Powered hinge assembly and powered tailgate assembly incorporating that powered hinge assembly
10343728 ยท 2019-07-09
Assignee
Inventors
- Rafic Jergess (Warren, MI, US)
- Spencer Monroe Dinkins, III (Rockester Hills, MI, US)
- Adrian Nania (Rochester, MI, US)
Cpc classification
E05F15/614
FIXED CONSTRUCTIONS
E05Y2201/622
FIXED CONSTRUCTIONS
B62D33/0273
PERFORMING OPERATIONS; TRANSPORTING
E05Y2900/544
FIXED CONSTRUCTIONS
International classification
E06B7/00
FIXED CONSTRUCTIONS
E05F15/614
FIXED CONSTRUCTIONS
Abstract
A powered hinge assembly includes a first gate hinge feature, a drive unit connected to the first gate hinge feature and a controller configured to displace the first gate hinge feature to an installation position upon connection to a power source. A powered tailgate assembly, incorporating the powered hinge assembly, and a method of installing a tailgate are also disclosed.
Claims
1. A powered hinge assembly for a tailgate, comprising: a gate hinge feature; a drive unit connected to said gate hinge feature; and a controller configured to displace said gate hinge feature to an installation position upon connection to a power source.
2. The powered hinge assembly of claim 1, wherein said drive unit includes a drive motor connected to said gate hinge feature through a normally dis-engaged clutch allowing manual operation of said tailgate.
3. The powered hinge assembly of claim 2, wherein said controller is configured to engage said clutch and operate said drive motor in order to automatically raise or lower said tailgate in response to a command signal.
4. The powered hinge assembly of claim 3, wherein said gate hinge feature includes a drive cup, a fixed cup and a drive cup position sensor, said drive cup position sensor monitoring a current position of said drive cup and providing current drive cup position data to said controller.
5. The powered hinge assembly of claim 4, wherein said fixed cup includes a cylindrical wall having a hinge pin passage and said drive cup includes a hinge pin socket having an open end.
6. The powered hinge assembly of claim 5, wherein an output of said drive unit is connected to said drive cup and said open end is aligned with said hinge pin passage when said gate hinge feature is in said installation position.
7. The powered hinge assembly of claim 6, further including a hinge pin carried on a motor vehicle body side adjacent said tailgate, said hinge pin being installed in said hinge pin socket by passing through said hinge pin passage and said open end when said gate hinge feature is in said installation position.
8. A powered tailgate assembly, comprising: a tailgate having a first end and a second end; a powered hinge assembly at said first end of said tailgate, said powered hinge assembly including a gate hinge feature, a drive unit connected to said gate hinge feature and a controller configured to displace said gate hinge feature to an installation position upon connection to a power source; and a torque hinge assembly at said second end of said tailgate.
9. The powered tailgate assembly of claim 8, wherein said drive unit includes a drive motor connected to said gate hinge feature through a normally dis-engaged clutch allowing manual operation of said tailgate.
10. The powered tailgate assembly of claim 9, wherein said controller is configured to engage said clutch and operate said drive motor in order to automatically raise or lower said tailgate in response to a command signal.
11. The powered tailgate assembly of claim 10, wherein said gate hinge feature includes a fixed cup, a drive cup received within said fixed cup and a drive cup position sensor monitoring a current position of said drive cup and providing current drive cup position data to said controller.
12. The powered tailgate assembly of claim 11, wherein said fixed cup includes a cylindrical wall having a hinge pin passage and said drive cup includes a first hinge pin socket having an open end.
13. The powered tailgate assembly of claim 12, wherein an output of said drive unit is connected to said drive cup and said open end is aligned with said hinge pin passage when said gate hinge feature is in said installation position.
14. The powered tailgate assembly of claim 13, wherein said torque hinge assembly includes a second hinge pin socket carried on a torque rod.
15. The powered tailgate assembly of claim 14, further including a first hinge pin carried on a motor vehicle body adjacent the first end of said tailgate and received and held in said first hinge pin socket of said drive cup and a second hinge pin carried on said motor vehicle body adjacent the second end of said tailgate and received and held in a second hinge pin socket.
16. A method of installing a powered tailgate onto a motor vehicle, comprising: configuring a controller to displace a gate hinge feature of a powered hinge assembly to an installation position upon connection to a power source; and orienting, by said controller, said gate hinge feature into said installation position.
17. The method of claim 16, further including: monitoring, by absolute position sensor, a current position of a drive cup of said gate hinge feature; configuring said controller to respond to current drive cup position data received from said absolute position sensor; and aligning, by said controller, an open end of a first hinge pin socket of said drive cup with a hinge pin passage in a fixed cup of said gate hinge feature.
18. The method of claim 17, including assembling a torque hinge assembly at a second end of said tailgate by inserting a second hinge pin into a second hinge pin socket.
19. The method of claim 18, including assembling said powered hinge assembly by passing a first hinge pin through said hinge pin passage and said open end in order to insert said first hinge pin into said first hinge pin socket of said drive cup.
20. The method of claim 19, including assembling said torque hinge assembly at a first angular orientation of said tailgate and assembling said powered hinge assembly at a second angular orientation of said tailgate.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
(1) The accompanying drawing figures incorporated herein and forming a part of the specification, illustrate several aspects of the powered hinge assembly, the powered tailgate assembly and related tailgate installation method and together with the description serve to explain certain principles thereof. In the drawing figures:
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(8) Reference will now be made in detail to the present preferred embodiments of the powered hinge assembly and powered tailgate assembly, examples of which are illustrated in the accompanying drawing figures.
DETAILED DESCRIPTION
(9) Reference is now made to
(10) As described in greater detail below, the controller 16 is configured to displace the first gate hinge feature 12 to an installation position upon connection of the controller 16 to a power source 18 by means of the plug-in connector 20.
(11) As best illustrated in
(12) As illustrated in
(13) Reference is now made to
(14) As also illustrated in
(15) Reference is now made to
(16) As illustrated in
(17) The method of installation also includes configuring the controller 16 to displace the first gate hinge feature 12 of the powered hinge assembly 10 to an installation position upon connection to a power source 18. More specifically, either prior to or after assembling the torque hinge assembly 58 as described above, an individual connects the two halves of the connector 20 directing power from the power source 18 of the motor vehicle 70 to the controller 16. The controller 16 is configured to displace the first gate hinge feature 12 of the powered hinge assembly 10 to an installation position immediately following power up if it is not already in the installation position. Thus, controller 16 sends an appropriate control signal to the clutch 38 engaging the clutch, and to the drive motor 36 to drive the drive cup 22 from the misaligned position illustrated in
(18) The powered hinge assembly 10 is then assembled at a second angular orientation of the tailgate 52 wherein the tailgate forms an included angle of approximately 45 with the vertical and the horizontal. Note
(19) As should be appreciated, the clutch 38 is only engaged when the appropriate command has been received by the controller 16 to raise or lower the tailgate utilizing the drive unit 14. At all other times, the clutch 38 remains dis-engaged to allow manual raising and lowering of the tailgate.
(20) When one wishes to again remove the tailgate 52 from the motor vehicle, one may lower the tailgate with the appropriate lower command from the switches 74 or control buttons 76 of the key fob 78. Next, the connector 20 is disconnected so that the controller 16 is disconnected from the power source 18. Next, one manually raises the tailgate 52 to an angular orientation of about 45 and the left and right side stay cables 72 are disconnected. Next, the first end 54 of the tailgate is lifted, the aligned open end 30 of the hinge pin socket 28 and hinge pin passage 34 allowing the removal of the first gate hinge feature 12 from the first hinge pin 64.
(21) Once the powered hinge assembly 10 has been disassembled or disconnected, the lift gate 52 is reoriented at an angle of approximately 80 so as to de-tension the torque rod 62. The tailgate 52 is then pulled toward the first end 54 in a cross-car direction (opposite to action arrow A in
(22) The powered hinge assembly 10 and the powered tailgate assembly 50 provide a number of benefits and advantages. They provide for seamless manual and automated control for the raising and lowering of the tailgate 52 on the motor vehicle 70. When the tailgate 52 is disconnected from the motor vehicle, the normally dis-engaged clutch 38 may allow the drive 22 to rotate with respect to the fixed cup 24 so that the open end 30 of the hinge pin socket 28 becomes misaligned with the hinge pin passage 34 in the cylindrical wall 32 of the fixed cup 24. This could interfere or even prevent reinstallation of the tailgate 52 on the pickup truck 70 if that misalignment remains undetected and uncorrected. In order to avoid this issue and provide easy and efficient reinstallation, the controller 16 of the drive unit 14 is configured to automatically displace the drive cup 22 to an installation position where the open end 30 and hinge pin passage 34 are fully aligned for ease of installation. This installation reset is done automatically at power up when the controller 16 is connected to the power source 18 by connection of the wiring harness connector 20.
(23) The foregoing has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the embodiments to the precise form disclosed. Obvious modifications and variations are possible in light of the above teachings. All such modifications and variations are within the scope of the appended claims when interpreted in accordance with the breadth to which they are fairly, legally and equitably entitled.