |
DE102013109051A1 (en) | 2013-08-21 | 2015-02-26 | Kiekert Aktiengesellschaft | Motor vehicle door lock |
KR101449334B1 (en) | 2013-10-10 | 2014-10-08 | 현대자동차주식회사 | Apparatus for active hood latch of automobile |
KR101567637B1 (en) | 2013-10-21 | 2015-11-09 | 현대자동차주식회사 | Active hood apparatus for vehicle |
KR101526958B1 (en) | 2013-10-31 | 2015-06-09 | 현대자동차주식회사 | Structure of hood latch in vehicle |
EP3444418B1 (en) | 2013-11-22 | 2020-03-04 | Gecom Corporation | Vehicle hood latches |
KR101510011B1 (en) * | 2013-12-17 | 2015-04-07 | 현대자동차주식회사 | Active hood hinge apparatus for vehicle |
JP5910623B2 (en) | 2013-12-25 | 2016-04-27 | トヨタ自動車株式会社 | Pop-up hood device for vehicle |
EP2902272B1 (en) | 2014-01-30 | 2016-07-06 | Volvo Car Corporation | Hood latch assembly |
JP2015145209A (en) | 2014-02-04 | 2015-08-13 | トヨタ自動車株式会社 | Vehicular pop-up hood device |
CN106029454B (en) * | 2014-08-07 | 2018-05-01 | 丰田自动车株式会社 | Vehicle upspring type engine cover arrangement |
US10731388B2 (en) | 2014-09-17 | 2020-08-04 | Magna Closures Inc. | Latch with double pull for closure panel |
US9701277B2 (en) * | 2015-02-25 | 2017-07-11 | Magna Closures Inc. | Active hinge with deployed position latch |
DE102015208392A1 (en) * | 2015-05-06 | 2016-11-10 | Bayerische Motoren Werke Aktiengesellschaft | Striker assembly for selectively retaining or rotationally releasing a front door of a motor vehicle |
US10590683B2 (en) * | 2015-06-15 | 2020-03-17 | Magna Closures Inc. | Vehicle hood latch and method of unlatching a vehicle hood |
DE102015010395B3 (en) * | 2015-08-10 | 2016-11-17 | Audi Ag | Front door hinge and associated motor vehicle |
DE102015115665A1 (en) * | 2015-09-17 | 2017-03-23 | Kiekert Ag | Hood closure device of a motor vehicle |
KR101806622B1 (en) * | 2015-10-07 | 2017-12-07 | 현대자동차주식회사 | Assembly of hood latch for vehicle and operation method thereof |
US10890018B2 (en) | 2016-07-26 | 2021-01-12 | Magna Closures Inc. | Double pull hood latch with interlock device |
CN109906177B (en) | 2016-09-22 | 2020-08-21 | 均胜安全系统收购有限责任公司 | Engine cover lifting assembly |
CN107489322A (en) * | 2017-10-10 | 2017-12-19 | 伟速达(中国)汽车安全系统有限公司 | Double drawing open-type front cover lock operating mechanisms |
US20190218833A1 (en) | 2018-01-15 | 2019-07-18 | GM Global Technology Operations LLC | Latch mechanism for a vehicle |
DE102019101992A1 (en) | 2018-01-29 | 2019-08-01 | Magna Closures Inc. | Actuated active pedestrian safety interlock mechanism |
CN110439393A (en) | 2018-05-04 | 2019-11-12 | 麦格纳覆盖件有限公司 | Actuating mechanism for active pedestrains safety latch |
-
2019
- 2019-05-05 CN CN201910369293.3A patent/CN110439393A/en active Pending
- 2019-05-06 US US16/404,237 patent/US11060327B2/en active Active
- 2019-05-06 DE DE102019111648.1A patent/DE102019111648A1/en active Pending
-
2021
- 2021-06-07 US US17/340,786 patent/US20210293058A1/en not_active Abandoned
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2001018843A (en) * | 1999-07-08 | 2001-01-23 | Honda Motor Co Ltd | Vehicular hood device |
US20160340941A1 (en) * | 2015-05-21 | 2016-11-24 | Magna Closures S.P.A. | Latch with double actuation and method of construction thereof |
Also Published As
Publication number | Publication date |
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US20190338567A1 (en) | 2019-11-07 |
DE102019111648A1 (en) | 2019-11-07 |
US11060327B2 (en) | 2021-07-13 |
CN110439393A (en) | 2019-11-12 |
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