Ergonomic Gear Shift Grip Adjuster
20180188766 ยท 2018-07-05
Inventors
Cpc classification
F16H59/0278
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K26/00
PERFORMING OPERATIONS; TRANSPORTING
G05G1/54
PHYSICS
International classification
G05G1/54
PHYSICS
Abstract
An ergonomic adapter for a transmission tower for a motor vehicle, such as a tractor-trailer is disclosed. The adapter includes a tower mounting bracket that is removably coupled to the tower of the transmission and can be positioned at a selected position along the height of the transmission tower and at a selected angular position about an axis of the tower. The adapter also includes an extension bracket rotatably coupled with the tower mounting bracket about an extension axis. The extension bracket can be fixed to the tower mounting bracket at a selected angular position about the extension axis. The adapter also includes a handle rotatably coupled to the extension bracket about a handle axis. The handle can be fixed to the handle at a selected angular position about the handle axis. The adapter allows a driver to adapt the transmission tower to the driver's body to provide improved operation of the vehicle.
Claims
1. An ergonomic adapter, comprising: first bracket removably coupleable to a lever of a lever assembly and configured to be selectably positioned along a height of the lever and at an angular position about an axis of the lever; an extension bracket rotatably coupleable with the first bracket about an extension axis and configured to be selectably fixed to the first bracket at an angular position about the extension axis; and a handle rotatably coupleable to the extension bracket about a handle axis, the handle configured to be selectably fixed to the extension bracket at an angular position about the handle axis.
2. The adapter of claim 1, the handle comprising a plurality of gripping surfaces, each gripping surface being sized to accommodate an operator's hand.
3. The adapter of claim 2, the gripping surfaces comprising two parallel portions, the handle further comprising a bar member disposed between the parallel portions.
4. The adapter of claim 2, the handle further comprising: (1) a mounting plate mechanically coupled to at least a first gripping surface of the plurality of gripping surfaces, the gripping surfaces and the mounting plate substantially forming a loop; and (2) a bar member, extending from a second one of the gripping surfaces to the plate.
5. The adapter of claim 1, further comprising a bushing disposed between an interior surface of the first bracket and an exterior surface of the lever.
6. The adapter of claim 5, wherein the exterior surface of the lever is cylindrical.
7. The adapter of claim 1, the handle comprising a single, cylindrical gripping surface.
8. The adapter of claim 1, wherein the adapter is formed from a material selected from the group comprising: metals, metal alloys, polymers, composite materials, and combinations thereof.
9. The adapter of claim 1, the tower mounting bracket comprising: (1) an engagement portion configured to be disposed on a first side of the lever, the engagement portion mechanically coupled to the extension bracket; and (2) an opposing portion configured to be disposed on a second side of the lever opposite the first side.
10. The adapter of claim 9, further comprising a fastener configured to releasably connect the engagement portion to the opposing portion such that, in use, the opposing portion moves toward the engagement portion.
11. The adapter of claim 10, wherein the fastener comprises a hasp and a receiving notch configured to receive the hasp.
12. An ergonomic adapter for a lever assembly, the adapter comprising: a first bracket, removably coupleable to a lever, the first bracket including an engagement portion configured to be disposed on a first side of the lever and an opposing portion configured to be disposed on a second side of the lever opposite the first side, the engagement portion having two holes for receiving fasteners, the holes positioned a first distance from one another, the opposing portion and the engagement portion being mechanically coupleable to one another by a fastener of the fasteners, the fastener configured to cause the opposing portion to move toward the engagement portion and to apply a clamping force to connect the first bracket to the lever at a selected position along a height of the lever and at a selected angular position about an axis of the lever; an extension bracket rotatably coupled with the engagement portion of the first bracket about an extension axis, the extension bracket comprising a first planar portion and a second planar portion, the first planar portion and the second planar portion connected perpendicular to one another along respective edges thereof, the first planar portion comprising: (1) a through-hole configured to receive a fastener, and (2) an arcuate slot, the arcuate slot disposed at a constant radial distance from the through-hole, the radial distance being substantially equal to the first distance, the extension bracket being mechanically coupled to the first bracket by: (1) a first extension fastener extending through the through-hole and engaging one of the holes of the first bracket; and (2) a second extension fastener extending through the arcuate slot and engaging the other of the holes of the first bracket at a selected angular position along the arcuate slot such that the extension bracket is connected with the first bracket at a selected angular position about the extension axis, and the second planar portion comprising two extension holes for receiving respective handle fasteners; and a handle rotatably coupled to the second planar portion of the extension bracket, the handle comprising a mounting portion and a gripping portion, the mounting portion comprising two handle mounting slots, the slots disposed such that the handle fasteners inserted therethrough engage with the extension holes, a position and a rotation of the handle with respect to the extension bracket being selectable by a position of the handle fasteners in the slots, the gripping portion comprising: (1) two parallel portions, the parallel portions connected to the mounting portion at one end and connected with one another at their opposite ends by a cross piece; and (2) a bar member extending between the parallel portions intermediate the mounting portion and the cross piece.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The invention is illustrated in the figures of the accompanying drawings, which are meant to be exemplary and not limiting, and in which like references are intended to refer to like or corresponding parts.
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028] An attachable/detachable and ergonomically adjustable grip for the gear shift tower of a motor vehicle or other manual lever assembly and the method of making such an adjustable grip according to embodiments of the present invention are provided.
[0029]
[0030]
[0031] According to one embodiment, the tower 112 has a round cross section. The engagement between the clamp 2 and tower 112 can be positioned about the tower axis 8 along the height of the tower 112. As will be explained more fully below, the engagement between the clamp 2 and extension bracket 4 can be adjusted about an extension axis 10. Likewise, the engagement between the handle 6 and bracket 4 can be adjusted about a handle axis 12. The height of the adapter 1 on the tower 112, as well as the position of the handle 6 with respect to the tower 112 is adjusted so that the operator can comfortably move the tower 112 through its range of operation while also allowing the operator to conveniently reach the switch 116.
[0032]
[0033] According to another aspect of the invention, clamp 2 is connected with tower 112 by way of a latch mechanism such as an over-center latch.
[0034]
[0035] Clamp 200 allows the adapter 1 to be connected with the tower 112 without the need for tools. This arrangement also allows the device to be easily removed from the tower 112 by moving latch 228 away from opposing portion 220. Thus, a driver that uses multiple vehicles can conveniently remove the adapter 1 from one vehicle and install it in another.
[0036] Bracket 4 is shown in
[0037]
[0038] Safety bar 66 extends between side grips 60 of handle 6. The safety bar 66 prevents the driver from inadvertently extending his hand through the handle 6. This minimizes the risk that the driver's hand is lodged inside the handle 6, which would create a dangerous situation when driving.
[0039]
[0040] As illustrated in
[0041] As discussed above, the clamp 2, bracket 4 and handle 6 can be positioned at selected angles of tower axis 8, extension axis 10, and handle axis 12 so that the location of the side grips 60 and top grip 62 can be comfortably grasped by the driver. The driver has the option to grasp the handle on any of the side or top grips 60, 62 allowing the driver change the range of motion of his or her wrist, elbow, and shoulder and reduce the impact of repeated gear shifting motions.
[0042]
[0043]
[0044] Components of the device 1 can be constructed from materials that have adequate mechanical strength to communicate forces from the driver's hand to the tower 112 to operate the vehicle transmission. These materials include metals and metal alloys, polymers, composite materials, for example, carbon fiber composites, and combinations thereof.
[0045] While this invention has been described in conjunction with the specific embodiments outlined above, it is evident that many alternatives, modifications, and variations will be apparent to those skilled in the art. Accordingly, the preferred embodiments of the invention as set forth above are intended to be illustrative, not limiting. Various changes may be made without departing from the spirit and scope of the inventions as defined in the following claims.